Coverage Report

Created: 2026-05-30 06:16

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libzip/lib/zip_buffer.c
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Count
Source
1
/*
2
 zip_buffer.c -- bounds checked access to memory buffer
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 Copyright (C) 2014-2025 Dieter Baron and Thomas Klausner
4
5
 This file is part of libzip, a library to manipulate ZIP archives.
6
 The authors can be contacted at <info@libzip.org>
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8
 Redistribution and use in source and binary forms, with or without
9
 modification, are permitted provided that the following conditions
10
 are met:
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 1. Redistributions of source code must retain the above copyright
12
 notice, this list of conditions and the following disclaimer.
13
 2. Redistributions in binary form must reproduce the above copyright
14
 notice, this list of conditions and the following disclaimer in
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 the documentation and/or other materials provided with the
16
 distribution.
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 3. The names of the authors may not be used to endorse or promote
18
 products derived from this software without specific prior
19
 written permission.
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 THIS SOFTWARE IS PROVIDED BY THE AUTHORS ``AS IS'' AND ANY EXPRESS
22
 OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
23
 WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
24
 ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHORS BE LIABLE FOR ANY
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 DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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 DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE
27
 GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
28
 INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER
29
 IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
30
 OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN
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 IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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 */
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#include "zipint.h"
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#include <stdlib.h>
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#include <string.h>
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39
150k
zip_uint8_t *_zip_buffer_data(zip_buffer_t *buffer) {
40
150k
    return buffer->data;
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150k
}
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43
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155k
void _zip_buffer_free(zip_buffer_t *buffer) {
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155k
    if (buffer == NULL) {
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148
        return;
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148
    }
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49
155k
    if (buffer->free_data) {
50
56.2k
        free(buffer->data);
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56.2k
    }
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53
155k
    free(buffer);
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155k
}
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56
57
34.0k
bool _zip_buffer_eof(zip_buffer_t *buffer) {
58
34.0k
    return buffer->ok && buffer->offset == buffer->size;
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34.0k
}
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61
62
2.06M
zip_uint8_t *_zip_buffer_get(zip_buffer_t *buffer, zip_uint64_t length) {
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2.06M
    zip_uint8_t *data;
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65
2.06M
    data = _zip_buffer_peek(buffer, length);
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2.06M
    if (data != NULL) {
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2.06M
        buffer->offset += length;
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2.06M
    }
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71
2.06M
    return data;
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2.06M
}
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1.24M
zip_uint16_t _zip_buffer_get_16(zip_buffer_t *buffer) {
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1.24M
    zip_uint8_t *data = _zip_buffer_get(buffer, 2);
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78
1.24M
    if (data == NULL) {
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0
        return 0;
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0
    }
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82
1.24M
    return (zip_uint16_t)(data[0] + (data[1] << 8));
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1.24M
}
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85
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531k
zip_uint32_t _zip_buffer_get_32(zip_buffer_t *buffer) {
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531k
    zip_uint8_t *data = _zip_buffer_get(buffer, 4);
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531k
    if (data == NULL) {
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377
        return 0;
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377
    }
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531k
    return ((((((zip_uint32_t)data[3] << 8) + data[2]) << 8) + data[1]) << 8) + data[0];
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531k
}
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96
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22.8k
zip_uint64_t _zip_buffer_get_64(zip_buffer_t *buffer) {
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22.8k
    zip_uint8_t *data = _zip_buffer_get(buffer, 8);
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100
22.8k
    if (data == NULL) {
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114
        return 0;
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114
    }
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22.7k
    return ((zip_uint64_t)data[7] << 56) + ((zip_uint64_t)data[6] << 48) + ((zip_uint64_t)data[5] << 40) + ((zip_uint64_t)data[4] << 32) + ((zip_uint64_t)data[3] << 24) + ((zip_uint64_t)data[2] << 16) + ((zip_uint64_t)data[1] << 8) + (zip_uint64_t)data[0];
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22.8k
}
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9.84k
zip_uint8_t _zip_buffer_get_8(zip_buffer_t *buffer) {
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9.84k
    zip_uint8_t *data = _zip_buffer_get(buffer, 1);
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111
9.84k
    if (data == NULL) {
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0
        return 0;
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0
    }
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9.84k
    return data[0];
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9.84k
}
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192k
zip_uint64_t _zip_buffer_left(zip_buffer_t *buffer) {
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192k
    return buffer->ok ? buffer->size - buffer->offset : 0;
121
192k
}
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123
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0
zip_uint64_t _zip_buffer_read(zip_buffer_t *buffer, zip_uint8_t *data, zip_uint64_t length) {
125
0
    zip_uint64_t copied;
126
127
0
    if (_zip_buffer_left(buffer) < length) {
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0
        length = _zip_buffer_left(buffer);
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0
    }
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0
    copied = 0;
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0
    while (copied < length) {
133
0
        size_t n = ZIP_MIN(length - copied, SIZE_MAX);
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0
        (void)memcpy_s(data + copied, n, _zip_buffer_get(buffer, n), n);
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0
        copied += n;
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0
    }
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0
    return copied;
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0
}
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141
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155k
zip_buffer_t *_zip_buffer_new(zip_uint8_t *data, zip_uint64_t size) {
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155k
    bool free_data = (data == NULL);
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155k
    zip_buffer_t *buffer;
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146
#if ZIP_UINT64_MAX > SIZE_MAX
147
    if (size > SIZE_MAX) {
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        return NULL;
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    }
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#endif
151
152
155k
    if (data == NULL) {
153
56.2k
        if ((data = (zip_uint8_t *)malloc((size_t)size)) == NULL) {
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0
            return NULL;
155
0
        }
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56.2k
    }
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158
155k
    if ((buffer = (zip_buffer_t *)malloc(sizeof(*buffer))) == NULL) {
159
0
        if (free_data) {
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0
            free(data);
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0
        }
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0
        return NULL;
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0
    }
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165
155k
    buffer->ok = true;
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155k
    buffer->data = data;
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155k
    buffer->size = size;
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155k
    buffer->offset = 0;
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155k
    buffer->free_data = free_data;
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155k
    return buffer;
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155k
}
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124k
zip_buffer_t *_zip_buffer_new_from_source(zip_source_t *src, zip_uint64_t size, zip_uint8_t *buf, zip_error_t *error) {
176
124k
    zip_buffer_t *buffer;
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124k
    if ((buffer = _zip_buffer_new(buf, size)) == NULL) {
179
0
        zip_error_set(error, ZIP_ER_MEMORY, 0);
180
0
        return NULL;
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0
    }
182
183
124k
    if (_zip_read(src, buffer->data, size, error) < 0) {
184
321
        _zip_buffer_free(buffer);
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321
        return NULL;
186
321
    }
187
188
123k
    return buffer;
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124k
}
190
191
192
88.6k
zip_uint64_t _zip_buffer_offset(zip_buffer_t *buffer) {
193
88.6k
    return buffer->ok ? buffer->offset : 0;
194
88.6k
}
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196
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244k
bool _zip_buffer_ok(zip_buffer_t *buffer) {
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244k
    return buffer->ok;
199
244k
}
200
201
202
2.06M
zip_uint8_t *_zip_buffer_peek(zip_buffer_t *buffer, zip_uint64_t length) {
203
2.06M
    zip_uint8_t *data;
204
205
2.06M
    if (!buffer->ok || buffer->offset + length < length || buffer->offset + length > buffer->size) {
206
814
        buffer->ok = false;
207
814
        return NULL;
208
814
    }
209
210
2.06M
    data = buffer->data + buffer->offset;
211
2.06M
    return data;
212
2.06M
}
213
214
0
int _zip_buffer_put(zip_buffer_t *buffer, const void *src, size_t length) {
215
0
    zip_uint8_t *dst = _zip_buffer_get(buffer, length);
216
217
0
    if (dst == NULL) {
218
0
        return -1;
219
0
    }
220
221
0
    (void)memcpy_s(dst, length, src, length);
222
0
    return 0;
223
0
}
224
225
226
0
int _zip_buffer_put_16(zip_buffer_t *buffer, zip_uint16_t i) {
227
0
    zip_uint8_t *data = _zip_buffer_get(buffer, 2);
228
229
0
    if (data == NULL) {
230
0
        return -1;
231
0
    }
232
233
0
    data[0] = (zip_uint8_t)(i & 0xff);
234
0
    data[1] = (zip_uint8_t)((i >> 8) & 0xff);
235
236
0
    return 0;
237
0
}
238
239
240
0
int _zip_buffer_put_32(zip_buffer_t *buffer, zip_uint32_t i) {
241
0
    zip_uint8_t *data = _zip_buffer_get(buffer, 4);
242
243
0
    if (data == NULL) {
244
0
        return -1;
245
0
    }
246
247
0
    data[0] = (zip_uint8_t)(i & 0xff);
248
0
    data[1] = (zip_uint8_t)((i >> 8) & 0xff);
249
0
    data[2] = (zip_uint8_t)((i >> 16) & 0xff);
250
0
    data[3] = (zip_uint8_t)((i >> 24) & 0xff);
251
252
0
    return 0;
253
0
}
254
255
256
424
int _zip_buffer_put_64(zip_buffer_t *buffer, zip_uint64_t i) {
257
424
    zip_uint8_t *data = _zip_buffer_get(buffer, 8);
258
259
424
    if (data == NULL) {
260
0
        return -1;
261
0
    }
262
263
424
    data[0] = (zip_uint8_t)(i & 0xff);
264
424
    data[1] = (zip_uint8_t)((i >> 8) & 0xff);
265
424
    data[2] = (zip_uint8_t)((i >> 16) & 0xff);
266
424
    data[3] = (zip_uint8_t)((i >> 24) & 0xff);
267
424
    data[4] = (zip_uint8_t)((i >> 32) & 0xff);
268
424
    data[5] = (zip_uint8_t)((i >> 40) & 0xff);
269
424
    data[6] = (zip_uint8_t)((i >> 48) & 0xff);
270
424
    data[7] = (zip_uint8_t)((i >> 56) & 0xff);
271
272
424
    return 0;
273
424
}
274
275
276
0
int _zip_buffer_put_8(zip_buffer_t *buffer, zip_uint8_t i) {
277
0
    zip_uint8_t *data = _zip_buffer_get(buffer, 1);
278
279
0
    if (data == NULL) {
280
0
        return -1;
281
0
    }
282
283
0
    data[0] = i;
284
285
0
    return 0;
286
0
}
287
288
289
132k
int _zip_buffer_set_offset(zip_buffer_t *buffer, zip_uint64_t offset) {
290
132k
    if (offset > buffer->size) {
291
20.1k
        buffer->ok = false;
292
20.1k
        return -1;
293
20.1k
    }
294
295
112k
    buffer->ok = true;
296
112k
    buffer->offset = offset;
297
298
112k
    return 0;
299
132k
}
300
301
302
38.5k
int _zip_buffer_skip(zip_buffer_t *buffer, zip_uint64_t length) {
303
38.5k
    zip_uint64_t offset = buffer->offset + length;
304
305
38.5k
    if (offset < buffer->offset) {
306
0
        buffer->ok = false;
307
0
        return -1;
308
0
    }
309
38.5k
    return _zip_buffer_set_offset(buffer, offset);
310
38.5k
}
311
312
11.0k
zip_uint64_t _zip_buffer_size(zip_buffer_t *buffer) {
313
11.0k
    return buffer->size;
314
11.0k
}