Coverage Report

Created: 2025-06-10 06:58

/src/ghostpdl/base/gdevp14.c
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/* Copyright (C) 2001-2025 Artifex Software, Inc.
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   All Rights Reserved.
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   This software is provided AS-IS with no warranty, either express or
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   implied.
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   This software is distributed under license and may not be copied,
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   modified or distributed except as expressly authorized under the terms
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   of the license contained in the file LICENSE in this distribution.
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   Refer to licensing information at http://www.artifex.com or contact
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   Artifex Software, Inc.,  39 Mesa Street, Suite 108A, San Francisco,
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   CA 94129, USA, for further information.
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*/
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/* Compositing devices for implementing PDF 1.4 imaging model */
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#include "assert_.h"
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#include "math_.h"
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#include "memory_.h"
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#include "gx.h"
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#include "gserrors.h"
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#include "gscdefs.h"
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#include "gxdevice.h"
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#include "gsdevice.h"
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#include "gsstruct.h"
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#include "gxgstate.h"
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#include "gxdcolor.h"
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#include "gxiparam.h"
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#include "gstparam.h"
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#include "gxblend.h"
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#include "gxtext.h"
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#include "gsimage.h"
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#include "gsrect.h"
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#include "gscoord.h"
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#include "gzstate.h"
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#include "gdevdevn.h"
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#include "gdevmem.h"
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#include "gdevp14.h"
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#include "gdevprn.h"    /* for prn_device structures */
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#include "gdevppla.h"   /* for gdev_prn_open_planar */
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#include "gdevdevnprn.h"
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#include "gscdevn.h"
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#include "gsovrc.h"
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#include "gxcmap.h"
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#include "gscolor1.h"
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#include "gstrans.h"
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#include "gsutil.h"
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#include "gxcldev.h"
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#include "gxclpath.h"
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#include "gxdcconv.h"
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#include "gsptype2.h"
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#include "gxpcolor.h"
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#include "gsptype1.h"
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#include "gzcpath.h"
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#include "gxpaint.h"
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#include "gsicc_manage.h"
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#include "gsicc_cache.h"
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#include "gxclist.h"
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#include "gxiclass.h"
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#include "gximage.h"
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#include "gsmatrix.h"
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#include "gxdevsop.h"
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#include "gsicc.h"
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#ifdef WITH_CAL
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#include "cal.h"
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#define CAL_SLOP 16
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#else
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#define CAL_SLOP 0
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#endif
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#include "assert_.h"
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#include "gxgetbit.h"
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#if RAW_DUMP
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unsigned int global_index = 0;
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unsigned int clist_band_count = 0;
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#endif
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#define DUMP_MASK_STACK 0
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/* Static prototypes */
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/* Used for filling rects when we are doing a fill with a pattern that
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   has transparency */
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static int pdf14_tile_pattern_fill(gx_device * pdev, const gs_gstate * pgs,
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                                   gx_path * ppath, const gx_fill_params * params,
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                                   const gx_device_color * pdevc, const gx_clip_path * pcpath);
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static pdf14_mask_t *pdf14_mask_element_new(gs_memory_t *memory);
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static void pdf14_free_smask_color(pdf14_device * pdev);
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static int compute_group_device_int_rect(pdf14_device *pdev, gs_int_rect *rect,
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                                         const gs_rect *pbbox, gs_gstate *pgs);
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static int pdf14_clist_update_params(pdf14_clist_device * pdev,
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                                     const gs_gstate * pgs,
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                                     bool crop_blend_params,
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                                     gs_pdf14trans_params_t *group_params);
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static int pdf14_mark_fill_rectangle_ko_simple(gx_device *  dev, int x, int y,
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                                               int w, int h, gx_color_index color,
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                                               const gx_device_color *pdc,
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                                               bool devn);
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static int pdf14_copy_alpha_color(gx_device * dev, const byte * data, int data_x,
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                                  int aa_raster, gx_bitmap_id id, int x, int y, int w, int h,
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                                  gx_color_index color, const gx_device_color *pdc,
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                                  int depth, bool devn);
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/* Functions for dealing with soft mask color */
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static int pdf14_decrement_smask_color(gs_gstate * pgs, gx_device * dev);
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static int pdf14_increment_smask_color(gs_gstate * pgs, gx_device * dev);
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/*
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 * We chose the blending color space based upon the process color model of the
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 * output device.  For gray, RGB, CMYK, or CMYK+spot devices, the choice is
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 * usually simple.  For other devices or if the user is doing custom color
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 * processing then the user may want to control this choice.
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 */
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#define AUTO_USE_CUSTOM_BLENDING 0
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#define ALWAYS_USE_CUSTOM_BLENDING 1
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#define DO_NOT_USE_CUSTOM_BLENDING 2
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#define CUSTOM_BLENDING_MODE AUTO_USE_CUSTOM_BLENDING
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# define INCR(v) DO_NOTHING
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/* Forward prototypes */
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void pdf14_cmyk_cs_to_cmyk_cm(const gx_device *, frac, frac, frac, frac, frac *);
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static int gs_pdf14_device_push(gs_memory_t *mem, gs_gstate * pgs,
125
                                gx_device ** pdev, gx_device * target,
126
                                const gs_pdf14trans_t * pdf14pct);
127
static int gs_pdf14_clist_device_push(gs_memory_t * mem, gs_gstate * pgs,
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                                      gx_device ** pdev, gx_device * target,
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                                      const gs_pdf14trans_t * pdf14pct);
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static int pdf14_tile_pattern_fill(gx_device * pdev,
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                const gs_gstate * pgs, gx_path * ppath,
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                const gx_fill_params * params,
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                const gx_device_color * pdevc, const gx_clip_path * pcpath);
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static pdf14_mask_t * pdf14_mask_element_new(gs_memory_t * memory);
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#ifdef DEBUG
136
static void pdf14_debug_mask_stack_state(pdf14_ctx *ctx);
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#endif
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/* A structure used by the pdf14 device so that
140
   we can do the proper dance when the alphabuf
141
   device is being used */
142
typedef struct pdf14_abuf_state_s {
143
    bool op_ca_eq_CA;
144
    bool path_empty;
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    float stroke_alpha;
146
    float fill_alpha;
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    gs_gstate* pgs;
148
    gs_blend_mode_t blend_mode;
149
    bool group_needed;
150
    OP_FS_STATE orig_state;
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} pdf14_abuf_state_t;
152
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/* Buffer stack data structure */
154
gs_private_st_ptrs7(st_pdf14_buf, pdf14_buf, "pdf14_buf",
155
                    pdf14_buf_enum_ptrs, pdf14_buf_reloc_ptrs,
156
                    saved, data, backdrop, transfer_fn, mask_stack,
157
                    matte, group_color_info);
158
159
gs_private_st_ptrs3(st_pdf14_ctx, pdf14_ctx, "pdf14_ctx",
160
                    pdf14_ctx_enum_ptrs, pdf14_ctx_reloc_ptrs,
161
                    stack, mask_stack, base_color);
162
163
gs_private_st_ptrs1(st_pdf14_clr, pdf14_group_color_t, "pdf14_clr",
164
                    pdf14_clr_enum_ptrs, pdf14_clr_reloc_ptrs, previous);
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166
gs_private_st_ptrs2(st_pdf14_mask, pdf14_mask_t, "pdf_mask",
167
                    pdf14_mask_enum_ptrs, pdf14_mask_reloc_ptrs,
168
                    rc_mask, previous);
169
170
gs_private_st_ptrs1(st_pdf14_rcmask, pdf14_rcmask_t, "pdf_rcmask",
171
                    pdf14_rcmask_enum_ptrs, pdf14_rcmask_reloc_ptrs,
172
                    mask_buf);
173
174
gs_private_st_ptrs1(st_pdf14_smaskcolor, pdf14_smaskcolor_t, "pdf14_smaskcolor",
175
                    pdf14_smaskcolor_enum_ptrs, pdf14_smaskcolor_reloc_ptrs,
176
                    profiles);
177
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/* ------ The device descriptors ------ */
179
180
/*
181
 * Default X and Y resolution.
182
 */
183
#define X_DPI 72
184
#define Y_DPI 72
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static int pdf14_initialize_device(gx_device *dev);
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188
static  int pdf14_open(gx_device * pdev);
189
static  dev_proc_close_device(pdf14_close);
190
static  int pdf14_output_page(gx_device * pdev, int num_copies, int flush);
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static  dev_proc_put_params(pdf14_put_params);
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static  dev_proc_get_color_comp_index(pdf14_cmykspot_get_color_comp_index);
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static  dev_proc_get_color_comp_index(pdf14_rgbspot_get_color_comp_index);
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static  dev_proc_get_color_comp_index(pdf14_grayspot_get_color_comp_index);
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static  dev_proc_get_color_mapping_procs(pdf14_cmykspot_get_color_mapping_procs);
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static  dev_proc_get_color_mapping_procs(pdf14_rgbspot_get_color_mapping_procs);
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static  dev_proc_get_color_mapping_procs(pdf14_grayspot_get_color_mapping_procs);
198
dev_proc_encode_color(pdf14_encode_color);
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dev_proc_encode_color(pdf14_encode_color_tag);
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dev_proc_decode_color(pdf14_decode_color);
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dev_proc_encode_color(pdf14_encode_color16);
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dev_proc_encode_color(pdf14_encode_color16_tag);
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dev_proc_decode_color(pdf14_decode_color16);
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static  dev_proc_fill_rectangle(pdf14_fill_rectangle);
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static  dev_proc_fill_rectangle_hl_color(pdf14_fill_rectangle_hl_color);
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static  dev_proc_fill_path(pdf14_fill_path);
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static  dev_proc_fill_stroke_path(pdf14_fill_stroke_path);
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static  dev_proc_copy_mono(pdf14_copy_mono);
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static  dev_proc_fill_mask(pdf14_fill_mask);
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static  dev_proc_stroke_path(pdf14_stroke_path);
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static  dev_proc_begin_typed_image(pdf14_begin_typed_image);
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static  dev_proc_text_begin(pdf14_text_begin);
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static  dev_proc_composite(pdf14_composite);
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static  dev_proc_composite(pdf14_forward_composite);
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static  dev_proc_begin_transparency_group(pdf14_begin_transparency_group);
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static  dev_proc_end_transparency_group(pdf14_end_transparency_group);
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static  dev_proc_begin_transparency_mask(pdf14_begin_transparency_mask);
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static  dev_proc_end_transparency_mask(pdf14_end_transparency_mask);
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static  dev_proc_dev_spec_op(pdf14_dev_spec_op);
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static  dev_proc_push_transparency_state(pdf14_push_transparency_state);
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static  dev_proc_pop_transparency_state(pdf14_pop_transparency_state);
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static  dev_proc_ret_devn_params(pdf14_ret_devn_params);
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static  dev_proc_update_spot_equivalent_colors(pdf14_update_spot_equivalent_colors);
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static  dev_proc_copy_alpha(pdf14_copy_alpha);
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static  dev_proc_copy_planes(pdf14_copy_planes);
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static  dev_proc_copy_alpha_hl_color(pdf14_copy_alpha_hl_color);
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static  dev_proc_discard_transparency_layer(pdf14_discard_trans_layer);
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static  dev_proc_strip_tile_rect_devn(pdf14_strip_tile_rect_devn);
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static  const gx_color_map_procs *
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    pdf14_get_cmap_procs(const gs_gstate *, const gx_device *);
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#define XSIZE (int)(8.5 * X_DPI)  /* 8.5 x 11 inch page, by default */
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#define YSIZE (int)(11 * Y_DPI)
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/* 24-bit color. */
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static void
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pdf14_procs_initialize(gx_device *dev,
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                       dev_proc_get_color_mapping_procs(get_color_mapping_procs),
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                       dev_proc_get_color_comp_index(get_color_comp_index),
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                       dev_proc_encode_color(encode_color),
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                       dev_proc_decode_color(decode_color))
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350k
{
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350k
    set_dev_proc(dev, initialize_device, pdf14_initialize_device);
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350k
    set_dev_proc(dev, open_device, pdf14_open);
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350k
    set_dev_proc(dev, output_page, pdf14_output_page);
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350k
    set_dev_proc(dev, close_device, pdf14_close);
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350k
    set_dev_proc(dev, map_rgb_color, encode_color);
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350k
    set_dev_proc(dev, map_color_rgb, decode_color);
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350k
    set_dev_proc(dev, fill_rectangle, pdf14_fill_rectangle);
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350k
    set_dev_proc(dev, copy_mono, pdf14_copy_mono);
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350k
    set_dev_proc(dev, get_params, gx_forward_get_params);
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350k
    set_dev_proc(dev, put_params, pdf14_put_params);
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350k
    set_dev_proc(dev, copy_alpha, pdf14_copy_alpha);
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350k
    set_dev_proc(dev, fill_path, pdf14_fill_path);
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350k
    set_dev_proc(dev, stroke_path, pdf14_stroke_path);
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350k
    set_dev_proc(dev, fill_mask, pdf14_fill_mask);
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350k
    set_dev_proc(dev, begin_typed_image, pdf14_begin_typed_image);
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350k
    set_dev_proc(dev, composite, pdf14_composite);
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350k
    set_dev_proc(dev, text_begin, pdf14_text_begin);
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350k
    set_dev_proc(dev, begin_transparency_group, pdf14_begin_transparency_group);
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350k
    set_dev_proc(dev, end_transparency_group, pdf14_end_transparency_group);
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350k
    set_dev_proc(dev, begin_transparency_mask, pdf14_begin_transparency_mask);
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350k
    set_dev_proc(dev, end_transparency_mask, pdf14_end_transparency_mask);
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350k
    set_dev_proc(dev, discard_transparency_layer, pdf14_discard_trans_layer);
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350k
    set_dev_proc(dev, get_color_mapping_procs, get_color_mapping_procs);
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350k
    set_dev_proc(dev, get_color_comp_index, get_color_comp_index);
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350k
    set_dev_proc(dev, encode_color, encode_color);
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350k
    set_dev_proc(dev, decode_color, decode_color);
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350k
    set_dev_proc(dev, fill_rectangle_hl_color, pdf14_fill_rectangle_hl_color);
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350k
    set_dev_proc(dev, update_spot_equivalent_colors, gx_forward_update_spot_equivalent_colors);
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350k
    set_dev_proc(dev, ret_devn_params, pdf14_ret_devn_params);
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350k
    set_dev_proc(dev, push_transparency_state, pdf14_push_transparency_state);
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350k
    set_dev_proc(dev, pop_transparency_state, pdf14_pop_transparency_state);
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350k
    set_dev_proc(dev, dev_spec_op, pdf14_dev_spec_op);
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350k
    set_dev_proc(dev, copy_planes, pdf14_copy_planes);
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350k
    set_dev_proc(dev, set_graphics_type_tag, gx_forward_set_graphics_type_tag);
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350k
    set_dev_proc(dev, strip_tile_rect_devn, pdf14_strip_tile_rect_devn);
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350k
    set_dev_proc(dev, copy_alpha_hl_color, pdf14_copy_alpha_hl_color);
280
350k
    set_dev_proc(dev, fill_stroke_path, pdf14_fill_stroke_path);
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350k
}
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static void
284
pdf14_Gray_initialize_device_procs(gx_device *dev)
285
30.9k
{
286
30.9k
    pdf14_procs_initialize(dev,
287
30.9k
                           gx_default_DevGray_get_color_mapping_procs,
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30.9k
                           gx_default_DevGray_get_color_comp_index,
289
30.9k
                           pdf14_encode_color,
290
30.9k
                           pdf14_decode_color);
291
30.9k
}
292
293
static void
294
pdf14_RGB_initialize_device_procs(gx_device *dev)
295
6
{
296
6
    pdf14_procs_initialize(dev,
297
6
                           gx_default_DevRGB_get_color_mapping_procs,
298
6
                           gx_default_DevRGB_get_color_comp_index,
299
6
                           pdf14_encode_color,
300
6
                           pdf14_decode_color);
301
6
}
302
303
static void
304
pdf14_CMYK_initialize_device_procs(gx_device *dev)
305
0
{
306
0
    pdf14_procs_initialize(dev,
307
0
                           gx_default_DevCMYK_get_color_mapping_procs,
308
0
                           gx_default_DevCMYK_get_color_comp_index,
309
0
                           pdf14_encode_color,
310
0
                           pdf14_decode_color);
311
0
}
312
313
static void
314
pdf14_CMYKspot_initialize_device_procs(gx_device *dev)
315
257k
{
316
257k
    pdf14_procs_initialize(dev,
317
257k
                           pdf14_cmykspot_get_color_mapping_procs,
318
257k
                           pdf14_cmykspot_get_color_comp_index,
319
257k
                           pdf14_encode_color,
320
257k
                           pdf14_decode_color);
321
257k
}
322
323
static void
324
pdf14_RGBspot_initialize_device_procs(gx_device *dev)
325
61.9k
{
326
61.9k
    pdf14_procs_initialize(dev,
327
61.9k
                           pdf14_rgbspot_get_color_mapping_procs,
328
61.9k
                           pdf14_rgbspot_get_color_comp_index,
329
61.9k
                           pdf14_encode_color,
330
61.9k
                           pdf14_decode_color);
331
61.9k
}
332
333
static void
334
pdf14_Grayspot_initialize_device_procs(gx_device *dev)
335
0
{
336
0
    pdf14_procs_initialize(dev,
337
0
                           pdf14_grayspot_get_color_mapping_procs,
338
0
                           pdf14_grayspot_get_color_comp_index,
339
0
                           pdf14_encode_color,
340
0
                           pdf14_decode_color);
341
0
}
342
343
static void
344
pdf14_custom_initialize_device_procs(gx_device *dev)
345
0
{
346
0
    pdf14_procs_initialize(dev,
347
0
                           gx_forward_get_color_mapping_procs,
348
0
                           gx_forward_get_color_comp_index,
349
0
                           gx_forward_encode_color,
350
0
                           gx_forward_decode_color);
351
0
}
352
353
static struct_proc_finalize(pdf14_device_finalize);
354
355
gs_private_st_composite_use_final(st_pdf14_device, pdf14_device, "pdf14_device",
356
                                  pdf14_device_enum_ptrs, pdf14_device_reloc_ptrs,
357
                          pdf14_device_finalize);
358
359
static int pdf14_put_image(gx_device * dev, gs_gstate * pgs,
360
                                                        gx_device * target);
361
static int pdf14_cmykspot_put_image(gx_device * dev, gs_gstate * pgs,
362
                                                        gx_device * target);
363
static int pdf14_custom_put_image(gx_device * dev, gs_gstate * pgs,
364
                                                        gx_device * target);
365
366
/* Alter pdf14 device color model based upon group or softmask. This occurs
367
   post clist or in immediate rendering case. Data stored with buffer */
368
static pdf14_group_color_t* pdf14_push_color_model(gx_device *dev,
369
                              gs_transparency_color_t group_color, int64_t icc_hashcode,
370
                              cmm_profile_t *iccprofile, bool is_mask);
371
static void pdf14_pop_color_model(gx_device* dev, pdf14_group_color_t* group_color);
372
373
/* Alter clist writer device color model based upon group or softmask. Data
374
   stored in the device color model stack */
375
static int pdf14_clist_push_color_model(gx_device* dev, gx_device* cdev, gs_gstate* pgs,
376
    const gs_pdf14trans_t* pdf14pct, gs_memory_t* mem, bool is_mask);
377
static int pdf14_clist_pop_color_model(gx_device* dev, gs_gstate* pgs);
378
379
/* Used for cleaning up the stack if things go wrong */
380
static void pdf14_pop_group_color(gx_device *dev, const gs_gstate *pgs);
381
382
static const pdf14_procs_t gray_pdf14_procs = {
383
    pdf14_unpack_additive,
384
    pdf14_put_image,
385
    pdf14_unpack16_additive
386
};
387
388
static const pdf14_procs_t rgb_pdf14_procs = {
389
    pdf14_unpack_additive,
390
    pdf14_put_image,
391
    pdf14_unpack16_additive
392
};
393
394
static const pdf14_procs_t cmyk_pdf14_procs = {
395
    pdf14_unpack_subtractive,
396
    pdf14_put_image,
397
    pdf14_unpack16_subtractive
398
};
399
400
static const pdf14_procs_t cmykspot_pdf14_procs = {
401
    pdf14_unpack_custom,  /* should never be used since we will use devn values */
402
    pdf14_cmykspot_put_image,
403
    pdf14_unpack16_custom /* should never be used since we will use devn values */
404
};
405
406
static const pdf14_procs_t rgbspot_pdf14_procs = {
407
    pdf14_unpack_rgb_mix,
408
    pdf14_cmykspot_put_image,
409
    pdf14_unpack16_rgb_mix
410
};
411
412
static const pdf14_procs_t grayspot_pdf14_procs = {
413
    pdf14_unpack_gray_mix,
414
    pdf14_cmykspot_put_image,
415
    pdf14_unpack16_gray_mix
416
};
417
418
static const pdf14_procs_t custom_pdf14_procs = {
419
    pdf14_unpack_custom,
420
    pdf14_custom_put_image,
421
    pdf14_unpack16_custom
422
};
423
424
static const pdf14_nonseparable_blending_procs_t gray_blending_procs = {
425
    art_blend_luminosity_custom_8,
426
    art_blend_saturation_custom_8,
427
    art_blend_luminosity_custom_16,
428
    art_blend_saturation_custom_16
429
};
430
431
static const pdf14_nonseparable_blending_procs_t rgb_blending_procs = {
432
    art_blend_luminosity_rgb_8,
433
    art_blend_saturation_rgb_8,
434
    art_blend_luminosity_rgb_16,
435
    art_blend_saturation_rgb_16
436
};
437
438
static const pdf14_nonseparable_blending_procs_t cmyk_blending_procs = {
439
    art_blend_luminosity_cmyk_8,
440
    art_blend_saturation_cmyk_8,
441
    art_blend_luminosity_cmyk_16,
442
    art_blend_saturation_cmyk_16
443
};
444
445
static const pdf14_nonseparable_blending_procs_t rgbspot_blending_procs = {
446
    art_blend_luminosity_rgb_8,
447
    art_blend_saturation_rgb_8,
448
    art_blend_luminosity_rgb_16,
449
    art_blend_saturation_rgb_16
450
};
451
452
static const pdf14_nonseparable_blending_procs_t grayspot_blending_procs = {
453
    art_blend_luminosity_custom_8,
454
    art_blend_saturation_custom_8,
455
    art_blend_luminosity_custom_16,
456
    art_blend_saturation_custom_16
457
};
458
459
static const pdf14_nonseparable_blending_procs_t custom_blending_procs = {
460
    art_blend_luminosity_custom_8,
461
    art_blend_saturation_custom_8,
462
    art_blend_luminosity_custom_16,
463
    art_blend_saturation_custom_16
464
};
465
466
const pdf14_device gs_pdf14_Gray_device = {
467
    std_device_std_color_full_body_type(pdf14_device,
468
                                        pdf14_Gray_initialize_device_procs,
469
                                        "pdf14gray",
470
                                        &st_pdf14_device,
471
                                        XSIZE, YSIZE, X_DPI, Y_DPI, 8,
472
                                        0, 0, 0, 0, 0, 0),
473
    { 0 },      /* Procs */
474
    NULL,     /* target */
475
    { 0 },      /* devn_params - not used */
476
    &gray_pdf14_procs,
477
    &gray_blending_procs,
478
    1
479
};
480
481
const pdf14_device gs_pdf14_RGB_device = {
482
    std_device_color_stype_body(pdf14_device,
483
                                pdf14_RGB_initialize_device_procs,
484
                                "pdf14RGB",
485
                                &st_pdf14_device,
486
                                XSIZE, YSIZE, X_DPI, Y_DPI, 24, 255, 256),
487
    { 0 },      /* Procs */
488
    NULL,     /* target */
489
    { 0 },      /* devn_params - not used */
490
    &rgb_pdf14_procs,
491
    &rgb_blending_procs,
492
    3
493
};
494
495
const pdf14_device gs_pdf14_CMYK_device = {
496
    std_device_std_color_full_body_type(pdf14_device,
497
                                        pdf14_CMYK_initialize_device_procs,
498
                                        "pdf14cmyk",
499
                                        &st_pdf14_device,
500
                                        XSIZE, YSIZE, X_DPI, Y_DPI, 32,
501
                                        0, 0, 0, 0, 0, 0),
502
    { 0 },      /* Procs */
503
    NULL,     /* target */
504
    { 0 },      /* devn_params - not used */
505
    &cmyk_pdf14_procs,
506
    &cmyk_blending_procs,
507
    4
508
};
509
510
const pdf14_device gs_pdf14_CMYKspot_device = {
511
    std_device_part1_(pdf14_device,
512
                      pdf14_CMYKspot_initialize_device_procs,
513
                      "pdf14cmykspot",
514
                      &st_pdf14_device,
515
                      open_init_closed),
516
    dci_values(GX_DEVICE_COLOR_MAX_COMPONENTS,64,255,255,256,256),
517
    std_device_part2_(XSIZE, YSIZE, X_DPI, Y_DPI),
518
    offset_margin_values(0, 0, 0, 0, 0, 0),
519
    std_device_part3_(),
520
    { 0 },      /* Procs */
521
    NULL,     /* target */
522
    /* DeviceN parameters */
523
    { 8,      /* Not used - Bits per color */
524
      DeviceCMYKComponents, /* Names of color model colorants */
525
      4,      /* Number colorants for CMYK */
526
      0,      /* MaxSeparations has not been specified */
527
      -1,     /* PageSpotColors has not been specified */
528
      {0},      /* SeparationNames */
529
      0,      /* SeparationOrder names */
530
      {0, 1, 2, 3, 4, 5, 6, 7 } /* Initial component SeparationOrder */
531
    },
532
    &cmykspot_pdf14_procs,
533
    &cmyk_blending_procs,
534
    4
535
};
536
537
const pdf14_device gs_pdf14_RGBspot_device = {
538
    std_device_part1_(pdf14_device,
539
                      pdf14_RGBspot_initialize_device_procs,
540
                      "pdf14rgbspot",
541
                      &st_pdf14_device,
542
                      open_init_closed),
543
    dci_values_add(GX_DEVICE_COLOR_MAX_COMPONENTS,64,255,255,256,256),
544
    std_device_part2_(XSIZE, YSIZE, X_DPI, Y_DPI),
545
    offset_margin_values(0, 0, 0, 0, 0, 0),
546
    std_device_part3_(),
547
    { 0 },      /* Procs */
548
    NULL,     /* target */
549
                    /* DeviceN parameters */
550
    { 8,      /* Not used - Bits per color */
551
    0,              /* Names of color model colorants */
552
    3,          /* Number colorants for RGB */
553
    0,          /* MaxSeparations has not been specified */
554
    -1,         /* PageSpotColors has not been specified */
555
    { 0 },      /* SeparationNames */
556
    0,          /* SeparationOrder names */
557
    { 0, 1, 2, 3, 4, 5, 6, 7 }  /* Initial component SeparationOrder */
558
    },
559
    &rgbspot_pdf14_procs,
560
    &rgbspot_blending_procs,
561
    3
562
};
563
564
const pdf14_device gs_pdf14_Grayspot_device = {
565
    std_device_part1_(pdf14_device,
566
                      pdf14_Grayspot_initialize_device_procs,
567
                      "pdf14grayspot",
568
                      &st_pdf14_device,
569
                      open_init_closed),
570
    dci_values(GX_DEVICE_COLOR_MAX_COMPONENTS,64,255,255,256,256),
571
    std_device_part2_(XSIZE, YSIZE, X_DPI, Y_DPI),
572
    offset_margin_values(0, 0, 0, 0, 0, 0),
573
    std_device_part3_(),
574
    { 0 },      /* Procs */
575
    NULL,     /* target */
576
                    /* DeviceN parameters */
577
    { 8,      /* Not used - Bits per color */
578
    0,              /* Names of color model colorants */
579
    3,          /* Number colorants for RGB */
580
    0,          /* MaxSeparations has not been specified */
581
    -1,         /* PageSpotColors has not been specified */
582
    { 0 },      /* SeparationNames */
583
    0,          /* SeparationOrder names */
584
    { 0, 1, 2, 3, 4, 5, 6, 7 }  /* Initial component SeparationOrder */
585
    },
586
    &grayspot_pdf14_procs,
587
    &grayspot_blending_procs,
588
    1
589
};
590
591
/*
592
 * The 'custom' PDF 1.4 compositor device is for working with those devices
593
 * which support spot colors but do not have a CMYK process color model.
594
 *
595
 * This causes some problems with the Hue, Saturation, Color, and Luminosity
596
 * blending modes.  These blending modes are 'non separable' and depend upon
597
 * knowing the details of the blending color space.  However we use the
598
 * process color model of the output device for our blending color space.
599
 * With an unknown process color model, we have to fall back to some 'guesses'
600
 * about how to treat these blending modes.
601
 */
602
const pdf14_device gs_pdf14_custom_device = {
603
    std_device_part1_(pdf14_device,
604
                      pdf14_custom_initialize_device_procs,
605
                      "pdf14custom",
606
                      &st_pdf14_device,
607
                      open_init_closed),
608
    dci_values(GX_DEVICE_COLOR_MAX_COMPONENTS,64,255,255,256,256),
609
    std_device_part2_(XSIZE, YSIZE, X_DPI, Y_DPI),
610
    offset_margin_values(0, 0, 0, 0, 0, 0),
611
    std_device_part3_(),
612
    { 0 },      /* Procs */
613
    NULL,     /* target */
614
    /* DeviceN parameters */
615
    { 8,      /* Not used - Bits per color */
616
      DeviceCMYKComponents, /* Names of color model colorants */
617
      4,      /* Number colorants for CMYK */
618
      0,      /* MaxSeparations has not been specified */
619
      -1,     /* PageSpotColors has not been specified */
620
      {0},      /* SeparationNames */
621
      0,      /* SeparationOrder names */
622
      {0, 1, 2, 3, 4, 5, 6, 7 } /* Initial component SeparationOrder */
623
    },
624
    &custom_pdf14_procs,
625
    &custom_blending_procs,
626
    4
627
};
628
629
/* Devices used for pdf14-accum-* device, one for  each image colorspace, */
630
/* Gray, RGB, CMYK, DeviceN. Before calling gdev_prn_open, the following  */
631
/* are set from the target device: width, height, xdpi, ydpi, MaxBitmap.  */
632
633
static dev_proc_print_page(no_print_page);
634
static  dev_proc_ret_devn_params(pdf14_accum_ret_devn_params);
635
static  dev_proc_get_color_comp_index(pdf14_accum_get_color_comp_index);
636
static  dev_proc_get_color_mapping_procs(pdf14_accum_get_color_mapping_procs);
637
static  dev_proc_update_spot_equivalent_colors(pdf14_accum_update_spot_equivalent_colors);
638
639
static int
640
no_print_page(gx_device_printer *pdev, gp_file *prn_stream)
641
0
{
642
0
    return_error(gs_error_unknownerror);
643
0
}
644
645
struct gx_device_pdf14_accum_s {
646
    gx_devn_prn_device_common;
647
    gx_device *save_p14dev;   /* the non-clist pdf14 deivce saved for after accum */
648
};
649
typedef struct gx_device_pdf14_accum_s gx_device_pdf14_accum;
650
651
int
652
pdf14_accum_dev_spec_op(gx_device *pdev, int dev_spec_op, void *data, int size)
653
0
{
654
0
    gx_device_pdf14_accum *adev = (gx_device_pdf14_accum *)pdev;
655
656
0
    if (dev_spec_op == gxdso_device_child) {
657
0
        gxdso_device_child_request *req = (gxdso_device_child_request *)data;
658
0
        if (size < sizeof(*req))
659
0
            return gs_error_unknownerror;
660
0
        req->target = adev->save_p14dev;
661
0
        req->n = 0;
662
0
        return 0;
663
0
    }
664
665
0
    return gdev_prn_dev_spec_op(pdev, dev_spec_op, data, size);
666
0
}
667
668
gs_private_st_suffix_add1_final(st_gx_devn_accum_device, gx_device_pdf14_accum,
669
        "gx_device_pdf14_accum", pdf14_accum_device_enum_ptrs, pdf14_accum_device_reloc_ptrs,
670
                          gx_devn_prn_device_finalize, st_gx_devn_prn_device, save_p14dev);
671
672
static void
673
pdf14_accum_Gray_initialize_device_procs(gx_device *dev)
674
0
{
675
0
    gdev_prn_initialize_device_procs_gray8(dev);
676
677
0
    set_dev_proc(dev, encode_color, gx_default_8bit_map_gray_color);
678
0
    set_dev_proc(dev, decode_color, gx_default_8bit_map_color_gray);
679
0
}
680
681
const gx_device_pdf14_accum pdf14_accum_Gray = {
682
    prn_device_stype_body(gx_device_pdf14_accum,
683
                          pdf14_accum_Gray_initialize_device_procs,
684
                          "pdf14-accum-Gray",
685
                          &st_gx_devn_accum_device,
686
                          0/*width*/, 0/*height*/, 300/*xdpi*/, 300/*ydpi*/,
687
                          0/*lm*/, 0/*bm*/, 0/*rm*/, 0/*tm*/,
688
                          1/*ncomp*/, 8/*depth*/, 255/*max_gray*/, 0/*max_color*/,
689
                          256/*dither_grays*/, 0/*dither_colors*/,
690
                          no_print_page),
691
    { 0 },      /* devn_params - not used */
692
    { 0 },      /* equivalent_cmyk_color_params - not used */
693
    0/*save_p14dev*/
694
};
695
696
static void
697
pdf14_accum_RGB_initialize_device_procs(gx_device *dev)
698
0
{
699
0
    gdev_prn_initialize_device_procs_rgb(dev);
700
0
}
701
702
const gx_device_pdf14_accum pdf14_accum_RGB = {
703
    prn_device_stype_body(gx_device_pdf14_accum,
704
                          pdf14_accum_RGB_initialize_device_procs,
705
                          "pdf14-accum-RGB",
706
                          &st_gx_devn_accum_device,
707
                          0/*width*/, 0/*height*/, 300/*xdpi*/, 300/*ydpi*/,
708
                          0/*lm*/, 0/*bm*/, 0/*rm*/, 0/*tm*/,
709
                          3/*ncomp*/, 24/*depth*/, 0/*max_gray*/, 255/*max_color*/,
710
                          1/*dither_grays*/, 256/*dither_colors*/,
711
                          no_print_page),
712
    { 0 },      /* devn_params - not used */
713
    { 0 },      /* equivalent_cmyk_color_params - not used */
714
    0/*save_p14dev*/
715
};
716
717
static void
718
pdf14_accum_CMYK_initialize_device_procs(gx_device *dev)
719
0
{
720
0
    gdev_prn_initialize_device_procs_cmyk8(dev);
721
722
0
    set_dev_proc(dev, encode_color, cmyk_8bit_map_cmyk_color);
723
0
    set_dev_proc(dev, decode_color, cmyk_8bit_map_color_cmyk);
724
0
}
725
726
const gx_device_pdf14_accum pdf14_accum_CMYK = {
727
    prn_device_stype_body(gx_device_pdf14_accum,
728
                          pdf14_accum_CMYK_initialize_device_procs,
729
                          "pdf14-accum-CMYK",
730
                          &st_gx_devn_accum_device,
731
                          0/*width*/, 0/*height*/, 300/*xdpi*/, 300/*ydpi*/,
732
                          0/*lm*/, 0/*bm*/, 0/*rm*/, 0/*tm*/,
733
                          4/*ncomp*/, 32/*depth*/, 255/*max_gray*/, 255/*max_color*/,
734
                          256/*dither_grays*/, 256/*dither_colors*/,
735
                          no_print_page),
736
    { 0 },      /* devn_params - not used */
737
    { 0 },      /* equivalent_cmyk_color_params - not used */
738
    0/*save_p14dev*/
739
};
740
741
static void
742
pdf14_accum_initialize_device_procs_cmykspot(gx_device *dev)
743
0
{
744
0
    pdf14_accum_CMYK_initialize_device_procs(dev);
745
746
0
    set_dev_proc(dev, get_color_mapping_procs, pdf14_accum_get_color_mapping_procs);
747
0
    set_dev_proc(dev, get_color_comp_index, pdf14_accum_get_color_comp_index);
748
0
    set_dev_proc(dev, update_spot_equivalent_colors, pdf14_accum_update_spot_equivalent_colors);
749
0
    set_dev_proc(dev, ret_devn_params, pdf14_accum_ret_devn_params);
750
0
}
751
752
const gx_device_pdf14_accum pdf14_accum_CMYKspot = {
753
    prn_device_stype_body(gx_device_pdf14_accum,
754
                          pdf14_accum_initialize_device_procs_cmykspot,
755
                          "pdf14-accum-CMYKspot",
756
                          &st_gx_devn_accum_device,
757
                          0/*width*/, 0/*height*/, 300/*xdpi*/, 300/*ydpi*/,
758
                          0/*lm*/, 0/*bm*/, 0/*rm*/, 0/*tm*/,
759
                          4/*ncomp*/, 32/*depth*/, 255/*max_gray*/, 255/*max_color*/,
760
                          256/*dither_grays*/, 256/*dither_colors*/,
761
                          no_print_page),
762
    /* DeviceN parameters */
763
    { 8,      /* Not used - Bits per color */
764
      DeviceCMYKComponents, /* Names of color model colorants */
765
      4,      /* Number colorants for CMYK */
766
      0,      /* MaxSeparations has not been specified */
767
      -1,     /* PageSpotColors has not been specified */
768
      { 0 },      /* SeparationNames */
769
      0,      /* SeparationOrder names */
770
      {0, 1, 2, 3, 4, 5, 6, 7 } /* Initial component SeparationOrder */
771
    },
772
    { true },     /* equivalent_cmyk_color_params */
773
    0/*save_p14dev*/
774
};
775
776
/* GC procedures */
777
static
778
0
ENUM_PTRS_WITH(pdf14_device_enum_ptrs, pdf14_device *pdev)
779
0
{
780
0
    index -= 5;
781
0
    if (index < pdev->devn_params.separations.num_separations)
782
0
        ENUM_RETURN(pdev->devn_params.separations.names[index].data);
783
0
    index -= pdev->devn_params.separations.num_separations;
784
0
    if (index < pdev->devn_params.pdf14_separations.num_separations)
785
0
        ENUM_RETURN(pdev->devn_params.pdf14_separations.names[index].data);
786
0
    return 0;
787
0
}
788
0
case 0: return ENUM_OBJ(pdev->ctx);
789
0
case 1: return ENUM_OBJ(pdev->color_model_stack);
790
0
case 2: return ENUM_OBJ(pdev->smaskcolor);
791
0
case 3: ENUM_RETURN(gx_device_enum_ptr(pdev->target));
792
0
case 4: ENUM_RETURN(gx_device_enum_ptr(pdev->pclist_device));
793
0
ENUM_PTRS_END
794
795
0
static  RELOC_PTRS_WITH(pdf14_device_reloc_ptrs, pdf14_device *pdev)
796
0
{
797
0
    {
798
0
        int i;
799
800
0
        for (i = 0; i < pdev->devn_params.separations.num_separations; ++i) {
801
0
            RELOC_PTR(pdf14_device, devn_params.separations.names[i].data);
802
0
        }
803
0
    }
804
0
    RELOC_VAR(pdev->ctx);
805
0
    RELOC_VAR(pdev->smaskcolor);
806
0
    RELOC_VAR(pdev->color_model_stack);
807
0
    pdev->target = gx_device_reloc_ptr(pdev->target, gcst);
808
0
    pdev->pclist_device = gx_device_reloc_ptr(pdev->pclist_device, gcst);
809
0
}
810
0
RELOC_PTRS_END
811
812
/* ------ Private definitions ------ */
813
814
static void
815
resolve_matte(pdf14_buf *maskbuf, byte *src_data, int src_planestride, int src_rowstride,
816
              int width, int height, cmm_profile_t *src_profile, int deep)
817
0
{
818
0
    if (deep) {
819
0
        int x, y, i;
820
0
        uint16_t *mask_row_ptr  = (uint16_t *)maskbuf->data;
821
0
        uint16_t *src_row_ptr   = (uint16_t *)src_data;
822
0
        uint16_t *mask_tr_fn    = (uint16_t *)maskbuf->transfer_fn;
823
824
0
        src_planestride >>= 1;
825
0
        src_rowstride >>= 1;
826
827
0
        for (y = 0; y < height; y++) {
828
0
            uint16_t *mask_curr_ptr = mask_row_ptr;
829
0
            uint16_t *src_curr_ptr = src_row_ptr;
830
0
            for (x = 0; x < width; x++) {
831
0
                uint16_t idx = *mask_curr_ptr;
832
0
                byte     top = idx>>8;
833
0
                uint16_t a   = mask_tr_fn[top];
834
0
                int      b   = mask_tr_fn[top+1]-a;
835
0
                uint16_t matte_alpha = a + ((0x80 + b*(idx & 0xff))>>8);
836
837
                /* matte's happen rarely enough that we allow ourselves to
838
                 * resort to 64bit here. */
839
0
                if (matte_alpha != 0 && matte_alpha != 0xffff) {
840
0
                    for (i = 0; i < src_profile->num_comps; i++) {
841
0
                        int val = src_curr_ptr[i * src_planestride] - maskbuf->matte[i];
842
0
                        int temp = (((int64_t)val) * 0xffff / matte_alpha) + maskbuf->matte[i];
843
844
                        /* clip */
845
0
                        if (temp > 0xffff)
846
0
                            src_curr_ptr[i * src_planestride] = 0xffff;
847
0
                        else if (temp < 0)
848
0
                            src_curr_ptr[i * src_planestride] = 0;
849
0
                        else
850
0
                            src_curr_ptr[i * src_planestride] = temp;
851
0
                    }
852
0
                }
853
0
                mask_curr_ptr++;
854
0
                src_curr_ptr++;
855
0
            }
856
0
            src_row_ptr += src_rowstride;
857
0
            mask_row_ptr += (maskbuf->rowstride>>1);
858
0
        }
859
0
    } else {
860
0
        int x, y, i;
861
0
        byte *mask_row_ptr  = maskbuf->data;
862
0
        byte *src_row_ptr   = src_data;
863
0
        byte *mask_tr_fn    = maskbuf->transfer_fn;
864
865
0
        for (y = 0; y < height; y++) {
866
0
            byte *mask_curr_ptr = mask_row_ptr;
867
0
            byte *src_curr_ptr = src_row_ptr;
868
0
            for (x = 0; x < width; x++) {
869
0
                byte matte_alpha = mask_tr_fn[*mask_curr_ptr];
870
0
                if (matte_alpha != 0 && matte_alpha != 0xff) {
871
0
                    for (i = 0; i < src_profile->num_comps; i++) {
872
0
                        byte matte = maskbuf->matte[i]>>8;
873
0
                        int val = src_curr_ptr[i * src_planestride] - matte;
874
0
                        int temp = ((((val * 0xff) << 8) / matte_alpha) >> 8) + matte;
875
876
                        /* clip */
877
0
                        if (temp > 0xff)
878
0
                            src_curr_ptr[i * src_planestride] = 0xff;
879
0
                        else if (temp < 0)
880
0
                            src_curr_ptr[i * src_planestride] = 0;
881
0
                        else
882
0
                            src_curr_ptr[i * src_planestride] = temp;
883
0
                    }
884
0
                }
885
0
                mask_curr_ptr++;
886
0
                src_curr_ptr++;
887
0
            }
888
0
            src_row_ptr += src_rowstride;
889
0
            mask_row_ptr += maskbuf->rowstride;
890
0
        }
891
0
    }
892
0
}
893
894
/* Transform of color data and copy noncolor data.  Used in
895
   group pop and during the pdf14 put image calls when the blend color space
896
   is different than the target device color space.  The function will try do
897
   in-place conversion if possible.  If not, it will do an allocation.  The
898
   put_image call needs to know if an allocation was made so that it can adjust
899
   for the fact that we likely don't have a full page any longer and we don't
900
   need to do the offset to our data in the buffer. Bug 700686: If we are in
901
   a softmask that includes a matte entry, then we need to undo the matte
902
   entry here at this time in the image's native color space not the parent
903
   color space.   The endian_swap term here is only set to true if the data
904
   has been baked as BE during the put_image blending operation and we are
905
   on a LE machine.  */
906
static forceinline pdf14_buf*
907
template_transform_color_buffer(gs_gstate *pgs, pdf14_ctx *ctx, gx_device *dev,
908
    pdf14_buf *src_buf, byte *src_data, cmm_profile_t *src_profile,
909
    cmm_profile_t *des_profile, int x0, int y0, int width, int height, bool *did_alloc,
910
    bool has_matte, bool deep, bool endian_swap)
911
11.2k
{
912
11.2k
    gsicc_rendering_param_t rendering_params;
913
11.2k
    gsicc_link_t *icc_link;
914
11.2k
    gsicc_bufferdesc_t src_buff_desc;
915
11.2k
    gsicc_bufferdesc_t des_buff_desc;
916
11.2k
    int src_planestride = src_buf->planestride;
917
11.2k
    int src_rowstride = src_buf->rowstride;
918
11.2k
    int src_n_planes = src_buf->n_planes;
919
11.2k
    int src_n_chan = src_buf->n_chan;
920
11.2k
    int des_planestride = src_planestride;
921
11.2k
    int des_rowstride = src_rowstride;
922
11.2k
    int des_n_planes = src_n_planes;
923
11.2k
    int des_n_chan = src_n_chan;
924
11.2k
    int diff;
925
11.2k
    int k, j;
926
11.2k
    byte *des_data = NULL;
927
11.2k
    pdf14_buf *output = src_buf;
928
11.2k
    pdf14_mask_t *mask_stack;
929
11.2k
    pdf14_buf *maskbuf;
930
11.2k
    int code;
931
932
11.2k
    *did_alloc = false;
933
934
    /* Same profile */
935
11.2k
    if (gsicc_get_hash(src_profile) == gsicc_get_hash(des_profile))
936
0
        return src_buf;
937
938
    /* Define the rendering intent get the link */
939
11.2k
    rendering_params.black_point_comp = gsBLACKPTCOMP_ON;
940
11.2k
    rendering_params.graphics_type_tag = GS_IMAGE_TAG;
941
11.2k
    rendering_params.override_icc = false;
942
11.2k
    rendering_params.preserve_black = gsBKPRESNOTSPECIFIED;
943
11.2k
    rendering_params.rendering_intent = gsRELATIVECOLORIMETRIC;  /* Use relative intent */
944
11.2k
    rendering_params.cmm = gsCMM_DEFAULT;
945
11.2k
    icc_link = gsicc_get_link_profile(pgs, dev, src_profile, des_profile,
946
11.2k
        &rendering_params, pgs->memory, false);
947
11.2k
    if (icc_link == NULL)
948
0
        return NULL;
949
950
    /* If different data sizes, we have to do an allocation */
951
11.2k
    diff = des_profile->num_comps - src_profile->num_comps;
952
11.2k
    if (diff != 0) {
953
11.2k
        byte *src_ptr;
954
11.2k
        byte *des_ptr;
955
956
11.2k
        *did_alloc = true;
957
11.2k
        des_rowstride = ((width + 3) & -4)<<deep;
958
11.2k
        des_planestride = height * des_rowstride;
959
11.2k
        des_n_planes = src_n_planes + diff;
960
11.2k
        des_n_chan = src_n_chan + diff;
961
11.2k
        des_data = gs_alloc_bytes(ctx->memory,
962
11.2k
                                  (size_t)des_planestride * des_n_planes + CAL_SLOP,
963
11.2k
                                  "pdf14_transform_color_buffer");
964
11.2k
        if (des_data == NULL)
965
0
            return NULL;
966
967
        /* Copy over the noncolor planes. May only be a dirty part, so have
968
           to copy row by row */
969
11.2k
        src_ptr = src_data;
970
11.2k
        des_ptr = des_data;
971
122k
        for (j = 0; j < height; j++) {
972
222k
            for (k = 0; k < (src_n_planes - src_profile->num_comps); k++) {
973
111k
                memcpy(des_ptr + des_planestride * (k + des_profile->num_comps),
974
111k
                       src_ptr + src_planestride * (k + src_profile->num_comps),
975
111k
                       width<<deep);
976
111k
            }
977
110k
            src_ptr += src_rowstride;
978
110k
            des_ptr += des_rowstride;
979
110k
        }
980
11.2k
    } else
981
0
        des_data = src_data;
982
983
    /* Set up the buffer descriptors. */
984
11.2k
    gsicc_init_buffer(&src_buff_desc, src_profile->num_comps, 1<<deep, false,
985
11.2k
                      false, true, src_planestride, src_rowstride, height, width);
986
11.2k
    gsicc_init_buffer(&des_buff_desc, des_profile->num_comps, 1<<deep, false,
987
11.2k
                      false, true, des_planestride, des_rowstride, height, width);
988
989
11.2k
    src_buff_desc.endian_swap = endian_swap;
990
11.2k
    des_buff_desc.endian_swap = endian_swap;
991
992
    /* If we have a matte entry, undo the pre-blending now.  Also set pdf14
993
       context to ensure that this is not done again during the group
994
       composition */
995
11.2k
    if (has_matte &&
996
        /* Should always happen, but check for safety */
997
11.2k
        ((mask_stack = ctx->mask_stack) != NULL) &&
998
11.2k
        ((maskbuf = mask_stack->rc_mask->mask_buf) != NULL) &&
999
11.2k
         (maskbuf->data != NULL))
1000
0
    {
1001
0
        resolve_matte(maskbuf, src_data, src_planestride, src_rowstride, width, height, src_profile, deep);
1002
0
    }
1003
1004
    /* Transform the data. Since the pdf14 device should be using RGB, CMYK or
1005
       Gray buffers, this transform does not need to worry about the cmap procs
1006
       of the target device. */
1007
11.2k
    code = (icc_link->procs.map_buffer)(dev, icc_link, &src_buff_desc, &des_buff_desc,
1008
11.2k
        src_data, des_data);
1009
11.2k
    gsicc_release_link(icc_link);
1010
11.2k
    if (code < 0)
1011
0
        return NULL;
1012
1013
11.2k
    output->planestride = des_planestride;
1014
11.2k
    output->rowstride = des_rowstride;
1015
11.2k
    output->n_planes = des_n_planes;
1016
11.2k
    output->n_chan = des_n_chan;
1017
    /* If not in-place conversion, then release. */
1018
11.2k
    if (des_data != src_data) {
1019
11.2k
        gs_free_object(ctx->memory, output->data,
1020
11.2k
            "pdf14_transform_color_buffer");
1021
11.2k
        output->data = des_data;
1022
        /* Note, this is needed for case where we did a put image, as the
1023
           resulting transformed buffer may not be a full page. */
1024
11.2k
        output->rect.p.x = x0;
1025
11.2k
        output->rect.p.y = y0;
1026
11.2k
        output->rect.q.x = x0 + width;
1027
11.2k
        output->rect.q.y = y0 + height;
1028
11.2k
    }
1029
11.2k
    return output;
1030
11.2k
}
1031
1032
/* This is a routine to do memset's but with 16 bit values.
1033
 * Note, that we still take bytes, NOT "num values to set".
1034
 * We assume dest is 16 bit aligned. We assume that bytes is
1035
 * a multiple of 2. */
1036
static void gs_memset16(byte *dest_, uint16_t value, int bytes)
1037
0
{
1038
0
    uint16_t *dest = (uint16_t *)(void *)dest_;
1039
0
    uint32_t v;
1040
0
    if (bytes < 0)
1041
0
        return;
1042
0
    if (((intptr_t)dest) & 2) {
1043
0
        *dest++ = value;
1044
0
        bytes--;
1045
0
        if (bytes == 0)
1046
0
            return;
1047
0
    }
1048
0
    v = value | (value<<16);
1049
0
    bytes -= 2;
1050
0
    while (bytes > 0) {
1051
0
        *(uint32_t *)dest = v;
1052
0
        dest += 2;
1053
0
        bytes -= 4;
1054
0
    }
1055
0
    bytes += 2;
1056
0
    if (bytes & 2) {
1057
0
        *dest = value;
1058
0
    }
1059
0
}
1060
1061
static pdf14_buf*
1062
pdf14_transform_color_buffer_no_matte(gs_gstate *pgs, pdf14_ctx *ctx, gx_device *dev,
1063
    pdf14_buf *src_buf, byte *src_data, cmm_profile_t *src_profile,
1064
    cmm_profile_t *des_profile, int x0, int y0, int width, int height, bool *did_alloc,
1065
    bool deep, bool endian_swap)
1066
11.2k
{
1067
11.2k
    if (deep)
1068
0
        return template_transform_color_buffer(pgs, ctx, dev, src_buf, src_data, src_profile,
1069
0
            des_profile, x0, y0, width, height, did_alloc, false, true, endian_swap);
1070
11.2k
    else
1071
11.2k
        return template_transform_color_buffer(pgs, ctx, dev, src_buf, src_data, src_profile,
1072
11.2k
            des_profile, x0, y0, width, height, did_alloc, false, false, endian_swap);
1073
11.2k
}
1074
1075
static pdf14_buf*
1076
pdf14_transform_color_buffer_with_matte(gs_gstate *pgs, pdf14_ctx *ctx, gx_device *dev,
1077
    pdf14_buf *src_buf, byte *src_data, cmm_profile_t *src_profile,
1078
    cmm_profile_t *des_profile, int x0, int y0, int width, int height, bool *did_alloc,
1079
    bool deep, bool endian_swap)
1080
0
{
1081
0
    if (deep)
1082
0
        return template_transform_color_buffer(pgs, ctx, dev, src_buf, src_data, src_profile,
1083
0
            des_profile, x0, y0, width, height, did_alloc, true, true, endian_swap);
1084
0
    else
1085
0
        return template_transform_color_buffer(pgs, ctx, dev, src_buf, src_data, src_profile,
1086
0
            des_profile, x0, y0, width, height, did_alloc, true, false, endian_swap);
1087
0
}
1088
1089
/**
1090
 * pdf14_buf_new: Allocate a new PDF 1.4 buffer.
1091
 * @n_chan: Number of pixel channels including alpha, but not including
1092
 * shape, group alpha, or tags.
1093
 *
1094
 * Return value: Newly allocated buffer, or NULL on failure.
1095
 **/
1096
static  pdf14_buf *
1097
pdf14_buf_new(gs_int_rect *rect, bool has_tags, bool has_alpha_g,
1098
              bool has_shape, bool idle, int n_chan, int num_spots,
1099
              gs_memory_t *memory, bool deep)
1100
192k
{
1101
1102
    /* Note that alpha_g is the alpha for the GROUP */
1103
    /* This is distinct from the alpha that may also exist */
1104
    /* for the objects within the group.  Hence it can introduce */
1105
    /* yet another plane */
1106
1107
192k
    pdf14_buf *result;
1108
192k
    int rowstride = ((rect->q.x - rect->p.x + 3) & -4)<<deep;
1109
192k
    int height = (rect->q.y - rect->p.y);
1110
192k
    int n_planes = n_chan + (has_shape ? 1 : 0) + (has_alpha_g ? 1 : 0) +
1111
192k
                   (has_tags ? 1 : 0);
1112
192k
    int planestride;
1113
192k
    double dsize = (((double) rowstride) * height) * n_planes;
1114
1115
192k
    if (dsize > (double)max_uint)
1116
0
      return NULL;
1117
1118
192k
    result = gs_alloc_struct(memory, pdf14_buf, &st_pdf14_buf,
1119
192k
                             "pdf14_buf_new");
1120
192k
    if (result == NULL)
1121
0
        return result;
1122
1123
192k
    result->memory = memory;
1124
192k
    result->backdrop = NULL;
1125
192k
    result->saved = NULL;
1126
192k
    result->isolated = false;
1127
192k
    result->knockout = false;
1128
192k
    result->has_alpha_g = has_alpha_g;
1129
192k
    result->has_shape = has_shape;
1130
192k
    result->has_tags = has_tags;
1131
192k
    result->rect = *rect;
1132
192k
    result->n_chan = n_chan;
1133
192k
    result->n_planes = n_planes;
1134
192k
    result->rowstride = rowstride;
1135
192k
    result->transfer_fn = NULL;
1136
192k
    result->is_ident = true;
1137
192k
    result->matte_num_comps = 0;
1138
192k
    result->matte = NULL;
1139
192k
    result->mask_stack = NULL;
1140
192k
    result->idle = idle;
1141
192k
    result->mask_id = 0;
1142
192k
    result->num_spots = num_spots;
1143
192k
    result->deep = deep;
1144
192k
    result->page_group = false;
1145
192k
    result->group_color_info = NULL;
1146
192k
    result->group_popped = false;
1147
1148
192k
    if (idle || height <= 0) {
1149
        /* Empty clipping - will skip all drawings. */
1150
100k
        result->planestride = 0;
1151
100k
        result->data = 0;
1152
100k
    } else {
1153
91.9k
        planestride = rowstride * height;
1154
91.9k
        result->planestride = planestride;
1155
91.9k
        result->data = gs_alloc_bytes(memory,
1156
91.9k
                                      (size_t)planestride * n_planes + CAL_SLOP,
1157
91.9k
                                      "pdf14_buf_new");
1158
91.9k
        if (result->data == NULL) {
1159
0
            gs_free_object(memory, result, "pdf14_buf_new");
1160
0
            return NULL;
1161
0
        }
1162
91.9k
        if (has_alpha_g) {
1163
10.5k
            int alpha_g_plane = n_chan + (has_shape ? 1 : 0);
1164
            /* Memsetting by 0, so this copes with the deep case too */
1165
10.5k
            memset(result->data + alpha_g_plane * planestride, 0, planestride);
1166
10.5k
        }
1167
91.9k
        if (has_tags) {
1168
0
            int tags_plane = n_chan + (has_shape ? 1 : 0) + (has_alpha_g ? 1 : 0);
1169
            /* Memsetting by 0, so this copes with the deep case too */
1170
0
            memset (result->data + tags_plane * planestride,
1171
0
                    GS_UNTOUCHED_TAG, planestride);
1172
0
        }
1173
91.9k
    }
1174
    /* Initialize dirty box with an invalid rectangle (the reversed rectangle).
1175
     * Any future drawing will make it valid again, so we won't blend back
1176
     * more than we need. */
1177
192k
    result->dirty.p.x = rect->q.x;
1178
192k
    result->dirty.p.y = rect->q.y;
1179
192k
    result->dirty.q.x = rect->p.x;
1180
192k
    result->dirty.q.y = rect->p.y;
1181
192k
    return result;
1182
192k
}
1183
1184
static  void
1185
pdf14_buf_free(pdf14_buf *buf)
1186
192k
{
1187
192k
    pdf14_group_color_t *group_color_info = buf->group_color_info;
1188
192k
    gs_memory_t *memory = buf->memory;
1189
1190
192k
    if (buf->mask_stack && buf->mask_stack->rc_mask)
1191
192k
        rc_decrement(buf->mask_stack->rc_mask, "pdf14_buf_free");
1192
1193
192k
    gs_free_object(memory, buf->mask_stack, "pdf14_buf_free");
1194
192k
    gs_free_object(memory, buf->transfer_fn, "pdf14_buf_free");
1195
192k
    gs_free_object(memory, buf->matte, "pdf14_buf_free");
1196
192k
    gs_free_object(memory, buf->data, "pdf14_buf_free");
1197
1198
385k
    while (group_color_info) {
1199
192k
       if (group_color_info->icc_profile != NULL) {
1200
192k
           gsicc_adjust_profile_rc(group_color_info->icc_profile, -1, "pdf14_buf_free");
1201
192k
       }
1202
192k
       buf->group_color_info = group_color_info->previous;
1203
192k
       gs_free_object(memory, group_color_info, "pdf14_buf_free");
1204
192k
       group_color_info = buf->group_color_info;
1205
192k
    }
1206
1207
192k
    gs_free_object(memory, buf->backdrop, "pdf14_buf_free");
1208
192k
    gs_free_object(memory, buf, "pdf14_buf_free");
1209
192k
}
1210
1211
static void
1212
rc_pdf14_maskbuf_free(gs_memory_t * mem, void *ptr_in, client_name_t cname)
1213
128k
{
1214
    /* Ending the mask buffer. */
1215
128k
    pdf14_rcmask_t *rcmask = (pdf14_rcmask_t * ) ptr_in;
1216
    /* free the pdf14 buffer. */
1217
128k
    if ( rcmask->mask_buf != NULL ){
1218
10.3k
        pdf14_buf_free(rcmask->mask_buf);
1219
10.3k
    }
1220
128k
    gs_free_object(mem, rcmask, "rc_pdf14_maskbuf_free");
1221
128k
}
1222
1223
static  pdf14_rcmask_t *
1224
pdf14_rcmask_new(gs_memory_t *memory)
1225
128k
{
1226
128k
    pdf14_rcmask_t *result;
1227
1228
128k
    result = gs_alloc_struct(memory, pdf14_rcmask_t, &st_pdf14_rcmask,
1229
128k
                             "pdf14_maskbuf_new");
1230
128k
    if (result == NULL)
1231
0
        return NULL;
1232
128k
    rc_init_free(result, memory, 1, rc_pdf14_maskbuf_free);
1233
128k
    result->mask_buf = NULL;
1234
128k
    result->memory = memory;
1235
128k
    return result;
1236
128k
}
1237
1238
static  pdf14_ctx *
1239
pdf14_ctx_new(gx_device *dev, bool deep)
1240
99.4k
{
1241
99.4k
    pdf14_ctx *result;
1242
99.4k
    gs_memory_t *memory = dev->memory->stable_memory;
1243
1244
99.4k
    result = gs_alloc_struct(memory, pdf14_ctx, &st_pdf14_ctx, "pdf14_ctx_new");
1245
99.4k
    if (result == NULL)
1246
0
        return result;
1247
99.4k
    result->stack = NULL;
1248
99.4k
    result->mask_stack = pdf14_mask_element_new(memory);
1249
99.4k
    result->mask_stack->rc_mask = pdf14_rcmask_new(memory);
1250
99.4k
    result->memory = memory;
1251
99.4k
    result->smask_depth = 0;
1252
99.4k
    result->smask_blend = false;
1253
99.4k
    result->deep = deep;
1254
99.4k
    result->base_color = NULL;
1255
99.4k
    return result;
1256
99.4k
}
1257
1258
static  void
1259
pdf14_ctx_free(pdf14_ctx *ctx)
1260
99.4k
{
1261
99.4k
    pdf14_buf *buf, *next;
1262
1263
99.4k
    if (ctx->base_color) {
1264
31.0k
       gsicc_adjust_profile_rc(ctx->base_color->icc_profile, -1, "pdf14_ctx_free");
1265
31.0k
        gs_free_object(ctx->memory, ctx->base_color, "pdf14_ctx_free");
1266
31.0k
    }
1267
99.4k
    if (ctx->mask_stack) {
1268
        /* A mask was created but was not used in this band. */
1269
68.4k
        rc_decrement(ctx->mask_stack->rc_mask, "pdf14_ctx_free");
1270
68.4k
        gs_free_object(ctx->memory, ctx->mask_stack, "pdf14_ctx_free");
1271
68.4k
    }
1272
164k
    for (buf = ctx->stack; buf != NULL; buf = next) {
1273
65.3k
        next = buf->saved;
1274
65.3k
        pdf14_buf_free(buf);
1275
65.3k
    }
1276
99.4k
    gs_free_object (ctx->memory, ctx, "pdf14_ctx_free");
1277
99.4k
}
1278
1279
/**
1280
 * pdf14_find_backdrop_buf: Find backdrop buffer.
1281
 *
1282
 * Return value: Backdrop buffer for current group operation, or NULL
1283
 * if backdrop is fully transparent.
1284
 **/
1285
static  pdf14_buf *
1286
pdf14_find_backdrop_buf(pdf14_ctx *ctx, bool *is_backdrop)
1287
38.0k
{
1288
    /* Our new buffer is buf */
1289
38.0k
    pdf14_buf *buf = ctx->stack;
1290
1291
38.0k
    *is_backdrop = false;
1292
1293
38.0k
    if (buf != NULL) {
1294
        /* If the new buffer is isolated there is no backdrop */
1295
38.0k
        if (buf->isolated) return NULL;
1296
1297
        /* If the previous buffer is a knockout group
1298
           then we need to use its backdrop as the backdrop. If
1299
           it was isolated then that back drop was NULL */
1300
10.5k
        if (buf->saved != NULL && buf->saved->knockout) {
1301
            /* Per the spec, if we have a non-isolated group
1302
               in a knockout group the non-isolated group
1303
               uses the backdrop of its parent group (the knockout group)
1304
               as its own backdrop.  The non-isolated group must
1305
               go through the standard re-composition operation
1306
               to avoid the double application of the backdrop */
1307
0
            *is_backdrop = true;
1308
0
            return buf->saved;
1309
0
        }
1310
        /* This should be the non-isolated case where its parent is
1311
           not a knockout */
1312
10.5k
        if (buf->saved != NULL) {
1313
10.5k
            return buf->saved;
1314
10.5k
        }
1315
10.5k
    }
1316
0
    return NULL;
1317
38.0k
}
1318
1319
static pdf14_group_color_t*
1320
pdf14_make_base_group_color(gx_device* dev)
1321
31.0k
{
1322
31.0k
    pdf14_device* pdev = (pdf14_device*)dev;
1323
31.0k
    pdf14_group_color_t* group_color;
1324
31.0k
    bool deep = pdev->ctx->deep;
1325
31.0k
    bool has_tags = device_encodes_tags(dev);
1326
1327
31.0k
    if_debug0m('v', dev->memory, "[v]pdf14_make_base_group_color\n");
1328
1329
31.0k
    group_color = gs_alloc_struct(pdev->ctx->memory,
1330
31.0k
        pdf14_group_color_t, &st_pdf14_clr,
1331
31.0k
        "pdf14_make_base_group_color");
1332
1333
31.0k
    if (group_color == NULL)
1334
0
        return NULL;
1335
31.0k
    memset(group_color, 0, sizeof(pdf14_group_color_t));
1336
1337
31.0k
    group_color->num_std_colorants = pdev->num_std_colorants;
1338
31.0k
    group_color->blend_procs = pdev->blend_procs;
1339
31.0k
    group_color->polarity = pdev->color_info.polarity;
1340
31.0k
    group_color->num_components = pdev->color_info.num_components - has_tags;
1341
31.0k
    group_color->isadditive = pdev->ctx->additive;
1342
31.0k
    group_color->unpack_procs = pdev->pdf14_procs;
1343
31.0k
    group_color->max_color = pdev->color_info.max_color = deep ? 65535 : 255;
1344
31.0k
    group_color->max_gray = pdev->color_info.max_gray = deep ? 65535 : 255;
1345
31.0k
    group_color->depth = pdev->color_info.depth;
1346
31.0k
    group_color->decode = dev_proc(pdev, decode_color);
1347
31.0k
    group_color->encode = dev_proc(pdev, encode_color);
1348
31.0k
    group_color->group_color_mapping_procs = dev_proc(pdev, get_color_mapping_procs);
1349
31.0k
    group_color->group_color_comp_index = dev_proc(pdev, get_color_comp_index);
1350
31.0k
    memcpy(&(group_color->comp_bits), &(pdev->color_info.comp_bits),
1351
31.0k
        GX_DEVICE_COLOR_MAX_COMPONENTS);
1352
31.0k
    memcpy(&(group_color->comp_shift), &(pdev->color_info.comp_shift),
1353
31.0k
        GX_DEVICE_COLOR_MAX_COMPONENTS);
1354
31.0k
    group_color->get_cmap_procs = pdf14_get_cmap_procs;
1355
31.0k
    group_color->icc_profile =
1356
31.0k
        pdev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE];
1357
31.0k
    gsicc_adjust_profile_rc(group_color->icc_profile, 1, "pdf14_make_base_group_color");
1358
1359
31.0k
    return group_color;
1360
31.0k
}
1361
1362
/* This wil create the first buffer when we have
1363
   either the first drawing operation or transparency
1364
   group push.  At that time, the color space in which
1365
   we are going to be doing the alpha blend will be known. */
1366
static int
1367
pdf14_initialize_ctx(gx_device* dev, const gs_gstate* pgs)
1368
25.9M
{
1369
25.9M
    pdf14_device *pdev = (pdf14_device *)dev;
1370
25.9M
    bool has_tags = device_encodes_tags(dev);
1371
25.9M
    int n_chan = pdev->color_info.num_components - has_tags;
1372
25.9M
    bool additive = pdev->color_info.polarity != GX_CINFO_POLARITY_SUBTRACTIVE;
1373
25.9M
    int num_spots = pdev->ctx->num_spots;
1374
25.9M
    pdf14_buf* buf;
1375
25.9M
    gs_memory_t* memory = dev->memory->stable_memory;
1376
1377
    /* Check for a blank idle group as a base group */
1378
25.9M
    if (pdev->ctx->stack != NULL && pdev->ctx->stack->group_popped &&
1379
25.9M
        pdev->ctx->stack->idle) {
1380
0
        pdf14_buf_free(pdev->ctx->stack);
1381
0
        pdev->ctx->stack = NULL;
1382
0
    }
1383
1384
25.9M
    if (pdev->ctx->stack != NULL)
1385
25.8M
        return 0;
1386
1387
25.9M
    if_debug2m('v', dev->memory, "[v]pdf14_initialize_ctx: width = %d, height = %d\n",
1388
40.8k
        dev->width, dev->height);
1389
1390
40.8k
    buf = pdf14_buf_new(&(pdev->ctx->rect), has_tags, false, false, false, n_chan + 1,
1391
40.8k
        num_spots, memory, pdev->ctx->deep);
1392
40.8k
    if (buf == NULL) {
1393
0
        return gs_error_VMerror;
1394
0
    }
1395
40.8k
    if_debug5m('v', memory,
1396
40.8k
        "[v]base buf: %d x %d, %d color channels, %d planes, deep=%d\n",
1397
40.8k
        buf->rect.q.x, buf->rect.q.y, buf->n_chan, buf->n_planes, pdev->ctx->deep);
1398
1399
40.8k
    memset(buf->data, 0, (size_t)buf->planestride * (buf->n_planes - !!has_tags));
1400
40.8k
    buf->saved = NULL;
1401
40.8k
    pdev->ctx->stack = buf;
1402
40.8k
    pdev->ctx->additive = additive;
1403
1404
    /* Every buffer needs group color information including the base
1405
       one that is created for when we have no group */
1406
40.8k
    buf->group_color_info = gs_alloc_struct(pdev->memory->stable_memory,
1407
40.8k
            pdf14_group_color_t, &st_pdf14_clr, "pdf14_initialize_ctx");
1408
40.8k
    if (buf->group_color_info == NULL)
1409
0
        return gs_error_VMerror;
1410
1411
40.8k
    if (pgs != NULL)
1412
38.2k
        buf->group_color_info->get_cmap_procs = pgs->get_cmap_procs;
1413
2.59k
    else
1414
2.59k
        buf->group_color_info->get_cmap_procs = pdf14_get_cmap_procs;
1415
1416
40.8k
    buf->group_color_info->group_color_mapping_procs =
1417
40.8k
        dev_proc(pdev, get_color_mapping_procs);
1418
40.8k
    buf->group_color_info->group_color_comp_index =
1419
40.8k
        dev_proc(pdev, get_color_comp_index);
1420
40.8k
    buf->group_color_info->blend_procs = pdev->blend_procs;
1421
40.8k
    buf->group_color_info->polarity = pdev->color_info.polarity;
1422
40.8k
    buf->group_color_info->num_components = pdev->color_info.num_components - has_tags;
1423
40.8k
    buf->group_color_info->isadditive = pdev->ctx->additive;
1424
40.8k
    buf->group_color_info->unpack_procs = pdev->pdf14_procs;
1425
40.8k
    buf->group_color_info->depth = pdev->color_info.depth;
1426
40.8k
    buf->group_color_info->max_color = pdev->color_info.max_color;
1427
40.8k
    buf->group_color_info->max_gray = pdev->color_info.max_gray;
1428
40.8k
    buf->group_color_info->encode = dev_proc(pdev, encode_color);
1429
40.8k
    buf->group_color_info->decode = dev_proc(pdev, decode_color);
1430
40.8k
    memcpy(&(buf->group_color_info->comp_bits), &(pdev->color_info.comp_bits),
1431
40.8k
        GX_DEVICE_COLOR_MAX_COMPONENTS);
1432
40.8k
    memcpy(&(buf->group_color_info->comp_shift), &(pdev->color_info.comp_shift),
1433
40.8k
        GX_DEVICE_COLOR_MAX_COMPONENTS);
1434
40.8k
    buf->group_color_info->previous = NULL;  /* used during clist writing */
1435
40.8k
    buf->group_color_info->icc_profile =
1436
40.8k
        pdev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE];
1437
40.8k
    if (buf->group_color_info->icc_profile != NULL)
1438
40.8k
        gsicc_adjust_profile_rc(buf->group_color_info->icc_profile, 1, "pdf14_initialize_ctx");
1439
1440
40.8k
    return 0;
1441
40.8k
}
1442
1443
static pdf14_group_color_t*
1444
pdf14_clone_group_color_info(gx_device* pdev, pdf14_group_color_t* src)
1445
1.84k
{
1446
1.84k
    pdf14_group_color_t* des = gs_alloc_struct(pdev->memory->stable_memory,
1447
1.84k
        pdf14_group_color_t, &st_pdf14_clr, "pdf14_clone_group_color_info");
1448
1.84k
    if (des == NULL)
1449
0
        return NULL;
1450
1451
1.84k
    memcpy(des, src, sizeof(pdf14_group_color_t));
1452
1.84k
    if (des->icc_profile != NULL)
1453
1.84k
        gsicc_adjust_profile_rc(des->icc_profile, 1, "pdf14_clone_group_color_info");
1454
1.84k
    des->previous = NULL;  /* used during clist writing for state stack */
1455
1456
1.84k
    return des;
1457
1.84k
}
1458
1459
static  int
1460
pdf14_push_transparency_group(pdf14_ctx *ctx, gs_int_rect *rect, bool isolated,
1461
                              bool knockout, uint16_t alpha, uint16_t shape, uint16_t opacity,
1462
                              gs_blend_mode_t blend_mode, bool idle, uint mask_id,
1463
                              int numcomps, bool cm_back_drop, bool shade_group,
1464
                              cmm_profile_t *group_profile, cmm_profile_t *tos_profile,
1465
                              pdf14_group_color_t* group_color, gs_gstate *pgs,
1466
                              gx_device *dev)
1467
122k
{
1468
122k
    pdf14_buf *tos = ctx->stack;
1469
122k
    pdf14_buf *buf, * pdf14_backdrop;
1470
122k
    bool has_shape = false;
1471
122k
    bool is_backdrop;
1472
122k
    int num_spots;
1473
1474
122k
    if_debug1m('v', ctx->memory,
1475
122k
               "[v]pdf14_push_transparency_group, idle = %d\n", idle);
1476
1477
122k
    if (tos != NULL)
1478
97.5k
        has_shape = tos->has_shape || tos->knockout;
1479
1480
122k
    if (ctx->smask_depth > 0)
1481
164
        num_spots = 0;
1482
121k
    else
1483
121k
        num_spots = ctx->num_spots;
1484
1485
1486
122k
    buf = pdf14_buf_new(rect, ctx->has_tags, !isolated, has_shape, idle, numcomps + 1,
1487
122k
                        num_spots, ctx->memory, ctx->deep);
1488
122k
    if (buf == NULL)
1489
0
        return_error(gs_error_VMerror);
1490
1491
122k
    if_debug4m('v', ctx->memory,
1492
122k
        "[v]base buf: %d x %d, %d color channels, %d planes\n",
1493
122k
        buf->rect.q.x, buf->rect.q.y, buf->n_chan, buf->n_planes);
1494
122k
    buf->isolated = isolated;
1495
122k
    buf->knockout = knockout;
1496
122k
    buf->alpha = alpha;
1497
122k
    buf->shape = shape;
1498
122k
    buf->opacity = opacity;
1499
122k
    buf->blend_mode = blend_mode;
1500
122k
    buf->mask_id = mask_id;
1501
122k
    buf->mask_stack = ctx->mask_stack; /* Save because the group rendering may
1502
                                          set up another (nested) mask. */
1503
122k
    ctx->mask_stack = NULL; /* Clean the mask field for rendering this group.
1504
                            See pdf14_pop_transparency_group how to handle it. */
1505
122k
    buf->saved = tos;
1506
122k
    buf->group_color_info = group_color;
1507
1508
122k
    if (tos == NULL)
1509
24.5k
        buf->page_group = true;
1510
1511
122k
    ctx->stack = buf;
1512
122k
    if (buf->data == NULL)
1513
84.0k
        return 0;
1514
38.0k
    if (idle)
1515
0
        return 0;
1516
38.0k
    pdf14_backdrop = pdf14_find_backdrop_buf(ctx, &is_backdrop);
1517
1518
    /* Initializes buf->data with the backdrop or as opaque */
1519
38.0k
    if (pdf14_backdrop == NULL || (is_backdrop && pdf14_backdrop->backdrop == NULL)) {
1520
        /* Note, don't clear out tags set by pdf14_buf_new == GS_UNKNOWN_TAG */
1521
        /* Memsetting by 0, so this copes with the deep case too */
1522
27.4k
        memset(buf->data, 0, (size_t)buf->planestride *
1523
27.4k
                                          (buf->n_chan +
1524
27.4k
                                           (buf->has_shape ? 1 : 0) +
1525
27.4k
                                           (buf->has_alpha_g ? 1 : 0)));
1526
27.4k
    } else {
1527
10.5k
        if (!cm_back_drop) {
1528
10.5k
            pdf14_preserve_backdrop(buf, pdf14_backdrop, is_backdrop
1529
#if RAW_DUMP
1530
                                    , ctx->memory
1531
#endif
1532
10.5k
                                    );
1533
10.5k
        } else {
1534
            /* We must have an non-isolated group with a mismatch in color spaces.
1535
                In this case, we can't just copy the buffer but must CM it */
1536
0
            pdf14_preserve_backdrop_cm(buf, group_profile, pdf14_backdrop, tos_profile,
1537
0
                                        ctx->memory, pgs, dev, is_backdrop);
1538
0
        }
1539
10.5k
    }
1540
1541
    /* If our new group is a non-isolated knockout group, we have to maintain
1542
       a copy of the backdrop in case we are drawing nonisolated groups on top of the
1543
       knockout group. They have to always blend with the groups backdrop
1544
       not what is currently drawn in the group. Selection of the backdrop
1545
       depends upon the properties of the parent group. For example, if
1546
       the parent itself is a knockout group we actually
1547
       need to blend with its backdrop. This could be NULL if the parent was
1548
       an isolated knockout group. */
1549
38.0k
    if (buf->knockout && pdf14_backdrop != NULL) {
1550
2.06k
        buf->backdrop = gs_alloc_bytes(ctx->memory,
1551
2.06k
                                       (size_t)buf->planestride * buf->n_planes + CAL_SLOP,
1552
2.06k
                                       "pdf14_push_transparency_group");
1553
2.06k
        if (buf->backdrop == NULL) {
1554
0
            return gs_throw(gs_error_VMerror, "Knockout backdrop allocation failed");
1555
0
        }
1556
1557
2.06k
        memcpy(buf->backdrop, buf->data,
1558
2.06k
               (size_t)buf->planestride * buf->n_planes);
1559
1560
#if RAW_DUMP
1561
        /* Dump the current buffer to see what we have. */
1562
        dump_raw_buffer(ctx->memory,
1563
            ctx->stack->rect.q.y - ctx->stack->rect.p.y,
1564
            ctx->stack->rowstride >> buf->deep, buf->n_planes,
1565
            ctx->stack->planestride, ctx->stack->rowstride,
1566
            "KnockoutBackDrop", buf->backdrop, buf->deep);
1567
        global_index++;
1568
#endif
1569
2.06k
    }
1570
#if RAW_DUMP
1571
    /* Dump the current buffer to see what we have. */
1572
    dump_raw_buffer(ctx->memory,
1573
                    ctx->stack->rect.q.y-ctx->stack->rect.p.y,
1574
                    ctx->stack->rowstride>>buf->deep, ctx->stack->n_planes,
1575
                    ctx->stack->planestride, ctx->stack->rowstride,
1576
                    "TransGroupPush", ctx->stack->data, buf->deep);
1577
    global_index++;
1578
#endif
1579
38.0k
    return 0;
1580
38.0k
}
1581
1582
static  int
1583
pdf14_pop_transparency_group(gs_gstate *pgs, pdf14_ctx *ctx,
1584
    const pdf14_nonseparable_blending_procs_t * pblend_procs,
1585
    int tos_num_color_comp, cmm_profile_t *curr_icc_profile, gx_device *dev)
1586
122k
{
1587
122k
    pdf14_buf *tos = ctx->stack;
1588
122k
    pdf14_buf *nos = tos->saved;
1589
122k
    pdf14_mask_t *mask_stack = tos->mask_stack;
1590
122k
    pdf14_buf *maskbuf;
1591
122k
    int x0, x1, y0, y1;
1592
122k
    int nos_num_color_comp;
1593
122k
    bool no_icc_match;
1594
122k
    pdf14_device *pdev = (pdf14_device *)dev;
1595
122k
    bool overprint = pdev->overprint;
1596
122k
    gx_color_index drawn_comps = pdev->drawn_comps_stroke | pdev->drawn_comps_fill;
1597
122k
    bool has_matte = false;
1598
122k
    int code = 0;
1599
1600
#ifdef DEBUG
1601
    pdf14_debug_mask_stack_state(ctx);
1602
#endif
1603
122k
    if (mask_stack == NULL) {
1604
63.5k
        maskbuf = NULL;
1605
63.5k
    }
1606
58.5k
    else {
1607
58.5k
        maskbuf = mask_stack->rc_mask->mask_buf;
1608
58.5k
    }
1609
1610
122k
    if (maskbuf != NULL && maskbuf->matte != NULL)
1611
0
        has_matte = true;
1612
1613
    /* Check if this is our last buffer, if yes, there is nothing to
1614
       compose to.  Keep this buffer until we have the put image.
1615
       If we have another group push, this group must be destroyed.
1616
       This only occurs sometimes when at clist creation time
1617
       push_shfill_group occured and nothing was drawn in this group.
1618
       There is also the complication if we have a softmask.  There
1619
       are two approaches to this problem.  Apply the softmask during
1620
       the put image or handle it now.  I choose the later as the
1621
       put_image code is already way to complicated. */
1622
122k
    if (nos == NULL && maskbuf == NULL) {
1623
24.5k
        tos->group_popped = true;
1624
24.5k
        return 0;
1625
24.5k
    }
1626
1627
    /* Here is the case with the soft mask.  Go ahead and create a new
1628
       target buffer (nos) with the same color information etc, but blank
1629
       and go ahead and do the blend with the softmask so that it gets applied. */
1630
97.5k
    if (nos == NULL && maskbuf != NULL) {
1631
0
        nos = pdf14_buf_new(&(tos->rect), ctx->has_tags, !tos->isolated, tos->has_shape,
1632
0
            tos->idle, tos->n_chan, tos->num_spots, ctx->memory, ctx->deep);
1633
0
        if (nos == NULL) {
1634
0
            code = gs_error_VMerror;
1635
0
            goto exit;
1636
0
        }
1637
1638
0
        if_debug4m('v', ctx->memory,
1639
0
            "[v] special buffer for softmask application: %d x %d, %d color channels, %d planes\n",
1640
0
            nos->rect.q.x, nos->rect.q.y, nos->n_chan, nos->n_planes);
1641
1642
0
        nos->dirty = tos->dirty;
1643
0
        nos->isolated = tos->isolated;
1644
0
        nos->knockout = tos->knockout;
1645
0
        nos->alpha = 65535;
1646
0
        nos->shape = 65535;
1647
0
        nos->opacity = 65535;
1648
0
        nos->blend_mode = tos->blend_mode;
1649
0
        nos->mask_id = tos->mask_id;
1650
0
        nos->group_color_info = pdf14_clone_group_color_info(dev, tos->group_color_info);
1651
1652
0
        if (nos->data != NULL)
1653
0
            memset(nos->data, 0,
1654
0
                   (size_t)nos->planestride *
1655
0
                                          (nos->n_chan +
1656
0
                                           (nos->has_shape ? 1 : 0) +
1657
0
                                           (nos->has_alpha_g ? 1 : 0)));
1658
0
    }
1659
1660
    /* Before we get started, lets see if we have somehow gotten into
1661
       what should be an impossible situation where the group color
1662
       information does not match the buffer color information. This
1663
       can occur is there were memory issues that have perhaps blown
1664
       away information, or in the example of Bug 705197 the PDF interpreter
1665
       reuses a pattern during a circular reference causing an aliasing
1666
       of two nested patterns, one of which has a softmask. The change in
1667
       the buffer size of the inner one blows away the buffer of the
1668
       outer one leading to a mismatch of color spaces. Here
1669
       we can at least catch the case when the color space sizes have
1670
       changed and avoid buffer over-runs that would occur when we try
1671
       to do the group composition */
1672
97.5k
    if (nos->n_chan - 1 != nos->group_color_info->num_components ||
1673
97.5k
        tos->n_chan - 1 != tos_num_color_comp)
1674
0
        return_error(gs_error_Fatal);
1675
1676
97.5k
    nos_num_color_comp = nos->group_color_info->num_components - tos->num_spots;
1677
97.5k
    tos_num_color_comp = tos_num_color_comp - tos->num_spots;
1678
1679
    /* Sanitise the dirty rectangles, in case some of the drawing routines
1680
     * have made them overly large. */
1681
97.5k
    rect_intersect(tos->dirty, tos->rect);
1682
97.5k
    rect_intersect(nos->dirty, nos->rect);
1683
    /* dirty = the marked bbox. rect = the entire bounds of the buffer. */
1684
    /* Everything marked on tos that fits onto nos needs to be merged down. */
1685
97.5k
    y0 = max(tos->dirty.p.y, nos->rect.p.y);
1686
97.5k
    y1 = min(tos->dirty.q.y, nos->rect.q.y);
1687
97.5k
    x0 = max(tos->dirty.p.x, nos->rect.p.x);
1688
97.5k
    x1 = min(tos->dirty.q.x, nos->rect.q.x);
1689
97.5k
    if (ctx->mask_stack) {
1690
        /* This can occur when we have a situation where we are ending out of
1691
           a group that has internal to it a soft mask and another group.
1692
           The soft mask left over from the previous trans group pop is put
1693
           into ctx->masbuf, since it is still active if another trans group
1694
           push occurs to use it.  If one does not occur, but instead we find
1695
           ourselves popping from a parent group, then this softmask is no
1696
           longer needed.  We will rc_decrement and set it to NULL. */
1697
0
        rc_decrement(ctx->mask_stack->rc_mask, "pdf14_pop_transparency_group");
1698
0
        if (ctx->mask_stack->rc_mask == NULL ){
1699
0
            gs_free_object(ctx->memory, ctx->mask_stack, "pdf14_pop_transparency_group");
1700
0
        }
1701
0
        ctx->mask_stack = NULL;
1702
0
    }
1703
97.5k
    ctx->mask_stack = mask_stack;  /* Restore the mask saved by pdf14_push_transparency_group. */
1704
97.5k
    tos->mask_stack = NULL;        /* Clean the pointer sinse the mask ownership is now passed to ctx. */
1705
97.5k
    if (tos->idle)
1706
81.1k
        goto exit;
1707
16.4k
    if (maskbuf != NULL && maskbuf->data == NULL && maskbuf->alpha == 255)
1708
0
        goto exit;
1709
1710
#if RAW_DUMP
1711
    /* Dump the current buffer to see what we have. */
1712
    dump_raw_buffer(ctx->memory,
1713
                    ctx->stack->rect.q.y-ctx->stack->rect.p.y,
1714
                    ctx->stack->rowstride>>ctx->stack->deep, ctx->stack->n_planes,
1715
                    ctx->stack->planestride, ctx->stack->rowstride,
1716
                    "aaTrans_Group_Pop", ctx->stack->data, ctx->stack->deep);
1717
    global_index++;
1718
#endif
1719
/* Note currently if a pattern space has transparency, the ICC profile is not used
1720
   for blending purposes.  Instead we rely upon the gray, rgb, or cmyk parent space.
1721
   This is partially due to the fact that pdf14_pop_transparency_group and
1722
   pdf14_push_transparnecy_group have no real ICC interaction and those are the
1723
   operations called in the tile transparency code.  Instead we may want to
1724
   look at pdf14_begin_transparency_group and pdf14_end_transparency group which
1725
   is where all the ICC information is handled.  We will return to look at that later */
1726
16.4k
    if (nos->group_color_info->icc_profile != NULL) {
1727
16.4k
        no_icc_match = !gsicc_profiles_equal(nos->group_color_info->icc_profile, curr_icc_profile);
1728
16.4k
    } else {
1729
        /* Let the other tests make the decision if we need to transform */
1730
0
        no_icc_match = false;
1731
0
    }
1732
    /* If the color spaces are different and we actually did do a swap of
1733
       the procs for color */
1734
16.4k
    if ((nos->group_color_info->group_color_mapping_procs != NULL &&
1735
16.4k
        nos_num_color_comp != tos_num_color_comp) || no_icc_match) {
1736
225
        if (x0 < x1 && y0 < y1) {
1737
209
            pdf14_buf *result;
1738
209
            bool did_alloc; /* We don't care here */
1739
1740
209
            if (has_matte) {
1741
0
                result = pdf14_transform_color_buffer_with_matte(pgs, ctx, dev,
1742
0
                    tos, tos->data, curr_icc_profile, nos->group_color_info->icc_profile,
1743
0
                    tos->rect.p.x, tos->rect.p.y, tos->rect.q.x - tos->rect.p.x,
1744
0
                    tos->rect.q.y - tos->rect.p.y, &did_alloc, tos->deep, false);
1745
0
                has_matte = false;
1746
209
            } else {
1747
209
                result = pdf14_transform_color_buffer_no_matte(pgs, ctx, dev,
1748
209
                    tos, tos->data, curr_icc_profile, nos->group_color_info->icc_profile,
1749
209
                    tos->rect.p.x, tos->rect.p.y, tos->rect.q.x - tos->rect.p.x,
1750
209
                    tos->rect.q.y - tos->rect.p.y, &did_alloc, tos->deep, false);
1751
209
            }
1752
209
            if (result == NULL) {
1753
                /* Clean up and return error code */
1754
0
                code = gs_error_unknownerror;
1755
0
                goto exit;
1756
0
            }
1757
1758
#if RAW_DUMP
1759
            /* Dump the current buffer to see what we have. */
1760
            dump_raw_buffer(ctx->memory,
1761
                            ctx->stack->rect.q.y-ctx->stack->rect.p.y,
1762
                            ctx->stack->rowstride>>ctx->stack->deep, ctx->stack->n_chan,
1763
                            ctx->stack->planestride, ctx->stack->rowstride,
1764
                            "aCMTrans_Group_ColorConv", ctx->stack->data,
1765
                            ctx->stack->deep);
1766
#endif
1767
             /* compose. never do overprint in this case */
1768
209
            pdf14_compose_group(tos, nos, maskbuf, x0, x1, y0, y1, nos->n_chan,
1769
209
                 nos->group_color_info->isadditive,
1770
209
                 nos->group_color_info->blend_procs,
1771
209
                 has_matte, false, drawn_comps, ctx->memory, dev);
1772
209
        }
1773
16.2k
    } else {
1774
        /* Group color spaces are the same.  No color conversions needed */
1775
16.2k
        if (x0 < x1 && y0 < y1)
1776
12.2k
            pdf14_compose_group(tos, nos, maskbuf, x0, x1, y0, y1, nos->n_chan,
1777
12.2k
                                ctx->additive, pblend_procs, has_matte, overprint,
1778
12.2k
                                drawn_comps, ctx->memory, dev);
1779
16.2k
    }
1780
97.5k
exit:
1781
97.5k
    ctx->stack = nos;
1782
    /* We want to detect the cases where we have luminosity soft masks embedded
1783
       within one another.  The "alpha" channel really needs to be merged into
1784
       the luminosity channel in this case.  This will occur during the mask pop */
1785
97.5k
    if (ctx->smask_depth > 0 && maskbuf != NULL) {
1786
        /* Set the trigger so that we will blend if not alpha. Since
1787
           we have softmasks embedded in softmasks */
1788
11
        ctx->smask_blend = true;
1789
11
    }
1790
97.5k
    if_debug1m('v', ctx->memory, "[v]pop buf, idle=%d\n", tos->idle);
1791
97.5k
    pdf14_buf_free(tos);
1792
97.5k
    if (code < 0)
1793
0
        return_error(code);
1794
97.5k
    return 0;
1795
97.5k
}
1796
1797
/*
1798
 * Create a transparency mask that will be used as the mask for
1799
 * the next transparency group that is created afterwards.
1800
 * The sequence of calls is:
1801
 * push_mask, draw the mask, pop_mask, push_group, draw the group, pop_group
1802
 */
1803
static  int
1804
pdf14_push_transparency_mask(pdf14_ctx *ctx, gs_int_rect *rect, uint16_t bg_alpha,
1805
                             byte *transfer_fn, bool is_ident, bool idle,
1806
                             bool replacing, uint mask_id,
1807
                             gs_transparency_mask_subtype_t subtype,
1808
                             int numcomps, int Background_components,
1809
                             const float Background[], int Matte_components,
1810
                             const float Matte[], const float GrayBackground,
1811
                             pdf14_group_color_t* group_color)
1812
29.9k
{
1813
29.9k
    pdf14_buf *buf;
1814
29.9k
    int i;
1815
1816
29.9k
    if_debug2m('v', ctx->memory,
1817
29.9k
               "[v]pdf14_push_transparency_mask, idle=%d, replacing=%d\n",
1818
29.9k
               idle, replacing);
1819
29.9k
    ctx->smask_depth += 1;
1820
1821
29.9k
    if (ctx->stack == NULL) {
1822
0
        return_error(gs_error_VMerror);
1823
0
    }
1824
1825
    /* An optimization to consider is that if the SubType is Alpha
1826
       then we really should only be allocating the alpha band and
1827
       only draw with that channel.  Current architecture makes that
1828
       a bit tricky.  We need to create this based upon the size of
1829
       the color space + an alpha channel. NOT the device size
1830
       or the previous ctx size */
1831
    /* A mask doesn't worry about tags */
1832
29.9k
    buf = pdf14_buf_new(rect, false, false, false, idle, numcomps + 1, 0,
1833
29.9k
                        ctx->memory, ctx->deep);
1834
29.9k
    if (buf == NULL)
1835
0
        return_error(gs_error_VMerror);
1836
29.9k
    buf->alpha = bg_alpha;
1837
29.9k
    buf->is_ident = is_ident;
1838
    /* fill in, but these values aren't really used */
1839
29.9k
    buf->isolated = true;
1840
29.9k
    buf->knockout = false;
1841
29.9k
    buf->shape = 0xffff;
1842
29.9k
    buf->blend_mode = BLEND_MODE_Normal;
1843
29.9k
    buf->transfer_fn = transfer_fn;
1844
29.9k
    buf->matte_num_comps = Matte_components;
1845
29.9k
    buf->group_color_info = group_color;
1846
1847
29.9k
    if (Matte_components) {
1848
0
        buf->matte = (uint16_t *)gs_alloc_bytes(ctx->memory, Matte_components * sizeof(uint16_t) + CAL_SLOP,
1849
0
                                                "pdf14_push_transparency_mask");
1850
0
        if (buf->matte == NULL)
1851
0
            return_error(gs_error_VMerror);
1852
0
        for (i = 0; i < Matte_components; i++) {
1853
0
            buf->matte[i] = (uint16_t) floor(Matte[i] * 65535.0 + 0.5);
1854
0
        }
1855
0
    }
1856
29.9k
    buf->mask_id = mask_id;
1857
    /* If replacing=false, we start the mask for an image with SMask.
1858
       In this case the image's SMask temporary replaces the
1859
       mask of the containing group. Save the containing droup's mask
1860
       in buf->mask_stack */
1861
29.9k
    buf->mask_stack = ctx->mask_stack;
1862
29.9k
    if (buf->mask_stack){
1863
5.50k
        rc_increment(buf->mask_stack->rc_mask);
1864
5.50k
    }
1865
#if RAW_DUMP
1866
    /* Dump the current buffer to see what we have. */
1867
    if (ctx->stack->planestride > 0 ){
1868
        dump_raw_buffer(ctx->memory,
1869
                        ctx->stack->rect.q.y-ctx->stack->rect.p.y,
1870
                        ctx->stack->rowstride>>ctx->stack->deep, ctx->stack->n_planes,
1871
                        ctx->stack->planestride, ctx->stack->rowstride,
1872
                        "Raw_Buf_PreSmask", ctx->stack->data, ctx->stack->deep);
1873
        global_index++;
1874
    }
1875
#endif
1876
29.9k
    buf->saved = ctx->stack;
1877
29.9k
    ctx->stack = buf;
1878
    /* Soft Mask related information so we know how to
1879
       compute luminosity when we pop the soft mask */
1880
29.9k
    buf->SMask_SubType = subtype;
1881
29.9k
    if (buf->data != NULL) {
1882
        /* We need to initialize it to the BC if it existed */
1883
        /* According to the spec, the CS has to be the same */
1884
        /* If the back ground component is black, then don't bother
1885
           with this.  Since we are forcing the rendering to gray
1886
           earlier now, go ahead and just use the GrayBackGround color
1887
           directly. */
1888
13.0k
        if ( Background_components && GrayBackground != 0.0 ) {
1889
0
            if (buf->deep) {
1890
0
                uint16_t gray = (uint16_t) (65535.0 * GrayBackground);
1891
0
                gs_memset16(buf->data, gray, buf->planestride);
1892
                /* If we have a background component that was not black, then we
1893
                   need to set the alpha for this mask as if we had drawn in the
1894
                   entire soft mask buffer */
1895
0
                gs_memset16(buf->data + buf->planestride, 65535,
1896
0
                            buf->planestride *(buf->n_chan - 1));
1897
0
            } else {
1898
0
                unsigned char gray = (unsigned char) (255.0 * GrayBackground);
1899
0
                memset(buf->data, gray, buf->planestride);
1900
                /* If we have a background component that was not black, then we
1901
                   need to set the alpha for this mask as if we had drawn in the
1902
                   entire soft mask buffer */
1903
0
                memset(buf->data + buf->planestride, 255,
1904
0
                       (size_t)buf->planestride * (buf->n_chan - 1));
1905
0
            }
1906
13.0k
        } else {
1907
            /* Compose mask with opaque background */
1908
13.0k
            memset(buf->data, 0, (size_t)buf->planestride * buf->n_chan);
1909
13.0k
        }
1910
13.0k
    }
1911
29.9k
    return 0;
1912
29.9k
}
1913
1914
static void pdf14_free_mask_stack(pdf14_ctx *ctx, gs_memory_t *memory)
1915
5.50k
{
1916
5.50k
    pdf14_mask_t *mask_stack = ctx->mask_stack;
1917
1918
5.50k
    if (mask_stack->rc_mask != NULL) {
1919
0
        pdf14_mask_t *curr_mask = mask_stack;
1920
0
        pdf14_mask_t *old_mask;
1921
0
        while (curr_mask != NULL) {
1922
            /* Force to decrement until free */
1923
0
            while (curr_mask->rc_mask != NULL)
1924
0
                rc_decrement(curr_mask->rc_mask, "pdf14_free_mask_stack");
1925
0
            old_mask = curr_mask;
1926
0
            curr_mask = curr_mask->previous;
1927
0
            gs_free_object(old_mask->memory, old_mask, "pdf14_free_mask_stack");
1928
0
        }
1929
5.50k
    } else {
1930
5.50k
        gs_free_object(memory, mask_stack, "pdf14_free_mask_stack");
1931
5.50k
    }
1932
5.50k
    ctx->mask_stack = NULL;
1933
5.50k
}
1934
1935
static  int
1936
pdf14_pop_transparency_mask(pdf14_ctx *ctx, gs_gstate *pgs, gx_device *dev)
1937
29.9k
{
1938
29.9k
    pdf14_buf* tos = ctx->stack;
1939
29.9k
    pdf14_buf* nos = tos->saved;
1940
29.9k
    byte *new_data_buf;
1941
29.9k
    int icc_match;
1942
29.9k
    cmm_profile_t *des_profile = nos->group_color_info->icc_profile; /* If set, this should be a gray profile */
1943
29.9k
    cmm_profile_t *src_profile;
1944
29.9k
    gsicc_rendering_param_t rendering_params;
1945
29.9k
    gsicc_link_t *icc_link;
1946
29.9k
    gsicc_rendering_param_t render_cond;
1947
29.9k
    cmm_dev_profile_t *dev_profile;
1948
29.9k
    int code = 0;
1949
1950
29.9k
    dev_proc(dev, get_profile)(dev,  &dev_profile);
1951
29.9k
    gsicc_extract_profile(GS_UNKNOWN_TAG, dev_profile, &src_profile,
1952
29.9k
                          &render_cond);
1953
29.9k
    ctx->smask_depth -= 1;
1954
    /* icc_match == -1 means old non-icc code.
1955
       icc_match == 0 means use icc code
1956
       icc_match == 1 mean no conversion needed */
1957
29.9k
    if (des_profile != NULL && src_profile != NULL ) {
1958
29.9k
        icc_match = gsicc_profiles_equal(des_profile, src_profile);
1959
29.9k
    } else {
1960
0
        icc_match = -1;
1961
0
    }
1962
29.9k
    if_debug1m('v', ctx->memory, "[v]pdf14_pop_transparency_mask, idle=%d\n",
1963
29.9k
               tos->idle);
1964
29.9k
    ctx->stack = tos->saved;
1965
29.9k
    tos->saved = NULL;  /* To avoid issues with GC */
1966
29.9k
    if (tos->mask_stack) {
1967
        /* During the soft mask push, the mask_stack was copied (not moved) from
1968
           the ctx to the tos mask_stack. We are done with this now so it is safe to
1969
           just set to NULL.  However, before we do that we must perform
1970
           rc decrement to match the increment that occured was made.  Also,
1971
           if this is the last ref count of the rc_mask, we should free the
1972
           buffer now since no other groups need it. */
1973
5.50k
        rc_decrement(tos->mask_stack->rc_mask,
1974
5.50k
                     "pdf14_pop_transparency_mask(tos->mask_stack->rc_mask)");
1975
5.50k
        if (tos->mask_stack->rc_mask) {
1976
5.50k
            if (tos->mask_stack->rc_mask->rc.ref_count == 1){
1977
5.50k
                rc_decrement(tos->mask_stack->rc_mask,
1978
5.50k
                            "pdf14_pop_transparency_mask(tos->mask_stack->rc_mask)");
1979
5.50k
            }
1980
5.50k
        }
1981
5.50k
        tos->mask_stack = NULL;
1982
5.50k
    }
1983
29.9k
    if (tos->data == NULL ) {
1984
        /* This can occur in clist rendering if the soft mask does
1985
           not intersect the current band.  It would be nice to
1986
           catch this earlier and just avoid creating the structure
1987
           to begin with.  For now we need to delete the structure
1988
           that was created.  Only delete if the alpha value is 65535 */
1989
16.9k
        if ((tos->alpha == 65535 && tos->is_ident) ||
1990
16.9k
            (!tos->is_ident && (tos->transfer_fn[tos->alpha>>8] == 255))) {
1991
999
            pdf14_buf_free(tos);
1992
999
            if (ctx->mask_stack != NULL) {
1993
415
                pdf14_free_mask_stack(ctx, ctx->memory);
1994
415
            }
1995
15.9k
        } else {
1996
            /* Assign as mask buffer */
1997
15.9k
            if (ctx->mask_stack != NULL) {
1998
1.83k
                pdf14_free_mask_stack(ctx, ctx->memory);
1999
1.83k
            }
2000
15.9k
            ctx->mask_stack = pdf14_mask_element_new(ctx->memory);
2001
15.9k
            ctx->mask_stack->rc_mask = pdf14_rcmask_new(ctx->memory);
2002
15.9k
            ctx->mask_stack->rc_mask->mask_buf = tos;
2003
15.9k
        }
2004
16.9k
        ctx->smask_blend = false;  /* just in case */
2005
16.9k
    } else {
2006
        /* If we are already in the source space then there is no reason
2007
           to do the transformation */
2008
        /* Lets get this to a monochrome buffer and map it to a luminance only value */
2009
        /* This will reduce our memory.  We won't reuse the existing one, due */
2010
        /* Due to the fact that on certain systems we may have issues recovering */
2011
        /* the data after a resize */
2012
13.0k
        new_data_buf = gs_alloc_bytes(ctx->memory, tos->planestride + CAL_SLOP,
2013
13.0k
                                        "pdf14_pop_transparency_mask");
2014
13.0k
        if (new_data_buf == NULL)
2015
0
            return_error(gs_error_VMerror);
2016
        /* Initialize with 0.  Need to do this since in Smask_Luminosity_Mapping
2017
           we won't be filling everything during the remap if it had not been
2018
           written into by the PDF14 fill rect */
2019
13.0k
        memset(new_data_buf, 0, tos->planestride);
2020
        /* If the subtype was alpha, then just grab the alpha channel now
2021
           and we are all done */
2022
13.0k
        if (tos->SMask_SubType == TRANSPARENCY_MASK_Alpha) {
2023
1.95k
            ctx->smask_blend = false;  /* not used in this case */
2024
1.95k
            smask_copy(tos->rect.q.y - tos->rect.p.y,
2025
1.95k
                       (tos->rect.q.x - tos->rect.p.x)<<tos->deep,
2026
1.95k
                       tos->rowstride,
2027
1.95k
                       (tos->data)+tos->planestride, new_data_buf);
2028
#if RAW_DUMP
2029
            /* Dump the current buffer to see what we have. */
2030
            dump_raw_buffer(ctx->memory,
2031
                            tos->rect.q.y-tos->rect.p.y,
2032
                            tos->rowstride>>tos->deep, 1,
2033
                            tos->planestride, tos->rowstride,
2034
                            "SMask_Pop_Alpha(Mask_Plane1)",tos->data,
2035
                            tos->deep);
2036
            global_index++;
2037
#endif
2038
11.1k
        } else {
2039
11.1k
            if (icc_match == 1 || tos->n_chan == 2) {
2040
#if RAW_DUMP
2041
                /* Dump the current buffer to see what we have. */
2042
                dump_raw_buffer(ctx->memory,
2043
                                tos->rect.q.y-tos->rect.p.y,
2044
                                tos->rowstride>>tos->deep, tos->n_planes,
2045
                                tos->planestride, tos->rowstride,
2046
                                "SMask_Pop_Lum(Mask_Plane0)",tos->data,
2047
                                tos->deep);
2048
                global_index++;
2049
#endif
2050
                /* There is no need to color convert.  Data is already gray scale.
2051
                   We just need to copy the gray plane.  However it is
2052
                   possible that the soft mask could have a soft mask which
2053
                   would end us up with some alpha blending information
2054
                   (Bug691803). In fact, according to the spec, the alpha
2055
                   blending has to occur.  See FTS test fts_26_2601.pdf
2056
                   for an example of this.  Softmask buffer is intialized
2057
                   with BG values.  It would be nice to keep track if buffer
2058
                   ever has a alpha value not 1 so that we could detect and
2059
                   avoid this blend if not needed. */
2060
11.1k
                smask_blend(tos->data, tos->rect.q.x - tos->rect.p.x,
2061
11.1k
                            tos->rect.q.y - tos->rect.p.y, tos->rowstride,
2062
11.1k
                            tos->planestride, tos->deep);
2063
#if RAW_DUMP
2064
                /* Dump the current buffer to see what we have. */
2065
                dump_raw_buffer(ctx->memory,
2066
                                tos->rect.q.y-tos->rect.p.y,
2067
                                tos->rowstride>>tos->deep, 1,
2068
                                tos->planestride, tos->rowstride,
2069
                                "SMask_Pop_Lum_Post_Blend",tos->data,
2070
                                tos->deep);
2071
                global_index++;
2072
#endif
2073
11.1k
                smask_copy(tos->rect.q.y - tos->rect.p.y,
2074
11.1k
                           (tos->rect.q.x - tos->rect.p.x)<<tos->deep,
2075
11.1k
                           tos->rowstride, tos->data, new_data_buf);
2076
11.1k
            } else {
2077
0
                if ( icc_match == -1 ) {
2078
                    /* The slow old fashioned way */
2079
0
                    smask_luminosity_mapping(tos->rect.q.y - tos->rect.p.y ,
2080
0
                        tos->rect.q.x - tos->rect.p.x,tos->n_chan,
2081
0
                        tos->rowstride, tos->planestride,
2082
0
                        tos->data,  new_data_buf, ctx->additive, tos->SMask_SubType,
2083
0
                        tos->deep
2084
#if RAW_DUMP
2085
                        , ctx->memory
2086
#endif
2087
0
                        );
2088
0
                } else {
2089
                    /* ICC case where we use the CMM */
2090
                    /* Request the ICC link for the transform that we will need to use */
2091
0
                    rendering_params.black_point_comp = gsBLACKPTCOMP_OFF;
2092
0
                    rendering_params.graphics_type_tag = GS_IMAGE_TAG;
2093
0
                    rendering_params.override_icc = false;
2094
0
                    rendering_params.preserve_black = gsBKPRESNOTSPECIFIED;
2095
0
                    rendering_params.rendering_intent = gsRELATIVECOLORIMETRIC;
2096
0
                    rendering_params.cmm = gsCMM_DEFAULT;
2097
0
                    icc_link = gsicc_get_link_profile(pgs, dev, des_profile,
2098
0
                        src_profile, &rendering_params, pgs->memory, false);
2099
0
                    code = smask_icc(dev, tos->rect.q.y - tos->rect.p.y,
2100
0
                              tos->rect.q.x - tos->rect.p.x, tos->n_chan,
2101
0
                              tos->rowstride, tos->planestride,
2102
0
                              tos->data, new_data_buf, icc_link, tos->deep);
2103
                    /* Release the link */
2104
0
                    gsicc_release_link(icc_link);
2105
0
                }
2106
0
            }
2107
11.1k
        }
2108
        /* Free the old object, NULL test was above */
2109
13.0k
        gs_free_object(ctx->memory, tos->data, "pdf14_pop_transparency_mask");
2110
13.0k
        tos->data = new_data_buf;
2111
        /* Data is single channel now */
2112
13.0k
        tos->n_chan = 1;
2113
13.0k
        tos->n_planes = 1;
2114
        /* Assign as reference counted mask buffer */
2115
13.0k
        if (ctx->mask_stack != NULL) {
2116
            /* In this case, the source file is wacky as it already had a
2117
               softmask and now is getting a replacement. We need to clean
2118
               up the softmask stack before doing this free and creating
2119
               a new stack. Bug 693312 */
2120
3.25k
            pdf14_free_mask_stack(ctx, ctx->memory);
2121
3.25k
        }
2122
13.0k
        ctx->mask_stack = pdf14_mask_element_new(ctx->memory);
2123
13.0k
        if (ctx->mask_stack == NULL)
2124
0
            return gs_note_error(gs_error_VMerror);
2125
13.0k
        ctx->mask_stack->rc_mask = pdf14_rcmask_new(ctx->memory);
2126
13.0k
        if (ctx->mask_stack->rc_mask == NULL)
2127
0
            return gs_note_error(gs_error_VMerror);
2128
13.0k
        ctx->mask_stack->rc_mask->mask_buf = tos;
2129
13.0k
    }
2130
29.9k
    return code;
2131
29.9k
}
2132
2133
static pdf14_mask_t *
2134
pdf14_mask_element_new(gs_memory_t *memory)
2135
128k
{
2136
128k
    pdf14_mask_t *result;
2137
2138
128k
    result = gs_alloc_struct(memory, pdf14_mask_t, &st_pdf14_mask,
2139
128k
                             "pdf14_mask_element_new");
2140
128k
    if (result == NULL)
2141
0
        return NULL;
2142
    /* Get the reference counted mask */
2143
128k
    result->rc_mask = NULL;
2144
128k
    result->previous = NULL;
2145
128k
    result->memory = memory;
2146
128k
    return result;
2147
128k
}
2148
2149
static int
2150
pdf14_push_transparency_state(gx_device *dev, gs_gstate *pgs)
2151
0
{
2152
    /* We need to push the current soft mask.  We need to
2153
       be able to recover it if we draw a new one and
2154
       then obtain a Q operation ( a pop ) */
2155
2156
0
    pdf14_device *pdev = (pdf14_device *)dev;
2157
0
    pdf14_ctx *ctx = pdev->ctx;
2158
0
    pdf14_mask_t *new_mask;
2159
2160
0
    if_debug0m('v', ctx->memory, "pdf14_push_transparency_state\n");
2161
    /* We need to push the current mask buffer   */
2162
    /* Allocate a new element for the stack.
2163
       Don't do anything if there is no mask present.*/
2164
0
    if (ctx->mask_stack != NULL) {
2165
0
        new_mask = pdf14_mask_element_new(ctx->memory);
2166
        /* Duplicate and make the link */
2167
0
        new_mask->rc_mask = ctx->mask_stack->rc_mask;
2168
0
        rc_increment(new_mask->rc_mask);
2169
0
        new_mask->previous = ctx->mask_stack;
2170
0
        ctx->mask_stack = new_mask;
2171
0
    }
2172
#ifdef DEBUG
2173
    pdf14_debug_mask_stack_state(pdev->ctx);
2174
#endif
2175
0
    return 0;
2176
0
}
2177
2178
static int
2179
pdf14_pop_transparency_state(gx_device *dev, gs_gstate *pgs)
2180
125k
{
2181
    /* Pop the soft mask.  It is no longer needed. Likely due to
2182
       a Q that has occurred. */
2183
125k
    pdf14_device *pdev = (pdf14_device *)dev;
2184
125k
    pdf14_ctx *ctx = pdev->ctx;
2185
125k
    pdf14_mask_t *old_mask;
2186
2187
125k
    if_debug0m('v', ctx->memory, "pdf14_pop_transparency_state\n");
2188
    /* rc decrement the current link after we break it from
2189
       the list, then free the stack element.  Don't do
2190
       anything if there is no mask present. */
2191
125k
    if (ctx->mask_stack != NULL) {
2192
29.9k
        old_mask = ctx->mask_stack;
2193
29.9k
        ctx->mask_stack = ctx->mask_stack->previous;
2194
29.9k
        if (old_mask->rc_mask) {
2195
29.9k
            rc_decrement(old_mask->rc_mask, "pdf14_pop_transparency_state");
2196
29.9k
        }
2197
29.9k
        gs_free_object(old_mask->memory, old_mask, "pdf14_pop_transparency_state");
2198
        /* We need to have some special handling here for when we have nested
2199
           soft masks.  There may be a copy in the stack that we may need to
2200
           adjust. */
2201
29.9k
        if (ctx->smask_depth > 0) {
2202
11
            if (ctx->stack != NULL && ctx->stack->mask_stack != NULL) {
2203
0
                ctx->stack->mask_stack = ctx->mask_stack;
2204
0
            }
2205
11
        }
2206
29.9k
    }
2207
#ifdef DEBUG
2208
    pdf14_debug_mask_stack_state(pdev->ctx);
2209
#endif
2210
125k
    return 0;
2211
125k
}
2212
2213
static  int
2214
pdf14_open(gx_device *dev)
2215
99.4k
{
2216
99.4k
    pdf14_device *pdev = (pdf14_device *)dev;
2217
2218
    /* If we are reenabling the device dont create a new ctx. Bug 697456 */
2219
99.4k
    if (pdev->ctx == NULL) {
2220
99.4k
        bool has_tags = device_encodes_tags(dev);
2221
99.4k
        int bits_per_comp = (dev->color_info.depth / dev->color_info.num_components);
2222
99.4k
        pdev->ctx = pdf14_ctx_new(dev, bits_per_comp > 8);
2223
99.4k
        if (pdev->ctx == NULL)
2224
0
            return_error(gs_error_VMerror);
2225
2226
99.4k
        pdev->ctx->rect.p.x = 0;
2227
99.4k
        pdev->ctx->rect.p.y = 0;
2228
99.4k
        pdev->ctx->rect.q.x = dev->width;
2229
99.4k
        pdev->ctx->rect.q.y = dev->height;
2230
99.4k
        pdev->ctx->has_tags = has_tags;
2231
99.4k
        pdev->ctx->num_spots = pdev->color_info.num_components - has_tags - pdev->num_std_colorants;
2232
        /* This can happen because pdev->num_std_colorants is not updated when pdev->color_info.num_components
2233
         * is. I am not sure how to fix that. */
2234
99.4k
        if (pdev->ctx->num_spots < 0)
2235
0
            pdev->ctx->num_spots = 0;
2236
99.4k
        pdev->ctx->additive = (pdev->color_info.polarity == GX_CINFO_POLARITY_ADDITIVE);
2237
99.4k
    }
2238
99.4k
    pdev->free_devicen = true;
2239
99.4k
    pdev->text_group = PDF14_TEXTGROUP_NO_BT;
2240
99.4k
    return 0;
2241
99.4k
}
2242
2243
static const gx_cm_color_map_procs pdf14_DeviceCMYKspot_procs = {
2244
    pdf14_gray_cs_to_cmyk_cm, pdf14_rgb_cs_to_cmyk_cm, pdf14_cmyk_cs_to_cmyk_cm
2245
};
2246
2247
static const gx_cm_color_map_procs pdf14_DeviceRGBspot_procs = {
2248
    pdf14_gray_cs_to_rgbspot_cm, pdf14_rgb_cs_to_rgbspot_cm, pdf14_cmyk_cs_to_rgbspot_cm
2249
};
2250
2251
static const gx_cm_color_map_procs pdf14_DeviceGrayspot_procs = {
2252
    pdf14_gray_cs_to_grayspot_cm, pdf14_rgb_cs_to_grayspot_cm, pdf14_cmyk_cs_to_grayspot_cm
2253
};
2254
2255
static const gx_cm_color_map_procs *
2256
pdf14_cmykspot_get_color_mapping_procs(const gx_device * dev, const gx_device **tdev)
2257
2.86M
{
2258
2.86M
    *tdev = dev;
2259
2.86M
    return &pdf14_DeviceCMYKspot_procs;
2260
2.86M
}
2261
2262
static const gx_cm_color_map_procs *
2263
pdf14_rgbspot_get_color_mapping_procs(const gx_device * dev, const gx_device **tdev)
2264
3.73M
{
2265
3.73M
    *tdev = dev;
2266
3.73M
    return &pdf14_DeviceRGBspot_procs;
2267
3.73M
}
2268
2269
static const gx_cm_color_map_procs *
2270
pdf14_grayspot_get_color_mapping_procs(const gx_device * dev, const gx_device **tdev)
2271
0
{
2272
0
    *tdev = dev;
2273
0
    return &pdf14_DeviceGrayspot_procs;
2274
0
}
2275
2276
static void
2277
be_rev_cpy(uint16_t *dst,const uint16_t *src,int n)
2278
0
{
2279
0
    for (; n != 0; n--) {
2280
0
        uint16_t in = *src++;
2281
0
        ((byte *)dst)[0] = in>>8;
2282
0
        ((byte *)dst)[1] = in;
2283
0
        dst++;
2284
0
    }
2285
0
}
2286
2287
/* Used to pass along information about the buffer created by the
2288
   pdf14 device.  This is used by the pattern accumulator when the
2289
   pattern contains transparency.  Note that if free_device is true then
2290
   we need to go ahead and get the buffer data copied and free up the
2291
   device.  This only occurs at the end of a pattern accumulation operation */
2292
int
2293
pdf14_get_buffer_information(const gx_device * dev,
2294
                             gx_pattern_trans_t *transbuff, gs_memory_t *mem,
2295
                             bool free_device)
2296
2.64k
{
2297
2.64k
    const pdf14_device * pdev = (pdf14_device *)dev;
2298
2.64k
    pdf14_buf *buf;
2299
2.64k
    gs_int_rect rect;
2300
2.64k
    int x1,y1,width,height;
2301
2302
2.64k
    if ( pdev->ctx == NULL){
2303
0
        return 0;  /* this can occur if the pattern is a clist */
2304
0
    }
2305
#ifdef DEBUG
2306
    pdf14_debug_mask_stack_state(pdev->ctx);
2307
#endif
2308
2.64k
    buf = pdev->ctx->stack;
2309
2.64k
    rect = buf->rect;
2310
2.64k
    transbuff->buf = (free_device ? NULL : buf);
2311
2.64k
    x1 = min(pdev->width, rect.q.x);
2312
2.64k
    y1 = min(pdev->height, rect.q.y);
2313
2.64k
    width = x1 - rect.p.x;
2314
2.64k
    height = y1 - rect.p.y;
2315
2316
2.64k
    transbuff->n_chan    = buf->n_chan;
2317
2.64k
    transbuff->has_tags  = buf->has_tags;
2318
2.64k
    transbuff->has_shape = buf->has_shape;
2319
2.64k
    transbuff->width     = buf->rect.q.x - buf->rect.p.x;
2320
2.64k
    transbuff->height    = buf->rect.q.y - buf->rect.p.y;
2321
2.64k
    transbuff->deep      = buf->deep;
2322
2323
2.64k
    if (width <= 0 || height <= 0 || buf->data == NULL) {
2324
1.14k
        transbuff->planestride = 0;
2325
1.14k
        transbuff->rowstride = 0;
2326
1.14k
        return 0;
2327
1.14k
    }
2328
2329
1.50k
    if (free_device) {
2330
796
        transbuff->pdev14 = NULL;
2331
796
        transbuff->rect = rect;
2332
796
        if ((width < transbuff->width) || (height < transbuff->height)) {
2333
            /* If the bbox is smaller than the whole buffer than go ahead and
2334
               create a new one to use.  This can occur if we drew in a smaller
2335
               area than was specified by the transparency group rect. */
2336
0
            int rowstride = ((width + 3) & -4)<<buf->deep;
2337
0
            int planestride = rowstride * height;
2338
0
            int k, j;
2339
0
            byte *buff_ptr_src, *buff_ptr_des;
2340
2341
0
            transbuff->planestride = planestride;
2342
0
            transbuff->rowstride = rowstride;
2343
0
            transbuff->transbytes =
2344
0
                         gs_alloc_bytes(mem,
2345
0
                                        (size_t)planestride *
2346
0
                                                (buf->n_chan +
2347
0
                                                 buf->has_tags ? 1 : 0) + CAL_SLOP,
2348
0
                                        "pdf14_get_buffer_information");
2349
0
            if (transbuff->transbytes == NULL)
2350
0
                return gs_error_VMerror;
2351
2352
0
            transbuff->mem = mem;
2353
0
            if (transbuff->deep) {
2354
0
                for (j = 0; j < transbuff->n_chan; j++) {
2355
0
                    buff_ptr_src = buf->data + j * buf->planestride +
2356
0
                               buf->rowstride * rect.p.y + (rect.p.x<<buf->deep);
2357
0
                    buff_ptr_des = transbuff->transbytes + j * planestride;
2358
0
                    for (k = 0; k < height; k++) {
2359
0
                        be_rev_cpy((uint16_t *)buff_ptr_des, (const uint16_t *)buff_ptr_src, rowstride>>1);
2360
0
                        buff_ptr_des += rowstride;
2361
0
                        buff_ptr_src += buf->rowstride;
2362
0
                    }
2363
0
                }
2364
0
            } else {
2365
0
                for (j = 0; j < transbuff->n_chan; j++) {
2366
0
                    buff_ptr_src = buf->data + j * buf->planestride +
2367
0
                               buf->rowstride * rect.p.y + (rect.p.x<<buf->deep);
2368
0
                    buff_ptr_des = transbuff->transbytes + j * planestride;
2369
0
                    for (k = 0; k < height; k++) {
2370
0
                        memcpy(buff_ptr_des, buff_ptr_src, rowstride);
2371
0
                        buff_ptr_des += rowstride;
2372
0
                        buff_ptr_src += buf->rowstride;
2373
0
                    }
2374
0
                }
2375
0
            }
2376
2377
796
        } else {
2378
            /* The entire buffer is used.  Go ahead and grab the pointer and
2379
               clear the pointer in the pdf14 device data buffer so it is not
2380
               freed when we close the device */
2381
796
            transbuff->planestride = buf->planestride;
2382
796
            transbuff->rowstride = buf->rowstride;
2383
796
            transbuff->transbytes = buf->data;
2384
796
            transbuff->mem = buf->memory;
2385
796
            buf->data = NULL;  /* So that the buffer is not freed */
2386
796
            if (transbuff->deep) {
2387
                /* We have the data in native endian. We need it in big endian. Do an in-place conversion. */
2388
                /* FIXME: This is a nop on big endian machines. Is the compiler smart enough to spot that? */
2389
0
                uint16_t *buff_ptr;
2390
0
                int j, k, z;
2391
0
                int rowstride = transbuff->rowstride>>1;
2392
0
                int planestride = transbuff->planestride;
2393
0
                for (j = 0; j < transbuff->n_chan; j++) {
2394
0
                    buff_ptr = (uint16_t *)(transbuff->transbytes + j * planestride);
2395
0
                    for (k = 0; k < height; k++) {
2396
0
                        for (z = 0; z < width; z++) {
2397
0
                            uint16_t in = buff_ptr[z];
2398
0
                            ((byte *)(&buff_ptr[z]))[0] = in>>8;
2399
0
                            ((byte *)(&buff_ptr[z]))[1] = in;
2400
0
                        }
2401
0
                        buff_ptr += rowstride;
2402
0
                    }
2403
0
                }
2404
0
            }
2405
796
        }
2406
#if RAW_DUMP
2407
        /* Dump the buffer that should be going into the pattern */;
2408
        dump_raw_buffer_be(buf->memory,
2409
                           height, width, transbuff->n_chan,
2410
                           transbuff->planestride, transbuff->rowstride,
2411
                           "pdf14_pattern_buff", transbuff->transbytes,
2412
                           transbuff->deep);
2413
        global_index++;
2414
#endif
2415
        /* Go ahead and free up the pdf14 device */
2416
796
        dev_proc(dev, close_device)((gx_device *)dev);
2417
796
    } else {
2418
        /* Here we are coming from one of the fill image / pattern / mask
2419
           operations */
2420
707
        transbuff->pdev14 = dev;
2421
707
        transbuff->planestride = buf->planestride;
2422
707
        transbuff->rowstride = buf->rowstride;
2423
707
        transbuff->transbytes = buf->data;
2424
707
        transbuff->mem = buf->memory;
2425
707
        transbuff->rect = rect;
2426
#if RAW_DUMP
2427
    /* Dump the buffer that should be going into the pattern */;
2428
        dump_raw_buffer(buf->memory,
2429
                        height, width, buf->n_chan,
2430
                        pdev->ctx->stack->planestride, pdev->ctx->stack->rowstride,
2431
                        "pdf14_pattern_buff",
2432
                        buf->data,
2433
                        transbuff->deep);
2434
        global_index++;
2435
#endif
2436
707
    }
2437
1.50k
    return 0;
2438
1.50k
}
2439
2440
typedef void(*blend_image_row_proc_t) (const byte *gs_restrict buf_ptr,
2441
    int planestride, int width, int num_comp, uint16_t bg, byte *gs_restrict linebuf);
2442
2443
2444
static int
2445
pdf14_put_image_color_convert(const pdf14_device* dev, gs_gstate* pgs, cmm_profile_t* src_profile,
2446
                        cmm_dev_profile_t* dev_target_profile, pdf14_buf** buf,
2447
                        byte** buf_ptr, bool was_blended, int x, int y, int width, int height)
2448
11.0k
{
2449
11.0k
    pdf14_buf* cm_result = NULL;
2450
11.0k
    cmm_profile_t* des_profile;
2451
11.0k
    gsicc_rendering_param_t render_cond;
2452
11.0k
    bool did_alloc;
2453
11.0k
    bool endian_swap;
2454
2455
11.0k
    gsicc_extract_profile(GS_UNKNOWN_TAG, dev_target_profile, &des_profile,
2456
11.0k
        &render_cond);
2457
2458
#if RAW_DUMP
2459
    dump_raw_buffer(dev->ctx->memory,
2460
        height, width, (*buf)->n_planes, (*buf)->planestride,
2461
        (*buf)->rowstride, "pdf14_put_image_color_convert_pre", *buf_ptr, (*buf)->deep);
2462
    global_index++;
2463
#endif
2464
2465
    /* If we are doing a 16 bit buffer it will be big endian if we have already done the
2466
       blend, otherwise it will be native endian. GS expects its 16bit buffers to be BE
2467
       but for sanity pdf14 device maintains 16bit buffers in native format.  The CMM
2468
       will need to know if it is dealing with native or BE data. */
2469
11.0k
    if (was_blended && (*buf)->deep) {
2470
        /* Data is in BE.  If we are in a LE machine, CMM will need to swap for
2471
           color conversion */
2472
#if ARCH_IS_BIG_ENDIAN
2473
        endian_swap = false;
2474
#else
2475
0
        endian_swap = true;
2476
0
#endif
2477
11.0k
    } else {
2478
        /* Data is in native format. No swap needed for CMM */
2479
11.0k
        endian_swap = false;
2480
11.0k
    }
2481
2482
11.0k
    cm_result = pdf14_transform_color_buffer_no_matte(pgs, dev->ctx, (gx_device*) dev, *buf,
2483
11.0k
        *buf_ptr, src_profile, des_profile, x, y, width,
2484
11.0k
        height, &did_alloc, (*buf)->deep, endian_swap);
2485
2486
11.0k
    if (cm_result == NULL)
2487
0
        return_error(gs_error_VMerror);
2488
2489
    /* Update */
2490
11.0k
    *buf = cm_result;
2491
2492
    /* Make sure our buf_ptr is pointing to the proper location */
2493
11.0k
    if (did_alloc)
2494
11.0k
        *buf_ptr = cm_result->data;  /* Note the lack of offset */
2495
2496
#if RAW_DUMP
2497
    dump_raw_buffer(dev->ctx->memory,
2498
        height, width, (*buf)->n_planes, (*buf)->planestride,
2499
        (*buf)->rowstride, "pdf14_put_image_color_convert_post", *buf_ptr, (*buf)->deep);
2500
    global_index++;
2501
#endif
2502
11.0k
    return 0;
2503
11.0k
}
2504
2505
/**
2506
 * pdf14_put_image: Put rendered image to target device.
2507
 * @pdev: The PDF 1.4 rendering device.
2508
 * @pgs: State for image draw operation.
2509
 * @target: The target device.
2510
 *
2511
 * Puts the rendered image in @pdev's buffer to @target. This is called
2512
 * as part of the sequence of popping the PDF 1.4 device filter.
2513
 *
2514
 * Return code: negative on error.
2515
 **/
2516
static  int
2517
pdf14_put_image(gx_device * dev, gs_gstate * pgs, gx_device * target)
2518
0
{
2519
0
    const pdf14_device * pdev = (pdf14_device *)dev;
2520
0
    int code;
2521
0
    gs_image1_t image;
2522
0
    gx_image_enum_common_t *info;
2523
0
    pdf14_buf *buf = pdev->ctx->stack;
2524
0
    gs_int_rect rect;
2525
0
    int y;
2526
0
    int num_comp;
2527
0
    byte *linebuf, *linebuf_unaligned;
2528
0
    gs_color_space *pcs;
2529
0
    int x1, y1, width, height;
2530
0
    byte *buf_ptr;
2531
0
    int num_rows_left;
2532
0
    cmm_profile_t* src_profile = NULL;
2533
0
    cmm_profile_t* des_profile = NULL;
2534
0
    cmm_dev_profile_t *pdf14dev_profile;
2535
0
    cmm_dev_profile_t *dev_target_profile;
2536
0
    uint16_t bg;
2537
0
    bool has_tags = device_encodes_tags(dev);
2538
0
    bool deep = pdev->ctx->deep;
2539
0
    int planestride;
2540
0
    int rowstride;
2541
0
    blend_image_row_proc_t blend_row;
2542
0
    bool color_mismatch = false;
2543
0
    bool supports_alpha = false;
2544
0
    int i;
2545
0
    int alpha_offset, tag_offset;
2546
0
    const byte* buf_ptrs[GS_CLIENT_COLOR_MAX_COMPONENTS];
2547
0
    int rendering_intent_saved;
2548
0
    int additive;
2549
2550
    /* Nothing was ever drawn. */
2551
0
    if (buf == NULL)
2552
0
        return 0;
2553
2554
0
    additive = buf->group_color_info->isadditive;
2555
2556
0
    src_profile = buf->group_color_info->icc_profile;
2557
2558
0
    num_comp = buf->n_chan - 1;
2559
0
    rect = buf->rect;
2560
0
    planestride = buf->planestride;
2561
0
    rowstride = buf->rowstride;
2562
2563
    /* Make sure that this is the only item on the stack. Fuzzing revealed a
2564
       potential problem. Bug 694190 */
2565
0
    if (buf->saved != NULL) {
2566
0
        return gs_throw(gs_error_unknownerror, "PDF14 device push/pop out of sync");
2567
0
    }
2568
0
    if_debug0m('v', dev->memory, "[v]pdf14_put_image\n");
2569
0
    rect_intersect(rect, buf->dirty);
2570
0
    x1 = min(pdev->width, rect.q.x);
2571
0
    y1 = min(pdev->height, rect.q.y);
2572
0
    width = x1 - rect.p.x;
2573
0
    height = y1 - rect.p.y;
2574
#ifdef DUMP_TO_PNG
2575
    dump_planar_rgba(pdev->memory, buf);
2576
#endif
2577
0
    if (width <= 0 || height <= 0 || buf->data == NULL)
2578
0
        return 0;
2579
0
    buf_ptr = buf->data + (rect.p.y - buf->rect.p.y) * buf->rowstride + ((rect.p.x - buf->rect.p.x) << deep);
2580
2581
    /* Check that target is OK.  From fuzzing results the target could have been
2582
       destroyed, for e.g if it were a pattern accumulator that was closed
2583
       prematurely (Bug 694154).  We should always be able to to get an ICC
2584
       profile from the target. */
2585
0
    code = dev_proc(target, get_profile)(target,  &dev_target_profile);
2586
0
    if (code < 0)
2587
0
        return code;
2588
0
    if (dev_target_profile == NULL)
2589
0
        return gs_throw_code(gs_error_Fatal);
2590
2591
0
    if (src_profile == NULL) {
2592
0
        code = dev_proc(dev, get_profile)(dev, &pdf14dev_profile);
2593
0
        if (code < 0) {
2594
0
            return code;
2595
0
        }
2596
0
        src_profile = pdf14dev_profile->device_profile[GS_DEFAULT_DEVICE_PROFILE];
2597
0
    }
2598
2599
    /* Check if we have a color conversion issue */
2600
0
    des_profile = dev_target_profile->device_profile[GS_DEFAULT_DEVICE_PROFILE];
2601
0
    if (!gsicc_profiles_equal(des_profile, src_profile))
2602
0
        color_mismatch = true;
2603
2604
    /* Check if target supports alpha */
2605
0
    supports_alpha = dev_proc(target, dev_spec_op)(target, gxdso_supports_alpha, NULL, 0);
2606
0
    code = 0;
2607
2608
#if RAW_DUMP
2609
    dump_raw_buffer(pdev->ctx->memory, height, width, buf->n_planes,
2610
        pdev->ctx->stack->planestride, pdev->ctx->stack->rowstride,
2611
        "pre_final_blend", buf_ptr, deep);
2612
#endif
2613
2614
    /* Note. The logic below will need a little rework if we ever
2615
       have a device that has tags and alpha support */
2616
0
    if (supports_alpha) {
2617
0
        if (!color_mismatch) {
2618
0
            alpha_offset = num_comp;
2619
0
            tag_offset = buf->has_tags ? buf->n_chan : 0;
2620
2621
0
            for (i = 0; i < buf->n_planes; i++)
2622
0
                buf_ptrs[i] = buf_ptr + i * planestride;
2623
0
            for (; i < target->color_info.num_components; i++)
2624
0
                buf_ptrs[i] = 0;
2625
0
            code = dev_proc(target, put_image) (target, target, buf_ptrs, num_comp,
2626
0
                rect.p.x, rect.p.y, width, height,
2627
0
                rowstride, alpha_offset,
2628
0
                tag_offset);
2629
            /* Right now code has number of rows written */
2630
0
        } else {
2631
            /* In this case, just color convert and maintain alpha.  This is a case
2632
               where we either either blend in the right color space and have no
2633
               alpha for the output device or hand back the wrong color space with
2634
               alpha data.  We choose the later. */
2635
0
            code = pdf14_put_image_color_convert(pdev, pgs, src_profile,
2636
0
                dev_target_profile, &buf, &buf_ptr, false, rect.p.x, rect.p.y,
2637
0
                width, height);
2638
0
            if (code < 0)
2639
0
                return code;
2640
2641
            /* reset */
2642
0
            rowstride = buf->rowstride;
2643
0
            planestride = buf->planestride;
2644
0
            num_comp = buf->n_chan - 1;
2645
0
            alpha_offset = num_comp;
2646
0
            tag_offset = buf->has_tags ? buf->n_chan : 0;
2647
2648
            /* And then out */
2649
0
            for (i = 0; i < buf->n_planes; i++)
2650
0
                buf_ptrs[i] = buf_ptr + i * planestride;
2651
0
            for (; i < target->color_info.num_components; i++)
2652
0
                buf_ptrs[i] = 0;
2653
0
            code = dev_proc(target, put_image) (target, target, buf_ptrs, num_comp,
2654
0
                rect.p.x, rect.p.y, width, height, rowstride, alpha_offset,
2655
0
                tag_offset);
2656
            /* Right now code has number of rows written */
2657
0
        }
2658
0
    } else if (has_tags) {
2659
        /* We are going out to a device that supports tags */
2660
0
        if (deep) {
2661
0
            gx_blend_image_buffer16(buf_ptr, width, height, rowstride,
2662
0
                buf->planestride, num_comp, additive, false);
2663
0
        } else {
2664
0
            gx_blend_image_buffer(buf_ptr, width, height, rowstride,
2665
0
                buf->planestride, num_comp, additive);
2666
0
        }
2667
2668
#if RAW_DUMP
2669
        dump_raw_buffer(pdev->ctx->memory, height, width, buf->n_planes,
2670
            pdev->ctx->stack->planestride, pdev->ctx->stack->rowstride,
2671
            "post_final_blend", buf_ptr, deep);
2672
#endif
2673
2674
        /* Take care of color issues */
2675
0
        if (color_mismatch) {
2676
            /* In this case, just color convert and maintain alpha.  This is a case
2677
               where we either either blend in the right color space and have no
2678
               alpha for the output device or hand back the wrong color space with
2679
               alpha data.  We choose the later. */
2680
0
            code = pdf14_put_image_color_convert(pdev, pgs, src_profile, dev_target_profile,
2681
0
                &buf, &buf_ptr, true, rect.p.x, rect.p.y, width, height);
2682
0
            if (code < 0)
2683
0
                return code;
2684
2685
#if RAW_DUMP
2686
            dump_raw_buffer(pdev->ctx->memory, height, width, buf->n_planes,
2687
                pdev->ctx->stack->planestride, pdev->ctx->stack->rowstride,
2688
                "final_color_manage", buf_ptr, deep);
2689
            global_index++;
2690
#endif
2691
0
        }
2692
2693
        /* reset */
2694
0
        rowstride = buf->rowstride;
2695
0
        planestride = buf->planestride;
2696
0
        num_comp = buf->n_chan - 1;
2697
0
        alpha_offset = 0;  /* It is there but this indicates we have done the blend */
2698
0
        tag_offset = buf->has_tags ? buf->n_chan : 0;
2699
2700
        /* And then out */
2701
0
        for (i = 0; i < buf->n_planes; i++)
2702
0
            buf_ptrs[i] = buf_ptr + i * planestride;
2703
0
        for (; i < target->color_info.num_components; i++)
2704
0
            buf_ptrs[i] = 0;
2705
0
        code = dev_proc(target, put_image) (target, target, buf_ptrs, num_comp,
2706
0
            rect.p.x, rect.p.y, width, height, rowstride, alpha_offset,
2707
0
            tag_offset);
2708
        /* Right now code has number of rows written */
2709
2710
0
    }
2711
2712
    /* If code > 0 then put image worked.  Let it finish and then exit */
2713
0
    if (code > 0) {
2714
        /* We processed some or all of the rows.  Continue until we are done */
2715
0
        num_rows_left = height - code;
2716
0
        while (num_rows_left > 0) {
2717
0
            code = dev_proc(target, put_image) (target, target, buf_ptrs, num_comp,
2718
0
                                                rect.p.x, rect.p.y + code, width,
2719
0
                                                num_rows_left, rowstride,
2720
0
                                                alpha_offset, tag_offset);
2721
0
            num_rows_left = num_rows_left - code;
2722
0
        }
2723
0
        return 0;
2724
0
    }
2725
2726
    /* Target device did not support alpha or tags.
2727
     * Set color space in preparation for sending an image.
2728
     * color conversion will occur after blending with through
2729
     * the begin typed image work flow.
2730
     */
2731
2732
0
    planestride = buf->planestride;
2733
0
    rowstride = buf->rowstride;
2734
0
    code = gs_cspace_build_ICC(&pcs, NULL, pgs->memory);
2735
0
    if (code < 0)
2736
0
        return code;
2737
    /* Need to set this to avoid color management during the image color render
2738
       operation.  Exception is for the special case when the destination was
2739
       CIELAB.  Then we need to convert from default RGB to CIELAB in the put
2740
       image operation.  That will happen here as we should have set the profile
2741
       for the pdf14 device to RGB and the target will be CIELAB.  In addition,
2742
       the case when we have a blend color space that is different than the
2743
       target device color space */
2744
0
    pcs->cmm_icc_profile_data = src_profile;
2745
2746
    /* pcs takes a reference to the profile data it just retrieved. */
2747
0
    gsicc_adjust_profile_rc(pcs->cmm_icc_profile_data, 1, "pdf14_put_image");
2748
0
    gsicc_set_icc_range(&(pcs->cmm_icc_profile_data));
2749
0
    gs_image_t_init_adjust(&image, pcs, false);
2750
0
    image.ImageMatrix.xx = (float)width;
2751
0
    image.ImageMatrix.yy = (float)height;
2752
0
    image.Width = width;
2753
0
    image.Height = height;
2754
0
    image.BitsPerComponent = deep ? 16 : 8;
2755
0
    image.ColorSpace = pcs;
2756
0
    ctm_only_writable(pgs).xx = (float)width;
2757
0
    ctm_only_writable(pgs).xy = 0;
2758
0
    ctm_only_writable(pgs).yx = 0;
2759
0
    ctm_only_writable(pgs).yy = (float)height;
2760
0
    ctm_only_writable(pgs).tx = (float)rect.p.x;
2761
0
    ctm_only_writable(pgs).ty = (float)rect.p.y;
2762
    /* Make sure that the relative colorimetric rendering intent is
2763
       used for this image. */
2764
0
    rendering_intent_saved = pgs->renderingintent;
2765
0
    pgs->renderingintent = gsRELATIVECOLORIMETRIC;
2766
0
    code = dev_proc(target, begin_typed_image) (target,
2767
0
                                                pgs, NULL,
2768
0
                                                (gs_image_common_t *)&image,
2769
0
                                                NULL, NULL, NULL,
2770
0
                                                pgs->memory, &info);
2771
0
    pgs->renderingintent = rendering_intent_saved;
2772
0
    if (code < 0) {
2773
0
        rc_decrement_only_cs(pcs, "pdf14_put_image");
2774
0
        return code;
2775
0
    }
2776
#if RAW_DUMP
2777
    /* Dump the current buffer to see what we have. */
2778
    dump_raw_buffer(pdev->ctx->memory,
2779
                    pdev->ctx->stack->rect.q.y-pdev->ctx->stack->rect.p.y,
2780
                    pdev->ctx->stack->rect.q.x-pdev->ctx->stack->rect.p.x,
2781
                    pdev->ctx->stack->n_planes,
2782
                    pdev->ctx->stack->planestride, pdev->ctx->stack->rowstride,
2783
                    "pdF14_putimage", pdev->ctx->stack->data, deep);
2784
    dump_raw_buffer(pdev->ctx->memory,
2785
                    height, width, buf->n_planes,
2786
                    pdev->ctx->stack->planestride, pdev->ctx->stack->rowstride,
2787
                    "PDF14_PUTIMAGE_SMALL", buf_ptr, deep);
2788
    global_index++;
2789
    clist_band_count++;
2790
#endif
2791
    /* Allocate on 32-byte border for AVX CMYK case. Four byte overflow for RGB case */
2792
    /* 28 byte overflow for AVX CMYK case. */
2793
0
#define SSE_ALIGN 32
2794
0
#define SSE_OVERFLOW 28
2795
0
    linebuf_unaligned = gs_alloc_bytes(pdev->memory, width * (num_comp<<deep) + SSE_ALIGN + SSE_OVERFLOW, "pdf14_put_image");
2796
0
    if (linebuf_unaligned == NULL)
2797
0
        return gs_error_VMerror;
2798
0
    linebuf = linebuf_unaligned + ((-(intptr_t)linebuf_unaligned) & (SSE_ALIGN-1));
2799
2800
0
    blend_row = deep ? gx_build_blended_image_row16 :
2801
0
                       gx_build_blended_image_row;
2802
#ifdef WITH_CAL
2803
    blend_row = cal_get_blend_row(pdev->memory->gs_lib_ctx->core->cal_ctx,
2804
                                  blend_row, num_comp, deep);
2805
#endif
2806
2807
0
    bg = additive ? (deep ? 65535 : 255) : 0;
2808
0
    for (y = 0; y < height; y++) {
2809
0
        gx_image_plane_t planes;
2810
0
        int rows_used;
2811
2812
0
        blend_row(buf_ptr, buf->planestride, width, num_comp, bg, linebuf);
2813
0
        planes.data = linebuf;
2814
0
        planes.data_x = 0;
2815
0
        planes.raster = width * num_comp;
2816
0
        info->procs->plane_data(info, &planes, 1, &rows_used);
2817
        /* todo: check return value */
2818
0
        buf_ptr += buf->rowstride;
2819
0
    }
2820
0
    gs_free_object(pdev->memory, linebuf_unaligned, "pdf14_put_image");
2821
0
    info->procs->end_image(info, true);
2822
    /* This will also decrement the device profile */
2823
0
    rc_decrement_only_cs(pcs, "pdf14_put_image");
2824
0
    return code;
2825
0
}
2826
2827
/* Overprint simulation with spots.  Collapse to CMYK */
2828
static void
2829
template_spots_to_cmyk(byte *buf_ptr, int width, int height, int rowstride,
2830
    int planestride, int num_comp, int spot_start, int tag_offset,
2831
    cmyk_composite_map *map, bool keep_alpha)
2832
0
{
2833
0
    int comp_num;
2834
0
    uint cyan, magenta, yellow, black;
2835
0
    cmyk_composite_map *cmyk_map_entry;
2836
0
    int x, y;
2837
0
    int position;
2838
0
    byte comp, a;
2839
2840
0
    for (y = 0; y < height; y++) {
2841
0
        position = y * rowstride;
2842
0
        for (x = 0; x < width; x++) {
2843
0
            a = buf_ptr[position + planestride * num_comp];
2844
0
            if (a != 0) {
2845
0
                cyan = buf_ptr[position] * frac_1;
2846
0
                magenta = buf_ptr[position + planestride] * frac_1;
2847
0
                yellow = buf_ptr[position + planestride * 2] * frac_1;
2848
0
                black = buf_ptr[position + planestride * 3] * frac_1;
2849
0
                cmyk_map_entry = &(map[4]);
2850
0
                for (comp_num = spot_start; comp_num < num_comp; comp_num++) {
2851
0
                    comp = buf_ptr[position + planestride * comp_num];
2852
0
                    cyan += cmyk_map_entry->c * comp;
2853
0
                    magenta += cmyk_map_entry->m * comp;
2854
0
                    yellow += cmyk_map_entry->y * comp;
2855
0
                    black += cmyk_map_entry->k * comp;
2856
0
                    cmyk_map_entry++;
2857
0
                }
2858
0
                cyan /= frac_1;
2859
0
                magenta /= frac_1;
2860
0
                yellow /= frac_1;
2861
0
                black /= frac_1;
2862
2863
0
                if (cyan > 255)
2864
0
                    cyan = 255;
2865
0
                if (magenta > 255)
2866
0
                    magenta = 255;
2867
0
                if (yellow > 255)
2868
0
                    yellow = 255;
2869
0
                if (black > 255)
2870
0
                    black = 255;
2871
2872
0
                buf_ptr[position] = cyan;
2873
0
                buf_ptr[position + planestride] = magenta;
2874
0
                buf_ptr[position + planestride * 2] = yellow;
2875
0
                buf_ptr[position + planestride * 3] = black;
2876
0
            }
2877
0
            if (keep_alpha) {
2878
                /* Move the alpha and tag data */
2879
0
                buf_ptr[position + planestride * 4] = a;
2880
0
                if (tag_offset > 0) {
2881
0
                    buf_ptr[position + planestride * 5] =
2882
0
                        buf_ptr[position + planestride * tag_offset];
2883
0
                }
2884
0
            } else {
2885
                /* Remove alpha but keep tags */
2886
0
                if (tag_offset > 0) {
2887
0
                    buf_ptr[position + planestride * 4] =
2888
0
                        buf_ptr[position + planestride * tag_offset];
2889
0
                }
2890
2891
0
            }
2892
0
            position += 1;
2893
0
        }
2894
0
    }
2895
0
}
2896
2897
static void
2898
template_spots_to_cmyk_16(byte *buf_ptr_, int width, int height, int rowstride,
2899
    int planestride, int num_comp, int spot_start, int tag_offset,
2900
    cmyk_composite_map *map, bool keep_alpha)
2901
0
{
2902
0
    int comp_num;
2903
0
    ulong cyan, magenta, yellow, black;
2904
0
    cmyk_composite_map *cmyk_map_entry;
2905
0
    int x, y;
2906
0
    int position;
2907
0
    ulong comp, a;
2908
0
    uint16_t *buf_ptr = (uint16_t *)(void *)buf_ptr_;
2909
2910
    /* planestride and rowstride are in bytes, and we want them in shorts */
2911
0
    planestride >>= 1;
2912
0
    rowstride >>= 1;
2913
2914
0
    for (y = 0; y < height; y++) {
2915
0
        position = y * rowstride;
2916
0
        for (x = 0; x < width; x++) {
2917
0
            a = buf_ptr[position + planestride * num_comp];
2918
0
            if (a != 0) {
2919
0
                cyan = (ulong)buf_ptr[position] * frac_1_long;
2920
0
                magenta = (ulong)buf_ptr[position + planestride] * frac_1_long;
2921
0
                yellow = (ulong)buf_ptr[position + planestride * 2] * frac_1_long;
2922
0
                black = (ulong)buf_ptr[position + planestride * 3] * frac_1_long;
2923
0
                cmyk_map_entry = &(map[4]);
2924
0
                for (comp_num = spot_start; comp_num < num_comp; comp_num++) {
2925
0
                    comp = buf_ptr[position + planestride * comp_num];
2926
0
                    cyan += (ulong)cmyk_map_entry->c * comp;
2927
0
                    magenta += (ulong)cmyk_map_entry->m * comp;
2928
0
                    yellow += (ulong)cmyk_map_entry->y * comp;
2929
0
                    black += (ulong)cmyk_map_entry->k * comp;
2930
0
                    cmyk_map_entry++;
2931
0
                }
2932
0
                cyan /= frac_1_long;
2933
0
                magenta /= frac_1_long;
2934
0
                yellow /= frac_1_long;
2935
0
                black /= frac_1_long;
2936
2937
0
                if (cyan > 65535)
2938
0
                    cyan = 65535;
2939
0
                if (magenta > 65535)
2940
0
                    magenta = 65535;
2941
0
                if (yellow > 65535)
2942
0
                    yellow = 65535;
2943
0
                if (black > 65535)
2944
0
                    black = 65535;
2945
2946
#if ARCH_IS_BIG_ENDIAN
2947
                buf_ptr[position] = cyan;
2948
                buf_ptr[position + planestride] = magenta;
2949
                buf_ptr[position + planestride * 2] = yellow;
2950
                buf_ptr[position + planestride * 3] = black;
2951
#else
2952
0
                ((byte *)&buf_ptr[position])[0] = cyan >> 8;
2953
0
                ((byte *)&buf_ptr[position])[1] = cyan;
2954
0
                ((byte *)&buf_ptr[position + planestride])[0] = magenta >> 8;
2955
0
                ((byte *)&buf_ptr[position + planestride])[1] = magenta;
2956
0
                ((byte *)&buf_ptr[position + planestride * 2])[0] = yellow >> 8;
2957
0
                ((byte *)&buf_ptr[position + planestride * 2])[1] = yellow;
2958
0
                ((byte *)&buf_ptr[position + planestride * 3])[0] = black >> 8;
2959
0
                ((byte *)&buf_ptr[position + planestride * 3])[1] = black;
2960
0
#endif
2961
0
            }
2962
            /* Move the alpha and tag data */
2963
#if ARCH_IS_BIG_ENDIAN
2964
            if (keep_alpha) {
2965
                buf_ptr[position + planestride * 4] = a;
2966
                if (tag_offset > 0) {
2967
                    buf_ptr[position + planestride * 5] =
2968
                        buf_ptr[position + planestride * tag_offset];
2969
                }
2970
            } else {
2971
                if (tag_offset > 0) {
2972
                    buf_ptr[position + planestride * 4] =
2973
                        buf_ptr[position + planestride * tag_offset];
2974
                }
2975
            }
2976
#else
2977
0
            if (keep_alpha) {
2978
0
                ((byte *)&buf_ptr[position + planestride * 4])[0] = a >> 8;
2979
0
                ((byte *)&buf_ptr[position + planestride * 4])[1] = a;
2980
0
                if (tag_offset > 0) {
2981
0
                    ((byte *)&buf_ptr[position + planestride * 5])[0] =
2982
0
                        buf_ptr[position + planestride * tag_offset] >> 8;
2983
0
                    ((byte *)&buf_ptr[position + planestride * 5])[1] =
2984
0
                        buf_ptr[position + planestride * tag_offset];
2985
0
                }
2986
0
            } else {
2987
0
                if (tag_offset > 0) {
2988
0
                    ((byte *)&buf_ptr[position + planestride * 4])[0] =
2989
0
                        buf_ptr[position + planestride * tag_offset] >> 8;
2990
0
                    ((byte *)&buf_ptr[position + planestride * 4])[1] =
2991
0
                        buf_ptr[position + planestride * tag_offset];
2992
0
                }
2993
0
            }
2994
0
#endif
2995
0
            position += 1;
2996
0
        }
2997
0
    }
2998
0
}
2999
3000
static void
3001
pdf14_spots_to_cmyk(byte *buf_ptr, int width, int height, int rowstride,
3002
    int planestride, int num_comp, int spot_start, int tag_offset,
3003
    cmyk_composite_map *map, bool keep_alpha, bool deep)
3004
0
{
3005
0
    if (deep) {
3006
0
        if (keep_alpha) {
3007
0
            if (tag_offset > 0) {
3008
0
                template_spots_to_cmyk_16(buf_ptr, width, height, rowstride,
3009
0
                    planestride, num_comp, spot_start, tag_offset,
3010
0
                    map, true);
3011
0
            } else {
3012
0
                template_spots_to_cmyk_16(buf_ptr, width, height, rowstride,
3013
0
                    planestride, num_comp, spot_start, 0,
3014
0
                    map, true);
3015
0
            }
3016
0
        } else {
3017
0
            if (tag_offset > 0) {
3018
0
                template_spots_to_cmyk_16(buf_ptr, width, height, rowstride,
3019
0
                    planestride, num_comp, spot_start, tag_offset,
3020
0
                    map, false);
3021
0
            } else {
3022
0
                template_spots_to_cmyk_16(buf_ptr, width, height, rowstride,
3023
0
                    planestride, num_comp, spot_start, 0,
3024
0
                    map, false);
3025
0
            }
3026
0
        }
3027
0
    } else {
3028
0
        if (keep_alpha) {
3029
0
            if (tag_offset > 0) {
3030
0
                template_spots_to_cmyk(buf_ptr, width, height, rowstride,
3031
0
                    planestride, num_comp, spot_start, tag_offset,
3032
0
                    map, true);
3033
0
            } else {
3034
0
                template_spots_to_cmyk(buf_ptr, width, height, rowstride,
3035
0
                    planestride, num_comp, spot_start, 0,
3036
0
                    map, true);
3037
0
            }
3038
0
        } else {
3039
0
            if (tag_offset > 0) {
3040
0
                template_spots_to_cmyk(buf_ptr, width, height, rowstride,
3041
0
                    planestride, num_comp, spot_start, tag_offset,
3042
0
                    map, false);
3043
0
            } else {
3044
0
                template_spots_to_cmyk(buf_ptr, width, height, rowstride,
3045
0
                    planestride, num_comp, spot_start, 0,
3046
0
                    map, false);
3047
0
            }
3048
0
        }
3049
0
    }
3050
0
}
3051
3052
/* This is for the case where we have mixture of spots and additive color.
3053
   For example, RGB + spots or Gray + spots */
3054
static void
3055
pdf14_blend_image_mixed_buffer(byte* buf_ptr, int width, int height, int rowstride,
3056
    int planestride, int num_comp, int spot_start)
3057
11.0k
{
3058
11.0k
    int x, y;
3059
11.0k
    int position;
3060
11.0k
    byte comp, a;
3061
11.0k
    int tmp, comp_num;
3062
3063
119k
    for (y = 0; y < height; y++) {
3064
108k
        position = y * rowstride;
3065
116M
        for (x = 0; x < width; x++) {
3066
116M
            a = buf_ptr[position + planestride * num_comp];
3067
116M
            if ((a + 1) & 0xfe) {
3068
6.10M
                a ^= 0xff;
3069
24.4M
                for (comp_num = 0; comp_num < spot_start; comp_num++) {
3070
18.3M
                    comp = buf_ptr[position + planestride * comp_num];
3071
18.3M
                    tmp = ((0xff - comp) * a) + 0x80;
3072
18.3M
                    comp += (tmp + (tmp >> 8)) >> 8;
3073
18.3M
                    buf_ptr[position + planestride * comp_num] = comp;
3074
18.3M
                }
3075
6.10M
                for (comp_num = spot_start; comp_num < num_comp; comp_num++) {
3076
0
                    comp = buf_ptr[position + planestride * comp_num];
3077
0
                    tmp = ((-comp) * a) + 0x80;
3078
0
                    comp += (tmp + (tmp >> 8)) >> 8;
3079
0
                    buf_ptr[position + planestride * comp_num] = comp;
3080
0
                }
3081
110M
            } else if (a == 0) {
3082
56.4M
                for (comp_num = 0; comp_num < spot_start; comp_num++) {
3083
42.3M
                    buf_ptr[position + planestride * comp_num] = 0xff;
3084
42.3M
                }
3085
14.1M
                for (comp_num = spot_start; comp_num < num_comp; comp_num++) {
3086
22.1k
                    buf_ptr[position + planestride * comp_num] = 0;
3087
22.1k
                }
3088
14.1M
            }
3089
116M
            position += 1;
3090
116M
        }
3091
108k
    }
3092
11.0k
}
3093
3094
static void
3095
pdf14_blend_image_mixed_buffer16(byte* buf_ptr_, int width, int height, int rowstride,
3096
    int planestride, int num_comp, int spot_start)
3097
0
{
3098
0
    uint16_t* buf_ptr = (uint16_t*)(void*)buf_ptr_;
3099
0
    int x, y;
3100
0
    int position;
3101
0
    int comp, a;
3102
0
    int tmp, comp_num;
3103
3104
    /* planestride and rowstride are in bytes, and we want them in shorts */
3105
0
    planestride >>= 1;
3106
0
    rowstride >>= 1;
3107
3108
    /* Note that the input here is native endian, and the output must be in big endian! */
3109
0
    for (y = 0; y < height; y++) {
3110
0
        position = y * rowstride;
3111
0
        for (x = 0; x < width; x++) {
3112
            /* composite RGBA (or CMYKA, etc.) pixel with over solid background */
3113
0
            a = buf_ptr[position + planestride * num_comp];
3114
0
            if (a == 0) {
3115
0
                for (comp_num = 0; comp_num < spot_start; comp_num++) {
3116
0
                    buf_ptr[position + planestride * comp_num] = 0xffff;
3117
0
                }
3118
0
                for (comp_num = spot_start; comp_num < num_comp; comp_num++) {
3119
0
                    buf_ptr[position + planestride * comp_num] = 0;
3120
0
                }
3121
0
            } else if (a == 0xffff) {
3122
#if ARCH_IS_BIG_ENDIAN
3123
#else
3124
                /* Convert from native -> big endian */
3125
0
                for (comp_num = 0; comp_num < num_comp; comp_num++) {
3126
0
                    comp = buf_ptr[position + planestride * comp_num];
3127
0
                    ((byte*)&buf_ptr[position + planestride * comp_num])[0] = comp >> 8;
3128
0
                    ((byte*)&buf_ptr[position + planestride * comp_num])[1] = comp;
3129
0
                }
3130
0
#endif
3131
0
            } else {
3132
0
                a ^= 0xffff;
3133
0
                a += a >> 15; /* a is now 0 to 0x10000 */
3134
0
                a >>= 1; /* We can only use 15 bits as bg-comp has a sign bit we can't lose */
3135
0
                for (comp_num = 0; comp_num < spot_start; comp_num++) {
3136
0
                    comp = buf_ptr[position + planestride * comp_num];
3137
0
                    tmp = ((0xffff - comp) * a) + 0x4000;
3138
0
                    comp += (tmp >> 15); /* Errors in bit 16 upwards will be ignored */
3139
                    /* Store as big endian */
3140
0
                    ((byte*)&buf_ptr[position + planestride * comp_num])[0] = comp >> 8;
3141
0
                    ((byte*)&buf_ptr[position + planestride * comp_num])[1] = comp;
3142
0
                }
3143
0
                for (comp_num = spot_start; comp_num < num_comp; comp_num++) {
3144
0
                    comp = buf_ptr[position + planestride * comp_num];
3145
0
                    tmp = ((0 - comp) * a) + 0x4000;
3146
0
                    comp += (tmp >> 15); /* Errors in bit 16 upwards will be ignored */
3147
                    /* Store as big endian */
3148
0
                    ((byte*)&buf_ptr[position + planestride * comp_num])[0] = comp >> 8;
3149
0
                    ((byte*)&buf_ptr[position + planestride * comp_num])[1] = comp;
3150
0
                }
3151
0
            }
3152
0
            position += 1;
3153
0
        }
3154
0
    }
3155
0
}
3156
3157
static int
3158
pdf14_put_blended_image_cmykspot(gx_device* dev, gx_device* target,
3159
    gs_gstate* pgs, pdf14_buf* buf, int planestride_in,
3160
    int rowstride_in, int x0, int y0, int width, int height,
3161
    int num_comp, int additive, bool has_tags, gs_int_rect rect_in,
3162
    gs_separations* pseparations, bool deep)
3163
46.4k
{
3164
46.4k
    pdf14_device* pdev = (pdf14_device*)dev;
3165
46.4k
    int code = 0;
3166
46.4k
    int y;
3167
46.4k
    int num_rows_left;
3168
46.4k
    int i;
3169
46.4k
    gs_int_rect rect = rect_in;
3170
46.4k
    int planestride = planestride_in;
3171
46.4k
    int rowstride = rowstride_in;
3172
46.4k
    byte* buf_ptr = NULL;
3173
46.4k
    cmm_profile_t* src_profile = buf->group_color_info->icc_profile;
3174
46.4k
    cmm_profile_t* des_profile = NULL;
3175
46.4k
    cmm_dev_profile_t* dev_target_profile;
3176
46.4k
    cmm_dev_profile_t* pdf14dev_profile;
3177
46.4k
    bool color_mismatch = false;
3178
46.4k
    bool supports_alpha = false;
3179
46.4k
    const byte* buf_ptrs[GS_CLIENT_COLOR_MAX_COMPONENTS];
3180
46.4k
    int alpha_offset = num_comp;
3181
46.4k
    int tag_offset = has_tags ? num_comp + 1 : 0;
3182
46.4k
    gs_color_space *pcs;
3183
46.4k
    gs_image1_t image;
3184
46.4k
    gx_image_enum_common_t *info;
3185
46.4k
    gx_image_plane_t planes[GS_IMAGE_MAX_COMPONENTS];
3186
46.4k
    pdf14_buf *cm_result = NULL;
3187
46.4k
    bool did_alloc;
3188
46.4k
    bool target_sep_device = dev_proc(target, dev_spec_op)(target, gxdso_supports_devn, NULL, 0);
3189
46.4k
    bool has_spots = pdev->ctx->num_spots > 0;
3190
46.4k
    bool blend_spots = !target_sep_device && has_spots;
3191
3192
    /* Check if group color space is CMYK based */
3193
46.4k
    code = dev_proc(target, get_profile)(target, &dev_target_profile);
3194
46.4k
    if (code < 0)
3195
0
        return code;
3196
46.4k
    if (dev_target_profile == NULL)
3197
0
        return gs_throw_code(gs_error_Fatal);
3198
3199
46.4k
    if (src_profile == NULL) {
3200
0
        code = dev_proc(dev, get_profile)(dev, &pdf14dev_profile);
3201
0
        if (code < 0) {
3202
0
            return code;
3203
0
        }
3204
0
        src_profile = pdf14dev_profile->device_profile[GS_DEFAULT_DEVICE_PROFILE];
3205
0
    }
3206
3207
    /* If the target device does not support spot colors and we have spot colors
3208
       here due to overprint simulation (blend_spots == true), then we will need to convert the base
3209
       colors to CMYK if it is RGB or Gray so tha we can blend in the spot colors */
3210
46.4k
    if (blend_spots && src_profile->data_cs != gsCMYK) {
3211
3212
0
        cm_result = pdf14_transform_color_buffer_no_matte(pgs, pdev->ctx, (gx_device *)dev, buf,
3213
0
            buf->data, src_profile, pgs->icc_manager->default_cmyk, 0, 0, buf->rect.q.x,
3214
0
            buf->rect.q.y, &did_alloc, buf->deep, false);
3215
0
        if (cm_result == NULL)
3216
0
            return_error(gs_error_VMerror);
3217
3218
        /* Update */
3219
0
        buf = cm_result;
3220
0
        src_profile = pgs->icc_manager->default_cmyk;
3221
0
        num_comp = buf->n_chan - 1;
3222
0
        additive = 0;
3223
0
        tag_offset = has_tags ? num_comp + 1 : 0;
3224
0
        alpha_offset = num_comp;
3225
3226
#if RAW_DUMP
3227
        buf_ptr = buf->data + (rect.p.y - buf->rect.p.y) * buf->rowstride + ((rect.p.x - buf->rect.p.x) << deep);
3228
        dump_raw_buffer(target->memory, height, width, buf->n_planes, planestride, rowstride,
3229
            "convertbase_to_cmyk_for_spot_blend", buf_ptr, deep);
3230
        global_index++;
3231
#endif
3232
0
    }
3233
3234
    /* Fix order map if needed */
3235
221k
    for (i = 0; i < num_comp; i++) {
3236
174k
        pdev->devn_params.separation_order_map[i] = i;
3237
174k
    }
3238
3239
    /* Check if we have a color conversion issue */
3240
46.4k
    des_profile = dev_target_profile->device_profile[GS_DEFAULT_DEVICE_PROFILE];
3241
46.4k
    if (!gsicc_profiles_equal(des_profile, src_profile))
3242
11.0k
        color_mismatch = true;
3243
3244
    /* Check if target supports alpha */
3245
46.4k
    supports_alpha = dev_proc(target, dev_spec_op)(target, gxdso_supports_alpha, NULL, 0);
3246
46.4k
    code = 0;
3247
3248
46.4k
    buf_ptr = buf->data + (rect.p.y - buf->rect.p.y) * buf->rowstride + ((rect.p.x - buf->rect.p.x) << deep);
3249
3250
    /* Note. The logic below will need a little rework if we ever
3251
       have a device that has tags and alpha support */
3252
46.4k
    if (supports_alpha) {
3253
3254
        /* If doing simulated overprint, Bring the spot color channels into
3255
           CMYK. Data is planar and 16 bit data in native format. */
3256
0
        if (pdev->overprint_sim && pdev->devn_params.page_spot_colors > 0) {
3257
0
            cmyk_composite_map cmyk_map[GX_DEVICE_MAX_SEPARATIONS];  /* Fracs */
3258
3259
            /* In the clist case, we need to get equiv spots out of the pseudo-band. */
3260
0
            if (pdev->pclist_device != NULL) {
3261
0
                gx_device_clist_reader *pcrdev = (gx_device_clist_reader *)(pdev->pclist_device);
3262
3263
0
                code = clist_read_op_equiv_cmyk_colors(pcrdev, &(pdev->op_pequiv_cmyk_colors));
3264
0
                if (code < 0)
3265
0
                    return code;
3266
0
            }
3267
0
            build_cmyk_map(dev, num_comp, &(pdev->op_pequiv_cmyk_colors), cmyk_map);
3268
3269
            /* Now we go to big endian */
3270
0
            pdf14_spots_to_cmyk(buf_ptr, width, height, rowstride,
3271
0
                planestride, num_comp, src_profile->num_comps,
3272
0
                tag_offset, cmyk_map, true, deep);
3273
3274
            /* Reset buffer information. We have CMYK+alpha and maybe tags */
3275
0
            buf->n_chan = buf->n_chan - buf->num_spots;
3276
0
            buf->n_planes = buf->n_planes - buf->num_spots;
3277
0
            buf->num_spots = 0;
3278
0
            num_comp = buf->n_chan - 1;
3279
0
            tag_offset = has_tags ? buf->n_planes - 1 : 0; /* Tags at end */
3280
0
        }
3281
3282
0
        if (!color_mismatch) {
3283
0
            for (i = 0; i < buf->n_planes; i++)
3284
0
                buf_ptrs[i] = buf_ptr + i * planestride;
3285
0
            for (; i < target->color_info.num_components; i++)
3286
0
                buf_ptrs[i] = 0;
3287
0
            code = dev_proc(target, put_image) (target, target, buf_ptrs, num_comp,
3288
0
                rect.p.x, rect.p.y, width, height,
3289
0
                rowstride, alpha_offset, tag_offset);
3290
            /* Right now code has number of rows written */
3291
0
        } else {
3292
            /* In this case, just color convert and maintain alpha.
3293
               This is a case where we either either blend in the
3294
               right color space and have no alpha for the output
3295
               device or hand back the wrong color space with
3296
               alpha data.  We choose the later. */
3297
0
            code = pdf14_put_image_color_convert(pdev, pgs, src_profile,
3298
0
                        dev_target_profile, &buf, &buf_ptr, false, rect.p.x,
3299
0
                        rect.p.y, width, height);
3300
0
            if (code < 0)
3301
0
                return code;
3302
3303
            /* reset */
3304
0
            rowstride = buf->rowstride;
3305
0
            planestride = buf->planestride;
3306
0
            num_comp = buf->n_chan - 1;
3307
0
            alpha_offset = num_comp;
3308
0
            tag_offset = buf->has_tags ? buf->n_chan : 0;
3309
3310
            /* And then out */
3311
0
            for (i = 0; i < buf->n_planes; i++)
3312
0
                buf_ptrs[i] = buf_ptr + i * planestride;
3313
0
            for (; i < target->color_info.num_components; i++)
3314
0
                buf_ptrs[i] = 0;
3315
0
            code = dev_proc(target, put_image) (target, target, buf_ptrs, num_comp,
3316
0
                rect.p.x, rect.p.y, width, height, rowstride, alpha_offset,
3317
0
                tag_offset);
3318
            /* Right now code has number of rows written.  Writing continues below */
3319
0
        }
3320
46.4k
    } else {
3321
        /* Device could not handle the alpha data (we actually don't have
3322
           a device that does spot colorants and has an alpha channel so
3323
           the above code is untested.  Go ahead and preblend now and then
3324
           color convert if needed */
3325
#if RAW_DUMP
3326
           /* Dump before and after the blend to make sure we are doing that ok */
3327
        dump_raw_buffer(target->memory, height, width, buf->n_planes, planestride, rowstride,
3328
            "pre_put_image_blend_image", buf_ptr, deep);
3329
        global_index++;
3330
#endif
3331
3332
46.4k
        if (color_mismatch && (src_profile->data_cs == gsRGB || src_profile->data_cs == gsGRAY)) {
3333
11.0k
            if (deep) {
3334
            /* In this case, we are NOT going to bring the spots into the CMYK
3335
               equivalent colors, since otherwise src_profile would be CMYK based.  So
3336
               16 bit data will be converted now from native endian to big endian during
3337
               the blending process */
3338
0
                pdf14_blend_image_mixed_buffer16(buf_ptr, width, height, rowstride,
3339
0
                    planestride, num_comp, src_profile->num_comps);
3340
11.0k
            } else {
3341
11.0k
                pdf14_blend_image_mixed_buffer(buf_ptr, width, height, rowstride,
3342
11.0k
                    planestride, num_comp, src_profile->num_comps);
3343
11.0k
            }
3344
35.4k
        } else {
3345
35.4k
            if (deep) {
3346
            /* In this case, if blend_spots == true, we will shortly be bringing
3347
               the spot colors to CMYK equivalent colors. It is at that time that
3348
               we will convert from native endian to big endian. In all other
3349
               cases this blending will due to conversion from native to BE */
3350
0
                bool keep_native = (blend_spots == true);
3351
3352
0
                gx_blend_image_buffer16(buf_ptr, width, height, rowstride,
3353
0
                    planestride, num_comp, additive, keep_native);
3354
35.4k
            } else {
3355
35.4k
                gx_blend_image_buffer(buf_ptr, width, height, rowstride,
3356
35.4k
                    planestride, num_comp, additive);
3357
35.4k
            }
3358
35.4k
        }
3359
3360
46.4k
        if (deep && has_tags)
3361
0
        {
3362
            /* We still need to convert the tags from Native to BE */
3363
#if ARCH_IS_BIG_ENDIAN
3364
#else
3365
0
            uint16_t *tags = (uint16_t *)&buf_ptr[tag_offset * planestride];
3366
0
            int i, j;
3367
0
            for (j = 0; j < height; j++)
3368
0
            {
3369
0
                for (i = 0; i < width; i++)
3370
0
                {
3371
0
                    uint16_t tag = *tags++;
3372
0
                    ((byte *)tags)[-2] = tag >> 8;
3373
0
                    ((byte *)tags)[-1] = tag;
3374
0
                }
3375
0
                tags += (buf->rowstride>>1) - width;
3376
0
            }
3377
0
#endif
3378
0
        }
3379
3380
#if RAW_DUMP
3381
        dump_raw_buffer_be(target->memory, height, width, buf->n_planes, planestride, rowstride,
3382
            "post_put_image_blend_image", buf_ptr, deep);
3383
        global_index++;
3384
#endif
3385
3386
        /* If doing simulated overprint and we are not going to a sep device and
3387
           we have spot colors, then bring the spot color channels into CMYK
3388
           (We should have already converted our base color space to CMYK if it was RGB or gray).
3389
           At this point, data is planar and 16 bit data is still in native format. It is
3390
           here that 16 bit data will be converted to BE. Otherwise it will have been converted
3391
           above during the alpha blend operation. */
3392
46.4k
        if (blend_spots) {
3393
0
            cmyk_composite_map cmyk_map[GX_DEVICE_MAX_SEPARATIONS];  /* Fracs */
3394
3395
            /* In the clist case, we need to get equiv spots out of the
3396
               pseudo-band. */
3397
0
            if (pdev->pclist_device != NULL) {
3398
0
                gx_device_clist_reader *pcrdev = (gx_device_clist_reader *)(pdev->pclist_device);
3399
0
                code = clist_read_op_equiv_cmyk_colors(pcrdev, &(pdev->op_pequiv_cmyk_colors));
3400
0
                if (code < 0)
3401
0
                    return code;
3402
0
            }
3403
3404
0
            build_cmyk_map(dev, num_comp, &(pdev->op_pequiv_cmyk_colors), cmyk_map);
3405
0
            pdf14_spots_to_cmyk(buf_ptr, width, height, rowstride,
3406
0
                planestride, num_comp, src_profile->num_comps,
3407
0
                tag_offset, cmyk_map, false, deep);
3408
3409
            /* Reset buffer information. We have CMYK and maybe tags */
3410
0
            num_comp = 4;
3411
0
            alpha_offset = 0;
3412
0
            buf->n_chan = buf->n_chan - buf->num_spots - 1;     /* No spots or alpha */
3413
0
            buf->n_planes = buf->n_planes - buf->num_spots - 1; /* No spots or alpha */
3414
0
            tag_offset = has_tags ? buf->n_chan : 0;      /* Tags at end */
3415
0
            buf->num_spots = 0;
3416
3417
#if RAW_DUMP
3418
            dump_raw_buffer(target->memory, height, width, buf->n_planes, planestride, rowstride,
3419
                "post_put_image_spot_to_cmyk", buf_ptr, deep);
3420
            global_index++;
3421
#endif
3422
0
        }
3423
3424
        /* Map to the destination color space */
3425
46.4k
        if (color_mismatch) {
3426
11.0k
            code = pdf14_put_image_color_convert(pdev, pgs, src_profile, dev_target_profile,
3427
11.0k
                &buf, &buf_ptr, true, rect.p.x, rect.p.y, width, height);
3428
11.0k
            if (code < 0)
3429
0
                return code;
3430
3431
            /* reset */
3432
11.0k
            rowstride = buf->rowstride;
3433
11.0k
            planestride = buf->planestride;
3434
11.0k
            num_comp = buf->n_chan;
3435
11.0k
            tag_offset = buf->has_tags ? buf->n_chan : 0;
3436
11.0k
        }
3437
3438
#if RAW_DUMP
3439
        /* Dump after the CS transform */
3440
        dump_raw_buffer_be(target->memory, height, width, buf->n_planes, planestride, rowstride,
3441
            "post_put_image_color_convert", buf_ptr, deep);
3442
        global_index++;
3443
        /* clist_band_count++; */
3444
#endif
3445
3446
        /* Try put_image again. This can occur if the
3447
           target, like psdcmyk and tiffsep, support put_image */
3448
46.4k
        alpha_offset = 0;
3449
279k
        for (i = 0; i < buf->n_planes; i++)
3450
232k
            buf_ptrs[i] = buf_ptr + i * planestride;
3451
46.4k
        for (; i < target->color_info.num_components; i++)
3452
0
            buf_ptrs[i] = 0;
3453
46.4k
        code = dev_proc(target, put_image) (target, target, buf_ptrs, num_comp,
3454
46.4k
            rect.p.x, rect.p.y, width, height,
3455
46.4k
            rowstride, alpha_offset, tag_offset);
3456
46.4k
    }
3457
3458
    /* Put image was succesful.  We processed some or all of the rows.
3459
       Continue until we are done */
3460
46.4k
    if (code > 0) {
3461
0
        num_rows_left = height - code;
3462
0
        while (num_rows_left > 0) {
3463
0
            code = dev_proc(target, put_image) (target, target, buf_ptrs, num_comp,
3464
0
                rect.p.x, rect.p.y + code, width, num_rows_left, rowstride,
3465
0
                alpha_offset, tag_offset);
3466
0
            if (code < 0) {
3467
0
                return code;
3468
0
            }
3469
0
            num_rows_left = num_rows_left - code;
3470
0
        }
3471
0
        return 0;
3472
0
    }
3473
3474
    /* Sep devices all support put_image (tiffsep and psdcmyk)
3475
       as well as those devices that support alpha (pngalpha,
3476
       png16malpha). If we are here, then we are doing an
3477
       overprint simulation on some other device. Image data
3478
       is aleady blended and in device color space. */
3479
46.4k
    code = gs_cspace_build_ICC(&pcs, NULL, pgs->memory);
3480
46.4k
    if (code < 0)
3481
0
        return code;
3482
3483
    /* Already in destination CS */
3484
46.4k
    pcs->cmm_icc_profile_data = des_profile;
3485
3486
    /* pcs takes a reference to the profile data it just retrieved. */
3487
46.4k
    gsicc_adjust_profile_rc(pcs->cmm_icc_profile_data, 1, "pdf14_put_blended_image_cmykspot");
3488
46.4k
    gsicc_set_icc_range(&(pcs->cmm_icc_profile_data));
3489
3490
    /* If we have more components to write out than are in the des_profile,
3491
     * then just using a PCS based on des_profile, will result in us dropping
3492
     * the spot colors.
3493
     * So, if our target supports devn colors, we instead construct a
3494
     * DevN device space with colors names taken from the devn_params, and
3495
     * use that instead. */
3496
46.4k
    if (des_profile->num_comps != target->color_info.num_components &&
3497
46.4k
        dev_proc(target, dev_spec_op)(target, gxdso_supports_devn, NULL, 0))
3498
29
    {
3499
29
        int num_std;
3500
29
        gs_devn_params *devn_params =  dev_proc(target, ret_devn_params)(target);
3501
29
        gs_color_space *pcs2 = pcs;
3502
29
        code = gs_cspace_new_DeviceN(&pcs, target->color_info.num_components,
3503
29
                                     pcs2, pgs->memory->non_gc_memory);
3504
29
        if (code < 0)
3505
0
            return code;
3506
        /* set up a usable DeviceN space with info from the tdev->devn_params */
3507
29
        pcs->params.device_n.use_alt_cspace = false;
3508
29
        num_std = devn_params->num_std_colorant_names;
3509
145
        for (i = 0; i < num_std; i++) {
3510
116
            const char *name = devn_params->std_colorant_names[i];
3511
116
            size_t len = strlen(name);
3512
116
            pcs->params.device_n.names[i] = (char *)gs_alloc_bytes(pgs->memory->non_gc_memory, len + 1, "mem_planar_put_image_very_slow");
3513
116
            if (pcs->params.device_n.names[i] == NULL) {
3514
0
                int j = 0;
3515
0
                for (j = 0;j < i; j++) {
3516
0
                    if (pcs->params.device_n.names[j] != NULL)
3517
0
                        gs_free_object(pgs->memory->non_gc_memory, pcs->params.device_n.names[j], "mem_planar_put_image_very_slow");
3518
0
                    pcs->params.device_n.names[j] = NULL;
3519
0
                }
3520
0
                return_error(gs_error_VMerror);
3521
0
            }
3522
116
            strcpy(pcs->params.device_n.names[i], name);
3523
116
        }
3524
29
        for (; i < devn_params->separations.num_separations; i++) {
3525
0
            devn_separation_name *name = &devn_params->separations.names[i - num_std];
3526
0
            pcs->params.device_n.names[i] = (char *)gs_alloc_bytes(pgs->memory->non_gc_memory, name->size + 1, "mem_planar_put_image_very_slow");
3527
0
            if (pcs->params.device_n.names[i] == NULL) {
3528
0
                int j = 0;
3529
0
                for (j = 0;j < i; j++) {
3530
0
                    if (pcs->params.device_n.names[j] != NULL)
3531
0
                        gs_free_object(pgs->memory->non_gc_memory, pcs->params.device_n.names[j], "mem_planar_put_image_very_slow");
3532
0
                    pcs->params.device_n.names[j] = NULL;
3533
0
                }
3534
0
                return_error(gs_error_VMerror);
3535
0
            }
3536
0
            memcpy(pcs->params.device_n.names[i], devn_params->separations.names[i - num_std].data, name->size);
3537
0
            pcs->params.device_n.names[i][name->size] = 0;
3538
0
        }
3539
29
        if ((code = pcs->type->install_cspace(pcs, pgs)) < 0) {
3540
0
            return code;
3541
0
        }
3542
        /* One last thing -- we need to fudge the pgs->color_component_map */
3543
174
        for (i=0; i < dev->color_info.num_components; i++)
3544
145
            pgs->color_component_map.color_map[i] = i; /* enable all components in normal order */
3545
29
    }
3546
3547
46.4k
    gs_image_t_init_adjust(&image, pcs, false);
3548
46.4k
    image.ImageMatrix.xx = (float)width;
3549
46.4k
    image.ImageMatrix.yy = (float)height;
3550
46.4k
    image.Width = width;
3551
46.4k
    image.Height = height;
3552
46.4k
    image.BitsPerComponent = deep ? 16 : 8;
3553
46.4k
    image.ColorSpace = pcs;
3554
46.4k
    image.format = gs_image_format_component_planar;
3555
3556
46.4k
    ctm_only_writable(pgs).xx = (float)width;
3557
46.4k
    ctm_only_writable(pgs).xy = 0;
3558
46.4k
    ctm_only_writable(pgs).yx = 0;
3559
46.4k
    ctm_only_writable(pgs).yy = (float)height;
3560
46.4k
    ctm_only_writable(pgs).tx = (float)rect.p.x;
3561
46.4k
    ctm_only_writable(pgs).ty = (float)rect.p.y;
3562
46.4k
    code = dev_proc(target, begin_typed_image) (target,
3563
46.4k
        pgs, NULL, (gs_image_common_t *)&image,
3564
46.4k
        NULL, NULL, NULL, pgs->memory, &info);
3565
46.4k
    if (code < 0) {
3566
0
        rc_decrement_only_cs(pcs, "pdf14_put_blended_image_cmykspot");
3567
0
        return code;
3568
0
    }
3569
#if RAW_DUMP
3570
    /* Dump the current buffer to see what we have. */
3571
    dump_raw_buffer(pdev->ctx->memory,
3572
        pdev->ctx->stack->rect.q.y - pdev->ctx->stack->rect.p.y,
3573
        pdev->ctx->stack->rect.q.x - pdev->ctx->stack->rect.p.x,
3574
        pdev->ctx->stack->n_planes,
3575
        pdev->ctx->stack->planestride, pdev->ctx->stack->rowstride,
3576
        "put_image_final_big", pdev->ctx->stack->data, deep);
3577
    dump_raw_buffer(pdev->ctx->memory,
3578
        height, width, buf->n_planes,
3579
        pdev->ctx->stack->planestride, pdev->ctx->stack->rowstride,
3580
        "put_image_final_small", buf_ptr, deep);
3581
    global_index++;
3582
    clist_band_count++;
3583
#endif
3584
3585
243k
    for (i = 0; i < num_comp; i++) {
3586
197k
        planes[i].data = buf_ptr + i * planestride;
3587
197k
        planes[i].data_x = 0;
3588
197k
        planes[i].raster = buf->rowstride;
3589
197k
    }
3590
3591
516k
    for (y = 0; y < height; y++) {
3592
470k
        int rows_used;
3593
3594
470k
        info->procs->plane_data(info, (const gx_image_plane_t*) &planes, 1, &rows_used);
3595
3596
2.46M
        for (i = 0; i < num_comp; i++) {
3597
1.99M
            planes[i].data += buf->rowstride;
3598
1.99M
        }
3599
470k
    }
3600
46.4k
    info->procs->end_image(info, true);
3601
3602
    /* This will also decrement the profile */
3603
46.4k
    rc_decrement_only_cs(pcs, "pdf14_put_blended_image_cmykspot");
3604
46.4k
    return code;
3605
46.4k
}
3606
3607
/**
3608
 * pdf14_cmykspot_put_image: Put rendered image to target device.
3609
 * @pdev: The PDF 1.4 rendering device.
3610
 * @pgs: State for image draw operation.
3611
 * @target: The target device.
3612
 *
3613
 * Puts the rendered image in @pdev's buffer to @target. This is called
3614
 * as part of the sequence of popping the PDF 1.4 device filter.
3615
 *
3616
 * Return code: negative on error.
3617
 **/
3618
static  int
3619
pdf14_cmykspot_put_image(gx_device *dev, gs_gstate *pgs, gx_device *target)
3620
98.6k
{
3621
98.6k
    pdf14_device *pdev = (pdf14_device *)dev;
3622
98.6k
    pdf14_buf *buf = pdev->ctx->stack;
3623
98.6k
    gs_int_rect rect;
3624
98.6k
    int x1, y1, width, height;
3625
98.6k
    gs_devn_params *pdevn_params = &pdev->devn_params;
3626
98.6k
    gs_separations *pseparations = &pdevn_params->separations;
3627
98.6k
    int planestride;
3628
98.6k
    int rowstride;
3629
98.6k
    bool deep = pdev->ctx->deep;
3630
98.6k
    int num_comp;
3631
3632
    /* Nothing was ever drawn. */
3633
98.6k
    if (buf == NULL)
3634
34.0k
        return 0;
3635
3636
64.5k
    num_comp = buf->n_chan - 1;
3637
64.5k
    rect = buf->rect;
3638
64.5k
    planestride = buf->planestride;
3639
64.5k
    rowstride = buf->rowstride;
3640
3641
    /* Make sure that this is the only item on the stack. Fuzzing revealed a
3642
       potential problem. Bug 694190 */
3643
64.5k
    if (buf->saved != NULL) {
3644
0
        return gs_throw(gs_error_unknownerror, "PDF14 device push/pop out of sync");
3645
0
    }
3646
64.5k
    if_debug0m('v', dev->memory, "[v]pdf14_cmykspot_put_image\n");
3647
64.5k
    rect_intersect(rect, buf->dirty);
3648
64.5k
    x1 = min(pdev->width, rect.q.x);
3649
64.5k
    y1 = min(pdev->height, rect.q.y);
3650
64.5k
    width = x1 - rect.p.x;
3651
64.5k
    height = y1 - rect.p.y;
3652
64.5k
    if (width <= 0 || height <= 0 || buf->data == NULL)
3653
18.0k
        return 0;
3654
3655
#if RAW_DUMP
3656
    /* Dump the current buffer to see what we have. */
3657
    dump_raw_buffer(pdev->ctx->memory,
3658
                    pdev->ctx->stack->rect.q.y-pdev->ctx->stack->rect.p.y,
3659
                    pdev->ctx->stack->rect.q.x-pdev->ctx->stack->rect.p.x,
3660
                    pdev->ctx->stack->n_planes,
3661
                    pdev->ctx->stack->planestride, pdev->ctx->stack->rowstride,
3662
                    "CMYK_SPOT_PUTIMAGE", pdev->ctx->stack->data,
3663
                    pdev->ctx->stack->deep);
3664
3665
    global_index++;
3666
    clist_band_count++;
3667
#endif
3668
3669
46.4k
    return pdf14_put_blended_image_cmykspot(dev, target, pgs,
3670
46.4k
                      buf, planestride, rowstride,
3671
46.4k
                      rect.p.x, rect.p.y, width, height, num_comp, buf->group_color_info->isadditive,
3672
46.4k
                      buf->has_tags, rect, pseparations, deep);
3673
64.5k
}
3674
3675
/**
3676
 * pdf14_custom_put_image: Put rendered image to target device.
3677
 * @pdev: The PDF 1.4 rendering device.
3678
 * @pgs: State for image draw operation.
3679
 * @target: The target device.
3680
 *
3681
 * Puts the rendered image in @pdev's buffer to @target. This is called
3682
 * as part of the sequence of popping the PDF 1.4 device filter.
3683
 *
3684
 * Return code: negative on error.
3685
 **/
3686
static  int
3687
pdf14_custom_put_image(gx_device * dev, gs_gstate * pgs, gx_device * target)
3688
0
{
3689
0
    pdf14_device * pdev = (pdf14_device *)dev;
3690
0
    pdf14_buf *buf = pdev->ctx->stack;
3691
0
    bool deep = pdev->ctx->deep;
3692
0
    gs_int_rect rect;
3693
0
    int x0, y0;
3694
0
    int planestride;
3695
0
    int rowstride;
3696
0
    int num_comp;
3697
0
    uint16_t bg;
3698
0
    int x1, y1, width, height;
3699
0
    byte *buf_ptr;
3700
3701
    /* Nothing was ever drawn. */
3702
0
    if (buf == NULL)
3703
0
        return 0;
3704
3705
0
    bg = pdev->ctx->additive ? 0xffff : 0;
3706
0
    num_comp = buf->n_chan - 1;
3707
0
    rect = buf->rect;
3708
0
    x0 = rect.p.x;
3709
0
    y0 = rect.p.y;
3710
0
    planestride = buf->planestride;
3711
0
    rowstride = buf->rowstride;
3712
3713
    /* Make sure that this is the only item on the stack. Fuzzing revealed a
3714
       potential problem. Bug 694190 */
3715
0
    if (buf->saved != NULL) {
3716
0
        return gs_throw(gs_error_unknownerror, "PDF14 device push/pop out of sync");
3717
0
    }
3718
0
    if_debug0m('v', dev->memory, "[v]pdf14_custom_put_image\n");
3719
0
    rect_intersect(rect, buf->dirty);
3720
0
    x1 = min(pdev->width, rect.q.x);
3721
0
    y1 = min(pdev->height, rect.q.y);
3722
0
    width = x1 - rect.p.x;
3723
0
    height = y1 - rect.p.y;
3724
0
    if (width <= 0 || height <= 0 || buf->data == NULL)
3725
0
        return 0;
3726
0
    buf_ptr = buf->data + (rect.p.y - buf->rect.p.y) * buf->rowstride + ((rect.p.x - buf->rect.p.x)<<deep);
3727
3728
0
    return gx_put_blended_image_custom(target, buf_ptr,
3729
0
                      planestride, rowstride,
3730
0
                      x0, y0, width, height, num_comp, bg, deep);
3731
0
}
3732
3733
/* This is rather nasty: in the event we are interrupted (by an error) between a push and pop
3734
 * of one or more groups, we have to cycle through any ICC profile changes since the push
3735
 * putting everything back how it was, and cleaning up the reference counts.
3736
 */
3737
static void pdf14_cleanup_group_color_profiles (pdf14_device *pdev)
3738
200k
{
3739
200k
    if (pdev->ctx && pdev->ctx->stack) {
3740
65.3k
        pdf14_buf *buf, *next;
3741
3742
65.3k
        for (buf = pdev->ctx->stack->saved; buf != NULL; buf = next) {
3743
0
            pdf14_group_color_t *group_color_info = buf->group_color_info;
3744
0
            next = buf->saved;
3745
0
            while (group_color_info) {
3746
0
               if (group_color_info->icc_profile != NULL) {
3747
0
                   cmm_profile_t *group_profile;
3748
0
                   gsicc_rendering_param_t render_cond;
3749
0
                   cmm_dev_profile_t *dev_profile;
3750
0
                   int code = dev_proc((gx_device *)pdev, get_profile)((gx_device *)pdev,  &dev_profile);
3751
3752
0
                   if (code >= 0) {
3753
0
                       gsicc_extract_profile(GS_UNKNOWN_TAG, dev_profile, &group_profile,
3754
0
                                             &render_cond);
3755
3756
0
                       gsicc_adjust_profile_rc(pdev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE],
3757
0
                                               -1, "pdf14_end_transparency_group");
3758
0
                       pdev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE] =
3759
0
                           group_color_info->icc_profile;
3760
0
                       group_color_info->icc_profile = NULL;
3761
0
                   }
3762
0
               }
3763
3764
0
               group_color_info = group_color_info->previous;
3765
0
            }
3766
0
        }
3767
65.3k
    }
3768
200k
}
3769
3770
static  int
3771
pdf14_close(gx_device *dev)
3772
100k
{
3773
100k
    pdf14_device *pdev = (pdf14_device *)dev;
3774
3775
100k
    pdf14_cleanup_group_color_profiles(pdev);
3776
3777
100k
    if (pdev->ctx) {
3778
99.4k
        pdf14_ctx_free(pdev->ctx);
3779
99.4k
        pdev->ctx = NULL;
3780
99.4k
    }
3781
100k
    return 0;
3782
100k
}
3783
3784
/* This is called when something has gone wrong and the interpreter received a
3785
   stop while in the middle of doing something with the PDF14 device.  We need
3786
   to clean up and end this in a graceful manner */
3787
static int
3788
pdf14_discard_trans_layer(gx_device *dev, gs_gstate * pgs)
3789
0
{
3790
0
    pdf14_device *pdev = (pdf14_device *)dev;
3791
    /* The things that need to be cleaned up */
3792
0
    pdf14_ctx *ctx = pdev->ctx;
3793
0
    pdf14_smaskcolor_t *smaskcolor = pdev->smaskcolor;
3794
0
    pdf14_group_color_t *group_color = pdev->color_model_stack;
3795
3796
    /* Free up the smask color */
3797
0
    if (smaskcolor != NULL) {
3798
0
        smaskcolor->ref_count = 1;
3799
0
        pdf14_decrement_smask_color(pgs, dev);
3800
0
        pdev->smaskcolor = NULL;
3801
0
    }
3802
3803
    /* Free up the nested color procs and decrement the profiles */
3804
0
    if (group_color != NULL) {
3805
0
        while (group_color->previous != NULL)
3806
0
            pdf14_pop_group_color(dev, pgs);
3807
0
        gs_free_object(dev->memory->stable_memory, group_color, "pdf14_discard_trans_layer");
3808
0
        pdev->color_model_stack = NULL;
3809
0
    }
3810
3811
    /* Start the context clean up */
3812
0
    if (ctx != NULL) {
3813
0
        pdf14_buf *buf, *next;
3814
0
        pdf14_group_color_t *procs, *prev_procs;
3815
3816
0
        if (ctx->mask_stack != NULL) {
3817
0
            pdf14_free_mask_stack(ctx, ctx->memory);
3818
0
        }
3819
3820
        /* Now the stack of buffers */
3821
0
        for (buf = ctx->stack; buf != NULL; buf = next) {
3822
0
            next = buf->saved;
3823
3824
0
            gs_free_object(ctx->memory, buf->transfer_fn, "pdf14_discard_trans_layer");
3825
0
            gs_free_object(ctx->memory, buf->matte, "pdf14_discard_trans_layer");
3826
0
            gs_free_object(ctx->memory, buf->data, "pdf14_discard_trans_layer");
3827
0
            gs_free_object(ctx->memory, buf->backdrop, "pdf14_discard_trans_layer");
3828
            /* During the soft mask push, the mask_stack was copied (not moved) from
3829
               the ctx to the tos mask_stack. We are done with this now so it is safe
3830
               to free this one object */
3831
0
            gs_free_object(ctx->memory, buf->mask_stack, "pdf14_discard_trans_layer");
3832
0
            for (procs = buf->group_color_info; procs != NULL; procs = prev_procs) {
3833
0
                prev_procs = procs->previous;
3834
0
                gs_free_object(ctx->memory, procs, "pdf14_discard_trans_layer");
3835
0
            }
3836
0
            gs_free_object(ctx->memory, buf, "pdf14_discard_trans_layer");
3837
0
        }
3838
        /* Finally the context itself */
3839
0
        gs_free_object(ctx->memory, ctx, "pdf14_discard_trans_layer");
3840
0
        pdev->ctx = NULL;
3841
0
    }
3842
0
    return 0;
3843
0
}
3844
3845
static  int
3846
pdf14_output_page(gx_device * dev, int num_copies, int flush)
3847
0
{
3848
0
    pdf14_device * pdev = (pdf14_device *)dev;
3849
3850
0
    if (pdev->target != NULL)
3851
0
        return (*dev_proc(pdev->target, output_page)) (pdev->target, num_copies, flush);
3852
0
    return 0;
3853
0
}
3854
3855
801k
#define COPY_PARAM(p) dev->p = target->p
3856
500k
#define COPY_ARRAY_PARAM(p) memcpy(dev->p, target->p, sizeof(dev->p))
3857
3858
static void
3859
copy_tag_setup(gx_device *dev, const gx_device *target)
3860
100k
{
3861
100k
    bool deep = device_is_deep(target);
3862
100k
    int had_tags = (dev->graphics_type_tag & GS_DEVICE_ENCODES_TAGS) != 0;
3863
100k
    int has_tags = (target->graphics_type_tag & GS_DEVICE_ENCODES_TAGS) != 0;
3864
100k
    COPY_PARAM(graphics_type_tag);
3865
100k
    if (had_tags && !has_tags)
3866
0
    {
3867
        /* We have just removed a tags plane. Adjust num_components and depth accordingly. */
3868
0
        dev->color_info.num_components--;
3869
0
        dev->color_info.depth -= deep ? 16 : 8;
3870
0
    }
3871
100k
    else if (!had_tags && has_tags)
3872
0
    {
3873
        /* We have just added a tags plane. Adjust num_components and depth accordingly. */
3874
0
        dev->color_info.num_components++;
3875
0
        dev->color_info.depth += deep ? 16 : 8;
3876
0
    }
3877
100k
}
3878
3879
/*
3880
 * Copy device parameters back from a target.  This copies all standard
3881
 * parameters related to page size and resolution, but not any of the
3882
 * color-related parameters, as the pdf14 device retains its own color
3883
 * handling. This routine is parallel to gx_device_copy_params().
3884
 * Note that it DOES copy the devn_params since these are required to
3885
 * keep agreement with colorant name->number mapping, and don't change
3886
 * with the pdf14 color handling.
3887
 */
3888
static  int
3889
gs_pdf14_device_copy_params(gx_device *dev, const gx_device *target)
3890
100k
{
3891
100k
    cmm_dev_profile_t *profile_targ;
3892
100k
    cmm_dev_profile_t *profile_dev14;
3893
100k
    pdf14_device *pdev = (pdf14_device*) dev;
3894
100k
    cmm_profile_t *blend_profile = NULL;
3895
100k
    int k;
3896
3897
100k
    COPY_PARAM(width);
3898
100k
    COPY_PARAM(height);
3899
100k
    COPY_ARRAY_PARAM(MediaSize);
3900
100k
    COPY_ARRAY_PARAM(ImagingBBox);
3901
100k
    COPY_PARAM(ImagingBBox_set);
3902
100k
    COPY_ARRAY_PARAM(HWResolution);
3903
100k
    COPY_ARRAY_PARAM(Margins);
3904
100k
    COPY_ARRAY_PARAM(HWMargins);
3905
100k
    COPY_PARAM(PageCount);
3906
100k
    COPY_PARAM(MaxPatternBitmap);
3907
3908
3909
    /* Supposedly this function isn't supposed to change the color setup of dev.
3910
     * BUT... if we change the tags value, we have to change the color setup to
3911
     * keep it valid. This is because num_components and depth include tags. */
3912
100k
    copy_tag_setup(dev, target);
3913
100k
    COPY_PARAM(interpolate_control);
3914
100k
    COPY_PARAM(non_strict_bounds);
3915
100k
    memcpy(&(dev->space_params), &(target->space_params), sizeof(gdev_space_params));
3916
3917
100k
    if (dev->icc_struct == NULL) {
3918
100k
        dev->icc_struct = gsicc_new_device_profile_array(dev);
3919
100k
        if (dev->icc_struct == NULL)
3920
0
            return_error(gs_error_VMerror);
3921
100k
        profile_dev14 = dev->icc_struct;
3922
100k
        dev_proc((gx_device *) target, get_profile)((gx_device *) target,
3923
100k
                                          &(profile_targ));
3924
3925
500k
        for (k = 0; k < NUM_DEVICE_PROFILES; k++) {
3926
400k
            if (profile_targ->device_profile[k] != NULL) {
3927
100k
                gsicc_adjust_profile_rc(profile_targ->device_profile[k], 1, "gs_pdf14_device_copy_params");
3928
100k
            }
3929
400k
            if (profile_dev14->device_profile[k] != NULL) {
3930
0
                gsicc_adjust_profile_rc(profile_dev14->device_profile[k], -1, "gs_pdf14_device_copy_params");
3931
0
            }
3932
400k
            profile_dev14->device_profile[k] = profile_targ->device_profile[k];
3933
400k
            profile_dev14->rendercond[k] = profile_targ->rendercond[k];
3934
400k
        }
3935
3936
100k
        dev->icc_struct->devicegraytok = profile_targ->devicegraytok;
3937
100k
        dev->icc_struct->graydetection = profile_targ->graydetection;
3938
100k
        dev->icc_struct->pageneutralcolor = profile_targ->pageneutralcolor;
3939
100k
        dev->icc_struct->supports_devn = profile_targ->supports_devn;
3940
100k
        dev->icc_struct->usefastcolor = profile_targ->usefastcolor;
3941
100k
        dev->icc_struct->blacktext = profile_targ->blacktext;
3942
100k
        dev->icc_struct->blackvector = profile_targ->blackvector;
3943
100k
        dev->icc_struct->blackthresholdL = profile_targ->blackthresholdL;
3944
100k
        dev->icc_struct->blackthresholdC = profile_targ->blackthresholdC;
3945
3946
100k
        switch (pdev->blend_cs_state) {
3947
100k
            case PDF14_BLEND_CS_UNSPECIFIED:
3948
100k
            case PDF14_BLEND_CS_TARGET_CIELAB:
3949
                /* PDF14_BLEND_CS_TARGET_CIELAB handled
3950
                   during the device push, when we have
3951
                   access to the pgs */
3952
100k
                break;
3953
0
            case PDF14_BLEND_CS_OUTPUTINTENT:
3954
0
                blend_profile = profile_targ->oi_profile;
3955
0
                break;
3956
0
            case PDF14_BLEND_CS_SPECIFIED:
3957
0
                blend_profile = profile_targ->blend_profile;
3958
0
                break;
3959
0
            default:
3960
0
                break;
3961
100k
        }
3962
3963
100k
        if (blend_profile != NULL) {
3964
            /* Set the device profile to the blend profile. Note only default profile is set */
3965
0
            gsicc_adjust_profile_rc(blend_profile, 1, "gs_pdf14_device_copy_params");
3966
0
            gsicc_adjust_profile_rc(profile_dev14->device_profile[GS_DEFAULT_DEVICE_PROFILE], -1, "gs_pdf14_device_copy_params");
3967
0
            profile_dev14->device_profile[GS_DEFAULT_DEVICE_PROFILE] = blend_profile;
3968
0
        }
3969
3970
100k
        profile_dev14->overprint_control = profile_targ->overprint_control;
3971
100k
    }
3972
100k
#undef COPY_ARRAY_PARAM
3973
100k
#undef COPY_PARAM
3974
100k
    return 0;
3975
100k
}
3976
3977
/*
3978
 * This is a forwarding version of the put_params device proc.  It is only
3979
 * used when the PDF 1.4 compositor devices are closed.  The routine will
3980
 * check if the target device has closed and, if so, close itself.  The routine
3981
 * also sync the device parameters.
3982
 */
3983
static  int
3984
pdf14_forward_put_params(gx_device * dev, gs_param_list * plist)
3985
0
{
3986
0
    pdf14_device * pdev = (pdf14_device *)dev;
3987
0
    gx_device * tdev = pdev->target;
3988
0
    bool was_open = tdev->is_open;
3989
0
    int code = 0;
3990
3991
0
    if (tdev != 0 && (code = dev_proc(tdev, put_params)(tdev, plist)) >= 0) {
3992
0
        gx_device_decache_colors(dev);
3993
0
        if (!tdev->is_open) {
3994
0
            code = gs_closedevice(dev);
3995
0
            if (code == 0)
3996
0
                code = was_open ? 1 : 0;   /* target device closed */
3997
0
        }
3998
0
        gx_device_copy_params(dev, tdev);
3999
0
    }
4000
0
    return code;
4001
0
}
4002
4003
/* Function prototypes */
4004
int put_param_pdf14_spot_names(gx_device * pdev,
4005
                gs_separations * pseparations, gs_param_list * plist);
4006
40.9k
#define PDF14NumSpotColorsParamName "PDF14NumSpotColors"
4007
4008
/*
4009
 * The put_params method for the PDF 1.4 device will check if the
4010
 * target device has closed and, if so, close itself.  Note:  This routine is
4011
 * currently being used by both the pdf14_clist_device and the pdf_device.
4012
 * Please make sure that any changes are either applicable to both devices
4013
 * or clone the routine for each device.
4014
 */
4015
static  int
4016
pdf14_put_params(gx_device * dev, gs_param_list * plist)
4017
0
{
4018
0
    pdf14_device * pdev = (pdf14_device *)dev;
4019
0
    gx_device * tdev = pdev->target;
4020
0
    bool was_open = tdev->is_open;
4021
0
    int code = 0, code2 = 0;
4022
4023
0
    if (tdev != 0 && (code = dev_proc(tdev, put_params)(tdev, plist)) >= 0) {
4024
0
        gx_device_decache_colors(dev);
4025
0
        if (!tdev->is_open) {
4026
0
            code = gs_closedevice(dev);
4027
0
            if (code == 0)
4028
0
                code = was_open ? 1 : 0;   /* target device closed */
4029
0
        }
4030
0
        code2 = gs_pdf14_device_copy_params(dev, tdev);
4031
0
        if (code2 < 0)
4032
0
            code = code2;
4033
0
    }
4034
0
    return code;
4035
0
}
4036
4037
/*
4038
 * Copy marking related parameters into the PDF 1.4 device structure for use
4039
 * by pdf14_fill_rectangle.
4040
 */
4041
static  void
4042
pdf14_set_marking_params(gx_device *dev, const gs_gstate *pgs)
4043
2.99M
{
4044
2.99M
    pdf14_device * pdev = (pdf14_device *)dev;
4045
4046
2.99M
    if (pgs->alphaisshape) {
4047
12.0k
        pdev->opacity = 1.0;
4048
12.0k
        if (pgs->is_fill_color) {
4049
10.1k
            pdev->shape = pgs->fillconstantalpha;
4050
10.1k
        } else {
4051
1.90k
            pdev->shape = pgs->strokeconstantalpha;
4052
1.90k
        }
4053
2.98M
    } else {
4054
2.98M
        pdev->shape = 1.0;
4055
2.98M
        if (pgs->is_fill_color) {
4056
2.00M
            pdev->opacity = pgs->fillconstantalpha;
4057
2.00M
        } else {
4058
976k
            pdev->opacity = pgs->strokeconstantalpha;
4059
976k
        }
4060
2.98M
    }
4061
2.99M
    pdev->alpha = pdev->opacity * pdev->shape;
4062
2.99M
    pdev->blend_mode = pgs->blend_mode;
4063
2.99M
    if (pdev->icc_struct->overprint_control != gs_overprint_control_disable) {
4064
2.99M
        pdev->overprint = pgs->overprint;
4065
2.99M
        pdev->stroke_overprint = pgs->stroke_overprint;
4066
2.99M
    } else {
4067
0
        pdev->overprint = false;
4068
0
        pdev->stroke_overprint = false;
4069
0
    }
4070
4071
2.99M
    pdev->fillconstantalpha = pgs->fillconstantalpha;
4072
2.99M
    pdev->strokeconstantalpha = pgs->strokeconstantalpha;
4073
4074
2.99M
    if (pgs->is_fill_color)
4075
2.01M
        pdev->op_state = PDF14_OP_STATE_FILL;
4076
977k
    else
4077
977k
        pdev->op_state = PDF14_OP_STATE_STROKE;
4078
4079
2.99M
    if_debug6m('v', dev->memory,
4080
2.99M
               "[v]set_marking_params, opacity = %g, shape = %g, bm = %d, op = %d, eop = %d seop = %d\n",
4081
2.99M
               pdev->opacity, pdev->shape, pgs->blend_mode, pgs->overprint, pdev->effective_overprint_mode,
4082
2.99M
               pdev->stroke_effective_op_mode);
4083
2.99M
}
4084
4085
static  void
4086
update_lop_for_pdf14(gs_gstate *pgs, const gx_drawing_color *pdcolor)
4087
3.19M
{
4088
3.19M
    bool hastrans = false;
4089
4090
    /* We'd really rather not have to set the pdf14 bit in the lop, as this
4091
     * makes other operations much slower. We have no option however, if the
4092
     * current colour involves transparency, or if it's anything other than
4093
     * a completely solid (or transparent) operation in the normal blend mode.
4094
     */
4095
3.19M
    if (pdcolor != NULL)
4096
3.19M
    {
4097
3.19M
        if (gx_dc_is_pattern1_color(pdcolor) &&
4098
3.19M
            gx_pattern1_get_transptr(pdcolor) != NULL) {
4099
798
            hastrans = true;
4100
3.19M
        } else if (gx_dc_is_pattern2_color(pdcolor)) {
4101
            /* FIXME: Here we assume that ALL type 2 patterns are
4102
             * transparent - this test could be better. */
4103
1.40k
            hastrans = true;
4104
1.40k
        }
4105
3.19M
    }
4106
    /* The only idempotent blend modes are Normal, Darken and Lighten.
4107
       This appears to be the only place where this test is done so
4108
       not adding a is_idempotent method */
4109
3.19M
    if ((pgs->blend_mode != BLEND_MODE_Normal &&
4110
3.19M
        pgs->blend_mode != BLEND_MODE_Darken &&
4111
3.19M
        pgs->blend_mode != BLEND_MODE_Lighten) ||
4112
3.19M
        (pgs->fillconstantalpha != 1.0) ||
4113
3.19M
        (pgs->strokeconstantalpha != 1.0) ||
4114
3.19M
        (hastrans))
4115
21.1k
    {
4116
        /*
4117
         * The blend operations are not idempotent.  Force non-idempotent
4118
         * filling and stroking operations.
4119
         */
4120
21.1k
        pgs->log_op |= lop_pdf14;
4121
21.1k
    }
4122
3.19M
}
4123
4124
static int
4125
push_shfill_group(pdf14_clist_device *pdev,
4126
                  gs_gstate *pgs,
4127
                  gs_fixed_rect *box)
4128
142
{
4129
142
    gs_transparency_group_params_t params = { 0 };
4130
142
    int code;
4131
142
    gs_rect cb;
4132
142
    gs_gstate fudged_pgs = *pgs;
4133
4134
142
    params.shade_group = true;
4135
4136
    /* gs_begin_transparency_group takes a bbox that it then
4137
     * transforms by ctm. Our bbox has already been transformed,
4138
     * so clear out the ctm. */
4139
142
    fudged_pgs.ctm.xx = 1.0;
4140
142
    fudged_pgs.ctm.xy = 0;
4141
142
    fudged_pgs.ctm.yx = 0;
4142
142
    fudged_pgs.ctm.yy = 1.0;
4143
142
    fudged_pgs.ctm.tx = 0;
4144
142
    fudged_pgs.ctm.ty = 0;
4145
142
    cb.p.x = fixed2int_pixround(box->p.x);
4146
142
    cb.p.y = fixed2int_pixround(box->p.y);
4147
142
    cb.q.x = fixed2int_pixround(box->q.x);
4148
142
    cb.q.y = fixed2int_pixround(box->q.y);
4149
4150
142
    params.Isolated = false;
4151
142
    params.Knockout = true;
4152
142
    params.page_group = false;
4153
142
    params.group_opacity = fudged_pgs.fillconstantalpha;
4154
142
    params.group_shape = 1.0;
4155
142
    code = gs_begin_transparency_group(&fudged_pgs, &params, &cb, PDF14_BEGIN_TRANS_GROUP);
4156
4157
    /* We have the group handle the blendmode and the opacity,
4158
     * and continue with the existing graphics state reset
4159
     * to normal, opaque operation. We could do it the other
4160
     * way around, but this way means that if we push a knockout
4161
     * group for a stroke, and then the code calls back into
4162
     * the fill operation as part of doing the stroking, we don't
4163
     * push another one. */
4164
142
    gs_setblendmode(pgs, BLEND_MODE_Normal);
4165
142
    gs_setfillconstantalpha(pgs, 1.0);
4166
142
    gs_setstrokeconstantalpha(pgs, 1.0);
4167
142
    if (pdev) {
4168
142
        code = pdf14_clist_update_params(pdev, pgs, false, NULL);
4169
142
        if (code < 0)
4170
0
            return code;
4171
142
    }
4172
4173
142
    return code;
4174
142
}
4175
4176
static int
4177
pop_shfill_group(gs_gstate *pgs)
4178
142
{
4179
142
     return gs_end_transparency_group(pgs);
4180
142
}
4181
4182
static int
4183
pdf14_fill_path(gx_device *dev, const gs_gstate *pgs,
4184
                           gx_path *ppath, const gx_fill_params *params,
4185
                           const gx_drawing_color *pdcolor,
4186
                           const gx_clip_path *pcpath)
4187
2.49M
{
4188
2.49M
    gs_gstate new_pgs = *pgs;
4189
2.49M
    int code = 0;
4190
2.49M
    gs_pattern2_instance_t *pinst = NULL;
4191
2.49M
    int push_group = 0;
4192
4193
2.49M
    code = pdf14_initialize_ctx(dev, pgs);
4194
2.49M
    if (code < 0)
4195
0
        return code;
4196
4197
2.49M
    if (pdcolor == NULL)
4198
0
       return_error(gs_error_unknownerror);  /* color must be defined */
4199
2.49M
    ((pdf14_device *)dev)->op_state = pgs->is_fill_color ? PDF14_OP_STATE_FILL : PDF14_OP_STATE_STROKE;
4200
2.49M
    if (gx_dc_is_pattern1_color(pdcolor)){
4201
58.2k
        if( gx_pattern1_get_transptr(pdcolor) != NULL ||
4202
58.2k
            gx_pattern1_clist_has_trans(pdcolor) ){
4203
            /* In this case, we need to push a transparency group
4204
               and tile the pattern color, which is stored in
4205
               a pdf14 device buffer in the ctile object memember
4206
               variable ttrans */
4207
#if RAW_DUMP
4208
            /* Since we do not get a put_image to view what
4209
               we have do it now */
4210
            if (gx_pattern1_get_transptr(pdcolor) != NULL) {
4211
                const pdf14_device * ppatdev14 = (const pdf14_device *)
4212
                                pdcolor->colors.pattern.p_tile->ttrans->pdev14;
4213
                if (ppatdev14 != NULL) {  /* can occur during clist reading */
4214
                    byte *buf_ptr = ppatdev14->ctx->stack->data  +
4215
                        ppatdev14->ctx->stack->rect.p.y *
4216
                        ppatdev14->ctx->stack->rowstride +
4217
                        ppatdev14->ctx->stack->rect.p.x;
4218
                    dump_raw_buffer(ppatdev14->ctx->memory,
4219
                                    (ppatdev14->ctx->stack->rect.q.y -
4220
                                     ppatdev14->ctx->stack->rect.p.y),
4221
                                    (ppatdev14->ctx->stack->rect.q.x -
4222
                                     ppatdev14->ctx->stack->rect.p.x),
4223
                                    ppatdev14->ctx->stack->n_planes,
4224
                                    ppatdev14->ctx->stack->planestride,
4225
                                    ppatdev14->ctx->stack->rowstride,
4226
                                    "Pattern_Fill", buf_ptr,
4227
                                    ppatdev14->ctx->stack->deep);
4228
                    global_index++;
4229
                } else {
4230
                     gx_pattern_trans_t *patt_trans =
4231
                                        pdcolor->colors.pattern.p_tile->ttrans;
4232
                     dump_raw_buffer(patt_trans->mem,
4233
                                     patt_trans->rect.q.y-patt_trans->rect.p.y,
4234
                                     patt_trans->rect.q.x-patt_trans->rect.p.x,
4235
                                     patt_trans->n_chan,
4236
                                     patt_trans->planestride, patt_trans->rowstride,
4237
                                     "Pattern_Fill_clist",
4238
                                     patt_trans->transbytes +
4239
                                         patt_trans->rect.p.y * patt_trans->rowstride +
4240
                                         (patt_trans->rect.p.x<<patt_trans->deep),
4241
                                     patt_trans->deep);
4242
                    global_index++;
4243
                }
4244
            }
4245
#endif
4246
14.9k
            pdf14_set_marking_params(dev, &new_pgs);
4247
14.9k
            code = pdf14_tile_pattern_fill(dev, &new_pgs, ppath,
4248
14.9k
                params, pdcolor, pcpath);
4249
14.9k
            new_pgs.trans_device = NULL;
4250
14.9k
            new_pgs.has_transparency = false;
4251
14.9k
            return code;
4252
14.9k
        }
4253
58.2k
    }
4254
2.48M
    if (gx_dc_is_pattern2_color(pdcolor) ||
4255
2.48M
        pdcolor->type == &gx_dc_devn_masked) {
4256
        /* Non-idempotent blends require a transparency
4257
         * group to be pushed because shadings might
4258
         * paint several pixels twice. */
4259
4
        push_group = pgs->fillconstantalpha != 1.0 ||
4260
4
               !blend_is_idempotent(gs_currentblendmode(pgs));
4261
4
        pinst =
4262
4
            (gs_pattern2_instance_t *)pdcolor->ccolor.pattern;
4263
4
        pinst->saved->has_transparency = true;
4264
        /* The transparency color space operations are driven
4265
           by the pdf14 clist writer device.  */
4266
4
        pinst->saved->trans_device = dev;
4267
4
    }
4268
2.48M
    if (push_group) {
4269
0
        gs_fixed_rect box;
4270
0
        if (pcpath)
4271
0
            gx_cpath_outer_box(pcpath, &box);
4272
0
        else
4273
0
            (*dev_proc(dev, get_clipping_box)) (dev, &box);
4274
0
        if (ppath) {
4275
0
            gs_fixed_rect path_box;
4276
4277
0
            gx_path_bbox(ppath, &path_box);
4278
0
            if (box.p.x < path_box.p.x)
4279
0
                box.p.x = path_box.p.x;
4280
0
            if (box.p.y < path_box.p.y)
4281
0
                box.p.y = path_box.p.y;
4282
0
            if (box.q.x > path_box.q.x)
4283
0
                box.q.x = path_box.q.x;
4284
0
            if (box.q.y > path_box.q.y)
4285
0
                box.q.y = path_box.q.y;
4286
0
        }
4287
        /* Group alpha set from fill value. push_shfill_group does reset to 1.0 */
4288
0
        code = push_shfill_group(NULL, &new_pgs, &box);
4289
0
    } else
4290
2.48M
        update_lop_for_pdf14(&new_pgs, pdcolor);
4291
2.48M
    pdf14_set_marking_params(dev, &new_pgs);
4292
2.48M
    if (code >= 0) {
4293
2.48M
        new_pgs.trans_device = dev;
4294
2.48M
        new_pgs.has_transparency = true;
4295
        /* ppath can permissibly be NULL here, if we want to have a
4296
         * shading or a pattern fill the clipping path. This upsets
4297
         * coverity, which is not smart enough to realise that the
4298
         * validity of a NULL ppath depends on the type of pdcolor.
4299
         * We'll mark it as a false positive. */
4300
2.48M
        code = gx_default_fill_path(dev, &new_pgs, ppath, params, pdcolor, pcpath);
4301
2.48M
        new_pgs.trans_device = NULL;
4302
2.48M
        new_pgs.has_transparency = false;
4303
2.48M
    }
4304
2.48M
    if (code >= 0 && push_group) {
4305
0
        code = pop_shfill_group(&new_pgs);
4306
0
        pdf14_set_marking_params(dev, pgs);
4307
0
    }
4308
2.48M
    if (pinst != NULL){
4309
4
        pinst->saved->trans_device = NULL;
4310
4
    }
4311
2.48M
    return code;
4312
2.49M
}
4313
4314
static  int
4315
pdf14_stroke_path(gx_device *dev, const gs_gstate *pgs,
4316
                             gx_path *ppath, const gx_stroke_params *params,
4317
                             const gx_drawing_color *pdcolor,
4318
                             const gx_clip_path *pcpath)
4319
23.3k
{
4320
23.3k
    gs_gstate new_pgs = *pgs;
4321
23.3k
    int push_group = 0;
4322
23.3k
    int code = 0;
4323
4324
23.3k
    if (pdcolor == NULL)
4325
0
       return_error(gs_error_unknownerror);  /* color must be defined */
4326
4327
23.3k
    code = pdf14_initialize_ctx(dev, pgs);
4328
23.3k
    if (code < 0)
4329
0
        return code;
4330
4331
23.3k
    if (gx_dc_is_pattern2_color(pdcolor)) {
4332
        /* Non-idempotent blends require a transparency
4333
         * group to be pushed because shadings might
4334
         * paint several pixels twice. */
4335
0
        push_group = pgs->strokeconstantalpha != 1.0 ||
4336
0
               !blend_is_idempotent(gs_currentblendmode(pgs));
4337
0
    }
4338
23.3k
    if (push_group) {
4339
0
        gs_fixed_rect box;
4340
0
        if (pcpath)
4341
0
            gx_cpath_outer_box(pcpath, &box);
4342
0
        else
4343
0
            (*dev_proc(dev, get_clipping_box)) (dev, &box);
4344
4345
        /* For fill_path, we accept ppath == NULL to mean
4346
         * fill the entire clipping region. That makes no
4347
         * sense for stroke_path, hence ppath is always non
4348
         * NULL here. */
4349
0
        {
4350
0
            gs_fixed_rect path_box;
4351
0
            gs_fixed_point expansion;
4352
4353
0
            gx_path_bbox(ppath, &path_box);
4354
            /* Expand the path bounding box by the scaled line width. */
4355
0
            if (gx_stroke_path_expansion(pgs, ppath, &expansion) < 0) {
4356
                /* The expansion is so large it caused a limitcheck. */
4357
0
                path_box.p.x = path_box.p.y = min_fixed;
4358
0
                path_box.q.x = path_box.q.y = max_fixed;
4359
0
            } else {
4360
0
                expansion.x += pgs->fill_adjust.x;
4361
0
                expansion.y += pgs->fill_adjust.y;
4362
                /*
4363
                 * It's theoretically possible for the following computations to
4364
                 * overflow, so we need to check for this.
4365
                 */
4366
0
                path_box.p.x = (path_box.p.x < min_fixed + expansion.x ? min_fixed :
4367
0
                                path_box.p.x - expansion.x);
4368
0
                path_box.p.y = (path_box.p.y < min_fixed + expansion.y ? min_fixed :
4369
0
                                path_box.p.y - expansion.y);
4370
0
                path_box.q.x = (path_box.q.x > max_fixed - expansion.x ? max_fixed :
4371
0
                                path_box.q.x + expansion.x);
4372
0
                path_box.q.y = (path_box.q.y > max_fixed - expansion.y ? max_fixed :
4373
0
                                path_box.q.y + expansion.y);
4374
0
            }
4375
0
            if (box.p.x < path_box.p.x)
4376
0
                box.p.x = path_box.p.x;
4377
0
            if (box.p.y < path_box.p.y)
4378
0
                box.p.y = path_box.p.y;
4379
0
            if (box.q.x > path_box.q.x)
4380
0
                box.q.x = path_box.q.x;
4381
0
            if (box.q.y > path_box.q.y)
4382
0
                box.q.y = path_box.q.y;
4383
0
        }
4384
        /* Group alpha set from fill value. push_shfill_group does reset to 1.0 */
4385
0
        new_pgs.fillconstantalpha = new_pgs.strokeconstantalpha;
4386
0
        code = push_shfill_group(NULL, &new_pgs, &box);
4387
0
    } else
4388
23.3k
        update_lop_for_pdf14(&new_pgs, pdcolor);
4389
23.3k
    pdf14_set_marking_params(dev, &new_pgs);
4390
23.3k
    if (code >= 0) {
4391
23.3k
        PDF14_OP_FS_STATE save_op_state = ((pdf14_device *)dev)->op_state;
4392
4393
23.3k
        ((pdf14_device*)dev)->op_state = PDF14_OP_STATE_STROKE;
4394
23.3k
        code = gx_default_stroke_path(dev, &new_pgs, ppath, params, pdcolor, pcpath);
4395
23.3k
        ((pdf14_device*)dev)->op_state = save_op_state;
4396
23.3k
    }
4397
23.3k
    if (code >= 0 && push_group) {
4398
0
        code = pop_shfill_group(&new_pgs);
4399
0
        pdf14_set_marking_params(dev, pgs);
4400
0
    }
4401
4402
23.3k
    return code;
4403
23.3k
}
4404
4405
/* Pull out steps of transparency updates for fill/stroke
4406
   so that they can be invoked elsewhere (e.g.
4407
   when the abuf device is handling the stroke/fill */
4408
4409
/* Set-up prior to fill operation in fill-stroke */
4410
static int
4411
pdf14_fill_stroke_prefill(gx_device* dev, gs_gstate* pgs, gx_path* ppath,
4412
    const gx_clip_path* pcpath, float fill_alpha, float stroke_alpha,
4413
    gs_blend_mode_t blend_mode, bool* op_ca_eq_CA, bool* path_empty, gs_log2_scale_point path_log2scale)
4414
1.19k
{
4415
1.19k
    int code = 0;
4416
1.19k
    gs_transparency_group_params_t params = { 0 };
4417
1.19k
    gs_fixed_rect clip_bbox;
4418
1.19k
    gs_rect bbox, group_stroke_box;
4419
1.19k
    gs_fixed_rect path_bbox;
4420
1.19k
    int expansion_code;
4421
1.19k
    gs_fixed_point expansion;
4422
1.19k
    pdf14_device* p14dev = (pdf14_device*)dev;
4423
4424
1.19k
    *path_empty = false;
4425
4426
1.19k
    if ((pgs->fillconstantalpha == 0.0 && pgs->strokeconstantalpha == 0.0) ||
4427
1.19k
        (pgs->ctm.xx == 0.0 && pgs->ctm.xy == 0.0 && pgs->ctm.yx == 0.0 && pgs->ctm.yy == 0.0))
4428
0
        return 0;
4429
4430
    /* The clip box returned here is scaled up by path_log2scale, so we need
4431
     * to scale down by this later. */
4432
1.19k
    code = gx_curr_fixed_bbox(pgs, &clip_bbox, NO_PATH);
4433
1.19k
    if (code < 0 && code != gs_error_unknownerror)
4434
0
        return code;
4435
4436
1.19k
    if (code == gs_error_unknownerror) {
4437
        /* didn't get clip box from gx_curr_fixed_bbox */
4438
        /* This is NOT scaled by path_log2scale, so allow for the fact we'll be
4439
         * scaling down by this in a moment. */
4440
0
        clip_bbox.p.x = clip_bbox.p.y = 0;
4441
0
        clip_bbox.q.x = int2fixed(dev->width) << path_log2scale.x;
4442
0
        clip_bbox.q.y = int2fixed(dev->height) << path_log2scale.y;
4443
0
    }
4444
    /* pcpath->outer_box is scaled by path_log2scale too. */
4445
1.19k
    if (pcpath)
4446
1.19k
        rect_intersect(clip_bbox, pcpath->outer_box);
4447
4448
    /* expand the ppath using stroke expansion rule, then intersect it */
4449
1.19k
    code = gx_path_bbox(ppath, &path_bbox);
4450
4451
    /* If we are coming from the abuf device, the path has been scaled
4452
       by a factor (see alpha_buffer_init).  Undo the scaling here so
4453
       on the path_bbox so that we get the proper bounding box for our group. */
4454
1.19k
    if (path_log2scale.x != 0 || path_log2scale.y != 0) {
4455
0
        path_bbox.p.x = path_bbox.p.x >> path_log2scale.x;
4456
0
        path_bbox.q.x = path_bbox.q.x >> path_log2scale.x;
4457
0
        path_bbox.p.y = path_bbox.p.y >> path_log2scale.y;
4458
0
        path_bbox.q.y = path_bbox.q.y >> path_log2scale.y;
4459
0
        clip_bbox.p.x = clip_bbox.p.x >> path_log2scale.x;
4460
0
        clip_bbox.q.x = clip_bbox.q.x >> path_log2scale.x;
4461
0
        clip_bbox.p.y = clip_bbox.p.y >> path_log2scale.y;
4462
0
        clip_bbox.q.y = clip_bbox.q.y >> path_log2scale.y;
4463
0
    }
4464
4465
1.19k
    if (code == gs_error_nocurrentpoint && ppath->segments->contents.subpath_first == 0) {
4466
206
        *path_empty = true;
4467
206
        return 0; /* ignore empty path -- could try to send back a positive code for this but
4468
                     there are simply too many return cases that I can't account for. */
4469
206
    }
4470
989
    if (code < 0)
4471
0
        return code;
4472
4473
989
    expansion_code = gx_stroke_path_expansion(pgs, ppath, &expansion);
4474
989
    if (expansion_code >= 0) {
4475
989
        path_bbox.p.x -= expansion.x;
4476
989
        path_bbox.p.y -= expansion.y;
4477
989
        path_bbox.q.x += expansion.x;
4478
989
        path_bbox.q.y += expansion.y;
4479
989
    }
4480
989
    rect_intersect(path_bbox, clip_bbox);
4481
989
    bbox.p.x = fixed2float(path_bbox.p.x);
4482
989
    bbox.p.y = fixed2float(path_bbox.p.y);
4483
989
    bbox.q.x = fixed2float(path_bbox.q.x);
4484
989
    bbox.q.y = fixed2float(path_bbox.q.y);
4485
4486
989
    code = gs_bbox_transform_inverse(&bbox, &ctm_only(pgs), &group_stroke_box);
4487
989
    if (code < 0)
4488
0
        return code;
4489
4490
989
    if (p14dev->overprint != pgs->overprint || p14dev->stroke_overprint != pgs->stroke_overprint) {
4491
0
        p14dev->overprint = pgs->overprint;
4492
0
        p14dev->stroke_overprint = pgs->stroke_overprint;
4493
0
    }
4494
4495
    /* See if overprint is enabled for both stroke and fill AND if ca == CA */
4496
989
    if (fill_alpha == stroke_alpha &&
4497
989
        p14dev->overprint && p14dev->stroke_overprint &&
4498
989
        dev->color_info.polarity == GX_CINFO_POLARITY_SUBTRACTIVE) {
4499
4500
        /* Push a non-isolated non-knockout group with alpha = 1.0 and
4501
           compatible overprint mode.  Group will be composited with
4502
           original alpha and blend mode */
4503
0
        *op_ca_eq_CA = true;
4504
0
        params.Isolated = false;
4505
0
        params.group_color_type = UNKNOWN;
4506
0
        params.Knockout = false;
4507
0
        params.page_group = false;
4508
0
        params.group_opacity = 1.0;
4509
0
        params.group_shape = fill_alpha;
4510
4511
        /* non-isolated non-knockout group pushed with original alpha and blend mode */
4512
0
        code = gs_begin_transparency_group(pgs, &params, &group_stroke_box, PDF14_BEGIN_TRANS_GROUP);
4513
0
        if (code < 0)
4514
0
            return code;
4515
4516
        /* Change fill alpha to 1.0 and blend mode to compatible overprint for actual drawing */
4517
0
        (void)gs_setfillconstantalpha(pgs, 1.0);
4518
0
        (void)gs_setblendmode(pgs, BLEND_MODE_CompatibleOverprint); /* Can never fail */
4519
4520
989
    } else {
4521
        /* Push a non-isolated knockout group. Do not change the alpha or
4522
            blend modes. Note: we need to draw those that have alpha = 0 */
4523
989
        *op_ca_eq_CA = false;
4524
989
        params.Isolated = false;
4525
989
        params.group_color_type = UNKNOWN;
4526
989
        params.Knockout = true;
4527
989
        params.page_group = false;
4528
989
        params.group_shape = 1.0;
4529
989
        params.group_opacity = 1.0;
4530
4531
        /* non-isolated knockout group is pushed with alpha = 1.0 and Normal blend mode */
4532
989
        (void)gs_setblendmode(pgs, BLEND_MODE_Normal); /* Can never fail */
4533
989
        code = gs_begin_transparency_group(pgs, &params, &group_stroke_box, PDF14_BEGIN_TRANS_GROUP);
4534
989
        if (code < 0)
4535
0
            return code;
4536
4537
        /* restore blend mode for actual drawing in the group */
4538
989
        (void)gs_setblendmode(pgs, blend_mode); /* Can never fail */
4539
4540
        /* If we are in an overprint situation, set the blend mode to compatible
4541
            overprint */
4542
989
        if ((p14dev->icc_struct->overprint_control != gs_overprint_control_disable) && pgs->overprint &&
4543
989
            dev->color_info.polarity == GX_CINFO_POLARITY_SUBTRACTIVE)
4544
0
            (void)gs_setblendmode(pgs, BLEND_MODE_CompatibleOverprint); /* Can never fail */
4545
989
    }
4546
989
    p14dev->op_state = PDF14_OP_STATE_FILL;
4547
989
    return code;
4548
989
}
4549
4550
/* Set-up prior to stroke operation in fill-stroke */
4551
static void
4552
pdf14_fill_stroke_prestroke(gx_device* dev, gs_gstate* pgs, float stroke_alpha,
4553
    gs_blend_mode_t blend_mode, bool op_ca_eq_CA)
4554
989
{
4555
989
    pdf14_device* p14dev = (pdf14_device*)dev;
4556
4557
989
    if (op_ca_eq_CA) {
4558
0
        (void)gs_setstrokeconstantalpha(pgs, 1.0);
4559
989
    } else {
4560
989
        if ((p14dev->icc_struct->overprint_control != gs_overprint_control_disable) && pgs->overprint &&
4561
989
            dev->color_info.polarity == GX_CINFO_POLARITY_SUBTRACTIVE)
4562
0
            (void)gs_setblendmode(pgs, blend_mode); /* Can never fail */
4563
4564
        /* Note that the stroke can end up doing fill methods */
4565
989
        (void)gs_setfillconstantalpha(pgs, stroke_alpha);
4566
4567
989
        if ((p14dev->icc_struct->overprint_control != gs_overprint_control_disable) && pgs->stroke_overprint &&
4568
989
            dev->color_info.polarity == GX_CINFO_POLARITY_SUBTRACTIVE)
4569
0
            (void)gs_setblendmode(pgs, BLEND_MODE_CompatibleOverprint); /* Can never fail */
4570
989
    }
4571
989
    p14dev->op_state = PDF14_OP_STATE_STROKE;
4572
989
}
4573
4574
/* Cleanup after the stroke in fill-stroke  */
4575
static int
4576
pdf14_fill_stroke_poststroke(gx_device* dev, gs_gstate* pgs, float fill_alpha, bool op_ca_eq_CA)
4577
989
{
4578
989
    int code;
4579
4580
989
    if (!op_ca_eq_CA) {
4581
        /* Bug 703324 we need to reset the fill constant alpha in the graphics
4582
          * state to the correct saved value. We also need to reset the 'opacity' member of the
4583
          * device, because some device methods (eg fill_masked_image) don't take a graphics
4584
          * state pointer as a parameter and so are unable to set the opacity value themselves.
4585
          * We therefore need to make sure it is set according to the current fill state.
4586
          */
4587
989
        (void)gs_setfillconstantalpha(pgs, fill_alpha);
4588
989
        code = gs_update_trans_marking_params(pgs);
4589
989
        if (code < 0)
4590
0
            return code;
4591
989
        pdf14_set_marking_params(dev, pgs);
4592
989
    }
4593
4594
989
    return 0;
4595
989
}
4596
4597
/* cleanup in fill-stroke  */
4598
static int
4599
pdf14_fill_stroke_cleanup(gx_device* dev, gs_gstate* pgs, float fill_alpha, float stroke_alpha,
4600
    gs_blend_mode_t blend_mode, PDF14_OP_FS_STATE save_op_state)
4601
989
{
4602
989
    pdf14_device* p14dev = (pdf14_device*)dev;
4603
989
    int code2;
4604
989
    int code = 0;
4605
4606
    /* Restore the state */
4607
989
    p14dev->op_state = save_op_state;
4608
989
    (void)gs_setblendmode(pgs, blend_mode); /* Can never fail */
4609
989
    (void)gs_setstrokeconstantalpha(pgs, stroke_alpha);
4610
989
    (void)gs_setfillconstantalpha(pgs, fill_alpha);
4611
4612
989
    code2 = gs_end_transparency_group(pgs);
4613
989
    if (code2 < 0) {
4614
        /* At this point things have gone very wrong. We should just shut down */
4615
0
        code = gs_abort_pdf14trans_device(pgs);
4616
0
        return code2;
4617
0
    }
4618
989
    return code;
4619
989
}
4620
4621
static int
4622
pdf14_fill_stroke_path(gx_device *dev, const gs_gstate *cpgs, gx_path *ppath,
4623
    const gx_fill_params *fill_params, const gx_drawing_color *pdcolor_fill,
4624
    const gx_stroke_params *stroke_params, const gx_drawing_color *pdcolor_stroke,
4625
    const gx_clip_path *pcpath)
4626
5.97k
{
4627
5.97k
    bool op_ca_eq_CA;
4628
5.97k
    bool path_empty;
4629
5.97k
    int code;
4630
5.97k
    float stroke_alpha = cpgs->strokeconstantalpha;
4631
5.97k
    float fill_alpha = cpgs->fillconstantalpha;
4632
5.97k
    gs_blend_mode_t blend_mode = cpgs->blend_mode;
4633
5.97k
    pdf14_device* p14dev = (pdf14_device*)dev;
4634
5.97k
    PDF14_OP_FS_STATE save_op_state = p14dev->op_state;
4635
5.97k
    gs_log2_scale_point path_log2scale;
4636
5.97k
    bool group_needed = true;
4637
5.97k
    gx_device* curr_pgs_dev = cpgs->device;
4638
4639
5.97k
    union {
4640
5.97k
        const gs_gstate* cpgs;
4641
5.97k
        gs_gstate* pgs;
4642
5.97k
    } const_breaker;
4643
5.97k
    gs_gstate* pgs;
4644
4645
    /* Break const just once, neatly */
4646
5.97k
    const_breaker.cpgs = cpgs;
4647
5.97k
    pgs = const_breaker.pgs;
4648
5.97k
    path_log2scale.x = 0;
4649
5.97k
    path_log2scale.y = 0;
4650
4651
5.97k
    code = pdf14_initialize_ctx(dev, pgs);
4652
5.97k
    if (code < 0)
4653
0
        return code;
4654
4655
    /* From looking at what AR is doing, it appears that if alpha is 1 and
4656
     * blend is normal we don't do a group push. Just do the stroke
4657
     * and the fill, even with overprint */
4658
5.97k
    if (stroke_alpha == 1 && fill_alpha == 1 && blend_mode == BLEND_MODE_Normal)
4659
4.77k
        group_needed = false;
4660
4661
5.97k
    if (group_needed) {
4662
1.19k
        pgs->device = dev; /* This is needed due to the gs_trans calls.  This method
4663
                              can be called on the clist writer side when dealing
4664
                              with the abuf/pdf14 interaction. Those calls have to
4665
                              go through the gs_trans API not the gx_trans or pdf14
4666
                              methods.  Perhaps these methods should have a different
4667
                              suffix, but they are static methods here in the pdf14
4668
                              file. */
4669
1.19k
        code = pdf14_fill_stroke_prefill(dev, pgs, ppath, pcpath, fill_alpha, stroke_alpha,
4670
1.19k
            blend_mode, &op_ca_eq_CA, &path_empty, path_log2scale);
4671
1.19k
        pgs->device = curr_pgs_dev;
4672
1.19k
        if (code < 0)
4673
0
            goto cleanup;
4674
1.19k
        if (path_empty)
4675
206
            return 0;
4676
1.19k
    }
4677
4678
5.76k
    code = pdf14_fill_path(dev, pgs, ppath, fill_params, pdcolor_fill, pcpath);
4679
5.76k
    if (code < 0)
4680
0
        goto cleanup;
4681
4682
5.76k
    if (group_needed)
4683
989
        pdf14_fill_stroke_prestroke(dev, pgs, stroke_alpha, blend_mode, op_ca_eq_CA);
4684
5.76k
    gs_swapcolors_quick(pgs);
4685
4686
4687
#if RAW_DUMP
4688
    /* Dump the current buffer to see what we have. */
4689
    dump_raw_buffer(p14dev->ctx->memory,
4690
        p14dev->ctx->stack->rect.q.y - p14dev->ctx->stack->rect.p.y,
4691
        p14dev->ctx->stack->rowstride >> p14dev->ctx->stack->deep, p14dev->ctx->stack->n_planes,
4692
        p14dev->ctx->stack->planestride, p14dev->ctx->stack->rowstride,
4693
        "BeforeStrokeOnFillStroke", p14dev->ctx->stack->data, p14dev->ctx->stack->deep);
4694
    global_index++;
4695
#endif
4696
4697
5.76k
    code = pdf14_stroke_path(dev, pgs, ppath, stroke_params, pdcolor_stroke, pcpath);
4698
5.76k
    gs_swapcolors_quick(pgs);
4699
5.76k
    if (code < 0) {
4700
0
        goto cleanup;
4701
0
    }
4702
4703
#if RAW_DUMP
4704
    /* Dump the current buffer to see what we have. */
4705
    dump_raw_buffer(p14dev->ctx->memory,
4706
        p14dev->ctx->stack->rect.q.y - p14dev->ctx->stack->rect.p.y,
4707
        p14dev->ctx->stack->rowstride >> p14dev->ctx->stack->deep, p14dev->ctx->stack->n_planes,
4708
        p14dev->ctx->stack->planestride, p14dev->ctx->stack->rowstride,
4709
        "AfterStrokeOnFillStroke", p14dev->ctx->stack->data, p14dev->ctx->stack->deep);
4710
    global_index++;
4711
#endif
4712
5.76k
    if (group_needed)
4713
989
        code = pdf14_fill_stroke_poststroke(dev, pgs, fill_alpha, op_ca_eq_CA);
4714
4715
5.76k
cleanup:
4716
5.76k
    if (group_needed) {
4717
989
        int code1;
4718
989
        pgs->device = dev; /* This is needed due to the gs_trans calls */
4719
989
        code1 = pdf14_fill_stroke_cleanup(dev, pgs, fill_alpha, stroke_alpha, blend_mode,
4720
989
            save_op_state);
4721
989
        if (code1 < 0)
4722
0
            code = code1;
4723
989
        pgs->device = curr_pgs_dev;
4724
989
    }
4725
5.76k
    return code;
4726
5.76k
}
4727
4728
static int
4729
pdf14_copy_alpha(gx_device * dev, const byte * data, int data_x,
4730
           int aa_raster, gx_bitmap_id id, int x, int y, int w, int h,
4731
                      gx_color_index color, int depth)
4732
0
{
4733
0
    return pdf14_copy_alpha_color(dev, data, data_x, aa_raster, id, x, y, w, h,
4734
0
                                  color, NULL, depth, false);
4735
0
}
4736
4737
static int
4738
pdf14_copy_alpha_hl_color(gx_device * dev, const byte * data, int data_x,
4739
           int aa_raster, gx_bitmap_id id, int x, int y, int w, int h,
4740
                      const gx_drawing_color *pdcolor, int depth)
4741
0
{
4742
0
    return pdf14_copy_alpha_color(dev, data, data_x, aa_raster, id, x, y, w, h,
4743
0
                                  0, pdcolor, depth, true);
4744
0
}
4745
4746
static int
4747
do_pdf14_copy_alpha_color(gx_device * dev, const byte * data, int data_x,
4748
                          int aa_raster, gx_bitmap_id id, int x, int y,
4749
                          int w, int h, gx_color_index color,
4750
                          const gx_device_color *pdc, int depth, bool devn)
4751
0
{
4752
0
    const byte *aa_row;
4753
0
    pdf14_device *pdev = (pdf14_device *)dev;
4754
0
    pdf14_buf *buf = pdev->ctx->stack;
4755
0
    int i, j, k;
4756
0
    byte *bline, *line, *dst_ptr, *back_ptr;
4757
0
    byte src[PDF14_MAX_PLANES];
4758
0
    byte dst[PDF14_MAX_PLANES] = { 0 };
4759
0
    gs_blend_mode_t blend_mode = pdev->blend_mode;
4760
0
    bool additive = pdev->ctx->additive;
4761
0
    int rowstride = buf->rowstride;
4762
0
    int planestride = buf->planestride;
4763
0
    gs_graphics_type_tag_t curr_tag = GS_UNKNOWN_TAG;  /* Quiet compiler */
4764
0
    bool has_alpha_g = buf->has_alpha_g;
4765
0
    bool has_shape = buf->has_shape;
4766
0
    bool has_tags = buf->has_tags;
4767
0
    bool knockout = buf->knockout;
4768
0
    bool tag_blend = blend_mode == BLEND_MODE_Normal ||
4769
0
        blend_mode == BLEND_MODE_Compatible ||
4770
0
        blend_mode == BLEND_MODE_CompatibleOverprint;
4771
0
    int num_chan = buf->n_chan;
4772
0
    int num_comp = num_chan - 1;
4773
0
    int shape_off = num_chan * planestride;
4774
0
    int alpha_g_off = shape_off + (has_shape ? planestride : 0);
4775
0
    int tag_off = alpha_g_off + (has_alpha_g ? planestride : 0);
4776
0
    bool overprint = pdev->op_state == PDF14_OP_STATE_FILL ? pdev->overprint : pdev->stroke_overprint;
4777
0
    gx_color_index drawn_comps = pdev->op_state == PDF14_OP_STATE_FILL ?
4778
0
                                 pdev->drawn_comps_fill : pdev->drawn_comps_stroke;
4779
0
    gx_color_index comps;
4780
0
    byte shape = 0; /* Quiet compiler. */
4781
0
    byte src_alpha;
4782
0
    int alpha2_aa, alpha_aa, sx;
4783
0
    int alpha_aa_act;
4784
0
    int xoff;
4785
0
    gx_color_index mask = ((gx_color_index)1 << 8) - 1;
4786
0
    int shift = 8;
4787
0
    bool has_backdrop = buf->backdrop != NULL;
4788
4789
0
    if (buf->data == NULL)
4790
0
        return 0;
4791
0
    aa_row = data;
4792
0
    if (has_tags) {
4793
0
        if (devn)
4794
0
            curr_tag = pdc->tag;
4795
0
        else
4796
0
            curr_tag = (color >> (num_comp*8)) & 0xff;
4797
0
    }
4798
4799
0
    if (devn) {
4800
0
        if (additive) {
4801
0
            for (j = 0; j < num_comp; j++) {
4802
0
                src[j] = ((pdc->colors.devn.values[j]) >> shift & mask);
4803
0
            }
4804
0
        } else {
4805
0
            for (j = 0; j < num_comp; j++) {
4806
0
                src[j] = 255 - ((pdc->colors.devn.values[j]) >> shift & mask);
4807
0
            }
4808
0
        }
4809
0
    } else
4810
0
        pdev->pdf14_procs->unpack_color(num_comp, color, pdev, src);
4811
0
    src_alpha = src[num_comp] = (byte)floor (255 * pdev->alpha + 0.5);
4812
0
    if (has_shape)
4813
0
        shape = (byte)floor (255 * pdev->shape + 0.5);
4814
    /* Limit the area we write to the bounding rectangle for this buffer */
4815
0
    if (x < buf->rect.p.x) {
4816
0
        xoff = data_x + buf->rect.p.x - x;
4817
0
        w += x - buf->rect.p.x;
4818
0
        x = buf->rect.p.x;
4819
0
    } else {
4820
0
        xoff = data_x;
4821
0
    }
4822
0
    if (y < buf->rect.p.y) {
4823
0
      h += y - buf->rect.p.y;
4824
0
      aa_row -= (y - buf->rect.p.y) * aa_raster;
4825
0
      y = buf->rect.p.y;
4826
0
    }
4827
0
    if (x + w > buf->rect.q.x) w = buf->rect.q.x - x;
4828
0
    if (y + h > buf->rect.q.y) h = buf->rect.q.y - y;
4829
    /* Update the dirty rectangle. */
4830
0
    if (x < buf->dirty.p.x) buf->dirty.p.x = x;
4831
0
    if (y < buf->dirty.p.y) buf->dirty.p.y = y;
4832
0
    if (x + w > buf->dirty.q.x) buf->dirty.q.x = x + w;
4833
0
    if (y + h > buf->dirty.q.y) buf->dirty.q.y = y + h;
4834
4835
    /* composite with backdrop only. */
4836
0
    line = buf->data + (x - buf->rect.p.x) + (y - buf->rect.p.y) * rowstride;
4837
0
    if (knockout && has_backdrop)
4838
0
        bline = buf->backdrop + (x - buf->rect.p.x) + (y - buf->rect.p.y) * rowstride;
4839
0
    else
4840
0
        bline = line;
4841
4842
0
    for (j = 0; j < h; ++j, aa_row += aa_raster) {
4843
0
        back_ptr = bline;
4844
0
        dst_ptr = line;
4845
0
        sx = xoff;
4846
0
        for (i = 0; i < w; ++i, ++sx) {
4847
            /* Complement the components for subtractive color spaces */
4848
0
            if (additive) {
4849
0
                for (k = 0; k < num_chan; ++k)   /* num_chan includes alpha */
4850
0
                    dst[k] = back_ptr[k * planestride];
4851
0
            } else { /* Complement the components for subtractive color spaces */
4852
0
                for (k = 0; k < num_comp; ++k)
4853
0
                    dst[k] = 255 - back_ptr[k * planestride];
4854
0
                dst[num_comp] = back_ptr[num_comp * planestride]; /* alpha */
4855
0
            }
4856
            /* Get the aa alpha from the buffer */
4857
0
            switch(depth)
4858
0
            {
4859
0
            case 2:  /* map 0 - 3 to 0 - 255 */
4860
0
                alpha_aa = ((aa_row[sx >> 2] >> ((3 - (sx & 3)) << 1)) & 3) * 85;
4861
0
                break;
4862
0
            case 4:
4863
0
                alpha2_aa = aa_row[sx >> 1];
4864
0
                alpha_aa = (sx & 1 ? alpha2_aa & 0xf : alpha2_aa >> 4) * 17;
4865
0
                break;
4866
0
            case 8:
4867
0
                alpha_aa = aa_row[sx];
4868
0
                break;
4869
0
            default:
4870
0
                return_error(gs_error_rangecheck);
4871
0
            }
4872
0
            if (alpha_aa != 0) {  /* This does happen */
4873
0
                if (alpha_aa != 255) {
4874
                    /* We have an alpha value from aa */
4875
0
                    alpha_aa_act = alpha_aa;
4876
0
                    if (src_alpha != 255) {
4877
                        /* Need to combine it with the existing alpha */
4878
0
                        int tmp = src_alpha * alpha_aa_act + 0x80;
4879
0
                        alpha_aa_act = (tmp + (tmp >> 8)) >> 8;
4880
0
                    }
4881
                    /* Set our source alpha value appropriately */
4882
0
                    src[num_comp] = alpha_aa_act;
4883
0
                } else {
4884
                    /* We may have to reset this is it was changed as we
4885
                       moved across the row */
4886
0
                    src[num_comp] = src_alpha;
4887
0
                }
4888
0
                if (knockout) {
4889
0
                    if (buf->isolated) {
4890
0
                        art_pdf_knockoutisolated_group_8(dst, src, num_comp);
4891
0
                    } else {
4892
0
                        art_pdf_composite_knockout_8(dst, src, num_comp,
4893
0
                            blend_mode, pdev->blend_procs, pdev);
4894
0
                    }
4895
0
                } else {
4896
0
                    art_pdf_composite_pixel_alpha_8(dst, src, num_comp, blend_mode, num_comp,
4897
0
                                                    pdev->blend_procs, pdev);
4898
0
                }
4899
                /* Complement the results for subtractive color spaces */
4900
0
                if (additive) {
4901
0
                    for (k = 0; k < num_chan; ++k)
4902
0
                        dst_ptr[k * planestride] = dst[k];
4903
0
                } else {
4904
0
                    if (overprint && dst_ptr[num_comp * planestride] != 0) {
4905
0
                        for (k = 0, comps = drawn_comps; comps != 0;
4906
0
                                ++k, comps >>= 1) {
4907
0
                            if ((comps & 0x1) != 0) {
4908
0
                                dst_ptr[k * planestride] = 255 - dst[k];
4909
0
                            }
4910
0
                        }
4911
                        /* The alpha channel */
4912
0
                        dst_ptr[num_comp * planestride] = dst[num_comp];
4913
0
                    } else {
4914
0
                        for (k = 0; k < num_comp; ++k)
4915
0
                            dst_ptr[k * planestride] = 255 - dst[k];
4916
                        /* The alpha channel */
4917
0
                        dst_ptr[num_comp * planestride] = dst[num_comp];
4918
0
                    }
4919
0
                }
4920
0
                if (has_alpha_g) {
4921
0
                    int tmp = (255 - back_ptr[alpha_g_off]) * (255 - src[num_comp]) + 0x80;
4922
0
                    dst_ptr[alpha_g_off] = 255 - ((tmp + (tmp >> 8)) >> 8);
4923
0
                }
4924
0
                if (has_shape) {
4925
0
                    int tmp = (255 - back_ptr[shape_off]) * (255 - shape) + 0x80;
4926
0
                    dst_ptr[shape_off] = 255 - ((tmp + (tmp >> 8)) >> 8);
4927
0
                }
4928
0
                if (has_tags) {
4929
                    /* If alpha is 100% then set to curr_tag, else or */
4930
                    /* other than Normal BM, we always OR */
4931
0
                    if (src[num_comp] == 255 && tag_blend) {
4932
0
                        dst_ptr[tag_off] = curr_tag;
4933
0
                    } else {
4934
0
                        dst_ptr[tag_off] = back_ptr[tag_off] | curr_tag;
4935
0
                    }
4936
0
                }
4937
0
            }
4938
0
            ++dst_ptr;
4939
0
            ++back_ptr;
4940
0
        }
4941
0
        line += rowstride;
4942
0
        bline += rowstride;
4943
0
    }
4944
0
    return 0;
4945
0
}
4946
4947
static int
4948
do_pdf14_copy_alpha_color_16(gx_device * dev, const byte * data, int data_x,
4949
                             int aa_raster, gx_bitmap_id id, int x, int y,
4950
                             int w, int h, gx_color_index color,
4951
                             const gx_device_color *pdc, int depth, bool devn)
4952
0
{
4953
0
    const byte *aa_row;
4954
0
    pdf14_device *pdev = (pdf14_device *)dev;
4955
0
    pdf14_buf *buf = pdev->ctx->stack;
4956
0
    int i, j, k;
4957
0
    byte *bline, *line;
4958
0
    uint16_t *dst_ptr, *back_ptr;
4959
0
    uint16_t src[PDF14_MAX_PLANES];
4960
0
    uint16_t dst[PDF14_MAX_PLANES] = { 0 };
4961
0
    gs_blend_mode_t blend_mode = pdev->blend_mode;
4962
0
    bool tag_blend = blend_mode == BLEND_MODE_Normal ||
4963
0
        blend_mode == BLEND_MODE_Compatible ||
4964
0
        blend_mode == BLEND_MODE_CompatibleOverprint;
4965
0
    bool additive = pdev->ctx->additive;
4966
0
    int rowstride = buf->rowstride;
4967
0
    int planestride = buf->planestride;
4968
0
    gs_graphics_type_tag_t curr_tag = GS_UNKNOWN_TAG;  /* Quiet compiler */
4969
0
    bool has_alpha_g = buf->has_alpha_g;
4970
0
    bool has_shape = buf->has_shape;
4971
0
    bool has_tags = buf->has_tags;
4972
0
    bool knockout = buf->knockout;
4973
0
    int num_chan = buf->n_chan;
4974
0
    int num_comp = num_chan - 1;
4975
0
    int shape_off = num_chan * planestride;
4976
0
    int alpha_g_off = shape_off + (has_shape ? planestride : 0);
4977
0
    int tag_off = alpha_g_off + (has_alpha_g ? planestride : 0);
4978
0
    bool overprint = pdev->op_state == PDF14_OP_STATE_FILL ? pdev->overprint : pdev->stroke_overprint;
4979
0
    gx_color_index drawn_comps = pdev->op_state == PDF14_OP_STATE_FILL ?
4980
0
        pdev->drawn_comps_fill : pdev->drawn_comps_stroke;
4981
0
    gx_color_index comps;
4982
0
    uint16_t shape = 0; /* Quiet compiler. */
4983
0
    uint16_t src_alpha;
4984
0
    int alpha2_aa, alpha_aa, sx;
4985
0
    int alpha_aa_act;
4986
0
    int xoff;
4987
0
    bool has_backdrop = buf->backdrop != NULL;
4988
4989
0
    if (buf->data == NULL)
4990
0
        return 0;
4991
0
    aa_row = data;
4992
0
    if (has_tags) {
4993
0
        if (devn)
4994
0
            curr_tag = pdc->tag;
4995
0
        else
4996
0
            curr_tag = (color >> (num_comp*16)) & 0xff;
4997
0
    }
4998
4999
0
    if (devn) {
5000
0
        if (additive) {
5001
0
            for (j = 0; j < num_comp; j++) {
5002
0
                src[j] = pdc->colors.devn.values[j];
5003
0
            }
5004
0
        } else {
5005
0
            for (j = 0; j < num_comp; j++) {
5006
0
                src[j] = 65535 - pdc->colors.devn.values[j];
5007
0
            }
5008
0
        }
5009
0
    } else
5010
0
        pdev->pdf14_procs->unpack_color16(num_comp, color, pdev, src);
5011
0
    src_alpha = src[num_comp] = (uint16_t)floor (65535 * pdev->alpha + 0.5);
5012
0
    if (has_shape)
5013
0
        shape = (uint16_t)floor (65535 * pdev->shape + 0.5);
5014
    /* Limit the area we write to the bounding rectangle for this buffer */
5015
0
    if (x < buf->rect.p.x) {
5016
0
        xoff = data_x + buf->rect.p.x - x;
5017
0
        w += x - buf->rect.p.x;
5018
0
        x = buf->rect.p.x;
5019
0
    } else {
5020
0
        xoff = data_x;
5021
0
    }
5022
0
    if (y < buf->rect.p.y) {
5023
0
      h += y - buf->rect.p.y;
5024
0
      aa_row -= (y - buf->rect.p.y) * aa_raster;
5025
0
      y = buf->rect.p.y;
5026
0
    }
5027
0
    if (x + w > buf->rect.q.x) w = buf->rect.q.x - x;
5028
0
    if (y + h > buf->rect.q.y) h = buf->rect.q.y - y;
5029
    /* Update the dirty rectangle. */
5030
0
    if (x < buf->dirty.p.x) buf->dirty.p.x = x;
5031
0
    if (y < buf->dirty.p.y) buf->dirty.p.y = y;
5032
0
    if (x + w > buf->dirty.q.x) buf->dirty.q.x = x + w;
5033
0
    if (y + h > buf->dirty.q.y) buf->dirty.q.y = y + h;
5034
5035
    /* composite with backdrop only. */
5036
0
    line = buf->data + (x - buf->rect.p.x)*2 + (y - buf->rect.p.y) * rowstride;
5037
0
    if (knockout && has_backdrop)
5038
0
        bline = buf->backdrop + (x - buf->rect.p.x)*2 + (y - buf->rect.p.y) * rowstride;
5039
0
    else
5040
0
        bline = line;
5041
5042
0
    planestride >>= 1;
5043
0
    rowstride   >>= 1;
5044
0
    alpha_g_off >>= 1;
5045
0
    shape_off   >>= 1;
5046
0
    tag_off     >>= 1;
5047
0
    for (j = 0; j < h; ++j, aa_row += aa_raster) {
5048
0
        back_ptr = (uint16_t *)(void *)bline;
5049
0
        dst_ptr = (uint16_t *)(void *)line;
5050
0
        sx = xoff;
5051
0
        for (i = 0; i < w; ++i, ++sx) {
5052
            /* Complement the components for subtractive color spaces */
5053
0
            if (additive) {
5054
0
                for (k = 0; k < num_chan; ++k)   /* num_chan includes alpha */
5055
0
                    dst[k] = back_ptr[k * planestride];
5056
0
            } else { /* Complement the components for subtractive color spaces */
5057
0
                for (k = 0; k < num_comp; ++k)
5058
0
                    dst[k] = 65535 - back_ptr[k * planestride];
5059
0
                dst[num_comp] = back_ptr[num_comp * planestride]; /* alpha */
5060
0
            }
5061
            /* Get the aa alpha from the buffer */
5062
0
            switch(depth)
5063
0
            {
5064
0
            case 2:  /* map 0 - 3 to 0 - 255 */
5065
0
                alpha_aa = ((aa_row[sx >> 2] >> ((3 - (sx & 3)) << 1)) & 3) * 85;
5066
0
                break;
5067
0
            case 4:
5068
0
                alpha2_aa = aa_row[sx >> 1];
5069
0
                alpha_aa = (sx & 1 ? alpha2_aa & 0xf : alpha2_aa >> 4) * 17;
5070
0
                break;
5071
0
            case 8:
5072
0
                alpha_aa = aa_row[sx];
5073
0
                break;
5074
0
            default:
5075
0
                return_error(gs_error_rangecheck);
5076
0
            }
5077
0
            if (alpha_aa != 0) {  /* This does happen */
5078
0
                if (alpha_aa != 255) {
5079
                    /* We have an alpha value from aa */
5080
0
                    alpha_aa_act = alpha_aa * 0x101;
5081
0
                    if (src_alpha != 65535) {
5082
                        /* Need to combine it with the existing alpha */
5083
0
                        int tmp = src_alpha * alpha_aa_act + 0x8000;
5084
0
                        alpha_aa_act = (tmp + (tmp >> 16)) >> 16;
5085
0
                    }
5086
                    /* Set our source alpha value appropriately */
5087
0
                    src[num_comp] = alpha_aa_act;
5088
0
                } else {
5089
                    /* We may have to reset this is it was changed as we
5090
                       moved across the row */
5091
0
                    src[num_comp] = src_alpha;
5092
0
                }
5093
0
                if (knockout) {
5094
0
                    if (buf->isolated) {
5095
0
                        art_pdf_knockoutisolated_group_16(dst, src, num_comp);
5096
0
                    } else {
5097
0
                        art_pdf_composite_knockout_16(dst, src, num_comp,
5098
0
                            blend_mode, pdev->blend_procs, pdev);
5099
0
                    }
5100
0
                } else {
5101
0
                    art_pdf_composite_pixel_alpha_16(dst, src, num_comp, blend_mode, num_comp,
5102
0
                                                     pdev->blend_procs, pdev);
5103
0
                }
5104
                /* Complement the results for subtractive color spaces */
5105
0
                if (additive) {
5106
0
                    for (k = 0; k < num_chan; ++k)
5107
0
                        dst_ptr[k * planestride] = dst[k];
5108
0
                } else {
5109
0
                    if (overprint && dst_ptr[num_comp * planestride] != 0) {
5110
0
                        for (k = 0, comps = drawn_comps; comps != 0;
5111
0
                                ++k, comps >>= 1) {
5112
0
                            if ((comps & 0x1) != 0) {
5113
0
                                dst_ptr[k * planestride] = 65535 - dst[k];
5114
0
                            }
5115
0
                        }
5116
                        /* The alpha channel */
5117
0
                        dst_ptr[num_comp * planestride] = dst[num_comp];
5118
0
                    } else {
5119
0
                        for (k = 0; k < num_comp; ++k)
5120
0
                            dst_ptr[k * planestride] = 65535 - dst[k];
5121
                        /* The alpha channel */
5122
0
                        dst_ptr[num_comp * planestride] = dst[num_comp];
5123
0
                    }
5124
0
                }
5125
0
                if (has_alpha_g) {
5126
0
                    int tmp = (65535 - back_ptr[alpha_g_off]) * (65535 - src[num_comp]) + 0x8000;
5127
0
                    dst_ptr[alpha_g_off] = 65535 - ((tmp + (tmp >> 16)) >> 16);
5128
0
                }
5129
0
                if (has_shape) {
5130
0
                    int tmp = (65535 - back_ptr[shape_off]) * (65535 - shape) + 0x8000;
5131
0
                    dst_ptr[shape_off] = 65535 - ((tmp + (tmp >> 16)) >> 16);
5132
0
                }
5133
0
                if (has_tags) {
5134
                    /* If alpha is 100% then set to curr_tag, else or */
5135
                    /* other than Normal BM, we always OR */
5136
0
                    if (src[num_comp] == 65535 && tag_blend) {
5137
0
                        dst_ptr[tag_off] = curr_tag;
5138
0
                    } else {
5139
0
                        dst_ptr[tag_off] = back_ptr[tag_off] | curr_tag;
5140
0
                    }
5141
0
                }
5142
0
            }
5143
0
            ++dst_ptr;
5144
0
            ++back_ptr;
5145
0
        }
5146
0
        line += rowstride;
5147
0
        bline += rowstride;
5148
0
    }
5149
0
    return 0;
5150
0
}
5151
5152
static int
5153
pdf14_copy_alpha_color(gx_device * dev, const byte * data, int data_x,
5154
           int aa_raster, gx_bitmap_id id, int x, int y, int w, int h,
5155
                      gx_color_index color, const gx_device_color *pdc,
5156
                      int depth, bool devn)
5157
0
{
5158
0
    bool deep = device_is_deep(dev);
5159
0
    int code;
5160
5161
0
    code = pdf14_initialize_ctx(dev, NULL);
5162
0
    if (code < 0)
5163
0
        return code;
5164
5165
0
    if (deep)
5166
0
        return do_pdf14_copy_alpha_color_16(dev, data, data_x, aa_raster,
5167
0
                                            id, x, y, w, h,
5168
0
                                            color, pdc, depth, devn);
5169
0
    else
5170
0
        return do_pdf14_copy_alpha_color(dev, data, data_x, aa_raster,
5171
0
                                         id, x, y, w, h,
5172
0
                                         color, pdc, depth, devn);
5173
0
}
5174
5175
static  int
5176
pdf14_fill_mask(gx_device * orig_dev,
5177
                     const byte * data, int dx, int raster, gx_bitmap_id id,
5178
                     int x, int y, int w, int h,
5179
                     const gx_drawing_color * pdcolor, int depth,
5180
                     gs_logical_operation_t lop, const gx_clip_path * pcpath)
5181
0
{
5182
0
    gx_device *dev;
5183
0
    pdf14_device *p14dev = (pdf14_device *)orig_dev;
5184
0
    gx_device_clip cdev;
5185
0
    gx_color_tile *ptile = NULL;
5186
0
    int code = 0;
5187
0
    gs_int_rect group_rect;
5188
0
    gx_pattern_trans_t *fill_trans_buffer = NULL;
5189
0
    bool has_pattern_trans = false;
5190
0
    cmm_dev_profile_t *dev_profile;
5191
5192
0
    if (pdcolor == NULL)
5193
0
        return_error(gs_error_unknownerror);  /* color must be defined */
5194
5195
0
    code = pdf14_initialize_ctx(orig_dev, NULL);
5196
0
    if (code < 0)
5197
0
        return code;
5198
5199
    /* If we are doing a fill with a pattern that has a transparency then
5200
       go ahead and do a push and a pop of the transparency group */
5201
0
    if (gx_dc_is_pattern1_color(pdcolor)) {
5202
0
        if( gx_pattern1_get_transptr(pdcolor) != NULL) {
5203
0
            ptile = pdcolor->colors.pattern.p_tile;
5204
            /* Set up things in the ptile so that we get the proper
5205
               blending etc */
5206
            /* Set the blending procs and the is_additive setting based
5207
               upon the number of channels */
5208
0
            if (ptile->ttrans->n_chan-1 < 4) {
5209
0
                ptile->ttrans->blending_procs = &rgb_blending_procs;
5210
0
                ptile->ttrans->is_additive = true;
5211
0
            } else {
5212
0
                ptile->ttrans->blending_procs = &cmyk_blending_procs;
5213
0
                ptile->ttrans->is_additive = false;
5214
0
            }
5215
            /* Set the procs so that we use the proper filling method. */
5216
0
            gx_set_pattern_procs_trans((gx_device_color*) pdcolor);
5217
            /* Based upon if the tiles overlap pick the type of rect
5218
               fill that we will want to use */
5219
0
            if (ptile->has_overlap) {
5220
                /* This one does blending since there is tile overlap */
5221
0
                ptile->ttrans->pat_trans_fill = &tile_rect_trans_blend;
5222
0
            } else {
5223
                /* This one does no blending since there is no tile overlap */
5224
0
                ptile->ttrans->pat_trans_fill = &tile_rect_trans_simple;
5225
0
            }
5226
            /* Push the group */
5227
0
            group_rect.p.x = x;
5228
0
            group_rect.p.y = max(0,y);
5229
0
            group_rect.q.x = x + w;
5230
0
            group_rect.q.y = y + h;
5231
0
            if (!(w <= 0 || h <= 0)) {
5232
5233
0
                pdf14_group_color_t *group_color_info = pdf14_clone_group_color_info((gx_device *) p14dev, p14dev->ctx->stack->group_color_info);
5234
0
                if (group_color_info == NULL)
5235
0
                    return_error(gs_error_VMerror);
5236
5237
0
                code = pdf14_push_transparency_group(p14dev->ctx, &group_rect,
5238
0
                     1, 0, 65535, 65535, 65535, BLEND_MODE_Normal, 0, 0,
5239
0
                     ptile->ttrans->n_chan-1, false, false, NULL, NULL,
5240
0
                     group_color_info, NULL, NULL);
5241
0
                if (code < 0)
5242
0
                    return code;
5243
                /* Set up the output buffer information now that we have
5244
                   pushed the group */
5245
0
                fill_trans_buffer = new_pattern_trans_buff(p14dev->memory);
5246
0
                if (fill_trans_buffer == NULL)
5247
0
                    return_error(gs_error_VMerror);
5248
5249
0
                pdf14_get_buffer_information((gx_device *) p14dev,
5250
0
                                              fill_trans_buffer, NULL, false);
5251
                /* Store this in the appropriate place in pdcolor.  This
5252
                   is released later after the mask fill */
5253
0
                ptile->ttrans->fill_trans_buffer = fill_trans_buffer;
5254
0
                has_pattern_trans = true;
5255
0
            }
5256
0
        }
5257
0
    }
5258
0
    if (pcpath != 0) {
5259
0
        gx_make_clip_device_on_stack(&cdev, pcpath, orig_dev);
5260
0
        dev = (gx_device *) & cdev;
5261
0
    } else
5262
0
        dev = orig_dev;
5263
0
    if (depth > 1) {
5264
        /****** CAN'T DO ROP OR HALFTONE WITH ALPHA ******/
5265
0
        code = (*dev_proc(dev, copy_alpha))
5266
0
            (dev, data, dx, raster, id, x, y, w, h,
5267
0
             gx_dc_pure_color(pdcolor), depth);
5268
0
    } else {
5269
0
        code = pdcolor->type->fill_masked(pdcolor, data, dx, raster, id,
5270
0
                                          x, y, w, h, dev, lop, false);
5271
0
    }
5272
0
    if (has_pattern_trans) {
5273
0
        bool has_tags = device_encodes_tags(dev);
5274
0
        if (code >= 0)
5275
0
            code = dev_proc(dev, get_profile)(dev,  &dev_profile);
5276
0
        if (code >= 0)
5277
0
            code = pdf14_pop_transparency_group(NULL, p14dev->ctx,
5278
0
                                                p14dev->blend_procs,
5279
0
                                                p14dev->color_info.num_components - has_tags,
5280
0
                                                dev_profile->device_profile[GS_DEFAULT_DEVICE_PROFILE],
5281
0
                                                orig_dev);
5282
0
        gs_free_object(p14dev->memory, ptile->ttrans->fill_trans_buffer,
5283
0
                       "pdf14_fill_mask");
5284
0
        ptile->ttrans->fill_trans_buffer = NULL;  /* Avoid GC issues */
5285
0
    }
5286
0
    if (pcpath != 0)
5287
0
        gx_destroy_clip_device_on_stack(&cdev);
5288
0
    return code;
5289
0
}
5290
5291
5292
5293
/* Used for filling rects when we are doing a fill with a pattern that
5294
   has transparency */
5295
static  int
5296
pdf14_tile_pattern_fill(gx_device * pdev, const gs_gstate * pgs,
5297
                        gx_path * ppath, const gx_fill_params * params,
5298
                        const gx_device_color * pdevc,
5299
                        const gx_clip_path * pcpath)
5300
14.9k
{
5301
14.9k
    int code;
5302
14.9k
    gs_gstate *pgs_noconst = (gs_gstate *)pgs; /* Break const. */
5303
14.9k
    gs_fixed_rect clip_box;
5304
14.9k
    gs_fixed_rect outer_box;
5305
14.9k
    pdf14_device * p14dev = (pdf14_device *)pdev;
5306
14.9k
    gs_int_rect rect;
5307
14.9k
    gx_clip_rect *curr_clip_rect;
5308
14.9k
    gx_color_tile *ptile = NULL;
5309
14.9k
    int k;
5310
14.9k
    gx_pattern_trans_t *fill_trans_buffer = NULL;
5311
14.9k
    gs_int_point phase;  /* Needed during clist rendering for band offset */
5312
14.9k
    int n_chan_tile;
5313
14.9k
    gx_clip_path cpath_intersection;
5314
14.9k
    gx_path path_ttrans;
5315
14.9k
    pdf14_group_color_t *group_color_info;
5316
14.9k
    bool has_tags = device_encodes_tags(pdev);
5317
5318
14.9k
    if (ppath == NULL)
5319
0
        return_error(gs_error_unknownerror);  /* should not happen */
5320
14.9k
    if (pcpath != NULL) {
5321
14.4k
        code = gx_cpath_init_local_shared_nested(&cpath_intersection, pcpath, ppath->memory, 1);
5322
14.4k
    } else {
5323
422
        (*dev_proc(pdev, get_clipping_box)) (pdev, &clip_box);
5324
422
        gx_cpath_init_local(&cpath_intersection, ppath->memory);
5325
422
        code = gx_cpath_from_rectangle(&cpath_intersection, &clip_box);
5326
422
    }
5327
14.9k
    if (code < 0)
5328
0
        return code;
5329
14.9k
    code = gx_cpath_intersect_with_params(&cpath_intersection, ppath,
5330
14.9k
                                          params->rule, pgs_noconst, params);
5331
14.9k
    if (code < 0)
5332
0
        return code;
5333
    /* One (common) case worth optimising for is where we have a pattern that
5334
     * is positioned such that only one repeat of the tile is actually
5335
     * visible. In this case, we can restrict the size of the blending group
5336
     * we need to produce to be that of the actual area of the tile that is
5337
     * used. */
5338
14.9k
    ptile = pdevc->colors.pattern.p_tile;
5339
14.9k
    if (ptile->ttrans != NULL)
5340
1.84k
    {
5341
1.84k
        if ((cpath_intersection.outer_box.p.x < 0) ||
5342
1.84k
            (cpath_intersection.outer_box.p.y < 0) ||
5343
1.84k
            (cpath_intersection.outer_box.q.x > int2fixed(ptile->ttrans->width)) ||
5344
1.84k
            (cpath_intersection.outer_box.q.y > int2fixed(ptile->ttrans->height)))
5345
297
        {
5346
            /* More than one repeat of the tile would be visible, so we can't
5347
             * use the optimisation here. (Actually, this test isn't quite
5348
             * right - it actually tests whether more than the '0th' repeat
5349
             * of the tile is visible. A better test would test if just one
5350
             * repeat of the tile was visible, irrespective of which one.
5351
             * This is (hopefully) relatively rare, and would make the code
5352
             * below more complex too, so we're ignoring that for now. If it
5353
             * becomes evident that it's a case that matters we can revisit
5354
             * it.) */
5355
1.54k
        } else {
5356
            /* Only the 0th repeat is visible. Restrict the size further to
5357
             * just the used area of that patch. */
5358
1.54k
            gx_path_init_local(&path_ttrans, ppath->memory);
5359
1.54k
            code = gx_path_add_rectangle(&path_ttrans,
5360
1.54k
                                         int2fixed(ptile->ttrans->rect.p.x),
5361
1.54k
                                         int2fixed(ptile->ttrans->rect.p.y),
5362
1.54k
                                         int2fixed(ptile->ttrans->rect.q.x),
5363
1.54k
                                         int2fixed(ptile->ttrans->rect.q.y));
5364
1.54k
            if (code < 0)
5365
0
                return code;
5366
1.54k
            code = gx_cpath_intersect(&cpath_intersection, &path_ttrans,
5367
1.54k
                                      params->rule, pgs_noconst);
5368
1.54k
            gx_path_free(&path_ttrans, "pdf14_tile_pattern_fill(path_ttrans)");
5369
1.54k
            if (code < 0)
5370
0
                return code;
5371
1.54k
        }
5372
1.84k
    }
5373
    /* Now let us push a transparency group into which we are
5374
     * going to tile the pattern.  */
5375
14.9k
    if (ppath != NULL) {
5376
14.9k
        pdf14_device save_pdf14_dev;    /* save area for p14dev */
5377
5378
14.9k
        gx_cpath_outer_box(&cpath_intersection, &outer_box);
5379
14.9k
        rect.p.x = fixed2int(outer_box.p.x);
5380
14.9k
        rect.p.y = fixed2int(outer_box.p.y);
5381
14.9k
        rect.q.x = fixed2int_ceiling(outer_box.q.x);
5382
14.9k
        rect.q.y = fixed2int_ceiling(outer_box.q.y);
5383
5384
        /* The color space of this group must be the same as that of the
5385
           tile.  Then when we pop the group, if there is a mismatch between
5386
           the tile color space and the current context we will do the proper
5387
           conversion.  In this way, we ensure that if the tile has any overlapping
5388
           occuring it will be blended in the proper manner i.e in the tile
5389
           underlying color space. */
5390
14.9k
        if (ptile->cdev == NULL) {
5391
1.84k
            if (ptile->ttrans == NULL)
5392
0
                return_error(gs_error_unknownerror);  /* should not happen */
5393
1.84k
            n_chan_tile = ptile->ttrans->n_chan;
5394
13.0k
        } else {
5395
13.0k
            n_chan_tile = ptile->cdev->common.color_info.num_components+1;
5396
13.0k
        }
5397
14.9k
        memcpy(&save_pdf14_dev, p14dev, sizeof(pdf14_device));
5398
5399
        /* Transparency handling with patterns confuses me, so some notes...
5400
         *
5401
         * For simple, non-transparent patterns, like you'd get in PS, we've
5402
         * used bitmap tiles. Draw into those tiles, and tile those out multiple
5403
         * times. To cope with unmarked pixels, we have a "transparency" plane
5404
         * (simple on/off) that says whether a pixel is marked or not.
5405
         *
5406
         * For patterns with transparency (but not blending), we can create an
5407
         * isolated transparency group, tile all the bitmap tiles into that, and
5408
         * then blend that back with the required alpha at the end. This works
5409
         * because the alpha values of the individual objects within the tile are
5410
         * recorded in that group.
5411
         *
5412
         * We can't do that for groups that use blending though, as each object
5413
         * in the pattern might use a different blend, and we don't (can't) record
5414
         * the blending mode. An isolated group doesn't even allow us to actually
5415
         * do the blending at all. So, for such patterns (any patterns that sets (or
5416
         * just has a resource that mentions) a non-normal blend mode), we use
5417
         * a pattern clist.
5418
         */
5419
14.9k
        if (ptile->cdev == NULL) {
5420
1.84k
            group_color_info = pdf14_clone_group_color_info(pdev, p14dev->ctx->stack->group_color_info);
5421
1.84k
            if (group_color_info == NULL)
5422
0
                return gs_error_VMerror;
5423
5424
1.84k
            code = pdf14_push_transparency_group(p14dev->ctx, &rect, 1, 0, (uint16_t)floor(65535 * p14dev->alpha + 0.5),
5425
1.84k
                                                 (uint16_t)floor(65535 * p14dev->shape + 0.5), (uint16_t)floor(65535 * p14dev->opacity + 0.5),
5426
1.84k
                                                 BLEND_MODE_Normal, 0, 0, n_chan_tile - 1, false, false,
5427
1.84k
                                                 NULL, NULL, group_color_info, pgs_noconst, pdev);
5428
1.84k
            if (code < 0)
5429
0
                return code;
5430
1.84k
        }
5431
5432
        /* Set the blending procs and the is_additive setting based
5433
           upon the number of channels */
5434
14.9k
        if (ptile->cdev == NULL) {
5435
1.84k
            if (n_chan_tile-1 < 4) {
5436
390
                ptile->ttrans->blending_procs = &rgb_blending_procs;
5437
390
                ptile->ttrans->is_additive = true;
5438
1.45k
            } else {
5439
1.45k
                ptile->ttrans->blending_procs = &cmyk_blending_procs;
5440
1.45k
                ptile->ttrans->is_additive = false;
5441
1.45k
            }
5442
1.84k
        }
5443
        /* Now lets go through the rect list and fill with the pattern */
5444
        /* First get the buffer that we will be filling */
5445
14.9k
        if (ptile->cdev == NULL) {
5446
1.84k
            fill_trans_buffer = new_pattern_trans_buff(pgs->memory);
5447
1.84k
            if (fill_trans_buffer == NULL) {
5448
0
                p14dev->pclist_device = NULL;
5449
0
                return_error(gs_error_VMerror);
5450
0
            }
5451
1.84k
            pdf14_get_buffer_information(pdev, fill_trans_buffer, NULL, false);
5452
            /* Based upon if the tiles overlap pick the type of rect fill that we will
5453
               want to use */
5454
1.84k
            if (ptile->has_overlap) {
5455
                /* This one does blending since there is tile overlap */
5456
460
                ptile->ttrans->pat_trans_fill = &tile_rect_trans_blend;
5457
1.38k
            } else {
5458
                /* This one does no blending since there is no tile overlap */
5459
1.38k
                ptile->ttrans->pat_trans_fill = &tile_rect_trans_simple;
5460
1.38k
            }
5461
            /* fill the rectangles */
5462
1.84k
            phase.x = pdevc->phase.x;
5463
1.84k
            phase.y = pdevc->phase.y;
5464
1.84k
            if (cpath_intersection.rect_list->list.head != NULL){
5465
0
                curr_clip_rect = cpath_intersection.rect_list->list.head->next;
5466
0
                for( k = 0; k < cpath_intersection.rect_list->list.count && code >= 0; k++){
5467
0
                    if_debug5m('v', pgs->memory,
5468
0
                               "[v]pdf14_tile_pattern_fill, (%d, %d), %d x %d pat_id %u \n",
5469
0
                               curr_clip_rect->xmin, curr_clip_rect->ymin,
5470
0
                               curr_clip_rect->xmax-curr_clip_rect->xmin,
5471
0
                               curr_clip_rect->ymax-curr_clip_rect->ymin, (int)ptile->id);
5472
0
                    code = gx_trans_pattern_fill_rect(curr_clip_rect->xmin, curr_clip_rect->ymin,
5473
0
                                                      curr_clip_rect->xmax, curr_clip_rect->ymax, ptile,
5474
0
                                                      fill_trans_buffer, phase, pdev, pdevc, 1);
5475
0
                    curr_clip_rect = curr_clip_rect->next;
5476
0
                }
5477
1.84k
            } else if (cpath_intersection.rect_list->list.count == 1) {
5478
                /* The case when there is just a single rect */
5479
1.84k
                if_debug5m('v', pgs->memory,
5480
1.84k
                           "[v]pdf14_tile_pattern_fill, (%d, %d), %d x %d pat_id %u \n",
5481
1.84k
                           cpath_intersection.rect_list->list.single.xmin,
5482
1.84k
                           cpath_intersection.rect_list->list.single.ymin,
5483
1.84k
                           cpath_intersection.rect_list->list.single.xmax-
5484
1.84k
                              cpath_intersection.rect_list->list.single.xmin,
5485
1.84k
                           cpath_intersection.rect_list->list.single.ymax-
5486
1.84k
                              cpath_intersection.rect_list->list.single.ymin,
5487
1.84k
                           (int)ptile->id);
5488
1.84k
                code = gx_trans_pattern_fill_rect(cpath_intersection.rect_list->list.single.xmin,
5489
1.84k
                                                  cpath_intersection.rect_list->list.single.ymin,
5490
1.84k
                                                  cpath_intersection.rect_list->list.single.xmax,
5491
1.84k
                                                  cpath_intersection.rect_list->list.single.ymax,
5492
1.84k
                                                  ptile, fill_trans_buffer, phase, pdev, pdevc, 1);
5493
1.84k
            }
5494
13.0k
        } else {
5495
            /* Clist pattern with transparency.  Create a clip device from our
5496
               cpath_intersection.  The above non-clist case could probably be
5497
               done this way too, which will reduce the amount of code here.
5498
               That is for another day though due to time constraints*/
5499
13.0k
            gx_device *dev;
5500
13.0k
            gx_device_clip clipdev;
5501
5502
13.0k
            gx_make_clip_device_on_stack(&clipdev, &cpath_intersection, pdev);
5503
13.0k
            dev = (gx_device *)&clipdev;
5504
13.0k
            phase.x = pdevc->phase.x;
5505
13.0k
            phase.y = pdevc->phase.y;
5506
13.0k
            code = gx_trans_pattern_fill_rect(rect.p.x, rect.p.y, rect.q.x, rect.q.y,
5507
13.0k
                                              ptile, fill_trans_buffer, phase,
5508
13.0k
                                              dev, pdevc, 1);
5509
13.0k
            gx_destroy_clip_device_on_stack(&clipdev);
5510
13.0k
        }
5511
        /* We're done drawing with the pattern, remove the reference to the
5512
         * pattern device
5513
         */
5514
14.9k
        p14dev->pclist_device = NULL;
5515
14.9k
        if (code < 0)
5516
0
            return code;
5517
5518
        /* free our buffer object */
5519
14.9k
        if (fill_trans_buffer != NULL) {
5520
1.84k
            gs_free_object(pgs->memory, fill_trans_buffer, "pdf14_tile_pattern_fill");
5521
1.84k
            ptile->ttrans->fill_trans_buffer = NULL;  /* Avoid GC issues */
5522
1.84k
        }
5523
14.9k
        if (ptile->cdev == NULL) {
5524
            /* pop our transparency group which will force the blending.
5525
               This was all needed for Bug 693498 */
5526
1.84k
            code = pdf14_pop_transparency_group(pgs_noconst, p14dev->ctx,
5527
1.84k
                                                p14dev->blend_procs,
5528
1.84k
                                                p14dev->color_info.num_components - has_tags,
5529
1.84k
                                                p14dev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE],
5530
1.84k
                                                pdev);
5531
1.84k
        }
5532
14.9k
        memcpy(p14dev, &save_pdf14_dev, sizeof(pdf14_device));
5533
14.9k
        p14dev->pclist_device = NULL;
5534
14.9k
    }
5535
14.9k
    gx_cpath_free(&cpath_intersection, "pdf14_tile_pattern_fill");
5536
14.9k
    return code;
5537
14.9k
}
5538
5539
/* Useful function that should probably go elsewhere.
5540
 * Call this function to find the topmost pdf14 device in the device chain,
5541
 * or NULL if there is not one.
5542
 */
5543
static pdf14_device *find_pdf14_device(gx_device *dev)
5544
0
{
5545
0
    pdf14_device *pdev;
5546
5547
0
    if (dev_proc(dev, dev_spec_op)(dev, gxdso_is_pdf14_device, &pdev, sizeof(pdev)) <= 0)
5548
0
        return NULL;
5549
0
    return pdev;
5550
0
}
5551
5552
/* Imager render for pattern transparency filling.  This is just here to catch
5553
   the final flush, at which time we will pop the group and reset a few items */
5554
static  int
5555
pdf14_pattern_trans_render(gx_image_enum * penum, const byte * buffer, int data_x,
5556
                    uint w, int h, gx_device * dev)
5557
0
{
5558
0
    int code;
5559
0
    pdf14_device * p14dev;
5560
0
    const gs_gstate * pgs = penum->pgs;
5561
0
    gx_device_color * pdcolor = (penum->icolor1);
5562
0
    gx_color_tile *ptile = pdcolor->colors.pattern.p_tile;
5563
0
    bool has_tags = device_encodes_tags(dev);
5564
5565
    /* Pass along to the original renderer */
5566
0
    code = (ptile->ttrans->image_render)(penum, buffer, data_x, w, h, dev);
5567
0
    if (code < 0)
5568
0
        return code;
5569
    /* On our final time through here, go ahead and pop the transparency
5570
       group and reset the procs in the device color. And free the fill
5571
       trans buffer object */
5572
0
    if (h == 0 && ptile->trans_group_popped == false) {
5573
0
        p14dev = find_pdf14_device(dev);
5574
5575
0
        if (p14dev->pclist_device == NULL) {
5576
            /* Used if we are on clist writing phase.  Would only
5577
               occur if we somehow failed in high level clist
5578
               image writing */
5579
0
            code = gs_end_transparency_group((gs_gstate *) pgs);
5580
0
        } else {
5581
            /* Used if we are on clist reading phase.  If we had high level
5582
               image in clist */
5583
0
            cmm_dev_profile_t *dev_profile;
5584
0
            code = dev_proc(dev, get_profile)(dev,  &dev_profile);
5585
0
            if (code < 0)
5586
0
                return code;
5587
5588
0
            if_debug2m('v', p14dev->ctx->memory,
5589
0
                      "[v*] Popping trans group pattern fill, uid = %ld id = %ld \n",
5590
0
                       ptile->uid.id, ptile->id);
5591
0
            code = pdf14_pop_transparency_group(NULL, p14dev->ctx, p14dev->blend_procs,
5592
0
                    p14dev->color_info.num_components - has_tags,
5593
0
                    dev_profile->device_profile[GS_DEFAULT_DEVICE_PROFILE],
5594
0
                    (gx_device *) p14dev);
5595
0
        }
5596
0
        pdcolor->colors.pattern.p_tile->trans_group_popped = true;
5597
0
        gs_free_object(pgs->memory, ptile->ttrans->fill_trans_buffer,
5598
0
                       "pdf14_pattern_trans_render");
5599
0
        ptile->ttrans->fill_trans_buffer = NULL;  /* Avoid GC issues */
5600
0
    }
5601
0
    return code;
5602
0
}
5603
5604
/* This function is used to get things in place for filling a mask image
5605
   with a pattern that has transparency.  It is used by pdf14_begin_type_image
5606
   and pdf14_clist_begin_type_image */
5607
static int
5608
pdf14_patt_trans_image_fill(gx_device * dev, const gs_gstate * pgs,
5609
                           const gs_matrix *pmat, const gs_image_common_t *pic,
5610
                           const gs_int_rect * prect,
5611
                           const gx_drawing_color * pdcolor,
5612
                           const gx_clip_path * pcpath, gs_memory_t * mem,
5613
                           gx_image_enum_common_t ** pinfo)
5614
0
{
5615
0
    const gs_image_t *pim = (const gs_image_t *)pic;
5616
0
    pdf14_device * p14dev = (pdf14_device *)dev;
5617
0
    gx_color_tile *ptile;
5618
0
    int code;
5619
0
    gs_int_rect group_rect;
5620
0
    gx_image_enum *penum;
5621
0
    gs_rect bbox_in, bbox_out;
5622
0
    gx_pattern_trans_t *fill_trans_buffer;
5623
5624
0
    ptile = pdcolor->colors.pattern.p_tile;
5625
    /* Set up things in the ptile so that we get the proper
5626
       blending etc */
5627
    /* Set the blending procs and the is_additive setting based
5628
       upon the number of channels */
5629
0
    if (ptile->ttrans->n_chan-1 < 4) {
5630
0
        ptile->ttrans->blending_procs = &rgb_blending_procs;
5631
0
        ptile->ttrans->is_additive = true;
5632
0
    } else {
5633
0
        ptile->ttrans->blending_procs = &cmyk_blending_procs;
5634
0
        ptile->ttrans->is_additive = false;
5635
0
    }
5636
    /* Set the blending mode in the ptile based upon the current
5637
       setting in the gs_gstate */
5638
0
    ptile->blending_mode = pgs->blend_mode;
5639
    /* Based upon if the tiles overlap pick the type of rect
5640
       fill that we will want to use */
5641
0
    if (ptile->has_overlap) {
5642
        /* This one does blending since there is tile overlap */
5643
0
        ptile->ttrans->pat_trans_fill = &tile_rect_trans_blend;
5644
0
    } else {
5645
        /* This one does no blending since there is no tile overlap */
5646
0
        ptile->ttrans->pat_trans_fill = &tile_rect_trans_simple;
5647
0
    }
5648
    /* Set the procs so that we use the proper filling method. */
5649
0
    gx_set_pattern_procs_trans((gx_device_color*) pdcolor);
5650
    /* Let the imaging stuff get set up */
5651
0
    code = gx_default_begin_typed_image(dev, pgs, pmat, pic,
5652
0
                            prect, pdcolor,pcpath, mem, pinfo);
5653
0
    if (code < 0)
5654
0
        return code;
5655
    /* Now Push the group */
5656
    /* First apply the inverse of the image matrix to our
5657
       image size to get our bounding box. */
5658
0
    bbox_in.p.x = 0;
5659
0
    bbox_in.p.y = 0;
5660
0
    bbox_in.q.x = pim->Width;
5661
0
    bbox_in.q.y = pim->Height;
5662
0
    code = gs_bbox_transform_inverse(&bbox_in, &(pim->ImageMatrix),
5663
0
                                &bbox_out);
5664
0
    if (code < 0)
5665
0
        return code;
5666
    /* That in turn will get hit by the matrix in the gs_gstate */
5667
0
    code = compute_group_device_int_rect(p14dev, &group_rect,
5668
0
                                            &bbox_out, (gs_gstate *)pgs);
5669
0
    if (code < 0)
5670
0
        return code;
5671
0
    if (!(pim->Width == 0 || pim->Height == 0)) {
5672
0
        if_debug2m('v', p14dev->ctx->memory,
5673
0
                   "[v*] Pushing trans group patt_trans_image_fill, uid = %ld id = %ld \n",
5674
0
                   ptile->uid.id, ptile->id);
5675
5676
0
        code = pdf14_push_transparency_group(p14dev->ctx, &group_rect, 1, 0, 65535, 65535,
5677
0
                                             65535, pgs->blend_mode, 0, 0,
5678
0
                                             ptile->ttrans->n_chan-1, false, false,
5679
0
                                             NULL, NULL, NULL, (gs_gstate *)pgs, dev);
5680
5681
        /* Set up the output buffer information now that we have
5682
           pushed the group */
5683
0
        fill_trans_buffer = new_pattern_trans_buff(pgs->memory);
5684
0
        if (fill_trans_buffer == NULL)
5685
0
            return_error(gs_error_VMerror);
5686
5687
0
        pdf14_get_buffer_information(dev, fill_trans_buffer, NULL, false);
5688
5689
        /* Store this in the appropriate place in pdcolor.  This
5690
           is released later in pdf14_pattern_trans_render when
5691
           we are all done with the mask fill */
5692
0
        ptile->ttrans->fill_trans_buffer = fill_trans_buffer;
5693
5694
        /* Change the renderer to handle this case so we can catch the
5695
           end.  We will then pop the group and reset the pdcolor proc.
5696
           Keep the base renderer also. */
5697
0
        penum = (gx_image_enum *) *pinfo;
5698
0
        ptile->ttrans->image_render = penum->render;
5699
0
        penum->render = &pdf14_pattern_trans_render;
5700
0
        ptile->trans_group_popped = false;
5701
0
    }
5702
0
    return code;
5703
0
}
5704
5705
static  int
5706
pdf14_begin_typed_image(gx_device * dev, const gs_gstate * pgs,
5707
                           const gs_matrix *pmat, const gs_image_common_t *pic,
5708
                           const gs_int_rect * prect,
5709
                           const gx_drawing_color * pdcolor,
5710
                           const gx_clip_path * pcpath, gs_memory_t * mem,
5711
                           gx_image_enum_common_t ** pinfo)
5712
15.0k
{
5713
15.0k
    const gs_image_t *pim = (const gs_image_t *)pic;
5714
15.0k
    int code;
5715
5716
15.0k
    code = pdf14_initialize_ctx(dev, pgs);
5717
15.0k
    if (code < 0)
5718
0
        return code;
5719
5720
    /* If we are filling an image mask with a pattern that has a transparency
5721
       then we need to do some special handling */
5722
15.0k
    if (pim->ImageMask) {
5723
0
        if (pdcolor != NULL && gx_dc_is_pattern1_color(pdcolor)) {
5724
0
            if( gx_pattern1_get_transptr(pdcolor) != NULL){
5725
                /* If we are in a final run through here for this case then
5726
                   go ahead and push the transparency group.   Also, update
5727
                   the proc for the pattern color so that we used the
5728
                   appropriate fill operation.  Note that the group
5729
                   is popped and the proc will be reset when we flush the
5730
                   image data.  This is handled in a special pdf14 image
5731
                   renderer which will end up installed for this case.
5732
                   Detect setting of begin_image to gx_no_begin_image.
5733
                   (final recursive call) */
5734
0
                if (dev_proc(dev, begin_typed_image) != gx_default_begin_typed_image) {
5735
0
                    code = pdf14_patt_trans_image_fill(dev, pgs, pmat, pic,
5736
0
                                                prect, pdcolor, pcpath, mem,
5737
0
                                                pinfo);
5738
0
                    return code;
5739
0
                }
5740
0
            }
5741
0
        }
5742
0
    }
5743
15.0k
    pdf14_set_marking_params(dev, pgs);
5744
15.0k
    return gx_default_begin_typed_image(dev, pgs, pmat, pic, prect, pdcolor,
5745
15.0k
                                        pcpath, mem, pinfo);
5746
15.0k
}
5747
5748
static  void
5749
pdf14_set_params(gs_gstate * pgs,
5750
                 gx_device * dev,
5751
                 const gs_pdf14trans_params_t * pparams)
5752
357k
{
5753
357k
    if_debug0m('v', dev->memory, "[v]pdf14_set_params\n");
5754
357k
    if (pparams->changed & PDF14_SET_BLEND_MODE)
5755
108k
        pgs->blend_mode = pparams->blend_mode;
5756
357k
    if (pparams->changed & PDF14_SET_TEXT_KNOCKOUT)
5757
101k
        pgs->text_knockout = pparams->text_knockout;
5758
357k
    if (pparams->changed & PDF14_SET_AIS)
5759
16.2k
        pgs->alphaisshape = pparams->ais;
5760
357k
    if (pparams->changed & PDF14_SET_OVERPRINT)
5761
7.37k
        pgs->overprint = pparams->overprint;
5762
357k
    if (pparams->changed & PDF14_SET_STROKEOVERPRINT)
5763
7.01k
        pgs->stroke_overprint = pparams->stroke_overprint;
5764
357k
    if (pparams->changed & PDF14_SET_FILLCONSTANTALPHA)
5765
166k
        pgs->fillconstantalpha = pparams->fillconstantalpha;
5766
357k
    if (pparams->changed & PDF14_SET_STROKECONSTANTALPHA)
5767
151k
        pgs->strokeconstantalpha = pparams->strokeconstantalpha;
5768
357k
    if (pparams->changed & PDF14_SET_FILLSTROKE_STATE) {
5769
83.4k
        gs_swapcolors_quick(pgs);
5770
83.4k
        if (pparams->op_fs_state == PDF14_OP_STATE_STROKE)
5771
26.6k
            pgs->is_fill_color = false;
5772
56.8k
        else
5773
56.8k
            pgs->is_fill_color = true;
5774
83.4k
    }
5775
357k
    pdf14_set_marking_params(dev, pgs);
5776
357k
}
5777
5778
/*
5779
 * This open_device method for the PDF 1.4 compositor devices is only used
5780
 * when these devices are disabled.  This routine is about as close to
5781
 * a pure "forwarding" open_device operation as is possible. Its only
5782
 * significant function is to ensure that the is_open field of the
5783
 * PDF 1.4 compositor devices matches that of the target device.
5784
 *
5785
 * We assume this procedure is called only if the device is not already
5786
 * open, and that gs_opendevice will take care of the is_open flag.
5787
 */
5788
static  int
5789
pdf14_forward_open_device(gx_device * dev)
5790
0
{
5791
0
    gx_device_forward * pdev = (gx_device_forward *)dev;
5792
0
    gx_device * tdev = pdev->target;
5793
0
    int code;
5794
5795
    /* The PDF 1.4 compositing devices must have a target */
5796
0
    if (tdev == 0)
5797
0
        return_error(gs_error_unknownerror);
5798
0
    if ((code = gs_opendevice(tdev)) >= 0)
5799
0
        gx_device_copy_params(dev, tdev);
5800
0
    return code;
5801
0
}
5802
5803
/*
5804
 * Convert all device procs to be 'forwarding'.  The caller is responsible
5805
 * for setting any device procs that should not be forwarded.
5806
 */
5807
static  void
5808
pdf14_forward_device_procs(gx_device * dev)
5809
99.3k
{
5810
99.3k
    gx_device_forward *pdev = (gx_device_forward *)dev;
5811
99.3k
    pdf14_device *p14dev = (pdf14_device*)dev;
5812
5813
    /* If doing simulated overprint with spot colors
5814
       then makes sure to reset devn setting */
5815
99.3k
    if (p14dev->overprint_sim &&
5816
99.3k
        p14dev->color_info.num_components > 4)
5817
0
        p14dev->icc_struct->supports_devn =
5818
0
            p14dev->target_support_devn;
5819
5820
    /*
5821
     * We are using gx_device_forward_fill_in_procs to set the various procs.
5822
     * This will ensure that any new device procs are also set.  However that
5823
     * routine only changes procs which are NULL.  Thus we start by setting all
5824
     * procs to NULL.
5825
     */
5826
99.3k
    memset(&(pdev->procs), 0, size_of(pdev->procs));
5827
99.3k
    gx_device_forward_fill_in_procs(pdev);
5828
    /*
5829
     * gx_device_forward_fill_in_procs does not forward all procs.
5830
     * Set the remainding procs to also forward.
5831
     */
5832
99.3k
    set_dev_proc(dev, close_device, gx_forward_close_device);
5833
99.3k
    set_dev_proc(dev, fill_rectangle, gx_forward_fill_rectangle);
5834
99.3k
    set_dev_proc(dev, fill_rectangle_hl_color, gx_forward_fill_rectangle_hl_color);
5835
99.3k
    set_dev_proc(dev, copy_mono, gx_forward_copy_mono);
5836
99.3k
    set_dev_proc(dev, copy_color, gx_forward_copy_color);
5837
99.3k
    set_dev_proc(dev, get_page_device, gx_forward_get_page_device);
5838
99.3k
    set_dev_proc(dev, strip_tile_rectangle, gx_forward_strip_tile_rectangle);
5839
99.3k
    set_dev_proc(dev, copy_alpha, gx_forward_copy_alpha);
5840
99.3k
    set_dev_proc(dev, get_profile, gx_forward_get_profile);
5841
99.3k
    set_dev_proc(dev, set_graphics_type_tag, gx_forward_set_graphics_type_tag);
5842
    /* These are forwarding devices with minor tweaks. */
5843
99.3k
    set_dev_proc(dev, open_device, pdf14_forward_open_device);
5844
99.3k
    set_dev_proc(dev, put_params, pdf14_forward_put_params);
5845
99.3k
}
5846
5847
/*
5848
 * Disable the PDF 1.4 compositor device.  Once created, the PDF 1.4
5849
 * compositor device is never removed.  (We do not have a remove compositor
5850
 * method.)  However it is no-op'ed when the PDF 1.4 device is popped.  This
5851
 * routine implements that action.
5852
 */
5853
int
5854
pdf14_disable_device(gx_device * dev)
5855
98.6k
{
5856
98.6k
    gx_device_forward * pdev = (gx_device_forward *)dev;
5857
5858
98.6k
    if_debug0m('v', dev->memory, "[v]pdf14_disable_device\n");
5859
98.6k
    dev->color_info = pdev->target->color_info;
5860
98.6k
    pdf14_forward_device_procs(dev);
5861
98.6k
    set_dev_proc(dev, composite, pdf14_forward_composite);
5862
98.6k
    return 0;
5863
98.6k
}
5864
5865
/*
5866
 * The default color space for PDF 1.4 blend modes is based upon the process
5867
 * color model of the output device.
5868
 */
5869
static  pdf14_default_colorspace_t
5870
pdf14_determine_default_blend_cs(gx_device * pdev, bool use_pdf14_accum,
5871
                                 pdf14_blend_cs_t *blend_cs_state)
5872
238k
{
5873
    /* If a blend color space was specified, then go ahead and use that to
5874
       define the default color space for the blend modes.  Only Gray, RGB
5875
       or CMYK blend color spaces are allowed.  Note we do not allow this
5876
       setting if we are dealing with a separation device. */
5877
238k
    cmm_dev_profile_t *dev_profile;
5878
238k
    cmm_profile_t *blend_profile = NULL;
5879
238k
    pdf14_blend_cs_t temp_cs_state = PDF14_BLEND_CS_UNSPECIFIED;
5880
238k
    int code = dev_proc(pdev, get_profile)(pdev, &dev_profile);
5881
238k
    bool valid_blend_cs = false;
5882
238k
    int has_tags = device_encodes_tags(pdev);
5883
5884
238k
    *blend_cs_state = PDF14_BLEND_CS_UNSPECIFIED;
5885
5886
    /* Are we using a blend color space or the output intent color space? Also
5887
       is there a conflict in the settings. i.e. has someone set a blend color
5888
       space and tried to use the output intent with simulate overprint setting.
5889
    */
5890
238k
    if (dev_profile->overprint_control == gs_overprint_control_simulate &&
5891
238k
        dev_profile->oi_profile != NULL &&
5892
238k
        !gsicc_profiles_equal(dev_profile->oi_profile, dev_profile->device_profile[GS_DEFAULT_DEVICE_PROFILE])) {
5893
        /* If blend profile is also set, throw a warning about output intent not being used. We have
5894
           possible conflicting command line settings and we will err on using the blend profile
5895
           if one was specified. */
5896
0
        if (dev_profile->blend_profile != NULL &&
5897
0
            !gsicc_profiles_equal(dev_profile->blend_profile, dev_profile->oi_profile)) {
5898
0
            blend_profile = dev_profile->blend_profile;
5899
0
            temp_cs_state = PDF14_BLEND_CS_SPECIFIED;
5900
0
            emprintf(pdev->memory, "Warning: OI profile not used for blending CS\n");
5901
0
        } else {
5902
            /* All good, use the output intent profile as we have one
5903
               and are doing simulate overprint with a different device
5904
               profile set. */
5905
0
            blend_profile = dev_profile->oi_profile;
5906
0
            temp_cs_state = PDF14_BLEND_CS_OUTPUTINTENT;
5907
0
        }
5908
238k
    } else if (dev_profile->blend_profile != NULL &&
5909
238k
               !gsicc_profiles_equal(dev_profile->blend_profile, dev_profile->device_profile[GS_DEFAULT_DEVICE_PROFILE])) {
5910
        /* Blend profile is different than device profile */
5911
0
        blend_profile = dev_profile->blend_profile;
5912
0
        temp_cs_state = PDF14_BLEND_CS_SPECIFIED;
5913
0
    }
5914
5915
    /* Make sure any blend color space is valid along with other cond */
5916
238k
    if (code == 0 && blend_profile != NULL && !use_pdf14_accum) {
5917
0
        if (!blend_profile->isdevlink &&
5918
0
            !blend_profile->islab &&
5919
0
            (blend_profile->data_cs == gsGRAY ||
5920
0
             blend_profile->data_cs == gsRGB ||
5921
0
             blend_profile->data_cs == gsCMYK)) {
5922
            /* Also, do not allow the use of the blend space when we are pushing
5923
               a pattern pdf14 device.  Those should inherit from the parent */
5924
0
            if (!(gx_device_is_pattern_clist(pdev) ||
5925
0
                  gx_device_is_pattern_accum(pdev))) {
5926
0
                valid_blend_cs = true;
5927
0
            }
5928
0
        }
5929
0
    }
5930
5931
    /* If num components is one, just go ahead and use gray.  This avoids
5932
       issues with additive/subtractive mono color devices  */
5933
238k
    if (pdev->color_info.polarity == GX_CINFO_POLARITY_ADDITIVE ||
5934
238k
        pdev->color_info.num_components == 1) {
5935
        /*
5936
        * Note:  We do not allow the SeparationOrder device parameter for
5937
        * additive devices.  Thus we always have 1 colorant for DeviceGray
5938
        * and 3 colorants for DeviceRGB.
5939
        */
5940
69
        if (valid_blend_cs) {
5941
0
            *blend_cs_state = temp_cs_state;
5942
0
            switch (blend_profile->num_comps) {
5943
0
            case 1:
5944
0
                return PDF14_DeviceGray;
5945
0
            case 3:
5946
0
                return PDF14_DeviceRGB;
5947
0
            case 4:
5948
0
                return PDF14_DeviceCMYK;
5949
0
            }
5950
0
        }
5951
69
        if (pdev->color_info.num_components - has_tags == 1)
5952
0
            return PDF14_DeviceGray;
5953
69
        else if (pdev->color_info.num_components - has_tags == 3)
5954
69
            return PDF14_DeviceRGB;
5955
0
        else
5956
0
            return PDF14_DeviceRGBspot;
5957
238k
    } else {
5958
        /*
5959
         * Check if the device is CMYK only or CMYK plus spot colors. Note
5960
         * the CMYK plus spot colors will not support the blend color space
5961
         */
5962
238k
        int i, output_comp_num, num_cmyk_used = 0, num_cmyk = 0;
5963
#if CUSTOM_BLENDING_MODE == ALWAYS_USE_CUSTOM_BLENDING
5964
        return PDF14_DeviceCustom;
5965
#endif
5966
        /*
5967
         * Count the number of CMYK process components supported by the output
5968
         * device.
5969
         */
5970
1.19M
        for (i = 0; i < 4; i++) {
5971
955k
            const char * pcomp_name = (const char *)DeviceCMYKComponents[i];
5972
5973
955k
            output_comp_num = dev_proc(pdev, get_color_comp_index)
5974
955k
                (pdev, pcomp_name, strlen(pcomp_name), NO_COMP_NAME_TYPE_OP);
5975
955k
            if (output_comp_num >= 0) {
5976
955k
                num_cmyk++;
5977
955k
                if (output_comp_num != GX_DEVICE_COLOR_MAX_COMPONENTS)
5978
955k
                    num_cmyk_used++;
5979
955k
            }
5980
955k
        }
5981
        /*
5982
         * Check if the device supports only CMYK.  Otherewise we assume that
5983
         * the output device supports spot colors.  Note:  This algorithm can
5984
         * be fooled if the SeparationOrder device parameter is being used by
5985
         * the output device device to only select CMYK.
5986
         */
5987
238k
        if (num_cmyk_used == 4 && pdev->color_info.num_components == 4
5988
238k
            && pdev->color_info.max_components == 4) {
5989
0
            if (valid_blend_cs) {
5990
0
                *blend_cs_state = temp_cs_state;
5991
0
                switch (blend_profile->num_comps) {
5992
0
                case 1:
5993
0
                    return PDF14_DeviceGray;
5994
0
                case 3:
5995
0
                    return PDF14_DeviceRGB;
5996
0
                case 4:
5997
0
                    return PDF14_DeviceCMYK;
5998
0
                }
5999
0
            }
6000
0
            return PDF14_DeviceCMYK;
6001
0
        }
6002
        /*
6003
         * Check if we should use the 'custom' PDF 1.4 compositor device.
6004
         * This device is only needed for those devices which do not support
6005
         * a basic CMYK process color model.
6006
         */
6007
238k
#if CUSTOM_BLENDING_MODE == AUTO_USE_CUSTOM_BLENDING
6008
238k
        if (num_cmyk != 4)
6009
0
            return PDF14_DeviceCustom;
6010
238k
#endif
6011
        /*
6012
         * Otherewise we use a CMYK plus spot colors for blending.
6013
         */
6014
238k
        if (valid_blend_cs)
6015
0
            *blend_cs_state = temp_cs_state;
6016
238k
        return PDF14_DeviceCMYKspot;
6017
238k
    }
6018
238k
}
6019
6020
/*
6021
 * the PDF 1.4 transparency spec says that color space for blending
6022
 * operations can be based upon either a color space specified in the
6023
 * group or a default value based upon the output device.  We are
6024
 * currently only using a color space based upon the device.
6025
 */
6026
static  int
6027
get_pdf14_device_proto(gx_device       *dev,
6028
                       pdf14_device    *pdevproto,
6029
                       gs_gstate       *pgs,
6030
                 const gs_pdf14trans_t *pdf14pct,
6031
                       bool             use_pdf14_accum)
6032
99.4k
{
6033
99.4k
    pdf14_blend_cs_t blend_cs_state;
6034
99.4k
    pdf14_default_colorspace_t dev_cs =
6035
99.4k
                pdf14_determine_default_blend_cs(dev, use_pdf14_accum,
6036
99.4k
                                                 &blend_cs_state);
6037
99.4k
    bool deep = device_is_deep(dev);
6038
99.4k
    int num_spots = pdf14pct->params.num_spot_colors;
6039
6040
    /* overprint overide */
6041
99.4k
    if (pdf14pct->params.overprint_sim_push &&
6042
99.4k
        blend_cs_state == PDF14_BLEND_CS_UNSPECIFIED) {
6043
0
        if (pdf14pct->params.num_spot_colors_int > 0) {
6044
0
            dev_cs = PDF14_DeviceCMYKspot;
6045
0
            num_spots = pdf14pct->params.num_spot_colors_int;
6046
0
        } else
6047
0
            dev_cs = PDF14_DeviceCMYK;
6048
0
    }
6049
6050
99.4k
    switch (dev_cs) {
6051
0
        case PDF14_DeviceGray:
6052
0
            *pdevproto = gs_pdf14_Gray_device;
6053
0
            pdevproto->color_info.max_components = 1;
6054
0
            pdevproto->color_info.num_components =
6055
0
                                    pdevproto->color_info.max_components;
6056
0
            pdevproto->color_info.depth = 8<<deep;
6057
0
            pdevproto->color_info.max_gray = deep ? 65535 : 255;
6058
0
            pdevproto->color_info.gray_index = 0; /* Avoid halftoning */
6059
0
            pdevproto->color_info.dither_grays = deep ? 65536 : 256;
6060
0
            pdevproto->sep_device = false;
6061
0
            break;
6062
2
        case PDF14_DeviceRGB:
6063
2
            *pdevproto = gs_pdf14_RGB_device;
6064
2
            pdevproto->color_info.depth = 24<<deep;
6065
2
            pdevproto->color_info.max_gray = deep ? 65535 : 255;
6066
2
            pdevproto->color_info.dither_grays = deep ? 65536 : 256;
6067
2
            pdevproto->sep_device = false;
6068
2
            break;
6069
0
        case PDF14_DeviceCMYK:
6070
0
            *pdevproto = gs_pdf14_CMYK_device;
6071
0
            pdevproto->color_info.depth = 32<<deep;
6072
0
            pdevproto->color_info.max_gray = deep ? 65535 : 255;
6073
0
            pdevproto->color_info.dither_grays = deep ? 65536 : 256;
6074
0
            pdevproto->sep_device = false;
6075
0
            break;
6076
99.4k
        case PDF14_DeviceCMYKspot:
6077
99.4k
            *pdevproto = gs_pdf14_CMYKspot_device;
6078
            /* Need to figure out how we want to handle the device profile
6079
               for this case */
6080
            /*
6081
             * The number of components for the PDF14 device is the sum
6082
             * of the process components and the number of spot colors
6083
             * for the page.
6084
             */
6085
99.4k
            if (num_spots >= 0) {
6086
99.4k
                pdevproto->color_info.num_components =
6087
99.4k
                    pdevproto->devn_params.num_std_colorant_names + num_spots;
6088
99.4k
                if (pdevproto->color_info.num_components > GS_CLIENT_COLOR_MAX_COMPONENTS)
6089
0
                    pdevproto->color_info.num_components = GS_CLIENT_COLOR_MAX_COMPONENTS;
6090
99.4k
                pdevproto->color_info.depth =
6091
99.4k
                                    pdevproto->color_info.num_components * (8<<deep);
6092
99.4k
                pdevproto->sep_device = true;
6093
99.4k
            }
6094
99.4k
            break;
6095
0
        case PDF14_DeviceRGBspot:
6096
0
            *pdevproto = gs_pdf14_RGBspot_device;
6097
            /* Need to figure out how we want to handle the device profile
6098
               for this case */
6099
            /*
6100
             * The number of components for the PDF14 device is the sum
6101
             * of the process components and the number of spot colors
6102
             * for the page.
6103
             */
6104
0
            if (num_spots >= 0) {
6105
0
                pdevproto->color_info.num_components =
6106
0
                    pdevproto->devn_params.num_std_colorant_names + num_spots;
6107
0
                if (pdevproto->color_info.num_components > GS_CLIENT_COLOR_MAX_COMPONENTS)
6108
0
                    pdevproto->color_info.num_components = GS_CLIENT_COLOR_MAX_COMPONENTS;
6109
0
                pdevproto->color_info.depth =
6110
0
                    pdevproto->color_info.num_components * (8 << deep);
6111
0
                pdevproto->sep_device = true;
6112
0
            }
6113
0
            break;
6114
0
        case PDF14_DeviceCustom:
6115
            /*
6116
             * We are using the output device's process color model.  The
6117
             * color_info for the PDF 1.4 compositing device needs to match
6118
             * the output device.
6119
             */
6120
0
            *pdevproto = gs_pdf14_custom_device;
6121
0
            pdevproto->color_info = dev->color_info;
6122
            /* The pdf14 device has to be 8 (or 16) bit continuous tone. Force it */
6123
0
            pdevproto->color_info.depth =
6124
0
                       pdevproto->color_info.num_components * (8<<deep);
6125
0
            pdevproto->color_info.max_gray = deep ? 65535 : 255;
6126
0
            pdevproto->color_info.max_color = deep ? 65535 : 255;
6127
0
            pdevproto->color_info.dither_grays = deep ? 65536 : 256;
6128
0
            pdevproto->color_info.dither_colors = deep ? 65536 : 256;
6129
0
            break;
6130
0
        default:      /* Should not occur */
6131
0
            return_error(gs_error_rangecheck);
6132
99.4k
    }
6133
99.4k
    pdevproto->initialize_device_procs((gx_device *)pdevproto);
6134
99.4k
    pdevproto->blend_cs_state = blend_cs_state;
6135
99.4k
    pdevproto->overprint_sim = pdf14pct->params.overprint_sim_push;
6136
99.4k
    return 0;
6137
99.4k
}
6138
6139
/* When playing back the clist, we need to know if the buffer device is compatible */
6140
/* with the pdf14 compositor that was used when writing the clist. Colorspace and  */
6141
/* depth are critical since these must match when reading back colors.             */
6142
bool
6143
pdf14_ok_to_optimize(gx_device *dev)
6144
138k
{
6145
138k
    pdf14_blend_cs_t blend_cs_state;
6146
138k
    pdf14_default_colorspace_t pdf14_cs =
6147
138k
        pdf14_determine_default_blend_cs(dev, false, &blend_cs_state);
6148
138k
    gsicc_colorbuffer_t dev_icc_cs;
6149
138k
    bool ok = false;
6150
138k
    int tag_depth = device_encodes_tags(dev) ? 8 : 0;
6151
138k
    cmm_dev_profile_t *dev_profile;
6152
138k
    int code = dev_proc(dev, get_profile)(dev,  &dev_profile);
6153
138k
    bool deep = device_is_deep(dev);
6154
6155
138k
    if (code < 0)
6156
0
        return false;
6157
6158
138k
    check_device_compatible_encoding(dev);
6159
6160
138k
    if (dev->color_info.separable_and_linear != GX_CINFO_SEP_LIN_STANDARD)
6161
0
        return false;
6162
6163
138k
    dev_icc_cs = dev_profile->device_profile[GS_DEFAULT_DEVICE_PROFILE]->data_cs;
6164
    /* If the outputprofile is not "standard" then colors converted to device color */
6165
    /* during clist writing won't match the colors written for the pdf14 clist dev  */
6166
138k
    if (!(dev_icc_cs == gsGRAY || dev_icc_cs == gsRGB || dev_icc_cs == gsCMYK))
6167
0
        return false;                           /* can't handle funky output profiles */
6168
6169
138k
    switch (pdf14_cs) {
6170
0
        case PDF14_DeviceGray:
6171
0
            ok = dev->color_info.max_gray == (deep ? 65535 : 255) && dev->color_info.depth == (8<<deep) + tag_depth;
6172
0
            break;
6173
0
        case PDF14_DeviceRGB:
6174
0
            ok = dev->color_info.max_color == (deep ? 65535: 255) && dev->color_info.depth == (24<<deep) + tag_depth;
6175
0
            break;
6176
0
        case PDF14_DeviceCMYK:
6177
0
            ok = dev->color_info.max_color == (deep ? 65535 : 255) && dev->color_info.depth == (32<<deep) + tag_depth;
6178
0
            break;
6179
138k
        case PDF14_DeviceCMYKspot:
6180
138k
            ok = false;     /* punt for this case */
6181
138k
            break;
6182
0
        case PDF14_DeviceRGBspot:
6183
0
            ok = false;     /* punt for this case */
6184
0
            break;
6185
0
        case PDF14_DeviceCustom:
6186
            /*
6187
             * We are using the output device's process color model.  The
6188
             * color_info for the PDF 1.4 compositing device needs to match
6189
             * the output device, but it may not have been contone.
6190
             */
6191
0
            ok = dev->color_info.depth == dev->color_info.num_components * (8<<deep) + tag_depth;
6192
0
            break;
6193
0
        default:      /* Should not occur */
6194
0
            ok = false;
6195
138k
    }
6196
138k
    return ok;
6197
138k
}
6198
6199
/*
6200
 * Recreate the PDF 1.4 compositor device.  Once created, the PDF 1.4
6201
 * compositor device is never removed.  (We do not have a remove compositor
6202
 * method.)  However it is no-op'ed when the PDF 1.4 device is popped.  This
6203
 * routine will re-enable the compositor if the PDF 1.4 device is pushed
6204
 * again.
6205
 */
6206
static  int
6207
pdf14_recreate_device(gs_memory_t *mem, gs_gstate * pgs,
6208
                gx_device * dev, const gs_pdf14trans_t * pdf14pct)
6209
0
{
6210
0
    pdf14_device * pdev = (pdf14_device *)dev;
6211
0
    gx_device * target = pdev->target;
6212
0
    pdf14_device dev_proto;
6213
0
    bool has_tags = device_encodes_tags(dev);
6214
0
    int code;
6215
0
    bool deep = device_is_deep(dev);
6216
6217
0
    if_debug0m('v', dev->memory, "[v]pdf14_recreate_device\n");
6218
6219
    /*
6220
     * We will not use the entire prototype device but we will set the
6221
     * color related info and the device procs to match the prototype.
6222
     */
6223
0
    code = get_pdf14_device_proto(target, &dev_proto, pgs,
6224
0
                                  pdf14pct, false);
6225
0
    if (code < 0)
6226
0
        return code;
6227
0
    pdev->color_info = dev_proto.color_info;
6228
0
    pdev->pad = target->pad;
6229
0
    pdev->log2_align_mod = target->log2_align_mod;
6230
6231
    /* The prototype has the color setup without tags. If we are
6232
     * using tags, then we need to extend num_components and depth.
6233
     */
6234
0
    if (has_tags) {
6235
0
        pdev->color_info.num_components++;
6236
0
        pdev->color_info.depth = pdev->color_info.num_components * (deep ? 16 : 8);
6237
0
    }
6238
6239
0
    if (pdf14pct->params.overprint_sim_push && pdf14pct->params.num_spot_colors_int > 0 && target->num_planar_planes == 0)
6240
0
        pdev->num_planar_planes = dev->color_info.num_components + pdf14pct->params.num_spot_colors_int;
6241
0
    else
6242
0
        pdev->num_planar_planes = target->num_planar_planes;
6243
0
    pdev->interpolate_threshold = dev_proc(target, dev_spec_op)(target, gxdso_interpolate_threshold, NULL, 0);
6244
6245
0
    pdev->procs = dev_proto.procs;
6246
0
    if (deep) {
6247
0
        set_dev_proc(pdev, encode_color, pdf14_encode_color16);
6248
0
        set_dev_proc(pdev, decode_color, pdf14_decode_color16);
6249
0
    }
6250
0
    if (has_tags) {
6251
0
        set_dev_proc(pdev, encode_color, deep ? pdf14_encode_color16_tag : pdf14_encode_color_tag);
6252
0
    }
6253
0
    pdev->color_info.separable_and_linear = GX_CINFO_SEP_LIN_STANDARD;
6254
0
    gx_device_fill_in_procs((gx_device *)pdev);
6255
0
    pdev->save_get_cmap_procs = pgs->get_cmap_procs;
6256
0
    pgs->get_cmap_procs = pdf14_get_cmap_procs;
6257
0
    gx_set_cmap_procs(pgs, (gx_device *)pdev);
6258
0
    check_device_separable(dev);
6259
0
    return dev_proc(pdev, open_device)(dev);
6260
0
}
6261
6262
/*
6263
 * Implement the various operations that can be specified via the PDF 1.4
6264
 * create compositor request.
6265
 */
6266
static  int
6267
gx_update_pdf14_compositor(gx_device * pdev, gs_gstate * pgs,
6268
    const gs_pdf14trans_t * pdf14pct, gs_memory_t * mem )
6269
1.01M
{
6270
1.01M
    pdf14_device *p14dev = (pdf14_device *)pdev;
6271
1.01M
    gs_pdf14trans_params_t params = pdf14pct->params;
6272
1.01M
    int code = 0;
6273
6274
1.01M
    params.idle = pdf14pct->idle;
6275
1.01M
    switch (params.pdf14_op) {
6276
0
        default:      /* Should not occur. */
6277
0
            break;
6278
3.01k
        case PDF14_PUSH_DEVICE:
6279
3.01k
            if (!(params.is_pattern)) {
6280
0
                p14dev->blend_mode = 0;
6281
0
                p14dev->opacity = p14dev->shape = 0.0;
6282
0
                pdf14_recreate_device(mem, pgs, pdev, pdf14pct);
6283
0
            }
6284
3.01k
            break;
6285
0
        case PDF14_ABORT_DEVICE:
6286
            /* Something has gone very wrong.  Let transparency device clean up
6287
               what ever it has allocated and then we are shutting it down */
6288
0
            code = gx_abort_trans_device(pgs, pdev);
6289
0
            if (p14dev->free_devicen) {
6290
0
                devn_free_params(pdev);
6291
0
            }
6292
0
            pdf14_disable_device(pdev);
6293
0
            pdf14_close(pdev);
6294
0
            break;
6295
101k
        case PDF14_POP_DEVICE:
6296
101k
            if (!(params.is_pattern)) {
6297
98.6k
                if_debug0m('v', pdev->memory,
6298
98.6k
                           "[v]gx_update_pdf14_compositor(PDF14_POP_DEVICE)\n");
6299
98.6k
                pgs->get_cmap_procs = p14dev->save_get_cmap_procs;
6300
98.6k
                gx_set_cmap_procs(pgs, p14dev->target);
6301
                /* Send image out raster data to output device */
6302
98.6k
                {
6303
                    /* Make a copy so we can change the ROP */
6304
98.6k
                    gs_gstate new_pgs = *pgs;
6305
6306
                    /* We don't use the gs_gstate log_op since this is for the */
6307
                    /* clist playback. Putting the image (band in the case of the */
6308
                    /* clist) only needs to use the default ROP to copy the data  */
6309
98.6k
                    new_pgs.log_op = rop3_default;
6310
98.6k
                    code = p14dev->pdf14_procs->put_image(pdev, &new_pgs, p14dev->target);
6311
98.6k
                }
6312
                /* Before we disable the device release any deviceN structures.
6313
                    free_devicen is set if the pdf14 device had inherited its
6314
                    deviceN parameters from the target clist device.  In this
6315
                    case they should not be freed */
6316
98.6k
                if (p14dev->free_devicen) {
6317
98.3k
                    devn_free_params(pdev);
6318
98.3k
                }
6319
98.6k
                pdf14_disable_device(pdev);
6320
98.6k
                pdf14_close(pdev);
6321
98.6k
            }
6322
101k
            break;
6323
24.5k
        case PDF14_BEGIN_TRANS_PAGE_GROUP:
6324
120k
        case PDF14_BEGIN_TRANS_GROUP:
6325
120k
            if (p14dev->smask_constructed || p14dev->depth_within_smask)
6326
22.3k
                p14dev->depth_within_smask++;
6327
120k
            p14dev->smask_constructed = 0;
6328
120k
            code = gx_begin_transparency_group(pgs, pdev, &params);
6329
120k
            break;
6330
107k
        case PDF14_END_TRANS_GROUP:
6331
107k
            code = gx_end_transparency_group(pgs, pdev);
6332
107k
            if (p14dev->depth_within_smask)
6333
22.3k
                p14dev->depth_within_smask--;
6334
107k
            break;
6335
0
        case PDF14_BEGIN_TRANS_TEXT_GROUP:
6336
0
            if (p14dev->text_group == PDF14_TEXTGROUP_BT_PUSHED) {
6337
0
                p14dev->text_group = PDF14_TEXTGROUP_MISSING_ET;
6338
0
                emprintf(p14dev->memory, "Warning: Text group pushed but no ET found\n");
6339
0
            } else
6340
0
                p14dev->text_group = PDF14_TEXTGROUP_BT_NOT_PUSHED;
6341
0
            break;
6342
12.7k
        case PDF14_END_TRANS_TEXT_GROUP:
6343
12.7k
            if (p14dev->text_group == PDF14_TEXTGROUP_BT_PUSHED)
6344
12.7k
                code = gx_end_transparency_group(pgs, pdev);
6345
12.7k
            p14dev->text_group = PDF14_TEXTGROUP_NO_BT; /* Hit ET */
6346
12.7k
            break;
6347
152k
        case PDF14_BEGIN_TRANS_MASK:
6348
152k
            code = gx_begin_transparency_mask(pgs, pdev, &params);
6349
152k
            if (code >= 0 && params.subtype != TRANSPARENCY_MASK_None)
6350
29.9k
                p14dev->in_smask_construction++;
6351
152k
            break;
6352
29.9k
        case PDF14_END_TRANS_MASK:
6353
29.9k
            code = gx_end_transparency_mask(pgs, pdev, &params);
6354
29.9k
            if (code >= 0) {
6355
29.9k
                p14dev->in_smask_construction--;
6356
29.9k
                if (p14dev->in_smask_construction < 0)
6357
0
                    p14dev->in_smask_construction = 0;
6358
29.9k
                if (p14dev->in_smask_construction == 0)
6359
29.9k
                    p14dev->smask_constructed = 1;
6360
29.9k
            }
6361
29.9k
            break;
6362
357k
        case PDF14_SET_BLEND_PARAMS:
6363
357k
            pdf14_set_params(pgs, pdev, &pdf14pct->params);
6364
357k
            break;
6365
0
        case PDF14_PUSH_TRANS_STATE:
6366
0
            code = gx_push_transparency_state(pgs, pdev);
6367
0
            break;
6368
125k
        case PDF14_POP_TRANS_STATE:
6369
125k
            code = gx_pop_transparency_state(pgs, pdev);
6370
125k
            break;
6371
749
        case PDF14_PUSH_SMASK_COLOR:
6372
749
            code = pdf14_increment_smask_color(pgs, pdev);
6373
749
            break;
6374
749
        case PDF14_POP_SMASK_COLOR:
6375
749
            code = pdf14_decrement_smask_color(pgs, pdev);
6376
749
            break;
6377
1.01M
    }
6378
1.01M
    return code;
6379
1.01M
}
6380
6381
/*
6382
 * The PDF 1.4 compositor is never removed.  (We do not have a 'remove
6383
 * compositor' method.  However the compositor is disabled when we are not
6384
 * doing a page which uses PDF 1.4 transparency.  This routine is only active
6385
 * when the PDF 1.4 compositor is 'disabled'.  It checks for reenabling the
6386
 * PDF 1.4 compositor.  Otherwise it simply passes create compositor requests
6387
 * to the target.
6388
 */
6389
static  int
6390
pdf14_forward_composite(gx_device * dev, gx_device * * pcdev,
6391
        const gs_composite_t * pct, gs_gstate * pgs,
6392
        gs_memory_t * mem, gx_device *cdev)
6393
666
{
6394
666
    pdf14_device *pdev = (pdf14_device *)dev;
6395
666
    gx_device * tdev = pdev->target;
6396
666
    int code;
6397
6398
666
    *pcdev = dev;
6399
666
    if (gs_is_pdf14trans_compositor(pct)) {
6400
0
        const gs_pdf14trans_t * pdf14pct = (const gs_pdf14trans_t *) pct;
6401
6402
0
        if (pdf14pct->params.pdf14_op == PDF14_PUSH_DEVICE)
6403
0
            return gx_update_pdf14_compositor(dev, pgs, pdf14pct, mem);
6404
0
        return 0;
6405
0
    }
6406
666
    code = dev_proc(tdev, composite)(tdev, pcdev, pct, pgs, mem, cdev);
6407
666
    if (code == 1) {
6408
        /* We have created a new compositor that wrapped tdev. This means
6409
         * that our target should be updated to point to that. */
6410
0
        gx_device_set_target((gx_device_forward *)pdev, *pcdev);
6411
0
        code = 0; /* We have not created a new compositor that wrapped dev. */
6412
0
    }
6413
666
    return code;
6414
666
}
6415
6416
/*
6417
 * The PDF 1.4 compositor can be handled directly, so just set *pcdev = dev
6418
 * and return. Since the gs_pdf14_device only supports the high-level routines
6419
 * of the interface, don't bother trying to handle any other compositor.
6420
 */
6421
static int
6422
pdf14_composite(gx_device * dev, gx_device * * pcdev,
6423
        const gs_composite_t * pct, gs_gstate * pgs,
6424
        gs_memory_t * mem, gx_device *cdev)
6425
1.32M
{
6426
1.32M
    pdf14_device *p14dev = (pdf14_device *)dev;
6427
1.32M
    if (gs_is_pdf14trans_compositor(pct)) {
6428
1.01M
        const gs_pdf14trans_t * pdf14pct = (const gs_pdf14trans_t *) pct;
6429
1.01M
        *pcdev = dev;
6430
        /* cdev, may be the clist reader device which may contain information that
6431
           we will need related to the ICC color spaces that define transparency
6432
           groups.  We want this propogated through all the pdf14 functions.  Store
6433
           a pointer to it in the pdf14 device */
6434
1.01M
        p14dev->pclist_device = cdev;
6435
1.01M
        return gx_update_pdf14_compositor(dev, pgs, pdf14pct, mem);
6436
1.01M
    } else if (gs_is_overprint_compositor(pct)) {
6437
                /* If we had an overprint compositer action, then the
6438
                   color components that were drawn should be updated.
6439
                   The overprint compositor logic and its interactions
6440
                   with the clist is a little odd as it passes uninitialized
6441
                   values around a fair amount.  Hence the forced assignement here.
6442
                   See gx_spot_colors_set_overprint in gscspace for issues... */
6443
317k
                const gs_overprint_t * op_pct = (const gs_overprint_t *) pct;
6444
317k
                gx_color_index drawn_comps;
6445
317k
                PDF14_OP_FS_STATE curr_state = p14dev->op_state;
6446
6447
317k
                p14dev->op_state = op_pct->params.op_state;
6448
317k
                if (p14dev->op_state == PDF14_OP_STATE_NONE) {
6449
159k
                    if (op_pct->params.retain_any_comps) {
6450
40.4k
                        drawn_comps = op_pct->params.drawn_comps;
6451
118k
                    } else {
6452
                        /* Draw everything. If this parameter was not set, clist does
6453
                           not fill it in.  */
6454
118k
                        drawn_comps = ((gx_color_index)1 << (p14dev->color_info.num_components)) - (gx_color_index)1;
6455
118k
                    }
6456
6457
159k
                    if (op_pct->params.is_fill_color) {
6458
159k
                        p14dev->effective_overprint_mode = op_pct->params.effective_opm;
6459
159k
                        p14dev->drawn_comps_fill = drawn_comps;
6460
159k
                    } else {
6461
0
                        p14dev->stroke_effective_op_mode = op_pct->params.effective_opm;
6462
0
                        p14dev->drawn_comps_stroke = drawn_comps;
6463
0
                    }
6464
                    /* We restore the NONE states as that is used just to force
6465
                       overprint settings in the overprint compositor communication */
6466
159k
                    p14dev->op_state = curr_state;
6467
159k
                }
6468
317k
                *pcdev = dev;
6469
317k
                return 0;
6470
317k
    } else
6471
0
        return gx_no_composite(dev, pcdev, pct, pgs, mem, cdev);
6472
1.32M
}
6473
6474
static int
6475
pdf14_push_text_group(gx_device *dev, gs_gstate *pgs,
6476
                      gs_blend_mode_t blend_mode, float opacity,
6477
                      float shape, bool is_clist)
6478
67
{
6479
67
    int code;
6480
67
    gs_transparency_group_params_t params = { 0 };
6481
67
    gs_rect bbox = { 0 }; /* Bounding box is set by parent */
6482
67
    pdf14_clist_device * pdev = (pdf14_clist_device *)dev;
6483
67
    float alpha = pgs->fillconstantalpha;
6484
6485
    /* Push a non-isolated knock-out group making sure the opacity and blend
6486
       mode are correct */
6487
67
    params.Isolated = false;
6488
67
    params.Knockout = true;
6489
67
    params.page_group = false;
6490
67
    params.text_group = PDF14_TEXTGROUP_BT_PUSHED;
6491
67
    params.group_opacity = 1.0;
6492
67
    params.group_shape = 1.0;
6493
6494
67
    gs_setfillconstantalpha(pgs, 1.0);
6495
67
    gs_setblendmode(pgs, BLEND_MODE_Normal);
6496
6497
67
    if (is_clist) {
6498
67
        code = pdf14_clist_update_params(pdev, pgs, false, NULL);
6499
67
        if (code < 0)
6500
0
            return code;
6501
67
    }
6502
6503
67
    code = gs_begin_transparency_group(pgs, &params, &bbox, PDF14_BEGIN_TRANS_GROUP);
6504
67
    gs_setfillconstantalpha(pgs, alpha);
6505
67
    gs_setblendmode(pgs, blend_mode);
6506
67
    if (code < 0)
6507
0
        return code;
6508
6509
67
    if (is_clist) {
6510
67
        code = pdf14_clist_update_params(pdev, pgs, false, NULL);
6511
67
    }
6512
67
    return code;
6513
67
}
6514
6515
static  int
6516
pdf14_text_begin(gx_device * dev, gs_gstate * pgs,
6517
                 const gs_text_params_t * text, gs_font * font,
6518
                 const gx_clip_path * pcpath,
6519
                 gs_text_enum_t ** ppenum)
6520
0
{
6521
0
    int code;
6522
0
    gs_text_enum_t *penum;
6523
0
    gs_blend_mode_t blend_mode = gs_currentblendmode(pgs);
6524
0
    float opacity = pgs->fillconstantalpha;
6525
0
    float shape = 1.0;
6526
0
    bool blend_issue = !(blend_mode == BLEND_MODE_Normal || blend_mode == BLEND_MODE_Compatible || blend_mode == BLEND_MODE_CompatibleOverprint);
6527
0
    pdf14_device *pdev = (pdf14_device*)dev;
6528
0
    bool draw = !(text->operation & TEXT_DO_NONE);
6529
0
    uint text_mode = gs_currenttextrenderingmode(pgs);
6530
0
    bool text_stroke = (text_mode == 1 || text_mode == 2 || text_mode == 5 || text_mode == 6);
6531
0
    bool text_fill = (text_mode == 0 || text_mode == 2 || text_mode == 4 || text_mode == 6);
6532
6533
0
    code = pdf14_initialize_ctx(dev, pgs);
6534
0
    if (code < 0)
6535
0
        return code;
6536
6537
0
    if_debug0m('v', pgs->memory, "[v]pdf14_text_begin\n");
6538
0
    pdf14_set_marking_params(dev, pgs);
6539
0
    code = gx_default_text_begin(dev, pgs, text, font, pcpath, &penum);
6540
0
    if (code < 0)
6541
0
        return code;
6542
6543
    /* We may need to push a non-isolated transparency group if the following
6544
       is true.
6545
       1) We are not currently in one that we pushed for text and we are in
6546
          a BT/ET pair.  This is determined by looking at the pdf14 text_group.
6547
       2) The blend mode is not Normal or the opacity is not 1.0
6548
       3) Text knockout is set to true
6549
       4) We are actually doing a text drawing
6550
6551
       Special note:  If text-knockout is set to false while we are within a
6552
       BT ET pair, we should pop the group.  I need to create a test file for
6553
       this case.  */
6554
6555
       /* Catch case where we already pushed a group and are trying to push another one.
6556
       In that case, we will pop the current one first, as we don't want to be left
6557
       with it. Note that if we have a BT and no other BTs or ETs then this issue
6558
       will not be caught until we do the put_image and notice that the stack is not
6559
       empty. */
6560
0
    if (pdev->text_group == PDF14_TEXTGROUP_MISSING_ET) {
6561
0
        code = gs_end_transparency_group(pgs);
6562
0
        if (code < 0)
6563
0
            return code;
6564
0
        pdev->text_group = PDF14_TEXTGROUP_BT_NOT_PUSHED;
6565
0
    }
6566
6567
0
    if (gs_currenttextknockout(pgs) && (blend_issue ||
6568
0
         (pgs->fillconstantalpha != 1.0 && text_fill) ||
6569
0
         (pgs->strokeconstantalpha != 1.0 && text_stroke)) &&
6570
0
         text_mode != 3 && /* don't bother with invisible text */
6571
0
         pdev->text_group == PDF14_TEXTGROUP_BT_NOT_PUSHED)
6572
0
        if (draw) {
6573
0
            code = pdf14_push_text_group(dev, pgs, blend_mode, opacity, shape,
6574
0
                false);
6575
0
        }
6576
0
    *ppenum = (gs_text_enum_t *)penum;
6577
0
    return code;
6578
0
}
6579
6580
static  int
6581
pdf14_initialize_device(gx_device *new_dev)
6582
99.4k
{
6583
99.4k
    pdf14_device *pdev = (pdf14_device*)new_dev;
6584
6585
99.4k
    pdev->ctx = NULL;
6586
99.4k
    pdev->color_model_stack = NULL;
6587
99.4k
    pdev->smaskcolor = NULL;
6588
6589
99.4k
    return 0;
6590
99.4k
}
6591
6592
/*
6593
 * Implement copy_mono by filling lots of small rectangles.
6594
 */
6595
static int
6596
pdf14_copy_mono(gx_device * dev,
6597
               const byte * base, int sourcex, int sraster, gx_bitmap_id id,
6598
        int x, int y, int w, int h, gx_color_index zero, gx_color_index one)
6599
0
{
6600
0
    const byte *sptr;
6601
0
    const byte *line;
6602
0
    int sbit, first_bit;
6603
0
    int code, sbyte, bit, count;
6604
0
    int run_length, startx, current_bit, bit_value;
6605
0
    gx_color_index current_color;
6606
6607
0
    fit_copy(dev, base, sourcex, sraster, id, x, y, w, h);
6608
0
    line = base + (sourcex >> 3);
6609
0
    sbit = sourcex & 7;
6610
0
    first_bit = 7 - sbit;
6611
6612
    /* Loop through the height of the specified area. */
6613
0
    while (h-- > 0) {
6614
        /* Set up for the start of each line of the area. */
6615
0
        sptr = line;
6616
0
        sbyte = *sptr++;
6617
        /* The +1 here is 'sacrificial', we are going to decrement it by 1 immediately in
6618
         * the loop below so adding 1 means that we don't fall into the bit == 0
6619
         * case and incorrectly read a new byte from the source. This weirdness is because
6620
         * the original code wouold read off the end of the buffer if the number of bits in
6621
         * the raster was an exact multiple of 8. If it was also a multiple of the word
6622
         * size we might read unallocated memory. Moving the 'sbyte = *sptr++' from the end
6623
         * of the loop to the beginning meant we would not read past the end of the buffer
6624
         * because we would drop out of the 'do ... while (count-- > 0)' loop before
6625
         * reading another byte.
6626
         */
6627
0
        bit = first_bit + 1;
6628
0
        count = w;
6629
0
        run_length = 0;
6630
0
        startx = x;
6631
0
        current_bit = 0;
6632
0
        current_color = zero;
6633
6634
        /* Loop across each pixel of a line. */
6635
0
        do {
6636
            /* Move to the next input bit. */
6637
0
            if (bit == 0) {
6638
0
                bit = 7;
6639
0
                sbyte = *sptr++;
6640
0
            }
6641
0
            else
6642
0
                bit--;
6643
0
            bit_value = (sbyte >> bit) & 1;
6644
0
            if (bit_value == current_bit) {
6645
                /* The value did not change, simply increment our run length */
6646
0
                run_length++;
6647
0
            } else {
6648
                /* The value changed, fill the current rectangle. */
6649
0
                if (run_length != 0) {
6650
0
                    if (current_color != gx_no_color_index) {
6651
0
                        code = (*dev_proc(dev, fill_rectangle))
6652
0
                                (dev, startx, y, run_length, 1, current_color);
6653
0
                        if (code < 0)
6654
0
                            return code;
6655
0
                    }
6656
0
                    startx += run_length;
6657
0
                }
6658
0
                run_length = 1;
6659
0
                current_color = bit_value ? one : zero;
6660
0
                current_bit = bit_value;
6661
0
            }
6662
0
        } while (--count > 0);
6663
        /* Fill the last rectangle in the line. */
6664
0
        if (run_length != 0 && current_color != gx_no_color_index) {
6665
0
            code = (*dev_proc(dev, fill_rectangle))
6666
0
                        (dev, startx, y, run_length, 1, current_color);
6667
0
            if (code < 0)
6668
0
                return code;
6669
0
        }
6670
        /* Move to the next line */
6671
0
        line += sraster;
6672
0
        y++;
6673
0
    }
6674
0
    return 0;
6675
0
}
6676
6677
/* Added to avoid having to go back and forth between fixed and int
6678
   in some of the internal methods used for dealing with tiling
6679
   and devn colors */
6680
static int
6681
pdf14_fill_rectangle_devn(gx_device *dev, int x, int y, int w, int h,
6682
    const gx_drawing_color *pdcolor)
6683
962
{
6684
962
    pdf14_device *pdev = (pdf14_device *)dev;
6685
962
    pdf14_buf *buf;
6686
962
    int code;
6687
6688
962
    fit_fill_xywh(dev, x, y, w, h);
6689
962
    if (w <= 0 || h <= 0)
6690
0
        return 0;
6691
6692
962
    code = pdf14_initialize_ctx(dev, NULL);
6693
962
    if (code < 0)
6694
0
        return code;
6695
962
    buf = pdev->ctx->stack;
6696
6697
962
    if (buf->knockout)
6698
0
        return pdf14_mark_fill_rectangle_ko_simple(dev, x, y, w, h, 0, pdcolor,
6699
0
            true);
6700
962
    else
6701
962
        return pdf14_mark_fill_rectangle(dev, x, y, w, h, 0, pdcolor, true);
6702
962
}
6703
6704
/* Step through and do rect fills with the devn colors as
6705
   we hit each transition in the bitmap. It is possible
6706
   that one of the colors is not devn, but is pure and
6707
   is set to gx_no_color_index. This type of mix happens
6708
   for example from tile_clip_fill_rectangle_hl_color */
6709
static int
6710
pdf14_copy_mono_devn(gx_device *dev,
6711
    const byte *base, int sourcex, int sraster,
6712
    int x, int y, int w, int h, const gx_drawing_color *pdcolor0,
6713
    const gx_drawing_color *pdcolor1)
6714
248
{
6715
248
    const byte *sptr;
6716
248
    const byte *line;
6717
248
    int sbit, first_bit;
6718
248
    int code, sbyte, bit, count;
6719
248
    int run_length, startx, current_bit, bit_value;
6720
248
    const gx_drawing_color *current_color;
6721
6722
248
    if ((x | y) < 0) {
6723
0
        if (x < 0) {
6724
0
            w += x;
6725
0
            sourcex -= x;
6726
0
            x = 0;
6727
0
        }
6728
0
        if (y < 0) {
6729
0
            h += y;
6730
0
            base -= (int)(y * sraster);
6731
0
            y = 0;
6732
0
        }
6733
0
    }
6734
248
    if (w > (dev)->width - x)
6735
0
        w = (dev)->width - x;
6736
248
    if (h > (dev)->height - y)
6737
0
        h = (dev)->height - y;
6738
248
    if (w <= 0 || h <= 0)
6739
0
        return 0;
6740
6741
248
    line = base + (sourcex >> 3);
6742
248
    sbit = sourcex & 7;
6743
248
    first_bit = 7 - sbit;
6744
6745
    /* Loop through the height of the specified area. */
6746
815
    while (h-- > 0) {
6747
        /* Set up for the start of each line of the area. */
6748
567
        sptr = line;
6749
567
        sbyte = *sptr++;
6750
567
        bit = first_bit;
6751
567
        count = w;
6752
567
        run_length = 0;
6753
567
        startx = x;
6754
567
        current_bit = 0;
6755
567
        current_color = pdcolor0;
6756
6757
        /* Loop across each pixel of a line. */
6758
6.15k
        do {
6759
6.15k
            bit_value = (sbyte >> bit) & 1;
6760
6.15k
            if (bit_value == current_bit) {
6761
                /* The value did not change, simply increment our run length */
6762
4.47k
                run_length++;
6763
4.47k
            } else {
6764
                /* The value changed, fill the current rectangle. */
6765
1.67k
                if (run_length != 0) {
6766
1.51k
                    if (current_color->type != gx_dc_type_pure &&
6767
1.51k
                        current_color->colors.pure != gx_no_color_index) {
6768
717
                        code = pdf14_fill_rectangle_devn(dev, startx, y,
6769
717
                            run_length, 1, current_color);
6770
717
                        if (code < 0)
6771
0
                            return code;
6772
717
                    }
6773
1.51k
                    startx += run_length;
6774
1.51k
                }
6775
1.67k
                run_length = 1;
6776
1.67k
                current_color = bit_value ? pdcolor1 : pdcolor0;
6777
1.67k
                current_bit = bit_value;
6778
1.67k
            }
6779
6780
            /* Move to the next input bit. */
6781
6.15k
            if (bit == 0) {
6782
553
                bit = 7;
6783
553
                sbyte = *sptr++;
6784
553
            } else
6785
5.60k
                bit--;
6786
6.15k
        } while (--count > 0);
6787
6788
        /* Fill the last rectangle in the line. */
6789
567
        if (run_length != 0 && current_color->type != gx_dc_type_pure &&
6790
567
            current_color->colors.pure != gx_no_color_index) {
6791
245
            code = pdf14_fill_rectangle_devn(dev, startx, y,
6792
245
                run_length, 1, current_color);
6793
245
            if (code < 0)
6794
0
                return code;
6795
245
        }
6796
        /* Move to the next line */
6797
567
        line += sraster;
6798
567
        y++;
6799
567
    }
6800
248
    return 0;
6801
248
}
6802
6803
/* Step through the tiles doing essentially copy_mono but with devn colors */
6804
static int
6805
pdf14_impl_strip_tile_rectangle_devn(gx_device *dev, const gx_strip_bitmap *tiles,
6806
    int x, int y, int w, int h, const gx_drawing_color *pdcolor0,
6807
    const gx_drawing_color *pdcolor1, int px, int py)
6808
248
{   /* Fill the rectangle in chunks. */
6809
248
    int width = tiles->size.x;
6810
248
    int height = tiles->size.y;
6811
248
    int raster = tiles->raster;
6812
248
    int rwidth = tiles->rep_width;
6813
248
    int rheight = tiles->rep_height;
6814
248
    int shift = tiles->shift;
6815
6816
248
    if (rwidth == 0 || rheight == 0)
6817
0
        return_error(gs_error_unregistered);
6818
248
    fit_fill_xy(dev, x, y, w, h);
6819
6820
248
     {
6821
248
        int xoff = (shift == 0 ? px :
6822
248
                px + (y + py) / rheight * tiles->rep_shift);
6823
248
        int irx = ((rwidth & (rwidth - 1)) == 0 ? /* power of 2 */
6824
0
            (x + xoff) & (rwidth - 1) :
6825
248
            (x + xoff) % rwidth);
6826
248
        int ry = ((rheight & (rheight - 1)) == 0 ? /* power of 2 */
6827
0
            (y + py) & (rheight - 1) :
6828
248
            (y + py) % rheight);
6829
248
        int icw = width - irx;
6830
248
        int ch = height - ry;
6831
248
        byte *row = tiles->data + ry * raster;
6832
248
        int code = 0;
6833
6834
248
        if (ch >= h) {      /* Shallow operation */
6835
248
            if (icw >= w) { /* Just one (partial) tile to transfer. */
6836
248
                code = pdf14_copy_mono_devn(dev, row, irx, raster, x, y,
6837
248
                    w, h, pdcolor0, pdcolor1);
6838
248
                if (code < 0)
6839
0
                    return_error(code);
6840
248
            } else {
6841
0
                int ex = x + w;
6842
0
                int fex = ex - width;
6843
0
                int cx = x + icw;
6844
6845
0
                code = pdf14_copy_mono_devn(dev, row, irx, raster,
6846
0
                    x, y, icw, h, pdcolor0, pdcolor1);
6847
0
                if (code < 0)
6848
0
                    return_error(code);
6849
6850
0
                while (cx <= fex) {
6851
0
                    code = pdf14_copy_mono_devn(dev, row, 0, raster, cx, y,
6852
0
                        width, h, pdcolor0, pdcolor1);
6853
0
                    if (code < 0)
6854
0
                        return_error(code);
6855
0
                    cx += width;
6856
0
                }
6857
0
                if (cx < ex) {
6858
0
                    code = pdf14_copy_mono_devn(dev, row, 0, raster, cx, y,
6859
0
                        ex - cx, h, pdcolor0, pdcolor1);
6860
0
                    if (code < 0)
6861
0
                        return_error(code);
6862
0
                }
6863
0
            }
6864
248
        } else if (icw >= w && shift == 0) {
6865
            /* Narrow operation, no shift */
6866
0
            int ey = y + h;
6867
0
            int fey = ey - height;
6868
0
            int cy = y + ch;
6869
6870
0
            code = pdf14_copy_mono_devn(dev, row, irx, raster,
6871
0
                x, y, w, ch, pdcolor0, pdcolor1);
6872
0
            if (code < 0)
6873
0
                return_error(code);
6874
0
            row = tiles->data;
6875
0
            do {
6876
0
                ch = (cy > fey ? ey - cy : height);
6877
0
                code = pdf14_copy_mono_devn(dev, row, irx, raster,
6878
0
                    x, cy, w, ch, pdcolor0, pdcolor1);
6879
0
                if (code < 0)
6880
0
                    return_error(code);
6881
0
            } while ((cy += ch) < ey);
6882
0
        } else {
6883
            /* Full operation.  If shift != 0, some scan lines */
6884
            /* may be narrow.  We could test shift == 0 in advance */
6885
            /* and use a slightly faster loop, but right now */
6886
            /* we don't bother. */
6887
0
            int ex = x + w, ey = y + h;
6888
0
            int fex = ex - width, fey = ey - height;
6889
0
            int cx, cy;
6890
6891
0
            for (cy = y;;) {
6892
0
                if (icw >= w) {
6893
0
                    code = pdf14_copy_mono_devn(dev, row, irx, raster,
6894
0
                        x, cy, w, ch, pdcolor0, pdcolor1);
6895
0
                    if (code < 0)
6896
0
                        return_error(code);
6897
0
                } else {
6898
0
                    code = pdf14_copy_mono_devn(dev, row, irx, raster,
6899
0
                        x, cy, icw, ch, pdcolor0, pdcolor1);
6900
0
                    if (code < 0)
6901
0
                        return_error(code);
6902
0
                    cx = x + icw;
6903
0
                    while (cx <= fex) {
6904
0
                        code = pdf14_copy_mono_devn(dev, row, 0, raster,
6905
0
                            cx, cy, width, ch, pdcolor0, pdcolor1);
6906
0
                        if (code < 0)
6907
0
                            return_error(code);
6908
0
                        cx += width;
6909
0
                    }
6910
0
                    if (cx < ex) {
6911
0
                        code = pdf14_copy_mono_devn(dev, row, 0, raster,
6912
0
                            cx, cy, ex - cx, ch, pdcolor0, pdcolor1);
6913
0
                        if (code < 0)
6914
0
                            return_error(code);
6915
0
                    }
6916
0
                }
6917
0
                if ((cy += ch) >= ey)
6918
0
                    break;
6919
0
                ch = (cy > fey ? ey - cy : height);
6920
0
                if ((irx += shift) >= rwidth)
6921
0
                    irx -= rwidth;
6922
0
                icw = width - irx;
6923
0
                row = tiles->data;
6924
0
            }
6925
0
        }
6926
248
    }
6927
248
    return 0;
6928
248
}
6929
6930
/* pdf14 device supports devn */
6931
static int
6932
pdf14_strip_tile_rect_devn(gx_device *dev, const gx_strip_bitmap *tiles,
6933
    int x, int y, int w, int h,
6934
    const gx_drawing_color *pdcolor0,
6935
    const gx_drawing_color *pdcolor1, int px, int py)
6936
248
{
6937
248
    pdf14_device *pdev = (pdf14_device *)dev;
6938
248
    pdf14_buf *buf;
6939
248
    int num_comp;
6940
248
    int k;
6941
248
    bool same = false;
6942
248
    int code;
6943
6944
248
    code = pdf14_initialize_ctx(dev, NULL);
6945
248
    if (code < 0)
6946
0
        return code;
6947
248
    buf = pdev->ctx->stack;
6948
248
    num_comp = buf->n_chan - 1;
6949
6950
    /* if color0 is identical to color1, do rect fill */
6951
248
    if (pdcolor0->type == gx_dc_type_devn && pdcolor1->type == gx_dc_type_devn) {
6952
0
        same = true;
6953
0
        for (k = 0; k < num_comp; k++) {
6954
0
            if (pdcolor0->colors.devn.values[k] != pdcolor1->colors.devn.values[k]) {
6955
0
                same = false;
6956
0
                break;
6957
0
            }
6958
0
        }
6959
0
    }
6960
6961
248
    if (same) {
6962
0
        code = pdf14_fill_rectangle_devn(dev, x, y, w, h, pdcolor0);
6963
248
    } else {
6964
        /* Go through the tile stepping using code stolen from
6965
           gx_default_strip_tile_rectangle and call the rect fills
6966
           using code stolen from pdf14_copy_mono but using devn
6967
           colors */
6968
248
        code = pdf14_impl_strip_tile_rectangle_devn(dev, tiles,
6969
248
            x, y, w, h, pdcolor0, pdcolor1, px, py);
6970
248
    }
6971
248
    return code;
6972
248
}
6973
6974
/* Used in a few odd cases where the target device is planar and we have
6975
   a planar tile (pattern) and we are copying it into place here */
6976
static int
6977
pdf14_copy_planes(gx_device * dev, const byte * data, int data_x, int raster,
6978
                  gx_bitmap_id id, int x, int y, int w, int h, int plane_height)
6979
2.45k
{
6980
2.45k
    pdf14_device *pdev = (pdf14_device *)dev;
6981
2.45k
    pdf14_ctx *ctx;
6982
2.45k
    pdf14_buf *buf;
6983
2.45k
    int xo = x;
6984
2.45k
    int yo = y;
6985
2.45k
    pdf14_buf fake_tos;
6986
2.45k
    int deep;
6987
6988
2.45k
    int code = pdf14_initialize_ctx(dev, NULL);
6989
2.45k
    if (code < 0)
6990
0
        return code;
6991
6992
2.45k
    fit_fill_xywh(dev, x, y, w, h);
6993
2.45k
    if (w <= 0 || h <= 0)
6994
0
        return 0;
6995
6996
2.45k
    ctx = pdev->ctx;
6997
2.45k
    buf = ctx->stack;
6998
2.45k
    deep = ctx->deep;
6999
7000
2.45k
    fake_tos.deep = deep;
7001
2.45k
    fake_tos.alpha = (uint16_t)(0xffff * pdev->alpha + 0.5);
7002
2.45k
    fake_tos.backdrop = NULL;
7003
2.45k
    fake_tos.blend_mode = pdev->blend_mode;
7004
2.45k
    fake_tos.color_space = buf->color_space;
7005
2.45k
    fake_tos.data = (byte *)data + ((data_x - (x - xo))<<deep) - (y - yo) * raster; /* Nasty, cast away of const */
7006
2.45k
    fake_tos.dirty.p.x = x;
7007
2.45k
    fake_tos.dirty.p.y = y;
7008
2.45k
    fake_tos.dirty.q.x = x + w;
7009
2.45k
    fake_tos.dirty.q.y = y + h;
7010
2.45k
    fake_tos.has_alpha_g = 0;
7011
2.45k
    fake_tos.has_shape = 0;
7012
2.45k
    fake_tos.has_tags = 0;
7013
2.45k
    fake_tos.idle = false;
7014
2.45k
    fake_tos.isolated = false;
7015
2.45k
    fake_tos.knockout = false;
7016
2.45k
    fake_tos.mask_id = 0;
7017
2.45k
    fake_tos.mask_stack = NULL;
7018
2.45k
    fake_tos.matte = NULL;
7019
2.45k
    fake_tos.matte_num_comps = 0;
7020
2.45k
    fake_tos.memory = dev->memory;
7021
2.45k
    fake_tos.n_chan = dev->color_info.num_components;
7022
2.45k
    fake_tos.n_planes = dev->color_info.num_components;
7023
2.45k
    fake_tos.num_spots = 0;
7024
2.45k
    fake_tos.group_color_info = NULL;
7025
2.45k
    fake_tos.planestride = raster * plane_height;
7026
2.45k
    fake_tos.rect.p.x = x;
7027
2.45k
    fake_tos.rect.p.y = y;
7028
2.45k
    fake_tos.rect.q.x = x + w;
7029
2.45k
    fake_tos.rect.q.y = y + h;
7030
2.45k
    fake_tos.rowstride = raster;
7031
2.45k
    fake_tos.saved = NULL;
7032
2.45k
    fake_tos.shape = 0xffff;
7033
2.45k
    fake_tos.SMask_SubType = TRANSPARENCY_MASK_Alpha;
7034
2.45k
    fake_tos.transfer_fn = NULL;
7035
2.45k
    pdf14_compose_alphaless_group(&fake_tos, buf, x, x+w, y, y+h,
7036
2.45k
                                  pdev->ctx->memory, dev);
7037
2.45k
    return 0;
7038
2.45k
}
7039
7040
static int
7041
pdf14_fill_rectangle_hl_color(gx_device *dev, const gs_fixed_rect *rect,
7042
    const gs_gstate *pgs, const gx_drawing_color *pdcolor,
7043
    const gx_clip_path *pcpath)
7044
23.6M
{
7045
23.6M
    pdf14_device *pdev = (pdf14_device *)dev;
7046
23.6M
    pdf14_buf* buf;
7047
23.6M
    int code;
7048
23.6M
    int x = fixed2int(rect->p.x);
7049
23.6M
    int y = fixed2int(rect->p.y);
7050
23.6M
    int w = fixed2int(rect->q.x) - x;
7051
23.6M
    int h = fixed2int(rect->q.y) - y;
7052
7053
23.6M
    fit_fill_xywh(dev, x, y, w, h);
7054
23.6M
    if (w <= 0 || h <= 0)
7055
430k
        return 0;
7056
7057
23.2M
    code = pdf14_initialize_ctx(dev, pgs);
7058
23.2M
    if (code < 0)
7059
0
        return code;
7060
23.2M
    buf = pdev->ctx->stack;
7061
7062
23.2M
    if (buf->knockout)
7063
621k
        return pdf14_mark_fill_rectangle_ko_simple(dev, x, y, w, h, 0, pdcolor,
7064
621k
                                                   true);
7065
22.6M
    else
7066
22.6M
        return pdf14_mark_fill_rectangle(dev, x, y, w, h, 0, pdcolor, true);
7067
23.2M
}
7068
7069
static  int
7070
pdf14_fill_rectangle(gx_device * dev,
7071
                    int x, int y, int w, int h, gx_color_index color)
7072
0
{
7073
0
    pdf14_device *pdev = (pdf14_device *)dev;
7074
0
    pdf14_buf *buf;
7075
0
    int code;
7076
7077
0
    fit_fill_xywh(dev, x, y, w, h);
7078
0
    if (w <= 0 || h <= 0)
7079
0
        return 0;
7080
7081
0
    code = pdf14_initialize_ctx(dev, NULL);
7082
0
    if (code < 0)
7083
0
        return code;
7084
7085
0
    buf = pdev->ctx->stack;
7086
7087
0
    if (buf->knockout)
7088
0
        return pdf14_mark_fill_rectangle_ko_simple(dev, x, y, w, h, color, NULL,
7089
0
                                                   false);
7090
0
    else
7091
0
        return pdf14_mark_fill_rectangle(dev, x, y, w, h, color, NULL, false);
7092
0
}
7093
7094
static int
7095
pdf14_compute_group_device_int_rect(const gs_matrix *ctm,
7096
                                    const gs_rect *pbbox, gs_int_rect *rect)
7097
141k
{
7098
141k
    gs_rect dev_bbox;
7099
141k
    int code;
7100
7101
141k
    code = gs_bbox_transform(pbbox, ctm, &dev_bbox);
7102
141k
    if (code < 0)
7103
0
        return code;
7104
141k
    rect->p.x = (int)floor(dev_bbox.p.x);
7105
141k
    rect->p.y = (int)floor(dev_bbox.p.y);
7106
141k
    rect->q.x = (int)ceil(dev_bbox.q.x);
7107
141k
    rect->q.y = (int)ceil(dev_bbox.q.y);
7108
    /* Sanity check rect for insane ctms */
7109
141k
    if (rect->p.x < 0)
7110
40.0k
        rect->p.x = 0;
7111
141k
    if (rect->q.x < rect->p.x)
7112
60
        rect->q.x = rect->p.x;
7113
141k
    if (rect->p.y < 0)
7114
127k
        rect->p.y = 0;
7115
141k
    if (rect->q.y < rect->p.y)
7116
2.55k
        rect->q.y = rect->p.y;
7117
141k
    return 0;
7118
141k
}
7119
7120
static  int
7121
compute_group_device_int_rect(pdf14_device *pdev, gs_int_rect *rect,
7122
                              const gs_rect *pbbox, gs_gstate *pgs)
7123
137k
{
7124
137k
    int code = pdf14_compute_group_device_int_rect(&ctm_only(pgs), pbbox, rect);
7125
7126
137k
    if (code < 0)
7127
0
        return code;
7128
137k
    rect_intersect(*rect, pdev->ctx->rect);
7129
    /* Make sure the rectangle is not anomalous (q < p) -- see gsrect.h */
7130
137k
    if (rect->q.x < rect->p.x)
7131
84
        rect->q.x = rect->p.x;
7132
137k
    if (rect->q.y < rect->p.y)
7133
5.31k
        rect->q.y = rect->p.y;
7134
137k
    return 0;
7135
137k
}
7136
7137
static  int
7138
pdf14_begin_transparency_group(gx_device* dev,
7139
    const gs_transparency_group_params_t* ptgp,
7140
    const gs_rect* pbbox,
7141
    gs_gstate* pgs, gs_memory_t* mem)
7142
120k
{
7143
120k
    pdf14_device* pdev = (pdf14_device*)dev;
7144
120k
    float alpha = ptgp->group_opacity * ptgp->group_shape;
7145
120k
    gs_int_rect rect;
7146
120k
    int code;
7147
120k
    bool isolated = ptgp->Isolated;
7148
120k
    gs_transparency_color_t group_color_type;
7149
120k
    cmm_profile_t* group_profile;
7150
120k
    cmm_profile_t* tos_profile;
7151
120k
    gsicc_rendering_param_t render_cond;
7152
120k
    cmm_dev_profile_t* dev_profile;
7153
120k
    bool cm_back_drop = false;
7154
120k
    bool new_icc = false;
7155
120k
    pdf14_group_color_t* group_color_info;
7156
120k
    bool has_tags = device_encodes_tags(dev);
7157
7158
120k
    code = dev_proc(dev, get_profile)(dev, &dev_profile);
7159
120k
    if (code < 0)
7160
0
        return code;
7161
120k
    gsicc_extract_profile(GS_UNKNOWN_TAG, dev_profile, &tos_profile, &render_cond);
7162
7163
120k
    if (ptgp->text_group == PDF14_TEXTGROUP_BT_PUSHED) {
7164
12.7k
        pdev->text_group = PDF14_TEXTGROUP_BT_PUSHED;  /* For immediate mode and clist reading */
7165
12.7k
    }
7166
7167
120k
    if (ptgp->text_group == PDF14_TEXTGROUP_BT_PUSHED)
7168
12.7k
        rect = pdev->ctx->rect; /* Use parent group for text_group. */
7169
107k
    else
7170
107k
        code = compute_group_device_int_rect(pdev, &rect, pbbox, pgs);
7171
7172
120k
    if (code < 0)
7173
0
        return code;
7174
120k
    if_debug5m('v', pdev->memory,
7175
120k
        "[v]pdf14_begin_transparency_group, I = %d, K = %d, alpha = %g, bm = %d page_group = %d\n",
7176
120k
        ptgp->Isolated, ptgp->Knockout, (double)alpha, pgs->blend_mode, ptgp->page_group);
7177
7178
    /* If the group color is unknown then use the current device profile. */
7179
120k
    if (ptgp->group_color_type == UNKNOWN) {
7180
94.6k
        group_color_type = ICC;
7181
94.6k
        group_profile = tos_profile;
7182
94.6k
    }
7183
25.6k
    else {
7184
25.6k
        group_color_type = ptgp->group_color_type;
7185
25.6k
        group_profile = ptgp->iccprofile;
7186
25.6k
    }
7187
7188
    /* We have to handle case where the profile is in the clist */
7189
120k
    if (group_profile == NULL && pdev->pclist_device != NULL) {
7190
        /* Get the serialized data from the clist. */
7191
25.6k
        gx_device_clist_reader* pcrdev = (gx_device_clist_reader*)(pdev->pclist_device);
7192
25.6k
        group_profile = gsicc_read_serial_icc((gx_device*)pcrdev, ptgp->icc_hashcode);
7193
25.6k
        if (group_profile == NULL)
7194
0
            return gs_throw(gs_error_unknownerror, "ICC data not found in clist");
7195
        /* Keep a pointer to the clist device */
7196
25.6k
        group_profile->dev = (gx_device*)pcrdev;
7197
25.6k
        new_icc = true;
7198
25.6k
    }
7199
120k
    if (group_profile != NULL) {
7200
        /* If we have a non-isolated group and the color space is different,
7201
            we will need to CM the backdrop. */
7202
120k
        if (!gsicc_profiles_equal(group_profile, tos_profile)) {
7203
20.8k
            cm_back_drop = true;
7204
20.8k
        }
7205
120k
    }
7206
7207
    /* Always create the base color group information as it is only through
7208
       groups that we can have a color space change.  This will survive
7209
       the life of the context. */
7210
120k
    if (pdev->ctx->base_color == NULL) {
7211
31.0k
        pdev->ctx->base_color = pdf14_make_base_group_color(dev);
7212
31.0k
    }
7213
7214
    /* If this is not the page group and we don't yet have a group, we need
7215
       to create a buffer for the whole page so that we can handle stuff drawn
7216
       outside this current group (e.g. two non inclusive groups drawn independently) */
7217
120k
    if (pdev->ctx->stack == NULL && !ptgp->page_group) {
7218
2.42k
        code = pdf14_initialize_ctx(dev, NULL);
7219
2.42k
        if (code < 0)
7220
0
            return code;
7221
2.42k
        pdev->ctx->stack->isolated = true;
7222
2.42k
    }
7223
7224
120k
    group_color_info = pdf14_push_color_model(dev, group_color_type, ptgp->icc_hashcode,
7225
120k
        group_profile, false);
7226
120k
    if (group_color_info == NULL)
7227
0
        return gs_error_VMerror;
7228
120k
    if_debug0m('v', dev->memory, "[v]Transparency group color space update\n");
7229
7230
120k
    code = pdf14_push_transparency_group(pdev->ctx, &rect, isolated, ptgp->Knockout,
7231
120k
                                        (uint16_t)floor (65535 * alpha + 0.5),
7232
120k
                                        (uint16_t)floor(65535 * ptgp->group_shape + 0.5),
7233
120k
                                        (uint16_t)floor(65535 * ptgp->group_opacity + 0.5),
7234
120k
                                        pgs->blend_mode, ptgp->idle,
7235
120k
                                         ptgp->mask_id, pdev->color_info.num_components - has_tags,
7236
120k
                                         cm_back_drop, ptgp->shade_group,
7237
120k
                                         group_profile, tos_profile, group_color_info, pgs, dev);
7238
120k
    if (new_icc)
7239
25.6k
        gsicc_adjust_profile_rc(group_profile, -1, "pdf14_begin_transparency_group");
7240
120k
    return code;
7241
120k
}
7242
7243
static void
7244
pdf14_pop_color_model(gx_device* dev, pdf14_group_color_t* group_color)
7245
120k
{
7246
120k
    pdf14_device* pdev = (pdf14_device*)dev;
7247
7248
120k
    if (group_color != NULL &&
7249
120k
        !(group_color->group_color_mapping_procs == NULL &&
7250
120k
            group_color->group_color_comp_index == NULL)) {
7251
120k
        bool has_tags = device_encodes_tags(dev);
7252
120k
        set_dev_proc(pdev, get_color_mapping_procs, group_color->group_color_mapping_procs);
7253
120k
        set_dev_proc(pdev, get_color_comp_index, group_color->group_color_comp_index);
7254
120k
        pdev->color_info.polarity = group_color->polarity;
7255
120k
        if (pdev->num_planar_planes > 0)
7256
120k
            pdev->num_planar_planes += group_color->num_components - (pdev->color_info.num_components - has_tags);
7257
120k
        pdev->color_info.num_components = group_color->num_components + has_tags;
7258
120k
        assert(pdev->num_planar_planes == 0 || pdev->num_planar_planes == pdev->color_info.num_components);
7259
120k
        assert(pdev->color_info.num_components - has_tags == group_color->num_components);
7260
120k
        pdev->blend_procs = group_color->blend_procs;
7261
120k
        pdev->ctx->additive = group_color->isadditive;
7262
120k
        pdev->pdf14_procs = group_color->unpack_procs;
7263
120k
        pdev->color_info.opmsupported = GX_CINFO_OPMSUPPORTED_UNKNOWN;
7264
120k
        pdev->color_info.depth = group_color->depth;
7265
120k
        pdev->color_info.max_color = group_color->max_color;
7266
120k
        pdev->color_info.max_gray = group_color->max_gray;
7267
120k
        memcpy(&(pdev->color_info.comp_bits), &(group_color->comp_bits),
7268
120k
            GX_DEVICE_COLOR_MAX_COMPONENTS);
7269
120k
        memcpy(&(pdev->color_info.comp_shift), &(group_color->comp_shift),
7270
120k
            GX_DEVICE_COLOR_MAX_COMPONENTS);
7271
120k
        if (group_color->icc_profile != NULL) {
7272
            /* make sure to decrement the device profile.  If it was allocated
7273
               with the push then it will be freed. */
7274
120k
            gsicc_adjust_profile_rc(pdev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE],
7275
120k
                                    -1, "pdf14_pop_color_model");
7276
120k
            pdev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE] =
7277
120k
                                    group_color->icc_profile;
7278
7279
120k
            gsicc_adjust_profile_rc(pdev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE],
7280
120k
                                    1, "pdf14_pop_color_model");
7281
120k
        }
7282
120k
        pdev->num_std_colorants = group_color->num_std_colorants;
7283
120k
    }
7284
120k
}
7285
7286
static  int
7287
pdf14_end_transparency_group(gx_device* dev, gs_gstate* pgs)
7288
120k
{
7289
120k
    pdf14_device* pdev = (pdf14_device*)dev;
7290
120k
    int code;
7291
120k
    cmm_profile_t* group_profile;
7292
120k
    gsicc_rendering_param_t render_cond;
7293
120k
    cmm_dev_profile_t* dev_profile;
7294
120k
    int has_tags = device_encodes_tags(dev);
7295
7296
120k
    code = dev_proc(dev, get_profile)(dev, &dev_profile);
7297
120k
    if (code < 0)
7298
0
        return code;
7299
7300
120k
    gsicc_extract_profile(GS_UNKNOWN_TAG, dev_profile, &group_profile,
7301
120k
        &render_cond);
7302
120k
    if_debug0m('v', dev->memory, "[v]pdf14_end_transparency_group\n");
7303
7304
120k
    code = pdf14_pop_transparency_group(pgs, pdev->ctx, pdev->blend_procs,
7305
120k
        pdev->color_info.num_components - has_tags, group_profile, (gx_device*)pdev);
7306
120k
    if (code < 0)
7307
0
        return code;
7308
#ifdef DEBUG
7309
    pdf14_debug_mask_stack_state(pdev->ctx);
7310
#endif
7311
    /* If this group is the base group, then restore the color model
7312
       of the device at this time.  Note that during the actual device pop
7313
       we will need to use the profile of the buffer not the pdf14 device
7314
       as the source color space */
7315
120k
    if (pdev->ctx->stack->group_popped) {
7316
24.5k
        pdf14_pop_color_model(dev, pdev->ctx->base_color);
7317
95.7k
    } else {
7318
95.7k
        pdf14_pop_color_model(dev, pdev->ctx->stack->group_color_info);
7319
95.7k
    }
7320
7321
120k
    return code;
7322
120k
}
7323
7324
static pdf14_group_color_t*
7325
pdf14_push_color_model(gx_device *dev, gs_transparency_color_t group_color_type,
7326
                        int64_t icc_hashcode, cmm_profile_t *iccprofile,
7327
                        bool is_mask)
7328
150k
{
7329
150k
    pdf14_device *pdevproto = NULL;
7330
150k
    pdf14_device *pdev = (pdf14_device *)dev;
7331
150k
    const pdf14_procs_t *new_14procs = NULL;
7332
150k
    pdf14_group_color_t *group_color;
7333
150k
    gx_color_polarity_t new_polarity;
7334
150k
    uchar new_num_comps;
7335
150k
    bool new_additive;
7336
150k
    gx_device_clist_reader *pcrdev;
7337
150k
    byte comp_bits[GX_DEVICE_COLOR_MAX_COMPONENTS];
7338
150k
    byte comp_shift[GX_DEVICE_COLOR_MAX_COMPONENTS];
7339
150k
    int k;
7340
150k
    bool has_tags = device_encodes_tags(dev);
7341
150k
    bool deep = pdev->ctx->deep;
7342
7343
150k
    if_debug0m('v', dev->memory, "[v]pdf14_push_color_model\n");
7344
7345
150k
    group_color = gs_alloc_struct(dev->memory->stable_memory,
7346
150k
                               pdf14_group_color_t, &st_pdf14_clr,
7347
150k
                               "pdf14_push_color_model");
7348
150k
    if (group_color == NULL)
7349
0
        return NULL;
7350
7351
150k
    memset(group_color, 0, sizeof(pdf14_group_color_t));
7352
7353
150k
    switch (group_color_type) {
7354
0
        case GRAY_SCALE:
7355
0
            new_polarity = GX_CINFO_POLARITY_ADDITIVE;
7356
0
            new_num_comps = 1;
7357
0
            pdevproto = (pdf14_device *)&gs_pdf14_Gray_device;
7358
0
            new_additive = true;
7359
0
            new_14procs = &gray_pdf14_procs;
7360
0
            break;
7361
0
        case DEVICE_RGB:
7362
0
        case CIE_XYZ:
7363
0
            new_polarity = GX_CINFO_POLARITY_ADDITIVE;
7364
0
            new_num_comps = 3;
7365
0
            pdevproto = (pdf14_device *)&gs_pdf14_RGB_device;
7366
0
            new_additive = true;
7367
0
            new_14procs = &rgb_pdf14_procs;
7368
0
            break;
7369
0
        case DEVICE_CMYK:
7370
0
            new_polarity = GX_CINFO_POLARITY_SUBTRACTIVE;
7371
0
            new_num_comps = 4;
7372
0
            pdevproto = (pdf14_device *)&gs_pdf14_CMYK_device;
7373
0
            new_additive = false;
7374
            /* This is needed due to the mismatched compressed encode decode
7375
                between the device procs and the pdf14 procs */
7376
0
            if (dev->color_info.num_components > 4){
7377
0
                new_14procs = &cmykspot_pdf14_procs;
7378
0
            } else {
7379
0
                new_14procs = &cmyk_pdf14_procs;
7380
0
            }
7381
0
            break;
7382
150k
        case ICC:
7383
            /* If we are coming from the clist reader, then we need to get
7384
                the ICC data now  */
7385
150k
            if (iccprofile == NULL && pdev->pclist_device != NULL) {
7386
                /* Get the serialized data from the clist.  Not the whole
7387
                    profile. */
7388
29.2k
                pcrdev = (gx_device_clist_reader *)(pdev->pclist_device);
7389
29.2k
                iccprofile = gsicc_read_serial_icc((gx_device *) pcrdev,
7390
29.2k
                                                    icc_hashcode);
7391
29.2k
                if (iccprofile == NULL)
7392
0
                    return NULL;
7393
                /* Keep a pointer to the clist device */
7394
29.2k
                iccprofile->dev = (gx_device *) pcrdev;
7395
121k
            } else {
7396
                /* Go ahead and rc increment right now.  This way when
7397
                    we pop, we will make sure to decrement and avoid a
7398
                    leak for the above profile that we just created.  This
7399
                    goes with the assignment to the device's profile.
7400
                    Note that we still do the increment for the group_color
7401
                    assignment below. */
7402
121k
                if (iccprofile == NULL)
7403
0
                    return NULL;
7404
121k
                gsicc_adjust_profile_rc(iccprofile, 1, "pdf14_push_color_model");
7405
121k
            }
7406
150k
            new_num_comps = iccprofile->num_comps;
7407
150k
            if (new_num_comps == 4) {
7408
58.4k
                new_additive = false;
7409
58.4k
                new_polarity = GX_CINFO_POLARITY_SUBTRACTIVE;
7410
91.7k
            } else {
7411
91.7k
                new_additive = true;
7412
91.7k
                new_polarity = GX_CINFO_POLARITY_ADDITIVE;
7413
91.7k
            }
7414
150k
            switch (new_num_comps) {
7415
29.9k
                case 1:
7416
29.9k
                    if (pdev->sep_device && !is_mask) {
7417
0
                        pdevproto = (pdf14_device *)&gs_pdf14_Grayspot_device;
7418
0
                        new_14procs = &grayspot_pdf14_procs;
7419
29.9k
                    } else {
7420
29.9k
                        pdevproto = (pdf14_device *)&gs_pdf14_Gray_device;
7421
29.9k
                        new_14procs = &gray_pdf14_procs;
7422
29.9k
                    }
7423
29.9k
                    break;
7424
61.7k
                case 3:
7425
61.7k
                    if (pdev->sep_device) {
7426
61.7k
                        pdevproto = (pdf14_device *)&gs_pdf14_RGBspot_device;
7427
61.7k
                        new_14procs = &rgbspot_pdf14_procs;
7428
61.7k
                    }
7429
2
                    else {
7430
2
                        pdevproto = (pdf14_device *)&gs_pdf14_RGB_device;
7431
2
                        new_14procs = &rgb_pdf14_procs;
7432
2
                    }
7433
61.7k
                    break;
7434
58.4k
                case 4:
7435
58.4k
                    if (pdev->sep_device) {
7436
58.4k
                        pdevproto = (pdf14_device *)&gs_pdf14_CMYKspot_device;
7437
58.4k
                        new_14procs = &cmykspot_pdf14_procs;
7438
58.4k
                    } else {
7439
0
                        pdevproto = (pdf14_device *)&gs_pdf14_CMYK_device;
7440
0
                        new_14procs = &cmyk_pdf14_procs;
7441
0
                    }
7442
58.4k
                    break;
7443
0
                default:
7444
0
                    return NULL;
7445
0
                    break;
7446
150k
            }
7447
150k
            break;
7448
150k
        default:
7449
0
            return NULL;
7450
0
            break;
7451
150k
    }
7452
7453
    /* We might just have changed the colorspace of the device, which means
7454
     * the number of colorants have changed. */
7455
150k
    group_color->num_std_colorants = new_num_comps;
7456
150k
    pdev->num_std_colorants = new_num_comps;
7457
7458
150k
    if (has_tags)
7459
0
        new_num_comps++;
7460
7461
150k
    if (group_color_type == ICC && iccprofile != NULL) {
7462
150k
        group_color->icc_profile = iccprofile;
7463
150k
        gsicc_adjust_profile_rc(iccprofile, 1, "pdf14_push_color_model");
7464
150k
    }
7465
7466
    /* If we are a sep device and this is not a softmask, ensure we maintain the
7467
       spot colorants and know how to index into them */
7468
150k
    if (pdev->sep_device && !is_mask) {
7469
120k
        int num_spots = dev->color_info.num_components - has_tags -
7470
120k
            dev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE]->num_comps;
7471
7472
120k
        if (num_spots > 0)
7473
307
            new_num_comps += num_spots;
7474
120k
    }
7475
    /* Calculate the bits and shifts *after* we have allowed for tags. */
7476
599k
    for (k = 0; k < new_num_comps; k++) {
7477
449k
        comp_bits[k] = 8<<deep;
7478
449k
        comp_shift[k] = (new_num_comps - k - 1) * (8<<deep);
7479
449k
    }
7480
7481
    /* Set device values now and store settings in group_color.  Then they
7482
       are available when we pop the previous group */
7483
150k
    if_debug2m('v', pdev->memory,
7484
150k
                "[v]pdf14_push_color_model, num_components_old = %d num_components_new = %d\n",
7485
150k
                pdev->color_info.num_components,new_num_comps);
7486
150k
    {
7487
150k
        gx_device local_device;
7488
7489
150k
        local_device.initialize_device_procs = pdevproto->initialize_device_procs;
7490
150k
        local_device.initialize_device_procs((gx_device *)&local_device);
7491
150k
        set_dev_proc(pdev, get_color_mapping_procs, local_device.procs.get_color_mapping_procs);
7492
150k
        set_dev_proc(pdev, get_color_comp_index, local_device.procs.get_color_comp_index);
7493
150k
    }
7494
150k
    group_color->blend_procs = pdev->blend_procs = pdevproto->blend_procs;
7495
150k
    group_color->polarity = pdev->color_info.polarity = new_polarity;
7496
150k
    group_color->isadditive = pdev->ctx->additive = new_additive;
7497
150k
    pdev->color_info.opmsupported = GX_CINFO_OPMSUPPORTED_UNKNOWN;
7498
150k
    group_color->unpack_procs = pdev->pdf14_procs = new_14procs;
7499
150k
    if (pdev->num_planar_planes > 0)
7500
150k
        pdev->num_planar_planes += new_num_comps - pdev->color_info.num_components;
7501
150k
    group_color->num_components = new_num_comps - has_tags;
7502
150k
    pdev->color_info.num_components = new_num_comps;
7503
150k
    assert(pdev->num_planar_planes == 0 || pdev->num_planar_planes == pdev->color_info.num_components);
7504
150k
    assert(pdev->color_info.num_components - has_tags == group_color->num_components);
7505
150k
    pdev->color_info.depth = new_num_comps * (8<<deep);
7506
150k
    memset(&(pdev->color_info.comp_bits), 0, GX_DEVICE_COLOR_MAX_COMPONENTS);
7507
150k
    memset(&(pdev->color_info.comp_shift), 0, GX_DEVICE_COLOR_MAX_COMPONENTS);
7508
150k
    memcpy(&(pdev->color_info.comp_bits), comp_bits, new_num_comps);
7509
150k
    memcpy(&(pdev->color_info.comp_shift), comp_shift, new_num_comps);
7510
150k
    group_color->max_color = pdev->color_info.max_color = deep ? 65535 : 255;
7511
150k
    group_color->max_gray = pdev->color_info.max_gray = deep ? 65535 : 255;
7512
150k
    group_color->depth = pdev->color_info.depth;
7513
150k
    group_color->decode = dev_proc(pdev, decode_color);
7514
150k
    group_color->encode = dev_proc(pdev, encode_color);
7515
150k
    group_color->group_color_mapping_procs = dev_proc(pdev, get_color_mapping_procs);
7516
150k
    group_color->group_color_comp_index = dev_proc(pdev, get_color_comp_index);
7517
150k
    memcpy(&(group_color->comp_bits), &(pdev->color_info.comp_bits),
7518
150k
        GX_DEVICE_COLOR_MAX_COMPONENTS);
7519
150k
    memcpy(&(group_color->comp_shift), &(pdev->color_info.comp_shift),
7520
150k
        GX_DEVICE_COLOR_MAX_COMPONENTS);
7521
150k
    group_color->get_cmap_procs = pdf14_get_cmap_procs;
7522
7523
    /* If the CS was ICC based, we need to update the device ICC profile
7524
        in the ICC manager, since that is the profile that is used for the
7525
        PDF14 device */
7526
150k
    if (group_color_type == ICC && iccprofile != NULL) {
7527
        /* iccprofile was incremented above if we had not just created it.
7528
           When we do the pop we will decrement and if we just created it, it
7529
           will be destroyed */
7530
150k
        gsicc_adjust_profile_rc(dev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE], -1, "pdf14_push_color_model");
7531
150k
        dev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE] = iccprofile;
7532
150k
    }
7533
150k
    return group_color;
7534
150k
}
7535
7536
static int
7537
pdf14_clist_push_color_model(gx_device *dev, gx_device* cdev, gs_gstate *pgs,
7538
                             const gs_pdf14trans_t *pdf14pct, gs_memory_t* mem,
7539
                             bool is_mask)
7540
3.06k
{
7541
3.06k
    pdf14_device* pdev = (pdf14_device*)dev;
7542
3.06k
    pdf14_group_color_t* new_group_color;
7543
3.06k
    gsicc_rendering_param_t render_cond;
7544
3.06k
    cmm_dev_profile_t* dev_profile;
7545
3.06k
    pdf14_device* pdevproto;
7546
3.06k
    gx_device_clist_writer* cldev = (gx_device_clist_writer*)pdev->pclist_device;
7547
3.06k
    const pdf14_procs_t* new_14procs;
7548
3.06k
    bool update_color_info;
7549
3.06k
    gx_color_polarity_t new_polarity;
7550
3.06k
    int new_num_comps;
7551
3.06k
    bool new_additive = false;
7552
3.06k
    byte new_depth;
7553
3.06k
    byte comp_bits[GX_DEVICE_COLOR_MAX_COMPONENTS];
7554
3.06k
    byte comp_shift[GX_DEVICE_COLOR_MAX_COMPONENTS];
7555
3.06k
    int k;
7556
3.06k
    bool has_tags = device_encodes_tags(dev);
7557
3.06k
    bool deep = device_is_deep(dev);
7558
3.06k
    gs_transparency_color_t group_color_type = pdf14pct->params.group_color_type;
7559
3.06k
    cmm_profile_t *new_profile = pdf14pct->params.iccprofile;
7560
3.06k
    cmm_profile_t *old_profile = NULL;
7561
7562
3.06k
    dev_proc(dev, get_profile)(dev, &dev_profile);
7563
3.06k
    gsicc_extract_profile(GS_UNKNOWN_TAG, dev_profile, &old_profile,
7564
3.06k
        &render_cond);
7565
3.06k
    if_debug0m('v', dev->memory, "[v]pdf14_clist_push_color_model\n");
7566
7567
    /* Allocate a new one */
7568
3.06k
    new_group_color = gs_alloc_struct(dev->memory->stable_memory, pdf14_group_color_t,
7569
3.06k
        &st_pdf14_clr, "pdf14_clist_push_color_model");
7570
7571
3.06k
    if (new_group_color == NULL)
7572
0
        return_error(gs_error_VMerror);
7573
7574
    /* Link to old one */
7575
3.06k
    new_group_color->previous = pdev->color_model_stack;
7576
7577
    /* Reassign new one to dev */
7578
3.06k
    pdev->color_model_stack = new_group_color;
7579
7580
    /* Initialize with values */
7581
3.06k
    new_group_color->get_cmap_procs = pgs->get_cmap_procs;
7582
3.06k
    new_group_color->group_color_mapping_procs =
7583
3.06k
        dev_proc(pdev, get_color_mapping_procs);
7584
3.06k
    new_group_color->group_color_comp_index =
7585
3.06k
        dev_proc(pdev, get_color_comp_index);
7586
3.06k
    new_group_color->blend_procs = pdev->blend_procs;
7587
3.06k
    new_group_color->polarity = pdev->color_info.polarity;
7588
3.06k
    new_group_color->num_components = pdev->color_info.num_components - has_tags;
7589
3.06k
    new_group_color->unpack_procs = pdev->pdf14_procs;
7590
3.06k
    new_group_color->depth = pdev->color_info.depth;
7591
3.06k
    new_group_color->max_color = pdev->color_info.max_color;
7592
3.06k
    new_group_color->max_gray = pdev->color_info.max_gray;
7593
3.06k
    new_group_color->decode = dev_proc(pdev, decode_color);
7594
3.06k
    new_group_color->encode = dev_proc(pdev, encode_color);
7595
3.06k
    memcpy(&(new_group_color->comp_bits), &(pdev->color_info.comp_bits),
7596
3.06k
        GX_DEVICE_COLOR_MAX_COMPONENTS);
7597
3.06k
    memcpy(&(new_group_color->comp_shift), &(pdev->color_info.comp_shift),
7598
3.06k
        GX_DEVICE_COLOR_MAX_COMPONENTS);
7599
7600
3.06k
    if (new_profile == NULL)
7601
1.84k
        new_group_color->icc_profile = NULL;
7602
7603
    /* isadditive is only used in ctx */
7604
3.06k
    if (pdev->ctx) {
7605
0
        new_group_color->isadditive = pdev->ctx->additive;
7606
0
    }
7607
7608
3.06k
    memset(comp_bits, 0, GX_DEVICE_COLOR_MAX_COMPONENTS);
7609
3.06k
    memset(comp_shift, 0, GX_DEVICE_COLOR_MAX_COMPONENTS);
7610
7611
3.06k
    if (group_color_type == ICC && new_profile == NULL)
7612
0
        return gs_throw(gs_error_undefinedresult, "Missing ICC data");
7613
3.06k
    if_debug0m('v', cldev->memory, "[v]pdf14_clist_push_color_model\n");
7614
    /* Check if we need to alter the device procs at this stage.  Many of the procs
7615
       are based upon the color space of the device.  We want to remain in the
7616
       color space defined by the color space of the soft mask or transparency
7617
       group as opposed to the device color space. Later, when we pop the softmask
7618
       we will collapse it to a single band and then compose with it to the device
7619
       color space (or the parent layer space).  In the case where we pop an
7620
       isolated transparency group, we will do the blending in the proper color
7621
       space and then transform the data when we pop the group.  Remember that only
7622
       isolated groups can have color spaces that are different than their parent. */
7623
3.06k
    update_color_info = false;
7624
3.06k
    switch (group_color_type) {
7625
0
    case GRAY_SCALE:
7626
0
        if (pdev->color_info.num_components != 1) {
7627
0
            update_color_info = true;
7628
0
            new_polarity = GX_CINFO_POLARITY_ADDITIVE;
7629
0
            new_num_comps = 1;
7630
0
            pdevproto = (pdf14_device*)&gs_pdf14_Gray_device;
7631
0
            new_additive = true;
7632
0
            new_14procs = &gray_pdf14_procs;
7633
0
            new_depth = 8 << deep;
7634
0
        }
7635
0
        break;
7636
0
    case DEVICE_RGB:
7637
0
    case CIE_XYZ:
7638
0
        if (pdev->color_info.num_components != 3) {
7639
0
            update_color_info = true;
7640
0
            new_polarity = GX_CINFO_POLARITY_ADDITIVE;
7641
0
            new_num_comps = 3;
7642
0
            pdevproto = (pdf14_device*)&gs_pdf14_RGB_device;
7643
0
            new_additive = true;
7644
0
            new_14procs = &rgb_pdf14_procs;
7645
0
            new_depth = 24 << deep;
7646
0
        }
7647
0
        break;
7648
0
    case DEVICE_CMYK:
7649
0
        if (pdev->color_info.num_components != 4) {
7650
0
            update_color_info = true;
7651
0
            new_polarity = GX_CINFO_POLARITY_SUBTRACTIVE;
7652
0
            new_num_comps = 4;
7653
0
            pdevproto = (pdf14_device*)&gs_pdf14_CMYK_device;
7654
0
            new_additive = false;
7655
            /* This is needed due to the mismatched compressed encode decode
7656
               between the device procs and the pdf14 procs */
7657
0
            if (dev->color_info.num_components > 4) {
7658
0
                new_14procs = &cmykspot_pdf14_procs;
7659
0
            }
7660
0
            else {
7661
0
                new_14procs = &cmyk_pdf14_procs;
7662
0
            }
7663
0
            new_depth = 32 << deep;
7664
0
        }
7665
0
        break;
7666
1.21k
    case ICC:
7667
        /* Check if the profile is different. */
7668
1.21k
        if (!gsicc_profiles_equal(old_profile, new_profile)) {
7669
1.17k
            update_color_info = true;
7670
1.17k
            new_num_comps = new_profile->num_comps;
7671
1.17k
            new_depth = new_profile->num_comps * (8 << deep);
7672
1.17k
            switch (new_num_comps) {
7673
984
            case 1:
7674
984
                if (pdev->sep_device && !is_mask) {
7675
0
                    pdevproto = (pdf14_device*)&gs_pdf14_Grayspot_device;
7676
0
                    new_14procs = &grayspot_pdf14_procs;
7677
0
                }
7678
984
                else {
7679
984
                    pdevproto = (pdf14_device*)&gs_pdf14_Gray_device;
7680
984
                    new_14procs = &gray_pdf14_procs;
7681
984
                }
7682
984
                new_polarity = GX_CINFO_POLARITY_ADDITIVE;
7683
984
                new_additive = true;
7684
984
                break;
7685
179
            case 3:
7686
179
                if (pdev->sep_device) {
7687
179
                    pdevproto = (pdf14_device*)&gs_pdf14_RGBspot_device;
7688
179
                    new_14procs = &rgbspot_pdf14_procs;
7689
179
                }
7690
0
                else {
7691
0
                    pdevproto = (pdf14_device*)&gs_pdf14_RGB_device;
7692
0
                    new_14procs = &rgb_pdf14_procs;
7693
0
                }
7694
179
                new_polarity = GX_CINFO_POLARITY_ADDITIVE;
7695
179
                new_additive = true;
7696
179
                break;
7697
14
            case 4:
7698
14
                if (pdev->sep_device) {
7699
14
                    pdevproto = (pdf14_device*)&gs_pdf14_CMYKspot_device;
7700
14
                    new_14procs = &cmykspot_pdf14_procs;
7701
14
                }
7702
0
                else {
7703
0
                    pdevproto = (pdf14_device*)&gs_pdf14_CMYK_device;
7704
0
                    new_14procs = &cmyk_pdf14_procs;
7705
0
                }
7706
14
                new_polarity = GX_CINFO_POLARITY_SUBTRACTIVE;
7707
14
                new_additive = false;
7708
14
                break;
7709
0
            default:
7710
0
                return gs_throw(gs_error_undefinedresult,
7711
1.17k
                    "ICC Number of colorants illegal");
7712
1.17k
            }
7713
1.17k
        }
7714
1.21k
        break;
7715
1.84k
    case UNKNOWN:
7716
1.84k
        return 0;
7717
0
        break;
7718
0
    default:
7719
0
        return_error(gs_error_rangecheck);
7720
0
        break;
7721
3.06k
    }
7722
7723
1.21k
    if (!update_color_info) {
7724
        /* Profile not updated */
7725
42
        new_group_color->icc_profile = NULL;
7726
42
        if_debug0m('v', pdev->memory, "[v]procs not updated\n");
7727
42
        return 0;
7728
42
    }
7729
7730
1.17k
    if (has_tags) {
7731
0
        new_num_comps++;
7732
        /* In planar mode, planes need to all be the same depth. Otherwise use 8 bits for tags. */
7733
0
        if (pdev->num_planar_planes > 0)
7734
0
            new_depth += deep ? 16 : 8;
7735
0
        else
7736
0
            new_depth += 8;
7737
0
    }
7738
1.17k
    if (pdev->sep_device && !is_mask) {
7739
193
        int num_spots;
7740
7741
193
        if (old_profile == NULL)
7742
0
            return_error(gs_error_undefined);
7743
7744
193
        num_spots = pdev->color_info.num_components - has_tags - old_profile->num_comps;
7745
7746
193
        if (num_spots > 0) {
7747
1
            new_num_comps += num_spots;
7748
1
            new_depth = (8 << deep) * new_num_comps;
7749
1
        }
7750
193
    }
7751
    /* Calculate the bits and shifts *after* we have allowed for tags. */
7752
2.75k
    for (k = 0; k < new_num_comps; k++) {
7753
1.57k
        comp_bits[k] = 8 << deep;
7754
1.57k
        comp_shift[k] = (new_num_comps - 1 - k) * (8 << deep);
7755
1.57k
    }
7756
1.17k
    if_debug2m('v', pdev->memory,
7757
1.17k
        "[v]pdf14_clist_push_color_model, num_components_old = %d num_components_new = %d\n",
7758
1.17k
        pdev->color_info.num_components, new_num_comps);
7759
    /* Set new information in the device */
7760
1.17k
    {
7761
1.17k
        gx_device local_device;
7762
7763
1.17k
        local_device.initialize_device_procs = pdevproto->initialize_device_procs;
7764
1.17k
        local_device.initialize_device_procs((gx_device *)&local_device);
7765
1.17k
        set_dev_proc(pdev, get_color_mapping_procs, local_device.procs.get_color_mapping_procs);
7766
1.17k
        set_dev_proc(pdev, get_color_comp_index, local_device.procs.get_color_comp_index);
7767
1.17k
    }
7768
1.17k
    pdev->blend_procs = pdevproto->blend_procs;
7769
1.17k
    pdev->color_info.polarity = new_polarity;
7770
1.17k
    pdev->color_info.max_color = deep ? 65535 : 255;
7771
1.17k
    pdev->color_info.max_gray = deep ? 65535 : 255;
7772
1.17k
    pdev->pdf14_procs = new_14procs;
7773
1.17k
    if (pdev->num_planar_planes > 0)
7774
1.17k
        pdev->num_planar_planes += new_num_comps - pdev->color_info.num_components;
7775
1.17k
    pdev->color_info.num_components = new_num_comps;
7776
1.17k
    assert(pdev->num_planar_planes == 0 || pdev->num_planar_planes == pdev->color_info.num_components);
7777
1.17k
    pdev->color_info.depth = new_depth;
7778
1.17k
    memset(&(pdev->color_info.comp_bits), 0, GX_DEVICE_COLOR_MAX_COMPONENTS);
7779
1.17k
    memset(&(pdev->color_info.comp_shift), 0, GX_DEVICE_COLOR_MAX_COMPONENTS);
7780
1.17k
    memcpy(&(pdev->color_info.comp_bits), comp_bits, new_num_comps);
7781
1.17k
    memcpy(&(pdev->color_info.comp_shift), comp_shift, new_num_comps);
7782
1.17k
    pdev->color_info.opmsupported = GX_CINFO_OPMSUPPORTED_UNKNOWN;
7783
7784
    /* If we have a compressed color codec, and we are doing a soft mask
7785
       push operation then go ahead and update the color encode and
7786
       decode for the pdf14 device to not used compressed color
7787
       encoding while in the soft mask.  We will just check for gray
7788
       and compressed.  Note that we probably don't have_tags if we
7789
       are dealing with compressed color.  But is is possible so
7790
       we add it in to catch for future use. */
7791
1.17k
    cldev->clist_color_info.depth = pdev->color_info.depth;
7792
1.17k
    cldev->clist_color_info.polarity = pdev->color_info.polarity;
7793
1.17k
    cldev->clist_color_info.opmsupported = GX_CINFO_OPMSUPPORTED_UNKNOWN;
7794
1.17k
    cldev->clist_color_info.num_components = pdev->color_info.num_components;
7795
1.17k
    cldev->clist_color_info.max_color = pdev->color_info.max_color;
7796
1.17k
    cldev->clist_color_info.max_gray = pdev->color_info.max_gray;
7797
    /* For the ICC profiles, we want to update the ICC profile for the
7798
       device.  We store the original in group_color.
7799
       That will be stored in the clist and restored during the reading phase. */
7800
1.17k
    if (group_color_type == ICC) {
7801
1.17k
        gsicc_adjust_profile_rc(new_profile, 1, "pdf14_clist_push_color_model");
7802
1.17k
        new_group_color->icc_profile =
7803
1.17k
            dev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE];
7804
1.17k
        dev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE] = new_profile;
7805
1.17k
    }
7806
1.17k
    if (pdev->ctx) {
7807
0
        pdev->ctx->additive = new_additive;
7808
0
    }
7809
1.17k
    return 1;  /* Lets us detect that we did do an update */
7810
1.17k
}
7811
7812
static int
7813
pdf14_clist_pop_color_model(gx_device *dev, gs_gstate *pgs)
7814
3.06k
{
7815
7816
3.06k
    pdf14_device *pdev = (pdf14_device *)dev;
7817
3.06k
    pdf14_group_color_t *group_color = pdev->color_model_stack;
7818
3.06k
    gx_device_clist_writer * cldev = (gx_device_clist_writer *)pdev->pclist_device;
7819
7820
3.06k
    if (group_color == NULL)
7821
0
        return_error(gs_error_Fatal);  /* Unmatched group pop */
7822
7823
3.06k
    if_debug0m('v', pdev->memory, "[v]pdf14_clist_pop_color_model\n");
7824
    /* The color procs are always pushed.  Simply restore them. */
7825
3.06k
    if (group_color->group_color_mapping_procs == NULL &&
7826
3.06k
        group_color->group_color_comp_index == NULL) {
7827
0
        if_debug0m('v', dev->memory, "[v]pdf14_clist_pop_color_model ERROR \n");
7828
3.06k
    } else {
7829
3.06k
        bool has_tags = device_encodes_tags(dev);
7830
3.06k
        if_debug2m('v', pdev->memory,
7831
3.06k
                   "[v]pdf14_clist_pop_color_model, num_components_old = %d num_components_new = %d\n",
7832
3.06k
                   pdev->color_info.num_components,group_color->num_components);
7833
3.06k
        pgs->get_cmap_procs = group_color->get_cmap_procs;
7834
3.06k
        gx_set_cmap_procs(pgs, dev);
7835
3.06k
        set_dev_proc(pdev, get_color_mapping_procs, group_color->group_color_mapping_procs);
7836
3.06k
        set_dev_proc(pdev, get_color_comp_index, group_color->group_color_comp_index);
7837
3.06k
        pdev->color_info.polarity = group_color->polarity;
7838
3.06k
        pdev->color_info.opmsupported = GX_CINFO_OPMSUPPORTED_UNKNOWN;
7839
3.06k
        pdev->color_info.depth = group_color->depth;
7840
3.06k
        if (pdev->num_planar_planes > 0)
7841
3.06k
            pdev->num_planar_planes += group_color->num_components - (pdev->color_info.num_components - has_tags);
7842
3.06k
        pdev->color_info.num_components = group_color->num_components + has_tags;
7843
3.06k
        assert(pdev->num_planar_planes == 0 || pdev->num_planar_planes == pdev->color_info.num_components);
7844
3.06k
        assert(pdev->color_info.num_components - has_tags == group_color->num_components);
7845
3.06k
        pdev->blend_procs = group_color->blend_procs;
7846
3.06k
        pdev->pdf14_procs = group_color->unpack_procs;
7847
3.06k
        pdev->color_info.max_color = group_color->max_color;
7848
3.06k
        pdev->color_info.max_gray = group_color->max_gray;
7849
3.06k
        set_dev_proc(pdev, encode_color, group_color->encode);
7850
3.06k
        set_dev_proc(pdev, decode_color, group_color->decode);
7851
3.06k
        memcpy(&(pdev->color_info.comp_bits),&(group_color->comp_bits),
7852
3.06k
                            GX_DEVICE_COLOR_MAX_COMPONENTS);
7853
3.06k
        memcpy(&(pdev->color_info.comp_shift),&(group_color->comp_shift),
7854
3.06k
                            GX_DEVICE_COLOR_MAX_COMPONENTS);
7855
7856
        /* clist writer fill rect has no access to gs_gstate */
7857
        /* and it forwards the target device.  this information */
7858
        /* is passed along to use in this case */
7859
3.06k
        cldev->clist_color_info.depth = pdev->color_info.depth;
7860
3.06k
        cldev->clist_color_info.polarity = pdev->color_info.polarity;
7861
3.06k
        cldev->clist_color_info.opmsupported = GX_CINFO_OPMSUPPORTED_UNKNOWN;
7862
3.06k
        cldev->clist_color_info.num_components = pdev->color_info.num_components;
7863
3.06k
        cldev->clist_color_info.max_color = pdev->color_info.max_color;
7864
3.06k
        cldev->clist_color_info.max_gray = pdev->color_info.max_gray;
7865
3.06k
        memcpy(&(cldev->clist_color_info.comp_bits),&(group_color->comp_bits),
7866
3.06k
               GX_DEVICE_COLOR_MAX_COMPONENTS);
7867
3.06k
        memcpy(&(cldev->clist_color_info.comp_shift),&(group_color->comp_shift),
7868
3.06k
               GX_DEVICE_COLOR_MAX_COMPONENTS);
7869
3.06k
        if (pdev->ctx){
7870
0
            pdev->ctx->additive = group_color->isadditive;
7871
0
        }
7872
       /* The device profile must be restored. */
7873
3.06k
        if (group_color->icc_profile != NULL) {
7874
1.17k
            gsicc_adjust_profile_rc(dev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE],
7875
1.17k
                                    -1, "pdf14_clist_pop_color_model");
7876
1.17k
            dev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE] = group_color->icc_profile;
7877
1.17k
        }
7878
3.06k
        if_debug0m('v', dev->memory, "[v]procs updated\n");
7879
3.06k
    }
7880
3.06k
   pdf14_pop_group_color(dev, pgs);
7881
3.06k
    return 0;
7882
3.06k
}
7883
7884
/* When a transparency group is popped, the parent colorprocs must be restored.
7885
   Since the color mapping procs are all based upon the device, we must have a
7886
   nested list based upon the transparency group color space.  This nesting
7887
   must be outside the nested ctx structures to allow the nesting for the
7888
   clist writer */
7889
static void
7890
pdf14_pop_group_color(gx_device *dev, const gs_gstate *pgs)
7891
3.06k
{
7892
3.06k
    pdf14_device *pdev = (pdf14_device *)dev;
7893
3.06k
    pdf14_group_color_t *group_color = pdev->color_model_stack;
7894
7895
3.06k
    if_debug0m('v', dev->memory, "[v]pdf14_pop_group_color\n");
7896
7897
    /* Update the link */
7898
3.06k
    pdev->color_model_stack = group_color->previous;
7899
7900
    /* Free the old one */
7901
3.06k
    gs_free_object(dev->memory->stable_memory, group_color, "pdf14_clr_free");
7902
3.06k
}
7903
7904
static  int
7905
pdf14_begin_transparency_mask(gx_device *dev,
7906
                              const gx_transparency_mask_params_t *ptmp,
7907
                              const gs_rect *pbbox,
7908
                              gs_gstate *pgs, gs_memory_t *mem)
7909
152k
{
7910
152k
    pdf14_device *pdev = (pdf14_device *)dev;
7911
152k
    uint16_t bg_alpha = 0;   /* By default the background alpha (area outside mask) is zero */
7912
152k
    byte *transfer_fn;
7913
152k
    gs_int_rect rect;
7914
152k
    int code;
7915
152k
    int group_color_numcomps;
7916
152k
    gs_transparency_color_t group_color_type;
7917
152k
    bool deep = device_is_deep(dev);
7918
152k
    pdf14_group_color_t* group_color_info;
7919
7920
152k
    code = pdf14_initialize_ctx(dev, pgs);
7921
152k
    if (code < 0)
7922
0
        return code;
7923
7924
152k
    if (ptmp->subtype == TRANSPARENCY_MASK_None) {
7925
122k
        pdf14_ctx *ctx = pdev->ctx;
7926
7927
        /* free up any maskbuf on the current tos */
7928
122k
        if (ctx->mask_stack) {
7929
22.4k
            if (ctx->mask_stack->rc_mask->mask_buf != NULL ) {
7930
18.6k
                pdf14_buf_free(ctx->mask_stack->rc_mask->mask_buf);
7931
18.6k
                ctx->mask_stack->rc_mask->mask_buf = NULL;
7932
18.6k
            }
7933
22.4k
        }
7934
122k
        return 0;
7935
122k
    }
7936
29.9k
    transfer_fn = (byte *)gs_alloc_bytes(pdev->ctx->memory, (256+deep)<<deep,
7937
29.9k
                                         "pdf14_begin_transparency_mask");
7938
29.9k
    if (transfer_fn == NULL)
7939
0
        return_error(gs_error_VMerror);
7940
29.9k
    code = compute_group_device_int_rect(pdev, &rect, pbbox, pgs);
7941
29.9k
    if (code < 0)
7942
0
        return code;
7943
    /* If we have background components the background alpha may be nonzero */
7944
29.9k
    if (ptmp->Background_components)
7945
8.80k
        bg_alpha = (int)(65535 * ptmp->GrayBackground + 0.5);
7946
29.9k
    if_debug1m('v', dev->memory,
7947
29.9k
               "pdf14_begin_transparency_mask, bg_alpha = %d\n", bg_alpha);
7948
29.9k
    memcpy(transfer_fn, ptmp->transfer_fn, (256+deep)<<deep);
7949
   /* If the group color is unknown, then we must use the previous group color
7950
       space or the device process color space */
7951
29.9k
    if (ptmp->group_color_type == UNKNOWN){
7952
0
        if (pdev->ctx->stack){
7953
            /* Use previous group color space */
7954
0
            group_color_numcomps = pdev->ctx->stack->n_chan-1;  /* Remove alpha */
7955
0
        } else {
7956
            /* Use process color space */
7957
0
            group_color_numcomps = pdev->color_info.num_components;
7958
0
        }
7959
0
        switch (group_color_numcomps) {
7960
0
            case 1:
7961
0
                group_color_type = GRAY_SCALE;
7962
0
                break;
7963
0
            case 3:
7964
0
                group_color_type = DEVICE_RGB;
7965
0
                break;
7966
0
            case 4:
7967
0
                group_color_type = DEVICE_CMYK;
7968
0
            break;
7969
0
            default:
7970
                /* We can end up here if we are in a deviceN color space and
7971
                   we have a sep output device */
7972
0
                group_color_type = DEVICEN;
7973
0
            break;
7974
0
         }
7975
29.9k
    } else {
7976
29.9k
        group_color_type = ptmp->group_color_type;
7977
29.9k
        group_color_numcomps = ptmp->group_color_numcomps;
7978
29.9k
    }
7979
7980
29.9k
    group_color_info = pdf14_push_color_model(dev, group_color_type, ptmp->icc_hashcode,
7981
29.9k
                                               ptmp->iccprofile, true);
7982
29.9k
    if (group_color_info == NULL)
7983
0
        return gs_error_VMerror;
7984
7985
    /* Note that the soft mask always follows the group color requirements even
7986
       when we have a separable device */
7987
29.9k
    code = pdf14_push_transparency_mask(pdev->ctx, &rect, bg_alpha,
7988
29.9k
                                        transfer_fn, ptmp->function_is_identity,
7989
29.9k
                                        ptmp->idle, ptmp->replacing,
7990
29.9k
                                        ptmp->mask_id, ptmp->subtype,
7991
29.9k
                                        group_color_numcomps,
7992
29.9k
                                        ptmp->Background_components,
7993
29.9k
                                        ptmp->Background,
7994
29.9k
                                        ptmp->Matte_components,
7995
29.9k
                                        ptmp->Matte,
7996
29.9k
                                        ptmp->GrayBackground,
7997
29.9k
                                        group_color_info);
7998
29.9k
    if (code < 0)
7999
0
        return code;
8000
8001
29.9k
    return 0;
8002
29.9k
}
8003
8004
static  int
8005
pdf14_end_transparency_mask(gx_device *dev, gs_gstate *pgs)
8006
29.9k
{
8007
29.9k
    pdf14_device *pdev = (pdf14_device *)dev;
8008
29.9k
    pdf14_group_color_t *group_color;
8009
29.9k
    int ok;
8010
29.9k
    bool has_tags = device_encodes_tags(dev);
8011
8012
29.9k
    if_debug0m('v', dev->memory, "pdf14_end_transparency_mask\n");
8013
29.9k
    ok = pdf14_pop_transparency_mask(pdev->ctx, pgs, dev);
8014
#ifdef DEBUG
8015
    pdf14_debug_mask_stack_state(pdev->ctx);
8016
#endif
8017
8018
    /* May need to reset some color stuff related
8019
     * to a mismatch between the Smask color space
8020
     * and the Smask blending space */
8021
29.9k
    if (pdev->ctx->stack != NULL ) {
8022
29.9k
        group_color = pdev->ctx->stack->group_color_info;
8023
29.9k
        if (!(group_color->group_color_mapping_procs == NULL &&
8024
29.9k
            group_color->group_color_comp_index == NULL)) {
8025
29.9k
            pgs->get_cmap_procs = group_color->get_cmap_procs;
8026
29.9k
            gx_set_cmap_procs(pgs, dev);
8027
29.9k
            set_dev_proc(pdev, get_color_mapping_procs, group_color->group_color_mapping_procs);
8028
29.9k
            set_dev_proc(pdev, get_color_comp_index, group_color->group_color_comp_index);
8029
29.9k
            pdev->color_info.polarity = group_color->polarity;
8030
29.9k
            pdev->color_info.opmsupported = GX_CINFO_OPMSUPPORTED_UNKNOWN;
8031
29.9k
            if (pdev->num_planar_planes > 0)
8032
29.9k
                pdev->num_planar_planes += group_color->num_components - (pdev->color_info.num_components - has_tags);
8033
29.9k
            pdev->color_info.num_components = group_color->num_components + has_tags;
8034
29.9k
            assert(pdev->num_planar_planes == 0 || pdev->num_planar_planes == pdev->color_info.num_components);
8035
29.9k
            assert(pdev->color_info.num_components - has_tags == group_color->num_components);
8036
29.9k
            pdev->num_std_colorants = group_color->num_std_colorants;
8037
29.9k
            pdev->color_info.depth = group_color->depth;
8038
29.9k
            pdev->blend_procs = group_color->blend_procs;
8039
29.9k
            pdev->ctx->additive = group_color->isadditive;
8040
29.9k
            pdev->pdf14_procs = group_color->unpack_procs;
8041
29.9k
            pdev->color_info.max_color = group_color->max_color;
8042
29.9k
            pdev->color_info.max_gray = group_color->max_gray;
8043
29.9k
            set_dev_proc(pdev, encode_color, group_color->encode);
8044
29.9k
            set_dev_proc(pdev, decode_color, group_color->decode);
8045
29.9k
            memcpy(&(pdev->color_info.comp_bits),&(group_color->comp_bits),
8046
29.9k
                                GX_DEVICE_COLOR_MAX_COMPONENTS);
8047
29.9k
            memcpy(&(pdev->color_info.comp_shift),&(group_color->comp_shift),
8048
29.9k
                                GX_DEVICE_COLOR_MAX_COMPONENTS);
8049
            /* Take care of the ICC profile */
8050
29.9k
            if (group_color->icc_profile != NULL) {
8051
29.9k
                gsicc_adjust_profile_rc(dev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE],
8052
29.9k
                                        -1, "pdf14_end_transparency_mask");
8053
29.9k
                dev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE] = group_color->icc_profile;
8054
29.9k
                gsicc_adjust_profile_rc(dev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE],
8055
29.9k
                                         1, "pdf14_end_transparency_mask");
8056
29.9k
            }
8057
29.9k
        }
8058
29.9k
    }
8059
29.9k
    return ok;
8060
29.9k
}
8061
8062
static  int
8063
do_mark_fill_rectangle_ko_simple(gx_device *dev, int x, int y, int w, int h,
8064
                                 gx_color_index color,
8065
                                 const gx_device_color *pdc, bool devn)
8066
621k
{
8067
621k
    pdf14_device *pdev = (pdf14_device *)dev;
8068
621k
    pdf14_buf *buf = pdev->ctx->stack;
8069
621k
    gs_blend_mode_t blend_mode = pdev->blend_mode;
8070
621k
    bool tag_blend = blend_mode == BLEND_MODE_Normal ||
8071
621k
        blend_mode == BLEND_MODE_Compatible ||
8072
621k
        blend_mode == BLEND_MODE_CompatibleOverprint;
8073
621k
    int i, j, k;
8074
621k
    byte *bline, *bg_ptr, *line, *dst_ptr;
8075
621k
    byte src[PDF14_MAX_PLANES];
8076
621k
    byte dst[PDF14_MAX_PLANES] = { 0 };
8077
621k
    byte dst2[PDF14_MAX_PLANES] = { 0 };
8078
621k
    int rowstride = buf->rowstride;
8079
621k
    int planestride = buf->planestride;
8080
621k
    int num_chan = buf->n_chan;
8081
621k
    int num_comp = num_chan - 1;
8082
621k
    int shape_off = num_chan * planestride;
8083
621k
    bool has_shape = buf->has_shape;
8084
621k
    bool has_alpha_g = buf->has_alpha_g;
8085
621k
    int alpha_g_off = shape_off + (has_shape ? planestride : 0);
8086
621k
    int tag_off = shape_off + (has_alpha_g ? planestride : 0) +
8087
621k
                              (has_shape ? planestride : 0);
8088
621k
    bool has_tags = buf->has_tags;
8089
621k
    bool additive = pdev->ctx->additive;
8090
621k
    gs_graphics_type_tag_t curr_tag = GS_UNKNOWN_TAG;  /* Quiet compiler */
8091
621k
    gx_color_index mask = ((gx_color_index)1 << 8) - 1;
8092
621k
    int shift = 8;
8093
621k
    byte shape = 0; /* Quiet compiler. */
8094
621k
    byte src_alpha;
8095
621k
    bool overprint = pdev->op_state == PDF14_OP_STATE_FILL ? pdev->overprint : pdev->stroke_overprint;
8096
621k
    gx_color_index drawn_comps = pdev->op_state == PDF14_OP_STATE_FILL ?
8097
603k
        pdev->drawn_comps_fill : pdev->drawn_comps_stroke;
8098
621k
    gx_color_index comps;
8099
621k
    bool has_backdrop = buf->backdrop != NULL;
8100
8101
    /* If we are going out to a CMYK or CMYK + spots pdf14 device (i.e.
8102
       subtractive) and we are doing overprint with drawn_comps == 0
8103
       then this is a no-operation */
8104
621k
    if (overprint && drawn_comps == 0 && !buf->group_color_info->isadditive)
8105
0
        return 0;
8106
8107
621k
    if (buf->data == NULL)
8108
0
        return 0;
8109
#if 0
8110
    if (sizeof(color) <= sizeof(ulong))
8111
        if_debug6m('v', dev->memory,
8112
                   "[v]pdf14_mark_fill_rectangle_ko_simple, (%d, %d), %d x %d color = %lx, nc %d,\n",
8113
                   x, y, w, h, (ulong)color, num_chan);
8114
    else
8115
        if_debug7m('v', dev->memory,
8116
                   "[v]pdf14_mark_fill_rectangle_ko_simple, (%d, %d), %d x %d color = %8lx%08lx, nc %d,\n",
8117
                   x, y, w, h,
8118
                   (ulong)(color >> 8*(sizeof(color) - sizeof(ulong))), (ulong)color,
8119
                   num_chan);
8120
#endif
8121
    /*
8122
     * Unpack the gx_color_index values.  Complement the components for subtractive
8123
     * color spaces.
8124
     */
8125
621k
    if (devn) {
8126
621k
        if (has_tags) {
8127
0
            curr_tag = pdc->tag;
8128
0
        }
8129
621k
        if (additive) {
8130
1.77M
            for (j = 0; j < num_comp; j++) {
8131
1.33M
                src[j] = ((pdc->colors.devn.values[j]) >> shift & mask);
8132
1.33M
            }
8133
443k
        } else {
8134
891k
            for (j = 0; j < num_comp; j++) {
8135
712k
                src[j] = 255 - ((pdc->colors.devn.values[j]) >> shift & mask);
8136
712k
            }
8137
178k
        }
8138
621k
    } else {
8139
0
        if (has_tags) {
8140
0
            curr_tag = (color >> (num_comp * 8)) & 0xff;
8141
0
        }
8142
0
        pdev->pdf14_procs->unpack_color(num_comp, color, pdev, src);
8143
0
    }
8144
8145
621k
    if (!has_tags)
8146
621k
        tag_off = 0;
8147
8148
621k
    src_alpha = src[num_comp] = (byte)floor (255 * pdev->alpha + 0.5);
8149
621k
    if (has_shape) {
8150
0
        shape = (byte)floor (255 * pdev->shape + 0.5);
8151
621k
    } else {
8152
621k
        shape_off = 0;
8153
621k
    }
8154
8155
621k
    if (!has_alpha_g)
8156
0
        alpha_g_off = 0;
8157
621k
    src_alpha = 255 - src_alpha;
8158
621k
    shape = 255 - shape;
8159
8160
    /* Fit the mark into the bounds of the buffer */
8161
621k
    if (x < buf->rect.p.x) {
8162
0
        w += x - buf->rect.p.x;
8163
0
        x = buf->rect.p.x;
8164
0
    }
8165
621k
    if (y < buf->rect.p.y) {
8166
1
      h += y - buf->rect.p.y;
8167
1
      y = buf->rect.p.y;
8168
1
    }
8169
621k
    if (x + w > buf->rect.q.x) w = buf->rect.q.x - x;
8170
621k
    if (y + h > buf->rect.q.y) h = buf->rect.q.y - y;
8171
    /* Update the dirty rectangle with the mark. */
8172
621k
    if (x < buf->dirty.p.x) buf->dirty.p.x = x;
8173
621k
    if (y < buf->dirty.p.y) buf->dirty.p.y = y;
8174
621k
    if (x + w > buf->dirty.q.x) buf->dirty.q.x = x + w;
8175
621k
    if (y + h > buf->dirty.q.y) buf->dirty.q.y = y + h;
8176
8177
    /* composite with backdrop only. */
8178
621k
    if (has_backdrop)
8179
621k
        bline = buf->backdrop + (x - buf->rect.p.x) + (y - buf->rect.p.y) * rowstride;
8180
0
    else
8181
0
        bline = NULL;
8182
8183
621k
    line = buf->data + (x - buf->rect.p.x) + (y - buf->rect.p.y) * rowstride;
8184
8185
1.26M
    for (j = 0; j < h; ++j) {
8186
638k
        bg_ptr = bline;
8187
638k
        dst_ptr = line;
8188
10.2M
        for (i = 0; i < w; ++i) {
8189
            /* Complement the components for subtractive color spaces */
8190
9.62M
            if (has_backdrop) {
8191
9.62M
                if (additive) {
8192
21.2M
                    for (k = 0; k < num_comp; ++k)
8193
15.9M
                        dst[k] = bg_ptr[k * planestride];
8194
5.30M
                } else {
8195
21.5M
                    for (k = 0; k < num_comp; ++k)
8196
17.2M
                        dst2[k] = dst[k] = 255 - bg_ptr[k * planestride];
8197
4.31M
                }
8198
9.62M
                dst2[num_comp] = dst[num_comp] = bg_ptr[num_comp * planestride];  /* alpha doesn't invert */
8199
9.62M
            }
8200
9.62M
            if (buf->isolated || !has_backdrop) {
8201
0
                art_pdf_knockoutisolated_group_8(dst, src, num_comp);
8202
9.62M
            } else {
8203
9.62M
                art_pdf_composite_knockout_8(dst, src, num_comp,
8204
9.62M
                                            blend_mode, pdev->blend_procs, pdev);
8205
9.62M
            }
8206
            /* Complement the results for subtractive color spaces */
8207
9.62M
            if (additive) {
8208
5.30M
                if (!overprint) {
8209
26.5M
                    for (k = 0; k < num_chan; ++k)
8210
21.2M
                        dst_ptr[k * planestride] = dst[k];
8211
5.30M
                } else {
8212
                    /* Hybrid additive with subtractive spots */
8213
                    /* We may have to do the compatible overprint blending */
8214
0
                    if (!buf->isolated && drawn_comps != (((size_t)1 << (size_t)dev->color_info.num_components) - (size_t)1)) {
8215
0
                        art_pdf_composite_knockout_8(dst2, src, num_comp,
8216
0
                            blend_mode, pdev->blend_procs, pdev);
8217
0
                    }
8218
0
                    for (k = 0, comps = drawn_comps; k < num_comp; ++k, comps >>= 1) {
8219
0
                        if ((comps & 0x1) != 0) {
8220
0
                            dst_ptr[k * planestride] = dst[k];
8221
0
                        } else {
8222
                            /* Compatible overprint blend result. */
8223
0
                            dst_ptr[k * planestride] = dst2[k];
8224
0
                        }
8225
0
                    }
8226
0
                    dst_ptr[num_comp * planestride] = dst[num_comp];    /* alpha */
8227
0
                }
8228
5.30M
            } else {
8229
4.31M
                if (overprint) {
8230
                    /* We may have to do the compatible overprint blending */
8231
0
                    if (!buf->isolated && drawn_comps != (( (size_t) 1 << (size_t) dev->color_info.num_components)-(size_t) 1)) {
8232
0
                        art_pdf_composite_knockout_8(dst2, src, num_comp,
8233
0
                            blend_mode, pdev->blend_procs, pdev);
8234
0
                    }
8235
0
                    for (k = 0, comps = drawn_comps; k < num_comp; ++k, comps >>= 1) {
8236
0
                        if ((comps & 0x1) != 0) {
8237
0
                            dst_ptr[k * planestride] = 255 - dst[k];
8238
0
                        } else {
8239
                            /* Compatible overprint blend result. */
8240
0
                            dst_ptr[k * planestride] = 255 - dst2[k];
8241
0
                        }
8242
0
                    }
8243
4.31M
                } else {
8244
21.5M
                    for (k = 0; k < num_comp; ++k)
8245
17.2M
                        dst_ptr[k * planestride] = 255 - dst[k];
8246
4.31M
                }
8247
4.31M
                dst_ptr[num_comp * planestride] = dst[num_comp];
8248
4.31M
            }
8249
9.62M
            if (tag_off) {
8250
                /* If src alpha is 100% then set to curr_tag, else or */
8251
                /* other than Normal BM, we always OR */
8252
0
                if (src[num_comp] == 255 && tag_blend) {
8253
0
                    dst_ptr[tag_off] = curr_tag;
8254
0
                } else {
8255
0
                    dst_ptr[tag_off] |= curr_tag;
8256
0
                }
8257
0
            }
8258
            /* Knockout group alpha and shape too */
8259
9.62M
            if (alpha_g_off)
8260
9.62M
                dst_ptr[alpha_g_off] = 255 - src_alpha;
8261
9.62M
            if (shape_off)
8262
0
                dst_ptr[shape_off] = 255 - shape;
8263
9.62M
            ++dst_ptr;
8264
9.62M
            if (has_backdrop)
8265
9.62M
                ++bg_ptr;
8266
9.62M
        }
8267
638k
        bline += rowstride;
8268
638k
        line += rowstride;
8269
638k
    }
8270
#if 0
8271
/* #if RAW_DUMP */
8272
    /* Dump the current buffer to see what we have. */
8273
    dump_raw_buffer(pdev->ctx->memory,
8274
                    pdev->ctx->stack->rect.q.y-pdev->ctx->stack->rect.p.y,
8275
                    pdev->ctx->stack->rect.q.x-pdev->ctx->stack->rect.p.x,
8276
                    pdev->ctx->stack->n_planes,
8277
                    pdev->ctx->stack->planestride, pdev->ctx->stack->rowstride,
8278
                    "Draw_Rect_KO", pdev->ctx->stack->data,
8279
                    pdev->ctx->stack->deep);
8280
    global_index++;
8281
#endif
8282
621k
    return 0;
8283
621k
}
8284
8285
static  int
8286
do_mark_fill_rectangle_ko_simple16(gx_device *dev, int x, int y, int w, int h,
8287
                                   gx_color_index color,
8288
                                   const gx_device_color *pdc, bool devn)
8289
0
{
8290
0
    pdf14_device *pdev = (pdf14_device *)dev;
8291
0
    pdf14_buf *buf = pdev->ctx->stack;
8292
0
    gs_blend_mode_t blend_mode = pdev->blend_mode;
8293
0
    bool tag_blend = blend_mode == BLEND_MODE_Normal ||
8294
0
        blend_mode == BLEND_MODE_Compatible ||
8295
0
        blend_mode == BLEND_MODE_CompatibleOverprint;
8296
0
    int i, j, k;
8297
0
    uint16_t *bline, *bg_ptr, *line, *dst_ptr;
8298
0
    uint16_t src[PDF14_MAX_PLANES];
8299
0
    uint16_t dst[PDF14_MAX_PLANES] = { 0 };
8300
0
    uint16_t dst2[PDF14_MAX_PLANES] = { 0 };
8301
0
    int rowstride = buf->rowstride;
8302
0
    int planestride = buf->planestride;
8303
0
    int num_chan = buf->n_chan;
8304
0
    int num_comp = num_chan - 1;
8305
0
    int shape_off = num_chan * planestride;
8306
0
    bool has_shape = buf->has_shape;
8307
0
    bool has_alpha_g = buf->has_alpha_g;
8308
0
    int alpha_g_off = shape_off + (has_shape ? planestride : 0);
8309
0
    int tag_off = shape_off + (has_alpha_g ? planestride : 0) +
8310
0
                              (has_shape ? planestride : 0);
8311
0
    bool has_tags = buf->has_tags;
8312
0
    bool additive = pdev->ctx->additive;
8313
0
    gs_graphics_type_tag_t curr_tag = GS_UNKNOWN_TAG;  /* Quiet compiler */
8314
0
    uint16_t shape = 0; /* Quiet compiler. */
8315
0
    uint16_t src_alpha;
8316
0
    bool overprint = pdev->op_state == PDF14_OP_STATE_FILL ? pdev->overprint : pdev->stroke_overprint;
8317
0
    gx_color_index drawn_comps = pdev->op_state == PDF14_OP_STATE_FILL ?
8318
0
        pdev->drawn_comps_fill : pdev->drawn_comps_stroke;
8319
0
    gx_color_index comps;
8320
0
    bool has_backdrop = buf->backdrop != NULL;
8321
8322
    /* If we are going out to a CMYK or CMYK + spots pdf14 device (i.e.
8323
       subtractive) and we are doing overprint with drawn_comps == 0
8324
       then this is a no-operation */
8325
0
    if (overprint && drawn_comps == 0 && !buf->group_color_info->isadditive)
8326
0
        return 0;
8327
8328
0
    if (buf->data == NULL)
8329
0
        return 0;
8330
#if 0
8331
    if (sizeof(color) <= sizeof(ulong))
8332
        if_debug6m('v', dev->memory,
8333
                   "[v]pdf14_mark_fill_rectangle_ko_simple16, (%d, %d), %d x %d color = %lx, nc %d,\n",
8334
                   x, y, w, h, (ulong)color, num_chan);
8335
    else
8336
        if_debug7m('v', dev->memory,
8337
                   "[v]pdf14_mark_fill_rectangle_ko_simple16, (%d, %d), %d x %d color = %8lx%08lx, nc %d,\n",
8338
                   x, y, w, h,
8339
                   (ulong)(color >> 8*(sizeof(color) - sizeof(ulong))), (ulong)color,
8340
                   num_chan);
8341
#endif
8342
    /*
8343
     * Unpack the gx_color_index values.  Complement the components for subtractive
8344
     * color spaces.
8345
     */
8346
0
    if (devn) {
8347
0
        if (has_tags) {
8348
0
            curr_tag = pdc->tag;
8349
0
        }
8350
0
        if (additive) {
8351
0
            for (j = 0; j < num_comp; j++) {
8352
0
                src[j] = pdc->colors.devn.values[j];
8353
0
            }
8354
0
        } else {
8355
0
            for (j = 0; j < num_comp; j++) {
8356
0
                src[j] = 65535 - pdc->colors.devn.values[j];
8357
0
            }
8358
0
        }
8359
0
    } else {
8360
0
        if (has_tags) {
8361
0
            curr_tag = (color >> (num_comp * 16)) & 0xff;
8362
0
        }
8363
0
        pdev->pdf14_procs->unpack_color16(num_comp, color, pdev, src);
8364
0
    }
8365
8366
0
    src_alpha = src[num_comp] = (uint16_t)floor (65535 * pdev->alpha + 0.5);
8367
0
    if (has_shape) {
8368
0
        shape = (uint16_t)floor (65535 * pdev->shape + 0.5);
8369
0
    } else {
8370
0
        shape_off = 0;
8371
0
    }
8372
8373
0
    if (!has_tags) {
8374
0
        tag_off = 0;
8375
0
    }
8376
8377
0
    if (!has_alpha_g)
8378
0
        alpha_g_off = 0;
8379
0
    src_alpha = 65535 - src_alpha;
8380
0
    shape = 65535 - shape;
8381
8382
    /* Fit the mark into the bounds of the buffer */
8383
0
    if (x < buf->rect.p.x) {
8384
0
        w += x - buf->rect.p.x;
8385
0
        x = buf->rect.p.x;
8386
0
    }
8387
0
    if (y < buf->rect.p.y) {
8388
0
      h += y - buf->rect.p.y;
8389
0
      y = buf->rect.p.y;
8390
0
    }
8391
0
    if (x + w > buf->rect.q.x) w = buf->rect.q.x - x;
8392
0
    if (y + h > buf->rect.q.y) h = buf->rect.q.y - y;
8393
    /* Update the dirty rectangle with the mark. */
8394
0
    if (x < buf->dirty.p.x) buf->dirty.p.x = x;
8395
0
    if (y < buf->dirty.p.y) buf->dirty.p.y = y;
8396
0
    if (x + w > buf->dirty.q.x) buf->dirty.q.x = x + w;
8397
0
    if (y + h > buf->dirty.q.y) buf->dirty.q.y = y + h;
8398
8399
8400
    /* composite with backdrop only. */
8401
0
    if (has_backdrop)
8402
0
        bline = (uint16_t*)(void*)(buf->backdrop + (x - buf->rect.p.x) * 2 + (y - buf->rect.p.y) * rowstride);
8403
0
    else
8404
0
        bline = NULL;
8405
8406
0
    line = (uint16_t *)(void *)(buf->data + (x - buf->rect.p.x)*2 + (y - buf->rect.p.y) * rowstride);
8407
0
    planestride >>= 1;
8408
0
    rowstride >>= 1;
8409
0
    alpha_g_off >>= 1;
8410
0
    shape_off >>= 1;
8411
0
    tag_off >>= 1;
8412
8413
0
    for (j = 0; j < h; ++j) {
8414
0
        bg_ptr = bline;
8415
0
        dst_ptr = line;
8416
0
        for (i = 0; i < w; ++i) {
8417
            /* Complement the components for subtractive color spaces */
8418
0
            if (has_backdrop) {
8419
0
                if (additive) {
8420
0
                    for (k = 0; k < num_comp; ++k)
8421
0
                        dst[k] = bg_ptr[k * planestride];
8422
0
                } else {
8423
0
                    for (k = 0; k < num_comp; ++k)
8424
0
                        dst2[k] = dst[k] = 65535 - bg_ptr[k * planestride];
8425
0
                }
8426
0
                dst2[num_comp] = dst[num_comp] = bg_ptr[num_comp * planestride];  /* alpha doesn't invert */
8427
0
            }
8428
0
            if (buf->isolated || !has_backdrop) {
8429
0
                art_pdf_knockoutisolated_group_16(dst, src, num_comp);
8430
0
            } else {
8431
0
                art_pdf_composite_knockout_16(dst, src, num_comp,
8432
0
                                              blend_mode, pdev->blend_procs, pdev);
8433
0
            }
8434
            /* Complement the results for subtractive color spaces */
8435
0
            if (additive) {
8436
0
                if (!overprint) {
8437
0
                    for (k = 0; k < num_chan; ++k)
8438
0
                        dst_ptr[k * planestride] = dst[k];
8439
0
                } else {
8440
                    /* Hybrid additive with subtractive spots */
8441
                    /* We may have to do the compatible overprint blending */
8442
0
                    if (!buf->isolated && drawn_comps != (((size_t)1 << (size_t)dev->color_info.num_components) - (size_t)1)) {
8443
0
                        art_pdf_composite_knockout_16(dst2, src, num_comp,
8444
0
                            blend_mode, pdev->blend_procs, pdev);
8445
0
                    }
8446
0
                    for (k = 0, comps = drawn_comps; k < num_comp; ++k, comps >>= 1) {
8447
0
                        if ((comps & 0x1) != 0) {
8448
0
                            dst_ptr[k * planestride] = dst[k];
8449
0
                        } else {
8450
                            /* Compatible overprint blend result. */
8451
0
                            dst_ptr[k * planestride] = dst2[k];
8452
0
                        }
8453
0
                    }
8454
0
                    dst_ptr[num_comp * planestride] = dst[num_comp];    /* alpha */
8455
0
                }
8456
0
            } else {
8457
0
                if (overprint) {
8458
                    /* We may have to do the compatible overprint blending */
8459
0
                    if (!buf->isolated && drawn_comps != (((size_t)1 << (size_t)dev->color_info.num_components) - (size_t)1)) {
8460
0
                        art_pdf_composite_knockout_16(dst2, src, num_comp,
8461
0
                            blend_mode, pdev->blend_procs, pdev);
8462
0
                    }
8463
0
                    for (k = 0, comps = drawn_comps; k < num_comp; ++k, comps >>= 1) {
8464
0
                        if ((comps & 0x1) != 0) {
8465
0
                            dst_ptr[k * planestride] = 65535 - dst[k];
8466
0
                        } else {
8467
                            /* Compatible overprint blend result. */
8468
0
                            dst_ptr[k * planestride] = 65535 - dst2[k];
8469
0
                        }
8470
0
                    }
8471
0
                } else {
8472
0
                    for (k = 0; k < num_comp; ++k)
8473
0
                        dst_ptr[k * planestride] = 65535 - dst[k];
8474
0
                }
8475
0
                dst_ptr[num_comp * planestride] = dst[num_comp];
8476
0
            }
8477
0
            if (tag_off) {
8478
                /* FIXME: As we are knocking out, possibly, we should be
8479
                 * always overwriting tag values here? */
8480
                /* If src alpha is 100% then set to curr_tag, else or */
8481
                /* other than Normal BM, we always OR */
8482
0
                if (src[num_comp] == 65535 && tag_blend) {
8483
0
                    dst_ptr[tag_off] = curr_tag;
8484
0
                } else {
8485
0
                    dst_ptr[tag_off] |= curr_tag;
8486
0
                }
8487
0
            }
8488
            /* Knockout group alpha and shape too */
8489
0
            if (alpha_g_off)
8490
0
                dst_ptr[alpha_g_off] = 65535 - src_alpha;
8491
0
            if (shape_off)
8492
0
                dst_ptr[shape_off] = 65535 - shape;
8493
0
            ++dst_ptr;
8494
0
            if (has_backdrop)
8495
0
                ++bg_ptr;
8496
0
        }
8497
0
        bline += rowstride;
8498
0
        line += rowstride;
8499
0
    }
8500
#if 0
8501
/* #if RAW_DUMP */
8502
    /* Dump the current buffer to see what we have. */
8503
    dump_raw_buffer(pdev->ctx->memory,
8504
                    pdev->ctx->stack->rect.q.y-pdev->ctx->stack->rect.p.y,
8505
                    pdev->ctx->stack->rect.q.x-pdev->ctx->stack->rect.p.x,
8506
                    pdev->ctx->stack->n_planes,
8507
                    pdev->ctx->stack->planestride, pdev->ctx->stack->rowstride,
8508
                    "Draw_Rect_KO", pdev->ctx->stack->data,
8509
                    pdev->ctx->stack->deep);
8510
    global_index++;
8511
#endif
8512
0
    return 0;
8513
0
}
8514
8515
static  int
8516
pdf14_mark_fill_rectangle_ko_simple(gx_device * dev, int x, int y, int w, int h,
8517
                                    gx_color_index color,
8518
                                    const gx_device_color *pdc, bool devn)
8519
621k
{
8520
621k
    pdf14_device *pdev = (pdf14_device *)dev;
8521
621k
    pdf14_buf *buf = pdev->ctx->stack;
8522
8523
621k
    if (buf->deep)
8524
0
        return do_mark_fill_rectangle_ko_simple16(dev, x, y, w, h, color, pdc, devn);
8525
621k
    else
8526
621k
        return do_mark_fill_rectangle_ko_simple(dev, x, y, w, h, color, pdc, devn);
8527
621k
}
8528
8529
/**
8530
 * Here we have logic to override the cmap_procs with versions that
8531
 * do not apply the transfer function. These copies should track the
8532
 * versions in gxcmap.c.
8533
 **/
8534
static  cmap_proc_gray(pdf14_cmap_gray_direct);
8535
static  cmap_proc_rgb(pdf14_cmap_rgb_direct);
8536
static  cmap_proc_cmyk(pdf14_cmap_cmyk_direct);
8537
static  cmap_proc_separation(pdf14_cmap_separation_direct);
8538
static  cmap_proc_devicen(pdf14_cmap_devicen_direct);
8539
static  cmap_proc_is_halftoned(pdf14_cmap_is_halftoned);
8540
8541
static  const gx_color_map_procs pdf14_cmap_many = {
8542
     pdf14_cmap_gray_direct,
8543
     pdf14_cmap_rgb_direct,
8544
     pdf14_cmap_cmyk_direct,
8545
     pdf14_cmap_separation_direct,
8546
     pdf14_cmap_devicen_direct,
8547
     pdf14_cmap_is_halftoned
8548
    };
8549
8550
/**
8551
 * Note: copied from gxcmap.c because it's inlined.
8552
 **/
8553
static  inline void
8554
map_components_to_colorants(const frac * pcc,
8555
                            const gs_devicen_color_map * pcolor_component_map,
8556
                            frac * plist)
8557
366k
{
8558
366k
    int i = pcolor_component_map->num_colorants - 1;
8559
366k
    int pos;
8560
8561
    /* Clear all output colorants first */
8562
1.83M
    for (; i >= 0; i--) {
8563
1.46M
        plist[i] = frac_0;
8564
1.46M
    }
8565
    /* Map color components into output list */
8566
810k
    for (i = pcolor_component_map->num_components - 1; i >= 0; i--) {
8567
443k
        pos = pcolor_component_map->color_map[i];
8568
443k
        if (pos >= 0)
8569
443k
            plist[pos] = pcc[i];
8570
443k
    }
8571
366k
}
8572
8573
/* See Section 7.6.4 of PDF 1.7 spec */
8574
static inline bool
8575
pdf14_state_opaque(gx_device *pdev, const gs_gstate *pgs)
8576
6.91M
{
8577
6.91M
    if (pgs->fillconstantalpha != 1.0 ||
8578
6.91M
        pgs->strokeconstantalpha != 1.0 ||
8579
6.91M
        !(pgs->blend_mode == BLEND_MODE_Normal ||
8580
6.85M
          pgs->blend_mode == BLEND_MODE_CompatibleOverprint))
8581
145k
        return 0;
8582
8583
    /* We can only be opaque if we're not in an SMask. */
8584
6.77M
    return dev_proc(pdev, dev_spec_op)(pdev,
8585
6.77M
                                       gxdso_in_smask,
8586
6.77M
                                       NULL, 0) != 1;
8587
6.91M
}
8588
8589
static  void
8590
pdf14_cmap_gray_direct(frac gray, gx_device_color * pdc, const gs_gstate * pgs,
8591
                       gx_device * dev, gs_color_select_t select)
8592
324k
{
8593
324k
    int i, nc, ncomps;
8594
324k
    frac cm_comps[GX_DEVICE_COLOR_MAX_COMPONENTS];
8595
324k
    gx_color_value cv[GX_DEVICE_COLOR_MAX_COMPONENTS];
8596
324k
    gx_color_index color;
8597
324k
    gx_device *trans_device;
8598
324k
    const gx_device *map_dev;
8599
324k
    const gx_cm_color_map_procs *procs;
8600
8601
    /* If trans device is set, we need to use its procs. */
8602
324k
    if (pgs->trans_device != NULL) {
8603
750
        trans_device = pgs->trans_device;
8604
323k
    } else {
8605
323k
        trans_device = dev;
8606
323k
    }
8607
324k
    ncomps = trans_device->color_info.num_components;
8608
8609
    /* map to the color model */
8610
324k
    procs = dev_proc(trans_device, get_color_mapping_procs)(trans_device, &map_dev);
8611
324k
    procs->map_gray(map_dev, gray, cm_comps);
8612
8613
324k
    nc = ncomps;
8614
324k
    if (device_encodes_tags(trans_device))
8615
0
        nc--;
8616
324k
    if (pdf14_state_opaque(trans_device, pgs)) {
8617
614
        for (i = 0; i < nc; i++)
8618
307
            cv[i] = frac2cv(gx_map_color_frac(pgs, cm_comps[i], effective_transfer[i]));
8619
324k
    } else {
8620
648k
        for (i = 0; i < nc; i++)
8621
324k
            cv[i] = frac2cv(cm_comps[i]);
8622
324k
    }
8623
    /* Copy tags untransformed. */
8624
324k
    if (nc < ncomps)
8625
0
        cv[nc] = cm_comps[nc];
8626
8627
    /* If output device supports devn, we need to make sure we send it the
8628
       proper color type.  We now support Gray + spots as devn colors */
8629
324k
    if (dev_proc(trans_device, dev_spec_op)(trans_device, gxdso_supports_devn, NULL, 0)) {
8630
648k
        for (i = 0; i < ncomps; i++)
8631
324k
            pdc->colors.devn.values[i] = cv[i];
8632
324k
        pdc->type = gx_dc_type_devn;
8633
324k
    } else {
8634
        /* encode as a color index */
8635
343
        color = dev_proc(trans_device, encode_color)(trans_device, cv);
8636
        /* check if the encoding was successful; we presume failure is rare */
8637
343
        if (color != gx_no_color_index)
8638
343
            color_set_pure(pdc, color);
8639
343
    }
8640
324k
}
8641
8642
static  void
8643
pdf14_cmap_rgb_direct(frac r, frac g, frac b, gx_device_color * pdc,
8644
     const gs_gstate * pgs, gx_device * dev, gs_color_select_t select)
8645
3.72M
{
8646
3.72M
    int i, nc, ncomps;
8647
3.72M
    frac cm_comps[GX_DEVICE_COLOR_MAX_COMPONENTS];
8648
3.72M
    gx_color_value cv[GX_DEVICE_COLOR_MAX_COMPONENTS];
8649
3.72M
    gx_color_index color;
8650
3.72M
    gx_device *trans_device;
8651
3.72M
    const gx_device *map_dev;
8652
3.72M
    const gx_cm_color_map_procs *procs;
8653
8654
    /* If trans device is set, we need to use its procs. */
8655
3.72M
    if (pgs->trans_device != NULL){
8656
4.59k
        trans_device = pgs->trans_device;
8657
3.72M
    } else {
8658
3.72M
        trans_device = dev;
8659
3.72M
    }
8660
3.72M
    ncomps = trans_device->color_info.num_components;
8661
    /* map to the color model */
8662
3.72M
    procs = dev_proc(trans_device, get_color_mapping_procs)(trans_device, &map_dev);
8663
3.72M
    procs->map_rgb(map_dev, pgs, r, g, b, cm_comps);
8664
8665
3.72M
    nc = ncomps;
8666
3.72M
    if (device_encodes_tags(trans_device))
8667
0
        nc--;
8668
3.72M
    if (pdf14_state_opaque(trans_device, pgs)) {
8669
9.97M
        for (i = 0; i < nc; i++)
8670
7.48M
            cv[i] = frac2cv(gx_map_color_frac(pgs, cm_comps[i], effective_transfer[i]));
8671
2.49M
    } else {
8672
4.92M
        for (i = 0; i < nc; i++)
8673
3.69M
            cv[i] = frac2cv(cm_comps[i]);
8674
1.23M
    }
8675
    /* Copy tags untransformed. */
8676
3.72M
    if (nc < ncomps)
8677
0
        cv[nc] = cm_comps[nc];
8678
8679
    /* If output device supports devn, we need to make sure we send it the
8680
       proper color type.  We now support RGB + spots as devn colors */
8681
3.72M
    if (dev_proc(trans_device, dev_spec_op)(trans_device, gxdso_supports_devn, NULL, 0)) {
8682
14.9M
        for (i = 0; i < ncomps; i++)
8683
11.1M
            pdc->colors.devn.values[i] = cv[i];
8684
3.72M
        pdc->type = gx_dc_type_devn;
8685
3.72M
    } else {
8686
        /* encode as a color index */
8687
0
        color = dev_proc(trans_device, encode_color)(trans_device, cv);
8688
        /* check if the encoding was successful; we presume failure is rare */
8689
0
        if (color != gx_no_color_index)
8690
0
            color_set_pure(pdc, color);
8691
0
    }
8692
3.72M
}
8693
8694
static  void
8695
pdf14_cmap_cmyk_direct(frac c, frac m, frac y, frac k, gx_device_color * pdc,
8696
     const gs_gstate * pgs, gx_device * dev, gs_color_select_t select,
8697
     const gs_color_space *pcs)
8698
2.86M
{
8699
2.86M
    int i, nc, ncomps;
8700
2.86M
    frac cm_comps[GX_DEVICE_COLOR_MAX_COMPONENTS];
8701
2.86M
    gx_color_value cv[GX_DEVICE_COLOR_MAX_COMPONENTS];
8702
2.86M
    gx_color_index color;
8703
2.86M
    gx_device *trans_device;
8704
2.86M
    const gx_device *map_dev;
8705
2.86M
    const gx_cm_color_map_procs *procs;
8706
8707
8708
    /* If trans device is set, we need to use its procs. */
8709
2.86M
    if (pgs->trans_device != NULL){
8710
452k
        trans_device = pgs->trans_device;
8711
2.41M
    } else {
8712
2.41M
        trans_device = dev;
8713
2.41M
    }
8714
2.86M
    ncomps = trans_device->color_info.num_components;
8715
8716
    /* Map to the color model. Transfer function is only used
8717
       if we are drawing with an opaque color. */
8718
2.86M
    procs = dev_proc(trans_device, get_color_mapping_procs)(trans_device, &map_dev);
8719
2.86M
    procs->map_cmyk(map_dev, c, m, y, k, cm_comps);
8720
8721
2.86M
    nc = ncomps;
8722
2.86M
    if (device_encodes_tags(trans_device))
8723
0
        nc--;
8724
2.86M
    if (pdf14_state_opaque(trans_device, pgs)) {
8725
9.08M
        for (i = 0; i < nc; i++)
8726
7.26M
            cv[i] = frac2cv(gx_map_color_frac(pgs, cm_comps[i], effective_transfer[i]));
8727
1.81M
    } else {
8728
5.25M
        for (i = 0; i < nc; i++)
8729
4.20M
            cv[i] = frac2cv(cm_comps[i]);
8730
1.05M
    }
8731
    /* Copy tags untransformed. */
8732
2.86M
    if (nc < ncomps)
8733
0
        cv[nc] = cm_comps[nc];
8734
8735
    /* if output device supports devn, we need to make sure we send it the
8736
       proper color type */
8737
2.86M
    if (dev_proc(trans_device, dev_spec_op)(trans_device, gxdso_supports_devn, NULL, 0)) {
8738
14.3M
        for (i = 0; i < ncomps; i++)
8739
11.4M
            pdc->colors.devn.values[i] = cv[i];
8740
2.86M
        pdc->type = gx_dc_type_devn;
8741
2.86M
    } else {
8742
        /* encode as a color index */
8743
0
        color = dev_proc(trans_device, encode_color)(trans_device, cv);
8744
        /* check if the encoding was successful; we presume failure is rare */
8745
0
        if (color != gx_no_color_index)
8746
0
            color_set_pure(pdc, color);
8747
0
    }
8748
2.86M
}
8749
8750
static int
8751
pdf14_get_num_spots(gx_device * dev)
8752
366k
{
8753
366k
    cmm_dev_profile_t *dev_profile;
8754
366k
    cmm_profile_t *icc_profile;
8755
366k
    gsicc_rendering_param_t render_cond;
8756
8757
366k
    dev_proc(dev, get_profile)(dev, &dev_profile);
8758
366k
    gsicc_extract_profile(GS_UNKNOWN_TAG, dev_profile, &icc_profile,
8759
366k
        &render_cond);
8760
366k
    return dev->color_info.num_components - icc_profile->num_comps - device_encodes_tags(dev);
8761
366k
}
8762
8763
static  void
8764
pdf14_cmap_separation_direct(frac all, gx_device_color * pdc, const gs_gstate * pgs,
8765
                 gx_device * dev, gs_color_select_t select, const gs_color_space *pcs)
8766
40.8k
{
8767
40.8k
    int i, nc, ncomps = dev->color_info.num_components;
8768
40.8k
    int num_spots = pdf14_get_num_spots(dev);
8769
40.8k
    bool additive = dev->color_info.polarity == GX_CINFO_POLARITY_ADDITIVE;
8770
40.8k
    frac cm_comps[GX_DEVICE_COLOR_MAX_COMPONENTS];
8771
40.8k
    gx_color_value cv[GX_DEVICE_COLOR_MAX_COMPONENTS];
8772
40.8k
    gx_color_index color;
8773
8774
40.8k
    nc = ncomps;
8775
40.8k
    if (device_encodes_tags(dev))
8776
0
        nc--;
8777
8778
40.8k
    if (pgs->color_component_map.sep_type == SEP_ALL) {
8779
0
        frac comp_value = all;
8780
8781
0
        for (i = pgs->color_component_map.num_colorants - 1; i >= nc - num_spots; i--)
8782
0
            cm_comps[i] = comp_value;
8783
        /*
8784
         * Invert the photometric interpretation for additive
8785
         * color spaces because separations are always subtractive.
8786
         */
8787
0
        if (additive)
8788
0
            comp_value = frac_1 - comp_value;
8789
        /* Use the "all" value for all components */
8790
0
        for (; i >= 0; i--)
8791
0
            cm_comps[i] = comp_value;
8792
40.8k
    } else {
8793
40.8k
        frac comp_value[GX_DEVICE_COLOR_MAX_COMPONENTS];
8794
8795
40.8k
        if (pgs->color_component_map.sep_type == SEP_NONE) {
8796
0
            color_set_null(pdc);
8797
0
            return;
8798
0
        }
8799
8800
        /* map to the color model */
8801
81.7k
        for (i = pgs->color_component_map.num_components - 1; i >= 0; i--)
8802
40.8k
            comp_value[i] = all;
8803
40.8k
        map_components_to_colorants(comp_value, &(pgs->color_component_map), cm_comps);
8804
40.8k
    }
8805
8806
    /* apply the transfer function(s); convert to color values */
8807
40.8k
    if (additive) {
8808
0
        for (i = 0; i < nc; i++)
8809
0
            cv[i] = frac2cv(gx_map_color_frac(pgs, cm_comps[i], effective_transfer[i]));
8810
        /* We are in an additive mode (blend space) and drawing with a sep color
8811
        into a sep device.  Make sure we are drawing "white" with the process
8812
        colorants, but only if we are not in an ALL case */
8813
0
        if (pgs->color_component_map.sep_type != SEP_ALL)
8814
0
            for (i = 0; i < nc - num_spots; i++)
8815
0
                cv[i] = gx_max_color_value;
8816
0
    } else
8817
204k
        for (i = 0; i < nc; i++)
8818
163k
            cv[i] = frac2cv(frac_1 - gx_map_color_frac(pgs, (frac)(frac_1 - cm_comps[i]), effective_transfer[i]));
8819
    /* Copy tags untransformed. */
8820
40.8k
    if (nc < ncomps)
8821
0
        cv[nc] = cm_comps[nc];
8822
8823
    /* if output device supports devn, we need to make sure we send it the
8824
       proper color type */
8825
40.8k
    if (dev_proc(dev, dev_spec_op)(dev, gxdso_supports_devn, NULL, 0)) {
8826
204k
        for (i = 0; i < ncomps; i++)
8827
163k
            pdc->colors.devn.values[i] = cv[i];
8828
40.8k
        pdc->type = gx_dc_type_devn;
8829
40.8k
    } else {
8830
        /* encode as a color index */
8831
0
        color = dev_proc(dev, encode_color)(dev, cv);
8832
        /* check if the encoding was successful; we presume failure is rare */
8833
0
        if (color != gx_no_color_index)
8834
0
            color_set_pure(pdc, color);
8835
0
    }
8836
40.8k
}
8837
8838
static  void
8839
pdf14_cmap_devicen_direct(const frac * pcc,
8840
    gx_device_color * pdc, const gs_gstate * pgs, gx_device * dev,
8841
    gs_color_select_t select, const gs_color_space *pcs)
8842
325k
{
8843
325k
    int i, nc, ncomps = dev->color_info.num_components;
8844
325k
    int num_spots = pdf14_get_num_spots(dev);
8845
325k
    frac cm_comps[GX_DEVICE_COLOR_MAX_COMPONENTS];
8846
325k
    gx_color_value cv[GX_DEVICE_COLOR_MAX_COMPONENTS];
8847
325k
    gx_color_index color;
8848
325k
    gx_device *trans_device;
8849
8850
     /*  We may be coming from the clist writer which often forwards us the
8851
         target device. If this occurs we actually need to get to the color
8852
         space defined by the transparency group and we use the operators
8853
         defined by the transparency device to do the job.
8854
       */
8855
325k
    if (pgs->trans_device != NULL){
8856
325k
        trans_device = pgs->trans_device;
8857
325k
    } else {
8858
0
        trans_device = dev;
8859
0
    }
8860
325k
    ncomps = trans_device->color_info.num_components;
8861
    /* map to the color model */
8862
325k
    map_components_to_colorants(pcc, &(pgs->color_component_map), cm_comps);
8863
8864
325k
    nc = ncomps;
8865
325k
    if (device_encodes_tags(trans_device))
8866
0
        nc--;
8867
    /* apply the transfer function(s); convert to color values */
8868
325k
    if (trans_device->color_info.polarity == GX_CINFO_POLARITY_ADDITIVE) {
8869
0
        for (i = 0; i < nc; i++)
8870
0
            cv[i] = frac2cv(gx_map_color_frac(pgs, cm_comps[i], effective_transfer[i]));
8871
        /* We are in an additive mode (blend space) and drawing with a sep color
8872
        into a sep device.  Make sure we are drawing "white" with the process
8873
        colorants */
8874
0
        for (i = 0; i < nc - num_spots; i++)
8875
0
            cv[i] = gx_max_color_value;
8876
0
    } else
8877
1.62M
        for (i = 0; i < nc; i++)
8878
1.30M
            cv[i] = frac2cv(frac_1 - gx_map_color_frac(pgs, (frac)(frac_1 - cm_comps[i]), effective_transfer[i]));
8879
    /* Copy tags untransformed. */
8880
325k
    if (nc < ncomps)
8881
0
        cv[nc] = cm_comps[nc];
8882
8883
    /* if output device supports devn, we need to make sure we send it the
8884
       proper color type */
8885
325k
    if (dev_proc(trans_device, dev_spec_op)(trans_device, gxdso_supports_devn, NULL, 0)) {
8886
1.62M
        for (i = 0; i < ncomps; i++)
8887
1.30M
            pdc->colors.devn.values[i] = cv[i];
8888
325k
        pdc->type = gx_dc_type_devn;
8889
325k
    } else {
8890
    /* encode as a color index */
8891
0
        color = dev_proc(trans_device, encode_color)(trans_device, cv);
8892
        /* check if the encoding was successful; we presume failure is rare */
8893
0
        if (color != gx_no_color_index)
8894
0
            color_set_pure(pdc, color);
8895
0
    }
8896
325k
}
8897
8898
static  bool
8899
pdf14_cmap_is_halftoned(const gs_gstate * pgs, gx_device * dev)
8900
10.4k
{
8901
10.4k
    return false;
8902
10.4k
}
8903
8904
static  const gx_color_map_procs *
8905
pdf14_get_cmap_procs(const gs_gstate *pgs, const gx_device * dev)
8906
147k
{
8907
    /* The pdf14 marking device itself is always continuous tone. */
8908
147k
    return &pdf14_cmap_many;
8909
147k
}
8910
8911
static int
8912
pdf14_dev_spec_op(gx_device *pdev, int dev_spec_op,
8913
                  void *data, int size)
8914
18.6M
{
8915
18.6M
    pdf14_device * p14dev = (pdf14_device *)pdev;
8916
8917
18.6M
    if (dev_spec_op == gxdso_supports_pattern_transparency)
8918
668k
        return 1;
8919
18.0M
    if (dev_spec_op == gxdso_pattern_shfill_doesnt_need_path)
8920
1.54k
        return 1;
8921
18.0M
    if (dev_spec_op == gxdso_is_pdf14_device) {
8922
53
        if (data != NULL && size == sizeof(gx_device *))
8923
51
            *(gx_device **)data = pdev;
8924
53
        return 1;
8925
53
    }
8926
18.0M
    if (dev_spec_op == gxdso_device_child) {
8927
0
        pdf14_device *dev = (pdf14_device *)pdev;
8928
0
        gxdso_device_child_request *d = (gxdso_device_child_request *)data;
8929
0
        if (d->target == pdev) {
8930
0
            d->target = dev->target;
8931
0
            return 1;
8932
0
        }
8933
0
    }
8934
18.0M
    if (dev_spec_op == gxdso_supports_devn
8935
18.0M
     || dev_spec_op == gxdso_skip_icc_component_validation) {
8936
8.87M
        cmm_dev_profile_t *dev_profile;
8937
8.87M
        int code;
8938
8.87M
        code = dev_proc(pdev, get_profile)((gx_device*) pdev, &dev_profile);
8939
8.87M
        if (code == 0) {
8940
8.87M
            return dev_profile->supports_devn;
8941
8.87M
        } else {
8942
0
            return 0;
8943
0
        }
8944
8.87M
    }
8945
9.14M
    if (dev_spec_op == gxdso_pdf14_sep_device) {
8946
747
        pdf14_device* dev = (pdf14_device*)pdev;
8947
8948
747
        if (strcmp(dev->dname, "pdf14cmykspot") == 0 ||
8949
747
            strcmp(dev->dname, "pdf14clistcmykspot") == 0)
8950
747
            return 1;
8951
0
        return 0;
8952
747
    }
8953
9.14M
    if (dev_spec_op == gxdso_is_encoding_direct)
8954
0
        return 1;
8955
8956
    /* We don't want to pass on these spec_ops either, because the child might respond
8957
     * with an inappropriate response when the PDF14 device is active. For example; the
8958
     * JPEG passthrough will give utterly wrong results if we pass that to a device which
8959
     * supports JPEG passthrough, because the pdf14 device needs to render the image.
8960
     */
8961
9.14M
    if (dev_spec_op == gxdso_in_pattern_accumulator)
8962
15.6k
        return 0;
8963
9.12M
    if (dev_spec_op == gxdso_copy_color_is_fast)
8964
0
        return 0;
8965
9.12M
    if(dev_spec_op == gxdso_pattern_handles_clip_path)
8966
1.54k
        return 0;
8967
9.12M
    if(dev_spec_op == gxdso_supports_hlcolor)
8968
78
        return 0;
8969
9.12M
    if(dev_spec_op == gxdso_pattern_can_accum)
8970
22.0k
        return 0;
8971
9.10M
    if(dev_spec_op == gxdso_JPEG_passthrough_query)
8972
58
        return 0;
8973
9.10M
    if (dev_spec_op == gxdso_overprint_active) {
8974
890k
        if (p14dev->pclist_device != NULL) {
8975
888k
            return dev_proc(p14dev->pclist_device, dev_spec_op)(p14dev->pclist_device, dev_spec_op, data, size);
8976
888k
        } else {
8977
1.53k
            return p14dev->overprint || p14dev->stroke_overprint;
8978
1.53k
        }
8979
890k
    }
8980
8981
    /* These should be coming only from the abuf device
8982
       during fill-stroke operation. Any other use will
8983
       result in bad things. */
8984
8.21M
    if (dev_spec_op == gxdso_abuf_optrans)
8985
0
    {
8986
0
        int ret = p14dev->op_state;
8987
0
        overprint_abuf_state_t *state_data = (overprint_abuf_state_t *)data;
8988
0
        pdf14_abuf_state_t *pdf14_abuf = (pdf14_abuf_state_t *)&state_data->storage[0];
8989
0
        const gs_gstate* cpgs = state_data->pgs;
8990
0
        union {
8991
0
            const gs_gstate* cpgs;
8992
0
            gs_gstate* pgs;
8993
0
        } const_breaker;
8994
0
        gs_gstate* pgs;
8995
0
        int code = 0;
8996
0
        int code1 = 0;
8997
8998
        /* A compile time assert to check our storage types are appropriately sized. */
8999
0
        typedef char compile_time_assert[sizeof(pdf14_abuf_state_t) <= sizeof(state_data->storage) ? 1 : -1];
9000
9001
        /* I don't really like this, but there is no easy way around it. The device
9002
           in the pgs needs to be the pdf14 device to ensure that the compositor
9003
           actions occur with the gs_transparency calls. We have to call at that
9004
           level (as opposed to the gx_ or pdf14_ level) to ensure that the clist
9005
           operations are invoked. We could change the gs_trans calls to take a
9006
           device to avoid this dance but that changes the device procs. */
9007
0
        gx_device *curr_dev;
9008
9009
0
        const_breaker.cpgs = cpgs;
9010
0
        pgs = const_breaker.pgs;
9011
0
        curr_dev = pgs->device;
9012
0
        pgs->device = pdev;
9013
9014
0
        switch (state_data->op_trans) {
9015
9016
0
            case OP_FS_TRANS_PREFILL:
9017
0
                pdf14_abuf->orig_state = p14dev->op_state;
9018
0
                pdf14_abuf->blend_mode = cpgs->blend_mode;
9019
0
                pdf14_abuf->fill_alpha = cpgs->fillconstantalpha;
9020
0
                pdf14_abuf->stroke_alpha = cpgs->strokeconstantalpha;
9021
0
                pdf14_abuf->pgs = pgs; /* ref count? only used for this back and forth so ok */
9022
0
                if (pdf14_abuf->fill_alpha == 1.0 && pdf14_abuf->stroke_alpha == 1.0 &&
9023
0
                    pdf14_abuf->blend_mode == BLEND_MODE_Normal)
9024
0
                    pdf14_abuf->group_needed = false;
9025
0
                else
9026
0
                    pdf14_abuf->group_needed = true;
9027
9028
0
                if (pdf14_abuf->group_needed) {
9029
0
                    code = pdf14_fill_stroke_prefill(pdev, pgs, state_data->ppath,
9030
0
                        state_data->pcpath, pdf14_abuf->fill_alpha,
9031
0
                        pdf14_abuf->stroke_alpha, pdf14_abuf->blend_mode,
9032
0
                        &(pdf14_abuf->op_ca_eq_CA), &(pdf14_abuf->path_empty),
9033
0
                        state_data->alpha_buf_path_scale);
9034
0
                    if (code < 0)
9035
0
                        goto cleanup;
9036
0
                }
9037
0
                code = gs_update_trans_marking_params(pgs);
9038
0
                break;
9039
9040
0
            case OP_FS_TRANS_PRESTROKE:
9041
0
                if (pdf14_abuf->group_needed) {
9042
0
                    pdf14_fill_stroke_prestroke(pdev, pdf14_abuf->pgs, pdf14_abuf->stroke_alpha,
9043
0
                                                pdf14_abuf->blend_mode, pdf14_abuf->op_ca_eq_CA);
9044
0
                }
9045
0
                code = gs_update_trans_marking_params(pgs);
9046
0
                break;
9047
9048
0
            case OP_FS_TRANS_POSTSTROKE:
9049
0
                if (pdf14_abuf->group_needed) {
9050
0
                    code = pdf14_fill_stroke_poststroke(pdev, pdf14_abuf->pgs, pdf14_abuf->fill_alpha,
9051
0
                                                        pdf14_abuf->op_ca_eq_CA);
9052
0
                }
9053
0
                if (code >= 0)
9054
0
                    code = gs_update_trans_marking_params(pgs);
9055
9056
                /* fallthrough */
9057
9058
0
            case OP_FS_TRANS_CLEANUP:
9059
0
cleanup:
9060
0
                if (pdf14_abuf->group_needed) {
9061
0
                    code1 = pdf14_fill_stroke_cleanup(pdev, pdf14_abuf->pgs, pdf14_abuf->fill_alpha,
9062
0
                        pdf14_abuf->stroke_alpha, pdf14_abuf->blend_mode, (PDF14_OP_FS_STATE)pdf14_abuf->orig_state);
9063
0
                    if (code1 < 0)
9064
0
                        code = gs_note_error(gs_error_Fatal);
9065
0
                }
9066
0
                break;
9067
0
        }
9068
0
        pgs->device = curr_dev;
9069
9070
0
        return (code < 0) ? code : ret;
9071
0
    }
9072
9073
8.21M
    if (dev_spec_op == gxdso_in_smask_construction)
9074
884k
        return p14dev->in_smask_construction > 0;
9075
7.32M
    if (dev_spec_op == gxdso_in_smask)
9076
6.78M
        return p14dev->in_smask_construction > 0 || p14dev->depth_within_smask;
9077
537k
    if (dev_spec_op == gxdso_replacecolor) {
9078
507k
        gx_device *tdev = p14dev->target;
9079
507k
        cmm_dev_profile_t *tdev_profile;
9080
507k
        int code;
9081
9082
         /* If in a softmask or softmask construction do not allow
9083
           replacement. */
9084
507k
        if (p14dev->in_smask_construction > 0 || p14dev->depth_within_smask)
9085
23.3k
            return 0;
9086
9087
        /* If the target CS is different than the pdf14 profile add this information
9088
           for the target device that will be handling the replacement. While not
9089
           perfect this at least lets you do the replacehment and have some information
9090
           about what the situation is. */
9091
483k
        code = dev_proc(tdev, get_profile)((gx_device*) tdev, &tdev_profile);
9092
483k
        if (code != 0)
9093
0
            return 0;
9094
9095
483k
        if (tdev_profile->device_profile[GS_DEFAULT_DEVICE_PROFILE]->hashcode !=
9096
483k
            p14dev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE]->hashcode) {
9097
14.1k
            color_replace_t* replace_data = (color_replace_t*)data;
9098
            /* Not ref counted as data is on the stack (from gx_remap_ICC) and we should be fine during this
9099
               color remap operation. */
9100
14.1k
            replace_data->pdf14_iccprofile = p14dev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE];
9101
14.1k
        }
9102
9103
        /* Pass on to target device */
9104
483k
        return dev_proc(p14dev->target, dev_spec_op)(p14dev->target, dev_spec_op, data, size);
9105
483k
    }
9106
30.2k
    if (dev_spec_op == gxdso_device_insert_child) {
9107
0
        gx_device *tdev = p14dev->target;
9108
0
        p14dev->target = (gx_device *)data;
9109
0
        rc_increment(p14dev->target);
9110
0
        rc_decrement_only(tdev, "pdf14_dev_spec_op");
9111
0
        return 0;
9112
0
    }
9113
30.2k
    if (dev_spec_op == gxdso_interpolate_threshold)
9114
865
        return p14dev->interpolate_threshold;
9115
9116
29.4k
    if (dev_spec_op == gxdso_overprintsim_state) {
9117
865
        unsigned char *data_uchar = (unsigned char *) data;
9118
865
        data_uchar[0] = (unsigned char) p14dev->overprint_sim;
9119
865
        if (p14dev->ctx != NULL)
9120
0
            data_uchar[1] = (unsigned char)p14dev->ctx->num_spots; /* pdf14 page device */
9121
865
        else
9122
865
            data_uchar[1] = (unsigned char)p14dev->devn_params.page_spot_colors;  /* pdf14 clist device */
9123
865
        return 1;
9124
865
    }
9125
9126
28.5k
    return dev_proc(p14dev->target, dev_spec_op)(p14dev->target, dev_spec_op, data, size);
9127
29.4k
}
9128
9129
/* Needed to set color monitoring in the target device's profile */
9130
int
9131
gs_pdf14_device_color_mon_set(gx_device *pdev, bool monitoring)
9132
0
{
9133
0
    pdf14_device * p14dev = (pdf14_device *)pdev;
9134
0
    gx_device *targ = p14dev->target;
9135
0
    cmm_dev_profile_t *dev_profile;
9136
0
    int code = dev_proc(targ, get_profile)((gx_device*) targ, &dev_profile);
9137
9138
0
    if (code == 0)
9139
0
        dev_profile->pageneutralcolor = monitoring;
9140
0
    return code;
9141
0
}
9142
9143
static int
9144
gs_pdf14_device_push(gs_memory_t *mem, gs_gstate * pgs,
9145
        gx_device ** pdev, gx_device * target, const gs_pdf14trans_t * pdf14pct)
9146
99.4k
{
9147
99.4k
    pdf14_device dev_proto;
9148
99.4k
    pdf14_device * p14dev;
9149
99.4k
    int code;
9150
99.4k
    bool has_tags;
9151
99.4k
    cmm_profile_t *icc_profile;
9152
99.4k
    gsicc_rendering_param_t render_cond;
9153
99.4k
    cmm_dev_profile_t *dev_profile;
9154
99.4k
    uchar k;
9155
99.4k
    int max_bitmap;
9156
99.4k
    bool use_pdf14_accum = false;
9157
99.4k
    bool deep;
9158
9159
    /* Guard against later seg faults, this should not be possible */
9160
99.4k
    if (target == NULL)
9161
0
        return gs_throw_code(gs_error_Fatal);
9162
9163
99.4k
    has_tags = device_encodes_tags(target);
9164
99.4k
    deep = device_is_deep(target);
9165
99.4k
    max_bitmap = target->space_params.MaxBitmap == 0 ? MAX_BITMAP :
9166
99.4k
                                 target->space_params.MaxBitmap;
9167
    /* If the device is not a printer class device, it won't support saved-pages */
9168
    /* and so we may need to make a clist device in order to prevent very large  */
9169
    /* or high resolution pages from having allocation problems.                 */
9170
    /* We use MaxBitmap to decide when a clist is needed.*/
9171
99.4k
    if (dev_proc(target, dev_spec_op)(target, gxdso_supports_saved_pages, NULL, 0) <= 0 &&
9172
99.4k
        gx_device_is_pattern_clist(target) == 0 &&
9173
99.4k
        gx_device_is_pattern_accum(target) == 0 &&
9174
99.4k
        gs_device_is_memory(target) == 0) {
9175
9176
0
        uint32_t pdf14_trans_buffer_size =
9177
0
              (ESTIMATED_PDF14_ROW_SPACE(max(1, target->width),
9178
0
                                         target->color_info.num_components,
9179
0
                                         deep ? 16 : 8) >> 3);
9180
9181
0
        if (target->height < max_ulong / pdf14_trans_buffer_size)
9182
0
                pdf14_trans_buffer_size *= target->height;
9183
0
        else
9184
0
                max_bitmap = 0;     /* Force decision to clist */
9185
0
        if (pdf14_trans_buffer_size > max_bitmap)
9186
0
            use_pdf14_accum = true;
9187
0
    }
9188
99.4k
    code = dev_proc(target, get_profile)(target,  &dev_profile);
9189
99.4k
    if (code < 0)
9190
0
        return code;
9191
99.4k
    gsicc_extract_profile(GS_UNKNOWN_TAG, dev_profile, &icc_profile,
9192
99.4k
                          &render_cond);
9193
99.4k
    if_debug0m('v', mem, "[v]gs_pdf14_device_push\n");
9194
9195
    /* Get the proto from which to copy the device. This will always
9196
     * ignore tags! */
9197
99.4k
    code = get_pdf14_device_proto(target, &dev_proto, pgs,
9198
99.4k
                                  pdf14pct, use_pdf14_accum);
9199
99.4k
    if (code < 0)
9200
0
        return code;
9201
99.4k
    code = gs_copydevice((gx_device **) &p14dev,
9202
99.4k
                         (const gx_device *) &dev_proto, mem);
9203
99.4k
    if (code < 0)
9204
0
        return code;
9205
9206
    /* Copying the params across will add tags to the colorinfo as required. */
9207
99.4k
    code = gs_pdf14_device_copy_params((gx_device *)p14dev, target);
9208
99.4k
    if (code < 0)
9209
0
        return code;
9210
9211
99.4k
    gx_device_set_target((gx_device_forward *)p14dev, target);
9212
99.4k
    p14dev->pad = target->pad;
9213
99.4k
    p14dev->log2_align_mod = target->log2_align_mod;
9214
99.4k
    if (pdf14pct->params.overprint_sim_push && pdf14pct->params.num_spot_colors_int > 0 && target->num_planar_planes == 0)
9215
0
        p14dev->num_planar_planes = p14dev->color_info.num_components + pdf14pct->params.num_spot_colors_int;
9216
99.4k
    else
9217
99.4k
        p14dev->num_planar_planes = target->num_planar_planes;
9218
99.4k
    p14dev->interpolate_threshold = dev_proc(target, dev_spec_op)(target, gxdso_interpolate_threshold, NULL, 0);
9219
9220
99.4k
    p14dev->alpha = 1.0;
9221
99.4k
    p14dev->shape = 1.0;
9222
99.4k
    p14dev->opacity = 1.0;
9223
99.4k
    p14dev->fillconstantalpha = 1.0;
9224
99.4k
    p14dev->strokeconstantalpha = 1.0;
9225
9226
    /* Simulated overprint case.  We have to use CMYK-based profile.  Also if the target
9227
       profile is NCLR, we are going to use a pdf14 device that is CMYK based and
9228
       do the mapping to the NCLR profile when the put_image occurs */
9229
99.4k
    if ((p14dev->overprint_sim && icc_profile->data_cs != gsCMYK) ||
9230
99.4k
        icc_profile->data_cs == gsNCHANNEL) {
9231
0
        gsicc_adjust_profile_rc(pgs->icc_manager->default_cmyk, 1, "gs_pdf14_device_push");
9232
0
        gsicc_adjust_profile_rc(p14dev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE],
9233
0
            -1, "gs_pdf14_device_push");
9234
0
        p14dev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE] = pgs->icc_manager->default_cmyk;
9235
99.4k
    } else {
9236
        /* If the target profile was CIELAB (and we are not using a blend CS),
9237
           then overide with default RGB for proper blending.  During put_image
9238
           we will convert from RGB to CIELAB.  Need to check that we have a
9239
           default profile, which will not be the case if we are coming from the clist reader */
9240
99.4k
        if ((icc_profile->data_cs == gsCIELAB || icc_profile->islab)
9241
99.4k
            && pgs->icc_manager->default_rgb != NULL &&
9242
99.4k
            p14dev->blend_cs_state == PDF14_BLEND_CS_UNSPECIFIED) {
9243
0
            p14dev->blend_cs_state = PDF14_BLEND_CS_TARGET_CIELAB;
9244
0
            gsicc_adjust_profile_rc(pgs->icc_manager->default_rgb, 1, "gs_pdf14_device_push");
9245
0
            gsicc_adjust_profile_rc(p14dev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE],
9246
0
                -1, "gs_pdf14_device_push");
9247
0
            p14dev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE] = pgs->icc_manager->default_rgb;
9248
0
        }
9249
99.4k
    }
9250
9251
99.4k
    if (pdf14pct->params.overprint_sim_push &&
9252
99.4k
        pdf14pct->params.num_spot_colors_int > 0) {
9253
0
        p14dev->procs.update_spot_equivalent_colors = pdf14_update_spot_equivalent_colors;
9254
0
        p14dev->procs.ret_devn_params = pdf14_ret_devn_params;
9255
0
        p14dev->op_pequiv_cmyk_colors.all_color_info_valid = false;
9256
0
        p14dev->target_support_devn = p14dev->icc_struct->supports_devn;
9257
0
        p14dev->icc_struct->supports_devn = true;  /* Reset when pdf14 device is disabled */
9258
0
    }
9259
9260
    /* The number of color planes should not exceed that of the target.
9261
       Unless we are using a blend CS */
9262
99.4k
    if (!(p14dev->blend_cs_state != PDF14_BLEND_CS_UNSPECIFIED || p14dev->overprint_sim)) {
9263
99.4k
        if (p14dev->color_info.num_components > target->color_info.num_components - device_encodes_tags(target) + device_encodes_tags((gx_device *)p14dev))
9264
0
            p14dev->color_info.num_components = target->color_info.num_components - device_encodes_tags(target) + device_encodes_tags((gx_device *)p14dev);
9265
99.4k
        if (p14dev->color_info.max_components > target->color_info.max_components)
9266
99.4k
            p14dev->color_info.max_components = target->color_info.max_components;
9267
99.4k
    }
9268
99.4k
    p14dev->color_info.depth = p14dev->color_info.num_components * (8<<deep);
9269
    /* If we have a tag device then go ahead and do a special encoder
9270
       decoder for the pdf14 device to make sure we maintain this
9271
       information in the encoded color information.  We could use
9272
       the target device's methods but the PDF14 device has to maintain
9273
       8 bit color always and we could run into other issues if the number
9274
       of colorants became large.  If we need to do compressed color with
9275
       tags that will be a special project at that time */
9276
99.4k
    if (deep) {
9277
0
        set_dev_proc(p14dev, encode_color, pdf14_encode_color16);
9278
0
        set_dev_proc(p14dev, decode_color, pdf14_decode_color16);
9279
0
    }
9280
99.4k
    if (has_tags) {
9281
0
        set_dev_proc(p14dev, encode_color, deep ? pdf14_encode_color16_tag : pdf14_encode_color_tag);
9282
0
    }
9283
    /* if the device has separations already defined (by SeparationOrderNames) */
9284
    /* we need to copy them (allocating new names) so the colorants are in the */
9285
    /* same order as the target device.                                        */
9286
99.4k
    if (dev_proc(target, dev_spec_op)(target, gxdso_supports_devn, NULL, 0)) {
9287
99.4k
        code = devn_copy_params(target, (gx_device *)p14dev);
9288
99.4k
        if (code < 0) {
9289
0
            *pdev = NULL;
9290
0
            gx_device_set_target((gx_device_forward *)p14dev, NULL);
9291
0
            rc_decrement(p14dev, "gs_pdf14_device_push");
9292
0
            return code;
9293
0
        }
9294
99.4k
    }
9295
    /* by definition pdf14_encode _is_ standard */
9296
99.4k
    p14dev->color_info.separable_and_linear = GX_CINFO_SEP_LIN_STANDARD;
9297
99.4k
    gx_device_fill_in_procs((gx_device *)p14dev);
9298
99.4k
    p14dev->save_get_cmap_procs = pgs->get_cmap_procs;
9299
99.4k
    pgs->get_cmap_procs = pdf14_get_cmap_procs;
9300
99.4k
    gx_set_cmap_procs(pgs, (gx_device *)p14dev);
9301
9302
    /* Components shift, etc have to be based upon 8 (or 16) bit */
9303
497k
    for (k = 0; k < p14dev->color_info.num_components; k++) {
9304
398k
        p14dev->color_info.comp_bits[k] = 8<<deep;
9305
398k
        p14dev->color_info.comp_shift[k] =
9306
398k
                            (p14dev->color_info.num_components - 1 - k) * (8<<deep);
9307
398k
    }
9308
99.4k
    if (use_pdf14_accum) {
9309
        /* we will disable this device later, but we don't want to allocate large buffers */
9310
0
        p14dev->width = 1;
9311
0
        p14dev->height = 1;
9312
0
    }
9313
9314
99.4k
    p14dev->op_state = pgs->is_fill_color ? PDF14_OP_STATE_FILL : PDF14_OP_STATE_NONE;
9315
99.4k
    code = dev_proc((gx_device *) p14dev, open_device) ((gx_device *) p14dev);
9316
99.4k
    *pdev = (gx_device *) p14dev;
9317
99.4k
    pdf14_set_marking_params((gx_device *)p14dev, pgs);
9318
99.4k
    p14dev->color_model_stack = NULL;
9319
9320
    /* In case we have alphabits set */
9321
99.4k
    p14dev->color_info.anti_alias = target->color_info.anti_alias;
9322
9323
99.4k
    if (pdf14pct->params.is_pattern) {
9324
798
        code = pdf14_initialize_ctx((gx_device*)p14dev, pgs);
9325
798
        if (code < 0) {
9326
0
            *pdev = NULL;
9327
0
            gx_device_set_target((gx_device_forward *)p14dev, NULL);
9328
0
            rc_decrement(p14dev, "gs_pdf14_device_push");
9329
0
            return code;
9330
0
        }
9331
798
    }
9332
9333
    /* We should never go into this when using a blend color space */
9334
99.4k
    if (use_pdf14_accum) {
9335
0
        const gx_device_pdf14_accum *accum_proto = NULL;
9336
0
        gx_device *new_target = NULL;
9337
0
        gx_device_color pdcolor;
9338
0
        frac pconc_white = frac_1;
9339
0
        bool UsePlanarBuffer = false;
9340
9341
0
        if_debug0m('v', mem, "[v]gs_pdf14_device_push: Inserting clist device.\n");
9342
9343
        /* get the prototype for the accumulator device based on colorspace */
9344
0
        switch (target->color_info.max_components) {  /* use max_components in case is devn device */
9345
0
            case 1:
9346
0
                accum_proto = &pdf14_accum_Gray;
9347
0
                break;
9348
0
            case 3:
9349
0
                accum_proto = &pdf14_accum_RGB;
9350
0
                break;
9351
0
            case 4:
9352
0
                accum_proto = &pdf14_accum_CMYK;
9353
0
                break;
9354
0
            default:
9355
0
                accum_proto = &pdf14_accum_CMYKspot;
9356
0
                UsePlanarBuffer = true;
9357
0
        }
9358
0
        if (accum_proto == NULL ||
9359
0
            (code = gs_copydevice(&new_target, (gx_device *)accum_proto, mem->stable_memory)) < 0)
9360
0
            goto no_clist_accum;
9361
9362
0
        ((gx_device_pdf14_accum *)new_target)->save_p14dev = (gx_device *)p14dev;  /* non-clist p14dev */
9363
        /* Fill in values from the target device before opening */
9364
0
        new_target->color_info = p14dev->color_info;
9365
0
        ((gx_device_pdf14_accum *)new_target)->devn_params = p14dev->devn_params;
9366
0
        new_target->color_info.separable_and_linear = GX_CINFO_SEP_LIN;
9367
0
        set_linear_color_bits_mask_shift(new_target);
9368
0
        gs_pdf14_device_copy_params(new_target, target);
9369
0
        ((gx_device_pdf14_accum *)new_target)->page_uses_transparency = true;
9370
0
        gx_device_fill_in_procs(new_target);
9371
9372
0
        memcpy(&(new_target->space_params), &(target->space_params), sizeof(gdev_space_params));
9373
0
        max_bitmap = max(target->space_params.MaxBitmap, target->space_params.BufferSpace);
9374
0
        ((gx_device_pdf14_accum *)new_target)->space_params.BufferSpace = max_bitmap;
9375
9376
0
        new_target->PageHandlerPushed = true;
9377
0
        new_target->ObjectHandlerPushed = true;
9378
0
        new_target->NupHandlerPushed = true;
9379
        /* if the device has separations already defined (by SeparationOrderNames) */
9380
        /* we need to copy them (allocating new names) so the colorants are in the */
9381
        /* same order as the target device.                                        */
9382
0
        if (dev_proc(target, dev_spec_op)(target, gxdso_supports_devn, NULL, 0)) {
9383
0
            code = devn_copy_params(target, (gx_device *)pdev);
9384
0
            if (code < 0)
9385
0
                return code;
9386
0
        }
9387
        /* UsePlanarBuffer is true in case this is CMYKspot */
9388
0
        if ((code = gdev_prn_open_planar(new_target, UsePlanarBuffer ? new_target->color_info.num_components : 0)) < 0 ||
9389
0
             !PRINTER_IS_CLIST((gx_device_printer *)new_target)) {
9390
0
            gs_free_object(mem->stable_memory, new_target, "pdf14-accum");
9391
0
            goto no_clist_accum;
9392
0
        }
9393
        /* Do the initial fillpage into the pdf14-accum device we just created */
9394
0
        dev_proc(new_target, set_graphics_type_tag)((gx_device *)new_target, GS_UNTOUCHED_TAG);
9395
0
        if ((code = gx_remap_concrete_DGray(gs_currentcolorspace_inline((gs_gstate *)pgs),
9396
0
                                            &pconc_white,
9397
0
                                            &pdcolor, pgs, new_target, gs_color_select_all,
9398
0
                                            dev_profile)) < 0)
9399
0
            goto no_clist_accum;
9400
9401
0
        (*dev_proc(new_target, fillpage))(new_target, pgs, &pdcolor);
9402
0
        code = clist_composite(new_target, pdev, (gs_composite_t *)pdf14pct, pgs, mem, NULL);
9403
0
        if (code < 0)
9404
0
            goto no_clist_accum;
9405
9406
0
        pdf14_disable_device((gx_device *)p14dev);           /* make the non-clist device forward */
9407
0
        pdf14_close((gx_device *)p14dev);                    /* and free up the little memory it had */
9408
0
    }
9409
99.4k
    return code;
9410
9411
0
no_clist_accum:
9412
        /* FIXME: We allocated a really small p14dev, but that won't work */
9413
0
    return gs_throw_code(gs_error_Fatal); /* punt for now */
9414
99.4k
}
9415
9416
/*
9417
 * In a modest violation of good coding practice, the gs_composite_common
9418
 * fields are "known" to be simple (contain no pointers to garbage
9419
 * collected memory), and we also know the gs_pdf14trans_params_t structure
9420
 * to be simple, so we just create a trivial structure descriptor for the
9421
 * entire gs_pdf14trans_s structure.
9422
 */
9423
#define private_st_gs_pdf14trans_t()\
9424
  gs_private_st_ptrs2(st_pdf14trans, gs_pdf14trans_t, "gs_pdf14trans_t",\
9425
      st_pdf14trans_enum_ptrs, st_pdf14trans_reloc_ptrs, params.transfer_function, params.iccprofile)
9426
9427
/* GC descriptor for gs_pdf14trans_t */
9428
private_st_gs_pdf14trans_t();
9429
9430
/*
9431
 * Check for equality of two PDF 1.4 transparency compositor objects.
9432
 *
9433
 * We are currently always indicating that PDF 1.4 transparency compositors are
9434
 * equal.  Two transparency compositors may have teh same data but still
9435
 * represent separate actions.  (E.g. two PDF14_BEGIN_TRANS_GROUP compositor
9436
 * operations in a row mean that we are creating a group inside of a group.
9437
 */
9438
static  bool
9439
c_pdf14trans_equal(const gs_composite_t * pct0, const gs_composite_t * pct1)
9440
0
{
9441
0
    return false;
9442
0
}
9443
9444
#ifdef DEBUG
9445
static const char * pdf14_opcode_names[] = PDF14_OPCODE_NAMES;
9446
#endif
9447
9448
#define put_value(dp, value)\
9449
372k
    BEGIN\
9450
372k
        memcpy(dp, &value, sizeof(value));\
9451
372k
        dp += sizeof(value);\
9452
372k
    END
9453
9454
static inline int
9455
c_pdf14trans_write_ctm(byte **ppbuf, const gs_pdf14trans_params_t *pparams)
9456
44.3k
{
9457
    /* Note: We can't skip writing CTM if it is equal to pgs->ctm,
9458
       because clist writer may skip this command for some bands.
9459
       For a better result we need individual CTM for each band.
9460
     */
9461
44.3k
    byte *pbuf = *ppbuf;
9462
44.3k
    int len, code;
9463
9464
44.3k
    len = cmd_write_ctm_return_length_nodevice(&pparams->ctm);
9465
44.3k
    pbuf--; /* For cmd_write_ctm. */
9466
44.3k
    code = cmd_write_ctm(&pparams->ctm, pbuf, len);
9467
44.3k
    if (code < 0)
9468
0
        return code;
9469
44.3k
    pbuf += len + 1;
9470
44.3k
    *ppbuf = pbuf;
9471
44.3k
    return 0;
9472
44.3k
}
9473
9474
/*
9475
 * Convert a PDF 1.4 transparency compositor to string form for use by the command
9476
 * list device. This is also where we update the pdf14_needed. When set the clist
9477
 * painting procs will update the trans_bbox state for bands that are affected.
9478
*/
9479
static  int
9480
c_pdf14trans_write(const gs_composite_t * pct, byte * data, uint * psize,
9481
                   gx_device_clist_writer *cdev)
9482
108k
{
9483
108k
    const gs_pdf14trans_params_t * pparams = &((const gs_pdf14trans_t *)pct)->params;
9484
108k
    int need, avail = *psize;
9485
108k
    byte buf[MAX_CLIST_TRANSPARENCY_BUFFER_SIZE]; /* Must be large enough
9486
        to fit the data written below. We don't implement a dynamic check for
9487
        the buffer owerflow, assuming that the consistency is verified in the
9488
        coding phase. See the definition of MAX_CLIST_TRANSPARENCY_BUFFER_SIZE. */
9489
108k
    byte * pbuf = buf;
9490
108k
    int opcode = pparams->pdf14_op;
9491
108k
    int mask_size = 0;
9492
108k
    uint mask_id = 0;
9493
108k
    int code;
9494
108k
    bool found_icc;
9495
108k
    int64_t hashcode = 0;
9496
108k
    cmm_profile_t *icc_profile;
9497
108k
    gsicc_rendering_param_t render_cond;
9498
108k
    cmm_dev_profile_t *dev_profile;
9499
    /* We maintain and update working copies until we actually write the clist */
9500
108k
    int pdf14_needed = cdev->pdf14_needed;
9501
108k
    int trans_group_level = cdev->pdf14_trans_group_level;
9502
108k
    int smask_level = cdev->pdf14_smask_level;
9503
108k
    bool deep = device_is_deep((gx_device *)cdev);
9504
9505
108k
    code = dev_proc((gx_device *) cdev, get_profile)((gx_device *) cdev,
9506
108k
                                                     &dev_profile);
9507
108k
    if (code < 0)
9508
0
        return code;
9509
108k
    gsicc_extract_profile(GS_UNKNOWN_TAG, dev_profile, &icc_profile,
9510
108k
                          &render_cond);
9511
108k
    *pbuf++ = opcode;     /* 1 byte */
9512
108k
    if (trans_group_level < 0 && opcode != PDF14_PUSH_DEVICE)
9513
0
        return_error(gs_error_unregistered);  /* prevent spurious transparency ops (Bug 702327) */
9514
9515
108k
    switch (opcode) {
9516
0
        default:      /* Should not occur. */
9517
0
            break;
9518
1.47k
        case PDF14_PUSH_DEVICE:
9519
1.47k
            trans_group_level = 0;
9520
1.47k
            cdev->pdf14_smask_level = 0;
9521
1.47k
            cdev->page_pdf14_needed = false;
9522
1.47k
            put_value(pbuf, pparams->num_spot_colors);
9523
1.47k
            put_value(pbuf, pparams->num_spot_colors_int);
9524
1.47k
            put_value(pbuf, pparams->overprint_sim_push);
9525
1.47k
            put_value(pbuf, pparams->is_pattern);
9526
9527
            /* If we happen to be going to a color space like CIELAB then
9528
               we are going to do our blending in default RGB and convert
9529
               to CIELAB at the end.  To do this, we need to store the
9530
               default RGB profile in the clist so that we can grab it
9531
               later on during the clist read back and put image command */
9532
1.47k
            if (icc_profile->data_cs == gsCIELAB || icc_profile->islab) {
9533
                /* Get the default RGB profile.  Set the device hash code
9534
                   so that we can extract it during the put_image operation. */
9535
0
                cdev->trans_dev_icc_hash = gsicc_get_hash(pparams->iccprofile);
9536
0
                found_icc =
9537
0
                    clist_icc_searchtable(cdev, gsicc_get_hash(pparams->iccprofile));
9538
0
                if (!found_icc) {
9539
                    /* Add it to the table */
9540
0
                    clist_icc_addentry(cdev, gsicc_get_hash(pparams->iccprofile),
9541
0
                                       pparams->iccprofile);
9542
0
                }
9543
0
            }
9544
1.47k
            break;
9545
1.47k
        case PDF14_POP_DEVICE:
9546
1.47k
            pdf14_needed = false;   /* reset pdf14_needed */
9547
1.47k
            trans_group_level = -1;   /* reset so we need to PUSH_DEVICE next */
9548
1.47k
            smask_level = 0;
9549
1.47k
            put_value(pbuf, pparams->is_pattern);
9550
1.47k
            break;
9551
23.5k
        case PDF14_END_TRANS_GROUP:
9552
23.6k
        case PDF14_END_TRANS_TEXT_GROUP:
9553
23.6k
            trans_group_level--;  /* if now at page level, pdf14_needed will be updated */
9554
23.6k
            if (smask_level == 0 && trans_group_level == 0)
9555
1.16k
                pdf14_needed = cdev->page_pdf14_needed;
9556
23.6k
            break;      /* No data */
9557
388
        case PDF14_BEGIN_TRANS_PAGE_GROUP:
9558
23.6k
        case PDF14_BEGIN_TRANS_GROUP:
9559
23.6k
            pdf14_needed = true;   /* the compositor will be needed while reading */
9560
23.6k
            trans_group_level++;
9561
23.6k
            code = c_pdf14trans_write_ctm(&pbuf, pparams);
9562
23.6k
            if (code < 0)
9563
0
                return code;
9564
23.6k
            *pbuf++ = (pparams->Isolated & 1) + ((pparams->Knockout & 1) << 1);
9565
23.6k
            *pbuf++ = pparams->blend_mode;
9566
23.6k
            *pbuf++ = pparams->group_color_type;
9567
23.6k
            *pbuf++ = pparams->page_group;
9568
23.6k
            put_value(pbuf, pparams->group_color_numcomps);
9569
23.6k
            put_value(pbuf, pparams->opacity);
9570
23.6k
            put_value(pbuf, pparams->shape);
9571
23.6k
            put_value(pbuf, pparams->bbox);
9572
23.6k
            put_value(pbuf, pparams->shade_group);
9573
23.6k
            put_value(pbuf, pparams->text_group);
9574
23.6k
            mask_id = pparams->mask_id;
9575
23.6k
            put_value(pbuf, mask_id);
9576
            /* Color space information maybe ICC based
9577
               in this case we need to store the ICC
9578
               profile or the ID if it is cached already */
9579
23.6k
            if (pparams->group_color_type == ICC) {
9580
                /* Check if it is already in the ICC clist table */
9581
779
                hashcode = gsicc_get_hash(pparams->iccprofile);
9582
779
                found_icc = clist_icc_searchtable(cdev, hashcode);
9583
779
                if (!found_icc) {
9584
                    /* Add it to the table */
9585
213
                    clist_icc_addentry(cdev, hashcode, pparams->iccprofile);
9586
213
                    put_value(pbuf, hashcode);
9587
566
                } else {
9588
                    /* It will be in the clist. Just write out the hashcode */
9589
566
                    put_value(pbuf, hashcode);
9590
566
                }
9591
22.9k
            } else {
9592
22.9k
                put_value(pbuf, hashcode);
9593
22.9k
            }
9594
23.6k
            break;
9595
20.6k
        case PDF14_BEGIN_TRANS_MASK:
9596
20.6k
            if (pparams->subtype != TRANSPARENCY_MASK_None) {
9597
18.3k
                pdf14_needed = true;   /* the compositor will be needed while reading */
9598
18.3k
                smask_level++;
9599
18.3k
            }
9600
20.6k
            code = c_pdf14trans_write_ctm(&pbuf, pparams);
9601
20.6k
            if (code < 0)
9602
0
                return code;
9603
20.6k
            put_value(pbuf, pparams->subtype);
9604
20.6k
            *pbuf++ = pparams->group_color_type;
9605
20.6k
            put_value(pbuf, pparams->group_color_numcomps);
9606
20.6k
            *pbuf++ = pparams->replacing;
9607
20.6k
            *pbuf++ = (pparams->function_is_identity) | (deep<<1);
9608
20.6k
            *pbuf++ = pparams->Background_components;
9609
20.6k
            *pbuf++ = pparams->Matte_components;
9610
20.6k
            put_value(pbuf, pparams->bbox);
9611
20.6k
            mask_id = pparams->mask_id;
9612
20.6k
            put_value(pbuf, mask_id);
9613
20.6k
            if (pparams->Background_components) {
9614
151
                const int l = sizeof(pparams->Background[0]) * pparams->Background_components;
9615
9616
151
                memcpy(pbuf, pparams->Background, l);
9617
151
                pbuf += l;
9618
151
                memcpy(pbuf, &pparams->GrayBackground, sizeof(pparams->GrayBackground));
9619
151
                pbuf += sizeof(pparams->GrayBackground);
9620
151
            }
9621
20.6k
            if (pparams->Matte_components) {
9622
0
                const int m = sizeof(pparams->Matte[0]) * pparams->Matte_components;
9623
9624
0
                memcpy(pbuf, pparams->Matte, m);
9625
0
                pbuf += m;
9626
0
            }
9627
20.6k
            if (!pparams->function_is_identity)
9628
72
                mask_size = (256+deep)<<deep;
9629
            /* Color space information may be ICC based
9630
               in this case we need to store the ICC
9631
               profile or the ID if it is cached already */
9632
20.6k
            if (pparams->group_color_type == ICC) {
9633
                /* Check if it is already in the ICC clist table */
9634
18.3k
                hashcode = gsicc_get_hash(pparams->iccprofile);
9635
18.3k
                found_icc = clist_icc_searchtable(cdev, hashcode);
9636
18.3k
                if (!found_icc) {
9637
                    /* Add it to the table */
9638
155
                    clist_icc_addentry(cdev, hashcode, pparams->iccprofile);
9639
155
                    put_value(pbuf, hashcode);
9640
18.1k
                } else {
9641
                    /* It will be in the clist. Just write out the hashcode */
9642
18.1k
                    put_value(pbuf, hashcode);
9643
18.1k
                }
9644
18.3k
            } else {
9645
2.33k
                put_value(pbuf, hashcode);
9646
2.33k
            }
9647
20.6k
            break;
9648
18.3k
        case PDF14_END_TRANS_MASK:
9649
18.3k
            smask_level--;
9650
18.3k
            if (smask_level == 0 && trans_group_level == 0)
9651
439
                pdf14_needed = cdev->page_pdf14_needed;
9652
18.3k
            break;
9653
16.4k
        case PDF14_SET_BLEND_PARAMS:
9654
16.4k
            if (pparams->blend_mode != BLEND_MODE_Normal || pparams->opacity != 1.0 ||
9655
16.4k
                pparams->shape != 1.0)
9656
16.4k
                pdf14_needed = true;    /* the compositor will be needed while reading */
9657
0
            else if (smask_level == 0 && trans_group_level == 0)
9658
0
                pdf14_needed = false;   /* At page level, set back to false */
9659
16.4k
            if (smask_level == 0 && trans_group_level == 0)
9660
9.20k
                cdev->page_pdf14_needed = pdf14_needed;         /* save for after popping to page level */
9661
            /* Changed is now two bytes due to overprint stroke fill. Write as int */
9662
16.4k
            put_value(pbuf, pparams->changed);
9663
16.4k
            if (pparams->changed & PDF14_SET_BLEND_MODE)
9664
1.92k
                *pbuf++ = pparams->blend_mode;
9665
16.4k
            if (pparams->changed & PDF14_SET_TEXT_KNOCKOUT)
9666
1.43k
                *pbuf++ = pparams->text_knockout;
9667
16.4k
            if (pparams->changed & PDF14_SET_AIS)
9668
16.4k
                put_value(pbuf, pparams->ais);
9669
16.4k
            if (pparams->changed & PDF14_SET_OVERPRINT)
9670
16.4k
                put_value(pbuf, pparams->overprint);
9671
16.4k
            if (pparams->changed & PDF14_SET_STROKEOVERPRINT)
9672
16.4k
                put_value(pbuf, pparams->stroke_overprint);
9673
16.4k
            if (pparams->changed & PDF14_SET_FILLCONSTANTALPHA)
9674
16.4k
                put_value(pbuf, pparams->fillconstantalpha);
9675
16.4k
            if (pparams->changed & PDF14_SET_STROKECONSTANTALPHA)
9676
16.4k
                put_value(pbuf, pparams->strokeconstantalpha);
9677
16.4k
            if (pparams->changed & PDF14_SET_FILLSTROKE_STATE)
9678
16.4k
                put_value(pbuf, pparams->op_fs_state);
9679
16.4k
            break;
9680
0
        case PDF14_PUSH_TRANS_STATE:
9681
0
            break;
9682
2.49k
        case PDF14_POP_TRANS_STATE:
9683
2.49k
            break;
9684
0
        case PDF14_PUSH_SMASK_COLOR:
9685
0
            return 0;   /* We really should never be here */
9686
0
            break;
9687
0
        case PDF14_POP_SMASK_COLOR:
9688
0
            return 0;   /* We really should never be here */
9689
0
            break;
9690
108k
    }
9691
9692
    /* check for fit */
9693
108k
    need = (pbuf - buf) + mask_size;
9694
108k
    *psize = need;
9695
108k
    if (need > avail) {
9696
17.7k
        if (avail)
9697
0
            return_error(gs_error_rangecheck);
9698
17.7k
        else
9699
17.7k
            return gs_error_rangecheck;
9700
17.7k
    }
9701
9702
    /* If we are writing more than the maximum ever expected,
9703
     * return a rangecheck error. Second check is for Coverity
9704
     */
9705
90.4k
    if ((need + 3 > MAX_CLIST_COMPOSITOR_SIZE) ||
9706
90.4k
        (need + 3 - mask_size > MAX_CLIST_TRANSPARENCY_BUFFER_SIZE) )
9707
0
        return_error(gs_error_rangecheck);
9708
9709
    /* Copy our serialized data into the output buffer */
9710
90.4k
    memcpy(data, buf, need - mask_size);
9711
90.4k
    if (mask_size)  /* Include the transfer mask data if present */
9712
54
        memcpy(data + need - mask_size, pparams->transfer_fn, mask_size);
9713
90.4k
    if_debug3m('v', cdev->memory,
9714
90.4k
               "[v] c_pdf14trans_write: opcode = %s mask_id=%d need = %d\n",
9715
90.4k
               pdf14_opcode_names[opcode], mask_id, need);
9716
90.4k
    cdev->pdf14_needed = pdf14_needed;          /* all OK to update */
9717
90.4k
    cdev->pdf14_trans_group_level = trans_group_level;
9718
90.4k
    cdev->pdf14_smask_level = smask_level;
9719
90.4k
    return 0;
9720
90.4k
}
9721
9722
#undef put_value
9723
9724
/* Function prototypes */
9725
static int gs_create_pdf14trans( gs_composite_t ** ppct,
9726
                const gs_pdf14trans_params_t * pparams,
9727
                gs_memory_t * mem );
9728
9729
#define read_value(dp, value)\
9730
5.88M
    BEGIN\
9731
5.88M
        memcpy(&value, dp, sizeof(value));\
9732
5.88M
        dp += sizeof(value);\
9733
5.88M
    END
9734
9735
/*
9736
 * Convert the string representation of the PDF 1.4 transparency parameter
9737
 * into the full compositor.
9738
 */
9739
static  int
9740
c_pdf14trans_read(gs_composite_t * * ppct, const byte * data,
9741
                                uint size, gs_memory_t * mem )
9742
1.88M
{
9743
1.88M
    gs_pdf14trans_params_t params = {0};
9744
1.88M
    const byte * start = data;
9745
1.88M
    int used, code = 0;
9746
1.88M
    bool deep;
9747
9748
1.88M
    if (size < 1)
9749
0
        return_error(gs_error_rangecheck);
9750
9751
    /* Read PDF 1.4 compositor data from the clist */
9752
1.88M
    params.pdf14_op = *data++;
9753
1.88M
    if_debug2m('v', mem, "[v] c_pdf14trans_read: opcode = %s  avail = %d",
9754
1.88M
               pdf14_opcode_names[params.pdf14_op], size);
9755
1.88M
    memset(&params.ctm, 0, sizeof(params.ctm));
9756
1.88M
    switch (params.pdf14_op) {
9757
0
        default:      /* Should not occur. */
9758
0
            break;
9759
117k
        case PDF14_PUSH_DEVICE:
9760
117k
            read_value(data, params.num_spot_colors);
9761
117k
            read_value(data, params.num_spot_colors_int);
9762
117k
            read_value(data, params.overprint_sim_push);
9763
117k
            read_value(data, params.is_pattern);
9764
117k
            break;
9765
0
        case PDF14_ABORT_DEVICE:
9766
0
            break;
9767
117k
        case PDF14_POP_DEVICE:
9768
117k
            read_value(data, params.is_pattern);
9769
117k
            break;
9770
121k
        case PDF14_END_TRANS_GROUP:
9771
135k
        case PDF14_END_TRANS_TEXT_GROUP:
9772
#ifdef DEBUG
9773
            code += 0; /* A good place for a breakpoint. */
9774
#endif
9775
135k
            break;      /* No data */
9776
0
        case PDF14_PUSH_TRANS_STATE:
9777
0
            break;
9778
124k
        case PDF14_POP_TRANS_STATE:
9779
124k
            break;
9780
34.3k
        case PDF14_BEGIN_TRANS_PAGE_GROUP:
9781
135k
        case PDF14_BEGIN_TRANS_GROUP:
9782
            /*
9783
             * We are currently not using the bbox or the colorspace so they were
9784
             * not placed in the clist
9785
             */
9786
135k
            data = cmd_read_matrix(&params.ctm, data);
9787
135k
            params.Isolated = (*data) & 1;
9788
135k
            params.Knockout = (*data++ >> 1) & 1;
9789
135k
            params.blend_mode = *data++;
9790
135k
            params.group_color_type = *data++;  /* Trans group color */
9791
135k
            params.page_group = *data++;
9792
135k
            read_value(data,params.group_color_numcomps);  /* color group size */
9793
135k
            read_value(data, params.opacity);
9794
135k
            read_value(data, params.shape);
9795
135k
            read_value(data, params.bbox);
9796
135k
            read_value(data, params.shade_group);
9797
135k
            read_value(data, params.text_group);
9798
135k
            read_value(data, params.mask_id);
9799
135k
            read_value(data, params.icc_hash);
9800
135k
            break;
9801
151k
        case PDF14_BEGIN_TRANS_MASK:
9802
                /* This is the largest transparency parameter at this time (potentially
9803
                 * 1531 bytes in size if Background_components =
9804
                 * GS_CLIENT_COLOR_MAX_COMPONENTS and Matte_components =
9805
                 * GS_CLIENT_COLOR_MAX_COMPONENTS and we have a transfer function as well).
9806
                 *
9807
                 * NOTE:
9808
                 * The clist reader must be able to handle this sized device.
9809
                 * If any changes are made here the #define MAX_CLIST_COMPOSITOR_SIZE
9810
                 * may also need to be changed correspondingly (defined in gstparam.h)
9811
                 * Also... if another compositor param should exceed this size, this
9812
                 * same condition applies.
9813
                 */
9814
151k
            data = cmd_read_matrix(&params.ctm, data);
9815
151k
            read_value(data, params.subtype);
9816
151k
            params.group_color_type = *data++;
9817
151k
            read_value(data, params.group_color_numcomps);
9818
151k
            params.replacing = *data++;
9819
151k
            params.function_is_identity = *data & 1;
9820
151k
            deep = (*data++)>>1;
9821
151k
            params.Background_components = *data++;
9822
151k
            params.Matte_components = *data++;
9823
151k
            read_value(data, params.bbox);
9824
151k
            read_value(data, params.mask_id);
9825
151k
            if (params.Background_components) {
9826
8.80k
                const int l = sizeof(params.Background[0]) * params.Background_components;
9827
9828
8.80k
                memcpy(params.Background, data, l);
9829
8.80k
                data += l;
9830
8.80k
                memcpy(&params.GrayBackground, data, sizeof(params.GrayBackground));
9831
8.80k
                data += sizeof(params.GrayBackground);
9832
8.80k
            }
9833
151k
            if (params.Matte_components) {
9834
0
                const int m = sizeof(params.Matte[0]) * params.Matte_components;
9835
9836
0
                memcpy(params.Matte, data, m);
9837
0
                data += m;
9838
0
            }
9839
151k
            read_value(data, params.icc_hash);
9840
151k
            if (params.function_is_identity) {
9841
148k
                int i;
9842
9843
148k
                if (deep) {
9844
0
                    for (i = 0; i < MASK_TRANSFER_FUNCTION_SIZE; i++)
9845
0
                        ((uint16_t *)params.transfer_fn)[i] = i*0x10000/MASK_TRANSFER_FUNCTION_SIZE;
9846
0
                    ((uint16_t *)params.transfer_fn)[i] = 0xffff;
9847
148k
                } else {
9848
38.1M
                    for (i = 0; i < MASK_TRANSFER_FUNCTION_SIZE; i++) {
9849
38.0M
                        params.transfer_fn[i] = (byte)floor(i *
9850
38.0M
                            (255.0 / (MASK_TRANSFER_FUNCTION_SIZE - 1)) + 0.5);
9851
38.0M
                    }
9852
148k
                }
9853
148k
            } else {
9854
2.44k
                memcpy(params.transfer_fn, data, (256+deep)<<deep);
9855
2.44k
                data += (256+deep)<<deep;
9856
2.44k
            }
9857
151k
            break;
9858
29.2k
        case PDF14_END_TRANS_MASK:
9859
29.2k
            break;
9860
0
        case PDF14_PUSH_SMASK_COLOR:
9861
0
            return 0;
9862
0
            break;
9863
0
        case PDF14_POP_SMASK_COLOR:
9864
0
            return 0;
9865
0
            break;
9866
1.07M
        case PDF14_SET_BLEND_PARAMS:
9867
1.07M
            read_value(data, params.changed);
9868
1.07M
            if (params.changed & PDF14_SET_BLEND_MODE)
9869
182k
                params.blend_mode = *data++;
9870
1.07M
            if (params.changed & PDF14_SET_TEXT_KNOCKOUT)
9871
114k
                params.text_knockout = *data++;
9872
1.07M
            if (params.changed & PDF14_SET_AIS)
9873
1.07M
                read_value(data, params.ais);
9874
1.07M
            if (params.changed & PDF14_SET_OVERPRINT)
9875
1.07M
                read_value(data, params.overprint);
9876
1.07M
            if (params.changed & PDF14_SET_STROKEOVERPRINT)
9877
1.07M
                read_value(data, params.stroke_overprint);
9878
1.07M
            if (params.changed & PDF14_SET_FILLCONSTANTALPHA)
9879
1.07M
                read_value(data, params.fillconstantalpha);
9880
1.07M
            if (params.changed & PDF14_SET_STROKECONSTANTALPHA)
9881
1.07M
                read_value(data, params.strokeconstantalpha);
9882
1.07M
            if (params.changed & PDF14_SET_FILLSTROKE_STATE)
9883
1.07M
                read_value(data, params.op_fs_state);
9884
1.07M
            break;
9885
1.88M
    }
9886
1.88M
    code = gs_create_pdf14trans(ppct, &params, mem);
9887
1.88M
    if (code < 0)
9888
0
        return code;
9889
1.88M
    used = data - start;
9890
1.88M
    if_debug2m('v', mem, " mask_id=%d used = %d\n", params.mask_id, used);
9891
9892
    /* If we read more than the maximum expected, return a rangecheck error */
9893
1.88M
    if ( used + 3 > MAX_CLIST_COMPOSITOR_SIZE )
9894
0
        return_error(gs_error_rangecheck);
9895
1.88M
    else
9896
1.88M
        return used;
9897
1.88M
}
9898
9899
/*
9900
 * Adjust the compositor's CTM.
9901
 */
9902
static int
9903
c_pdf14trans_adjust_ctm(gs_composite_t * pct0, int x0, int y0, gs_gstate *pgs)
9904
1.18M
{
9905
1.18M
    gs_pdf14trans_t *pct = (gs_pdf14trans_t *)pct0;
9906
1.18M
    gs_matrix mat = pct->params.ctm;
9907
9908
1.18M
    if_debug6m('L', pgs->memory, " [%g %g %g %g %g %g]\n",
9909
1.18M
               mat.xx, mat.xy, mat.yx, mat.yy,
9910
1.18M
               mat.tx, mat.ty);
9911
1.18M
    mat.tx -= x0;
9912
1.18M
    mat.ty -= y0;
9913
1.18M
    gs_gstate_setmatrix(pgs, &mat);
9914
1.18M
    return 0;
9915
1.18M
}
9916
9917
/*
9918
 * Create a PDF 1.4 transparency compositor.
9919
 *
9920
 * Note that this routine will be called only if the device is not already
9921
 * a PDF 1.4 transparency compositor.
9922
 * Return an error if it is not a PDF14_PUSH_DEVICE operation.
9923
 */
9924
static  int
9925
c_pdf14trans_create_default_compositor(const gs_composite_t * pct,
9926
    gx_device ** pp14dev, gx_device * tdev, gs_gstate * pgs,
9927
    gs_memory_t * mem)
9928
100k
{
9929
100k
    const gs_pdf14trans_t * pdf14pct = (const gs_pdf14trans_t *) pct;
9930
100k
    int code = 0;
9931
9932
    /*
9933
     * We only handle the push operation.  All other operations are ignored.
9934
     * The other operations will be handled by the composite routine
9935
     * for the PDF 1.4 compositing device.
9936
     */
9937
100k
    switch (pdf14pct->params.pdf14_op) {
9938
99.4k
        case PDF14_PUSH_DEVICE:
9939
99.4k
            code = gs_pdf14_device_push(mem, pgs, pp14dev, tdev, pdf14pct);
9940
            /* Change (non-error) code to 1 to indicate that we created
9941
             * a device. */
9942
99.4k
            if (code >= 0)
9943
99.4k
                code = 1;
9944
99.4k
            break;
9945
989
        default:
9946
            /* No other compositor actions are allowed if this isn't a pdf14 compositor */
9947
989
            *pp14dev = NULL;
9948
989
            return_error(gs_error_unregistered);
9949
100k
    }
9950
99.4k
    return code;
9951
100k
}
9952
9953
/*
9954
 * Find an opening compositor op.
9955
 */
9956
static gs_compositor_closing_state
9957
find_opening_op(int opening_op, gs_composite_t **ppcte,
9958
                gs_compositor_closing_state return_code)
9959
161k
{
9960
    /* Assuming a right *BEGIN* - *END* operation balance. */
9961
161k
    gs_composite_t *pcte = *ppcte;
9962
9963
385k
    for (;;) {
9964
385k
        if (pcte->type->comp_id == GX_COMPOSITOR_PDF14_TRANS) {
9965
384k
            gs_pdf14trans_t *pct = (gs_pdf14trans_t *)pcte;
9966
384k
            int op = pct->params.pdf14_op;
9967
9968
384k
            *ppcte = pcte;
9969
384k
            if (op == opening_op)
9970
117k
                return return_code;
9971
266k
            if (op != PDF14_SET_BLEND_PARAMS) {
9972
172k
                if (opening_op == PDF14_BEGIN_TRANS_MASK)
9973
11
                    return COMP_ENQUEUE;
9974
172k
                if (opening_op == PDF14_BEGIN_TRANS_GROUP || opening_op == PDF14_BEGIN_TRANS_PAGE_GROUP) {
9975
24.9k
                    if (op != PDF14_BEGIN_TRANS_MASK && op != PDF14_END_TRANS_MASK)
9976
24.0k
                        return COMP_ENQUEUE;
9977
24.9k
                }
9978
148k
                if (opening_op == PDF14_PUSH_DEVICE) {
9979
147k
                    if (op != PDF14_BEGIN_TRANS_MASK && op != PDF14_END_TRANS_MASK &&
9980
147k
                        op != PDF14_BEGIN_TRANS_GROUP && op != PDF14_BEGIN_TRANS_PAGE_GROUP && op != PDF14_END_TRANS_GROUP &&
9981
147k
                        op != PDF14_END_TRANS_TEXT_GROUP)
9982
9.42k
                        return COMP_ENQUEUE;
9983
147k
                }
9984
148k
            }
9985
266k
        } else
9986
1.80k
            return COMP_ENQUEUE;
9987
232k
        pcte = pcte->prev;
9988
232k
        if (pcte == NULL)
9989
8.07k
            return COMP_EXEC_QUEUE; /* Not in queue. */
9990
232k
    }
9991
161k
}
9992
9993
/*
9994
 * Find an opening compositor op.
9995
 */
9996
static gs_compositor_closing_state
9997
find_same_op(const gs_composite_t *composite_action, int my_op, gs_composite_t **ppcte)
9998
1.01M
{
9999
1.01M
    const gs_pdf14trans_t *pct0 = (gs_pdf14trans_t *)composite_action;
10000
1.01M
    gs_composite_t *pct = *ppcte;
10001
10002
1.01M
    for (;;) {
10003
1.01M
        if (pct->type->comp_id == GX_COMPOSITOR_PDF14_TRANS) {
10004
1.00M
            gs_pdf14trans_t *pct_pdf14 = (gs_pdf14trans_t *)pct;
10005
10006
1.00M
            *ppcte = pct;
10007
1.00M
            if (pct_pdf14->params.pdf14_op != my_op)
10008
264k
                return COMP_ENQUEUE;
10009
744k
            if (pct_pdf14->params.csel == pct0->params.csel) {
10010
                /* If the new parameters completely replace the old ones
10011
                   then remove the old one from the queu */
10012
744k
                if ((pct_pdf14->params.changed & pct0->params.changed) ==
10013
744k
                    pct_pdf14->params.changed) {
10014
698k
                    return COMP_REPLACE_CURR;
10015
698k
                } else {
10016
46.3k
                    return COMP_ENQUEUE;
10017
46.3k
                }
10018
744k
            }
10019
744k
        } else
10020
7.61k
            return COMP_ENQUEUE;
10021
0
        pct = pct->prev;
10022
0
        if (pct == NULL)
10023
0
            return COMP_ENQUEUE; /* Not in queue. */
10024
0
    }
10025
1.01M
}
10026
10027
/*
10028
 * Check for closing compositor.
10029
 */
10030
static gs_compositor_closing_state
10031
c_pdf14trans_is_closing(const gs_composite_t * composite_action, gs_composite_t ** ppcte,
10032
                        gx_device *dev)
10033
1.88M
{
10034
1.88M
    gs_pdf14trans_t *pct0 = (gs_pdf14trans_t *)composite_action;
10035
1.88M
    int op0 = pct0->params.pdf14_op;
10036
10037
1.88M
    switch (op0) {
10038
0
        default: return_error(gs_error_unregistered); /* Must not happen. */
10039
117k
        case PDF14_PUSH_DEVICE:
10040
117k
            return COMP_ENQUEUE;
10041
0
        case PDF14_ABORT_DEVICE:
10042
0
            return COMP_ENQUEUE;
10043
117k
        case PDF14_POP_DEVICE:
10044
117k
            if (*ppcte == NULL)
10045
88.2k
                return COMP_ENQUEUE;
10046
28.9k
            else {
10047
28.9k
                gs_compositor_closing_state state = find_opening_op(PDF14_PUSH_DEVICE, ppcte, COMP_EXEC_IDLE);
10048
10049
28.9k
                if (state == COMP_EXEC_IDLE)
10050
15.5k
                    return COMP_DROP_QUEUE;
10051
13.3k
                return state;
10052
28.9k
            }
10053
34.3k
        case PDF14_BEGIN_TRANS_PAGE_GROUP:
10054
135k
        case PDF14_BEGIN_TRANS_GROUP:
10055
135k
            return COMP_ENQUEUE;
10056
121k
        case PDF14_END_TRANS_GROUP:
10057
135k
        case PDF14_END_TRANS_TEXT_GROUP:
10058
135k
            if (*ppcte == NULL)
10059
18.9k
                return COMP_EXEC_QUEUE;
10060
116k
            return find_opening_op(PDF14_BEGIN_TRANS_GROUP, ppcte, COMP_MARK_IDLE);
10061
151k
        case PDF14_BEGIN_TRANS_MASK:
10062
151k
            return COMP_ENQUEUE;
10063
0
        case PDF14_PUSH_TRANS_STATE:
10064
0
            return COMP_ENQUEUE;
10065
124k
        case PDF14_POP_TRANS_STATE:
10066
124k
            return COMP_ENQUEUE;
10067
0
        case PDF14_PUSH_SMASK_COLOR:
10068
0
            return COMP_ENQUEUE;
10069
0
            break;
10070
0
        case PDF14_POP_SMASK_COLOR:
10071
0
            return COMP_ENQUEUE;
10072
0
            break;
10073
29.2k
        case PDF14_END_TRANS_MASK:
10074
29.2k
            if (*ppcte == NULL)
10075
13.1k
                return COMP_EXEC_QUEUE;
10076
16.0k
            return find_opening_op(PDF14_BEGIN_TRANS_MASK, ppcte, COMP_MARK_IDLE);
10077
1.07M
        case PDF14_SET_BLEND_PARAMS:
10078
1.07M
            if (*ppcte == NULL)
10079
60.4k
                return COMP_ENQUEUE;
10080
            /* hack : ignore csel - here it is always zero : */
10081
1.01M
            return find_same_op(composite_action, PDF14_SET_BLEND_PARAMS, ppcte);
10082
1.88M
    }
10083
1.88M
}
10084
10085
/*
10086
 * Check whether a next operation is friendly to the compositor.
10087
 */
10088
static bool
10089
c_pdf14trans_is_friendly(const gs_composite_t * composite_action, byte cmd0, byte cmd1)
10090
316k
{
10091
316k
    gs_pdf14trans_t *pct0 = (gs_pdf14trans_t *)composite_action;
10092
316k
    int op0 = pct0->params.pdf14_op;
10093
10094
316k
    if (op0 == PDF14_PUSH_DEVICE || op0 == PDF14_END_TRANS_GROUP ||
10095
316k
        op0 == PDF14_END_TRANS_TEXT_GROUP) {
10096
        /* Halftone commands are always passed to the target printer device,
10097
           because transparency buffers are always contone.
10098
           So we're safe to execute them before queued transparency compositors. */
10099
146k
        if (cmd0 == cmd_opv_extend && (cmd1 == cmd_opv_ext_put_halftone ||
10100
85.6k
                                       cmd1 == cmd_opv_ext_put_ht_seg))
10101
85.6k
            return true;
10102
60.9k
        if (cmd0 == cmd_opv_set_misc && (cmd1 >> 6) == (cmd_set_misc_map >> 6))
10103
60.7k
            return true;
10104
60.9k
    }
10105
170k
    return false;
10106
316k
}
10107
10108
static composite_create_default_compositor_proc(c_pdf14trans_create_default_compositor);
10109
static composite_equal_proc(c_pdf14trans_equal);
10110
static composite_write_proc(c_pdf14trans_write);
10111
static composite_read_proc(c_pdf14trans_read);
10112
static composite_adjust_ctm_proc(c_pdf14trans_adjust_ctm);
10113
static composite_is_closing_proc(c_pdf14trans_is_closing);
10114
static composite_is_friendly_proc(c_pdf14trans_is_friendly);
10115
static composite_clist_write_update(c_pdf14trans_clist_write_update);
10116
static composite_clist_read_update(c_pdf14trans_clist_read_update);
10117
static composite_get_cropping_proc(c_pdf14trans_get_cropping);
10118
10119
/*
10120
 * Methods for the PDF 1.4 transparency compositor
10121
 *
10122
 * Note:  We have two set of methods.  They are the same except for the
10123
 * composite_clist_write_update method.  Once the clist write device is created,
10124
 * we use the second set of procedures.  This prevents the creation of multiple
10125
 * PDF 1.4 clist write compositor devices being chained together.
10126
 */
10127
const gs_composite_type_t   gs_composite_pdf14trans_type = {
10128
    GX_COMPOSITOR_PDF14_TRANS,
10129
    {
10130
        c_pdf14trans_create_default_compositor, /* procs.create_default_compositor */
10131
        c_pdf14trans_equal,                      /* procs.equal */
10132
        c_pdf14trans_write,                      /* procs.write */
10133
        c_pdf14trans_read,                       /* procs.read */
10134
        c_pdf14trans_adjust_ctm,     /* procs.adjust_ctm */
10135
        c_pdf14trans_is_closing,                 /* procs.is_closing */
10136
        c_pdf14trans_is_friendly,                /* procs.is_friendly */
10137
                /* Create a PDF 1.4 clist write device */
10138
        c_pdf14trans_clist_write_update,   /* procs.composite_clist_write_update */
10139
        c_pdf14trans_clist_read_update,    /* procs.composite_clist_read_update */
10140
        c_pdf14trans_get_cropping    /* procs.composite_get_cropping */
10141
    }                                            /* procs */
10142
};
10143
10144
const gs_composite_type_t   gs_composite_pdf14trans_no_clist_writer_type = {
10145
    GX_COMPOSITOR_PDF14_TRANS,
10146
    {
10147
        c_pdf14trans_create_default_compositor, /* procs.create_default_compositor */
10148
        c_pdf14trans_equal,                      /* procs.equal */
10149
        c_pdf14trans_write,                      /* procs.write */
10150
        c_pdf14trans_read,                       /* procs.read */
10151
        c_pdf14trans_adjust_ctm,     /* procs.adjust_ctm */
10152
        c_pdf14trans_is_closing,                 /* procs.is_closing */
10153
        c_pdf14trans_is_friendly,                /* procs.is_friendly */
10154
                /* The PDF 1.4 clist writer already exists, Do not create it. */
10155
        gx_default_composite_clist_write_update, /* procs.composite_clist_write_update */
10156
        c_pdf14trans_clist_read_update,    /* procs.composite_clist_read_update */
10157
        c_pdf14trans_get_cropping    /* procs.composite_get_cropping */
10158
    }                                            /* procs */
10159
};
10160
10161
/*
10162
 * Verify that a compositor data structure is for the PDF 1.4 compositor.
10163
 */
10164
int
10165
gs_is_pdf14trans_compositor(const gs_composite_t * pct)
10166
3.64M
{
10167
3.64M
    return (pct->type == &gs_composite_pdf14trans_type
10168
3.64M
                || pct->type == &gs_composite_pdf14trans_no_clist_writer_type);
10169
3.64M
}
10170
10171
/*
10172
 * Create a PDF 1.4 transparency compositor data structure.
10173
 */
10174
static int
10175
gs_create_pdf14trans(
10176
    gs_composite_t **               ppct,
10177
    const gs_pdf14trans_params_t *  pparams,
10178
    gs_memory_t *                   mem )
10179
1.98M
{
10180
1.98M
    gs_pdf14trans_t *                pct;
10181
10182
1.98M
    pct = gs_alloc_struct(mem, gs_pdf14trans_t, &st_pdf14trans,
10183
1.98M
                             "gs_create_pdf14trans");
10184
1.98M
    if (pct == NULL)
10185
0
        return_error(gs_error_VMerror);
10186
1.98M
    pct->type = &gs_composite_pdf14trans_type;
10187
1.98M
    pct->id = gs_next_ids(mem, 1);
10188
1.98M
    pct->params = *pparams;
10189
1.98M
    pct->idle = false;
10190
1.98M
    *ppct = (gs_composite_t *)pct;
10191
1.98M
    return 0;
10192
1.98M
}
10193
10194
/*
10195
 * Send a PDF 1.4 transparency compositor action to the specified device.
10196
 */
10197
int
10198
send_pdf14trans(gs_gstate * pgs, gx_device * dev,
10199
    gx_device * * pcdev, gs_pdf14trans_params_t * pparams, gs_memory_t * mem)
10200
86.7k
{
10201
86.7k
    gs_composite_t * pct = NULL;
10202
86.7k
    int code;
10203
10204
86.7k
    pparams->ctm = ctm_only(pgs);
10205
86.7k
    code = gs_create_pdf14trans(&pct, pparams, mem);
10206
86.7k
    if (code < 0)
10207
0
        return code;
10208
86.7k
    code = dev_proc(dev, composite) (dev, pcdev, pct, pgs, mem, NULL);
10209
86.7k
    if (code == gs_error_handled)
10210
0
        code = 0;
10211
10212
86.7k
    gs_free_object(pgs->memory, pct, "send_pdf14trans");
10213
10214
86.7k
    return code;
10215
86.7k
}
10216
10217
/* ------------- PDF 1.4 transparency device for clist writing ------------- */
10218
10219
/*
10220
 * The PDF 1.4 transparency compositor device may have a different process
10221
 * color model than the output device.  If we are banding then we need to
10222
 * create two compositor devices.  The output side (clist reader) needs a
10223
 * compositor to actually composite the output.  We also need a compositor
10224
 * device before the clist writer.  This is needed to provide a process color
10225
 * model which matches the PDF 1.4 blending space.
10226
 *
10227
 * This section provides support for this device.
10228
 */
10229
10230
/*
10231
 * Define the default pre-clist (clist writer) PDF 1.4 compositing device.
10232
 * We actually use the same structure for both the clist writer and reader
10233
 * devices.  However we use separate names to identify the routines for each
10234
 * device.
10235
 */
10236
10237
static  dev_proc_composite(pdf14_clist_composite);
10238
static  dev_proc_composite(pdf14_clist_forward_composite);
10239
static  dev_proc_fill_path(pdf14_clist_fill_path);
10240
static  dev_proc_stroke_path(pdf14_clist_stroke_path);
10241
static  dev_proc_fill_stroke_path(pdf14_clist_fill_stroke_path);
10242
static  dev_proc_text_begin(pdf14_clist_text_begin);
10243
static  dev_proc_begin_typed_image(pdf14_clist_begin_typed_image);
10244
static  dev_proc_copy_planes(pdf14_clist_copy_planes);
10245
10246
static void
10247
pdf14_clist_init_procs(gx_device *dev,
10248
                       dev_proc_get_color_mapping_procs(get_color_mapping_procs),
10249
                       dev_proc_get_color_comp_index(get_color_comp_index))
10250
737
{
10251
737
    set_dev_proc(dev, get_initial_matrix, gx_forward_get_initial_matrix);
10252
737
    set_dev_proc(dev, sync_output, gx_forward_sync_output);
10253
737
    set_dev_proc(dev, output_page, gx_forward_output_page);
10254
737
    set_dev_proc(dev, close_device, gx_forward_close_device);
10255
737
    set_dev_proc(dev, map_rgb_color, pdf14_encode_color);
10256
737
    set_dev_proc(dev, map_color_rgb, pdf14_decode_color);
10257
737
    set_dev_proc(dev, fill_rectangle, gx_forward_fill_rectangle);
10258
737
    set_dev_proc(dev, copy_mono, gx_forward_copy_mono);
10259
737
    set_dev_proc(dev, copy_color, gx_forward_copy_color);
10260
737
    set_dev_proc(dev, get_params, gx_forward_get_params);
10261
737
    set_dev_proc(dev, put_params, pdf14_put_params);
10262
737
    set_dev_proc(dev, map_cmyk_color, pdf14_encode_color);
10263
737
    set_dev_proc(dev, get_page_device, gx_forward_get_page_device);
10264
737
    set_dev_proc(dev, copy_alpha, gx_forward_copy_alpha);
10265
737
    set_dev_proc(dev, fill_path, pdf14_clist_fill_path);
10266
737
    set_dev_proc(dev, stroke_path, pdf14_clist_stroke_path);
10267
737
    set_dev_proc(dev, fill_mask, gx_forward_fill_mask);
10268
737
    set_dev_proc(dev, fill_trapezoid, gx_forward_fill_trapezoid);
10269
737
    set_dev_proc(dev, fill_parallelogram, gx_forward_fill_parallelogram);
10270
737
    set_dev_proc(dev, fill_triangle, gx_forward_fill_triangle);
10271
737
    set_dev_proc(dev, draw_thin_line, gx_forward_draw_thin_line);
10272
737
    set_dev_proc(dev, strip_tile_rectangle, gx_forward_strip_tile_rectangle);
10273
737
    set_dev_proc(dev, strip_copy_rop2, gx_forward_strip_copy_rop2);
10274
737
    set_dev_proc(dev, get_clipping_box, gx_forward_get_clipping_box);
10275
737
    set_dev_proc(dev, begin_typed_image, pdf14_clist_begin_typed_image);
10276
737
    set_dev_proc(dev, get_bits_rectangle, gx_forward_get_bits_rectangle);
10277
737
    set_dev_proc(dev, composite, pdf14_clist_composite);
10278
737
    set_dev_proc(dev, get_hardware_params, gx_forward_get_hardware_params);
10279
737
    set_dev_proc(dev, text_begin, pdf14_clist_text_begin);
10280
737
    set_dev_proc(dev, begin_transparency_group, pdf14_begin_transparency_group);
10281
737
    set_dev_proc(dev, end_transparency_group, pdf14_end_transparency_group);
10282
737
    set_dev_proc(dev, begin_transparency_mask, pdf14_begin_transparency_mask);
10283
737
    set_dev_proc(dev, end_transparency_mask, pdf14_end_transparency_mask);
10284
737
    set_dev_proc(dev, discard_transparency_layer, gx_default_discard_transparency_layer);
10285
737
    set_dev_proc(dev, get_color_mapping_procs, get_color_mapping_procs);
10286
737
    set_dev_proc(dev, get_color_comp_index, get_color_comp_index);
10287
737
    set_dev_proc(dev, encode_color, pdf14_encode_color);
10288
737
    set_dev_proc(dev, decode_color, pdf14_decode_color);
10289
737
    set_dev_proc(dev, fill_rectangle_hl_color, gx_forward_fill_rectangle_hl_color);
10290
737
    set_dev_proc(dev, update_spot_equivalent_colors, gx_forward_update_spot_equivalent_colors);
10291
737
    set_dev_proc(dev, ret_devn_params, pdf14_ret_devn_params);
10292
737
    set_dev_proc(dev, fillpage, gx_forward_fillpage);
10293
737
    set_dev_proc(dev, push_transparency_state, pdf14_push_transparency_state);
10294
737
    set_dev_proc(dev, pop_transparency_state, pdf14_pop_transparency_state);
10295
737
    set_dev_proc(dev, dev_spec_op, pdf14_dev_spec_op);
10296
737
    set_dev_proc(dev, copy_planes, pdf14_clist_copy_planes);
10297
737
    set_dev_proc(dev, set_graphics_type_tag, gx_forward_set_graphics_type_tag);
10298
737
    set_dev_proc(dev, copy_alpha_hl_color, gx_forward_copy_alpha_hl_color);
10299
737
    set_dev_proc(dev, fill_stroke_path, pdf14_clist_fill_stroke_path);
10300
737
}
10301
10302
static void
10303
pdf14_clist_Gray_initialize_device_procs(gx_device *dev)
10304
0
{
10305
0
    pdf14_clist_init_procs(dev,
10306
0
                           gx_default_DevGray_get_color_mapping_procs,
10307
0
                           gx_default_DevGray_get_color_comp_index);
10308
0
}
10309
10310
static void
10311
pdf14_clist_RGB_initialize_device_procs(gx_device *dev)
10312
67
{
10313
67
    pdf14_clist_init_procs(dev,
10314
67
                           gx_default_DevRGB_get_color_mapping_procs,
10315
67
                           gx_default_DevRGB_get_color_comp_index);
10316
67
}
10317
10318
static void
10319
pdf14_clist_CMYK_initialize_device_procs(gx_device *dev)
10320
0
{
10321
0
    pdf14_clist_init_procs(dev,
10322
0
                           gx_default_DevCMYK_get_color_mapping_procs,
10323
0
                           gx_default_DevCMYK_get_color_comp_index);
10324
0
}
10325
10326
static void
10327
pdf14_clist_CMYKspot_initialize_device_procs(gx_device *dev)
10328
670
{
10329
670
    pdf14_clist_init_procs(dev,
10330
670
                           pdf14_cmykspot_get_color_mapping_procs,
10331
670
                           pdf14_cmykspot_get_color_comp_index);
10332
670
}
10333
10334
static void
10335
pdf14_clist_RGBspot_initialize_device_procs(gx_device *dev)
10336
0
{
10337
0
    pdf14_clist_init_procs(dev,
10338
0
                           pdf14_rgbspot_get_color_mapping_procs,
10339
0
                           pdf14_rgbspot_get_color_comp_index);
10340
0
}
10341
10342
#if 0 /* NOT USED */
10343
static int
10344
pdf14_clist_Grayspot_initialize_device_procs(gx_device *dev)
10345
{
10346
    pdf14_clist_init_procs(dev,
10347
                           pdf14_grayspot_get_color_mapping_procs,
10348
                           pdf14_grayspot_get_color_comp_index);
10349
}
10350
#endif  /* NOT USED */
10351
10352
const pdf14_clist_device pdf14_clist_Gray_device = {
10353
    std_device_color_stype_body(pdf14_clist_device,
10354
                                pdf14_clist_Gray_initialize_device_procs,
10355
                                "pdf14clistgray",
10356
                                &st_pdf14_device,
10357
                                XSIZE, YSIZE, X_DPI, Y_DPI, 8, 255, 256),
10358
    { 0 },      /* Procs */
10359
    NULL,     /* target */
10360
    { 0 },      /* devn_params - not used */
10361
    &gray_pdf14_procs,
10362
    &gray_blending_procs
10363
};
10364
10365
const pdf14_clist_device pdf14_clist_RGB_device = {
10366
    std_device_color_stype_body(pdf14_clist_device,
10367
                                pdf14_clist_RGB_initialize_device_procs,
10368
                                "pdf14clistRGB",
10369
                                &st_pdf14_device,
10370
                                XSIZE, YSIZE, X_DPI, Y_DPI, 24, 255, 256),
10371
    { 0 },      /* Procs */
10372
    NULL,     /* target */
10373
    { 0 },      /* devn_params - not used */
10374
    &rgb_pdf14_procs,
10375
    &rgb_blending_procs
10376
};
10377
10378
const pdf14_clist_device pdf14_clist_RGBspot_device = {
10379
    std_device_part1_(pdf14_device,
10380
                      pdf14_clist_RGBspot_initialize_device_procs,
10381
                      "pdf14clistrgbspot",
10382
                      &st_pdf14_device,
10383
                      open_init_closed),
10384
    dci_values_add(GX_DEVICE_COLOR_MAX_COMPONENTS,64,255,255,256,256),
10385
    std_device_part2_(XSIZE, YSIZE, X_DPI, Y_DPI),
10386
    offset_margin_values(0, 0, 0, 0, 0, 0),
10387
    std_device_part3_(),
10388
    { 0 },      /* Procs */
10389
    NULL,     /* target */
10390
    /* DeviceN parameters */
10391
    { 8,      /* Not used - Bits per color */
10392
      DeviceRGBComponents,  /* Names of color model colorants */
10393
      3,      /* Number colorants for CMYK */
10394
      0,      /* MaxSeparations has not been specified */
10395
      -1,     /* PageSpotColors has not been specified */
10396
      {0},      /* SeparationNames */
10397
      0,      /* SeparationOrder names */
10398
      {0, 1, 2, 3, 4, 5, 6, 7 } /* Initial component SeparationOrder */
10399
    },
10400
    &rgbspot_pdf14_procs,
10401
    &rgb_blending_procs
10402
};
10403
10404
const pdf14_clist_device pdf14_clist_CMYK_device = {
10405
    std_device_std_color_full_body_type(pdf14_clist_device,
10406
                                        pdf14_clist_CMYK_initialize_device_procs,
10407
                                        "pdf14clistcmyk",
10408
                                        &st_pdf14_device,
10409
                                        XSIZE, YSIZE, X_DPI, Y_DPI, 32,
10410
                                        0, 0, 0, 0, 0, 0),
10411
    { 0 },      /* Procs */
10412
    NULL,     /* target */
10413
    { 0 },      /* devn_params - not used */
10414
    &cmyk_pdf14_procs,
10415
    &cmyk_blending_procs
10416
};
10417
10418
const pdf14_clist_device pdf14_clist_CMYKspot_device = {
10419
    std_device_part1_(pdf14_device,
10420
                      pdf14_clist_CMYKspot_initialize_device_procs,
10421
                      "pdf14clistcmykspot",
10422
                      &st_pdf14_device,
10423
                      open_init_closed),
10424
    dci_values(GX_DEVICE_COLOR_MAX_COMPONENTS,64,255,255,256,256),
10425
    std_device_part2_(XSIZE, YSIZE, X_DPI, Y_DPI),
10426
    offset_margin_values(0, 0, 0, 0, 0, 0),
10427
    std_device_part3_(),
10428
    { 0 },      /* Procs */
10429
    NULL,     /* target */
10430
    /* DeviceN parameters */
10431
    { 8,      /* Not used - Bits per color */
10432
      DeviceCMYKComponents, /* Names of color model colorants */
10433
      4,      /* Number colorants for CMYK */
10434
      0,      /* MaxSeparations has not been specified */
10435
      -1,     /* PageSpotColors has not been specified */
10436
      {0},      /* SeparationNames */
10437
      0,      /* SeparationOrder names */
10438
      {0, 1, 2, 3, 4, 5, 6, 7 } /* Initial component SeparationOrder */
10439
    },
10440
    &cmykspot_pdf14_procs,
10441
    &cmyk_blending_procs
10442
};
10443
10444
const pdf14_clist_device pdf14_clist_custom_device = {
10445
    std_device_part1_(pdf14_device,
10446
                      pdf14_clist_CMYKspot_initialize_device_procs,
10447
                      "pdf14clistcustom",
10448
                      &st_pdf14_device,
10449
                      open_init_closed),
10450
    dci_values(GX_DEVICE_COLOR_MAX_COMPONENTS,64,255,255,256,256),
10451
    std_device_part2_(XSIZE, YSIZE, X_DPI, Y_DPI),
10452
    offset_margin_values(0, 0, 0, 0, 0, 0),
10453
    std_device_part3_(),
10454
    { 0 },      /* Procs */
10455
    NULL,     /* target */
10456
    /* DeviceN parameters */
10457
    { 8,      /* Not used - Bits per color */
10458
      DeviceCMYKComponents, /* Names of color model colorants */
10459
      4,      /* Number colorants for CMYK */
10460
      0,      /* MaxSeparations has not been specified */
10461
      -1,     /* PageSpotColors has not been specified */
10462
      {0},      /* SeparationNames */
10463
      0,      /* SeparationOrder names */
10464
      {0, 1, 2, 3, 4, 5, 6, 7 } /* Initial component SeparationOrder */
10465
    },
10466
    &custom_pdf14_procs,
10467
    &custom_blending_procs
10468
};
10469
10470
/*
10471
 * the PDF 1.4 transparency spec says that color space for blending
10472
 * operations can be based upon either a color space specified in the
10473
 * group or a default value based upon the output device.  We are
10474
 * currently only using a color space based upon the device.
10475
 */
10476
static  int
10477
get_pdf14_clist_device_proto(gx_device          *dev,
10478
                             pdf14_clist_device *pdevproto,
10479
                             gs_gstate          *pgs,
10480
                       const gs_pdf14trans_t    *pdf14pct,
10481
                             bool                use_pdf14_accum)
10482
737
{
10483
737
    pdf14_blend_cs_t blend_cs_state;
10484
737
    pdf14_default_colorspace_t dev_cs =
10485
737
                pdf14_determine_default_blend_cs(dev, use_pdf14_accum,
10486
737
                                                 &blend_cs_state);
10487
737
    bool deep = device_is_deep(dev);
10488
737
    int num_spots = pdf14pct->params.num_spot_colors;
10489
10490
    /* overprint overide */
10491
737
    if (pdf14pct->params.overprint_sim_push &&
10492
737
        blend_cs_state == PDF14_BLEND_CS_UNSPECIFIED) {
10493
0
        if (pdf14pct->params.num_spot_colors_int > 0) {
10494
0
            dev_cs = PDF14_DeviceCMYKspot;
10495
0
            num_spots = pdf14pct->params.num_spot_colors_int;
10496
0
        } else
10497
0
            dev_cs = PDF14_DeviceCMYK;
10498
0
    }
10499
10500
737
    switch (dev_cs) {
10501
0
        case PDF14_DeviceGray:
10502
           /* We want gray to be single channel.  Low level
10503
               initialization of gray device prototype is
10504
               peculiar in that in dci_std_color_num_components
10505
               the comment is
10506
              "A device is monochrome only if it is bi-level"
10507
              Here we want monochrome anytime we have a gray device.
10508
              To avoid breaking things elsewhere, we will overide
10509
              the prototype intialization here */
10510
0
            *pdevproto = pdf14_clist_Gray_device;
10511
0
            pdevproto->color_info.max_components = 1;
10512
0
            pdevproto->color_info.num_components =
10513
0
                                    pdevproto->color_info.max_components;
10514
0
            pdevproto->color_info.max_gray = deep ? 65535 : 255;
10515
0
            pdevproto->color_info.gray_index = 0; /* Avoid halftoning */
10516
0
            pdevproto->color_info.dither_grays = pdevproto->color_info.max_gray+1;
10517
0
            pdevproto->color_info.anti_alias = dev->color_info.anti_alias;
10518
0
            pdevproto->color_info.depth = deep ? 16 : 8;
10519
0
            pdevproto->sep_device = false;
10520
0
            break;
10521
67
        case PDF14_DeviceRGB:
10522
67
            *pdevproto = pdf14_clist_RGB_device;
10523
67
            pdevproto->color_info.anti_alias = dev->color_info.anti_alias;
10524
67
            pdevproto->sep_device = false;
10525
67
            if (deep) {
10526
0
                pdevproto->color_info.depth = 3*16;
10527
0
                pdevproto->color_info.max_color = 65535;
10528
0
                pdevproto->color_info.max_gray = 65535;
10529
0
                pdevproto->color_info.dither_colors = 65536;
10530
0
                pdevproto->color_info.dither_grays = 65536;
10531
0
            }
10532
67
            break;
10533
0
        case PDF14_DeviceCMYK:
10534
0
            *pdevproto = pdf14_clist_CMYK_device;
10535
0
            pdevproto->color_info.anti_alias = dev->color_info.anti_alias;
10536
0
            pdevproto->sep_device = false;
10537
0
            if (deep) {
10538
0
                pdevproto->color_info.depth = 4*16;
10539
0
                pdevproto->color_info.max_color = 65535;
10540
0
                pdevproto->color_info.max_gray = 65535;
10541
0
                pdevproto->color_info.dither_colors = 65536;
10542
0
                pdevproto->color_info.dither_grays = 65536;
10543
0
            }
10544
0
            break;
10545
670
        case PDF14_DeviceCMYKspot:
10546
670
            *pdevproto = pdf14_clist_CMYKspot_device;
10547
            /*
10548
             * The number of components for the PDF14 device is the sum
10549
             * of the process components and the number of spot colors
10550
             * for the page. If we are using an NCLR ICC profile at
10551
             * the output device, those spot colors are skipped. They
10552
             * do not appear in the transparency buffer, but appear
10553
             * during put image transform of the page group to the target
10554
             * color space.
10555
             */
10556
670
            if (num_spots >= 0) {
10557
670
                pdevproto->devn_params.page_spot_colors = num_spots;
10558
670
                pdevproto->color_info.num_components =
10559
670
                    pdevproto->devn_params.num_std_colorant_names + num_spots;
10560
670
                if (pdevproto->color_info.num_components >
10561
670
                              pdevproto->color_info.max_components)
10562
0
                    pdevproto->color_info.num_components =
10563
0
                              pdevproto->color_info.max_components;
10564
670
                pdevproto->color_info.depth =
10565
670
                              pdevproto->color_info.num_components * (8<<deep);
10566
670
            }
10567
670
            pdevproto->color_info.anti_alias = dev->color_info.anti_alias;
10568
670
            pdevproto->sep_device = true;
10569
670
            break;
10570
0
        case PDF14_DeviceRGBspot:
10571
0
            *pdevproto = pdf14_clist_RGBspot_device;
10572
            /*
10573
             * The number of components for the PDF14 device is the sum
10574
             * of the process components and the number of spot colors
10575
             * for the page. If we are using an NCLR ICC profile at
10576
             * the output device, those spot colors are skipped. They
10577
             * do not appear in the transparency buffer, but appear
10578
             * during put image transform of the page group to the target
10579
             * color space.
10580
             */
10581
0
            if (num_spots >= 0) {
10582
0
                pdevproto->devn_params.page_spot_colors = num_spots;
10583
0
                pdevproto->color_info.num_components =
10584
0
                    pdevproto->devn_params.num_std_colorant_names + num_spots;
10585
0
                if (pdevproto->color_info.num_components >
10586
0
                    pdevproto->color_info.max_components)
10587
0
                    pdevproto->color_info.num_components =
10588
0
                        pdevproto->color_info.max_components;
10589
0
                pdevproto->color_info.depth =
10590
0
                    pdevproto->color_info.num_components * (8 << deep);
10591
0
            }
10592
0
            pdevproto->color_info.anti_alias = dev->color_info.anti_alias;
10593
0
            pdevproto->sep_device = true;
10594
0
            break;
10595
0
        case PDF14_DeviceCustom:
10596
            /*
10597
             * We are using the output device's process color model.  The
10598
             * color_info for the PDF 1.4 compositing device needs to match
10599
             * the output device.
10600
             */
10601
0
            *pdevproto = pdf14_clist_custom_device;
10602
0
            pdevproto->color_info = dev->color_info;
10603
            /* The pdf14 device has to be 8 (or 16) bit continuous tone. Force it */
10604
0
            pdevproto->color_info.depth =
10605
0
                pdevproto->color_info.num_components * (8<<deep);
10606
0
            pdevproto->color_info.max_gray = deep ? 65535 : 255;
10607
0
            pdevproto->color_info.max_color = deep ? 65535 : 255;
10608
0
            pdevproto->color_info.dither_grays = deep ? 65536 : 256;
10609
0
            pdevproto->color_info.dither_colors = deep ? 65536 : 256;
10610
0
            pdevproto->color_info.anti_alias = dev->color_info.anti_alias;
10611
0
            break;
10612
0
        default:      /* Should not occur */
10613
0
            return_error(gs_error_rangecheck);
10614
737
    }
10615
737
    pdevproto->overprint_sim = pdf14pct->params.overprint_sim_push;
10616
737
    pdevproto->blend_cs_state = blend_cs_state;
10617
737
    return 0;
10618
737
}
10619
10620
static  int
10621
pdf14_create_clist_device(gs_memory_t *mem, gs_gstate * pgs,
10622
                                gx_device ** ppdev, gx_device * target,
10623
                                const gs_pdf14trans_t * pdf14pct)
10624
737
{
10625
737
    pdf14_clist_device dev_proto;
10626
737
    pdf14_clist_device * pdev;
10627
737
    int code;
10628
737
    bool has_tags = device_encodes_tags(target);
10629
737
    cmm_profile_t *target_profile;
10630
737
    gsicc_rendering_param_t render_cond;
10631
737
    cmm_dev_profile_t *dev_profile;
10632
737
    uchar k;
10633
737
    bool deep = device_is_deep(target);
10634
737
    cmm_profile_t *icc_profile;
10635
10636
10637
737
    code = dev_proc(target, get_profile)(target,  &dev_profile);
10638
737
    if (code < 0)
10639
0
        return code;
10640
737
    gsicc_extract_profile(GS_UNKNOWN_TAG, dev_profile, &target_profile,
10641
737
                          &render_cond);
10642
737
    if_debug0m('v', pgs->memory, "[v]pdf14_create_clist_device\n");
10643
    /* Prototypes never include tags. We add those in later. */
10644
737
    code = get_pdf14_clist_device_proto(target, &dev_proto,
10645
737
                                        pgs, pdf14pct, false);
10646
737
    if (code < 0)
10647
0
        return code;
10648
737
    code = gs_copydevice((gx_device **) &pdev,
10649
737
                         (const gx_device *) &dev_proto, mem);
10650
737
    if (code < 0)
10651
0
        return code;
10652
10653
    /* If we are not using a blending color space, the number of color planes
10654
       should not exceed that of the target */
10655
737
    if (!(pdev->blend_cs_state != PDF14_BLEND_CS_UNSPECIFIED || pdev->overprint_sim)) {
10656
737
        if (pdev->color_info.num_components > target->color_info.num_components - device_encodes_tags(target) + device_encodes_tags((gx_device *)pdev))
10657
0
            pdev->color_info.num_components = target->color_info.num_components - device_encodes_tags(target) + device_encodes_tags((gx_device *)pdev);
10658
737
        if (pdev->color_info.max_components > target->color_info.max_components)
10659
670
            pdev->color_info.max_components = target->color_info.max_components;
10660
737
    }
10661
737
    pdev->color_info.depth = pdev->color_info.num_components * (8<<deep);
10662
737
    pdev->pad = target->pad;
10663
737
    pdev->log2_align_mod = target->log2_align_mod;
10664
10665
737
    if (pdf14pct->params.overprint_sim_push && pdf14pct->params.num_spot_colors_int > 0 && target->num_planar_planes == 0)
10666
0
        pdev->num_planar_planes = pdev->color_info.num_components + pdf14pct->params.num_spot_colors_int;
10667
737
    else
10668
737
        pdev->num_planar_planes = target->num_planar_planes;
10669
737
    pdev->interpolate_threshold = dev_proc(target, dev_spec_op)(target, gxdso_interpolate_threshold, NULL, 0);
10670
10671
737
    pdev->op_state = pgs->is_fill_color ? PDF14_OP_STATE_FILL : PDF14_OP_STATE_NONE;
10672
10673
737
    if (deep) {
10674
0
        set_dev_proc(pdev, encode_color, pdf14_encode_color16);
10675
0
        set_dev_proc(pdev, decode_color, pdf14_decode_color16);
10676
0
    }
10677
    /* If we have a tag device then go ahead and do a special encoder decoder
10678
       for the pdf14 device to make sure we maintain this information in the
10679
       encoded color information.  We could use the target device's methods but
10680
       the PDF14 device has to maintain 8 bit color always and we could run
10681
       into other issues if the number of colorants became large.  If we need to
10682
       do compressed color with tags that will be a special project at that time */
10683
737
    if (has_tags) {
10684
0
        set_dev_proc(pdev, encode_color, deep ? pdf14_encode_color16_tag: pdf14_encode_color_tag);
10685
0
    }
10686
737
    pdev->color_info.separable_and_linear = GX_CINFO_SEP_LIN_STANDARD;  /* this is the standard */
10687
737
    gx_device_fill_in_procs((gx_device *)pdev);
10688
    /* Copying the params adds the tags to the color_info if required. */
10689
737
    gs_pdf14_device_copy_params((gx_device *)pdev, target);
10690
737
    gx_device_set_target((gx_device_forward *)pdev, target);
10691
10692
    /* Components shift, etc have to be based upon 8 bit */
10693
3.61k
    for (k = 0; k < pdev->color_info.num_components; k++) {
10694
2.88k
        pdev->color_info.comp_bits[k] = 8<<deep;
10695
2.88k
        pdev->color_info.comp_shift[k] = (pdev->color_info.num_components - 1 - k) * (8<<deep);
10696
2.88k
    }
10697
737
    code = dev_proc((gx_device *) pdev, open_device) ((gx_device *) pdev);
10698
737
    if (code < 0)
10699
0
        return code;
10700
737
    pdev->pclist_device = target;
10701
10702
737
    code = dev_proc(target, get_profile)(target, &dev_profile);
10703
737
    if (code < 0)
10704
0
        return code;
10705
737
    gsicc_extract_profile(GS_UNKNOWN_TAG, dev_profile, &icc_profile,
10706
737
        &render_cond);
10707
737
    if_debug0m('v', mem, "[v]pdf14_create_clist_device\n");
10708
10709
    /* Simulated overprint case.  We have to use CMYK-based profile
10710
       Also if the target profile is NCLR, we are going to use a pdf14
10711
       device that is CMYK based and do the mapping to the NCLR profile
10712
       when the put_image occurs */
10713
737
    if ((pdev->overprint_sim && icc_profile->data_cs != gsCMYK) ||
10714
737
         icc_profile->data_cs == gsNCHANNEL) {
10715
0
        gsicc_adjust_profile_rc(pgs->icc_manager->default_cmyk, 1, "pdf14_create_clist_device");
10716
0
        gsicc_adjust_profile_rc(pdev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE],
10717
0
            -1, "pdf14_create_clist_device");
10718
0
        pdev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE] = pgs->icc_manager->default_cmyk;
10719
737
    } else {
10720
        /* If the target profile was CIELAB, then overide with default RGB for
10721
           proper blending.  During put_image we will convert from RGB to
10722
           CIELAB */
10723
737
        if ((target_profile->data_cs == gsCIELAB || target_profile->islab) &&
10724
737
            pdev->blend_cs_state == PDF14_BLEND_CS_UNSPECIFIED) {
10725
0
            pdev->blend_cs_state = PDF14_BLEND_CS_TARGET_CIELAB;
10726
0
            rc_assign(pdev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE],
10727
0
                pgs->icc_manager->default_rgb, "pdf14_create_clist_device");
10728
0
        }
10729
737
    }
10730
10731
737
    if (pdf14pct->params.overprint_sim_push &&
10732
737
        pdf14pct->params.num_spot_colors_int > 0) {
10733
0
        pdev->procs.update_spot_equivalent_colors = pdf14_update_spot_equivalent_colors;
10734
0
        pdev->procs.ret_devn_params = pdf14_ret_devn_params;
10735
0
        pdev->op_pequiv_cmyk_colors.all_color_info_valid = false;
10736
0
        pdev->target_support_devn = pdev->icc_struct->supports_devn;
10737
0
        pdev->icc_struct->supports_devn = true;  /* Reset when pdf14 device is disabled */
10738
0
    }
10739
    /* if the device has separations already defined (by SeparationOrderNames) */
10740
    /* we need to copy them (allocating new names) so the colorants are in the */
10741
    /* same order as the target device.                                        */
10742
737
    if (dev_proc(target, dev_spec_op)(target, gxdso_supports_devn, NULL, 0)) {
10743
737
        code = devn_copy_params(target, (gx_device *)pdev);
10744
737
        if (code < 0)
10745
0
            return code;
10746
737
    }
10747
737
    pdev->my_encode_color = dev_proc(pdev, encode_color);
10748
737
    pdev->my_decode_color = dev_proc(pdev, decode_color);
10749
737
    pdev->my_get_color_mapping_procs = dev_proc(pdev, get_color_mapping_procs);
10750
737
    pdev->my_get_color_comp_index = dev_proc(pdev, get_color_comp_index);
10751
737
    pdev->color_info.separable_and_linear =
10752
737
        target->color_info.separable_and_linear;
10753
737
    *ppdev = (gx_device *) pdev;
10754
737
    return code;
10755
737
}
10756
10757
/*
10758
 * Disable the PDF 1.4 clist compositor device.  Once created, the PDF 1.4
10759
 * compositor device is never removed.  (We do not have a remove compositor
10760
 * method.)  However it is no-op'ed when the PDF 1.4 device is popped.  This
10761
 * routine implements that action.
10762
 */
10763
static  int
10764
pdf14_disable_clist_device(gs_memory_t *mem, gs_gstate * pgs,
10765
                                gx_device * dev)
10766
737
{
10767
737
    gx_device_forward * pdev = (gx_device_forward *)dev;
10768
737
    gx_device * target = pdev->target;
10769
10770
737
    if_debug0m('v', pgs->memory, "[v]pdf14_disable_clist_device\n");
10771
10772
    /*
10773
     * To disable the action of this device, we forward all device
10774
     * procedures to the target except the composite and copy
10775
     * the target's color_info.
10776
     */
10777
737
    dev->color_info = target->color_info;
10778
737
    pdf14_forward_device_procs(dev);
10779
737
    set_dev_proc(dev, composite, pdf14_clist_forward_composite);
10780
737
    return 0;
10781
737
}
10782
10783
/*
10784
 * Recreate the PDF 1.4 clist compositor device.  Once created, the PDF 1.4
10785
 * compositor device is never removed.  (We do not have a remove compositor
10786
 * method.)  However it is no-op'ed when the PDF 1.4 device is popped.  This
10787
 * routine will re-enable the compositor if the PDF 1.4 device is pushed
10788
 * again.
10789
 */
10790
static  int
10791
pdf14_recreate_clist_device(gs_memory_t *mem, gs_gstate * pgs,
10792
                gx_device * dev, const gs_pdf14trans_t * pdf14pct)
10793
0
{
10794
0
    pdf14_clist_device * pdev = (pdf14_clist_device *)dev;
10795
0
    gx_device * target = pdev->target;
10796
0
    pdf14_clist_device dev_proto;
10797
0
    int code;
10798
10799
0
    if_debug0m('v', pgs->memory, "[v]pdf14_recreate_clist_device\n");
10800
    /*
10801
     * We will not use the entire prototype device but we will set the
10802
     * color related info to match the prototype.
10803
     */
10804
0
    code = get_pdf14_clist_device_proto(target, &dev_proto,
10805
0
                                        pgs, pdf14pct, false);
10806
0
    if (code < 0)
10807
0
        return code;
10808
0
    pdev->color_info = dev_proto.color_info;
10809
0
    pdev->procs = dev_proto.procs;
10810
0
    pdev->pad = target->pad;
10811
0
    pdev->log2_align_mod = target->log2_align_mod;
10812
10813
0
    if (pdf14pct->params.overprint_sim_push && pdf14pct->params.num_spot_colors_int > 0 && target->num_planar_planes == 0)
10814
0
        pdev->num_planar_planes = pdev->color_info.num_components + pdf14pct->params.num_spot_colors_int;
10815
0
    else
10816
0
        pdev->num_planar_planes = target->num_planar_planes;
10817
0
    pdev->interpolate_threshold = dev_proc(target, dev_spec_op)(target, gxdso_interpolate_threshold, NULL, 0);
10818
10819
0
    copy_tag_setup(dev, target);
10820
10821
0
    pdev->color_info.separable_and_linear = GX_CINFO_SEP_LIN_STANDARD;
10822
0
    gx_device_fill_in_procs((gx_device *)pdev);
10823
0
    pdev->save_get_cmap_procs = pgs->get_cmap_procs;
10824
0
    pgs->get_cmap_procs = pdf14_get_cmap_procs;
10825
0
    gx_set_cmap_procs(pgs, (gx_device *)pdev);
10826
0
    check_device_separable((gx_device *)pdev);
10827
0
    return code;
10828
0
}
10829
10830
/*
10831
 * devicen params
10832
 */
10833
gs_devn_params *
10834
pdf14_ret_devn_params(gx_device *pdev)
10835
203k
{
10836
203k
    pdf14_device *p14dev = (pdf14_device *)pdev;
10837
10838
203k
    return &(p14dev->devn_params);
10839
203k
}
10840
10841
/*
10842
 * devicen params
10843
 */
10844
gs_devn_params *
10845
pdf14_accum_ret_devn_params(gx_device *pdev)
10846
0
{
10847
0
    gx_device_pdf14_accum *p14dev = (gx_device_pdf14_accum *)pdev;
10848
10849
0
    return &(p14dev->devn_params);
10850
0
}
10851
10852
static int
10853
pdf14_accum_get_color_comp_index(gx_device * dev,
10854
    const char * pname, int name_size, int component_type)
10855
0
{
10856
0
    pdf14_device *p14dev = (pdf14_device *)(((gx_device_pdf14_accum *)dev)->save_p14dev);
10857
0
    gx_device *target = p14dev->target;
10858
0
    int colorant_number = devn_get_color_comp_index(dev,
10859
0
                &(((gx_device_pdf14_accum *)dev)->devn_params),
10860
0
                &(((gx_device_pdf14_accum *)dev)->equiv_cmyk_colors),
10861
0
                pname, name_size, component_type, ENABLE_AUTO_SPOT_COLORS);
10862
10863
0
    if (target != NULL)
10864
        /* colorant_number returned here _should_ be the same as from above */
10865
0
        colorant_number = (*dev_proc(target, get_color_comp_index))
10866
0
                              (target, (const char *)pname, name_size, component_type);
10867
0
    return colorant_number;
10868
0
}
10869
10870
/*
10871
 * The following procedures are used to map the standard color spaces into
10872
 * the separation color components for the pdf14_accum device.
10873
 */
10874
static void
10875
pdf14_accum_gray_cs_to_cmyk_cm(const gx_device * dev, frac gray, frac out[])
10876
0
{
10877
0
    int * map =
10878
0
      (int *)(&((gx_device_pdf14_accum *) dev)->devn_params.separation_order_map);
10879
10880
0
    gray_cs_to_devn_cm(dev, map, gray, out);
10881
0
}
10882
10883
static void
10884
pdf14_accum_rgb_cs_to_cmyk_cm(const gx_device * dev,
10885
    const gs_gstate *pgs, frac r, frac g, frac b, frac out[])
10886
0
{
10887
0
    int * map =
10888
0
      (int *)(&((gx_device_pdf14_accum *) dev)->devn_params.separation_order_map);
10889
10890
0
    rgb_cs_to_devn_cm(dev, map, pgs, r, g, b, out);
10891
0
}
10892
10893
static void
10894
pdf14_accum_cmyk_cs_to_cmyk_cm(const gx_device * dev,
10895
    frac c, frac m, frac y, frac k, frac out[])
10896
0
{
10897
0
    const int * map =
10898
0
      (int *)(&((gx_device_pdf14_accum *) dev)->devn_params.separation_order_map);
10899
10900
0
    cmyk_cs_to_devn_cm(dev, map, c, m, y, k, out);
10901
0
}
10902
10903
static const gx_cm_color_map_procs pdf14_accum_cm_procs = {
10904
    pdf14_accum_gray_cs_to_cmyk_cm,
10905
    pdf14_accum_rgb_cs_to_cmyk_cm,
10906
    pdf14_accum_cmyk_cs_to_cmyk_cm
10907
};
10908
10909
static const gx_cm_color_map_procs *
10910
pdf14_accum_get_color_mapping_procs(const gx_device * dev, const gx_device **map_dev)
10911
0
{
10912
0
    *map_dev = dev;
10913
0
    return &pdf14_accum_cm_procs;
10914
0
}
10915
10916
/*
10917
 *  Device proc for updating the equivalent CMYK color for spot colors.
10918
 */
10919
static int
10920
pdf14_accum_update_spot_equivalent_colors(gx_device * dev, const gs_gstate * pgs, const gs_color_space *pcs)
10921
0
{
10922
0
    gx_device_pdf14_accum *pdev = (gx_device_pdf14_accum *)dev;
10923
0
    gx_device *tdev = ((pdf14_device *)(pdev->save_p14dev))->target;
10924
0
    int code = update_spot_equivalent_cmyk_colors(dev, pgs, pcs, &pdev->devn_params,
10925
0
                                              &pdev->equiv_cmyk_colors);
10926
10927
0
    if (code >= 0 && tdev != NULL)
10928
0
        code = dev_proc(tdev, update_spot_equivalent_colors)(tdev, pgs, pcs);
10929
0
    return code;
10930
0
}
10931
10932
/* Used when doing overprint simulation and have spot colors */
10933
static int
10934
pdf14_update_spot_equivalent_colors(gx_device *dev, const gs_gstate *pgs, const gs_color_space *pcs)
10935
0
{
10936
0
    pdf14_device *pdev = (pdf14_device *)dev;
10937
0
    int code;
10938
10939
    /* Make sure we are not All or None */
10940
0
    if (pcs != NULL && pcs->type->index == gs_color_space_index_Separation &&
10941
0
        pcs->params.separation.sep_type != SEP_OTHER)
10942
0
            return 0;
10943
10944
0
    code = update_spot_equivalent_cmyk_colors(dev, pgs, pcs, &pdev->devn_params,
10945
0
        &pdev->op_pequiv_cmyk_colors);
10946
0
    return code;
10947
0
}
10948
10949
/*
10950
 * Retrieve a list of spot color names for the PDF14 device.
10951
 */
10952
int
10953
put_param_pdf14_spot_names(gx_device * pdev,
10954
                gs_separations * pseparations, gs_param_list * plist)
10955
40.9k
{
10956
40.9k
    int code, num_spot_colors, i;
10957
40.9k
    gs_param_string str;
10958
10959
    /* Check if the given keyname is present. */
10960
40.9k
    code = param_read_int(plist, PDF14NumSpotColorsParamName,
10961
40.9k
                                                &num_spot_colors);
10962
40.9k
    switch (code) {
10963
0
        default:
10964
0
            param_signal_error(plist, PDF14NumSpotColorsParamName, code);
10965
0
            break;
10966
40.9k
        case 1:
10967
40.9k
            return 0;
10968
0
        case 0:
10969
0
            if (num_spot_colors < 1 ||
10970
0
                num_spot_colors > GX_DEVICE_COLOR_MAX_COMPONENTS)
10971
0
                return_error(gs_error_rangecheck);
10972
0
            for (i = 0; i < num_spot_colors; i++) {
10973
0
                char buff[20];
10974
0
                byte * sep_name;
10975
10976
0
                gs_snprintf(buff, sizeof(buff), "PDF14SpotName_%d", i);
10977
0
                code = param_read_string(plist, buff, &str);
10978
0
                switch (code) {
10979
0
                    default:
10980
0
                        param_signal_error(plist, buff, code);
10981
0
                        break;
10982
0
                    case 0:
10983
0
                        sep_name = gs_alloc_bytes(pdev->memory,
10984
0
                                str.size, "put_param_pdf14_spot_names");
10985
0
                        if (sep_name == NULL)
10986
0
                            return_error(gs_error_VMerror);
10987
10988
0
                        memcpy(sep_name, str.data, str.size);
10989
0
                        pseparations->names[i].size = str.size;
10990
0
                        pseparations->names[i].data = sep_name;
10991
0
                }
10992
0
            }
10993
0
            pseparations->num_separations = num_spot_colors;
10994
0
            break;
10995
40.9k
    }
10996
0
    return 0;;
10997
0
}
10998
10999
/*
11000
 * This procedure will have information from the PDF 1.4 clist writing
11001
 * clist compositior device.  This is information output the compressed
11002
 * color list info which is needed for the support of spot colors in
11003
 * PDF 1.4 compositing.  This info needs to be passed to the PDF 1.4
11004
 * clist reading compositor.  However this device is not created until
11005
 * the clist is read.  To get this info to that device, we have to
11006
 * temporarily store that info in the output device.  This routine saves
11007
 * that info in the output device.
11008
 */
11009
int
11010
pdf14_put_devn_params(gx_device * pdev, gs_devn_params * pdevn_params,
11011
                                        gs_param_list * plist)
11012
40.9k
{
11013
40.9k
    int code;
11014
40.9k
    code = put_param_pdf14_spot_names(pdev,
11015
40.9k
                       &pdevn_params->pdf14_separations, plist);
11016
40.9k
    return code;
11017
40.9k
}
11018
11019
/*
11020
 * When we are banding, we have two PDF 1.4 compositor devices.  One for
11021
 * when we are creating the clist.  The second is for imaging the data from
11022
 * the clist.  This routine is part of the clist writing PDF 1.4 device.
11023
 * This routine is only called once the PDF 1.4 clist write compositor already
11024
 * exists.
11025
 */
11026
static  int
11027
pdf14_clist_composite(gx_device * dev, gx_device ** pcdev,
11028
    const gs_composite_t * pct, gs_gstate * pgs, gs_memory_t * mem,
11029
    gx_device *cdev)
11030
77.6k
{
11031
77.6k
    pdf14_clist_device * pdev = (pdf14_clist_device *)dev;
11032
77.6k
    int code, is_pdf14_compositor;
11033
77.6k
    const gs_pdf14trans_t * pdf14pct = (const gs_pdf14trans_t *) pct;
11034
77.6k
    bool deep = device_is_deep(dev);
11035
11036
    /* We only handle a few PDF 1.4 transparency operations */
11037
77.6k
    if ((is_pdf14_compositor = gs_is_pdf14trans_compositor(pct)) != 0) {
11038
76.2k
        switch (pdf14pct->params.pdf14_op) {
11039
0
            case PDF14_PUSH_DEVICE:
11040
                /* Re-activate the PDF 1.4 compositor */
11041
0
                pdev->saved_target_color_info = pdev->target->color_info;
11042
0
                pdev->target->color_info = pdev->color_info;
11043
0
                pdev->saved_target_encode_color = dev_proc(pdev->target, encode_color);
11044
0
                pdev->saved_target_decode_color = dev_proc(pdev->target, decode_color);
11045
0
                set_dev_proc(pdev->target, encode_color, pdev->my_encode_color);
11046
0
                set_dev_proc(pdev, encode_color, pdev->my_encode_color);
11047
0
                set_dev_proc(pdev->target, decode_color, pdev->my_decode_color);
11048
0
                set_dev_proc(pdev, decode_color, pdev->my_decode_color);
11049
0
                pdev->saved_target_get_color_mapping_procs =
11050
0
                                        dev_proc(pdev->target, get_color_mapping_procs);
11051
0
                pdev->saved_target_get_color_comp_index =
11052
0
                                        dev_proc(pdev->target, get_color_comp_index);
11053
0
                set_dev_proc(pdev->target, get_color_mapping_procs, pdev->my_get_color_mapping_procs);
11054
0
                set_dev_proc(pdev, get_color_mapping_procs, pdev->my_get_color_mapping_procs);
11055
0
                set_dev_proc(pdev->target, get_color_comp_index, pdev->my_get_color_comp_index);
11056
0
                set_dev_proc(pdev, get_color_comp_index, pdev->my_get_color_comp_index);
11057
0
                pdev->save_get_cmap_procs = pgs->get_cmap_procs;
11058
0
                pgs->get_cmap_procs = pdf14_get_cmap_procs;
11059
0
                gx_set_cmap_procs(pgs, dev);
11060
0
                code = pdf14_recreate_clist_device(mem, pgs, dev, pdf14pct);
11061
0
                pdev->blend_mode = pdev->text_knockout = 0;
11062
0
                pdev->opacity = pdev->shape = 0.0;
11063
0
                if (code < 0)
11064
0
                    return code;
11065
                /*
11066
                 * This routine is part of the PDF 1.4 clist write device.
11067
                 * Change the compositor procs to not create another since we
11068
                 * do not need to create a chain of identical devices.
11069
                 */
11070
0
                {
11071
0
                    gs_pdf14trans_t pctemp = *pdf14pct;
11072
11073
0
                    pctemp.type = &gs_composite_pdf14trans_no_clist_writer_type;
11074
0
                    code = dev_proc(pdev->target, composite)
11075
0
                                (pdev->target, pcdev, (gs_composite_t *)&pctemp, pgs, mem, cdev);
11076
                    /* We should never have created a new device here. */
11077
0
                    assert(code != 1);
11078
0
                    return code;
11079
0
                }
11080
737
            case PDF14_POP_DEVICE:
11081
737
            {
11082
737
                gx_device *clistdev = pdev->target;
11083
11084
                /* Find the clist device */
11085
737
                while (1) {
11086
737
                    gxdso_device_child_request req;
11087
                    /* Ignore any errors here, that's expected as non-clist
11088
                     * devices don't implement it. */
11089
737
                    code = dev_proc(clistdev, dev_spec_op)(clistdev, gxdso_is_clist_device, NULL, 0);
11090
737
                    if (code == 1)
11091
737
                        break;
11092
0
                    req.n = 0;
11093
0
                    req.target = clistdev;
11094
0
                    code = dev_proc(clistdev, dev_spec_op)(clistdev, gxdso_device_child, &req, sizeof(req));
11095
0
                    if (code < 0)
11096
0
                        return code;
11097
0
                    clistdev = req.target;
11098
0
                }
11099
11100
                /* If we have overprint simulation spot color information, store
11101
                   it in a pseudo-band of the clist */
11102
737
                if (pdev->overprint_sim &&
11103
737
                    pdev->devn_params.page_spot_colors > 0) {
11104
0
                    code = clist_write_op_equiv_cmyk_colors((gx_device_clist_writer *)clistdev,
11105
0
                        &pdev->op_pequiv_cmyk_colors);
11106
0
                    if (code < 0)
11107
0
                        return code;
11108
0
                }
11109
11110
                /* If we hit an error during an SMask, we need to undo the color
11111
                 * swapping before continuing. pdf14_decrement_smask_color() checks
11112
                 * for itself if it needs to take action.
11113
                 */
11114
737
                pdf14_decrement_smask_color(pgs, dev);
11115
                /* Restore the color_info for the clist device */
11116
737
                clistdev->color_info = pdev->saved_target_color_info;
11117
737
                ((gx_device_clist_writer*)clistdev)->clist_color_info = clistdev->color_info; /* also reset for writer */
11118
737
                set_dev_proc(clistdev, encode_color, pdev->saved_target_encode_color);
11119
737
                set_dev_proc(clistdev, decode_color, pdev->saved_target_decode_color);
11120
737
                set_dev_proc(clistdev, get_color_mapping_procs, pdev->saved_target_get_color_mapping_procs);
11121
737
                set_dev_proc(clistdev, get_color_comp_index, pdev->saved_target_get_color_comp_index);
11122
737
                pgs->get_cmap_procs = pdev->save_get_cmap_procs;
11123
737
                gx_set_cmap_procs(pgs, clistdev);
11124
737
                gx_device_decache_colors(clistdev);
11125
                /* Disable the PDF 1.4 compositor */
11126
737
                pdf14_disable_clist_device(mem, pgs, dev);
11127
                /*
11128
                 * Make sure that the transfer funtions, etc. are current.
11129
                 */
11130
737
                code = cmd_put_color_mapping((gx_device_clist_writer *)clistdev, pgs);
11131
737
                if (code < 0)
11132
0
                    return code;
11133
737
                break;
11134
737
            }
11135
737
            case PDF14_BEGIN_TRANS_PAGE_GROUP:
11136
2.08k
            case PDF14_BEGIN_TRANS_GROUP:
11137
2.08k
                if (pdev->smask_constructed || pdev->depth_within_smask)
11138
980
                    pdev->depth_within_smask++;
11139
2.08k
                pdev->smask_constructed = 0;
11140
                /*
11141
                 * Keep track of any changes made in the blending parameters.
11142
                   These need to be written out in the same bands as the group
11143
                   information is written.  Hence the passing of the dimensions
11144
                   for the group. */
11145
2.08k
                code = pdf14_clist_update_params(pdev, pgs, true,
11146
2.08k
                                                 (gs_pdf14trans_params_t *)&(pdf14pct->params));
11147
2.08k
                if (code < 0)
11148
0
                    return code;
11149
2.08k
                if (pdf14pct->params.Background_components != 0 &&
11150
2.08k
                    pdf14pct->params.Background_components !=
11151
0
                    pdev->color_info.num_components)
11152
0
                    return_error(gs_error_rangecheck);
11153
11154
                /* We need to update the clist writer device procs based upon the
11155
                   the group color space. This ensures the proper color data is
11156
                   written out to the device. For simplicity, the list item is
11157
                   created even if the color space did not change */
11158
2.08k
                code = pdf14_clist_push_color_model(dev, cdev, pgs, pdf14pct, mem, false);
11159
2.08k
                if (code < 0)
11160
0
                    return code;
11161
11162
2.08k
                break;
11163
2.08k
            case PDF14_BEGIN_TRANS_MASK:
11164
                /* We need to update the clist writer device procs based upon the
11165
                   the group color space.  For simplicity, the list item is created
11166
                   even if the color space did not change */
11167
                /* First store the current ones */
11168
1.92k
                if (pdf14pct->params.subtype == TRANSPARENCY_MASK_None)
11169
943
                    break;
11170
11171
                /* Update the color settings of the clist writer.  Store information in stack */
11172
984
                code = pdf14_clist_push_color_model(dev, cdev, pgs, pdf14pct, mem, true);
11173
984
                if (code < 0)
11174
0
                    return code;
11175
11176
                /* Also, if the BC is a value that may end up as something other
11177
                  than transparent. We must use the parent colors bounding box in
11178
                  determining the range of bands in which this mask can affect.
11179
                  So, if needed change the masks bounding box at this time */
11180
984
                pdev->in_smask_construction++;
11181
984
                break;
11182
30.2k
            case PDF14_BEGIN_TRANS_TEXT_GROUP:
11183
30.2k
                if (pdev->text_group == PDF14_TEXTGROUP_BT_PUSHED) {
11184
0
                    emprintf(pdev->memory, "Warning: Text group pushed but no ET found\n");
11185
0
                    pdev->text_group = PDF14_TEXTGROUP_MISSING_ET;
11186
0
                } else
11187
30.2k
                    pdev->text_group = PDF14_TEXTGROUP_BT_NOT_PUSHED;
11188
30.2k
                *pcdev = dev;
11189
30.2k
                return 0; /* Never put into clist. Only used during writing */
11190
35.2k
            case PDF14_END_TRANS_TEXT_GROUP:
11191
35.2k
                if (pdev->text_group != PDF14_TEXTGROUP_BT_PUSHED) {
11192
35.1k
                    *pcdev = dev;
11193
35.1k
                    return 0; /* Avoids spurious ET calls in interpreter */
11194
35.1k
                }
11195
67
                pdev->text_group = PDF14_TEXTGROUP_NO_BT; /* These can't be nested */
11196
67
                code = pdf14_clist_pop_color_model(dev, pgs);
11197
67
                if (code < 0)
11198
0
                    return code;
11199
67
                break;
11200
984
            case PDF14_END_TRANS_MASK:
11201
984
                pdev->in_smask_construction--;
11202
984
                if (pdev->in_smask_construction < 0)
11203
0
                    pdev->in_smask_construction = 0;
11204
984
                if (pdev->in_smask_construction == 0)
11205
982
                    pdev->smask_constructed = 1;
11206
                /* fallthrough */
11207
2.99k
            case PDF14_END_TRANS_GROUP:
11208
                /* We need to update the clist writer device procs based upon the
11209
                   the group color space. */
11210
2.99k
                code = pdf14_clist_pop_color_model(dev, pgs);
11211
2.99k
                if (pdev->depth_within_smask)
11212
980
                    pdev->depth_within_smask--;
11213
2.99k
                if (code < 0)
11214
0
                    return code;
11215
2.99k
                break;
11216
2.99k
            case PDF14_PUSH_TRANS_STATE:
11217
0
                break;
11218
971
            case PDF14_POP_TRANS_STATE:
11219
971
                break;
11220
984
            case PDF14_PUSH_SMASK_COLOR:
11221
984
                code = pdf14_increment_smask_color(pgs,dev);
11222
984
                *pcdev = dev;
11223
984
                return code;  /* Note, this are NOT put in the clist */
11224
0
                break;
11225
984
            case PDF14_POP_SMASK_COLOR:
11226
984
                code = pdf14_decrement_smask_color(pgs,dev);
11227
984
                *pcdev = dev;
11228
984
                return code;  /* Note, this are NOT put in the clist */
11229
0
                break;
11230
0
            case PDF14_SET_BLEND_PARAMS:
11231
                /* If there is a change we go ahead and apply it to the target */
11232
0
                code = pdf14_clist_update_params(pdev, pgs, false,
11233
0
                                                 (gs_pdf14trans_params_t *)&(pdf14pct->params));
11234
0
                *pcdev = dev;
11235
0
                return code;
11236
0
                break;
11237
0
            case PDF14_ABORT_DEVICE:
11238
0
                code = gx_abort_trans_device(pgs, dev);
11239
0
                if (pdev->free_devicen) {
11240
0
                    devn_free_params(dev);
11241
0
                }
11242
0
                pdf14_disable_device(dev);
11243
0
                pdf14_close(dev);
11244
0
                *pcdev = dev;
11245
0
                return code;
11246
0
                break;
11247
0
            default:
11248
0
                break;   /* Pass remaining ops to target */
11249
76.2k
        }
11250
76.2k
    }
11251
10.2k
    code = dev_proc(pdev->target, composite)
11252
10.2k
                        (pdev->target, pcdev, pct, pgs, mem, cdev);
11253
    /* If we were accumulating into a pdf14-clist-accum device, */
11254
    /* we now have to render the page into it's target device */
11255
10.2k
    if (is_pdf14_compositor && pdf14pct->params.pdf14_op == PDF14_POP_DEVICE &&
11256
10.2k
        pdev->target->stype == &st_gx_devn_accum_device) {
11257
11258
0
        int i, y, rows_used;
11259
0
        byte *linebuf;
11260
0
        byte *actual_data;
11261
0
        gx_device_pdf14_accum *tdev = (gx_device_pdf14_accum *)(pdev->target);     /* the printer class clist device used to accumulate */
11262
        /* get the target device we want to send the image to */
11263
0
        gx_device *target = ((pdf14_device *)(tdev->save_p14dev))->target;
11264
0
        gs_image1_t image;
11265
0
        gs_color_space *pcs;
11266
0
        gx_image_enum_common_t *info = NULL;
11267
0
        gx_image_plane_t planes;
11268
0
        gsicc_rendering_param_t render_cond;
11269
0
        cmm_dev_profile_t *dev_profile;
11270
0
        bool save_planar = pdev->num_planar_planes;
11271
0
        gs_devn_params *target_devn_params = dev_proc(target, ret_devn_params)(target);
11272
0
        int save_num_separations;
11273
0
        gs_int_rect rect;
11274
11275
0
        pdev->num_planar_planes = 0;    /* so gx_device_raster is for entire chunky pixel line */
11276
0
        linebuf = gs_alloc_bytes(mem, gx_device_raster((gx_device *)pdev, true), "pdf14-clist_accum pop dev");
11277
0
        pdev->num_planar_planes = save_planar;
11278
11279
        /* As long as we don't have spot colors, we can use ICC colorspace, but spot
11280
         * colors do require devn support
11281
         */
11282
0
        if (tdev->color_info.num_components <= 4 ||
11283
0
             dev_proc(target, dev_spec_op)(target, gxdso_supports_devn, NULL, 0) <= 0) {
11284
            /*
11285
             * Set color space in preparation for sending an image.
11286
             */
11287
0
            code = gs_cspace_build_ICC(&pcs, NULL, pgs->memory);
11288
0
            if (code < 0)
11289
0
                goto put_accum_error;
11290
11291
            /* Need to set this to avoid color management during the
11292
               image color render operation.  Exception is for the special case
11293
               when the destination was CIELAB.  Then we need to convert from
11294
               default RGB to CIELAB in the put image operation.  That will happen
11295
               here as we should have set the profile for the pdf14 device to RGB
11296
               and the target will be CIELAB */
11297
0
            code = dev_proc(dev, get_profile)(dev,  &dev_profile);
11298
0
            if (code < 0)
11299
0
                goto put_accum_error;
11300
0
            gsicc_extract_profile(GS_UNKNOWN_TAG, dev_profile,
11301
0
                                  &(pcs->cmm_icc_profile_data), &render_cond);
11302
            /* pcs takes a reference to the profile data it just retrieved. */
11303
0
            gsicc_adjust_profile_rc(pcs->cmm_icc_profile_data, 1, "pdf14_clist_composite");
11304
0
            gsicc_set_icc_range(&(pcs->cmm_icc_profile_data));
11305
0
        } else {
11306
             /* DeviceN case -- need to handle spot colors */
11307
0
            code = gs_cspace_new_DeviceN(&pcs, tdev->color_info.num_components,
11308
0
                                         gs_currentcolorspace(pgs), pgs->memory);
11309
0
            if (code < 0)
11310
0
                goto put_accum_error;
11311
            /* set up a usable DeviceN space with info from the tdev->devn_params */
11312
0
            pcs->params.device_n.use_alt_cspace = false;
11313
11314
0
            if ((code = pcs->type->install_cspace(pcs, pgs)) < 0) {
11315
0
                goto put_accum_error;
11316
0
            }
11317
            /* One last thing -- we need to fudge the pgs->color_component_map */
11318
0
            for (i=0; i < tdev->color_info.num_components; i++)
11319
0
                pgs->color_component_map.color_map[i] = i; /* enable all components in normal order */
11320
            /* copy devn_params that were accumulated into the target device's devn_params */
11321
0
            target_devn_params->bitspercomponent = tdev->devn_params.bitspercomponent;
11322
0
            target_devn_params->std_colorant_names = tdev->devn_params.std_colorant_names;
11323
0
            target_devn_params->num_std_colorant_names = tdev->devn_params.num_std_colorant_names;
11324
0
            target_devn_params->max_separations = tdev->devn_params.max_separations;
11325
0
            target_devn_params->page_spot_colors = tdev->devn_params.page_spot_colors;
11326
0
            target_devn_params->num_separation_order_names = tdev->devn_params.num_separation_order_names;
11327
0
            target_devn_params->separations = tdev->devn_params.separations;
11328
0
            memcpy(target_devn_params->separation_order_map, tdev->devn_params.separation_order_map,
11329
0
                   sizeof(gs_separation_map));
11330
0
            target_devn_params->pdf14_separations = tdev->devn_params.pdf14_separations;
11331
0
        }
11332
0
        if (linebuf == NULL) {
11333
0
            code = gs_error_VMerror;
11334
0
            goto put_accum_error;
11335
0
        }
11336
0
        gs_image_t_init_adjust(&image, pcs, false);
11337
0
        image.ImageMatrix.xx = (float)pdev->width;
11338
0
        image.ImageMatrix.yy = (float)pdev->height;
11339
0
        image.Width = pdev->width;
11340
0
        image.Height = pdev->height;
11341
0
        image.BitsPerComponent = 8<<deep;
11342
0
        ctm_only_writable(pgs).xx = (float)pdev->width;
11343
0
        ctm_only_writable(pgs).xy = 0;
11344
0
        ctm_only_writable(pgs).yx = 0;
11345
0
        ctm_only_writable(pgs).yy = (float)pdev->height;
11346
0
        ctm_only_writable(pgs).tx = 0.0;
11347
0
        ctm_only_writable(pgs).ty = 0.0;
11348
0
        code = dev_proc(target, begin_typed_image) (target,
11349
0
                                                    pgs, NULL,
11350
0
                                                    (gs_image_common_t *)&image,
11351
0
                                                    NULL, NULL, NULL,
11352
0
                                                    pgs->memory, &info);
11353
0
        if (code < 0)
11354
0
            goto put_accum_error;
11355
0
        rect.p.x = 0;
11356
0
        rect.q.x = tdev->width;
11357
0
        for (y=0; y < tdev->height; y++) {
11358
0
            gs_get_bits_params_t params;
11359
11360
0
            params.options = (GB_ALIGN_ANY |
11361
0
                              (GB_RETURN_COPY | GB_RETURN_POINTER) |
11362
0
                              GB_OFFSET_0 |
11363
0
                              GB_RASTER_STANDARD | GB_PACKING_CHUNKY |
11364
0
                              GB_COLORS_NATIVE | GB_ALPHA_NONE);
11365
0
            params.x_offset = 0;
11366
0
            params.raster = bitmap_raster(dev->width * dev->color_info.depth);
11367
0
            params.data[0] = linebuf;
11368
0
            rect.p.y = y;
11369
0
            rect.q.y = y+1;
11370
0
            code = dev_proc(tdev, get_bits_rectangle)((gx_device *)tdev,
11371
0
                                                      &rect, &params);
11372
0
            if (code < 0)
11373
0
                goto put_accum_error;
11374
0
            actual_data = params.data[0];
11375
0
            planes.data = actual_data;
11376
0
            planes.data_x = 0;
11377
0
            planes.raster = tdev->width * tdev->color_info.num_components;
11378
0
            if ((code = info->procs->plane_data(info, &planes, 1, &rows_used)) < 0)
11379
0
                goto put_accum_error;
11380
0
        }
11381
11382
0
put_accum_error:
11383
0
        if (info != NULL) {
11384
0
            if (code < 0)
11385
0
                (void)info->procs->end_image(info, true);
11386
0
            else
11387
0
                code = info->procs->end_image(info, true);
11388
0
        }
11389
11390
0
        gs_free_object(pdev->memory, linebuf, "pdf14_put_image");
11391
        /* This will also decrement the device profile */
11392
0
        rc_decrement_only_cs(pcs, "pdf14_put_image");
11393
0
        dev_proc(tdev, close_device)((gx_device *)tdev);  /* frees the prn_device memory */
11394
        /* Now unhook the clist device and hook to the original so we can clean up */
11395
0
        gx_device_set_target((gx_device_forward *)pdev,
11396
0
                             ((gx_device_pdf14_accum *)(pdev->target))->save_p14dev);
11397
0
        pdev->pclist_device = pdev->target;
11398
0
        *pcdev = pdev->target;          /* pass upwards to switch devices */
11399
0
        pdev->color_info = target->color_info;      /* same as in pdf14_disable_clist */
11400
0
        if (target_devn_params != NULL) {
11401
            /* prevent devn_free_params from freeing names still in use by target device */
11402
0
            save_num_separations = tdev->devn_params.separations.num_separations;
11403
0
            tdev->devn_params.separations.num_separations = 0;
11404
0
        }
11405
0
        gs_free_object(tdev->memory, tdev, "popdevice pdf14-accum");
11406
0
        if (target_devn_params != NULL) {
11407
0
            target_devn_params->separations.num_separations = save_num_separations;
11408
0
        }
11409
0
        return code;    /* DON'T perform set_target */
11410
0
    }
11411
10.2k
    if (code == 1) {
11412
        /* We just wrapped pdev->target, so we need to update that.*/
11413
0
        gx_device_set_target((gx_device_forward *)pdev, *pcdev);
11414
0
        code = 0; /* We did not wrap dev. */
11415
0
    }
11416
10.2k
    *pcdev = dev;
11417
10.2k
    return code;
11418
10.2k
}
11419
11420
/*
11421
 * The PDF 1.4 clist compositor is never removed.  (We do not have a 'remove
11422
 * compositor' method.  However the compositor is disabled when we are not
11423
 * doing a page which uses PDF 1.4 transparency.  This routine is only active
11424
 * when the PDF 1.4 compositor is 'disabled'.  It checks for reenabling the
11425
 * PDF 1.4 compositor.  Otherwise it simply passes create compositor requests
11426
 * to the targer.
11427
 */
11428
static  int
11429
pdf14_clist_forward_composite(gx_device * dev, gx_device * * pcdev,
11430
        const gs_composite_t * pct, gs_gstate * pgs,
11431
        gs_memory_t * mem, gx_device *cdev)
11432
0
{
11433
0
    pdf14_device *pdev = (pdf14_device *)dev;
11434
0
    gx_device * tdev = pdev->target;
11435
0
    gx_device * ndev;
11436
0
    int code;
11437
11438
0
    *pcdev = dev;
11439
0
    if (gs_is_pdf14trans_compositor(pct)) {
11440
0
        const gs_pdf14trans_t * pdf14pct = (const gs_pdf14trans_t *) pct;
11441
11442
0
        if (pdf14pct->params.pdf14_op == PDF14_PUSH_DEVICE)
11443
0
            return pdf14_clist_composite(dev, &ndev, pct, pgs, mem, cdev);
11444
0
        return 0;
11445
0
    }
11446
0
    code = dev_proc(tdev, composite)(tdev, &ndev, pct, pgs, mem, cdev);
11447
0
    if (code == 1) {
11448
        /* We just wrapped tdev, so update our target. */
11449
0
        gx_device_set_target((gx_device_forward *)pdev, ndev);
11450
0
        code = 0; /* We did not wrap dev. */
11451
0
    }
11452
0
    return code;
11453
0
}
11454
11455
/*
11456
 * If any of the PDF 1.4 transparency blending parameters have changed, we
11457
 * need to send them to the PDF 1.4 compositor on the output side of the clist.
11458
 */
11459
static  int
11460
pdf14_clist_update_params(pdf14_clist_device * pdev, const gs_gstate * pgs,
11461
                          bool crop_blend_params,
11462
                          gs_pdf14trans_params_t *group_params)
11463
890k
{
11464
890k
    gs_pdf14trans_params_t params = { 0 };
11465
890k
    gx_device * pcdev;
11466
890k
    int changed = 0;
11467
890k
    int code = 0;
11468
890k
    gs_composite_t *pct_new = NULL;
11469
11470
890k
    params.crop_blend_params = crop_blend_params;
11471
11472
890k
    params.pdf14_op = PDF14_SET_BLEND_PARAMS;
11473
890k
    if (pgs->blend_mode != pdev->blend_mode) {
11474
960
        changed |= PDF14_SET_BLEND_MODE;
11475
960
        params.blend_mode = pdev->blend_mode = pgs->blend_mode;
11476
960
    }
11477
890k
    if (pgs->text_knockout != pdev->text_knockout) {
11478
717
        changed |= PDF14_SET_TEXT_KNOCKOUT;
11479
717
        params.text_knockout = pdev->text_knockout = pgs->text_knockout;
11480
717
    }
11481
890k
    if (pgs->alphaisshape != pdev->ais) {
11482
87
        changed |= PDF14_SET_AIS;
11483
87
        params.ais = pdev->ais = pgs->alphaisshape;
11484
87
    }
11485
890k
    if (pgs->overprint != pdev->overprint) {
11486
41
        changed |= PDF14_SET_OVERPRINT;
11487
41
        params.overprint = pdev->overprint = pgs->overprint;
11488
41
    }
11489
890k
    if (pgs->stroke_overprint != pdev->stroke_overprint) {
11490
39
        changed |= PDF14_SET_STROKEOVERPRINT;
11491
39
        params.stroke_overprint = pdev->stroke_overprint = pgs->stroke_overprint;
11492
39
    }
11493
890k
    if (pgs->fillconstantalpha != pdev->fillconstantalpha) {
11494
1.66k
        changed |= PDF14_SET_FILLCONSTANTALPHA;
11495
1.66k
        params.fillconstantalpha = pdev->fillconstantalpha = pgs->fillconstantalpha;
11496
1.66k
    }
11497
890k
    if (pgs->strokeconstantalpha != pdev->strokeconstantalpha) {
11498
1.48k
        changed |= PDF14_SET_STROKECONSTANTALPHA;
11499
1.48k
        params.strokeconstantalpha = pdev->strokeconstantalpha = pgs->strokeconstantalpha;
11500
1.48k
    }
11501
890k
    if ((pgs->is_fill_color && pdev->op_state != PDF14_OP_STATE_FILL)) {
11502
2.76k
        changed |= PDF14_SET_FILLSTROKE_STATE;
11503
2.76k
        params.op_fs_state = pdev->op_state = PDF14_OP_STATE_FILL;
11504
2.76k
        if_debug0m('v', pgs->memory,
11505
2.76k
            "[v]c_pdf14_clist_update_params op_fs_state written in clist as PDF14_OP_STATE_FILL \n");
11506
2.76k
    }
11507
890k
    if ((!pgs->is_fill_color && pdev->op_state != PDF14_OP_STATE_STROKE)) {
11508
2.86k
        changed |= PDF14_SET_FILLSTROKE_STATE;
11509
2.86k
        params.op_fs_state = pdev->op_state = PDF14_OP_STATE_STROKE;
11510
2.86k
        if_debug0m('v', pgs->memory,
11511
2.86k
            "[v]c_pdf14_clist_update_params op_fs_state written in clist as PDF14_OP_STATE_STROKE \n");
11512
2.86k
    }
11513
890k
    if (crop_blend_params) {
11514
2.08k
        params.ctm = group_params->ctm;
11515
2.08k
        params.bbox = group_params->bbox;
11516
2.08k
    }
11517
890k
    params.changed = changed;
11518
    /* Avoid recursion when we have a PDF14_SET_BLEND_PARAMS forced and apply
11519
       now to the target.  Otherwise we send the compositor action
11520
       to the pdf14 device at this time.  This is due to the fact that we
11521
       need to often perform this operation when we are already starting to
11522
       do a compositor action */
11523
890k
    if (changed != 0) {
11524
8.21k
        code = gs_create_pdf14trans(&pct_new, &params, pgs->memory);
11525
8.21k
        if (code < 0)
11526
0
            return code;
11527
8.21k
        code = dev_proc(pdev->target, composite)
11528
8.21k
                    (pdev->target, &pcdev, pct_new, (gs_gstate *)pgs, pgs->memory, NULL);
11529
8.21k
        gs_free_object(pgs->memory, pct_new, "pdf14_clist_update_params");
11530
8.21k
    }
11531
890k
    return code;
11532
890k
}
11533
11534
/*
11535
 * fill_path routine for the PDF 1.4 transaprency compositor device for
11536
 * writing the clist.
11537
 */
11538
static  int
11539
pdf14_clist_fill_path(gx_device *dev, const gs_gstate *pgs,
11540
                           gx_path *ppath, const gx_fill_params *params,
11541
                           const gx_drawing_color *pdcolor,
11542
                           const gx_clip_path *pcpath)
11543
680k
{
11544
680k
    pdf14_clist_device * pdev = (pdf14_clist_device *)dev;
11545
680k
    gs_gstate new_pgs = *pgs;
11546
680k
    int code;
11547
680k
    gs_pattern2_instance_t *pinst = NULL;
11548
680k
    gx_device_forward * fdev = (gx_device_forward *)dev;
11549
680k
    cmm_dev_profile_t *dev_profile, *fwd_profile;
11550
680k
    gsicc_rendering_param_t render_cond;
11551
680k
    cmm_profile_t *icc_profile_fwd, *icc_profile_dev;
11552
680k
    int push_group = 0;
11553
11554
680k
    code = dev_proc(dev, get_profile)(dev,  &dev_profile);
11555
680k
    if (code < 0)
11556
0
        return code;
11557
680k
    code = dev_proc(fdev->target, get_profile)(fdev->target,  &fwd_profile);
11558
680k
    if (code < 0)
11559
0
        return code;
11560
11561
680k
    if (dev->color_info.separable_and_linear == GX_CINFO_UNKNOWN_SEP_LIN)
11562
0
        check_device_separable(dev);
11563
11564
680k
    gsicc_extract_profile(GS_UNKNOWN_TAG, fwd_profile, &icc_profile_fwd,
11565
680k
                          &render_cond);
11566
680k
    gsicc_extract_profile(GS_UNKNOWN_TAG, dev_profile, &icc_profile_dev,
11567
680k
                          &render_cond);
11568
11569
    /*
11570
     * Ensure that that the PDF 1.4 reading compositor will have the current
11571
     * blending parameters.  This is needed since the fill_rectangle routines
11572
     * do not have access to the gs_gstate.  Thus we have to pass any
11573
     * changes explictly.
11574
     */
11575
680k
    code = pdf14_clist_update_params(pdev, pgs, false, NULL);
11576
680k
    if (code < 0)
11577
0
        return code;
11578
    /* If we are doing a shading fill and we are in a transparency group of a
11579
       different color space, then we do not want to do the shading in the
11580
       device color space. It must occur in the source space.  To handle it in
11581
       the device space would require knowing all the nested transparency group
11582
       color space as well as the transparency.  Some of the shading code ignores
11583
       this, so we have to pass on the clist_writer device to enable proper
11584
       mapping to the transparency group color space. */
11585
11586
680k
    if (gx_dc_is_pattern2_color(pdcolor)) {
11587
        /* Non-idempotent blends require a transparency
11588
         * group to be pushed because shadings might
11589
         * paint several pixels twice. */
11590
1.54k
        push_group = pgs->fillconstantalpha != 1.0 ||
11591
1.54k
               !blend_is_idempotent(gs_currentblendmode(pgs));
11592
1.54k
        pinst =
11593
1.54k
            (gs_pattern2_instance_t *)pdcolor->ccolor.pattern;
11594
1.54k
           pinst->saved->has_transparency = true;
11595
           /* The transparency color space operations are driven by the pdf14
11596
              clist writer device.  */
11597
1.54k
           pinst->saved->trans_device = dev;
11598
1.54k
    }
11599
680k
    if (push_group) {
11600
145
        gs_fixed_rect box;
11601
145
        gs_fixed_rect dev_bbox;
11602
11603
145
        if (pcpath) {
11604
145
            gx_cpath_outer_box(pcpath, &box);
11605
145
            (*dev_proc(dev, get_clipping_box)) (dev, &dev_bbox);
11606
145
            rect_intersect(box, dev_bbox);
11607
145
        } else
11608
0
            (*dev_proc(dev, get_clipping_box)) (dev, &box);
11609
11610
145
        if (ppath) {
11611
2
            gs_fixed_rect path_box;
11612
11613
2
            gx_path_bbox(ppath, &path_box);
11614
2
            if (box.p.x < path_box.p.x)
11615
2
                box.p.x = path_box.p.x;
11616
2
            if (box.p.y < path_box.p.y)
11617
2
                box.p.y = path_box.p.y;
11618
2
            if (box.q.x > path_box.q.x)
11619
2
                box.q.x = path_box.q.x;
11620
2
            if (box.q.y > path_box.q.y)
11621
2
                box.q.y = path_box.q.y;
11622
2
        }
11623
11624
145
        if (box.p.y >= box.q.y || box.p.x >= box.q.x) {
11625
            /* No need to do anything */
11626
3
            if (pinst != NULL) {
11627
3
                pinst->saved->trans_device = NULL;
11628
3
            }
11629
3
            return 0;
11630
3
        }
11631
11632
        /* Group alpha set from fill value. push_shfill_group does reset to 1.0 */
11633
142
        code = push_shfill_group(pdev, &new_pgs, &box);
11634
142
    } else
11635
680k
        update_lop_for_pdf14(&new_pgs, pdcolor);
11636
680k
    if (code >= 0) {
11637
680k
        new_pgs.trans_device = dev;
11638
680k
        new_pgs.has_transparency = true;
11639
680k
        if (gx_dc_is_pattern2_color(pdcolor))
11640
1.53k
            code = gx_default_fill_path_shading_or_pattern(dev, &new_pgs, ppath, params, pdcolor, pcpath);
11641
678k
        else
11642
678k
            code = gx_forward_fill_path(dev, &new_pgs, ppath, params, pdcolor, pcpath);
11643
680k
        new_pgs.trans_device = NULL;
11644
680k
        new_pgs.has_transparency = false;
11645
680k
    }
11646
680k
    if (code >= 0 && push_group) {
11647
142
        code = pop_shfill_group(&new_pgs);
11648
142
        if (code >= 0)
11649
142
            code = pdf14_clist_update_params(pdev, pgs, false, NULL);
11650
142
    }
11651
680k
    if (pinst != NULL){
11652
1.53k
        pinst->saved->trans_device = NULL;
11653
1.53k
    }
11654
680k
    return code;
11655
680k
}
11656
11657
/*
11658
 * stroke_path routine for the PDF 1.4 transparency compositor device for
11659
 * writing the clist.
11660
 */
11661
static  int
11662
pdf14_clist_stroke_path(gx_device *dev, const gs_gstate *pgs,
11663
                             gx_path *ppath, const gx_stroke_params *params,
11664
                             const gx_drawing_color *pdcolor,
11665
                             const gx_clip_path *pcpath)
11666
5.71k
{
11667
5.71k
    pdf14_clist_device * pdev = (pdf14_clist_device *)dev;
11668
5.71k
    gs_gstate new_pgs = *pgs;
11669
5.71k
    int code = 0;
11670
5.71k
    gs_pattern2_instance_t *pinst = NULL;
11671
5.71k
    int push_group = 0;
11672
11673
    /*
11674
     * Ensure that that the PDF 1.4 reading compositor will have the current
11675
     * blending parameters.  This is needed since the fill_rectangle routines
11676
     * do not have access to the gs_gstate.  Thus we have to pass any
11677
     * changes explictly.
11678
     */
11679
5.71k
    code = pdf14_clist_update_params(pdev, pgs, false, NULL);
11680
5.71k
    if (code < 0)
11681
0
        return code;
11682
    /* If we are doing a shading stroke and we are in a transparency group of a
11683
       different color space, then we need to get the proper device information
11684
       passed along so that we use the correct color procs and colorinfo about
11685
       the transparency device and not the final target device */
11686
5.71k
    if (gx_dc_is_pattern2_color(pdcolor)) {
11687
        /* Non-idempotent blends require a transparency
11688
         * group to be pushed because shadings might
11689
         * paint several pixels twice. */
11690
4
        push_group = pgs->strokeconstantalpha != 1.0 ||
11691
4
               !blend_is_idempotent(gs_currentblendmode(pgs));
11692
4
        if (pdev->color_model_stack != NULL) {
11693
4
            pinst =
11694
4
                (gs_pattern2_instance_t *)pdcolor->ccolor.pattern;
11695
4
            pinst->saved->has_transparency = true;
11696
            /* The transparency color space operations are driven
11697
              by the pdf14 clist writer device.  */
11698
4
            pinst->saved->trans_device = dev;
11699
4
        }
11700
4
    }
11701
5.71k
    if (push_group) {
11702
0
        gs_fixed_rect box;
11703
0
        if (pcpath)
11704
0
            gx_cpath_outer_box(pcpath, &box);
11705
0
        else
11706
0
            (*dev_proc(dev, get_clipping_box)) (dev, &box);
11707
0
        if (ppath) {
11708
0
            gs_fixed_rect path_box;
11709
0
            gs_fixed_point expansion;
11710
11711
0
            gx_path_bbox(ppath, &path_box);
11712
            /* Expand the path bounding box by the scaled line width. */
11713
0
            if (gx_stroke_path_expansion(pgs, ppath, &expansion) < 0) {
11714
                /* The expansion is so large it caused a limitcheck. */
11715
0
                path_box.p.x = path_box.p.y = min_fixed;
11716
0
                path_box.q.x = path_box.q.y = max_fixed;
11717
0
            } else {
11718
0
                expansion.x += pgs->fill_adjust.x;
11719
0
                expansion.y += pgs->fill_adjust.y;
11720
                /*
11721
                 * It's theoretically possible for the following computations to
11722
                 * overflow, so we need to check for this.
11723
                 */
11724
0
                path_box.p.x = (path_box.p.x < min_fixed + expansion.x ? min_fixed :
11725
0
                                path_box.p.x - expansion.x);
11726
0
                path_box.p.y = (path_box.p.y < min_fixed + expansion.y ? min_fixed :
11727
0
                                path_box.p.y - expansion.y);
11728
0
                path_box.q.x = (path_box.q.x > max_fixed - expansion.x ? max_fixed :
11729
0
                                path_box.q.x + expansion.x);
11730
0
                path_box.q.y = (path_box.q.y > max_fixed - expansion.y ? max_fixed :
11731
0
                                path_box.q.y + expansion.y);
11732
0
            }
11733
0
            if (box.p.x < path_box.p.x)
11734
0
                box.p.x = path_box.p.x;
11735
0
            if (box.p.y < path_box.p.y)
11736
0
                box.p.y = path_box.p.y;
11737
0
            if (box.q.x > path_box.q.x)
11738
0
                box.q.x = path_box.q.x;
11739
0
            if (box.q.y > path_box.q.y)
11740
0
                box.q.y = path_box.q.y;
11741
0
        }
11742
        /* Group alpha set from fill value. push_shfill_group does reset to 1.0 */
11743
0
        new_pgs.fillconstantalpha = new_pgs.strokeconstantalpha;
11744
0
        code = push_shfill_group(pdev, &new_pgs, &box);
11745
0
    } else
11746
5.71k
        update_lop_for_pdf14(&new_pgs, pdcolor);
11747
11748
5.71k
    if (code >= 0) {
11749
5.71k
        new_pgs.trans_device = dev;
11750
5.71k
        new_pgs.has_transparency = true;
11751
5.71k
        if (gx_dc_is_pattern2_color(pdcolor))
11752
4
            code = gx_default_stroke_path_shading_or_pattern(dev, &new_pgs, ppath, params, pdcolor, pcpath);
11753
5.70k
        else
11754
5.70k
            code = gx_forward_stroke_path(dev, &new_pgs, ppath, params, pdcolor, pcpath);
11755
5.71k
        new_pgs.trans_device = NULL;
11756
5.71k
        new_pgs.has_transparency = false;
11757
5.71k
    }
11758
5.71k
    if (code >= 0 && push_group) {
11759
0
        code = pop_shfill_group(&new_pgs);
11760
0
        if (code >= 0)
11761
0
            code = pdf14_clist_update_params(pdev, pgs, false, NULL);
11762
0
    }
11763
5.71k
    if (pinst != NULL)
11764
4
        pinst->saved->trans_device = NULL;
11765
5.71k
    return code;
11766
5.71k
}
11767
11768
/* Set up work for doing shading patterns in fill stroke through
11769
   the clist.  We have to do all the dirty work now since we are
11770
   going through the default fill and stroke operations individually */
11771
static int
11772
pdf14_clist_fill_stroke_path_pattern_setup(gx_device* dev, const gs_gstate* cpgs, gx_path* ppath,
11773
    const gx_fill_params* params_fill, const gx_drawing_color* pdevc_fill,
11774
    const gx_stroke_params* params_stroke, const gx_drawing_color* pdevc_stroke,
11775
    const gx_clip_path* pcpath)
11776
0
{
11777
0
    union {
11778
0
        const gs_gstate *cpgs;
11779
0
        gs_gstate *pgs;
11780
0
    } const_breaker;
11781
0
    gs_gstate *pgs;
11782
0
    int code, code2;
11783
0
    gs_transparency_group_params_t params = { 0 };
11784
0
    gs_fixed_rect clip_bbox;
11785
0
    gs_rect bbox, group_stroke_box;
11786
0
    float fill_alpha;
11787
0
    float stroke_alpha;
11788
0
    gs_blend_mode_t blend_mode;
11789
0
    gs_fixed_rect path_bbox;
11790
0
    int expansion_code;
11791
0
    gs_fixed_point expansion;
11792
11793
    /* Break const just once, neatly */
11794
0
    const_breaker.cpgs = cpgs;
11795
0
    pgs = const_breaker.pgs;
11796
11797
0
    fill_alpha = pgs->fillconstantalpha;
11798
0
    stroke_alpha = pgs->strokeconstantalpha;
11799
0
    blend_mode = pgs->blend_mode;
11800
11801
0
    code = gx_curr_fixed_bbox(pgs, &clip_bbox, NO_PATH);
11802
0
    if (code < 0 && code != gs_error_unknownerror)
11803
0
        return code;
11804
0
    if (code == gs_error_unknownerror) {
11805
        /* didn't get clip box from gx_curr_fixed_bbox */
11806
0
        clip_bbox.p.x = clip_bbox.p.y = 0;
11807
0
        clip_bbox.q.x = int2fixed(dev->width);
11808
0
        clip_bbox.q.y = int2fixed(dev->height);
11809
0
    }
11810
0
    if (pcpath)
11811
0
        rect_intersect(clip_bbox, pcpath->outer_box);
11812
11813
    /* expand the ppath using stroke expansion rule, then intersect it */
11814
0
    code = gx_path_bbox(ppath, &path_bbox);
11815
0
    if (code == gs_error_nocurrentpoint && ppath->segments->contents.subpath_first == 0)
11816
0
        return 0;   /* ignore empty path */
11817
0
    if (code < 0)
11818
0
        return code;
11819
0
    expansion_code = gx_stroke_path_expansion(pgs, ppath, &expansion);
11820
0
    if (expansion_code >= 0) {
11821
0
        path_bbox.p.x -= expansion.x;
11822
0
        path_bbox.p.y -= expansion.y;
11823
0
        path_bbox.q.x += expansion.x;
11824
0
        path_bbox.q.y += expansion.y;
11825
0
    }
11826
0
    rect_intersect(path_bbox, clip_bbox);
11827
0
    bbox.p.x = fixed2float(path_bbox.p.x);
11828
0
    bbox.p.y = fixed2float(path_bbox.p.y);
11829
0
    bbox.q.x = fixed2float(path_bbox.q.x);
11830
0
    bbox.q.y = fixed2float(path_bbox.q.y);
11831
11832
0
    code = gs_bbox_transform_inverse(&bbox, &ctm_only(pgs), &group_stroke_box);
11833
0
    if (code < 0)
11834
0
        return code;
11835
11836
    /* See if overprint is enabled for both stroke and fill AND if ca == CA */
11837
0
    if (pgs->fillconstantalpha == pgs->strokeconstantalpha &&
11838
0
        pgs->overprint && pgs->stroke_overprint &&
11839
0
        (dev->icc_struct->overprint_control != gs_overprint_control_disable) &&
11840
0
        dev->color_info.polarity == GX_CINFO_POLARITY_SUBTRACTIVE) {
11841
11842
0
        params.Isolated = false;
11843
0
        params.group_color_type = UNKNOWN;
11844
0
        params.Knockout = false;
11845
0
        params.page_group = false;
11846
0
        params.group_opacity = fill_alpha;
11847
0
        params.group_shape = 1.0;
11848
11849
        /* non-isolated non-knockout group pushed with original alpha and blend mode */
11850
0
        code = gs_begin_transparency_group(pgs, &params, &group_stroke_box, PDF14_BEGIN_TRANS_GROUP);
11851
0
        if (code < 0)
11852
0
            return code;
11853
11854
        /* Set alpha to 1.0 and compatible overprint mode for actual drawings */
11855
0
        (void)gs_setfillconstantalpha(pgs, 1.0);
11856
0
        (void)gs_setstrokeconstantalpha(pgs, 1.0);
11857
0
        (void)gs_setblendmode(pgs, BLEND_MODE_CompatibleOverprint); /* Can never fail */
11858
11859
0
        code = pdf14_clist_fill_path(dev, pgs, ppath, params_fill, pdevc_fill, pcpath);
11860
0
        if (code < 0)
11861
0
            goto cleanup;
11862
11863
0
        code = pdf14_clist_stroke_path(dev, pgs, ppath, params_stroke, pdevc_stroke, pcpath);
11864
0
        if (code < 0)
11865
0
            goto cleanup;
11866
11867
0
    } else {
11868
        /* Push a non-isolated knockout group. Do not change the alpha or
11869
           blend modes */
11870
0
        params.Isolated = false;
11871
0
        params.group_color_type = UNKNOWN;
11872
0
        params.Knockout = true;
11873
0
        params.page_group = false;
11874
0
        params.group_opacity = 1.0;
11875
0
        params.group_shape = 1.0;
11876
11877
        /* non-isolated knockout group is pushed with alpha = 1.0 and Normal blend mode */
11878
0
        (void)gs_setfillconstantalpha(pgs, 1.0);
11879
0
        (void)gs_setblendmode(pgs, BLEND_MODE_Normal); /* Can never fail */
11880
0
        code = gs_begin_transparency_group(pgs, &params, &group_stroke_box, PDF14_BEGIN_TRANS_GROUP);
11881
11882
        /* restore blend mode for actual drawing in the group */
11883
0
        (void)gs_setblendmode(pgs, blend_mode); /* Can never fail */
11884
11885
0
        if (fill_alpha > 0.0) {
11886
0
            (void)gs_setfillconstantalpha(pgs, fill_alpha);
11887
11888
            /* If we are in an overprint situation, set the blend mode to compatible
11889
               overprint */
11890
0
            if ((dev->icc_struct->overprint_control != gs_overprint_control_disable) &&
11891
0
                pgs->overprint &&
11892
0
                dev->color_info.polarity == GX_CINFO_POLARITY_SUBTRACTIVE)
11893
0
                (void)gs_setblendmode(pgs, BLEND_MODE_CompatibleOverprint); /* Can never fail */
11894
11895
0
            code = pdf14_clist_fill_path(dev, pgs, ppath, params_fill, pdevc_fill, pcpath);
11896
0
            if (code < 0)
11897
0
                goto cleanup;
11898
11899
0
            if ((dev->icc_struct->overprint_control != gs_overprint_control_disable) &&
11900
0
                pgs->overprint &&
11901
0
                dev->color_info.polarity == GX_CINFO_POLARITY_SUBTRACTIVE)
11902
0
                (void)gs_setblendmode(pgs, blend_mode); /* Can never fail */
11903
0
        }
11904
11905
0
        if (stroke_alpha > 0.0) {
11906
            /* Note that the stroke can end up looking like a fill here */
11907
0
            (void)gs_setstrokeconstantalpha(pgs, stroke_alpha);
11908
0
            (void)gs_setfillconstantalpha(pgs, stroke_alpha);
11909
11910
0
            if (pgs->overprint && dev->color_info.polarity == GX_CINFO_POLARITY_SUBTRACTIVE)
11911
0
                (void)gs_setblendmode(pgs, BLEND_MODE_CompatibleOverprint); /* Can never fail */
11912
11913
0
            code = pdf14_clist_stroke_path(dev, pgs, ppath, params_stroke, pdevc_stroke, pcpath);
11914
0
            if (code < 0)
11915
0
                goto cleanup;
11916
11917
0
            if ((dev->icc_struct->overprint_control != gs_overprint_control_disable) &&
11918
0
                pgs->overprint &&
11919
0
                dev->color_info.polarity == GX_CINFO_POLARITY_SUBTRACTIVE)
11920
0
                (void)gs_setblendmode(pgs, blend_mode); /* Can never fail */
11921
0
        }
11922
0
    }
11923
11924
0
cleanup:
11925
    /* Now during the pop do the compositing with alpha of 1.0 and normal blend */
11926
0
    (void)gs_setfillconstantalpha(pgs, 1.0);
11927
0
    (void)gs_setstrokeconstantalpha(pgs, 1.0);
11928
0
    (void)gs_setblendmode(pgs, BLEND_MODE_Normal); /* Can never fail */
11929
11930
    /* Restore where we were. If an error occured while in the group push
11931
       return that error code but try to do the cleanup */
11932
0
    code2 = gs_end_transparency_group(pgs);
11933
0
    if (code2 < 0) {
11934
        /* At this point things have gone very wrong. We should just shut down */
11935
0
        code = gs_abort_pdf14trans_device(pgs);
11936
0
        return code2;
11937
0
    }
11938
11939
    /* Restore if there were any changes */
11940
0
    (void)gs_setfillconstantalpha(pgs, fill_alpha);
11941
0
    (void)gs_setstrokeconstantalpha(pgs, stroke_alpha);
11942
0
    (void)gs_setblendmode(pgs, blend_mode); /* Can never fail */
11943
11944
0
    return code;
11945
0
}
11946
11947
/*
11948
 * fill_path routine for the PDF 1.4 transaprency compositor device for
11949
 * writing the clist.
11950
 */
11951
static  int
11952
pdf14_clist_fill_stroke_path(gx_device  *dev, const gs_gstate *pgs, gx_path *ppath,
11953
                             const gx_fill_params *params_fill, const gx_drawing_color *pdevc_fill,
11954
                             const gx_stroke_params *params_stroke, const gx_drawing_color *pdevc_stroke,
11955
                             const gx_clip_path *pcpath)
11956
1.67k
{
11957
1.67k
    pdf14_clist_device * pdev = (pdf14_clist_device *)dev;
11958
1.67k
    gs_gstate new_pgs = *pgs;
11959
1.67k
    int code;
11960
11961
1.67k
    if ((pgs->fillconstantalpha == 0.0 && pgs->strokeconstantalpha == 0.0) ||
11962
1.67k
        (pgs->ctm.xx == 0.0 && pgs->ctm.xy == 0.0 && pgs->ctm.yx == 0.0 && pgs->ctm.yy == 0.0))
11963
12
        return 0;
11964
11965
    /*
11966
     * Ensure that that the PDF 1.4 reading compositor will have the current
11967
     * blending parameters.  This is needed since the fill_rectangle routines
11968
     * do not have access to the gs_gstate.  Thus we have to pass any
11969
     * changes explictly.
11970
     */
11971
1.66k
    code = pdf14_clist_update_params(pdev, pgs, false, NULL);
11972
1.66k
    if (code < 0)
11973
0
        return code;
11974
    /* If we are doing a shading fill or stroke, the clist can't
11975
       deal with this and end up in the pdf_fill_stroke operation.
11976
       We will need to break up the fill stroke now and do
11977
       the appropriate group pushes and set up. */
11978
11979
1.66k
    if (gx_dc_is_pattern2_color(pdevc_fill) ||
11980
1.66k
        gx_dc_is_pattern2_color(pdevc_stroke)) {
11981
0
        return pdf14_clist_fill_stroke_path_pattern_setup(dev, pgs, ppath,
11982
0
            params_fill, pdevc_fill, params_stroke, pdevc_stroke, pcpath);
11983
0
    }
11984
1.66k
    update_lop_for_pdf14(&new_pgs, pdevc_fill);
11985
1.66k
    new_pgs.trans_device = dev;
11986
1.66k
    new_pgs.has_transparency = true;
11987
1.66k
    code = gx_forward_fill_stroke_path(dev, &new_pgs, ppath, params_fill, pdevc_fill,
11988
1.66k
                                       params_stroke, pdevc_stroke, pcpath);
11989
1.66k
    new_pgs.trans_device = NULL;
11990
1.66k
    new_pgs.has_transparency = false;
11991
1.66k
    return code;
11992
1.66k
}
11993
11994
/*
11995
 * text_begin routine for the PDF 1.4 transaprency compositor device for
11996
 * writing the clist.
11997
 */
11998
static  int
11999
pdf14_clist_text_begin(gx_device * dev, gs_gstate * pgs,
12000
                 const gs_text_params_t * text, gs_font * font,
12001
                 const gx_clip_path * pcpath,
12002
                 gs_text_enum_t ** ppenum)
12003
197k
{
12004
197k
    pdf14_clist_device * pdev = (pdf14_clist_device *)dev;
12005
197k
    gs_text_enum_t *penum;
12006
197k
    int code;
12007
197k
    gs_blend_mode_t blend_mode = gs_currentblendmode(pgs);
12008
197k
    float opacity = pgs->fillconstantalpha;
12009
197k
    float shape = 1.0;
12010
197k
    bool blend_issue = !(blend_mode == BLEND_MODE_Normal || blend_mode == BLEND_MODE_Compatible || blend_mode == BLEND_MODE_CompatibleOverprint);
12011
197k
    bool draw = !(text->operation & TEXT_DO_NONE);
12012
197k
    uint text_mode = gs_currenttextrenderingmode(pgs);
12013
197k
    bool text_stroke = (text_mode == 1 || text_mode == 2 || text_mode == 5 || text_mode == 6);
12014
197k
    bool text_fill = (text_mode == 0 || text_mode == 2 || text_mode == 4 || text_mode == 6);
12015
12016
197k
    if_debug0m('v', pgs->memory, "[v]pdf14_clist_text_begin\n");
12017
    /*
12018
     * Ensure that that the PDF 1.4 reading compositor will have the current
12019
     * blending parameters.  This is needed since the fill_rectangle routines
12020
     * do not have access to the gs_gstate.  Thus we have to pass any
12021
     * changes explictly.
12022
     */
12023
197k
    code = pdf14_clist_update_params(pdev, pgs, false, NULL);
12024
197k
    if (code < 0)
12025
0
        return code;
12026
    /* Pass text_begin to the target */
12027
197k
    code = gx_forward_text_begin(dev, pgs, text, font,
12028
197k
                                 pcpath, &penum);
12029
197k
    if (code < 0)
12030
2
        return code;
12031
12032
   /* Catch case where we already pushed a group and are trying to push another one.
12033
   In that case, we will pop the current one first, as we don't want to be left
12034
   with it. Note that if we have a BT and no other BTs or ETs then this issue
12035
   will not be caught until we do the put_image and notice that the stack is not
12036
   empty. */
12037
197k
    if (pdev->text_group == PDF14_TEXTGROUP_MISSING_ET) {
12038
0
        code = gs_end_transparency_group(pgs);
12039
0
        if (code < 0)
12040
0
            return code;
12041
0
        pdev->text_group = PDF14_TEXTGROUP_BT_NOT_PUSHED;
12042
0
    }
12043
12044
    /* We may need to push a non-isolated transparency group if the following
12045
    is true.
12046
    1) We are not currently in one that we pushed for text.  This is
12047
    is determined by looking at the pdf14 device.
12048
    2) The blend mode is not Normal or the opacity is not 1.0
12049
    3) Text knockout is set to true
12050
    4) And we are actually drawing text
12051
    */
12052
12053
197k
    if (gs_currenttextknockout(pgs) && (blend_issue ||
12054
197k
        (pgs->fillconstantalpha != 1.0 && text_fill) ||
12055
197k
        (pgs->strokeconstantalpha != 1.0 && text_stroke)) &&
12056
197k
        text_mode != 3 && /* don't bother with invisible text */
12057
197k
        pdev->text_group == PDF14_TEXTGROUP_BT_NOT_PUSHED) {
12058
67
        if (draw) {
12059
67
            code = pdf14_push_text_group(dev, pgs, blend_mode, opacity, shape, true);
12060
67
            if (code == 0)
12061
67
                pdev->text_group = PDF14_TEXTGROUP_BT_PUSHED;  /* Needed during clist writing */
12062
67
        }
12063
67
    }
12064
197k
    *ppenum = (gs_text_enum_t *)penum;
12065
197k
    return code;
12066
197k
}
12067
12068
static  int
12069
pdf14_clist_begin_typed_image(gx_device * dev, const gs_gstate * pgs,
12070
                           const gs_matrix *pmat, const gs_image_common_t *pic,
12071
                           const gs_int_rect * prect,
12072
                           const gx_drawing_color * pdcolor,
12073
                           const gx_clip_path * pcpath, gs_memory_t * mem,
12074
                           gx_image_enum_common_t ** pinfo)
12075
2.18k
{
12076
2.18k
    pdf14_clist_device * pdev = (pdf14_clist_device *)dev;
12077
2.18k
    int code;
12078
2.18k
    gs_gstate * pgs_noconst = (gs_gstate *)pgs; /* Break 'const'. */
12079
2.18k
    const gs_image_t *pim = (const gs_image_t *)pic;
12080
2.18k
    gx_image_enum *penum;
12081
2.18k
    gx_color_tile *ptile;
12082
2.18k
    gs_rect bbox_in, bbox_out;
12083
2.18k
    gs_transparency_group_params_t tgp;
12084
    /*
12085
     * Ensure that that the PDF 1.4 reading compositor will have the current
12086
     * blending parameters.  This is needed since the fill_rectangle routines
12087
     * do not have access to the gs_gstate.  Thus we have to pass any
12088
     * changes explictly.
12089
     */
12090
2.18k
    code = pdf14_clist_update_params(pdev, pgs, false, NULL);
12091
2.18k
    if (code < 0)
12092
0
        return code;
12093
    /* Pass image to the target */
12094
    /* Do a quick change to the gs_gstate so that if we can return with -1 in
12095
       case the clist writer cannot handle this image itself.  In such a case,
12096
       we want to make sure we dont use the target device.  I don't necc. like
12097
       doing it this way.  Probably need to go back and do something a bit
12098
       more elegant. */
12099
2.18k
    pgs_noconst->has_transparency = true;
12100
2.18k
    pgs_noconst->trans_device = dev;
12101
12102
    /* If we are filling an image mask with a pattern that has a transparency
12103
       then we need to do some special handling */
12104
2.18k
    if (pim->ImageMask) {
12105
25
        if (pdcolor != NULL && gx_dc_is_pattern1_color(pdcolor)) {
12106
21
            if( gx_pattern1_get_transptr(pdcolor) != NULL){
12107
0
                if (dev_proc(dev, begin_typed_image) != pdf14_clist_begin_typed_image) {
12108
0
                    ptile = pdcolor->colors.pattern.p_tile;
12109
                    /* Set up things in the ptile so that we get the proper
12110
                       blending etc */
12111
                    /* Set the blending procs and the is_additive setting based
12112
                       upon the number of channels */
12113
0
                    if (ptile->ttrans->n_chan-1 < 4) {
12114
0
                        ptile->ttrans->blending_procs = &rgb_blending_procs;
12115
0
                        ptile->ttrans->is_additive = true;
12116
0
                    } else {
12117
0
                        ptile->ttrans->blending_procs = &cmyk_blending_procs;
12118
0
                        ptile->ttrans->is_additive = false;
12119
0
                    }
12120
                    /* Set the blending mode in the ptile based upon the current
12121
                       setting in the gs_gstate */
12122
0
                    ptile->blending_mode = pgs->blend_mode;
12123
                    /* Set the procs so that we use the proper filling method. */
12124
                    /* Let the imaging stuff get set up */
12125
0
                    code = gx_default_begin_typed_image(dev, pgs, pmat, pic,
12126
0
                                                        prect, pdcolor,
12127
0
                                                        pcpath, mem, pinfo);
12128
0
                    if (code < 0)
12129
0
                        return code;
12130
12131
0
                    penum = (gx_image_enum *) *pinfo;
12132
                    /* Apply inverse of the image matrix to our
12133
                       image size to get our bounding box. */
12134
0
                    bbox_in.p.x = 0;
12135
0
                    bbox_in.p.y = 0;
12136
0
                    bbox_in.q.x = pim->Width;
12137
0
                    bbox_in.q.y = pim->Height;
12138
0
                    code = gs_bbox_transform_inverse(&bbox_in, &(pim->ImageMatrix),
12139
0
                                                     &bbox_out);
12140
0
                    if (code < 0)
12141
0
                        return code;
12142
                    /* Set up a compositor action for pushing the group */
12143
0
                    if_debug0m('v', pgs->memory, "[v]Pushing special trans group for image\n");
12144
0
                    tgp.Isolated = true;
12145
0
                    tgp.Knockout = false;
12146
0
                    tgp.page_group = false;
12147
0
                    tgp.mask_id = 0;
12148
0
                    tgp.image_with_SMask = false;
12149
0
                    tgp.idle = false;
12150
0
                    tgp.iccprofile = NULL;
12151
0
                    tgp.icc_hashcode = 0;
12152
0
                    tgp.group_color_numcomps = ptile->ttrans->n_chan-1;
12153
0
                    tgp.ColorSpace = NULL;
12154
0
                    tgp.text_group = 0;
12155
0
                    tgp.group_opacity = pgs->fillconstantalpha;
12156
0
                    tgp.group_shape = 1.0;
12157
                    /* This will handle the compositor command */
12158
0
                    gs_begin_transparency_group((gs_gstate *) pgs_noconst, &tgp,
12159
0
                                                &bbox_out, PDF14_BEGIN_TRANS_GROUP);
12160
0
                    ptile->ttrans->image_render = penum->render;
12161
0
                    penum->render = &pdf14_pattern_trans_render;
12162
0
                    ptile->trans_group_popped = false;
12163
0
                    pgs_noconst->has_transparency = false;
12164
0
                    pgs_noconst->trans_device = NULL;
12165
0
                    return code;
12166
0
                }
12167
0
            }
12168
21
        }
12169
25
    }
12170
    /* This basically tries high level images for clist. If that fails
12171
       then we do the default */
12172
2.18k
    code = gx_forward_begin_typed_image(dev, pgs, pmat,
12173
2.18k
                            pic, prect, pdcolor, pcpath, mem, pinfo);
12174
2.18k
    if (code < 0){
12175
587
        code = gx_default_begin_typed_image(dev, pgs, pmat, pic, prect,
12176
587
                                        pdcolor, pcpath, mem, pinfo);
12177
587
        pgs_noconst->has_transparency = false;
12178
587
        pgs_noconst->trans_device = NULL;
12179
587
        return code;
12180
1.60k
    } else {
12181
1.60k
        pgs_noconst->has_transparency = false;
12182
1.60k
        pgs_noconst->trans_device = NULL;
12183
1.60k
        return code;
12184
1.60k
    }
12185
2.18k
}
12186
12187
static int
12188
pdf14_clist_copy_planes(gx_device * dev, const byte * data, int data_x, int raster,
12189
                  gx_bitmap_id id, int x, int y, int w, int h, int plane_height)
12190
2.45k
{
12191
2.45k
    int code;
12192
12193
2.45k
    code = gx_forward_copy_planes(dev, data, data_x, raster, id,
12194
2.45k
                                  x, y, w, h, plane_height);
12195
2.45k
    return code;
12196
2.45k
}
12197
12198
static int
12199
gs_pdf14_clist_device_push(gs_memory_t *mem, gs_gstate *pgs, gx_device **pcdev,
12200
                           gx_device *dev, const gs_pdf14trans_t *pdf14pct)
12201
737
{
12202
737
    int code;
12203
737
    pdf14_clist_device *p14dev;
12204
737
    gx_device_clist_writer * const cdev = &((gx_device_clist *)dev)->writer;
12205
12206
737
    code = pdf14_create_clist_device(mem, pgs, pcdev, dev, pdf14pct);
12207
737
    if (code < 0)
12208
0
        return code;
12209
    /*
12210
     * Set the color_info of the clist device to match the compositing
12211
     * device.  We will restore it when the compositor is popped.
12212
     * See pdf14_clist_composite for the restore.  Do the
12213
     * same with the gs_gstate's get_cmap_procs.  We do not want
12214
     * the gs_gstate to use transfer functions on our color values.
12215
     * The transfer functions will be applied at the end after we
12216
     * have done our PDF 1.4 blend operations.
12217
     */
12218
737
    p14dev = (pdf14_clist_device *)(*pcdev);
12219
737
    p14dev->saved_target_color_info = dev->color_info;
12220
737
    dev->color_info = (*pcdev)->color_info;
12221
    /* Make sure that we keep the anti-alias information though */
12222
737
    dev->color_info.anti_alias = p14dev->saved_target_color_info.anti_alias;
12223
737
    p14dev->color_info.anti_alias = dev->color_info.anti_alias;
12224
12225
    /* adjust the clist_color_info now */
12226
737
    cdev->clist_color_info.depth = p14dev->color_info.depth;
12227
737
    cdev->clist_color_info.polarity = p14dev->color_info.polarity;
12228
737
    cdev->clist_color_info.num_components = p14dev->color_info.num_components;
12229
737
    cdev->clist_color_info.max_color = p14dev->color_info.max_color;
12230
737
    cdev->clist_color_info.max_gray = p14dev->color_info.max_gray;
12231
12232
737
    p14dev->saved_target_encode_color = dev_proc(dev, encode_color);
12233
737
    p14dev->saved_target_decode_color = dev_proc(dev, decode_color);
12234
737
    set_dev_proc(dev, encode_color, p14dev->my_encode_color);
12235
737
    set_dev_proc(p14dev, encode_color, p14dev->my_encode_color);
12236
737
    set_dev_proc(dev, decode_color, p14dev->my_decode_color);
12237
737
    set_dev_proc(p14dev, decode_color, p14dev->my_decode_color);
12238
737
    p14dev->saved_target_get_color_mapping_procs =
12239
737
                              dev_proc(dev, get_color_mapping_procs);
12240
737
    p14dev->saved_target_get_color_comp_index =
12241
737
                              dev_proc(dev, get_color_comp_index);
12242
737
    set_dev_proc(dev, get_color_mapping_procs, p14dev->my_get_color_mapping_procs);
12243
737
    set_dev_proc(p14dev, get_color_mapping_procs, p14dev->my_get_color_mapping_procs);
12244
737
    set_dev_proc(dev, get_color_comp_index, p14dev->my_get_color_comp_index);
12245
737
    set_dev_proc(p14dev, get_color_comp_index, p14dev->my_get_color_comp_index);
12246
737
    p14dev->save_get_cmap_procs = pgs->get_cmap_procs;
12247
737
    pgs->get_cmap_procs = pdf14_get_cmap_procs;
12248
737
    gx_set_cmap_procs(pgs, dev);
12249
737
    return code;
12250
737
}
12251
/*
12252
 * When we push a PDF 1.4 transparency compositor onto the clist, we also need
12253
 * to create a compositing device for clist writing.  The primary purpose of
12254
 * this device is to provide support for the process color model in which
12255
 * the PDF 1.4 transparency is done.  (This may differ from the process color
12256
 * model of the output device.)  The actual work of compositing the image is
12257
 * done on the output (reader) side of the clist.
12258
 */
12259
static  int
12260
c_pdf14trans_clist_write_update(const gs_composite_t * pcte, gx_device * dev,
12261
                gx_device ** pcdev, gs_gstate * pgs, gs_memory_t * mem)
12262
17.7k
{
12263
17.7k
    gx_device_clist_writer * const cdev = &((gx_device_clist *)dev)->writer;
12264
17.7k
    const gs_pdf14trans_t * pdf14pct = (const gs_pdf14trans_t *) pcte;
12265
17.7k
    int code = 0;
12266
12267
    /* We only handle the push/pop operations */
12268
17.7k
    switch (pdf14pct->params.pdf14_op) {
12269
737
        case PDF14_PUSH_DEVICE:
12270
737
            code = gs_pdf14_clist_device_push(mem, pgs, pcdev, dev, pdf14pct);
12271
            /* Change (non-error) code to 1 to indicate that we created
12272
             * a device. */
12273
737
            if (code >= 0)
12274
737
                code = 1;
12275
737
            return code;
12276
12277
737
        case PDF14_POP_DEVICE:
12278
737
            code = clist_writer_check_empty_cropping_stack(cdev);
12279
737
            break;
12280
12281
194
        case PDF14_BEGIN_TRANS_PAGE_GROUP:
12282
2.08k
        case PDF14_BEGIN_TRANS_GROUP:
12283
2.08k
            { /* HACK: store mask_id into our params for subsequent
12284
                   calls of c_pdf14trans_write. To do this we must
12285
                   break const. */
12286
2.08k
                gs_pdf14trans_t * pdf14pct_noconst;
12287
12288
2.08k
                pdf14pct_noconst = (gs_pdf14trans_t *) pcte;
12289
                /* What ever the current mask ID is, that is the
12290
                   softmask group through which this transparency
12291
                   group must be rendered. Store it now. */
12292
2.08k
                pdf14pct_noconst->params.mask_id = cdev->mask_id;
12293
2.08k
                if_debug1m('v', pgs->memory,
12294
2.08k
                           "[v]c_pdf14trans_clist_write_update group mask_id=%d \n",
12295
2.08k
                           cdev->mask_id);
12296
2.08k
            }
12297
2.08k
            break;
12298
2.01k
        case PDF14_END_TRANS_GROUP:
12299
2.08k
        case PDF14_END_TRANS_TEXT_GROUP:
12300
2.08k
            code = 0; /* A place for breakpoint. */
12301
2.08k
            break;
12302
1.92k
        case PDF14_BEGIN_TRANS_MASK:
12303
            /* A new mask has been started */
12304
1.92k
            cdev->mask_id = ++cdev->mask_id_count;
12305
            /* replacing is set everytime that we
12306
               have a zpushtransparencymaskgroup */
12307
1.92k
            { /* HACK: store mask_id into our params for subsequent
12308
                   calls of c_pdf14trans_write. To do this we must
12309
                   break const. */
12310
1.92k
                gs_pdf14trans_t * pdf14pct_noconst;
12311
12312
1.92k
                pdf14pct_noconst = (gs_pdf14trans_t *) pcte;
12313
1.92k
                pdf14pct_noconst->params.mask_id = cdev->mask_id;
12314
1.92k
                if_debug1m('v', pgs->memory,
12315
1.92k
                           "[v]c_pdf14trans_clist_write_update mask mask_id=%d \n",
12316
1.92k
                           cdev->mask_id);
12317
1.92k
            }
12318
1.92k
            break;
12319
984
        case PDF14_END_TRANS_MASK:
12320
984
            code = 0; /* A place for breakpoint. */
12321
984
            break;
12322
0
        case PDF14_PUSH_TRANS_STATE:
12323
0
            code = 0; /* A place for breakpoint. */
12324
0
            break;
12325
971
        case PDF14_POP_TRANS_STATE:
12326
971
            code = 0; /* A place for breakpoint. */
12327
971
            break;
12328
0
        case PDF14_ABORT_DEVICE:
12329
0
            code = 0;
12330
0
            break;
12331
0
        case PDF14_PUSH_SMASK_COLOR:
12332
0
            *pcdev = dev;
12333
0
            return 0;
12334
0
            break;
12335
0
        case PDF14_POP_SMASK_COLOR:
12336
0
            *pcdev = dev;
12337
0
            return 0;
12338
0
            break;
12339
8.21k
        default:
12340
8.21k
            break;   /* do nothing for remaining ops */
12341
17.7k
    }
12342
16.9k
    *pcdev = dev;
12343
16.9k
    if (code < 0)
12344
0
        return code;
12345
    /* See c_pdf14trans_write, c_pdf14trans_adjust_ctm, and
12346
       apply_composite. */
12347
16.9k
    code = gs_gstate_setmatrix(&cdev->gs_gstate, &pdf14pct->params.ctm);
12348
    /* Wrote an extra ctm. */
12349
16.9k
    cmd_clear_known(cdev, ctm_known);
12350
12351
16.9k
    return code;
12352
16.9k
}
12353
12354
/*
12355
 * When we push a PDF 1.4 transparency compositor, we need to make the clist
12356
 * device color_info data match the compositing device.  We need to do this
12357
 * since the PDF 1.4 transparency compositing device may use a different
12358
 * process color model than the output device.  We do not need to modify the
12359
 * color related device procs since the compositing device has its own.  We
12360
 * restore the color_info data when the transparency device is popped.
12361
 */
12362
static  int
12363
c_pdf14trans_clist_read_update(gs_composite_t * pcte, gx_device * cdev,
12364
                gx_device * tdev, gs_gstate * pgs, gs_memory_t * mem)
12365
1.10M
{
12366
1.10M
    pdf14_device * p14dev = (pdf14_device *)tdev;
12367
1.10M
    gs_pdf14trans_t * pdf14pct = (gs_pdf14trans_t *) pcte;
12368
1.10M
    gs_devn_params * pclist_devn_params;
12369
1.10M
    gx_device_clist_reader *pcrdev = (gx_device_clist_reader *)cdev;
12370
1.10M
    cmm_profile_t *cl_icc_profile, *p14_icc_profile;
12371
1.10M
    gsicc_rendering_param_t render_cond;
12372
1.10M
    cmm_dev_profile_t *dev_profile;
12373
12374
1.10M
    dev_proc(cdev, get_profile)(cdev,  &dev_profile);
12375
1.10M
    gsicc_extract_profile(GS_UNKNOWN_TAG, dev_profile, &cl_icc_profile,
12376
1.10M
                          &render_cond);
12377
12378
    /* If we are using the blending color space, then be sure to use that. */
12379
1.10M
    if (p14dev->blend_cs_state == PDF14_BLEND_CS_SPECIFIED &&
12380
1.10M
        dev_profile->blend_profile != NULL)
12381
0
        cl_icc_profile = dev_profile->blend_profile;
12382
1.10M
    else if (p14dev->blend_cs_state == PDF14_BLEND_CS_OUTPUTINTENT &&
12383
1.10M
        dev_profile->oi_profile != NULL)
12384
0
        cl_icc_profile = dev_profile->oi_profile;
12385
12386
1.10M
    dev_proc(p14dev, get_profile)((gx_device *)p14dev,  &dev_profile);
12387
1.10M
    gsicc_extract_profile(GS_UNKNOWN_TAG, dev_profile, &p14_icc_profile,
12388
1.10M
                          &render_cond);
12389
    /*
12390
     * We only handle the push/pop operations. Save and restore the color_info
12391
     * field for the clist device.  This is needed since the process color
12392
     * model of the clist device needs to match the PDF 1.4 compositing
12393
     * device.
12394
     */
12395
1.10M
    switch (pdf14pct->params.pdf14_op) {
12396
101k
    case PDF14_PUSH_DEVICE:
12397
        /* Overprint simulation sets the profile at prototype creation, as does
12398
           when the target profile is NCLR. Match the logic in gs_pdf14_device_push */
12399
101k
        if (!((p14dev->overprint_sim && cl_icc_profile->data_cs != gsCMYK) ||
12400
101k
            cl_icc_profile->data_cs == gsNCHANNEL)) {
12401
101k
            gsicc_adjust_profile_rc(cl_icc_profile, 1, "c_pdf14trans_clist_read_update");
12402
101k
            gsicc_adjust_profile_rc(p14dev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE],
12403
101k
                -1, "c_pdf14trans_clist_read_update");
12404
101k
            p14dev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE] = cl_icc_profile;
12405
101k
        }
12406
            /*
12407
             * If we are blending using spot colors (i.e. the output device
12408
             * supports spot colors) then we need to transfer
12409
             * color info from the clist PDF 1.4 compositing reader device
12410
             * to the clist writer PDF 1.4 compositing device.
12411
             * This info was transfered from that device to the output
12412
             * device as a set of device parameters.  However the clist
12413
             * reader PDF 1.4 compositing device did not exist when the
12414
             * device parameters were read from the clist.  So that info
12415
             * was buffered into the output device.
12416
             */
12417
101k
            pclist_devn_params = dev_proc(cdev, ret_devn_params)(cdev);
12418
101k
            if (pclist_devn_params != NULL && pclist_devn_params->page_spot_colors > 0) {
12419
293
                int num_comp = p14dev->color_info.num_components;
12420
293
                int has_tags = device_encodes_tags((gx_device *)p14dev);
12421
                /*
12422
                 * The number of components for the PDF14 device is the sum
12423
                 * of the process components and the number of spot colors
12424
                 * for the page.  If the color capabilities of the parent
12425
                 * device (which coming into this are the same as the p14dev)
12426
                 * are smaller than the number of page spot colors then
12427
                 * use that for the number of components. Otherwise use
12428
                 * the page_spot_colors.  The exception is, if we had used
12429
                 * the sICCOutputColors setting, then just use that, which
12430
                 * should be already baked into num_comp. With clist patterns,
12431
                 * cdev->icc_struct may be null.
12432
                 */
12433
12434
293
                if (cdev->icc_struct == NULL || cdev->icc_struct->spotnames == NULL) {
12435
293
                    p14dev->devn_params.page_spot_colors =
12436
293
                        pclist_devn_params->page_spot_colors;
12437
293
                    if (num_comp < p14dev->devn_params.page_spot_colors + 4 ) {
12438
0
                        if (p14dev->num_planar_planes > 0)
12439
0
                            p14dev->num_planar_planes += num_comp - p14dev->color_info.num_components;
12440
0
                        p14dev->color_info.num_components = num_comp;
12441
0
                        assert(p14dev->num_planar_planes == 0 || p14dev->num_planar_planes == p14dev->color_info.num_components);
12442
293
                    } else {
12443
                        /* if page_spot_colors < 0, this will be wrong, so don't update num_components */
12444
293
                        if (p14dev->devn_params.page_spot_colors >= 0) {
12445
293
                            int n = p14dev->num_std_colorants +
12446
293
                                    p14dev->devn_params.page_spot_colors + has_tags;
12447
293
                            if (p14dev->num_planar_planes > 0)
12448
293
                                p14dev->num_planar_planes += n - p14dev->color_info.num_components;
12449
293
                            p14dev->color_info.num_components = n;
12450
293
                            assert(p14dev->num_planar_planes == 0 || p14dev->num_planar_planes == p14dev->color_info.num_components);
12451
293
                        }
12452
293
                    }
12453
293
                }
12454
                /* limit the num_components to the max. */
12455
293
                if (p14dev->color_info.num_components > p14dev->color_info.max_components + has_tags)
12456
0
                    p14dev->color_info.num_components = p14dev->color_info.max_components + has_tags;
12457
                /* Transfer the data for the spot color names
12458
                   But we have to free what may be there before we do this */
12459
293
                devn_free_params((gx_device*) p14dev);
12460
293
                p14dev->devn_params.separations =
12461
293
                    pclist_devn_params->pdf14_separations;
12462
293
                p14dev->free_devicen = false;  /* to avoid freeing the clist ones */
12463
293
                if (num_comp != p14dev->color_info.num_components) {
12464
                    /* Historically, there has been a comment here:
12465
                       "When the pdf14 device is opened it creates a context and some
12466
                       soft mask related objects.  The push device compositor action
12467
                       will have already created these but they are the wrong size.
12468
                       We must destroy them though before reopening the device."
12469
                       I can't see why this is the case, and testing in the cluster
12470
                       doesn't show ill effects from not doing it. Indeed, Bug 707790
12471
                       shows that this freeing/NULLing the ctx here causes problems
12472
                       when the freed ctx is reinserted at the end of clist pattern
12473
                       files. Accordingly, I'm removing the freeing/NULLing for now
12474
                       at least. */
12475
0
                    int code = dev_proc(tdev, open_device) (tdev);
12476
0
                    if (code < 0)
12477
0
                        return code;
12478
0
                }
12479
293
            }
12480
            /* Check if we need to swap out the ICC profile for the pdf14
12481
               device.  This will occur if our source profile for our device
12482
               happens to be something like CIELAB.  Then we will blend in
12483
               RGB (unless a trans group is specified) */
12484
101k
            if (cl_icc_profile->data_cs == gsCIELAB || cl_icc_profile->islab) {
12485
0
                gsicc_adjust_profile_rc(p14dev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE],
12486
0
                                        -1, "c_pdf14trans_clist_read_update");
12487
                /* Initial ref count from gsicc_read_serial_icc() is 1, which is what we want */
12488
0
                p14dev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE] =
12489
0
                                        gsicc_read_serial_icc(cdev, pcrdev->trans_dev_icc_hash);
12490
                /* Keep a pointer to the clist device */
12491
0
                p14dev->icc_struct->device_profile[GS_DEFAULT_DEVICE_PROFILE]->dev = (gx_device *) cdev;
12492
0
            }
12493
101k
            break;
12494
12495
101k
        case PDF14_POP_DEVICE:
12496
#     if 0 /* Disabled because *p14dev has no forwarding methods during
12497
                    the clist playback. This code is not executed while clist
12498
                    writing. */
12499
            cdev->color_info = p14dev->saved_target_color_info;
12500
#     endif
12501
101k
           break;
12502
12503
898k
        default:
12504
898k
            break;   /* do nothing for remaining ops */
12505
1.10M
    }
12506
12507
1.10M
    return 0;
12508
1.10M
}
12509
12510
/*
12511
 * Get cropping for the compositor command.
12512
 */
12513
static  int
12514
c_pdf14trans_get_cropping(const gs_composite_t *pcte, int *ry, int *rheight,
12515
                          int cropping_min, int cropping_max)
12516
17.7k
{
12517
17.7k
    gs_pdf14trans_t * pdf14pct = (gs_pdf14trans_t *) pcte;
12518
17.7k
    switch (pdf14pct->params.pdf14_op) {
12519
737
        case PDF14_PUSH_DEVICE: return ALLBANDS; /* Applies to all bands. */
12520
737
        case PDF14_POP_DEVICE:  return ALLBANDS; /* Applies to all bands. */
12521
0
        case PDF14_ABORT_DEVICE: return ALLBANDS; /* Applies to all bands */
12522
194
        case PDF14_BEGIN_TRANS_PAGE_GROUP:
12523
2.08k
        case PDF14_BEGIN_TRANS_GROUP:
12524
2.08k
            { gs_int_rect rect;
12525
12526
                /* Text group always uses parents size*/
12527
2.08k
                if (pdf14pct->params.text_group == PDF14_TEXTGROUP_BT_PUSHED) {
12528
67
                    *ry = cropping_min;
12529
67
                    *rheight = cropping_max - *ry;
12530
2.01k
                } else {
12531
2.01k
                    pdf14_compute_group_device_int_rect(&pdf14pct->params.ctm,
12532
2.01k
                        &pdf14pct->params.bbox, &rect);
12533
                    /* We have to crop this by the parent object.   */
12534
2.01k
                    *ry = max(rect.p.y, cropping_min);
12535
2.01k
                    *rheight = min(rect.q.y, cropping_max) - *ry;
12536
2.01k
                }
12537
2.08k
                return PUSHCROP; /* Push cropping. */
12538
194
            }
12539
1.92k
        case PDF14_BEGIN_TRANS_MASK:
12540
1.92k
            { gs_int_rect rect;
12541
12542
1.92k
                pdf14_compute_group_device_int_rect(&pdf14pct->params.ctm,
12543
1.92k
                                                    &pdf14pct->params.bbox, &rect);
12544
                /* We have to crop this by the parent object and worry about the BC outside
12545
                   the range, except for image SMask which don't affect areas outside the image.
12546
                   The presence of a transfer function opens the possibility of issues with this */
12547
1.92k
                if (pdf14pct->params.mask_is_image || (pdf14pct->params.GrayBackground == 1.0 &&
12548
1.02k
                      pdf14pct->params.function_is_identity)) {
12549
                    /* In this case there will not be a background effect to
12550
                       worry about.  The mask will not have any effect outside
12551
                       the bounding box.  This is NOT the default or common case. */
12552
907
                    *ry = max(rect.p.y, cropping_min);
12553
907
                    *rheight = min(rect.q.y, cropping_max) - *ry;
12554
907
                    return PUSHCROP; /* Push cropping. */
12555
1.02k
                }  else {
12556
                    /* We need to make the soft mask range as large as the parent
12557
                       due to the fact that the background color can have an impact
12558
                       OUTSIDE the bounding box of the soft mask */
12559
1.02k
                    *ry = cropping_min;
12560
1.02k
                    *rheight = cropping_max - cropping_min;
12561
1.02k
                    if (pdf14pct->params.subtype == TRANSPARENCY_MASK_None)
12562
943
                        return SAMEAS_PUSHCROP_BUTNOPUSH;
12563
77
                    else
12564
77
                        return PUSHCROP; /* Push cropping. */
12565
1.02k
                }
12566
1.92k
            }
12567
2.01k
        case PDF14_END_TRANS_GROUP: return POPCROP; /* Pop cropping. */
12568
67
        case PDF14_END_TRANS_TEXT_GROUP: return POPCROP; /* Pop cropping. */
12569
984
        case PDF14_END_TRANS_MASK: return POPCROP;   /* Pop the cropping */
12570
0
        case PDF14_PUSH_TRANS_STATE: return CURRBANDS;
12571
971
        case PDF14_POP_TRANS_STATE: return CURRBANDS;
12572
8.21k
        case PDF14_SET_BLEND_PARAMS: return ALLBANDS;
12573
0
        case PDF14_PUSH_SMASK_COLOR: return POPCROP; /* Pop cropping. */
12574
0
        case PDF14_POP_SMASK_COLOR: return POPCROP;   /* Pop the cropping */
12575
0
        case PDF14_BEGIN_TRANS_TEXT_GROUP: return ALLBANDS; /* should never occur */
12576
17.7k
    }
12577
0
    return ALLBANDS;
12578
17.7k
}
12579
12580
/*
12581
 * This routine will check to see if the color component name matches those
12582
 * that are available amoung the current device's color components.  If the
12583
 * color name is known to the output device then we add it to the list of
12584
 * colorants for the PDF 1.4 transparency compositor.
12585
 *
12586
 * Notes:  There are currently three different versions of The PDF 1.4
12587
 * transparency compositor device.  The choice of which one is being used
12588
 * depends upon the process color model of the output device.  This procedure
12589
 * is only used if the output (target) device uses a CMYK, or RGB or Gray
12590
 * plus spot color process color model.
12591
 *
12592
 * Parameters:
12593
 *   dev - pointer to device data structure.
12594
 *   pname - pointer to name (zero termination not required)
12595
 *   nlength - length of the name
12596
 *   number of process colorants (either 1, 3, or 4)
12597
 *
12598
 * This routine returns a positive value (0 to n) which is the device colorant
12599
 * number if the name is found.  It returns GX_DEVICE_COLOR_MAX_COMPONENTS if
12600
 * the colorant is not being used due to a SeparationOrder device parameter.
12601
 * It returns a negative value if not found.
12602
 */
12603
static int
12604
pdf14_spot_get_color_comp_index(gx_device *dev, const char *pname,
12605
    int name_size, int component_type, int num_process_colors)
12606
4.98k
{
12607
4.98k
    pdf14_device *pdev = (pdf14_device *)dev;
12608
4.98k
    gx_device *tdev = pdev->target;
12609
4.98k
    gs_devn_params *pdevn_params = &pdev->devn_params;
12610
4.98k
    gs_separations *pseparations;
12611
4.98k
    int comp_index;
12612
4.98k
    dev_proc_get_color_comp_index(*target_get_color_comp_index);
12613
4.98k
    int offset;
12614
12615
4.98k
    while (tdev->child) {
12616
0
        tdev = tdev->child;
12617
0
    }
12618
    /* If something has gone wrong and this is no longer the pdf14 compositor, */
12619
    /* get the devn_params from the target to avoid accessing using the wrong  */
12620
    /* pointer. Bug 696372.                                                    */
12621
4.98k
    if (tdev == (gx_device *)pdev)
12622
0
        pdevn_params = dev_proc(pdev, ret_devn_params)(dev);
12623
4.98k
    offset = pdevn_params->num_std_colorant_names - num_process_colors;
12624
4.98k
    pseparations = &pdevn_params->separations;
12625
    /* If num_process_colors is 3 or 1 (RGB or Gray) then we are in a situation
12626
     * where we are in a blend color space that is RGB or Gray based and we
12627
     * have a spot colorant.  If the spot colorant name is Cyan, Magenta
12628
     * Yellow or Black, then we should use the alternate tint transform */
12629
4.98k
    if (num_process_colors < 4) {
12630
2
        int k;
12631
10
        for (k = 0; k < pdevn_params->num_std_colorant_names; k++) {
12632
8
            if (strncmp(pname, pdevn_params->std_colorant_names[k], name_size) == 0)
12633
0
                return -1;
12634
8
        }
12635
2
    }
12636
12637
4.98k
    target_get_color_comp_index = dev_proc(tdev, get_color_comp_index);
12638
12639
    /* The pdf14_clist_composite may have set the color procs.
12640
       We need the real target procs, but not if we are doing simulated
12641
       overprint */
12642
4.98k
    if ((target_get_color_comp_index == pdf14_cmykspot_get_color_comp_index ||
12643
4.98k
         target_get_color_comp_index == pdf14_rgbspot_get_color_comp_index) &&
12644
4.98k
        !pdev->overprint_sim)
12645
4.98k
        target_get_color_comp_index =
12646
4.98k
            ((pdf14_clist_device *)pdev)->saved_target_get_color_comp_index;
12647
    /*
12648
    * If this is not a separation name then simply forward it to the target
12649
    * device or return -1 if we are doing overprint simulation.
12650
    * The halftone setup expects this.
12651
    */
12652
4.98k
    if (!pdev->overprint_sim && (component_type == NO_COMP_NAME_TYPE_HT ||
12653
4.98k
        component_type == NO_COMP_NAME_TYPE_OP)) {
12654
3.99k
            if (target_get_color_comp_index != NULL)
12655
3.99k
                return  (*target_get_color_comp_index)(tdev, pname, name_size, component_type);
12656
0
            else
12657
0
                return -1;
12658
3.99k
    }
12659
989
    if (pdev->overprint_sim && component_type == NO_COMP_NAME_TYPE_HT) {
12660
0
        return -1;
12661
0
    }
12662
12663
    /*
12664
    * Check if the component is in either the process color model list
12665
    * or in the SeparationNames list.
12666
    */
12667
989
    comp_index = check_pcm_and_separation_names(dev, pdevn_params, pname,
12668
989
        name_size, component_type);
12669
12670
    /* Additive devices should NOT have C/M/Y/K Colorants added to them.
12671
     * This is a decision we take here to avoid problems with PDFI not
12672
     * counting such colorants as spots. */
12673
989
    if (comp_index < 0 && dev->color_info.polarity == GX_CINFO_POLARITY_ADDITIVE) {
12674
1
        if (name_size == 5 && strncmp(pname, "Black", 7) == 0)
12675
0
            return -1;
12676
1
        if (name_size == 4 && strncmp(pname, "Cyan", 4) == 0)
12677
0
            return -1;
12678
1
        if (name_size == 7 && strncmp(pname, "Magenta", 7) == 0)
12679
0
            return -1;
12680
1
        if (name_size == 6 && strncmp(pname, "Yellow", 6) == 0)
12681
0
            return -1;
12682
1
    }
12683
12684
    /*
12685
    * Return the colorant number if we know this name.  Note adjustment for
12686
    * compensating of blend color space.
12687
    */
12688
989
    if (comp_index >= 0)
12689
988
        return comp_index - offset;
12690
12691
    /* Only worry about the target if we are not doing an overprint simulation */
12692
1
    if (!pdev->overprint_sim) {
12693
        /*
12694
        * If we do not know this color, check if the output (target) device does.
12695
        * Note that if the target device has ENABLE_AUTO_SPOT_COLORS this will add
12696
        * the colorant so we will only get < 0 returned when we hit the max. for
12697
        * the target device.
12698
        */
12699
1
        if (target_get_color_comp_index != NULL)
12700
1
            comp_index = (*target_get_color_comp_index)(tdev, pname, name_size, component_type);
12701
0
        else
12702
0
            return -1;
12703
        /*
12704
        * Ignore color if unknown to the output device or if color is not being
12705
        * imaged due to the SeparationOrder device parameter.
12706
        */
12707
1
        if (comp_index < 0 || comp_index == GX_DEVICE_COLOR_MAX_COMPONENTS)
12708
0
            return comp_index - offset;
12709
1
    }
12710
12711
    /*
12712
    * This is a new colorant.  Add it to our list of colorants.
12713
    * The limit accounts for the number of process colors (at least 4).
12714
    */
12715
1
    if ((pseparations->num_separations + 1) <
12716
1
            (GX_DEVICE_COLOR_MAX_COMPONENTS - max(num_process_colors, 4))) {
12717
1
        int sep_num = pseparations->num_separations++;
12718
1
        int color_component_number;
12719
1
        byte * sep_name;
12720
12721
1
        sep_name = gs_alloc_bytes(dev->memory->stable_memory,
12722
1
            name_size, "pdf14_spot_get_color_comp_index");
12723
1
        if (sep_name == NULL) {
12724
0
            pseparations->num_separations--;  /* we didn't add it */
12725
0
            return -1;
12726
0
        }
12727
1
        memcpy(sep_name, pname, name_size);
12728
1
        pseparations->names[sep_num].size = name_size;
12729
1
        pseparations->names[sep_num].data = sep_name;
12730
1
        color_component_number = sep_num + num_process_colors;
12731
1
        if (color_component_number >= dev->color_info.max_components)
12732
0
            color_component_number = GX_DEVICE_COLOR_MAX_COMPONENTS;
12733
1
        else
12734
1
            pdevn_params->separation_order_map[color_component_number] =
12735
1
            color_component_number;
12736
12737
        /* Indicate that we need to find equivalent CMYK color. */
12738
1
        pdev->op_pequiv_cmyk_colors.color[sep_num].color_info_valid = false;
12739
1
        pdev->op_pequiv_cmyk_colors.all_color_info_valid = false;
12740
12741
1
        return color_component_number;
12742
1
    }
12743
12744
0
    return GX_DEVICE_COLOR_MAX_COMPONENTS;
12745
1
}
12746
12747
12748
/* CMYK process + spots */
12749
static int
12750
pdf14_cmykspot_get_color_comp_index(gx_device * dev, const char * pname,
12751
    int name_size, int component_type)
12752
4.97k
{
12753
4.97k
    return pdf14_spot_get_color_comp_index(dev, pname, name_size, component_type, 4);
12754
4.97k
}
12755
12756
/* RGB process + spots */
12757
static int
12758
pdf14_rgbspot_get_color_comp_index(gx_device * dev, const char * pname,
12759
    int name_size, int component_type)
12760
2
{
12761
2
    return pdf14_spot_get_color_comp_index(dev, pname, name_size, component_type, 3);
12762
2
}
12763
12764
/* Gray process + spots */
12765
static int
12766
pdf14_grayspot_get_color_comp_index(gx_device * dev, const char * pname,
12767
    int name_size, int component_type)
12768
0
{
12769
0
    return pdf14_spot_get_color_comp_index(dev, pname, name_size, component_type, 1);
12770
0
}
12771
12772
/* These functions keep track of when we are dealing with soft masks.
12773
   In such a case, we set the default color profiles to ones that ensure
12774
   proper soft mask rendering. */
12775
static int
12776
pdf14_increment_smask_color(gs_gstate * pgs, gx_device * dev)
12777
1.73k
{
12778
1.73k
    pdf14_device * pdev = (pdf14_device *) dev;
12779
1.73k
    pdf14_smaskcolor_t *result;
12780
1.73k
    gsicc_smask_t *smask_profiles = pgs->icc_manager->smask_profiles;
12781
1.73k
    int k;
12782
12783
    /* See if we have profiles already in place.   Note we also have to
12784
       worry about a corner case where this device does not have a
12785
       smaskcolor stucture to store the profiles AND the profiles were
12786
       already swapped out in the icc_manager.  This can occur when we
12787
       pushed a transparency mask and then inside the mask we have a pattern
12788
       which also has a transparency mask.   The state of the icc_manager
12789
       is that it already has done the swap and there is no need to fool
12790
       with any of this while dealing with the soft mask within the pattern */
12791
1.73k
    if (pdev->smaskcolor == NULL && pgs->icc_manager->smask_profiles != NULL &&
12792
1.73k
        pgs->icc_manager->smask_profiles->swapped) {
12793
0
            return 0;
12794
0
    }
12795
1.73k
    if (pdev->smaskcolor != NULL) {
12796
2
        pdev->smaskcolor->ref_count++;
12797
2
        if_debug1m(gs_debug_flag_icc, dev->memory,
12798
2
                   "[icc] Increment smask color now %d\n",
12799
2
                   pdev->smaskcolor->ref_count);
12800
1.73k
    } else {
12801
        /* Allocate and swap out the current profiles.  The softmask
12802
           profiles should already be in place */
12803
1.73k
        result = gs_alloc_struct(pdev->memory->stable_memory, pdf14_smaskcolor_t,
12804
1.73k
                                &st_pdf14_smaskcolor,
12805
1.73k
                                "pdf14_increment_smask_color");
12806
1.73k
        if (result == NULL)
12807
0
            return gs_error_VMerror;
12808
12809
1.73k
        result->profiles = gsicc_new_iccsmask(pdev->memory->stable_memory);
12810
1.73k
        if (result->profiles == NULL)
12811
0
            return gs_error_VMerror;
12812
12813
1.73k
        pdev->smaskcolor = result;
12814
12815
1.73k
        result->profiles->smask_gray = pgs->icc_manager->default_gray;
12816
1.73k
        result->profiles->smask_rgb = pgs->icc_manager->default_rgb;
12817
1.73k
        result->profiles->smask_cmyk = pgs->icc_manager->default_cmyk;
12818
1.73k
        pgs->icc_manager->default_gray = smask_profiles->smask_gray;
12819
1.73k
        gsicc_adjust_profile_rc(pgs->icc_manager->default_gray, 1, "pdf14_increment_smask_color");
12820
1.73k
        pgs->icc_manager->default_rgb = smask_profiles->smask_rgb;
12821
1.73k
        gsicc_adjust_profile_rc(pgs->icc_manager->default_rgb, 1, "pdf14_increment_smask_color");
12822
1.73k
        pgs->icc_manager->default_cmyk = smask_profiles->smask_cmyk;
12823
1.73k
        gsicc_adjust_profile_rc(pgs->icc_manager->default_cmyk, 1, "pdf14_increment_smask_color");
12824
1.73k
        pgs->icc_manager->smask_profiles->swapped = true;
12825
1.73k
        if_debug0m(gs_debug_flag_icc, pgs->memory,
12826
1.73k
                   "[icc] Initial creation of smask color. Ref count 1\n");
12827
1.73k
        pdev->smaskcolor->ref_count = 1;
12828
        /* We also need to update the profile that is currently in the
12829
           color spaces of the graphic state.  Otherwise this can be
12830
           referenced, which will result in a mismatch.  What we want to do
12831
           is see if it was the original default and only swap in that case. */
12832
5.19k
        for (k = 0; k < 2; k++) {
12833
3.46k
            gs_color_space *pcs     = pgs->color[k].color_space;
12834
3.46k
            cmm_profile_t  *profile = pcs->cmm_icc_profile_data;
12835
3.46k
            if (profile != NULL) {
12836
3.39k
                switch(profile->data_cs) {
12837
1.76k
                    case gsGRAY:
12838
1.76k
                        if (profile->hashcode ==
12839
1.76k
                            result->profiles->smask_gray->hashcode) {
12840
1.73k
                                profile = pgs->icc_manager->default_gray;
12841
1.73k
                        }
12842
1.76k
                        break;
12843
1.61k
                    case gsRGB:
12844
1.61k
                        if (profile->hashcode ==
12845
1.61k
                            result->profiles->smask_rgb->hashcode) {
12846
543
                                profile = pgs->icc_manager->default_rgb;
12847
543
                        }
12848
1.61k
                        break;
12849
25
                    case gsCMYK:
12850
25
                        if (profile->hashcode ==
12851
25
                            result->profiles->smask_cmyk->hashcode) {
12852
25
                                profile = pgs->icc_manager->default_cmyk;
12853
25
                        }
12854
25
                        break;
12855
0
                    default:
12856
12857
0
                        break;
12858
3.39k
                }
12859
3.39k
                if (pcs->cmm_icc_profile_data != profile) {
12860
2.30k
                    gsicc_adjust_profile_rc(profile, 1, "pdf14_increment_smask_color");
12861
2.30k
                    gsicc_adjust_profile_rc(pcs->cmm_icc_profile_data, -1, "pdf14_increment_smask_color");
12862
2.30k
                    pcs->cmm_icc_profile_data = profile;
12863
2.30k
                }
12864
3.39k
            }
12865
3.46k
        }
12866
1.73k
    }
12867
1.73k
    return 0;
12868
1.73k
}
12869
12870
static int
12871
pdf14_decrement_smask_color(gs_gstate * pgs, gx_device * dev)
12872
2.47k
{
12873
2.47k
    pdf14_device * pdev = (pdf14_device *) dev;
12874
2.47k
    pdf14_smaskcolor_t *smaskcolor = pdev->smaskcolor;
12875
2.47k
    gsicc_manager_t *icc_manager = pgs->icc_manager;
12876
2.47k
    int k;
12877
12878
    /* See comment in pdf14_increment_smask_color to understand this one */
12879
2.47k
    if (pdev->smaskcolor == NULL && pgs->icc_manager->smask_profiles != NULL &&
12880
2.47k
        pgs->icc_manager->smask_profiles->swapped) {
12881
0
            return 0;
12882
0
    }
12883
2.47k
    if (smaskcolor != NULL) {
12884
1.73k
        smaskcolor->ref_count--;
12885
1.73k
        if_debug1m(gs_debug_flag_icc, pgs->memory,
12886
1.73k
                   "[icc] Decrement smask color.  Now %d\n",
12887
1.73k
                   smaskcolor->ref_count);
12888
1.73k
        if (smaskcolor->ref_count == 0) {
12889
1.73k
            if_debug0m(gs_debug_flag_icc, pgs->memory, "[icc] Reset smask color.\n");
12890
            /* Lets return the profiles and clean up */
12891
            /* First see if we need to "reset" the profiles that are in
12892
               the graphic state */
12893
1.73k
            if_debug0m(gs_debug_flag_icc, pgs->memory, "[icc] Reseting graphic state color spaces\n");
12894
5.19k
            for (k = 0; k < 2; k++) {
12895
3.46k
                gs_color_space *pcs = pgs->color[k].color_space;
12896
3.46k
                cmm_profile_t  *profile = pcs->cmm_icc_profile_data;
12897
3.46k
                if (profile != NULL) {
12898
3.39k
                    switch(profile->data_cs) {
12899
1.76k
                        case gsGRAY:
12900
1.76k
                            if (profile->hashcode ==
12901
1.76k
                                pgs->icc_manager->default_gray->hashcode) {
12902
1.73k
                                    profile =
12903
1.73k
                                        smaskcolor->profiles->smask_gray;
12904
1.73k
                            }
12905
1.76k
                            break;
12906
1.61k
                        case gsRGB:
12907
1.61k
                            if (profile->hashcode ==
12908
1.61k
                                pgs->icc_manager->default_rgb->hashcode) {
12909
543
                                    profile =
12910
543
                                        smaskcolor->profiles->smask_rgb;
12911
543
                            }
12912
1.61k
                            break;
12913
25
                        case gsCMYK:
12914
25
                            if (profile->hashcode ==
12915
25
                                pgs->icc_manager->default_cmyk->hashcode) {
12916
25
                                    profile =
12917
25
                                        smaskcolor->profiles->smask_cmyk;
12918
25
                            }
12919
25
                            break;
12920
0
                        default:
12921
12922
0
                            break;
12923
3.39k
                    }
12924
3.39k
                    if (pcs->cmm_icc_profile_data != profile) {
12925
2.30k
                        gsicc_adjust_profile_rc(profile, 1, "pdf14_decrement_smask_color");
12926
2.30k
                        gsicc_adjust_profile_rc(pcs->cmm_icc_profile_data, -1, "pdf14_decrement_smask_color");
12927
2.30k
                        pcs->cmm_icc_profile_data = profile;
12928
2.30k
                    }
12929
3.39k
                }
12930
3.46k
            }
12931
12932
1.73k
            gsicc_adjust_profile_rc(icc_manager->default_gray, -1, "pdf14_decrement_smask_color");
12933
1.73k
            icc_manager->default_gray = smaskcolor->profiles->smask_gray;
12934
1.73k
            gsicc_adjust_profile_rc(icc_manager->default_rgb, -1, "pdf14_decrement_smask_color");
12935
1.73k
            icc_manager->default_rgb = smaskcolor->profiles->smask_rgb;
12936
1.73k
            gsicc_adjust_profile_rc(icc_manager->default_cmyk, -1, "pdf14_decrement_smask_color");
12937
1.73k
            icc_manager->default_cmyk = smaskcolor->profiles->smask_cmyk;
12938
1.73k
            icc_manager->smask_profiles->swapped = false;
12939
            /* We didn't increment the reference count when we assigned these
12940
             * so NULL them to avoid decrementing when smaskcolor is freed
12941
             */
12942
1.73k
            smaskcolor->profiles->smask_gray =
12943
1.73k
              smaskcolor->profiles->smask_rgb =
12944
1.73k
              smaskcolor->profiles->smask_cmyk = NULL;
12945
12946
1.73k
            pdf14_free_smask_color(pdev);
12947
1.73k
        }
12948
1.73k
    }
12949
2.47k
    return 0;
12950
2.47k
}
12951
12952
static void
12953
pdf14_free_smask_color(pdf14_device * pdev)
12954
1.73k
{
12955
1.73k
    if (pdev->smaskcolor != NULL) {
12956
1.73k
        if ( pdev->smaskcolor->profiles != NULL) {
12957
            /* Do not decrement the profiles - the references were moved
12958
               here and moved back again, so the ref counts don't change
12959
             */
12960
1.73k
            gs_free_object(pdev->memory->stable_memory, pdev->smaskcolor->profiles,
12961
1.73k
                        "pdf14_free_smask_color");
12962
1.73k
        }
12963
1.73k
        gs_free_object(pdev->memory->stable_memory, pdev->smaskcolor, "pdf14_free_smask_color");
12964
1.73k
        pdev->smaskcolor = NULL;
12965
1.73k
    }
12966
1.73k
}
12967
12968
static void
12969
pdf14_device_finalize(const gs_memory_t *cmem, void *vptr)
12970
100k
{
12971
100k
    gx_device * const dev = (gx_device *)vptr;
12972
100k
    pdf14_device * pdev = (pdf14_device *)dev;
12973
100k
    int k;
12974
12975
100k
    pdf14_cleanup_group_color_profiles (pdev);
12976
12977
100k
    if (pdev->ctx) {
12978
2
        pdf14_ctx_free(pdev->ctx);
12979
2
        pdev->ctx = NULL;
12980
2
    }
12981
12982
100k
    while (pdev->color_model_stack) {
12983
0
        pdf14_pop_group_color(dev, NULL);
12984
0
    }
12985
12986
100k
    for (k = 0; k < pdev->devn_params.separations.num_separations; k++) {
12987
1
        if (pdev->devn_params.separations.names[k].data) {
12988
1
            gs_free_object(pdev->memory->stable_memory, pdev->devn_params.separations.names[k].data, "pdf14_device_finalize");
12989
1
            pdev->devn_params.separations.names[k].data = NULL;
12990
1
        }
12991
1
    }
12992
12993
100k
    for (k = 0; k < pdev->devn_params.pdf14_separations.num_separations; k++) {
12994
0
        if (pdev->devn_params.pdf14_separations.names[k].data) {
12995
0
            gs_free_object(pdev->memory->stable_memory, pdev->devn_params.pdf14_separations.names[k].data, "pdf14_device_finalize");
12996
0
            pdev->devn_params.pdf14_separations.names[k].data = NULL;
12997
0
        }
12998
0
    }
12999
13000
100k
    gx_device_finalize(cmem, vptr);
13001
100k
}
13002
13003
#if DUMP_MASK_STACK
13004
13005
static void
13006
dump_mask_stack(pdf14_mask_t *mask_stack)
13007
{
13008
    pdf14_mask_t *curr_mask = mask_stack;
13009
    int level = 0;
13010
13011
    while (curr_mask != NULL) {
13012
        if_debug1m('v', curr_mask->memory, "[v]mask_level, %d\n", level);
13013
        if_debug1m('v', curr_mask->memory, "[v]mask_buf, %p\n", curr_mask->rc_mask->mask_buf);
13014
        if_debug1m('v', curr_mask->memory, "[v]rc_count, %ld\n", curr_mask->rc_mask->rc.ref_count);
13015
        level++;
13016
        curr_mask = curr_mask->previous;
13017
    }
13018
}
13019
13020
/* A function to display the current state of the mask stack */
13021
static void
13022
pdf14_debug_mask_stack_state(pdf14_ctx *ctx)
13023
{
13024
    if_debug1m('v', ctx->memory, "[v]ctx_maskstack, %p\n", ctx->mask_stack);
13025
    if (ctx->mask_stack != NULL) {
13026
        dump_mask_stack(ctx->mask_stack);
13027
    }
13028
    if_debug1m('v', ctx->memory, "[v]ctx_stack, %p\n", ctx->stack);
13029
    if (ctx->stack != NULL) {
13030
        if_debug1m('v', ctx->memory, "[v]ctx_stack_maskstack, %p\n", ctx->stack->mask_stack);
13031
        if (ctx->stack->mask_stack != NULL) {
13032
            dump_mask_stack(ctx->stack->mask_stack);
13033
        }
13034
    }
13035
}
13036
13037
#else
13038
13039
#ifdef DEBUG
13040
static void
13041
pdf14_debug_mask_stack_state(pdf14_ctx *ctx)
13042
{
13043
    return;
13044
}
13045
#endif
13046
13047
#endif /* DUMP_MASK_STACK */