Coverage Report

Created: 2026-08-14 06:46

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libzip/lib/zip_buffer.c
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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
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 are met:
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 1. Redistributions of source code must retain the above copyright
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 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
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 products derived from this software without specific prior
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 written permission.
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 THIS SOFTWARE IS PROVIDED BY THE AUTHORS ``AS IS'' AND ANY EXPRESS
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 OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
23
 WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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 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
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 GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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 INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER
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 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
139k
zip_uint8_t *_zip_buffer_data(zip_buffer_t *buffer) {
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139k
    return buffer->data;
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139k
}
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43
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135k
void _zip_buffer_free(zip_buffer_t *buffer) {
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135k
    if (buffer == NULL) {
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171
        return;
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171
    }
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49
135k
    if (buffer->free_data) {
50
42.9k
        free(buffer->data);
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42.9k
    }
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135k
    free(buffer);
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135k
}
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56
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18.4k
bool _zip_buffer_eof(zip_buffer_t *buffer) {
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18.4k
    return buffer->ok && buffer->offset == buffer->size;
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18.4k
}
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61
62
1.96M
zip_uint8_t *_zip_buffer_get(zip_buffer_t *buffer, zip_uint64_t length) {
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1.96M
    zip_uint8_t *data;
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1.96M
    data = _zip_buffer_peek(buffer, length);
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1.96M
    if (data != NULL) {
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1.95M
        buffer->offset += length;
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1.95M
    }
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1.96M
    return data;
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1.96M
}
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1.17M
zip_uint16_t _zip_buffer_get_16(zip_buffer_t *buffer) {
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1.17M
    zip_uint8_t *data = _zip_buffer_get(buffer, 2);
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1.17M
    if (data == NULL) {
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0
        return 0;
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0
    }
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1.17M
    return (zip_uint16_t)(data[0] + (data[1] << 8));
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1.17M
}
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504k
zip_uint32_t _zip_buffer_get_32(zip_buffer_t *buffer) {
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504k
    zip_uint8_t *data = _zip_buffer_get(buffer, 4);
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504k
    if (data == NULL) {
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498
        return 0;
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498
    }
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503k
    return ((((((zip_uint32_t)data[3] << 8) + data[2]) << 8) + data[1]) << 8) + data[0];
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504k
}
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22.6k
zip_uint64_t _zip_buffer_get_64(zip_buffer_t *buffer) {
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22.6k
    zip_uint8_t *data = _zip_buffer_get(buffer, 8);
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22.6k
    if (data == NULL) {
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75
        return 0;
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75
    }
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22.6k
    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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22.6k
}
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9.58k
zip_uint8_t _zip_buffer_get_8(zip_buffer_t *buffer) {
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9.58k
    zip_uint8_t *data = _zip_buffer_get(buffer, 1);
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9.58k
    if (data == NULL) {
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0
        return 0;
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0
    }
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9.58k
    return data[0];
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9.58k
}
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118
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232k
zip_uint64_t _zip_buffer_left(zip_buffer_t *buffer) {
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232k
    return buffer->ok ? buffer->size - buffer->offset : 0;
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232k
}
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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) {
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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) {
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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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135k
zip_buffer_t *_zip_buffer_new(zip_uint8_t *data, zip_uint64_t size) {
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135k
    bool free_data = (data == NULL);
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135k
    zip_buffer_t *buffer;
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#if ZIP_UINT64_MAX > SIZE_MAX
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    if (size > SIZE_MAX) {
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        return NULL;
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    }
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#endif
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152
135k
    if (data == NULL) {
153
42.9k
        if ((data = (zip_uint8_t *)malloc((size_t)size)) == NULL) {
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0
            return NULL;
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0
        }
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42.9k
    }
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135k
    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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135k
    buffer->ok = true;
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135k
    buffer->data = data;
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135k
    buffer->size = size;
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135k
    buffer->offset = 0;
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135k
    buffer->free_data = free_data;
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135k
    return buffer;
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135k
}
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103k
zip_buffer_t *_zip_buffer_new_from_source(zip_source_t *src, zip_uint64_t size, zip_uint8_t *buf, zip_error_t *error) {
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103k
    zip_buffer_t *buffer;
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103k
    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
103k
    if (_zip_read(src, buffer->data, size, error) < 0) {
184
484
        _zip_buffer_free(buffer);
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484
        return NULL;
186
484
    }
187
188
103k
    return buffer;
189
103k
}
190
191
192
82.6k
zip_uint64_t _zip_buffer_offset(zip_buffer_t *buffer) {
193
82.6k
    return buffer->ok ? buffer->offset : 0;
194
82.6k
}
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196
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239k
bool _zip_buffer_ok(zip_buffer_t *buffer) {
198
239k
    return buffer->ok;
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239k
}
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201
202
1.98M
zip_uint8_t *_zip_buffer_peek(zip_buffer_t *buffer, zip_uint64_t length) {
203
1.98M
    zip_uint8_t *data;
204
205
1.98M
    if (!buffer->ok || buffer->offset + length < length || buffer->offset + length > buffer->size) {
206
1.02k
        buffer->ok = false;
207
1.02k
        return NULL;
208
1.02k
    }
209
210
1.98M
    data = buffer->data + buffer->offset;
211
1.98M
    return data;
212
1.98M
}
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;
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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
345
int _zip_buffer_put_64(zip_buffer_t *buffer, zip_uint64_t i) {
257
345
    zip_uint8_t *data = _zip_buffer_get(buffer, 8);
258
259
345
    if (data == NULL) {
260
0
        return -1;
261
0
    }
262
263
345
    data[0] = (zip_uint8_t)(i & 0xff);
264
345
    data[1] = (zip_uint8_t)((i >> 8) & 0xff);
265
345
    data[2] = (zip_uint8_t)((i >> 16) & 0xff);
266
345
    data[3] = (zip_uint8_t)((i >> 24) & 0xff);
267
345
    data[4] = (zip_uint8_t)((i >> 32) & 0xff);
268
345
    data[5] = (zip_uint8_t)((i >> 40) & 0xff);
269
345
    data[6] = (zip_uint8_t)((i >> 48) & 0xff);
270
345
    data[7] = (zip_uint8_t)((i >> 56) & 0xff);
271
272
345
    return 0;
273
345
}
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
134k
int _zip_buffer_set_offset(zip_buffer_t *buffer, zip_uint64_t offset) {
290
134k
    if (offset > buffer->size) {
291
18.7k
        buffer->ok = false;
292
18.7k
        return -1;
293
18.7k
    }
294
295
115k
    buffer->ok = true;
296
115k
    buffer->offset = offset;
297
298
115k
    return 0;
299
134k
}
300
301
302
46.7k
int _zip_buffer_skip(zip_buffer_t *buffer, zip_uint64_t length) {
303
46.7k
    zip_uint64_t offset = buffer->offset + length;
304
305
46.7k
    if (offset < buffer->offset) {
306
0
        buffer->ok = false;
307
0
        return -1;
308
0
    }
309
46.7k
    return _zip_buffer_set_offset(buffer, offset);
310
46.7k
}
311
312
10.5k
zip_uint64_t _zip_buffer_size(zip_buffer_t *buffer) {
313
10.5k
    return buffer->size;
314
10.5k
}