Coverage Report

Created: 2026-04-09 07:06

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/ghostpdl/base/gxclist.c
Line
Count
Source
1
/* Copyright (C) 2001-2025 Artifex Software, Inc.
2
   All Rights Reserved.
3
4
   This software is provided AS-IS with no warranty, either express or
5
   implied.
6
7
   This software is distributed under license and may not be copied,
8
   modified or distributed except as expressly authorized under the terms
9
   of the license contained in the file LICENSE in this distribution.
10
11
   Refer to licensing information at http://www.artifex.com or contact
12
   Artifex Software, Inc.,  39 Mesa Street, Suite 108A, San Francisco,
13
   CA 94129, USA, for further information.
14
*/
15
16
17
/* Command list document- and page-level code. */
18
#include "memory_.h"
19
#include "string_.h"
20
#include "gx.h"
21
#include "gp.h"
22
#include "gpcheck.h"
23
#include "gserrors.h"
24
#include "gxdevice.h"
25
#include "gxdevmem.h"           /* must precede gxcldev.h */
26
#include "gxcldev.h"
27
#include "gxclpath.h"
28
#include "gsparams.h"
29
#include "gxdcolor.h"
30
#include "gscms.h"
31
#include "gsicc_manage.h"
32
#include "gsicc_cache.h"
33
#include "gxdevsop.h"
34
#include "gxobj.h"
35
36
#include "valgrind.h"
37
38
extern dev_proc_open_device(pattern_clist_open_device);
39
40
/* GC information */
41
/*  Where is the GC information for the common objects that are
42
    shared between the reader and writer.  I see pointers in
43
    there, but they don't seem to be GC.  This is why I have
44
    put the icc_table and the link cache in the reader and the
45
    writer rather than the common.   fixme: Also, if icc_cache_cl is not
46
    included in the writer, 64bit builds will seg fault */
47
48
extern_st(st_gs_gstate);
49
static
50
7.53M
ENUM_PTRS_WITH(device_clist_enum_ptrs, gx_device_clist *cdev)
51
7.53M
    if (index < st_device_forward_max_ptrs) {
52
461k
        gs_ptr_type_t ret = ENUM_USING_PREFIX(st_device_forward, st_device_max_ptrs);
53
54
461k
        return (ret ? ret : ENUM_OBJ(0));
55
461k
    }
56
7.07M
    index -= st_device_forward_max_ptrs;
57
    /* RJW: We do not enumerate icc_cache_cl or icc_cache_list as they
58
     * are allocated in non gc space */
59
7.07M
    if (CLIST_IS_WRITER(cdev)) {
60
7.07M
        switch (index) {
61
153k
        case 0: return ENUM_OBJ((cdev->writer.image_enum_id != gs_no_id ?
62
0
                     cdev->writer.clip_path : 0));
63
153k
        case 1: return ENUM_OBJ((cdev->writer.image_enum_id != gs_no_id ?
64
0
                     cdev->writer.color_space.space : 0));
65
153k
        case 2: return ENUM_OBJ(cdev->writer.pinst);
66
153k
        case 3: return ENUM_OBJ(cdev->writer.cropping_stack);
67
153k
        case 4: return ENUM_OBJ(cdev->writer.icc_table);
68
6.30M
        default:
69
6.30M
        return ENUM_USING(st_gs_gstate, &cdev->writer.gs_gstate,
70
7.07M
                  sizeof(gs_gstate), index - 5);
71
7.07M
        }
72
7.07M
    }
73
0
    else {
74
        /* 041207
75
         * clist is reader.
76
         * We don't expect this code to be exercised at this time as the reader
77
         * runs under gdev_prn_output_page which is an atomic function of the
78
         * interpreter. We do this as this situation may change in the future.
79
         */
80
81
0
        if (index == 0)
82
0
            return ENUM_OBJ(cdev->reader.offset_map);
83
0
        else if (index == 1)
84
0
            return ENUM_OBJ(cdev->reader.icc_table);
85
0
        else if (index == 2)
86
0
            return ENUM_OBJ(cdev->reader.color_usage_array);
87
0
        else
88
0
            return 0;
89
0
    }
90
7.53M
ENUM_PTRS_END
91
static
92
153k
RELOC_PTRS_WITH(device_clist_reloc_ptrs, gx_device_clist *cdev)
93
153k
{
94
153k
    RELOC_PREFIX(st_device_forward);
95
153k
    if (CLIST_IS_WRITER(cdev)) {
96
153k
        if (cdev->writer.image_enum_id != gs_no_id) {
97
1
            RELOC_VAR(cdev->writer.clip_path);
98
1
            RELOC_VAR(cdev->writer.color_space.space);
99
1
        }
100
153k
        RELOC_VAR(cdev->writer.pinst);
101
153k
        RELOC_VAR(cdev->writer.cropping_stack);
102
153k
        RELOC_VAR(cdev->writer.icc_table);
103
153k
        RELOC_USING(st_gs_gstate, &cdev->writer.gs_gstate,
104
153k
            sizeof(gs_gstate));
105
153k
    } else {
106
        /* 041207
107
         * clist is reader.
108
         * See note above in ENUM_PTRS_WITH section.
109
         */
110
0
        RELOC_VAR(cdev->reader.offset_map);
111
0
        RELOC_VAR(cdev->reader.icc_table);
112
0
        RELOC_VAR(cdev->reader.color_usage_array);
113
0
    }
114
153k
} RELOC_PTRS_END
115
public_st_device_clist();
116
private_st_clist_writer_cropping_buffer();
117
private_st_clist_icctable_entry();
118
private_st_clist_icctable();
119
120
/* Forward declarations of driver procedures */
121
dev_proc_open_device(clist_open);
122
dev_proc_output_page(clist_output_page);
123
dev_proc_close_device(clist_close);
124
/* Driver procedures defined in other files are declared in gxcldev.h. */
125
126
/* Other forward declarations */
127
static int clist_put_current_params(gx_device_clist_writer *cldev);
128
129
void
130
clist_initialize_device_procs(gx_device *dev)
131
290k
{
132
290k
    set_dev_proc(dev, open_device, clist_open);
133
290k
    set_dev_proc(dev, get_initial_matrix, gx_forward_get_initial_matrix);
134
290k
    set_dev_proc(dev, sync_output, gx_default_sync_output);
135
290k
    set_dev_proc(dev, output_page, clist_output_page);
136
290k
    set_dev_proc(dev, close_device, clist_close);
137
290k
    set_dev_proc(dev, map_rgb_color, gx_forward_map_rgb_color);
138
290k
    set_dev_proc(dev, map_color_rgb, gx_forward_map_color_rgb);
139
290k
    set_dev_proc(dev, fill_rectangle, clist_fill_rectangle);
140
290k
    set_dev_proc(dev, copy_mono, clist_copy_mono);
141
290k
    set_dev_proc(dev, copy_color, clist_copy_color);
142
290k
    set_dev_proc(dev, get_params, gx_forward_get_params);
143
290k
    set_dev_proc(dev, put_params, gx_forward_put_params);
144
290k
    set_dev_proc(dev, map_cmyk_color, gx_forward_map_cmyk_color);
145
290k
    set_dev_proc(dev, get_page_device, gx_forward_get_page_device);
146
290k
    set_dev_proc(dev, get_alpha_bits, gx_forward_get_alpha_bits);
147
290k
    set_dev_proc(dev, copy_alpha, clist_copy_alpha);
148
290k
    set_dev_proc(dev, fill_path, clist_fill_path);
149
290k
    set_dev_proc(dev, stroke_path, clist_stroke_path);
150
290k
    set_dev_proc(dev, fill_mask, clist_fill_mask);
151
290k
    set_dev_proc(dev, fill_trapezoid, clist_fill_trapezoid);
152
290k
    set_dev_proc(dev, fill_parallelogram, clist_fill_parallelogram);
153
290k
    set_dev_proc(dev, fill_triangle, clist_fill_triangle);
154
290k
    set_dev_proc(dev, strip_tile_rectangle, clist_strip_tile_rectangle);
155
290k
    set_dev_proc(dev, get_clipping_box, gx_forward_get_clipping_box);
156
290k
    set_dev_proc(dev, begin_typed_image, clist_begin_typed_image);
157
290k
    set_dev_proc(dev, get_bits_rectangle, clist_get_bits_rectangle);
158
290k
    set_dev_proc(dev, composite, clist_composite);
159
290k
    set_dev_proc(dev, get_hardware_params, gx_forward_get_hardware_params);
160
290k
    set_dev_proc(dev, get_color_mapping_procs, gx_forward_get_color_mapping_procs);
161
290k
    set_dev_proc(dev, get_color_comp_index, gx_forward_get_color_comp_index);
162
290k
    set_dev_proc(dev, encode_color, gx_forward_encode_color);
163
290k
    set_dev_proc(dev, decode_color, gx_forward_decode_color);
164
290k
    set_dev_proc(dev, fill_rectangle_hl_color, clist_fill_rectangle_hl_color);
165
290k
    set_dev_proc(dev, fill_linear_color_trapezoid, clist_fill_linear_color_trapezoid);
166
290k
    set_dev_proc(dev, fill_linear_color_triangle, clist_fill_linear_color_triangle);
167
290k
    set_dev_proc(dev, update_spot_equivalent_colors, gx_forward_update_spot_equivalent_colors);
168
290k
    set_dev_proc(dev, ret_devn_params, gx_forward_ret_devn_params);
169
290k
    set_dev_proc(dev, fillpage, clist_fillpage);
170
290k
    set_dev_proc(dev, dev_spec_op, clist_dev_spec_op);
171
290k
    set_dev_proc(dev, copy_planes, clist_copy_planes);
172
290k
    set_dev_proc(dev, strip_copy_rop2, clist_strip_copy_rop2);
173
290k
    set_dev_proc(dev, strip_tile_rect_devn, clist_strip_tile_rect_devn);
174
290k
    set_dev_proc(dev, copy_alpha_hl_color, clist_copy_alpha_hl_color);
175
290k
    set_dev_proc(dev, process_page, clist_process_page);
176
290k
    set_dev_proc(dev, fill_stroke_path, clist_fill_stroke_path);
177
290k
    set_dev_proc(dev, lock_pattern, clist_lock_pattern);
178
290k
}
179
180
/*------------------- Choose the implementation -----------------------
181
182
   For choosing the clist i/o implementation by makefile options we
183
   define global variables (in gs_lib_ctx_core_t), which are
184
   initialized with file/memory io procs when they are included into
185
   the build.
186
*/
187
void
188
clist_init_io_procs(gx_device_clist *pclist_dev, bool in_memory)
189
323k
{
190
323k
    gs_lib_ctx_core_t *core = pclist_dev->common.memory->gs_lib_ctx->core;
191
323k
#ifdef PACIFY_VALGRIND
192
323k
    VALGRIND_HG_DISABLE_CHECKING(&core->clist_io_procs_file, sizeof(core->clist_io_procs_file));
193
323k
    VALGRIND_HG_DISABLE_CHECKING(&core->clist_io_procs_memory, sizeof(core->clist_io_procs_memory));
194
323k
#endif
195
    /* if core->clist_io_procs_file is NULL, then BAND_LIST_STORAGE=memory */
196
    /* was specified in the build, and "file" is not available */
197
323k
    if (in_memory || core->clist_io_procs_file == NULL)
198
316k
        pclist_dev->common.page_info.io_procs = core->clist_io_procs_memory;
199
7.71k
    else
200
7.71k
        pclist_dev->common.page_info.io_procs = core->clist_io_procs_file;
201
323k
}
202
203
/* ------ Define the command set and syntax ------ */
204
205
/*
206
 * The buffer area (data, data_size) holds a bitmap cache when both writing
207
 * and reading.  The rest of the space is used for the command buffer and
208
 * band state bookkeeping when writing, and for the rendering buffer (image
209
 * device) when reading.  For the moment, we divide the space up
210
 * arbitrarily, except that we allocate less space for the bitmap cache if
211
 * the device doesn't need halftoning.
212
 *
213
 * All the routines for allocating tables in the buffer are idempotent, so
214
 * they can be used to check whether a given-size buffer is large enough.
215
 */
216
217
/*
218
 * Calculate the desired size for the tile cache.
219
 */
220
static size_t
221
clist_tile_cache_size(const gx_device * target, size_t data_size)
222
987k
{
223
987k
    size_t bits_size =
224
987k
    (data_size / 5) & ~(align_cached_bits_mod-1);   /* arbitrary */
225
226
987k
    if (!gx_device_must_halftone(target)) {     /* No halftones -- cache holds only Patterns & characters. */
227
290k
        bits_size -= bits_size >> 2;
228
290k
    }
229
987k
#define min_bits_size 1024
230
987k
    if (bits_size < min_bits_size)
231
0
        bits_size = min_bits_size;
232
987k
#undef min_bits_size
233
987k
    return bits_size;
234
987k
}
235
236
/*
237
 * Initialize the allocation for the tile cache.  Sets: tile_hash_mask,
238
 * tile_max_count, tile_table, chunk (structure), bits (structure).
239
 */
240
static int
241
clist_init_tile_cache(gx_device * dev, byte * init_data, size_t data_size)
242
1.19M
{
243
1.19M
    gx_device_clist_writer * const cdev =
244
1.19M
        &((gx_device_clist *)dev)->writer;
245
1.19M
    byte *data = init_data;
246
1.19M
    size_t bits_size = data_size;
247
    /*
248
     * Partition the bits area between the hash table and the actual
249
     * bitmaps.  The per-bitmap overhead is about 24 bytes; if the
250
     * average character size is 10 points, its bitmap takes about 24 +
251
     * 0.5 * 10/72 * xdpi * 10/72 * ydpi / 8 bytes (the 0.5 being a
252
     * fudge factor to account for characters being narrower than they
253
     * are tall), which gives us a guideline for the size of the hash
254
     * table.
255
     */
256
1.19M
    size_t avg_char_size =
257
1.19M
        (size_t)(dev->HWResolution[0] * dev->HWResolution[1] *
258
1.19M
               (0.5 * 10 / 72 * 10 / 72 / 8)) + 24;
259
1.19M
    size_t hc = bits_size / avg_char_size;
260
1.19M
    size_t hsize;
261
262
8.96M
    while ((hc + 1) & hc)
263
7.76M
        hc |= hc >> 1;          /* make mask (power of 2 - 1) */
264
1.19M
    if (hc < 0xff)
265
0
        hc = 0xff;              /* make allowance for halftone tiles */
266
1.19M
    else if (hc > 0xfff)
267
91
        hc = 0xfff;             /* cmd_op_set_tile_index has 12-bit operand */
268
    /* Make sure the tables will fit. */
269
1.19M
    while (hc >= 3 && (hsize = (hc + 1) * sizeof(tile_hash)) >= bits_size)
270
0
        hc >>= 1;
271
1.19M
    if (hc < 3)
272
0
        return_error(gs_error_rangecheck);
273
1.19M
    cdev->tile_hash_mask = hc;
274
1.19M
    cdev->tile_max_count = hc - (hc >> 2);
275
1.19M
    cdev->tile_table = (tile_hash *) data;
276
1.19M
    data += hsize;
277
1.19M
    bits_size -= hsize;
278
1.19M
    gx_bits_cache_chunk_init(cdev->cache_chunk, data, bits_size);
279
1.19M
    gx_bits_cache_init(&cdev->bits, cdev->cache_chunk);
280
1.19M
    return 0;
281
1.19M
}
282
283
/*
284
 * Initialize the allocation for the bands.  Requires: target.  Sets:
285
 * page_info.band_params.BandHeight (=page_info.band_params.BandHeight), nbands.
286
 */
287
static int
288
clist_init_bands(gx_device * dev, gx_device_memory *bdev, size_t data_size,
289
                 int band_width, int band_height)
290
1.19M
{
291
1.19M
    gx_device_clist_writer * const cdev =
292
1.19M
        &((gx_device_clist *)dev)->writer;
293
1.19M
    int nbands;
294
1.19M
    size_t space;
295
296
1.19M
    if (dev_proc(dev, open_device) == pattern_clist_open_device) {
297
        /* We don't need bands really. */
298
212k
        cdev->page_info.band_params.BandHeight = dev->height;
299
212k
        cdev->nbands = 1;
300
212k
        return 0;
301
212k
    }
302
986k
    if (gdev_mem_data_size(bdev, band_width, band_height, &space) < 0 ||
303
986k
        space > data_size)
304
0
        return_error(gs_error_rangecheck);
305
986k
    cdev->page_info.band_params.BandHeight = band_height;
306
986k
    nbands = (cdev->target->height + band_height - 1) / band_height;
307
986k
    cdev->nbands = nbands;
308
#ifdef DEBUG
309
    if (gs_debug_c('l') | gs_debug_c(':'))
310
        dmlprintf4(dev->memory, "[:]width=%d, band_width=%d, band_height=%d, nbands=%d\n",
311
                   bdev->width, band_width, band_height, nbands);
312
#endif
313
986k
    return 0;
314
986k
}
315
316
/* Minimum BufferSpace needed when writing the clist */
317
/* This is an exported function because it is used to set up render threads */
318
size_t
319
1.19M
clist_minimum_buffer(int nbands) {
320
321
    /* Leave enough room after states for commands that write a reasonable
322
     * amount of data. The cmd_largest_size and the data_bits_size should  be
323
     * enough to buffer command operands. The data_bits_size is the level
324
     * at which commands should expect to split data across buffers. If this
325
     * extra space is a little large, it doesn't really hurt.
326
     */
327
1.19M
    return (nbands * (ulong) sizeof(gx_clist_state) +
328
1.19M
            sizeof(cmd_prefix) +
329
1.19M
            cmd_largest_size +
330
1.19M
            data_bits_size);
331
1.19M
}
332
333
/*
334
 * Initialize the allocation for the band states, which are used only
335
 * when writing.  Requires: nbands.  Sets: states, cbuf, cend, band_range_list.
336
 */
337
static int
338
clist_init_states(gx_device * dev, byte * init_data, size_t data_size)
339
1.19M
{
340
1.19M
    gx_device_clist_writer * const cdev =
341
1.19M
        &((gx_device_clist *)dev)->writer;
342
1.19M
    size_t state_size = cdev->nbands * sizeof(gx_clist_state);
343
    /* Align to the natural boundary for ARM processors, bug 689600 */
344
1.19M
    intptr_t alignment = (-(intptr_t)init_data) & (sizeof(init_data) - 1);
345
346
1.19M
    if (clist_minimum_buffer(cdev->nbands) > data_size)
347
32.7k
        return_error(gs_error_rangecheck);
348
    /* The end buffer position is not affected by alignment */
349
1.16M
    cdev->cend = init_data + data_size;
350
1.16M
    init_data +=  alignment;
351
1.16M
    cdev->states = (gx_clist_state *) init_data;
352
1.16M
    cdev->band_range_list =  (cmd_list *)(init_data + state_size);
353
1.16M
    cdev->cbuf = init_data + state_size + sizeof(cmd_list);
354
1.16M
    return 0;
355
1.19M
}
356
357
/*
358
 * Initialize all the data allocations.  Requires: target.  Sets:
359
 * page_info.tile_cache_size, page_info.band_params.BandWidth,
360
 * page_info.band_params.BandBufferSpace, + see above.
361
 */
362
static int
363
clist_init_data(gx_device * dev, byte * init_data, size_t data_size)
364
1.19M
{
365
1.19M
    gx_device_clist_writer * const cdev =
366
1.19M
        &((gx_device_clist *)dev)->writer;
367
1.19M
    gx_device *target = cdev->target;
368
    /* BandWidth can't be smaller than target device width */
369
1.19M
    const int band_width =
370
1.19M
        cdev->page_info.band_params.BandWidth = max(target->width, cdev->band_params.BandWidth);
371
1.19M
    int band_height = cdev->band_params.BandHeight;
372
1.19M
    bool page_uses_transparency = cdev->page_uses_transparency;
373
1.19M
    const size_t band_space =
374
1.19M
    cdev->page_info.band_params.BandBufferSpace =
375
1.19M
        (cdev->band_params.BandBufferSpace ?
376
1.19M
         cdev->band_params.BandBufferSpace : data_size);
377
1.19M
    byte *data = init_data;
378
1.19M
    size_t size = band_space;
379
1.19M
    size_t bits_size;
380
1.19M
    gx_device_memory bdev;
381
1.19M
    gx_device *pbdev = (gx_device *)&bdev;
382
1.19M
    int code;
383
1.19M
    int align = 1 << (target->log2_align_mod > log2_align_bitmap_mod ? target->log2_align_mod : log2_align_bitmap_mod);
384
385
1.19M
    align = align < obj_align_mod ? obj_align_mod : align;
386
387
    /* the clist writer has its own color info that depends upon the
388
       transparency group color space (if transparency exists).  The data that is
389
       used in the clist writing. Here it is initialized with
390
       the target device color info.  The values will be pushed and popped
391
       in a stack if we have changing color spaces in the transparency groups. */
392
393
1.19M
    cdev->clist_color_info.depth = dev->color_info.depth;
394
1.19M
    cdev->clist_color_info.polarity = dev->color_info.polarity;
395
1.19M
    cdev->clist_color_info.num_components = dev->color_info.num_components;
396
1.19M
    cdev->graphics_type_tag = target->graphics_type_tag;  /* initialize to same as target */
397
398
    /* Call create_buf_device to get the memory planarity set up. */
399
1.19M
    code = cdev->buf_procs.create_buf_device(&pbdev, target, 0, NULL, NULL, NULL);
400
1.19M
    if (code < 0)
401
0
        return code;
402
    /* HACK - if the buffer device can't do copy_alpha, disallow */
403
    /* copy_alpha in the commmand list device as well. */
404
1.19M
    if (dev_proc(pbdev, copy_alpha) == gx_no_copy_alpha)
405
0
        cdev->disable_mask |= clist_disable_copy_alpha;
406
1.19M
    if (dev_proc(cdev, open_device) == pattern_clist_open_device) {
407
212k
        bits_size = data_size / 2;
408
212k
        cdev->page_info.line_ptrs_offset = 0;
409
987k
    } else {
410
987k
        if (band_height) {
411
            /*
412
             * The band height is fixed, so the band buffer requirement
413
             * is completely determined.
414
             */
415
0
            size_t band_data_size;
416
0
            int adjusted;
417
418
0
            adjusted = (dev_proc(dev, dev_spec_op)(dev, gxdso_adjust_bandheight, NULL, band_height));
419
0
            if (adjusted > 0)
420
0
                band_height = adjusted;
421
422
0
            if (gdev_mem_data_size(&bdev, band_width, band_height, &band_data_size) < 0 ||
423
0
                band_data_size >= band_space) {
424
0
                if (pbdev->finalize)
425
0
                    pbdev->finalize(pbdev);
426
0
                return_error(gs_error_rangecheck);
427
0
            }
428
            /* If the tile_cache_size is specified, use it */
429
0
            if (cdev->space_params.band.tile_cache_size == 0) {
430
0
                bits_size = min(band_space - band_data_size, data_size >> 1);
431
0
            } else {
432
0
                bits_size = cdev->space_params.band.tile_cache_size;
433
0
            }
434
            /* The top of the tile_cache is the bottom of the imagable band buffer,
435
             * which needs to be appropriately aligned. Because the band height is
436
             * fixed, we must round *down* the size of the cache to a appropriate
437
             * value. See clist_render_thread() and clist_rasterize_lines()
438
             * for where the value is used.
439
             */
440
0
            bits_size = ROUND_DOWN(bits_size, align);
441
987k
        } else {
442
987k
            int adjusted;
443
            /*
444
             * Choose the largest band height that will fit in the
445
             * rendering-time buffer.
446
             */
447
987k
            bits_size = clist_tile_cache_size(target, band_space);
448
987k
            bits_size = min(bits_size, data_size >> 1);
449
            /* The top of the tile_cache is the bottom of the imagable band buffer,
450
             * which needs to be appropriately aligned. Because the band height is
451
             * fixed, here we round up the size of the cache, since the band height
452
             * is variable, and it should only be a few bytes. See clist_render_thread()
453
             * and clist_rasterize_lines() for where the value is used.
454
             */
455
987k
            bits_size = ROUND_UP(bits_size, align);
456
987k
            band_height = gdev_mem_max_height(&bdev, band_width,
457
987k
                              band_space - bits_size, page_uses_transparency);
458
987k
            if (band_height == 0) {
459
109
                if (pbdev->finalize)
460
109
                    pbdev->finalize(pbdev);
461
109
                return_error(gs_error_rangecheck);
462
109
            }
463
986k
            adjusted = (dev_proc(dev, dev_spec_op)(dev, gxdso_adjust_bandheight, NULL, band_height));
464
986k
            if (adjusted > 0)
465
0
                band_height = adjusted;
466
986k
        }
467
        /* The above calculated bits_size's include space for line ptrs. What is
468
         * the offset for the line_ptrs within the buffer? */
469
986k
        if (gdev_mem_bits_size(&bdev, band_width, band_height, &cdev->page_info.line_ptrs_offset) < 0)
470
0
            return_error(gs_error_VMerror);
471
986k
    }
472
1.19M
    cdev->pdf14_trans_group_level = -1; /* to prevent any initial op except PUSH_DEVICE */
473
1.19M
    cdev->ins_count = 0;
474
1.19M
    code = clist_init_tile_cache(dev, data, bits_size);
475
1.19M
    if (code < 0) {
476
0
        if (pbdev->finalize)
477
0
            pbdev->finalize(pbdev);
478
0
        return code;
479
0
    }
480
1.19M
    cdev->page_info.tile_cache_size = bits_size;
481
1.19M
    data += bits_size;
482
1.19M
    size -= bits_size;
483
1.19M
    code = clist_init_bands(dev, &bdev, size, band_width, band_height);
484
1.19M
    if (code < 0) {
485
0
        if (pbdev->finalize)
486
0
            pbdev->finalize(pbdev);
487
0
        return code;
488
0
    }
489
490
1.19M
    if (pbdev->finalize)
491
1.19M
        pbdev->finalize(pbdev);
492
493
1.19M
    return clist_init_states(dev, data, data_size - bits_size);
494
1.19M
}
495
/*
496
 * Reset the device state (for writing).  This routine requires only
497
 * data, data_size, and target to be set, and is idempotent.
498
 */
499
static int
500
clist_reset(gx_device * dev)
501
1.19M
{
502
1.19M
    gx_device_clist_writer * const cdev =
503
1.19M
        &((gx_device_clist *)dev)->writer;
504
1.19M
    int code = clist_init_data(dev, cdev->data, cdev->data_size);
505
1.19M
    int nbands;
506
507
1.19M
    if (code < 0)
508
32.8k
        return (cdev->permanent_error = code);
509
    /* Now initialize the rest of the state. */
510
1.16M
    cdev->permanent_error = 0;
511
1.16M
    nbands = cdev->nbands;
512
1.16M
    cdev->ymin = cdev->ymax = -1;       /* render_init not done yet */
513
1.16M
    memset(cdev->tile_table, 0, (cdev->tile_hash_mask + 1) *
514
1.16M
       sizeof(*cdev->tile_table));
515
1.16M
    cdev->cnext = cdev->cbuf;
516
1.16M
    cdev->ccl = 0;
517
1.16M
    cdev->band_range_list->head = cdev->band_range_list->tail = 0;
518
1.16M
    cdev->band_range_min = 0;
519
1.16M
    cdev->band_range_max = nbands - 1;
520
1.16M
    if_debug2m('L', cdev->memory, "[L]Resetting: Band range(%d,%d)\n",
521
1.16M
               cdev->band_range_min, cdev->band_range_max);
522
1.16M
    {
523
1.16M
        int band;
524
1.16M
        gx_clist_state *states = cdev->states;
525
526
31.7M
        for (band = 0; band < nbands; band++, states++) {
527
30.6M
            static const gx_clist_state cls_initial = { cls_initial_values };
528
529
30.6M
            *states = cls_initial;
530
30.6M
        }
531
1.16M
    }
532
    /*
533
     * Round up the size of the per-tile band mask so that the bits,
534
     * which follow it, stay aligned.
535
     */
536
1.16M
    cdev->tile_band_mask_size =
537
1.16M
        ((nbands + (align_bitmap_mod * 8 - 1)) >> 3) &
538
1.16M
        ~(align_bitmap_mod - 1);
539
    /*
540
     * Initialize the all-band parameters to impossible values,
541
     * to force them to be written the first time they are used.
542
     */
543
1.16M
    memset(&cdev->tile_params, 0, sizeof(cdev->tile_params));
544
1.16M
    cdev->tile_depth = 0;
545
1.16M
    cdev->tile_known_min = nbands;
546
1.16M
    cdev->tile_known_max = -1;
547
1.16M
    GS_STATE_INIT_VALUES_CLIST((&cdev->gs_gstate));
548
1.16M
    cdev->clip_path = NULL;
549
1.16M
    cdev->clip_path_id = gs_no_id;
550
1.16M
    cdev->color_space.byte1 = 0;
551
1.16M
    cdev->color_space.id = gs_no_id;
552
1.16M
    cdev->color_space.space = 0;
553
1.16M
    {
554
1.16M
        int i;
555
556
5.83M
        for (i = 0; i < countof(cdev->transfer_ids); ++i)
557
4.66M
            cdev->transfer_ids[i] = gs_no_id;
558
1.16M
    }
559
1.16M
    cdev->black_generation_id = gs_no_id;
560
1.16M
    cdev->undercolor_removal_id = gs_no_id;
561
1.16M
    cdev->device_halftone_id = gs_no_id;
562
1.16M
    cdev->image_enum_id = gs_no_id;
563
1.16M
    cdev->cropping_min = cdev->save_cropping_min = 0;
564
1.16M
    cdev->cropping_max = cdev->save_cropping_max = cdev->height;
565
1.16M
    cdev->cropping_saved = false;
566
1.16M
    cdev->cropping_stack = NULL;
567
1.16M
    cdev->cropping_level = 0;
568
1.16M
    cdev->mask_id_count = cdev->mask_id = cdev->temp_mask_id = 0;
569
1.16M
    cdev->icc_table = NULL;
570
1.16M
    cdev->op_fill_active = false;
571
1.16M
    cdev->op_stroke_active = false;
572
1.16M
    return 0;
573
1.19M
}
574
/*
575
 * Initialize the device state (for writing).  This routine requires only
576
 * data, data_size, and target to be set, and is idempotent.
577
 */
578
static int
579
clist_init(gx_device * dev)
580
1.19M
{
581
1.19M
    gx_device_clist_writer * const cdev =
582
1.19M
        &((gx_device_clist *)dev)->writer;
583
1.19M
    int code = clist_reset(dev);
584
585
1.19M
    if (code >= 0) {
586
1.16M
        cdev->image_enum_id = gs_no_id;
587
1.16M
        cdev->ignore_lo_mem_warnings = 0;
588
1.16M
    }
589
1.19M
    return code;
590
1.19M
}
591
592
/* Write out the current parameters that must be at the head of each page */
593
/* if async rendering is in effect */
594
static int
595
clist_emit_page_header(gx_device *dev)
596
875k
{
597
875k
    gx_device_clist_writer * const cdev =
598
875k
        &((gx_device_clist *)dev)->writer;
599
875k
    int code = 0;
600
601
875k
    if ((cdev->disable_mask & clist_disable_pass_thru_params)) {
602
0
        code = clist_put_current_params(cdev);
603
0
        cdev->permanent_error = (code < 0 ? code : 0);
604
0
    }
605
875k
    return code;
606
875k
}
607
608
/* Reset parameters for the beginning of a page. */
609
static void
610
clist_reset_page(gx_device_clist_writer *cwdev)
611
875k
{
612
875k
    cwdev->page_info.bfile_end_pos = 0;
613
875k
}
614
615
/* Open the device's bandfiles */
616
static int
617
clist_open_output_file(gx_device *dev)
618
290k
{
619
290k
    gx_device_clist_writer * const cdev =
620
290k
        &((gx_device_clist *)dev)->writer;
621
290k
    char fmode[4];
622
290k
    int code;
623
624
290k
    if (cdev->do_not_open_or_close_bandfiles)
625
0
        return 0; /* external bandfile open/close managed externally */
626
290k
    cdev->page_info.cfile = 0;       /* in case of failure */
627
290k
    cdev->page_info.bfile = 0;       /* ditto */
628
290k
    code = clist_init(dev);
629
290k
    if (code < 0)
630
0
        return code;
631
290k
    snprintf(fmode, sizeof(fmode), "w+%s", gp_fmode_binary_suffix);
632
290k
    cdev->page_info.cfname[0] = 0;   /* create a new file */
633
290k
    cdev->page_info.bfname[0] = 0;   /* ditto */
634
290k
    clist_reset_page(cdev);
635
290k
    if ((code = cdev->page_info.io_procs->fopen(cdev->page_info.cfname, fmode, &cdev->page_info.cfile,
636
290k
                            cdev->bandlist_memory, cdev->bandlist_memory,
637
290k
                            true)) < 0 ||
638
290k
        (code = cdev->page_info.io_procs->fopen(cdev->page_info.bfname, fmode, &cdev->page_info.bfile,
639
290k
                            cdev->bandlist_memory, cdev->bandlist_memory,
640
290k
                            false)) < 0
641
290k
        ) {
642
0
        clist_close_output_file(dev);
643
0
        cdev->permanent_error = code;
644
0
    }
645
290k
    return code;
646
290k
}
647
648
/* Close, and free the contents of, the temporary files of a page. */
649
/* Note that this does not deallocate the buffer. */
650
int
651
clist_close_page_info(gx_band_page_info_t *ppi)
652
290k
{
653
290k
    if (ppi->cfile != NULL) {
654
290k
        ppi->io_procs->fclose(ppi->cfile, ppi->cfname, true);
655
290k
        ppi->cfile = NULL;
656
290k
        ppi->cfname[0] = 0;     /* prevent re-use in case this is a fake path */
657
290k
    }
658
290k
    if (ppi->bfile != NULL) {
659
290k
        ppi->io_procs->fclose(ppi->bfile, ppi->bfname, true);
660
290k
        ppi->bfile = NULL;
661
290k
        ppi->bfname[0] = 0;     /* prevent re-use in case this is a fake path */
662
290k
    }
663
290k
    return 0;
664
290k
}
665
666
/* Close the device by freeing the temporary files. */
667
/* Note that this does not deallocate the buffer. */
668
int
669
clist_close_output_file(gx_device *dev)
670
290k
{
671
290k
    gx_device_clist_writer * const cdev =
672
290k
        &((gx_device_clist *)dev)->writer;
673
674
290k
    return clist_close_page_info(&cdev->page_info);
675
290k
}
676
677
/* Open the device by initializing the device state and opening the */
678
/* scratch files. */
679
int
680
clist_open(gx_device *dev)
681
323k
{
682
323k
    gx_device_clist_writer * const cdev =
683
323k
        &((gx_device_clist *)dev)->writer;
684
323k
    bool save_is_open = dev->is_open;
685
323k
    int code;
686
687
323k
    cdev->permanent_error = 0;
688
323k
    cdev->is_open = false;
689
690
323k
    cdev->cache_chunk = (gx_bits_cache_chunk *)gs_alloc_bytes(cdev->memory->non_gc_memory, sizeof(gx_bits_cache_chunk), "alloc tile cache for clist");
691
323k
    if (!cdev->cache_chunk)
692
0
        return_error(gs_error_VMerror);
693
323k
    memset(cdev->cache_chunk, 0x00, sizeof(gx_bits_cache_chunk));
694
695
323k
    code = clist_init(dev);
696
323k
    if (code < 0)
697
32.8k
        goto errxit;
698
699
290k
    cdev->icc_cache_list_len = 0;
700
290k
    cdev->icc_cache_list = NULL;
701
290k
    code = clist_open_output_file(dev);
702
290k
    if ( code >= 0)
703
290k
        code = clist_emit_page_header(dev);
704
290k
    if (code >= 0) {
705
290k
        dev->is_open = save_is_open;
706
290k
        return code;    /* success */
707
290k
    }
708
    /* fall through to clean up and return error code */
709
32.8k
errxit:
710
    /* prevent leak */
711
32.8k
    gs_free_object(cdev->memory->non_gc_memory, cdev->cache_chunk, "free tile cache for clist");
712
32.8k
    dev->is_open = save_is_open;
713
32.8k
    cdev->cache_chunk = NULL;
714
32.8k
    return code;
715
290k
}
716
717
int
718
clist_close(gx_device *dev)
719
294k
{
720
294k
    int i;
721
294k
    gx_device_clist_writer * const cdev =
722
294k
        &((gx_device_clist *)dev)->writer;
723
724
    /* I'd like to free the cache chunk in here, but we can't, because the pattern clist
725
     * device gets closed, but not discarded, later it gets run. So we have to free the memory
726
     * in *2* places, once in gdev_prn_tear_down() for regular clists, and once in
727
     * gx_pattern_cache_free_entry() for pattern clists....
728
     */
729
294k
    for(i = 0; i < cdev->icc_cache_list_len; i++) {
730
0
        rc_decrement(cdev->icc_cache_list[i], "clist_close");
731
0
    }
732
294k
    cdev->icc_cache_list_len = 0;
733
294k
    gs_free_object(cdev->memory->thread_safe_memory, cdev->icc_cache_list, "clist_close");
734
294k
    cdev->icc_cache_list = NULL;
735
736
    /* So despite the comment above, it seems necessary to free the cache_chunk here,
737
     * if the device is not being retained.  The code in gx_pattern_cache_free_entry() doesn't
738
     * actually free it, in at least some cases.
739
     * TODO: Is it sufficient to only free it here, and not in the places mentioned above?
740
     */
741
294k
    if (!cdev->retained) {
742
1.38k
        gs_free_object(cdev->memory->non_gc_memory, cdev->cache_chunk,
743
1.38k
                       "clist_close(cache_chunk)");
744
1.38k
        cdev->cache_chunk = NULL;
745
1.38k
    }
746
747
294k
    if (cdev->do_not_open_or_close_bandfiles)
748
3.06k
        return 0;
749
290k
    if (dev_proc(cdev, open_device) == pattern_clist_open_device) {
750
106k
        gs_free_object(cdev->bandlist_memory, cdev->data, "clist_close");
751
106k
        cdev->data = NULL;
752
106k
    }
753
290k
    return clist_close_output_file(dev);
754
294k
}
755
756
/* The output_page procedure should never be called! */
757
int
758
clist_output_page(gx_device * dev, int num_copies, int flush)
759
0
{
760
0
    return_error(gs_error_Fatal);
761
0
}
762
763
/* Reset (or prepare to append to) the command list after printing a page. */
764
int
765
clist_finish_page(gx_device *dev, bool flush)
766
585k
{
767
585k
    gx_device_clist_writer *const cdev = &((gx_device_clist *)dev)->writer;
768
585k
    int code;
769
770
    /* If this is a reader clist, which is about to be reset to a writer,
771
     * free any color_usage array used by same.
772
     * since we have been rendering, shut down threads
773
     * Also free the icc_table at this time and the icc_cache
774
     */
775
585k
    if (!CLIST_IS_WRITER((gx_device_clist *)dev)) {
776
583k
        gx_device_clist_reader * const crdev =  &((gx_device_clist *)dev)->reader;
777
778
583k
        clist_teardown_render_threads(dev);
779
583k
        gs_free_object(cdev->memory, crdev->color_usage_array, "clist_color_usage_array");
780
583k
        crdev->color_usage_array = NULL;
781
782
       /* Free the icc table associated with this device.
783
           The threads that may have pointed to this were destroyed in
784
           the above call to clist_teardown_render_threads.  Since they
785
           all maintained a copy of the cache and the table there should not
786
           be any issues. */
787
583k
        clist_free_icc_table(crdev->icc_table, crdev->memory);
788
583k
        crdev->icc_table = NULL;
789
583k
    }
790
585k
    if (flush) {
791
585k
        if (cdev->page_info.cfile != 0) {
792
585k
            code = cdev->page_info.io_procs->rewind(cdev->page_info.cfile, true, cdev->page_info.cfname);
793
585k
            if (code < 0) return code;
794
585k
        }
795
585k
        if (cdev->page_info.bfile != 0) {
796
585k
            code = cdev->page_info.io_procs->rewind(cdev->page_info.bfile, true, cdev->page_info.bfname);
797
585k
            if (code < 0) return code;
798
585k
        }
799
585k
        cdev->page_info.bfile_end_pos = 0;
800
585k
        clist_reset_page(cdev);
801
585k
    } else {
802
0
        if (cdev->page_info.cfile != 0)
803
0
            cdev->page_info.io_procs->fseek(cdev->page_info.cfile, 0L, SEEK_END, cdev->page_info.cfname);
804
0
        if (cdev->page_info.bfile != 0)
805
0
            cdev->page_info.io_procs->fseek(cdev->page_info.bfile, 0L, SEEK_END, cdev->page_info.bfname);
806
0
    }
807
585k
    code = clist_init(dev);             /* reinitialize */
808
585k
    if (code >= 0)
809
585k
        code = clist_emit_page_header(dev);
810
811
585k
    return code;
812
585k
}
813
814
/* ------ Writing ------ */
815
816
/* End a page by flushing the buffer and terminating the command list. */
817
int     /* ret 0 all-ok, -ve error code, or +1 ok w/low-mem warning */
818
clist_end_page(gx_device_clist_writer * cldev)
819
589k
{
820
589k
    int code;
821
589k
    cmd_block cb;
822
589k
    int ecode = 0;
823
824
589k
    code = cmd_write_buffer(cldev, cmd_opv_end_page);
825
589k
    if (code >= 0)
826
589k
        ecode |= code;
827
0
    else
828
0
        ecode = code;
829
830
    /* If we have ICC profiles present in the cfile save the table now,
831
       along with the ICC profiles. Table is stored in band maxband + 1. */
832
589k
    if ( cldev->icc_table != NULL ) {
833
        /* Save the table */
834
12.9k
        code = clist_icc_writetable(cldev);
835
        /* Free the table */
836
12.9k
        clist_free_icc_table(cldev->icc_table, cldev->memory);
837
12.9k
        cldev->icc_table = NULL;
838
12.9k
    }
839
840
589k
    if (code >= 0) {
841
589k
        code = clist_write_color_usage_array(cldev);
842
589k
        if (code >= 0) {
843
589k
            ecode |= code;
844
            /*
845
             * Write the terminating entry in the block file.
846
             * Note that because of copypage, there may be many such entries.
847
             */
848
589k
            memset(&cb, 0, sizeof(cb)); /* Zero the block, including any padding */
849
589k
            cb.band_min = cb.band_max = cmd_band_end;
850
589k
            cb.pos = (cldev->page_info.cfile == 0 ? 0 : cldev->page_info.io_procs->ftell(cldev->page_info.cfile));
851
589k
            if_debug3m('l', cldev->memory, "[l]writing end for bands (%d,%d) at %"PRId64"\n",
852
589k
                       cb.band_min, cb.band_max, cb.pos);
853
589k
            code = cldev->page_info.io_procs->fwrite_chars(&cb, sizeof(cb), cldev->page_info.bfile);
854
589k
            if (code > 0)
855
589k
                code = 0;
856
589k
        }
857
589k
    }
858
589k
    if (code >= 0) {
859
589k
        ecode |= code;
860
589k
        cldev->page_info.bfile_end_pos = cldev->page_info.io_procs->ftell(cldev->page_info.bfile);
861
589k
    } else
862
0
        ecode = code;
863
864
    /* Reset warning margin to 0 to release reserve memory if mem files */
865
589k
    if (cldev->page_info.bfile != 0)
866
589k
        cldev->page_info.io_procs->set_memory_warning(cldev->page_info.bfile, 0);
867
589k
    if (cldev->page_info.cfile != 0)
868
589k
        cldev->page_info.io_procs->set_memory_warning(cldev->page_info.cfile, 0);
869
870
#ifdef DEBUG
871
    if (gs_debug_c('l') | gs_debug_c(':')) {
872
        if (cb.pos <= 0xFFFFFFFF)
873
            dmlprintf2(cldev->memory, "[:]clist_end_page at cfile=%lu, bfile=%lu\n",
874
                  (unsigned long)cb.pos, (unsigned long)cldev->page_info.bfile_end_pos);
875
        else
876
            dmlprintf3(cldev->memory, "[:]clist_end_page at cfile=%lu%0lu, bfile=%lu\n",
877
                (unsigned long) (cb.pos >> 32), (unsigned long) (cb.pos & 0xFFFFFFFF),
878
                (unsigned long)cldev->page_info.bfile_end_pos);
879
    }
880
#endif
881
589k
    if (cldev->page_uses_transparency && gs_debug[':']) {
882
        /* count how many bands were skipped */
883
0
        int skip_count = 0;
884
0
        int band;
885
886
0
        for (band=0; band < cldev->nbands - 1; band++) {
887
0
            if (cldev->states[band].color_usage.trans_bbox.p.y >
888
0
                cldev->states[band].color_usage.trans_bbox.q.y)
889
0
                skip_count++;
890
0
        }
891
0
        dprintf2("%d bands skipped out of %d\n", skip_count, cldev->nbands);
892
0
    }
893
894
589k
    return ecode;
895
589k
}
896
897
gx_color_usage_bits
898
gx_color_index2usage(gx_device *dev, gx_color_index color)
899
76.6M
{
900
76.6M
    gx_color_usage_bits bits = 0;
901
76.6M
    uchar i;
902
903
76.6M
    if (dev->color_info.polarity == GX_CINFO_POLARITY_ADDITIVE)
904
73.1M
        color = color ^ ~0;   /* white is 0 */
905
906
253M
    for (i = 0; i < dev->color_info.num_components; i++) {
907
177M
        if (color & dev->color_info.comp_mask[i])
908
12.0M
            bits |= (((gx_color_usage_bits)1) << i);
909
177M
    }
910
76.6M
    return bits;
911
76.6M
}
912
913
/* Write the target device's current parameter list */
914
static int      /* ret 0 all ok, -ve error */
915
clist_put_current_params(gx_device_clist_writer *cldev)
916
0
{
917
0
    gx_device *target = cldev->target;
918
0
    gs_c_param_list param_list;
919
0
    int code;
920
921
    /*
922
     * If a put_params call fails, the device will be left in a closed
923
     * state, but higher-level code won't notice this fact.  We flag this by
924
     * setting permanent_error, which prevents writing to the command list.
925
     */
926
927
0
    if (cldev->permanent_error)
928
0
        return cldev->permanent_error;
929
0
    gs_c_param_list_write(&param_list, cldev->memory);
930
0
    code = (*dev_proc(target, get_params))
931
0
        (target, (gs_param_list *)&param_list);
932
0
    if (code >= 0) {
933
0
        gs_c_param_list_read(&param_list);
934
0
        code = cmd_put_params( cldev, (gs_param_list *)&param_list );
935
0
    }
936
0
    gs_c_param_list_release(&param_list);
937
938
0
    return code;
939
0
}
940
941
/* ---------------- Driver interface ---------------- */
942
943
/* ICC table operations.  See gxclist.h for details */
944
/* This checks the table for a hash code entry */
945
bool
946
clist_icc_searchtable(gx_device_clist_writer *cdev, int64_t hashcode)
947
318k
{
948
318k
    clist_icctable_t *icc_table = cdev->icc_table;
949
318k
    clist_icctable_entry_t *curr_entry;
950
951
318k
    if (icc_table == NULL)
952
4.94k
        return(false);  /* No entry */
953
313k
    curr_entry = icc_table->head;
954
583k
    while(curr_entry != NULL) {
955
581k
        if (curr_entry->serial_data.hashcode == hashcode){
956
312k
            return(true);
957
312k
        }
958
269k
        curr_entry = curr_entry->next;
959
269k
    }
960
1.71k
     return(false);  /* No entry */
961
313k
}
962
963
static void
964
clist_free_icc_table_contents(clist_icctable_t *icc_table)
965
26.3k
{
966
26.3k
    int number_entries;
967
26.3k
    clist_icctable_entry_t *curr_entry, *next_entry;
968
26.3k
    int k;
969
970
26.3k
    number_entries = icc_table->tablesize;
971
26.3k
    curr_entry = icc_table->head;
972
59.0k
    for (k = 0; k < number_entries; k++) {
973
32.6k
        next_entry = curr_entry->next;
974
32.6k
        gsicc_adjust_profile_rc(curr_entry->icc_profile, -1, "clist_free_icc_table");
975
32.6k
        gs_free_object(icc_table->memory, curr_entry, "clist_free_icc_table");
976
32.6k
        curr_entry = next_entry;
977
32.6k
    }
978
26.3k
}
979
980
void
981
clist_icc_table_finalize(const gs_memory_t *memory, void * vptr)
982
26.3k
{
983
26.3k
    clist_icctable_t *icc_table = (clist_icctable_t *)vptr;
984
985
26.3k
    clist_free_icc_table_contents(icc_table);
986
26.3k
}
987
988
/* Free the table */
989
int
990
clist_free_icc_table(clist_icctable_t *icc_table, gs_memory_t *memory)
991
885k
{
992
885k
    if (icc_table == NULL)
993
859k
        return(0);
994
995
26.0k
    gs_free_object(icc_table->memory, icc_table, "clist_free_icc_table");
996
26.0k
    return(0);
997
885k
}
998
999
/* This serializes the ICC table and writes it out for maxband+1 */
1000
int
1001
clist_icc_writetable(gx_device_clist_writer *cldev)
1002
12.9k
{
1003
12.9k
    unsigned char *pbuf, *buf;
1004
12.9k
    clist_icctable_t *icc_table = cldev->icc_table;
1005
12.9k
    int number_entries = icc_table->tablesize;
1006
12.9k
    clist_icctable_entry_t *curr_entry;
1007
12.9k
    size_t size_data;
1008
12.9k
    int k;
1009
12.9k
    bool rend_is_valid;
1010
1011
    /* First we need to write out the ICC profiles themselves and update
1012
       in the table where they will be stored and their size.  Set the
1013
       rend cond valid flag prior to writing */
1014
12.9k
    curr_entry = icc_table->head;
1015
29.0k
    for ( k = 0; k < number_entries; k++ ){
1016
16.0k
        rend_is_valid = curr_entry->icc_profile->rend_is_valid;
1017
16.0k
        curr_entry->icc_profile->rend_is_valid = curr_entry->render_is_valid;
1018
16.0k
        curr_entry->serial_data.file_position = clist_icc_addprofile(cldev, curr_entry->icc_profile, &curr_entry->serial_data.size);
1019
16.0k
        curr_entry->icc_profile->rend_is_valid = rend_is_valid;
1020
16.0k
        gsicc_adjust_profile_rc(curr_entry->icc_profile, -1, "clist_icc_writetable");
1021
16.0k
        curr_entry->icc_profile = NULL;
1022
16.0k
        curr_entry = curr_entry->next;
1023
16.0k
    }
1024
1025
    /* Now serialize the table data */
1026
12.9k
    size_data = number_entries*sizeof(clist_icc_serial_entry_t) + sizeof(number_entries);
1027
12.9k
    buf = gs_alloc_bytes(cldev->memory, size_data, "clist_icc_writetable");
1028
12.9k
    if (buf == NULL)
1029
0
        return gs_rethrow(-1, "insufficient memory for icc table buffer");
1030
12.9k
    pbuf = buf;
1031
12.9k
    memcpy(pbuf, &number_entries, sizeof(number_entries));
1032
12.9k
    pbuf += sizeof(number_entries);
1033
12.9k
    curr_entry = icc_table->head;
1034
29.0k
    for (k = 0; k < number_entries; k++) {
1035
16.0k
        memcpy(pbuf, &(curr_entry->serial_data), sizeof(clist_icc_serial_entry_t));
1036
16.0k
        pbuf += sizeof(clist_icc_serial_entry_t);
1037
16.0k
        curr_entry = curr_entry->next;
1038
16.0k
    }
1039
    /* Now go ahead and save the table data */
1040
12.9k
    cmd_write_pseudo_band(cldev, buf, size_data, ICC_TABLE_OFFSET);
1041
12.9k
    gs_free_object(cldev->memory, buf, "clist_icc_writetable");
1042
12.9k
    return(0);
1043
12.9k
}
1044
1045
/* This write the actual data out to the cfile */
1046
1047
int64_t
1048
clist_icc_addprofile(gx_device_clist_writer *cldev, cmm_profile_t *iccprofile, int *size)
1049
16.0k
{
1050
1051
16.0k
    clist_file_ptr cfile = cldev->page_info.cfile;
1052
16.0k
    int64_t fileposit;
1053
16.0k
#if defined(DEBUG) || defined(PACIFY_VALGRIND)
1054
16.0k
    gsicc_serialized_profile_t profile_data = { 0 };
1055
#else
1056
    gsicc_serialized_profile_t profile_data;
1057
#endif
1058
16.0k
    int count1, count2;
1059
1060
    /* Get the current position */
1061
16.0k
    fileposit = cldev->page_info.io_procs->ftell(cfile);
1062
    /* Get the serialized header */
1063
16.0k
    gsicc_profile_serialize(&profile_data, iccprofile);
1064
    /* Write the header */
1065
16.0k
    if_debug1m('l', cldev->memory, "[l]writing icc profile in cfile at pos %"PRId64"\n",fileposit);
1066
16.0k
    count1 = cldev->page_info.io_procs->fwrite_chars(&profile_data, GSICC_SERIALIZED_SIZE, cfile);
1067
    /* Now write the profile */
1068
16.0k
    count2 = cldev->page_info.io_procs->fwrite_chars(iccprofile->buffer, iccprofile->buffer_size, cfile);
1069
    /* Return where we wrote this in the cfile */
1070
16.0k
    *size = count1 + count2;
1071
16.0k
    return(fileposit);
1072
16.0k
}
1073
1074
/* This add a new entry into the table */
1075
1076
int
1077
clist_icc_addentry(gx_device_clist_writer *cdev, int64_t hashcode_in, cmm_profile_t *icc_profile)
1078
50.4k
{
1079
1080
50.4k
    clist_icctable_t *icc_table = cdev->icc_table;
1081
50.4k
    clist_icctable_entry_t *entry, *curr_entry;
1082
50.4k
    int k;
1083
50.4k
    int64_t hashcode;
1084
50.4k
    gs_memory_t *stable_mem = cdev->memory->stable_memory;
1085
1086
    /* If the hash code is not valid then compute it now */
1087
50.4k
    if (icc_profile->hash_is_valid == false) {
1088
0
        gsicc_get_icc_buff_hash(icc_profile->buffer, &hashcode,
1089
0
                                icc_profile->buffer_size);
1090
0
        icc_profile->hashcode = hashcode;
1091
0
        icc_profile->hash_is_valid = true;
1092
50.4k
    } else {
1093
50.4k
        hashcode = hashcode_in;
1094
50.4k
    }
1095
50.4k
    if ( icc_table == NULL ) {
1096
13.4k
        entry = (clist_icctable_entry_t *) gs_alloc_struct(stable_mem,
1097
13.4k
                               clist_icctable_entry_t, &st_clist_icctable_entry,
1098
13.4k
                               "clist_icc_addentry");
1099
13.4k
        if (entry == NULL)
1100
0
            return gs_rethrow(-1, "insufficient memory to allocate entry in icc table");
1101
13.4k
#ifdef PACIFY_VALGRIND
1102
        /* Avoid uninitialised padding upsetting valgrind when it's written
1103
         * into the clist. */
1104
13.4k
        memset(entry, 0, sizeof(*entry));
1105
13.4k
#endif
1106
13.4k
        entry->next = NULL;
1107
13.4k
        entry->serial_data.hashcode = hashcode;
1108
13.4k
        entry->serial_data.size = -1;
1109
13.4k
        entry->serial_data.file_position = -1;
1110
13.4k
        entry->icc_profile = icc_profile;
1111
13.4k
        entry->render_is_valid = icc_profile->rend_is_valid;
1112
13.4k
        gsicc_adjust_profile_rc(icc_profile, 1, "clist_icc_addentry");
1113
13.4k
        icc_table = gs_alloc_struct(stable_mem, clist_icctable_t,
1114
13.4k
                                    &st_clist_icctable, "clist_icc_addentry");
1115
13.4k
        if (icc_table == NULL)
1116
0
            return gs_rethrow(-1, "insufficient memory to allocate icc table");
1117
13.4k
        icc_table->tablesize = 1;
1118
13.4k
        icc_table->head = entry;
1119
13.4k
        icc_table->final = entry;
1120
13.4k
        icc_table->memory = stable_mem;
1121
        /* For now, we are just going to put the icc_table itself
1122
            at band_range_max + 1.  The ICC profiles are written
1123
            in the cfile at the current stored file position*/
1124
13.4k
        cdev->icc_table = icc_table;
1125
37.0k
    } else {
1126
        /* First check if we already have this entry */
1127
37.0k
        curr_entry = icc_table->head;
1128
52.5k
        for (k = 0; k < icc_table->tablesize; k++) {
1129
49.4k
            if (curr_entry->serial_data.hashcode == hashcode)
1130
33.8k
                return 0;  /* A hit */
1131
15.5k
            curr_entry = curr_entry->next;
1132
15.5k
        }
1133
         /* Add a new ICC profile */
1134
3.13k
        entry =
1135
3.13k
            (clist_icctable_entry_t *) gs_alloc_struct(icc_table->memory,
1136
3.13k
                                                       clist_icctable_entry_t,
1137
3.13k
                                                       &st_clist_icctable_entry,
1138
3.13k
                                                       "clist_icc_addentry");
1139
3.13k
        if (entry == NULL)
1140
0
            return gs_rethrow(-1, "insufficient memory to allocate entry in icc table");
1141
3.13k
#ifdef PACIFY_VALGRIND
1142
        /* Avoid uninitialised padding upsetting valgrind when it's written
1143
         * into the clist. */
1144
3.13k
        memset(entry, 0, sizeof(*entry));
1145
3.13k
#endif
1146
3.13k
        entry->next = NULL;
1147
3.13k
        entry->serial_data.hashcode = hashcode;
1148
3.13k
        entry->serial_data.size = -1;
1149
3.13k
        entry->serial_data.file_position = -1;
1150
3.13k
        entry->icc_profile = icc_profile;
1151
3.13k
        entry->render_is_valid = icc_profile->rend_is_valid;
1152
3.13k
        gsicc_adjust_profile_rc(icc_profile, 1, "clist_icc_addentry");
1153
3.13k
        icc_table->final->next = entry;
1154
3.13k
        icc_table->final = entry;
1155
3.13k
        icc_table->tablesize++;
1156
3.13k
    }
1157
16.5k
    return(0);
1158
50.4k
}
1159
1160
/* This writes out the color_usage_array for maxband+1 */
1161
int
1162
clist_write_color_usage_array(gx_device_clist_writer *cldev)
1163
589k
{
1164
589k
   gx_color_usage_t *color_usage_array;
1165
589k
   int i;
1166
589k
   size_t size_data = cldev->nbands * sizeof(gx_color_usage_t);
1167
1168
    /* Now serialize the table data */
1169
589k
    color_usage_array = (gx_color_usage_t *)gs_alloc_bytes(cldev->memory, size_data,
1170
589k
                                       "clist_write_color_usage_array");
1171
589k
    if (color_usage_array == NULL)
1172
0
        return gs_rethrow(-1, "insufficient memory for color_usage_array");
1173
17.3M
    for (i = 0; i < cldev->nbands; i++) {
1174
16.7M
        memcpy(&(color_usage_array[i]), &(cldev->states[i].color_usage), sizeof(gx_color_usage_t));
1175
16.7M
    }
1176
    /* Now go ahead and save the table data */
1177
589k
    cmd_write_pseudo_band(cldev, (unsigned char *)color_usage_array,
1178
589k
                          size_data, COLOR_USAGE_OFFSET);
1179
589k
    gs_free_object(cldev->memory, color_usage_array, "clist_write_color_usage_array");
1180
589k
    return(0);
1181
589k
}
1182
1183
/* This writes out the spot equivalent cmyk values for the page.
1184
   These are used for overprint simulation.  Read back by the
1185
   pdf14 device during the put_image operation */
1186
int
1187
clist_write_op_equiv_cmyk_colors(gx_device_clist_writer *cldev,
1188
    equivalent_cmyk_color_params *op_equiv_cmyk)
1189
0
{
1190
0
    return cmd_write_pseudo_band(cldev, (unsigned char *)op_equiv_cmyk,
1191
0
        sizeof(equivalent_cmyk_color_params), SPOT_EQUIV_COLORS);
1192
0
}
1193
1194
/* Compute color_usage over a Y range while writing clist */
1195
/* Sets color_usage fields and range_start.               */
1196
/* Returns range end (max dev->height)                    */
1197
/* NOT expected to be used. */
1198
int
1199
clist_writer_color_usage(gx_device_clist_writer *cldev, int y, int height,
1200
                     gx_color_usage_t *color_usage, int *range_start)
1201
0
{
1202
0
        gx_color_usage_bits or = 0;
1203
0
        bool slow_rop = false;
1204
0
        int i, band_height = cldev->page_info.band_params.BandHeight;
1205
0
        int start = y / band_height, end = (y + height) / band_height;
1206
1207
0
        for (i = start; i < end; ++i) {
1208
0
            or |= cldev->states[i].color_usage.or;
1209
0
            slow_rop |= cldev->states[i].color_usage.slow_rop;
1210
0
        }
1211
0
        color_usage->or = or;
1212
0
        color_usage->slow_rop = slow_rop;
1213
0
        *range_start = start * band_height;
1214
0
        return min(end * band_height, cldev->height) - *range_start;
1215
0
}
1216
1217
int
1218
clist_writer_push_no_cropping(gx_device_clist_writer *cdev)
1219
43.2k
{
1220
43.2k
    clist_writer_cropping_buffer_t *buf = gs_alloc_struct(cdev->memory,
1221
43.2k
                clist_writer_cropping_buffer_t,
1222
43.2k
                &st_clist_writer_cropping_buffer, "clist_writer_transparency_push");
1223
1224
43.2k
    if (buf == NULL)
1225
0
        return_error(gs_error_VMerror);
1226
43.2k
    if_debug4m('v', cdev->memory, "[v]push cropping[%d], min=%d, max=%d, buf="PRI_INTPTR"\n",
1227
43.2k
               cdev->cropping_level, cdev->cropping_min, cdev->cropping_max, (intptr_t)buf);
1228
43.2k
    buf->next = cdev->cropping_stack;
1229
43.2k
    cdev->cropping_stack = buf;
1230
43.2k
    buf->cropping_min = cdev->cropping_min;
1231
43.2k
    buf->cropping_max = cdev->cropping_max;
1232
43.2k
    buf->mask_id = cdev->mask_id;
1233
43.2k
    buf->temp_mask_id = cdev->temp_mask_id;
1234
43.2k
    cdev->cropping_level++;
1235
43.2k
    return 0;
1236
43.2k
}
1237
1238
int
1239
clist_writer_push_cropping(gx_device_clist_writer *cdev, int ry, int rheight)
1240
43.2k
{
1241
43.2k
    int code = clist_writer_push_no_cropping(cdev);
1242
1243
43.2k
    if (code < 0)
1244
0
        return 0;
1245
43.2k
    cdev->cropping_min = max(cdev->cropping_min, ry);
1246
43.2k
    cdev->cropping_max = min(cdev->cropping_max, ry + rheight);
1247
43.2k
    return 0;
1248
43.2k
}
1249
1250
int
1251
clist_writer_pop_cropping(gx_device_clist_writer *cdev)
1252
43.2k
{
1253
43.2k
    clist_writer_cropping_buffer_t *buf = cdev->cropping_stack;
1254
1255
43.2k
    if (buf == NULL)
1256
0
        return_error(gs_error_unregistered); /*Must not happen. */
1257
43.2k
    cdev->cropping_min = buf->cropping_min;
1258
43.2k
    cdev->cropping_max = buf->cropping_max;
1259
43.2k
    cdev->mask_id = buf->mask_id;
1260
43.2k
    cdev->temp_mask_id = buf->temp_mask_id;
1261
43.2k
    cdev->cropping_stack = buf->next;
1262
43.2k
    cdev->cropping_level--;
1263
43.2k
    if_debug4m('v', cdev->memory, "[v]pop cropping[%d] min=%d, max=%d, buf="PRI_INTPTR"\n",
1264
43.2k
               cdev->cropping_level, cdev->cropping_min, cdev->cropping_max, (intptr_t)buf);
1265
43.2k
    gs_free_object(cdev->memory, buf, "clist_writer_transparency_pop");
1266
43.2k
    return 0;
1267
43.2k
}
1268
1269
int
1270
clist_writer_check_empty_cropping_stack(gx_device_clist_writer *cdev)
1271
9.52k
{
1272
9.52k
    if (cdev->cropping_stack != NULL) {
1273
0
        if_debug1m('v', cdev->memory, "[v]Error: left %d cropping(s)\n", cdev->cropping_level);
1274
0
        return_error(gs_error_unregistered); /* Must not happen */
1275
0
    }
1276
9.52k
    return 0;
1277
9.52k
}
1278
1279
/* Retrieve total size for cfile and bfile. */
1280
int clist_data_size(const gx_device_clist *cdev, int select)
1281
525k
{
1282
525k
    const gx_band_page_info_t *pinfo = &cdev->common.page_info;
1283
525k
    clist_file_ptr pfile = (!select ? pinfo->bfile : pinfo->cfile);
1284
525k
    const char *fname = (!select ? pinfo->bfname : pinfo->cfname);
1285
525k
    int code, size;
1286
1287
525k
    code = pinfo->io_procs->fseek(pfile, 0, SEEK_END, fname);
1288
525k
    if (code < 0)
1289
0
        return_error(gs_error_unregistered); /* Must not happen. */
1290
525k
    code = pinfo->io_procs->ftell(pfile);
1291
525k
    if (code < 0)
1292
0
        return_error(gs_error_unregistered); /* Must not happen. */
1293
525k
    size = code;
1294
525k
    return size;
1295
525k
}
1296
1297
/* Get command list data. */
1298
int
1299
clist_get_data(const gx_device_clist *cdev, int select, int64_t offset, byte *buf, int length)
1300
259k
{
1301
259k
    const gx_band_page_info_t *pinfo = &cdev->common.page_info;
1302
259k
    clist_file_ptr pfile = (!select ? pinfo->bfile : pinfo->cfile);
1303
259k
    const char *fname = (!select ? pinfo->bfname : pinfo->cfname);
1304
259k
    int code;
1305
1306
259k
    code = pinfo->io_procs->fseek(pfile, offset, SEEK_SET, fname);
1307
259k
    if (code < 0)
1308
0
        return_error(gs_error_unregistered); /* Must not happen. */
1309
    /* This assumes that fread_chars doesn't return prematurely
1310
       when the buffer is not fully filled and the end of stream is not reached. */
1311
259k
    return pinfo->io_procs->fread_chars(buf, length, pfile);
1312
259k
}
1313
1314
/* Put command list data. */
1315
int
1316
clist_put_data(const gx_device_clist *cdev, int select, int64_t offset, const byte *buf, int length)
1317
204k
{
1318
204k
    const gx_band_page_info_t *pinfo = &cdev->common.page_info;
1319
204k
    clist_file_ptr pfile = (!select ? pinfo->bfile : pinfo->cfile);
1320
204k
    int64_t code;
1321
1322
204k
    code = pinfo->io_procs->ftell(pfile);
1323
204k
    if (code < 0)
1324
0
        return_error(gs_error_unregistered); /* Must not happen. */
1325
204k
    if (code != offset) {
1326
        /* Assuming a consecutive writing only. */
1327
0
        return_error(gs_error_unregistered); /* Must not happen. */
1328
0
    }
1329
    /* This assumes that fwrite_chars doesn't return prematurely
1330
       when the buffer is not fully written, except with an error. */
1331
204k
    return pinfo->io_procs->fwrite_chars(buf, length, pfile);
1332
204k
}
1333
1334
gx_device_clist *
1335
clist_make_accum_device(gs_memory_t *mem, gx_device *target, const char *dname, void *base, int space,
1336
                        gx_device_buf_procs_t *buf_procs, gx_band_params_t *band_params,
1337
                        bool use_memory_clist, bool uses_transparency,
1338
                        gs_pattern1_instance_t *pinst)
1339
106k
{
1340
106k
        gx_device_clist *cdev = gs_alloc_struct(mem->stable_memory, gx_device_clist,
1341
106k
                        &st_device_clist, "clist_make_accum_device");
1342
106k
        gx_device_clist_writer *cwdev = (gx_device_clist_writer *)cdev;
1343
1344
106k
        if (cdev == 0)
1345
0
            return 0;
1346
106k
        memset(cdev, 0, sizeof(*cdev));
1347
106k
        cwdev->params_size = sizeof(gx_device_clist);
1348
106k
        cwdev->initialize_device_procs = clist_initialize_device_procs;
1349
106k
        cwdev->dname = dname;
1350
106k
        cwdev->memory = mem->stable_memory;
1351
106k
        cwdev->stype = &st_device_clist;
1352
106k
        cwdev->stype_is_dynamic = false;
1353
106k
        rc_init(cwdev, mem->stable_memory, 1);
1354
106k
        cwdev->retained = true;
1355
106k
        cwdev->is_open = false;
1356
106k
        cwdev->color_info = target->color_info;
1357
106k
        cwdev->pinst = pinst;
1358
106k
        cwdev->cached_colors = target->cached_colors;
1359
106k
        if (pinst != NULL) {
1360
106k
            cwdev->width = pinst->size.x;
1361
106k
            cwdev->height = pinst->size.y;
1362
106k
            cwdev->band_params.BandHeight = pinst->size.y;
1363
106k
        } else {
1364
0
            cwdev->width = target->width;
1365
0
            cwdev->height = target->height;
1366
0
        }
1367
106k
        cwdev->LeadingEdge = target->LeadingEdge;
1368
106k
        cwdev->num_planar_planes = target->num_planar_planes;
1369
106k
        cwdev->HWResolution[0] = target->HWResolution[0];
1370
106k
        cwdev->HWResolution[1] = target->HWResolution[1];
1371
106k
        cwdev->icc_cache_cl = NULL;
1372
106k
        cwdev->icc_table = NULL;
1373
106k
        cwdev->UseCIEColor = target->UseCIEColor;
1374
106k
        cwdev->LockSafetyParams = true;
1375
106k
        cwdev->initialize_device_procs((gx_device *)cwdev);
1376
106k
        gx_device_fill_in_procs((gx_device *)cwdev);
1377
106k
        gx_device_copy_color_params((gx_device *)cwdev, target);
1378
106k
        rc_assign(cwdev->target, target, "clist_make_accum_device");
1379
106k
        clist_init_io_procs(cdev, use_memory_clist);
1380
106k
        cwdev->data = base;
1381
106k
        cwdev->data_size = space;
1382
106k
        memcpy (&(cwdev->buf_procs), buf_procs, sizeof(gx_device_buf_procs_t));
1383
106k
        cwdev->page_uses_transparency = uses_transparency;
1384
106k
        cwdev->band_params.BandWidth = cwdev->width;
1385
106k
        cwdev->band_params.BandBufferSpace = 0;
1386
106k
        cwdev->do_not_open_or_close_bandfiles = false;
1387
106k
        cwdev->bandlist_memory = mem->non_gc_memory;
1388
106k
        set_dev_proc(cwdev, get_clipping_box, gx_default_get_clipping_box);
1389
106k
        set_dev_proc(cwdev, get_profile, gx_forward_get_profile);
1390
106k
        set_dev_proc(cwdev, set_graphics_type_tag, gx_forward_set_graphics_type_tag);
1391
106k
        cwdev->graphics_type_tag = target->graphics_type_tag;   /* initialize to same as target */
1392
106k
        cwdev->interpolate_control = target->interpolate_control; /* initialize to same as target */
1393
106k
        cwdev->non_strict_bounds = target->non_strict_bounds;         /* initialize to same as target */
1394
1395
        /* to be set by caller: cwdev->finalize = finalize; */
1396
1397
        /* Fields left zeroed :
1398
            int   max_fill_band;
1399
            dev_proc_dev_spec_op(orig_spec_op);
1400
            float MediaSize[2];
1401
            float ImagingBBox[4];
1402
            bool  ImagingBBox_set;
1403
            float Margins[2];
1404
            float HWMargins[4];
1405
            long  PageCount;
1406
            long  ShowpageCount;
1407
            int   NumCopies;
1408
            bool  NumCopies_set;
1409
            bool  IgnoreNumCopies;
1410
            int   disable_mask;
1411
            gx_page_device_procs page_procs;
1412
1413
        */
1414
106k
        return cdev;
1415
106k
}
1416
1417
/* GC information */
1418
#define DEVICE_MUTATED_TO_CLIST(pdev) \
1419
7.69M
    (((gx_device_clist_mutatable *)(pdev))->buffer_space != 0)
1420
1421
static
1422
7.54M
ENUM_PTRS_WITH(device_clist_mutatable_enum_ptrs, gx_device_clist_mutatable *pdev)
1423
7.54M
    if (DEVICE_MUTATED_TO_CLIST(pdev))
1424
7.53M
        ENUM_PREFIX(st_device_clist, 0);
1425
5.15k
    else
1426
5.15k
        ENUM_PREFIX(st_device_forward, 0);
1427
0
    break;
1428
7.54M
ENUM_PTRS_END
1429
static
1430
156k
RELOC_PTRS_WITH(device_clist_mutatable_reloc_ptrs, gx_device_clist_mutatable *pdev)
1431
156k
{
1432
156k
    if (DEVICE_MUTATED_TO_CLIST(pdev))
1433
156k
        RELOC_PREFIX(st_device_clist);
1434
2.57k
    else
1435
156k
        RELOC_PREFIX(st_device_forward);
1436
156k
} RELOC_PTRS_END
1437
public_st_device_clist_mutatable();
1438
1439
int
1440
clist_mutate_to_clist(gx_device_clist_mutatable  *pdev,
1441
                      gs_memory_t                *buffer_memory,
1442
                      byte                      **the_memory,
1443
                const gdev_space_params          *space_params,
1444
                      bool                        bufferSpace_is_exact,
1445
                const gx_device_buf_procs_t      *buf_procs,
1446
                      dev_proc_dev_spec_op(dev_spec_op),
1447
                      size_t                      min_buffer_space)
1448
184k
{
1449
184k
    gx_device *target = (gx_device *)pdev;
1450
184k
    size_t space;
1451
184k
    int code;
1452
184k
    gx_device_clist *const pclist_dev = (gx_device_clist *)pdev;
1453
184k
    gx_device_clist_common * const pcldev = &pclist_dev->common;
1454
184k
    bool reallocate = the_memory != NULL && *the_memory != NULL;
1455
184k
    byte *base;
1456
184k
    bool save_is_open = pdev->is_open;  /* Save around temporary failure in open_c loop */
1457
1458
184k
    while (target->parent != NULL) {
1459
0
        target = target->parent;
1460
0
        gx_update_from_subclass(target);
1461
0
    }
1462
1463
    /* Try to allocate based simply on param-requested buffer size */
1464
#ifdef DEBUGGING_HACKS
1465
#define BACKTRACE(first_arg)\
1466
  BEGIN\
1467
    ulong *fp_ = (ulong *)&first_arg - 2;\
1468
    for (; fp_ && (fp_[1] & 0xff000000) == 0x08000000; fp_ = (ulong *)*fp_)\
1469
        dmprintf2(buffer_memory, "  fp="PRI_INTPTR" ip=0x%lx\n", (intptr_t)fp_, fp_[1]);\
1470
  END
1471
dmputs(buffer_memory, "alloc buffer:\n");
1472
BACKTRACE(pdev);
1473
#endif /*DEBUGGING_HACKS*/
1474
184k
    for ( space = space_params->BufferSpace; ; ) {
1475
184k
        base = (reallocate ?
1476
94.3k
                (byte *)gs_resize_object(buffer_memory, *the_memory, space,
1477
184k
                                         "cmd list buffer") :
1478
184k
                gs_alloc_bytes(buffer_memory, space,
1479
184k
                               "cmd list buffer"));
1480
184k
        if (base != NULL)
1481
184k
            break; /* Allocation worked! Stop trying. */
1482
0
        if (bufferSpace_is_exact) {
1483
            /* We wanted a specific size. Accept no substitutes. */
1484
0
            break;
1485
0
        }
1486
        /* Let's try again for half the size. */
1487
0
        if (space == min_buffer_space)
1488
0
            break; /* We already failed at the minimum size. */
1489
0
        space >>= 1;
1490
0
        if (space < min_buffer_space)
1491
0
            space = min_buffer_space;
1492
0
    }
1493
184k
    if (base == NULL)
1494
0
        return_error(gs_error_VMerror);
1495
1496
    /* Try opening the command list, to see if we allocated */
1497
    /* enough buffer space. */
1498
217k
open_c:
1499
217k
    if (the_memory)
1500
217k
        *the_memory = base;
1501
217k
    pdev->buf = base;
1502
217k
    pdev->buffer_space = space;
1503
217k
    pclist_dev->common.orig_spec_op = dev_spec_op;
1504
217k
    clist_init_io_procs(pclist_dev, pdev->BLS_force_memory);
1505
217k
    clist_init_params(pclist_dev, base, space, target,
1506
217k
                      *buf_procs,
1507
217k
                      space_params->band,
1508
217k
                      false, /* do_not_open_or_close_bandfiles */
1509
217k
                      (pdev->bandlist_memory == 0 ? pdev->memory->non_gc_memory:
1510
217k
                       pdev->bandlist_memory),
1511
217k
                      pdev->clist_disable_mask,
1512
217k
                      pdev->page_uses_transparency,
1513
217k
                      pdev->page_uses_overprint);
1514
217k
    code = clist_open( (gx_device *)pcldev );
1515
217k
    if (code < 0) {
1516
        /* If there wasn't enough room, and we haven't */
1517
        /* already shrunk the buffer, try enlarging it. */
1518
32.8k
        if ( code == gs_error_rangecheck &&
1519
32.8k
             space >= space_params->BufferSpace &&
1520
32.8k
             !bufferSpace_is_exact
1521
32.8k
             ) {
1522
32.8k
            space += space / 8;
1523
32.8k
            if (reallocate) {
1524
27.9k
                base = gs_resize_object(buffer_memory,
1525
27.9k
                                        *the_memory, space,
1526
27.9k
                                        "cmd list buf(retry open)");
1527
27.9k
            } else {
1528
4.87k
                gs_free_object(buffer_memory, base,
1529
4.87k
                               "cmd list buf(retry open)");
1530
4.87k
                base = gs_alloc_bytes(buffer_memory, space,
1531
4.87k
                                      "cmd list buf(retry open)");
1532
4.87k
                if (the_memory != NULL)
1533
4.87k
                    *the_memory = base;
1534
4.87k
            }
1535
32.8k
            if (base != NULL) {
1536
32.8k
                pdev->is_open = save_is_open; /* allow for success when we loop */
1537
32.8k
                goto open_c;
1538
32.8k
            }
1539
32.8k
        }
1540
        /* Failure. */
1541
0
        if (!reallocate) {
1542
0
            gs_free_object(buffer_memory, base, "cmd list buf");
1543
0
            pdev->buffer_space = 0;
1544
0
            if (the_memory != NULL)
1545
0
                *the_memory = NULL;
1546
0
            pdev->buf = NULL;
1547
0
        }
1548
0
    }
1549
184k
    if (code < 0)
1550
0
        pdev->is_open = save_is_open;
1551
184k
    return code;
1552
217k
}