Coverage Report

Created: 2026-09-14 07:34

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/ghostpdl/psi/ibnum.c
Line
Count
Source
1
/* Copyright (C) 2001-2023 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
/* Level 2 encoded number reading utilities for Ghostscript */
18
#include "math_.h"
19
#include "memory_.h"
20
#include "ghost.h"
21
#include "opcheck.h"
22
#include "ierrors.h"
23
#include "stream.h"
24
#include "ibnum.h"
25
#include "imemory.h"    /* for iutil.h */
26
#include "iutil.h"
27
28
/* Define the number of bytes for a given format of encoded number. */
29
const byte enc_num_bytes[] = {
30
    enc_num_bytes_values
31
};
32
33
/* ------ Encoded number reading ------ */
34
35
/* Set up to read from an encoded number array/string. */
36
/* Return <0 for error, or a number format. */
37
int
38
num_array_format(const ref * op)
39
20
{
40
20
    int format;
41
42
20
    switch (r_type(op)) {
43
7
        case t_string:
44
7
            {
45
                /* Check that this is a legitimate encoded number string. */
46
7
                const byte *bp = op->value.bytes;
47
48
7
                if (r_size(op) < 4 || bp[0] != bt_num_array_value)
49
7
                    return_error(gs_error_typecheck);
50
0
                format = bp[1];
51
0
                if (!num_is_valid(format) ||
52
0
                    sdecodeshort(bp + 2, format) !=
53
0
                    (r_size(op) - 4) / encoded_number_bytes(format)
54
0
                    )
55
0
                    return_error(gs_error_rangecheck);
56
0
            }
57
0
            break;
58
10
        case t_array:
59
10
        case t_mixedarray:
60
10
        case t_shortarray:
61
10
            format = num_array;
62
10
            break;
63
3
        default:
64
3
            return_error(gs_error_typecheck);
65
20
    }
66
10
    check_read(*op);
67
10
    return format;
68
10
}
69
70
/* Get the number of elements in an encoded number array/string. */
71
uint
72
num_array_size(const ref * op, int format)
73
10
{
74
10
    return (format == num_array ? r_size(op) :
75
10
            (r_size(op) - 4) / encoded_number_bytes(format));
76
10
}
77
78
/* Get an encoded number from an array/string according to the given format. */
79
/* Put the value in np->value.{intval,realval}. */
80
/* Return t_int if integer, t_real if real, t_null if end of stream, */
81
/* or an error if the format is invalid. */
82
int
83
num_array_get(const gs_memory_t *mem, const ref * op, int format, uint index, ref * np)
84
0
{
85
0
    if (format == num_array) {
86
0
        int code = array_get(mem, op, (long)index, np);
87
88
0
        if (code < 0)
89
0
            return t_null;
90
0
        switch (r_type(np)) {
91
0
            case t_integer:
92
0
                return t_integer;
93
0
            case t_real:
94
0
                return t_real;
95
0
            default:
96
0
                return_error(gs_error_typecheck);
97
0
        }
98
0
    } else {
99
0
        uint nbytes = encoded_number_bytes(format);
100
101
0
        if (index >= (r_size(op) - 4) / nbytes)
102
0
            return t_null;
103
0
        return sdecode_number(op->value.bytes + 4 + index * nbytes,
104
0
                              format, np);
105
0
    }
106
0
}
107
108
/* Internal routine to decode a number in a given format. */
109
/* Same returns as sget_encoded_number. */
110
static const double binary_scale[32] = {
111
#define EXPN2(n) (0.5 / (1L << (n-1)))
112
    1.0, EXPN2(1), EXPN2(2), EXPN2(3),
113
    EXPN2(4), EXPN2(5), EXPN2(6), EXPN2(7),
114
    EXPN2(8), EXPN2(9), EXPN2(10), EXPN2(11),
115
    EXPN2(12), EXPN2(13), EXPN2(14), EXPN2(15),
116
    EXPN2(16), EXPN2(17), EXPN2(18), EXPN2(19),
117
    EXPN2(20), EXPN2(21), EXPN2(22), EXPN2(23),
118
    EXPN2(24), EXPN2(25), EXPN2(26), EXPN2(27),
119
    EXPN2(28), EXPN2(29), EXPN2(30), EXPN2(31)
120
#undef EXPN2
121
};
122
int
123
sdecode_number(const byte * str, int format, ref * np)
124
2.39M
{
125
2.39M
    switch (format & 0x170) {
126
509k
        case num_int32:
127
1.61M
        case num_int32 + 16:
128
1.61M
            if ((format & 31) == 0) {
129
148k
                np->value.intval = sdecodeint32(str, format);
130
148k
                return t_integer;
131
1.46M
            } else {
132
1.46M
                np->value.realval =
133
1.46M
                    (double)sdecodeint32(str, format) *
134
1.46M
                    binary_scale[format & 31];
135
1.46M
                return t_real;
136
1.46M
            }
137
204k
        case num_int16:
138
204k
            if ((format & 15) == 0) {
139
16.7k
                np->value.intval = sdecodeshort(str, format);
140
16.7k
                return t_integer;
141
187k
            } else {
142
187k
                np->value.realval =
143
187k
                    sdecodeshort(str, format) *
144
187k
                    binary_scale[format & 15];
145
187k
                return t_real;
146
187k
            }
147
573k
        case num_float:
148
573k
            {
149
573k
                float fval;
150
573k
                int code = sdecode_float(str, format, &fval);
151
152
573k
                if (code < 0)
153
26
                    return code;
154
573k
                np->value.realval = fval;
155
573k
                return t_real;
156
573k
            }
157
0
        default:
158
0
            return_error(gs_error_syntaxerror); /* invalid format?? */
159
2.39M
    }
160
2.39M
}
161
162
/* ------ Decode number ------ */
163
164
/* Decode encoded numbers from a string according to format. */
165
166
/* Decode a (16-bit, signed or unsigned) short. */
167
uint
168
sdecodeushort(const byte * p, int format)
169
259k
{
170
259k
    int a = p[0], b = p[1];
171
172
259k
    return (num_is_lsb(format) ? (b << 8) + a : (a << 8) + b);
173
259k
}
174
int
175
sdecodeshort(const byte * p, int format)
176
204k
{
177
204k
    int v = (int)sdecodeushort(p, format);
178
179
204k
    return (v & 0x7fff) - (v & 0x8000);
180
204k
}
181
182
/* Decode a (32-bit, signed) long. */
183
int
184
sdecodeint32(const byte * p, int format)
185
1.64M
{
186
1.64M
    int a = p[0], b = p[1], c = p[2], d = p[3];
187
1.64M
    int v = (num_is_lsb(format) ?
188
929k
              ((int)d << 24) + ((int)c << 16) + (b << 8) + a :
189
1.64M
              ((int)a << 24) + ((int)b << 16) + (c << 8) + d);
190
1.64M
    return v;
191
1.64M
}
192
193
/* Decode a 32-bit number. Return the resukt through a pointer */
194
/* to work around a gcc 4.2.1 bug on PowerPC, bug 689586 */
195
static void
196
sdecodebits32(const byte * p, int format, bits32 *v)
197
556k
{
198
556k
  int a = p[0], b = p[1], c = p[2], d = p[3];
199
556k
  *v = (num_is_lsb(format) ?
200
7.24k
            ((long)d << 24) + ((long)c << 16) + (b << 8) + a :
201
556k
            ((long)a << 24) + ((long)b << 16) + (c << 8) + d);
202
203
556k
}
204
205
/* Decode a float.  We assume that native floats occupy 32 bits. */
206
/* If the float is an IEEE NaN or Inf, return gs_error_undefinedresult. */
207
int
208
sdecode_float(const byte * p, int format, float *pfnum)
209
574k
{
210
574k
    bits32 lnum;
211
212
574k
    if ((format & ~(num_msb | num_lsb)) == num_float_native) {
213
        /*
214
         * Just read 4 bytes and interpret them as a float, ignoring
215
         * any indication of byte ordering.
216
         */
217
18.4k
        memcpy(pfnum, p, 4);
218
#if !ARCH_FLOATS_ARE_IEEE
219
        return 0;   /* no way to check for anomalies */
220
#endif
221
18.4k
        lnum = *(bits32 *)pfnum;
222
556k
    } else {
223
556k
        sdecodebits32(p, format, &lnum);
224
225
#if !ARCH_FLOATS_ARE_IEEE
226
        {
227
            /* We know IEEE floats take 32 bits. */
228
            /* Convert IEEE float to native float. */
229
            int sign_expt = lnum >> 23;
230
            int expt = sign_expt & 0xff;
231
            long mant = lnum & 0x7fffff;
232
            float fnum;
233
234
            if (expt == 0 && mant == 0)
235
                fnum = 0;
236
            else if (expt == 0xff)
237
                return_error(gs_error_undefinedresult); /* Inf or NaN */
238
            else {
239
                mant += 0x800000;
240
                fnum = (float)ldexp((float)mant, expt - 127 - 23);
241
            }
242
            if (sign_expt & 0x100)
243
                fnum = -fnum;
244
            *pfnum = fnum;
245
            return 0;   /* checked for Infs and NaNs above */
246
        }
247
#else
248
556k
        *pfnum = *(float *)&lnum;
249
556k
#endif
250
556k
    }
251
    /*
252
     * Unfortunately, there is no portable way for testing whether a float
253
     * is a NaN or Inf.  Do it "by hand" if the input representation is
254
     * IEEE (which is the case if control arrives here).
255
     */
256
574k
    if (!(~lnum & 0x7f800000))  /* i.e. exponent all 1's */
257
29
        return_error(gs_error_undefinedresult); /* Inf or NaN */
258
574k
    return 0;
259
574k
}