Coverage Report

Created: 2026-01-09 06:24

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/miniz/build/amalgamation/miniz.c
Line
Count
Source
1
#include "miniz.h"
2
/**************************************************************************
3
 *
4
 * Copyright 2013-2014 RAD Game Tools and Valve Software
5
 * Copyright 2010-2014 Rich Geldreich and Tenacious Software LLC
6
 * All Rights Reserved.
7
 *
8
 * Permission is hereby granted, free of charge, to any person obtaining a copy
9
 * of this software and associated documentation files (the "Software"), to deal
10
 * in the Software without restriction, including without limitation the rights
11
 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
12
 * copies of the Software, and to permit persons to whom the Software is
13
 * furnished to do so, subject to the following conditions:
14
 *
15
 * The above copyright notice and this permission notice shall be included in
16
 * all copies or substantial portions of the Software.
17
 *
18
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
19
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
20
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
21
 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
22
 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
23
 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
24
 * THE SOFTWARE.
25
 *
26
 **************************************************************************/
27
28
29
30
typedef unsigned char mz_validate_uint16[sizeof(mz_uint16) == 2 ? 1 : -1];
31
typedef unsigned char mz_validate_uint32[sizeof(mz_uint32) == 4 ? 1 : -1];
32
typedef unsigned char mz_validate_uint64[sizeof(mz_uint64) == 8 ? 1 : -1];
33
34
#ifdef __cplusplus
35
extern "C"
36
{
37
#endif
38
39
    /* ------------------- zlib-style API's */
40
41
    mz_ulong mz_adler32(mz_ulong adler, const unsigned char *ptr, size_t buf_len)
42
194M
    {
43
194M
        mz_uint32 i, s1 = (mz_uint32)(adler & 0xffff), s2 = (mz_uint32)(adler >> 16);
44
194M
        size_t block_len = buf_len % 5552;
45
194M
        if (!ptr)
46
0
            return MZ_ADLER32_INIT;
47
388M
        while (buf_len)
48
194M
        {
49
194M
            for (i = 0; i + 7 < block_len; i += 8, ptr += 8)
50
0
            {
51
0
                s1 += ptr[0], s2 += s1;
52
0
                s1 += ptr[1], s2 += s1;
53
0
                s1 += ptr[2], s2 += s1;
54
0
                s1 += ptr[3], s2 += s1;
55
0
                s1 += ptr[4], s2 += s1;
56
0
                s1 += ptr[5], s2 += s1;
57
0
                s1 += ptr[6], s2 += s1;
58
0
                s1 += ptr[7], s2 += s1;
59
0
            }
60
388M
            for (; i < block_len; ++i)
61
194M
                s1 += *ptr++, s2 += s1;
62
194M
            s1 %= 65521U, s2 %= 65521U;
63
194M
            buf_len -= block_len;
64
194M
            block_len = 5552;
65
194M
        }
66
194M
        return (s2 << 16) + s1;
67
194M
    }
68
69
/* Karl Malbrain's compact CRC-32. See "A compact CCITT crc16 and crc32 C implementation that balances processor cache usage against speed": http://www.geocities.com/malbrain/ */
70
#if 0
71
    mz_ulong mz_crc32(mz_ulong crc, const mz_uint8 *ptr, size_t buf_len)
72
    {
73
        static const mz_uint32 s_crc32[16] = { 0, 0x1db71064, 0x3b6e20c8, 0x26d930ac, 0x76dc4190, 0x6b6b51f4, 0x4db26158, 0x5005713c,
74
                                               0xedb88320, 0xf00f9344, 0xd6d6a3e8, 0xcb61b38c, 0x9b64c2b0, 0x86d3d2d4, 0xa00ae278, 0xbdbdf21c };
75
        mz_uint32 crcu32 = (mz_uint32)crc;
76
        if (!ptr)
77
            return MZ_CRC32_INIT;
78
        crcu32 = ~crcu32;
79
        while (buf_len--)
80
        {
81
            mz_uint8 b = *ptr++;
82
            crcu32 = (crcu32 >> 4) ^ s_crc32[(crcu32 & 0xF) ^ (b & 0xF)];
83
            crcu32 = (crcu32 >> 4) ^ s_crc32[(crcu32 & 0xF) ^ (b >> 4)];
84
        }
85
        return ~crcu32;
86
    }
87
#elif defined(USE_EXTERNAL_MZCRC)
88
/* If USE_EXTERNAL_CRC is defined, an external module will export the
89
 * mz_crc32() symbol for us to use, e.g. an SSE-accelerated version.
90
 * Depending on the impl, it may be necessary to ~ the input/output crc values.
91
 */
92
mz_ulong mz_crc32(mz_ulong crc, const mz_uint8 *ptr, size_t buf_len);
93
#else
94
/* Faster, but larger CPU cache footprint.
95
 */
96
mz_ulong mz_crc32(mz_ulong crc, const mz_uint8 *ptr, size_t buf_len)
97
0
{
98
0
    static const mz_uint32 s_crc_table[256] = {
99
0
        0x00000000, 0x77073096, 0xEE0E612C, 0x990951BA, 0x076DC419, 0x706AF48F, 0xE963A535,
100
0
        0x9E6495A3, 0x0EDB8832, 0x79DCB8A4, 0xE0D5E91E, 0x97D2D988, 0x09B64C2B, 0x7EB17CBD,
101
0
        0xE7B82D07, 0x90BF1D91, 0x1DB71064, 0x6AB020F2, 0xF3B97148, 0x84BE41DE, 0x1ADAD47D,
102
0
        0x6DDDE4EB, 0xF4D4B551, 0x83D385C7, 0x136C9856, 0x646BA8C0, 0xFD62F97A, 0x8A65C9EC,
103
0
        0x14015C4F, 0x63066CD9, 0xFA0F3D63, 0x8D080DF5, 0x3B6E20C8, 0x4C69105E, 0xD56041E4,
104
0
        0xA2677172, 0x3C03E4D1, 0x4B04D447, 0xD20D85FD, 0xA50AB56B, 0x35B5A8FA, 0x42B2986C,
105
0
        0xDBBBC9D6, 0xACBCF940, 0x32D86CE3, 0x45DF5C75, 0xDCD60DCF, 0xABD13D59, 0x26D930AC,
106
0
        0x51DE003A, 0xC8D75180, 0xBFD06116, 0x21B4F4B5, 0x56B3C423, 0xCFBA9599, 0xB8BDA50F,
107
0
        0x2802B89E, 0x5F058808, 0xC60CD9B2, 0xB10BE924, 0x2F6F7C87, 0x58684C11, 0xC1611DAB,
108
0
        0xB6662D3D, 0x76DC4190, 0x01DB7106, 0x98D220BC, 0xEFD5102A, 0x71B18589, 0x06B6B51F,
109
0
        0x9FBFE4A5, 0xE8B8D433, 0x7807C9A2, 0x0F00F934, 0x9609A88E, 0xE10E9818, 0x7F6A0DBB,
110
0
        0x086D3D2D, 0x91646C97, 0xE6635C01, 0x6B6B51F4, 0x1C6C6162, 0x856530D8, 0xF262004E,
111
0
        0x6C0695ED, 0x1B01A57B, 0x8208F4C1, 0xF50FC457, 0x65B0D9C6, 0x12B7E950, 0x8BBEB8EA,
112
0
        0xFCB9887C, 0x62DD1DDF, 0x15DA2D49, 0x8CD37CF3, 0xFBD44C65, 0x4DB26158, 0x3AB551CE,
113
0
        0xA3BC0074, 0xD4BB30E2, 0x4ADFA541, 0x3DD895D7, 0xA4D1C46D, 0xD3D6F4FB, 0x4369E96A,
114
0
        0x346ED9FC, 0xAD678846, 0xDA60B8D0, 0x44042D73, 0x33031DE5, 0xAA0A4C5F, 0xDD0D7CC9,
115
0
        0x5005713C, 0x270241AA, 0xBE0B1010, 0xC90C2086, 0x5768B525, 0x206F85B3, 0xB966D409,
116
0
        0xCE61E49F, 0x5EDEF90E, 0x29D9C998, 0xB0D09822, 0xC7D7A8B4, 0x59B33D17, 0x2EB40D81,
117
0
        0xB7BD5C3B, 0xC0BA6CAD, 0xEDB88320, 0x9ABFB3B6, 0x03B6E20C, 0x74B1D29A, 0xEAD54739,
118
0
        0x9DD277AF, 0x04DB2615, 0x73DC1683, 0xE3630B12, 0x94643B84, 0x0D6D6A3E, 0x7A6A5AA8,
119
0
        0xE40ECF0B, 0x9309FF9D, 0x0A00AE27, 0x7D079EB1, 0xF00F9344, 0x8708A3D2, 0x1E01F268,
120
0
        0x6906C2FE, 0xF762575D, 0x806567CB, 0x196C3671, 0x6E6B06E7, 0xFED41B76, 0x89D32BE0,
121
0
        0x10DA7A5A, 0x67DD4ACC, 0xF9B9DF6F, 0x8EBEEFF9, 0x17B7BE43, 0x60B08ED5, 0xD6D6A3E8,
122
0
        0xA1D1937E, 0x38D8C2C4, 0x4FDFF252, 0xD1BB67F1, 0xA6BC5767, 0x3FB506DD, 0x48B2364B,
123
0
        0xD80D2BDA, 0xAF0A1B4C, 0x36034AF6, 0x41047A60, 0xDF60EFC3, 0xA867DF55, 0x316E8EEF,
124
0
        0x4669BE79, 0xCB61B38C, 0xBC66831A, 0x256FD2A0, 0x5268E236, 0xCC0C7795, 0xBB0B4703,
125
0
        0x220216B9, 0x5505262F, 0xC5BA3BBE, 0xB2BD0B28, 0x2BB45A92, 0x5CB36A04, 0xC2D7FFA7,
126
0
        0xB5D0CF31, 0x2CD99E8B, 0x5BDEAE1D, 0x9B64C2B0, 0xEC63F226, 0x756AA39C, 0x026D930A,
127
0
        0x9C0906A9, 0xEB0E363F, 0x72076785, 0x05005713, 0x95BF4A82, 0xE2B87A14, 0x7BB12BAE,
128
0
        0x0CB61B38, 0x92D28E9B, 0xE5D5BE0D, 0x7CDCEFB7, 0x0BDBDF21, 0x86D3D2D4, 0xF1D4E242,
129
0
        0x68DDB3F8, 0x1FDA836E, 0x81BE16CD, 0xF6B9265B, 0x6FB077E1, 0x18B74777, 0x88085AE6,
130
0
        0xFF0F6A70, 0x66063BCA, 0x11010B5C, 0x8F659EFF, 0xF862AE69, 0x616BFFD3, 0x166CCF45,
131
0
        0xA00AE278, 0xD70DD2EE, 0x4E048354, 0x3903B3C2, 0xA7672661, 0xD06016F7, 0x4969474D,
132
0
        0x3E6E77DB, 0xAED16A4A, 0xD9D65ADC, 0x40DF0B66, 0x37D83BF0, 0xA9BCAE53, 0xDEBB9EC5,
133
0
        0x47B2CF7F, 0x30B5FFE9, 0xBDBDF21C, 0xCABAC28A, 0x53B39330, 0x24B4A3A6, 0xBAD03605,
134
0
        0xCDD70693, 0x54DE5729, 0x23D967BF, 0xB3667A2E, 0xC4614AB8, 0x5D681B02, 0x2A6F2B94,
135
0
        0xB40BBE37, 0xC30C8EA1, 0x5A05DF1B, 0x2D02EF8D
136
0
    };
137
138
0
    mz_uint32 crc32 = (mz_uint32)crc ^ 0xFFFFFFFF;
139
0
    const mz_uint8 *pByte_buf = (const mz_uint8 *)ptr;
140
141
0
    while (buf_len >= 4)
142
0
    {
143
0
        crc32 = (crc32 >> 8) ^ s_crc_table[(crc32 ^ pByte_buf[0]) & 0xFF];
144
0
        crc32 = (crc32 >> 8) ^ s_crc_table[(crc32 ^ pByte_buf[1]) & 0xFF];
145
0
        crc32 = (crc32 >> 8) ^ s_crc_table[(crc32 ^ pByte_buf[2]) & 0xFF];
146
0
        crc32 = (crc32 >> 8) ^ s_crc_table[(crc32 ^ pByte_buf[3]) & 0xFF];
147
0
        pByte_buf += 4;
148
0
        buf_len -= 4;
149
0
    }
150
151
0
    while (buf_len)
152
0
    {
153
0
        crc32 = (crc32 >> 8) ^ s_crc_table[(crc32 ^ pByte_buf[0]) & 0xFF];
154
0
        ++pByte_buf;
155
0
        --buf_len;
156
0
    }
157
158
0
    return ~crc32;
159
0
}
160
#endif
161
162
    void mz_free(void *p)
163
0
    {
164
0
        MZ_FREE(p);
165
0
    }
166
167
    MINIZ_EXPORT void *miniz_def_alloc_func(void *opaque, size_t items, size_t size)
168
3.55k
    {
169
3.55k
        (void)opaque, (void)items, (void)size;
170
3.55k
        return MZ_MALLOC(items * size);
171
3.55k
    }
172
    MINIZ_EXPORT void miniz_def_free_func(void *opaque, void *address)
173
3.55k
    {
174
3.55k
        (void)opaque, (void)address;
175
3.55k
        MZ_FREE(address);
176
3.55k
    }
177
    MINIZ_EXPORT void *miniz_def_realloc_func(void *opaque, void *address, size_t items, size_t size)
178
0
    {
179
0
        (void)opaque, (void)address, (void)items, (void)size;
180
0
        return MZ_REALLOC(address, items * size);
181
0
    }
182
183
    const char *mz_version(void)
184
0
    {
185
0
        return MZ_VERSION;
186
0
    }
187
188
#ifndef MINIZ_NO_ZLIB_APIS
189
190
#ifndef MINIZ_NO_DEFLATE_APIS
191
192
    int mz_deflateInit(mz_streamp pStream, int level)
193
1.77k
    {
194
1.77k
        return mz_deflateInit2(pStream, level, MZ_DEFLATED, MZ_DEFAULT_WINDOW_BITS, 9, MZ_DEFAULT_STRATEGY);
195
1.77k
    }
196
197
    int mz_deflateInit2(mz_streamp pStream, int level, int method, int window_bits, int mem_level, int strategy)
198
1.77k
    {
199
1.77k
        tdefl_compressor *pComp;
200
1.77k
        mz_uint comp_flags = TDEFL_COMPUTE_ADLER32 | tdefl_create_comp_flags_from_zip_params(level, window_bits, strategy);
201
202
1.77k
        if (!pStream)
203
0
            return MZ_STREAM_ERROR;
204
1.77k
        if ((method != MZ_DEFLATED) || ((mem_level < 1) || (mem_level > 9)) || ((window_bits != MZ_DEFAULT_WINDOW_BITS) && (-window_bits != MZ_DEFAULT_WINDOW_BITS)))
205
0
            return MZ_PARAM_ERROR;
206
207
1.77k
        pStream->data_type = 0;
208
1.77k
        pStream->adler = MZ_ADLER32_INIT;
209
1.77k
        pStream->msg = NULL;
210
1.77k
        pStream->reserved = 0;
211
1.77k
        pStream->total_in = 0;
212
1.77k
        pStream->total_out = 0;
213
1.77k
        if (!pStream->zalloc)
214
1.77k
            pStream->zalloc = miniz_def_alloc_func;
215
1.77k
        if (!pStream->zfree)
216
1.77k
            pStream->zfree = miniz_def_free_func;
217
218
1.77k
        pComp = (tdefl_compressor *)pStream->zalloc(pStream->opaque, 1, sizeof(tdefl_compressor));
219
1.77k
        if (!pComp)
220
0
            return MZ_MEM_ERROR;
221
222
1.77k
        pStream->state = (struct mz_internal_state *)pComp;
223
224
1.77k
        if (tdefl_init(pComp, NULL, NULL, comp_flags) != TDEFL_STATUS_OKAY)
225
0
        {
226
0
            mz_deflateEnd(pStream);
227
0
            return MZ_PARAM_ERROR;
228
0
        }
229
230
1.77k
        return MZ_OK;
231
1.77k
    }
232
233
    int mz_deflateReset(mz_streamp pStream)
234
0
    {
235
0
        if ((!pStream) || (!pStream->state) || (!pStream->zalloc) || (!pStream->zfree))
236
0
            return MZ_STREAM_ERROR;
237
0
        pStream->total_in = pStream->total_out = 0;
238
0
        tdefl_init((tdefl_compressor *)pStream->state, NULL, NULL, ((tdefl_compressor *)pStream->state)->m_flags);
239
0
        return MZ_OK;
240
0
    }
241
242
    int mz_deflate(mz_streamp pStream, int flush)
243
332M
    {
244
332M
        size_t in_bytes, out_bytes;
245
332M
        mz_ulong orig_total_in, orig_total_out;
246
332M
        int mz_status = MZ_OK;
247
248
332M
        if ((!pStream) || (!pStream->state) || (flush < 0) || (flush > MZ_FINISH) || (!pStream->next_out))
249
0
            return MZ_STREAM_ERROR;
250
332M
        if (!pStream->avail_out)
251
0
            return MZ_BUF_ERROR;
252
253
332M
        if (flush == MZ_PARTIAL_FLUSH)
254
0
            flush = MZ_SYNC_FLUSH;
255
256
332M
        if (((tdefl_compressor *)pStream->state)->m_prev_return_status == TDEFL_STATUS_DONE)
257
0
            return (flush == MZ_FINISH) ? MZ_STREAM_END : MZ_BUF_ERROR;
258
259
332M
        orig_total_in = pStream->total_in;
260
332M
        orig_total_out = pStream->total_out;
261
332M
        for (;;)
262
332M
        {
263
332M
            tdefl_status defl_status;
264
332M
            in_bytes = pStream->avail_in;
265
332M
            out_bytes = pStream->avail_out;
266
267
332M
            defl_status = tdefl_compress((tdefl_compressor *)pStream->state, pStream->next_in, &in_bytes, pStream->next_out, &out_bytes, (tdefl_flush)flush);
268
332M
            pStream->next_in += (mz_uint)in_bytes;
269
332M
            pStream->avail_in -= (mz_uint)in_bytes;
270
332M
            pStream->total_in += (mz_uint)in_bytes;
271
332M
            pStream->adler = tdefl_get_adler32((tdefl_compressor *)pStream->state);
272
273
332M
            pStream->next_out += (mz_uint)out_bytes;
274
332M
            pStream->avail_out -= (mz_uint)out_bytes;
275
332M
            pStream->total_out += (mz_uint)out_bytes;
276
277
332M
            if (defl_status < 0)
278
0
            {
279
0
                mz_status = MZ_STREAM_ERROR;
280
0
                break;
281
0
            }
282
332M
            else if (defl_status == TDEFL_STATUS_DONE)
283
1.77k
            {
284
1.77k
                mz_status = MZ_STREAM_END;
285
1.77k
                break;
286
1.77k
            }
287
332M
            else if (!pStream->avail_out)
288
138M
                break;
289
194M
            else if ((!pStream->avail_in) && (flush != MZ_FINISH))
290
194M
            {
291
194M
                if ((flush) || (pStream->total_in != orig_total_in) || (pStream->total_out != orig_total_out))
292
194M
                    break;
293
0
                return MZ_BUF_ERROR; /* Can't make forward progress without some input.
294
                                      */
295
194M
            }
296
332M
        }
297
332M
        return mz_status;
298
332M
    }
299
300
    int mz_deflateEnd(mz_streamp pStream)
301
1.77k
    {
302
1.77k
        if (!pStream)
303
0
            return MZ_STREAM_ERROR;
304
1.77k
        if (pStream->state)
305
1.77k
        {
306
1.77k
            pStream->zfree(pStream->opaque, pStream->state);
307
1.77k
            pStream->state = NULL;
308
1.77k
        }
309
1.77k
        return MZ_OK;
310
1.77k
    }
311
312
    mz_ulong mz_deflateBound(mz_streamp pStream, mz_ulong source_len)
313
1.77k
    {
314
1.77k
        (void)pStream;
315
        /* This is really over conservative. (And lame, but it's actually pretty tricky to compute a true upper bound given the way tdefl's blocking works.) */
316
1.77k
        return MZ_MAX(128 + (source_len * 110) / 100, 128 + source_len + ((source_len / (31 * 1024)) + 1) * 5);
317
1.77k
    }
318
319
    int mz_compress2(unsigned char *pDest, mz_ulong *pDest_len, const unsigned char *pSource, mz_ulong source_len, int level)
320
0
    {
321
0
        int status;
322
0
        mz_stream stream;
323
0
        memset(&stream, 0, sizeof(stream));
324
325
        /* In case mz_ulong is 64-bits (argh I hate longs). */
326
0
        if ((mz_uint64)(source_len | *pDest_len) > 0xFFFFFFFFU)
327
0
            return MZ_PARAM_ERROR;
328
329
0
        stream.next_in = pSource;
330
0
        stream.avail_in = (mz_uint32)source_len;
331
0
        stream.next_out = pDest;
332
0
        stream.avail_out = (mz_uint32)*pDest_len;
333
334
0
        status = mz_deflateInit(&stream, level);
335
0
        if (status != MZ_OK)
336
0
            return status;
337
338
0
        status = mz_deflate(&stream, MZ_FINISH);
339
0
        if (status != MZ_STREAM_END)
340
0
        {
341
0
            mz_deflateEnd(&stream);
342
0
            return (status == MZ_OK) ? MZ_BUF_ERROR : status;
343
0
        }
344
345
0
        *pDest_len = stream.total_out;
346
0
        return mz_deflateEnd(&stream);
347
0
    }
348
349
    int mz_compress(unsigned char *pDest, mz_ulong *pDest_len, const unsigned char *pSource, mz_ulong source_len)
350
0
    {
351
0
        return mz_compress2(pDest, pDest_len, pSource, source_len, MZ_DEFAULT_COMPRESSION);
352
0
    }
353
354
    mz_ulong mz_compressBound(mz_ulong source_len)
355
1.77k
    {
356
1.77k
        return mz_deflateBound(NULL, source_len);
357
1.77k
    }
358
359
#endif /*#ifndef MINIZ_NO_DEFLATE_APIS*/
360
361
#ifndef MINIZ_NO_INFLATE_APIS
362
363
    typedef struct
364
    {
365
        tinfl_decompressor m_decomp;
366
        mz_uint m_dict_ofs, m_dict_avail, m_first_call, m_has_flushed;
367
        int m_window_bits;
368
        mz_uint8 m_dict[TINFL_LZ_DICT_SIZE];
369
        tinfl_status m_last_status;
370
    } inflate_state;
371
372
    int mz_inflateInit2(mz_streamp pStream, int window_bits)
373
1.77k
    {
374
1.77k
        inflate_state *pDecomp;
375
1.77k
        if (!pStream)
376
0
            return MZ_STREAM_ERROR;
377
1.77k
        if ((window_bits != MZ_DEFAULT_WINDOW_BITS) && (-window_bits != MZ_DEFAULT_WINDOW_BITS))
378
0
            return MZ_PARAM_ERROR;
379
380
1.77k
        pStream->data_type = 0;
381
1.77k
        pStream->adler = 0;
382
1.77k
        pStream->msg = NULL;
383
1.77k
        pStream->total_in = 0;
384
1.77k
        pStream->total_out = 0;
385
1.77k
        pStream->reserved = 0;
386
1.77k
        if (!pStream->zalloc)
387
1.77k
            pStream->zalloc = miniz_def_alloc_func;
388
1.77k
        if (!pStream->zfree)
389
1.77k
            pStream->zfree = miniz_def_free_func;
390
391
1.77k
        pDecomp = (inflate_state *)pStream->zalloc(pStream->opaque, 1, sizeof(inflate_state));
392
1.77k
        if (!pDecomp)
393
0
            return MZ_MEM_ERROR;
394
395
1.77k
        pStream->state = (struct mz_internal_state *)pDecomp;
396
397
1.77k
        tinfl_init(&pDecomp->m_decomp);
398
1.77k
        pDecomp->m_dict_ofs = 0;
399
1.77k
        pDecomp->m_dict_avail = 0;
400
1.77k
        pDecomp->m_last_status = TINFL_STATUS_NEEDS_MORE_INPUT;
401
1.77k
        pDecomp->m_first_call = 1;
402
1.77k
        pDecomp->m_has_flushed = 0;
403
1.77k
        pDecomp->m_window_bits = window_bits;
404
405
1.77k
        return MZ_OK;
406
1.77k
    }
407
408
    int mz_inflateInit(mz_streamp pStream)
409
1.77k
    {
410
1.77k
        return mz_inflateInit2(pStream, MZ_DEFAULT_WINDOW_BITS);
411
1.77k
    }
412
413
    int mz_inflateReset(mz_streamp pStream)
414
0
    {
415
0
        inflate_state *pDecomp;
416
0
        if (!pStream)
417
0
            return MZ_STREAM_ERROR;
418
419
0
        pStream->data_type = 0;
420
0
        pStream->adler = 0;
421
0
        pStream->msg = NULL;
422
0
        pStream->total_in = 0;
423
0
        pStream->total_out = 0;
424
0
        pStream->reserved = 0;
425
426
0
        pDecomp = (inflate_state *)pStream->state;
427
428
0
        tinfl_init(&pDecomp->m_decomp);
429
0
        pDecomp->m_dict_ofs = 0;
430
0
        pDecomp->m_dict_avail = 0;
431
0
        pDecomp->m_last_status = TINFL_STATUS_NEEDS_MORE_INPUT;
432
0
        pDecomp->m_first_call = 1;
433
0
        pDecomp->m_has_flushed = 0;
434
0
        /* pDecomp->m_window_bits = window_bits */;
435
436
0
        return MZ_OK;
437
0
    }
438
439
    int mz_inflate(mz_streamp pStream, int flush)
440
198M
    {
441
198M
        inflate_state *pState;
442
198M
        mz_uint n, first_call, decomp_flags = TINFL_FLAG_COMPUTE_ADLER32;
443
198M
        size_t in_bytes, out_bytes, orig_avail_in;
444
198M
        tinfl_status status;
445
446
198M
        if ((!pStream) || (!pStream->state))
447
0
            return MZ_STREAM_ERROR;
448
198M
        if (flush == MZ_PARTIAL_FLUSH)
449
0
            flush = MZ_SYNC_FLUSH;
450
198M
        if ((flush) && (flush != MZ_SYNC_FLUSH) && (flush != MZ_FINISH))
451
0
            return MZ_STREAM_ERROR;
452
453
198M
        pState = (inflate_state *)pStream->state;
454
198M
        if (pState->m_window_bits > 0)
455
198M
            decomp_flags |= TINFL_FLAG_PARSE_ZLIB_HEADER;
456
198M
        orig_avail_in = pStream->avail_in;
457
458
198M
        first_call = pState->m_first_call;
459
198M
        pState->m_first_call = 0;
460
198M
        if (pState->m_last_status < 0)
461
0
            return MZ_DATA_ERROR;
462
463
198M
        if (pState->m_has_flushed && (flush != MZ_FINISH))
464
0
            return MZ_STREAM_ERROR;
465
198M
        pState->m_has_flushed |= (flush == MZ_FINISH);
466
467
198M
        if ((flush == MZ_FINISH) && (first_call))
468
0
        {
469
            /* MZ_FINISH on the first call implies that the input and output buffers are large enough to hold the entire compressed/decompressed file. */
470
0
            decomp_flags |= TINFL_FLAG_USING_NON_WRAPPING_OUTPUT_BUF;
471
0
            in_bytes = pStream->avail_in;
472
0
            out_bytes = pStream->avail_out;
473
0
            status = tinfl_decompress(&pState->m_decomp, pStream->next_in, &in_bytes, pStream->next_out, pStream->next_out, &out_bytes, decomp_flags);
474
0
            pState->m_last_status = status;
475
0
            pStream->next_in += (mz_uint)in_bytes;
476
0
            pStream->avail_in -= (mz_uint)in_bytes;
477
0
            pStream->total_in += (mz_uint)in_bytes;
478
0
            pStream->adler = tinfl_get_adler32(&pState->m_decomp);
479
0
            pStream->next_out += (mz_uint)out_bytes;
480
0
            pStream->avail_out -= (mz_uint)out_bytes;
481
0
            pStream->total_out += (mz_uint)out_bytes;
482
483
0
            if (status < 0)
484
0
                return MZ_DATA_ERROR;
485
0
            else if (status != TINFL_STATUS_DONE)
486
0
            {
487
0
                pState->m_last_status = TINFL_STATUS_FAILED;
488
0
                return MZ_BUF_ERROR;
489
0
            }
490
0
            return MZ_STREAM_END;
491
0
        }
492
        /* flush != MZ_FINISH then we must assume there's more input. */
493
198M
        if (flush != MZ_FINISH)
494
198M
            decomp_flags |= TINFL_FLAG_HAS_MORE_INPUT;
495
496
198M
        if (pState->m_dict_avail)
497
60.3M
        {
498
60.3M
            n = MZ_MIN(pState->m_dict_avail, pStream->avail_out);
499
60.3M
            memcpy(pStream->next_out, pState->m_dict + pState->m_dict_ofs, n);
500
60.3M
            pStream->next_out += n;
501
60.3M
            pStream->avail_out -= n;
502
60.3M
            pStream->total_out += n;
503
60.3M
            pState->m_dict_avail -= n;
504
60.3M
            pState->m_dict_ofs = (pState->m_dict_ofs + n) & (TINFL_LZ_DICT_SIZE - 1);
505
60.3M
            return ((pState->m_last_status == TINFL_STATUS_DONE) && (!pState->m_dict_avail)) ? MZ_STREAM_END : MZ_OK;
506
60.3M
        }
507
508
138M
        for (;;)
509
138M
        {
510
138M
            in_bytes = pStream->avail_in;
511
138M
            out_bytes = TINFL_LZ_DICT_SIZE - pState->m_dict_ofs;
512
513
138M
            status = tinfl_decompress(&pState->m_decomp, pStream->next_in, &in_bytes, pState->m_dict, pState->m_dict + pState->m_dict_ofs, &out_bytes, decomp_flags);
514
138M
            pState->m_last_status = status;
515
516
138M
            pStream->next_in += (mz_uint)in_bytes;
517
138M
            pStream->avail_in -= (mz_uint)in_bytes;
518
138M
            pStream->total_in += (mz_uint)in_bytes;
519
138M
            pStream->adler = tinfl_get_adler32(&pState->m_decomp);
520
521
138M
            pState->m_dict_avail = (mz_uint)out_bytes;
522
523
138M
            n = MZ_MIN(pState->m_dict_avail, pStream->avail_out);
524
138M
            memcpy(pStream->next_out, pState->m_dict + pState->m_dict_ofs, n);
525
138M
            pStream->next_out += n;
526
138M
            pStream->avail_out -= n;
527
138M
            pStream->total_out += n;
528
138M
            pState->m_dict_avail -= n;
529
138M
            pState->m_dict_ofs = (pState->m_dict_ofs + n) & (TINFL_LZ_DICT_SIZE - 1);
530
531
138M
            if (status < 0)
532
0
                return MZ_DATA_ERROR; /* Stream is corrupted (there could be some uncompressed data left in the output dictionary - oh well). */
533
138M
            else if ((status == TINFL_STATUS_NEEDS_MORE_INPUT) && (!orig_avail_in))
534
0
                return MZ_BUF_ERROR; /* Signal caller that we can't make forward progress without supplying more input or by setting flush to MZ_FINISH. */
535
138M
            else if (flush == MZ_FINISH)
536
0
            {
537
                /* The output buffer MUST be large to hold the remaining uncompressed data when flush==MZ_FINISH. */
538
0
                if (status == TINFL_STATUS_DONE)
539
0
                    return pState->m_dict_avail ? MZ_BUF_ERROR : MZ_STREAM_END;
540
                /* status here must be TINFL_STATUS_HAS_MORE_OUTPUT, which means there's at least 1 more byte on the way. If there's no more room left in the output buffer then something is wrong. */
541
0
                else if (!pStream->avail_out)
542
0
                    return MZ_BUF_ERROR;
543
0
            }
544
138M
            else if ((status == TINFL_STATUS_DONE) || (!pStream->avail_in) || (!pStream->avail_out) || (pState->m_dict_avail))
545
138M
                break;
546
138M
        }
547
548
138M
        return ((status == TINFL_STATUS_DONE) && (!pState->m_dict_avail)) ? MZ_STREAM_END : MZ_OK;
549
138M
    }
550
551
    int mz_inflateEnd(mz_streamp pStream)
552
1.77k
    {
553
1.77k
        if (!pStream)
554
0
            return MZ_STREAM_ERROR;
555
1.77k
        if (pStream->state)
556
1.77k
        {
557
1.77k
            pStream->zfree(pStream->opaque, pStream->state);
558
1.77k
            pStream->state = NULL;
559
1.77k
        }
560
1.77k
        return MZ_OK;
561
1.77k
    }
562
    int mz_uncompress2(unsigned char *pDest, mz_ulong *pDest_len, const unsigned char *pSource, mz_ulong *pSource_len)
563
0
    {
564
0
        mz_stream stream;
565
0
        int status;
566
0
        memset(&stream, 0, sizeof(stream));
567
568
        /* In case mz_ulong is 64-bits (argh I hate longs). */
569
0
        if ((mz_uint64)(*pSource_len | *pDest_len) > 0xFFFFFFFFU)
570
0
            return MZ_PARAM_ERROR;
571
572
0
        stream.next_in = pSource;
573
0
        stream.avail_in = (mz_uint32)*pSource_len;
574
0
        stream.next_out = pDest;
575
0
        stream.avail_out = (mz_uint32)*pDest_len;
576
577
0
        status = mz_inflateInit(&stream);
578
0
        if (status != MZ_OK)
579
0
            return status;
580
581
0
        status = mz_inflate(&stream, MZ_FINISH);
582
0
        *pSource_len = *pSource_len - stream.avail_in;
583
0
        if (status != MZ_STREAM_END)
584
0
        {
585
0
            mz_inflateEnd(&stream);
586
0
            return ((status == MZ_BUF_ERROR) && (!stream.avail_in)) ? MZ_DATA_ERROR : status;
587
0
        }
588
0
        *pDest_len = stream.total_out;
589
590
0
        return mz_inflateEnd(&stream);
591
0
    }
592
593
    int mz_uncompress(unsigned char *pDest, mz_ulong *pDest_len, const unsigned char *pSource, mz_ulong source_len)
594
0
    {
595
0
        return mz_uncompress2(pDest, pDest_len, pSource, &source_len);
596
0
    }
597
598
#endif /*#ifndef MINIZ_NO_INFLATE_APIS*/
599
600
    const char *mz_error(int err)
601
0
    {
602
0
        static struct
603
0
        {
604
0
            int m_err;
605
0
            const char *m_pDesc;
606
0
        } s_error_descs[] = {
607
0
            { MZ_OK, "" }, { MZ_STREAM_END, "stream end" }, { MZ_NEED_DICT, "need dictionary" }, { MZ_ERRNO, "file error" }, { MZ_STREAM_ERROR, "stream error" }, { MZ_DATA_ERROR, "data error" }, { MZ_MEM_ERROR, "out of memory" }, { MZ_BUF_ERROR, "buf error" }, { MZ_VERSION_ERROR, "version error" }, { MZ_PARAM_ERROR, "parameter error" }
608
0
        };
609
0
        mz_uint i;
610
0
        for (i = 0; i < sizeof(s_error_descs) / sizeof(s_error_descs[0]); ++i)
611
0
            if (s_error_descs[i].m_err == err)
612
0
                return s_error_descs[i].m_pDesc;
613
0
        return NULL;
614
0
    }
615
616
#endif /*MINIZ_NO_ZLIB_APIS */
617
618
#ifdef __cplusplus
619
}
620
#endif
621
622
/*
623
  This is free and unencumbered software released into the public domain.
624
625
  Anyone is free to copy, modify, publish, use, compile, sell, or
626
  distribute this software, either in source code form or as a compiled
627
  binary, for any purpose, commercial or non-commercial, and by any
628
  means.
629
630
  In jurisdictions that recognize copyright laws, the author or authors
631
  of this software dedicate any and all copyright interest in the
632
  software to the public domain. We make this dedication for the benefit
633
  of the public at large and to the detriment of our heirs and
634
  successors. We intend this dedication to be an overt act of
635
  relinquishment in perpetuity of all present and future rights to this
636
  software under copyright law.
637
638
  THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
639
  EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
640
  MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
641
  IN NO EVENT SHALL THE AUTHORS BE LIABLE FOR ANY CLAIM, DAMAGES OR
642
  OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
643
  ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
644
  OTHER DEALINGS IN THE SOFTWARE.
645
646
  For more information, please refer to <http://unlicense.org/>
647
*/
648
/**************************************************************************
649
 *
650
 * Copyright 2013-2014 RAD Game Tools and Valve Software
651
 * Copyright 2010-2014 Rich Geldreich and Tenacious Software LLC
652
 * All Rights Reserved.
653
 *
654
 * Permission is hereby granted, free of charge, to any person obtaining a copy
655
 * of this software and associated documentation files (the "Software"), to deal
656
 * in the Software without restriction, including without limitation the rights
657
 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
658
 * copies of the Software, and to permit persons to whom the Software is
659
 * furnished to do so, subject to the following conditions:
660
 *
661
 * The above copyright notice and this permission notice shall be included in
662
 * all copies or substantial portions of the Software.
663
 *
664
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
665
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
666
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
667
 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
668
 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
669
 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
670
 * THE SOFTWARE.
671
 *
672
 **************************************************************************/
673
674
675
676
#ifndef MINIZ_NO_DEFLATE_APIS
677
678
#ifdef __cplusplus
679
extern "C"
680
{
681
#endif
682
683
    /* ------------------- Low-level Compression (independent from all decompression API's) */
684
685
    /* Purposely making these tables static for faster init and thread safety. */
686
    static const mz_uint16 s_tdefl_len_sym[256] = {
687
        257, 258, 259, 260, 261, 262, 263, 264, 265, 265, 266, 266, 267, 267, 268, 268, 269, 269, 269, 269, 270, 270, 270, 270, 271, 271, 271, 271, 272, 272, 272, 272,
688
        273, 273, 273, 273, 273, 273, 273, 273, 274, 274, 274, 274, 274, 274, 274, 274, 275, 275, 275, 275, 275, 275, 275, 275, 276, 276, 276, 276, 276, 276, 276, 276,
689
        277, 277, 277, 277, 277, 277, 277, 277, 277, 277, 277, 277, 277, 277, 277, 277, 278, 278, 278, 278, 278, 278, 278, 278, 278, 278, 278, 278, 278, 278, 278, 278,
690
        279, 279, 279, 279, 279, 279, 279, 279, 279, 279, 279, 279, 279, 279, 279, 279, 280, 280, 280, 280, 280, 280, 280, 280, 280, 280, 280, 280, 280, 280, 280, 280,
691
        281, 281, 281, 281, 281, 281, 281, 281, 281, 281, 281, 281, 281, 281, 281, 281, 281, 281, 281, 281, 281, 281, 281, 281, 281, 281, 281, 281, 281, 281, 281, 281,
692
        282, 282, 282, 282, 282, 282, 282, 282, 282, 282, 282, 282, 282, 282, 282, 282, 282, 282, 282, 282, 282, 282, 282, 282, 282, 282, 282, 282, 282, 282, 282, 282,
693
        283, 283, 283, 283, 283, 283, 283, 283, 283, 283, 283, 283, 283, 283, 283, 283, 283, 283, 283, 283, 283, 283, 283, 283, 283, 283, 283, 283, 283, 283, 283, 283,
694
        284, 284, 284, 284, 284, 284, 284, 284, 284, 284, 284, 284, 284, 284, 284, 284, 284, 284, 284, 284, 284, 284, 284, 284, 284, 284, 284, 284, 284, 284, 284, 285
695
    };
696
697
    static const mz_uint8 s_tdefl_len_extra[256] = {
698
        0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 1, 1, 1, 1, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3,
699
        4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4,
700
        5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5,
701
        5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 0
702
    };
703
704
    static const mz_uint8 s_tdefl_small_dist_sym[512] = {
705
        0, 1, 2, 3, 4, 4, 5, 5, 6, 6, 6, 6, 7, 7, 7, 7, 8, 8, 8, 8, 8, 8, 8, 8, 9, 9, 9, 9, 9, 9, 9, 9, 10, 10, 10, 10, 10, 10, 10, 10, 10, 10, 10, 10, 10, 10, 10, 10, 11, 11, 11, 11, 11, 11,
706
        11, 11, 11, 11, 11, 11, 11, 11, 11, 11, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 13,
707
        13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14,
708
        14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14, 14,
709
        14, 14, 14, 14, 14, 14, 14, 14, 14, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15,
710
        15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 15, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16,
711
        16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16,
712
        16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16,
713
        16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 16, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17,
714
        17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17,
715
        17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17,
716
        17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17, 17
717
    };
718
719
    static const mz_uint8 s_tdefl_small_dist_extra[512] = {
720
        0, 0, 0, 0, 1, 1, 1, 1, 2, 2, 2, 2, 2, 2, 2, 2, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 5, 5, 5, 5, 5, 5, 5, 5,
721
        5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6,
722
        6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6,
723
        6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7,
724
        7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7,
725
        7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7,
726
        7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7, 7,
727
        7, 7, 7, 7, 7, 7, 7, 7
728
    };
729
730
    static const mz_uint8 s_tdefl_large_dist_sym[128] = {
731
        0, 0, 18, 19, 20, 20, 21, 21, 22, 22, 22, 22, 23, 23, 23, 23, 24, 24, 24, 24, 24, 24, 24, 24, 25, 25, 25, 25, 25, 25, 25, 25, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26, 26,
732
        26, 26, 26, 26, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 27, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28, 28,
733
        28, 28, 28, 28, 28, 28, 28, 28, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29, 29
734
    };
735
736
    static const mz_uint8 s_tdefl_large_dist_extra[128] = {
737
        0, 0, 8, 8, 9, 9, 9, 9, 10, 10, 10, 10, 10, 10, 10, 10, 11, 11, 11, 11, 11, 11, 11, 11, 11, 11, 11, 11, 11, 11, 11, 11, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12,
738
        12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 12, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13,
739
        13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13, 13
740
    };
741
742
    /* Radix sorts tdefl_sym_freq[] array by 16-bit key m_key. Returns ptr to sorted values. */
743
    typedef struct
744
    {
745
        mz_uint16 m_key, m_sym_index;
746
    } tdefl_sym_freq;
747
    static tdefl_sym_freq *tdefl_radix_sort_syms(mz_uint num_syms, tdefl_sym_freq *pSyms0, tdefl_sym_freq *pSyms1)
748
17.0k
    {
749
17.0k
        mz_uint32 total_passes = 2, pass_shift, pass, i, hist[256 * 2];
750
17.0k
        tdefl_sym_freq *pCur_syms = pSyms0, *pNew_syms = pSyms1;
751
17.0k
        MZ_CLEAR_ARR(hist);
752
1.36M
        for (i = 0; i < num_syms; i++)
753
1.34M
        {
754
1.34M
            mz_uint freq = pSyms0[i].m_key;
755
1.34M
            hist[freq & 0xFF]++;
756
1.34M
            hist[256 + ((freq >> 8) & 0xFF)]++;
757
1.34M
        }
758
31.1k
        while ((total_passes > 1) && (num_syms == hist[(total_passes - 1) * 256]))
759
14.1k
            total_passes--;
760
37.0k
        for (pass_shift = 0, pass = 0; pass < total_passes; pass++, pass_shift += 8)
761
20.0k
        {
762
20.0k
            const mz_uint32 *pHist = &hist[pass << 8];
763
20.0k
            mz_uint offsets[256], cur_ofs = 0;
764
5.14M
            for (i = 0; i < 256; i++)
765
5.12M
            {
766
5.12M
                offsets[i] = cur_ofs;
767
5.12M
                cur_ofs += pHist[i];
768
5.12M
            }
769
1.95M
            for (i = 0; i < num_syms; i++)
770
1.93M
                pNew_syms[offsets[(pCur_syms[i].m_key >> pass_shift) & 0xFF]++] = pCur_syms[i];
771
20.0k
            {
772
20.0k
                tdefl_sym_freq *t = pCur_syms;
773
20.0k
                pCur_syms = pNew_syms;
774
20.0k
                pNew_syms = t;
775
20.0k
            }
776
20.0k
        }
777
17.0k
        return pCur_syms;
778
17.0k
    }
779
780
    /* tdefl_calculate_minimum_redundancy() originally written by: Alistair Moffat, alistair@cs.mu.oz.au, Jyrki Katajainen, jyrki@diku.dk, November 1996. */
781
    static void tdefl_calculate_minimum_redundancy(tdefl_sym_freq *A, int n)
782
17.0k
    {
783
17.0k
        int root, leaf, next, avbl, used, dpth;
784
17.0k
        if (n == 0)
785
355
            return;
786
16.7k
        else if (n == 1)
787
398
        {
788
398
            A[0].m_key = 1;
789
398
            return;
790
398
        }
791
16.3k
        A[0].m_key += A[1].m_key;
792
16.3k
        root = 0;
793
16.3k
        leaf = 2;
794
1.33M
        for (next = 1; next < n - 1; next++)
795
1.31M
        {
796
1.31M
            if (leaf >= n || A[root].m_key < A[leaf].m_key)
797
655k
            {
798
655k
                A[next].m_key = A[root].m_key;
799
655k
                A[root++].m_key = (mz_uint16)next;
800
655k
            }
801
658k
            else
802
658k
                A[next].m_key = A[leaf++].m_key;
803
1.31M
            if (leaf >= n || (root < next && A[root].m_key < A[leaf].m_key))
804
658k
            {
805
658k
                A[next].m_key = (mz_uint16)(A[next].m_key + A[root].m_key);
806
658k
                A[root++].m_key = (mz_uint16)next;
807
658k
            }
808
655k
            else
809
655k
                A[next].m_key = (mz_uint16)(A[next].m_key + A[leaf++].m_key);
810
1.31M
        }
811
16.3k
        A[n - 2].m_key = 0;
812
1.33M
        for (next = n - 3; next >= 0; next--)
813
1.31M
            A[next].m_key = A[A[next].m_key].m_key + 1;
814
16.3k
        avbl = 1;
815
16.3k
        used = dpth = 0;
816
16.3k
        root = n - 2;
817
16.3k
        next = n - 1;
818
160k
        while (avbl > 0)
819
144k
        {
820
1.47M
            while (root >= 0 && (int)A[root].m_key == dpth)
821
1.33M
            {
822
1.33M
                used++;
823
1.33M
                root--;
824
1.33M
            }
825
1.49M
            while (avbl > used)
826
1.34M
            {
827
1.34M
                A[next--].m_key = (mz_uint16)(dpth);
828
1.34M
                avbl--;
829
1.34M
            }
830
144k
            avbl = 2 * used;
831
144k
            dpth++;
832
144k
            used = 0;
833
144k
        }
834
16.3k
    }
835
836
    /* Limits canonical Huffman code table's max code size. */
837
    enum
838
    {
839
        TDEFL_MAX_SUPPORTED_HUFF_CODESIZE = 32
840
    };
841
    static void tdefl_huffman_enforce_max_code_size(int *pNum_codes, int code_list_len, int max_code_size)
842
17.0k
    {
843
17.0k
        int i;
844
17.0k
        mz_uint32 total = 0;
845
17.0k
        if (code_list_len <= 1)
846
753
            return;
847
339k
        for (i = max_code_size + 1; i <= TDEFL_MAX_SUPPORTED_HUFF_CODESIZE; i++)
848
322k
            pNum_codes[max_code_size] += pNum_codes[i];
849
215k
        for (i = max_code_size; i > 0; i--)
850
199k
            total += (((mz_uint32)pNum_codes[i]) << (max_code_size - i));
851
19.8k
        while (total != (1UL << max_code_size))
852
3.54k
        {
853
3.54k
            pNum_codes[max_code_size]--;
854
4.58k
            for (i = max_code_size - 1; i > 0; i--)
855
4.58k
                if (pNum_codes[i])
856
3.54k
                {
857
3.54k
                    pNum_codes[i]--;
858
3.54k
                    pNum_codes[i + 1] += 2;
859
3.54k
                    break;
860
3.54k
                }
861
3.54k
            total--;
862
3.54k
        }
863
16.3k
    }
864
865
    static void tdefl_optimize_huffman_table(tdefl_compressor *d, int table_num, int table_len, int code_size_limit, int static_table)
866
17.6k
    {
867
17.6k
        int i, j, l, num_codes[1 + TDEFL_MAX_SUPPORTED_HUFF_CODESIZE];
868
17.6k
        mz_uint next_code[TDEFL_MAX_SUPPORTED_HUFF_CODESIZE + 1];
869
17.6k
        MZ_CLEAR_ARR(num_codes);
870
17.6k
        if (static_table)
871
634
        {
872
102k
            for (i = 0; i < table_len; i++)
873
101k
                num_codes[d->m_huff_code_sizes[table_num][i]]++;
874
634
        }
875
17.0k
        else
876
17.0k
        {
877
17.0k
            tdefl_sym_freq syms0[TDEFL_MAX_HUFF_SYMBOLS], syms1[TDEFL_MAX_HUFF_SYMBOLS], *pSyms;
878
17.0k
            int num_used_syms = 0;
879
17.0k
            const mz_uint16 *pSym_count = &d->m_huff_count[table_num][0];
880
1.94M
            for (i = 0; i < table_len; i++)
881
1.92M
                if (pSym_count[i])
882
1.34M
                {
883
1.34M
                    syms0[num_used_syms].m_key = (mz_uint16)pSym_count[i];
884
1.34M
                    syms0[num_used_syms++].m_sym_index = (mz_uint16)i;
885
1.34M
                }
886
887
17.0k
            pSyms = tdefl_radix_sort_syms(num_used_syms, syms0, syms1);
888
17.0k
            tdefl_calculate_minimum_redundancy(pSyms, num_used_syms);
889
890
1.36M
            for (i = 0; i < num_used_syms; i++)
891
1.34M
                num_codes[pSyms[i].m_key]++;
892
893
17.0k
            tdefl_huffman_enforce_max_code_size(num_codes, num_used_syms, code_size_limit);
894
895
17.0k
            MZ_CLEAR_ARR(d->m_huff_code_sizes[table_num]);
896
17.0k
            MZ_CLEAR_ARR(d->m_huff_codes[table_num]);
897
227k
            for (i = 1, j = num_used_syms; i <= code_size_limit; i++)
898
1.55M
                for (l = num_codes[i]; l > 0; l--)
899
1.34M
                    d->m_huff_code_sizes[table_num][pSyms[--j].m_sym_index] = (mz_uint8)(i);
900
17.0k
        }
901
902
17.6k
        next_code[1] = 0;
903
219k
        for (j = 0, i = 2; i <= code_size_limit; i++)
904
202k
            next_code[i] = j = ((j + num_codes[i - 1]) << 1);
905
906
2.04M
        for (i = 0; i < table_len; i++)
907
2.02M
        {
908
2.02M
            mz_uint rev_code = 0, code, code_size;
909
2.02M
            if ((code_size = d->m_huff_code_sizes[table_num][i]) == 0)
910
580k
                continue;
911
1.44M
            code = next_code[code_size]++;
912
13.0M
            for (l = code_size; l > 0; l--, code >>= 1)
913
11.6M
                rev_code = (rev_code << 1) | (code & 1);
914
1.44M
            d->m_huff_codes[table_num][i] = (mz_uint16)rev_code;
915
1.44M
        }
916
17.6k
    }
917
918
#define TDEFL_PUT_BITS(b, l)                                       \
919
184M
    do                                                             \
920
184M
    {                                                              \
921
184M
        mz_uint bits = b;                                          \
922
184M
        mz_uint len = l;                                           \
923
184M
        MZ_ASSERT(bits <= ((1U << len) - 1U));                     \
924
184M
        d->m_bit_buffer |= (bits << d->m_bits_in);                 \
925
184M
        d->m_bits_in += len;                                       \
926
351M
        while (d->m_bits_in >= 8)                                  \
927
184M
        {                                                          \
928
166M
            if (d->m_pOutput_buf < d->m_pOutput_buf_end)           \
929
166M
                *d->m_pOutput_buf++ = (mz_uint8)(d->m_bit_buffer); \
930
166M
            d->m_bit_buffer >>= 8;                                 \
931
166M
            d->m_bits_in -= 8;                                     \
932
166M
        }                                                          \
933
184M
    }                                                              \
934
184M
    MZ_MACRO_END
935
936
#define TDEFL_RLE_PREV_CODE_SIZE()                                                                                       \
937
1.02M
    {                                                                                                                    \
938
1.02M
        if (rle_repeat_count)                                                                                            \
939
1.02M
        {                                                                                                                \
940
171k
            if (rle_repeat_count < 3)                                                                                    \
941
171k
            {                                                                                                            \
942
53.1k
                d->m_huff_count[2][prev_code_size] = (mz_uint16)(d->m_huff_count[2][prev_code_size] + rle_repeat_count); \
943
122k
                while (rle_repeat_count--)                                                                               \
944
69.4k
                    packed_code_sizes[num_packed_code_sizes++] = prev_code_size;                                         \
945
53.1k
            }                                                                                                            \
946
171k
            else                                                                                                         \
947
171k
            {                                                                                                            \
948
118k
                d->m_huff_count[2][16] = (mz_uint16)(d->m_huff_count[2][16] + 1);                                        \
949
118k
                packed_code_sizes[num_packed_code_sizes++] = 16;                                                         \
950
118k
                packed_code_sizes[num_packed_code_sizes++] = (mz_uint8)(rle_repeat_count - 3);                           \
951
118k
            }                                                                                                            \
952
171k
            rle_repeat_count = 0;                                                                                        \
953
171k
        }                                                                                                                \
954
1.02M
    }
955
956
#define TDEFL_RLE_ZERO_CODE_SIZE()                                                         \
957
1.28M
    {                                                                                      \
958
1.28M
        if (rle_z_count)                                                                   \
959
1.28M
        {                                                                                  \
960
150k
            if (rle_z_count < 3)                                                           \
961
150k
            {                                                                              \
962
128k
                d->m_huff_count[2][0] = (mz_uint16)(d->m_huff_count[2][0] + rle_z_count);  \
963
266k
                while (rle_z_count--)                                                      \
964
137k
                    packed_code_sizes[num_packed_code_sizes++] = 0;                        \
965
128k
            }                                                                              \
966
150k
            else if (rle_z_count <= 10)                                                    \
967
22.0k
            {                                                                              \
968
15.8k
                d->m_huff_count[2][17] = (mz_uint16)(d->m_huff_count[2][17] + 1);          \
969
15.8k
                packed_code_sizes[num_packed_code_sizes++] = 17;                           \
970
15.8k
                packed_code_sizes[num_packed_code_sizes++] = (mz_uint8)(rle_z_count - 3);  \
971
15.8k
            }                                                                              \
972
22.0k
            else                                                                           \
973
22.0k
            {                                                                              \
974
6.22k
                d->m_huff_count[2][18] = (mz_uint16)(d->m_huff_count[2][18] + 1);          \
975
6.22k
                packed_code_sizes[num_packed_code_sizes++] = 18;                           \
976
6.22k
                packed_code_sizes[num_packed_code_sizes++] = (mz_uint8)(rle_z_count - 11); \
977
6.22k
            }                                                                              \
978
150k
            rle_z_count = 0;                                                               \
979
150k
        }                                                                                  \
980
1.28M
    }
981
982
    static const mz_uint8 s_tdefl_packed_code_size_syms_swizzle[] = { 16, 17, 18, 0, 8, 7, 9, 6, 10, 5, 11, 4, 12, 3, 13, 2, 14, 1, 15 };
983
984
    static void tdefl_start_dynamic_block(tdefl_compressor *d)
985
5.68k
    {
986
5.68k
        int num_lit_codes, num_dist_codes, num_bit_lengths;
987
5.68k
        mz_uint i, total_code_sizes_to_pack, num_packed_code_sizes, rle_z_count, rle_repeat_count, packed_code_sizes_index;
988
5.68k
        mz_uint8 code_sizes_to_pack[TDEFL_MAX_HUFF_SYMBOLS_0 + TDEFL_MAX_HUFF_SYMBOLS_1], packed_code_sizes[TDEFL_MAX_HUFF_SYMBOLS_0 + TDEFL_MAX_HUFF_SYMBOLS_1], prev_code_size = 0xFF;
989
990
5.68k
        d->m_huff_count[0][256] = 1;
991
992
5.68k
        tdefl_optimize_huffman_table(d, 0, TDEFL_MAX_HUFF_SYMBOLS_0, 15, MZ_FALSE);
993
5.68k
        tdefl_optimize_huffman_table(d, 1, TDEFL_MAX_HUFF_SYMBOLS_1, 15, MZ_FALSE);
994
995
94.1k
        for (num_lit_codes = 286; num_lit_codes > 257; num_lit_codes--)
996
93.7k
            if (d->m_huff_code_sizes[0][num_lit_codes - 1])
997
5.33k
                break;
998
49.2k
        for (num_dist_codes = 30; num_dist_codes > 1; num_dist_codes--)
999
48.7k
            if (d->m_huff_code_sizes[1][num_dist_codes - 1])
1000
5.19k
                break;
1001
1002
5.68k
        memcpy(code_sizes_to_pack, &d->m_huff_code_sizes[0][0], num_lit_codes);
1003
5.68k
        memcpy(code_sizes_to_pack + num_lit_codes, &d->m_huff_code_sizes[1][0], num_dist_codes);
1004
5.68k
        total_code_sizes_to_pack = num_lit_codes + num_dist_codes;
1005
5.68k
        num_packed_code_sizes = 0;
1006
5.68k
        rle_z_count = 0;
1007
5.68k
        rle_repeat_count = 0;
1008
1009
5.68k
        memset(&d->m_huff_count[2][0], 0, sizeof(d->m_huff_count[2][0]) * TDEFL_MAX_HUFF_SYMBOLS_2);
1010
1.67M
        for (i = 0; i < total_code_sizes_to_pack; i++)
1011
1.66M
        {
1012
1.66M
            mz_uint8 code_size = code_sizes_to_pack[i];
1013
1.66M
            if (!code_size)
1014
383k
            {
1015
383k
                TDEFL_RLE_PREV_CODE_SIZE();
1016
383k
                if (++rle_z_count == 138)
1017
120
                {
1018
120
                    TDEFL_RLE_ZERO_CODE_SIZE();
1019
120
                }
1020
383k
            }
1021
1.28M
            else
1022
1.28M
            {
1023
1.28M
                TDEFL_RLE_ZERO_CODE_SIZE();
1024
1.28M
                if (code_size != prev_code_size)
1025
535k
                {
1026
535k
                    TDEFL_RLE_PREV_CODE_SIZE();
1027
535k
                    d->m_huff_count[2][code_size] = (mz_uint16)(d->m_huff_count[2][code_size] + 1);
1028
535k
                    packed_code_sizes[num_packed_code_sizes++] = code_size;
1029
535k
                }
1030
746k
                else if (++rle_repeat_count == 6)
1031
103k
                {
1032
103k
                    TDEFL_RLE_PREV_CODE_SIZE();
1033
103k
                }
1034
1.28M
            }
1035
1.66M
            prev_code_size = code_size;
1036
1.66M
        }
1037
5.68k
        if (rle_repeat_count)
1038
1.32k
        {
1039
1.32k
            TDEFL_RLE_PREV_CODE_SIZE();
1040
1.32k
        }
1041
4.36k
        else
1042
4.36k
        {
1043
4.36k
            TDEFL_RLE_ZERO_CODE_SIZE();
1044
4.36k
        }
1045
1046
5.68k
        tdefl_optimize_huffman_table(d, 2, TDEFL_MAX_HUFF_SYMBOLS_2, 7, MZ_FALSE);
1047
1048
5.68k
        TDEFL_PUT_BITS(2, 2);
1049
1050
5.68k
        TDEFL_PUT_BITS(num_lit_codes - 257, 5);
1051
5.68k
        TDEFL_PUT_BITS(num_dist_codes - 1, 5);
1052
1053
16.8k
        for (num_bit_lengths = 18; num_bit_lengths >= 0; num_bit_lengths--)
1054
16.8k
            if (d->m_huff_code_sizes[2][s_tdefl_packed_code_size_syms_swizzle[num_bit_lengths]])
1055
5.68k
                break;
1056
5.68k
        num_bit_lengths = MZ_MAX(4, (num_bit_lengths + 1));
1057
5.68k
        TDEFL_PUT_BITS(num_bit_lengths - 4, 4);
1058
102k
        for (i = 0; (int)i < num_bit_lengths; i++)
1059
96.9k
            TDEFL_PUT_BITS(d->m_huff_code_sizes[2][s_tdefl_packed_code_size_syms_swizzle[i]], 3);
1060
1061
888k
        for (packed_code_sizes_index = 0; packed_code_sizes_index < num_packed_code_sizes;)
1062
883k
        {
1063
883k
            mz_uint code = packed_code_sizes[packed_code_sizes_index++];
1064
883k
            MZ_ASSERT(code < TDEFL_MAX_HUFF_SYMBOLS_2);
1065
883k
            TDEFL_PUT_BITS(d->m_huff_codes[2][code], d->m_huff_code_sizes[2][code]);
1066
883k
            if (code >= 16)
1067
140k
                TDEFL_PUT_BITS(packed_code_sizes[packed_code_sizes_index++], "\02\03\07"[code - 16]);
1068
883k
        }
1069
5.68k
    }
1070
1071
    static void tdefl_start_static_block(tdefl_compressor *d)
1072
317
    {
1073
317
        mz_uint i;
1074
317
        mz_uint8 *p = &d->m_huff_code_sizes[0][0];
1075
1076
45.9k
        for (i = 0; i <= 143; ++i)
1077
45.6k
            *p++ = 8;
1078
35.8k
        for (; i <= 255; ++i)
1079
35.5k
            *p++ = 9;
1080
7.92k
        for (; i <= 279; ++i)
1081
7.60k
            *p++ = 7;
1082
2.85k
        for (; i <= 287; ++i)
1083
2.53k
            *p++ = 8;
1084
1085
317
        memset(d->m_huff_code_sizes[1], 5, 32);
1086
1087
317
        tdefl_optimize_huffman_table(d, 0, 288, 15, MZ_TRUE);
1088
317
        tdefl_optimize_huffman_table(d, 1, 32, 15, MZ_TRUE);
1089
1090
317
        TDEFL_PUT_BITS(1, 2);
1091
317
    }
1092
1093
    static const mz_uint mz_bitmasks[17] = { 0x0000, 0x0001, 0x0003, 0x0007, 0x000F, 0x001F, 0x003F, 0x007F, 0x00FF, 0x01FF, 0x03FF, 0x07FF, 0x0FFF, 0x1FFF, 0x3FFF, 0x7FFF, 0xFFFF };
1094
1095
#if MINIZ_USE_UNALIGNED_LOADS_AND_STORES && MINIZ_LITTLE_ENDIAN && MINIZ_HAS_64BIT_REGISTERS
1096
    static mz_bool tdefl_compress_lz_codes(tdefl_compressor *d)
1097
    {
1098
        mz_uint flags;
1099
        mz_uint8 *pLZ_codes;
1100
        mz_uint8 *pOutput_buf = d->m_pOutput_buf;
1101
        mz_uint8 *pLZ_code_buf_end = d->m_pLZ_code_buf;
1102
        mz_uint64 bit_buffer = d->m_bit_buffer;
1103
        mz_uint bits_in = d->m_bits_in;
1104
1105
#define TDEFL_PUT_BITS_FAST(b, l)                    \
1106
    {                                                \
1107
        bit_buffer |= (((mz_uint64)(b)) << bits_in); \
1108
        bits_in += (l);                              \
1109
    }
1110
1111
        flags = 1;
1112
        for (pLZ_codes = d->m_lz_code_buf; pLZ_codes < pLZ_code_buf_end; flags >>= 1)
1113
        {
1114
            if (flags == 1)
1115
                flags = *pLZ_codes++ | 0x100;
1116
1117
            if (flags & 1)
1118
            {
1119
                mz_uint s0, s1, n0, n1, sym, num_extra_bits;
1120
                mz_uint match_len = pLZ_codes[0];
1121
                mz_uint match_dist = (pLZ_codes[1] | (pLZ_codes[2] << 8));
1122
                pLZ_codes += 3;
1123
1124
                MZ_ASSERT(d->m_huff_code_sizes[0][s_tdefl_len_sym[match_len]]);
1125
                TDEFL_PUT_BITS_FAST(d->m_huff_codes[0][s_tdefl_len_sym[match_len]], d->m_huff_code_sizes[0][s_tdefl_len_sym[match_len]]);
1126
                TDEFL_PUT_BITS_FAST(match_len & mz_bitmasks[s_tdefl_len_extra[match_len]], s_tdefl_len_extra[match_len]);
1127
1128
                /* This sequence coaxes MSVC into using cmov's vs. jmp's. */
1129
                s0 = s_tdefl_small_dist_sym[match_dist & 511];
1130
                n0 = s_tdefl_small_dist_extra[match_dist & 511];
1131
                s1 = s_tdefl_large_dist_sym[match_dist >> 8];
1132
                n1 = s_tdefl_large_dist_extra[match_dist >> 8];
1133
                sym = (match_dist < 512) ? s0 : s1;
1134
                num_extra_bits = (match_dist < 512) ? n0 : n1;
1135
1136
                MZ_ASSERT(d->m_huff_code_sizes[1][sym]);
1137
                TDEFL_PUT_BITS_FAST(d->m_huff_codes[1][sym], d->m_huff_code_sizes[1][sym]);
1138
                TDEFL_PUT_BITS_FAST(match_dist & mz_bitmasks[num_extra_bits], num_extra_bits);
1139
            }
1140
            else
1141
            {
1142
                mz_uint lit = *pLZ_codes++;
1143
                MZ_ASSERT(d->m_huff_code_sizes[0][lit]);
1144
                TDEFL_PUT_BITS_FAST(d->m_huff_codes[0][lit], d->m_huff_code_sizes[0][lit]);
1145
1146
                if (((flags & 2) == 0) && (pLZ_codes < pLZ_code_buf_end))
1147
                {
1148
                    flags >>= 1;
1149
                    lit = *pLZ_codes++;
1150
                    MZ_ASSERT(d->m_huff_code_sizes[0][lit]);
1151
                    TDEFL_PUT_BITS_FAST(d->m_huff_codes[0][lit], d->m_huff_code_sizes[0][lit]);
1152
1153
                    if (((flags & 2) == 0) && (pLZ_codes < pLZ_code_buf_end))
1154
                    {
1155
                        flags >>= 1;
1156
                        lit = *pLZ_codes++;
1157
                        MZ_ASSERT(d->m_huff_code_sizes[0][lit]);
1158
                        TDEFL_PUT_BITS_FAST(d->m_huff_codes[0][lit], d->m_huff_code_sizes[0][lit]);
1159
                    }
1160
                }
1161
            }
1162
1163
            if (pOutput_buf >= d->m_pOutput_buf_end)
1164
                return MZ_FALSE;
1165
1166
            memcpy(pOutput_buf, &bit_buffer, sizeof(mz_uint64));
1167
            pOutput_buf += (bits_in >> 3);
1168
            bit_buffer >>= (bits_in & ~7);
1169
            bits_in &= 7;
1170
        }
1171
1172
#undef TDEFL_PUT_BITS_FAST
1173
1174
        d->m_pOutput_buf = pOutput_buf;
1175
        d->m_bits_in = 0;
1176
        d->m_bit_buffer = 0;
1177
1178
        while (bits_in)
1179
        {
1180
            mz_uint32 n = MZ_MIN(bits_in, 16);
1181
            TDEFL_PUT_BITS((mz_uint)bit_buffer & mz_bitmasks[n], n);
1182
            bit_buffer >>= n;
1183
            bits_in -= n;
1184
        }
1185
1186
        TDEFL_PUT_BITS(d->m_huff_codes[0][256], d->m_huff_code_sizes[0][256]);
1187
1188
        return (d->m_pOutput_buf < d->m_pOutput_buf_end);
1189
    }
1190
#else
1191
static mz_bool tdefl_compress_lz_codes(tdefl_compressor *d)
1192
6.00k
{
1193
6.00k
    mz_uint flags;
1194
6.00k
    mz_uint8 *pLZ_codes;
1195
1196
6.00k
    flags = 1;
1197
149M
    for (pLZ_codes = d->m_lz_code_buf; pLZ_codes < d->m_pLZ_code_buf; flags >>= 1)
1198
149M
    {
1199
149M
        if (flags == 1)
1200
18.6M
            flags = *pLZ_codes++ | 0x100;
1201
149M
        if (flags & 1)
1202
1.96M
        {
1203
1.96M
            mz_uint sym, num_extra_bits;
1204
1.96M
            mz_uint match_len = pLZ_codes[0], match_dist = (pLZ_codes[1] | (pLZ_codes[2] << 8));
1205
1.96M
            pLZ_codes += 3;
1206
1207
1.96M
            MZ_ASSERT(d->m_huff_code_sizes[0][s_tdefl_len_sym[match_len]]);
1208
1.96M
            TDEFL_PUT_BITS(d->m_huff_codes[0][s_tdefl_len_sym[match_len]], d->m_huff_code_sizes[0][s_tdefl_len_sym[match_len]]);
1209
1.96M
            TDEFL_PUT_BITS(match_len & mz_bitmasks[s_tdefl_len_extra[match_len]], s_tdefl_len_extra[match_len]);
1210
1211
1.96M
            if (match_dist < 512)
1212
917k
            {
1213
917k
                sym = s_tdefl_small_dist_sym[match_dist];
1214
917k
                num_extra_bits = s_tdefl_small_dist_extra[match_dist];
1215
917k
            }
1216
1.04M
            else
1217
1.04M
            {
1218
1.04M
                sym = s_tdefl_large_dist_sym[match_dist >> 8];
1219
1.04M
                num_extra_bits = s_tdefl_large_dist_extra[match_dist >> 8];
1220
1.04M
            }
1221
1.96M
            MZ_ASSERT(d->m_huff_code_sizes[1][sym]);
1222
1.96M
            TDEFL_PUT_BITS(d->m_huff_codes[1][sym], d->m_huff_code_sizes[1][sym]);
1223
1.96M
            TDEFL_PUT_BITS(match_dist & mz_bitmasks[num_extra_bits], num_extra_bits);
1224
1.96M
        }
1225
147M
        else
1226
147M
        {
1227
147M
            mz_uint lit = *pLZ_codes++;
1228
147M
            MZ_ASSERT(d->m_huff_code_sizes[0][lit]);
1229
147M
            TDEFL_PUT_BITS(d->m_huff_codes[0][lit], d->m_huff_code_sizes[0][lit]);
1230
147M
        }
1231
149M
    }
1232
1233
6.00k
    TDEFL_PUT_BITS(d->m_huff_codes[0][256], d->m_huff_code_sizes[0][256]);
1234
1235
6.00k
    return (d->m_pOutput_buf < d->m_pOutput_buf_end);
1236
6.00k
}
1237
#endif /* MINIZ_USE_UNALIGNED_LOADS_AND_STORES && MINIZ_LITTLE_ENDIAN && MINIZ_HAS_64BIT_REGISTERS */
1238
1239
    static mz_bool tdefl_compress_block(tdefl_compressor *d, mz_bool static_block)
1240
6.00k
    {
1241
6.00k
        if (static_block)
1242
317
            tdefl_start_static_block(d);
1243
5.68k
        else
1244
5.68k
            tdefl_start_dynamic_block(d);
1245
6.00k
        return tdefl_compress_lz_codes(d);
1246
6.00k
    }
1247
1248
    static const mz_uint s_tdefl_num_probes[11] = { 0, 1, 6, 32, 16, 32, 128, 256, 512, 768, 1500 };
1249
1250
    static int tdefl_flush_block(tdefl_compressor *d, int flush)
1251
6.00k
    {
1252
6.00k
        mz_uint saved_bit_buf, saved_bits_in;
1253
6.00k
        mz_uint8 *pSaved_output_buf;
1254
6.00k
        mz_bool comp_block_succeeded = MZ_FALSE;
1255
6.00k
        int n, use_raw_block = ((d->m_flags & TDEFL_FORCE_ALL_RAW_BLOCKS) != 0) && (d->m_lookahead_pos - d->m_lz_code_buf_dict_pos) <= d->m_dict_size;
1256
6.00k
        mz_uint8 *pOutput_buf_start = ((d->m_pPut_buf_func == NULL) && ((*d->m_pOut_buf_size - d->m_out_buf_ofs) >= TDEFL_OUT_BUF_SIZE)) ? ((mz_uint8 *)d->m_pOut_buf + d->m_out_buf_ofs) : d->m_output_buf;
1257
1258
6.00k
        d->m_pOutput_buf = pOutput_buf_start;
1259
6.00k
        d->m_pOutput_buf_end = d->m_pOutput_buf + TDEFL_OUT_BUF_SIZE - 16;
1260
1261
6.00k
        MZ_ASSERT(!d->m_output_flush_remaining);
1262
6.00k
        d->m_output_flush_ofs = 0;
1263
6.00k
        d->m_output_flush_remaining = 0;
1264
1265
6.00k
        *d->m_pLZ_flags = (mz_uint8)(*d->m_pLZ_flags >> d->m_num_flags_left);
1266
6.00k
        d->m_pLZ_code_buf -= (d->m_num_flags_left == 8);
1267
1268
6.00k
        if ((d->m_flags & TDEFL_WRITE_ZLIB_HEADER) && (!d->m_block_index))
1269
1.77k
        {
1270
1.77k
            const mz_uint8 cmf = 0x78;
1271
1.77k
            mz_uint8 flg, flevel = 3;
1272
1.77k
            mz_uint header, i, mz_un = sizeof(s_tdefl_num_probes) / sizeof(mz_uint);
1273
1274
            /* Determine compression level by reversing the process in tdefl_create_comp_flags_from_zip_params() */
1275
12.4k
            for (i = 0; i < mz_un; i++)
1276
12.4k
                if (s_tdefl_num_probes[i] == (d->m_flags & 0xFFF))
1277
1.77k
                    break;
1278
1279
1.77k
            if (i < 2)
1280
0
                flevel = 0;
1281
1.77k
            else if (i < 6)
1282
0
                flevel = 1;
1283
1.77k
            else if (i == 6)
1284
1.77k
                flevel = 2;
1285
1286
1.77k
            header = cmf << 8 | (flevel << 6);
1287
1.77k
            header += 31 - (header % 31);
1288
1.77k
            flg = header & 0xFF;
1289
1290
1.77k
            TDEFL_PUT_BITS(cmf, 8);
1291
1.77k
            TDEFL_PUT_BITS(flg, 8);
1292
1.77k
        }
1293
1294
6.00k
        TDEFL_PUT_BITS(flush == TDEFL_FINISH, 1);
1295
1296
6.00k
        pSaved_output_buf = d->m_pOutput_buf;
1297
6.00k
        saved_bit_buf = d->m_bit_buffer;
1298
6.00k
        saved_bits_in = d->m_bits_in;
1299
1300
6.00k
        if (!use_raw_block)
1301
6.00k
            comp_block_succeeded = tdefl_compress_block(d, (d->m_flags & TDEFL_FORCE_ALL_STATIC_BLOCKS) || (d->m_total_lz_bytes < 48));
1302
1303
        /* If the block gets expanded, forget the current contents of the output buffer and send a raw block instead. */
1304
6.00k
        if (((use_raw_block) || ((d->m_total_lz_bytes) && ((d->m_pOutput_buf - pSaved_output_buf + 1U) >= d->m_total_lz_bytes))) &&
1305
1.34k
            ((d->m_lookahead_pos - d->m_lz_code_buf_dict_pos) <= d->m_dict_size))
1306
1.34k
        {
1307
1.34k
            mz_uint i;
1308
1.34k
            d->m_pOutput_buf = pSaved_output_buf;
1309
1.34k
            d->m_bit_buffer = saved_bit_buf, d->m_bits_in = saved_bits_in;
1310
1.34k
            TDEFL_PUT_BITS(0, 2);
1311
1.34k
            if (d->m_bits_in)
1312
1.27k
            {
1313
1.27k
                TDEFL_PUT_BITS(0, 8 - d->m_bits_in);
1314
1.27k
            }
1315
4.02k
            for (i = 2; i; --i, d->m_total_lz_bytes ^= 0xFFFF)
1316
2.68k
            {
1317
2.68k
                TDEFL_PUT_BITS(d->m_total_lz_bytes & 0xFFFF, 16);
1318
2.68k
            }
1319
28.3M
            for (i = 0; i < d->m_total_lz_bytes; ++i)
1320
28.3M
            {
1321
28.3M
                TDEFL_PUT_BITS(d->m_dict[(d->m_lz_code_buf_dict_pos + i) & TDEFL_LZ_DICT_SIZE_MASK], 8);
1322
28.3M
            }
1323
1.34k
        }
1324
        /* Check for the extremely unlikely (if not impossible) case of the compressed block not fitting into the output buffer when using dynamic codes. */
1325
4.66k
        else if (!comp_block_succeeded)
1326
0
        {
1327
0
            d->m_pOutput_buf = pSaved_output_buf;
1328
0
            d->m_bit_buffer = saved_bit_buf, d->m_bits_in = saved_bits_in;
1329
0
            tdefl_compress_block(d, MZ_TRUE);
1330
0
        }
1331
1332
6.00k
        if (flush)
1333
1.77k
        {
1334
1.77k
            if (flush == TDEFL_FINISH)
1335
1.77k
            {
1336
1.77k
                if (d->m_bits_in)
1337
1.12k
                {
1338
1.12k
                    TDEFL_PUT_BITS(0, 8 - d->m_bits_in);
1339
1.12k
                }
1340
1.77k
                if (d->m_flags & TDEFL_WRITE_ZLIB_HEADER)
1341
1.77k
                {
1342
1.77k
                    mz_uint i, a = d->m_adler32;
1343
8.89k
                    for (i = 0; i < 4; i++)
1344
7.11k
                    {
1345
7.11k
                        TDEFL_PUT_BITS((a >> 24) & 0xFF, 8);
1346
7.11k
                        a <<= 8;
1347
7.11k
                    }
1348
1.77k
                }
1349
1.77k
            }
1350
0
            else
1351
0
            {
1352
0
                mz_uint i, z = 0;
1353
0
                TDEFL_PUT_BITS(0, 3);
1354
0
                if (d->m_bits_in)
1355
0
                {
1356
0
                    TDEFL_PUT_BITS(0, 8 - d->m_bits_in);
1357
0
                }
1358
0
                for (i = 2; i; --i, z ^= 0xFFFF)
1359
0
                {
1360
0
                    TDEFL_PUT_BITS(z & 0xFFFF, 16);
1361
0
                }
1362
0
            }
1363
1.77k
        }
1364
1365
6.00k
        MZ_ASSERT(d->m_pOutput_buf < d->m_pOutput_buf_end);
1366
1367
6.00k
        memset(&d->m_huff_count[0][0], 0, sizeof(d->m_huff_count[0][0]) * TDEFL_MAX_HUFF_SYMBOLS_0);
1368
6.00k
        memset(&d->m_huff_count[1][0], 0, sizeof(d->m_huff_count[1][0]) * TDEFL_MAX_HUFF_SYMBOLS_1);
1369
1370
6.00k
        d->m_pLZ_code_buf = d->m_lz_code_buf + 1;
1371
6.00k
        d->m_pLZ_flags = d->m_lz_code_buf;
1372
6.00k
        d->m_num_flags_left = 8;
1373
6.00k
        d->m_lz_code_buf_dict_pos += d->m_total_lz_bytes;
1374
6.00k
        d->m_total_lz_bytes = 0;
1375
6.00k
        d->m_block_index++;
1376
1377
6.00k
        if ((n = (int)(d->m_pOutput_buf - pOutput_buf_start)) != 0)
1378
6.00k
        {
1379
6.00k
            if (d->m_pPut_buf_func)
1380
0
            {
1381
0
                *d->m_pIn_buf_size = d->m_pSrc - (const mz_uint8 *)d->m_pIn_buf;
1382
0
                if (!(*d->m_pPut_buf_func)(d->m_output_buf, n, d->m_pPut_buf_user))
1383
0
                    return (d->m_prev_return_status = TDEFL_STATUS_PUT_BUF_FAILED);
1384
0
            }
1385
6.00k
            else if (pOutput_buf_start == d->m_output_buf)
1386
6.00k
            {
1387
6.00k
                int bytes_to_copy = (int)MZ_MIN((size_t)n, (size_t)(*d->m_pOut_buf_size - d->m_out_buf_ofs));
1388
6.00k
                memcpy((mz_uint8 *)d->m_pOut_buf + d->m_out_buf_ofs, d->m_output_buf, bytes_to_copy);
1389
6.00k
                d->m_out_buf_ofs += bytes_to_copy;
1390
6.00k
                if ((n -= bytes_to_copy) != 0)
1391
6.00k
                {
1392
6.00k
                    d->m_output_flush_ofs = bytes_to_copy;
1393
6.00k
                    d->m_output_flush_remaining = n;
1394
6.00k
                }
1395
6.00k
            }
1396
0
            else
1397
0
            {
1398
0
                d->m_out_buf_ofs += n;
1399
0
            }
1400
6.00k
        }
1401
1402
6.00k
        return d->m_output_flush_remaining;
1403
6.00k
    }
1404
1405
#if MINIZ_USE_UNALIGNED_LOADS_AND_STORES
1406
#ifdef MINIZ_UNALIGNED_USE_MEMCPY
1407
    static mz_uint16 TDEFL_READ_UNALIGNED_WORD(const mz_uint8 *p)
1408
    {
1409
        mz_uint16 ret;
1410
        memcpy(&ret, p, sizeof(mz_uint16));
1411
        return ret;
1412
    }
1413
    static mz_uint16 TDEFL_READ_UNALIGNED_WORD2(const mz_uint16 *p)
1414
    {
1415
        mz_uint16 ret;
1416
        memcpy(&ret, p, sizeof(mz_uint16));
1417
        return ret;
1418
    }
1419
#else
1420
#define TDEFL_READ_UNALIGNED_WORD(p) *(const mz_uint16 *)(p)
1421
#define TDEFL_READ_UNALIGNED_WORD2(p) *(const mz_uint16 *)(p)
1422
#endif
1423
    static MZ_FORCEINLINE void tdefl_find_match(tdefl_compressor *d, mz_uint lookahead_pos, mz_uint max_dist, mz_uint max_match_len, mz_uint *pMatch_dist, mz_uint *pMatch_len)
1424
    {
1425
        mz_uint dist, pos = lookahead_pos & TDEFL_LZ_DICT_SIZE_MASK, match_len = *pMatch_len, probe_pos = pos, next_probe_pos, probe_len;
1426
        mz_uint num_probes_left = d->m_max_probes[match_len >= 32];
1427
        const mz_uint16 *s = (const mz_uint16 *)(d->m_dict + pos), *p, *q;
1428
        mz_uint16 c01 = TDEFL_READ_UNALIGNED_WORD(&d->m_dict[pos + match_len - 1]), s01 = TDEFL_READ_UNALIGNED_WORD2(s);
1429
        MZ_ASSERT(max_match_len <= TDEFL_MAX_MATCH_LEN);
1430
        if (max_match_len <= match_len)
1431
            return;
1432
        for (;;)
1433
        {
1434
            for (;;)
1435
            {
1436
                if (--num_probes_left == 0)
1437
                    return;
1438
#define TDEFL_PROBE                                                                             \
1439
    next_probe_pos = d->m_next[probe_pos];                                                      \
1440
    if ((!next_probe_pos) || ((dist = (mz_uint16)(lookahead_pos - next_probe_pos)) > max_dist)) \
1441
        return;                                                                                 \
1442
    probe_pos = next_probe_pos & TDEFL_LZ_DICT_SIZE_MASK;                                       \
1443
    if (TDEFL_READ_UNALIGNED_WORD(&d->m_dict[probe_pos + match_len - 1]) == c01)                \
1444
        break;
1445
                TDEFL_PROBE;
1446
                TDEFL_PROBE;
1447
                TDEFL_PROBE;
1448
            }
1449
            if (!dist)
1450
                break;
1451
            q = (const mz_uint16 *)(d->m_dict + probe_pos);
1452
            if (TDEFL_READ_UNALIGNED_WORD2(q) != s01)
1453
                continue;
1454
            p = s;
1455
            probe_len = 32;
1456
            do
1457
            {
1458
            } while ((TDEFL_READ_UNALIGNED_WORD2(++p) == TDEFL_READ_UNALIGNED_WORD2(++q)) && (TDEFL_READ_UNALIGNED_WORD2(++p) == TDEFL_READ_UNALIGNED_WORD2(++q)) &&
1459
                     (TDEFL_READ_UNALIGNED_WORD2(++p) == TDEFL_READ_UNALIGNED_WORD2(++q)) && (TDEFL_READ_UNALIGNED_WORD2(++p) == TDEFL_READ_UNALIGNED_WORD2(++q)) && (--probe_len > 0));
1460
            if (!probe_len)
1461
            {
1462
                *pMatch_dist = dist;
1463
                *pMatch_len = MZ_MIN(max_match_len, (mz_uint)TDEFL_MAX_MATCH_LEN);
1464
                break;
1465
            }
1466
            else if ((probe_len = ((mz_uint)(p - s) * 2) + (mz_uint)(*(const mz_uint8 *)p == *(const mz_uint8 *)q)) > match_len)
1467
            {
1468
                *pMatch_dist = dist;
1469
                if ((*pMatch_len = match_len = MZ_MIN(max_match_len, probe_len)) == max_match_len)
1470
                    break;
1471
                c01 = TDEFL_READ_UNALIGNED_WORD(&d->m_dict[pos + match_len - 1]);
1472
            }
1473
        }
1474
    }
1475
#else
1476
static MZ_FORCEINLINE void tdefl_find_match(tdefl_compressor *d, mz_uint lookahead_pos, mz_uint max_dist, mz_uint max_match_len, mz_uint *pMatch_dist, mz_uint *pMatch_len)
1477
149M
{
1478
149M
    mz_uint dist, pos = lookahead_pos & TDEFL_LZ_DICT_SIZE_MASK, match_len = *pMatch_len, probe_pos = pos, next_probe_pos, probe_len;
1479
149M
    mz_uint num_probes_left = d->m_max_probes[match_len >= 32];
1480
149M
    const mz_uint8 *s = d->m_dict + pos, *p, *q;
1481
149M
    mz_uint8 c0 = d->m_dict[pos + match_len], c1 = d->m_dict[pos + match_len - 1];
1482
149M
    MZ_ASSERT(max_match_len <= TDEFL_MAX_MATCH_LEN);
1483
149M
    if (max_match_len <= match_len)
1484
2.26k
        return;
1485
149M
    for (;;)
1486
238M
    {
1487
238M
        for (;;)
1488
405M
        {
1489
405M
            if (--num_probes_left == 0)
1490
912k
                return;
1491
404M
#define TDEFL_PROBE                                                                               \
1492
870M
    next_probe_pos = d->m_next[probe_pos];                                                        \
1493
870M
    if ((!next_probe_pos) || ((dist = (mz_uint16)(lookahead_pos - next_probe_pos)) > max_dist))   \
1494
870M
        return;                                                                                   \
1495
870M
    probe_pos = next_probe_pos & TDEFL_LZ_DICT_SIZE_MASK;                                         \
1496
722M
    if ((d->m_dict[probe_pos + match_len] == c0) && (d->m_dict[probe_pos + match_len - 1] == c1)) \
1497
722M
        break;
1498
1.00G
            TDEFL_PROBE;
1499
1.00G
            TDEFL_PROBE;
1500
418M
            TDEFL_PROBE;
1501
337M
        }
1502
89.4M
        if (!dist)
1503
1.88k
            break;
1504
89.4M
        p = s;
1505
89.4M
        q = d->m_dict + probe_pos;
1506
164M
        for (probe_len = 0; probe_len < max_match_len; probe_len++)
1507
164M
            if (*p++ != *q++)
1508
89.3M
                break;
1509
89.4M
        if (probe_len > match_len)
1510
3.76M
        {
1511
3.76M
            *pMatch_dist = dist;
1512
3.76M
            if ((*pMatch_len = match_len = probe_len) == max_match_len)
1513
103k
                return;
1514
3.65M
            c0 = d->m_dict[pos + match_len];
1515
3.65M
            c1 = d->m_dict[pos + match_len - 1];
1516
3.65M
        }
1517
89.4M
    }
1518
149M
}
1519
#endif /* #if MINIZ_USE_UNALIGNED_LOADS_AND_STORES */
1520
1521
#if MINIZ_USE_UNALIGNED_LOADS_AND_STORES && MINIZ_LITTLE_ENDIAN
1522
#ifdef MINIZ_UNALIGNED_USE_MEMCPY
1523
    static mz_uint32 TDEFL_READ_UNALIGNED_WORD32(const mz_uint8 *p)
1524
    {
1525
        mz_uint32 ret;
1526
        memcpy(&ret, p, sizeof(mz_uint32));
1527
        return ret;
1528
    }
1529
#else
1530
#define TDEFL_READ_UNALIGNED_WORD32(p) *(const mz_uint32 *)(p)
1531
#endif
1532
    static mz_bool tdefl_compress_fast(tdefl_compressor *d)
1533
    {
1534
        /* Faster, minimally featured LZRW1-style match+parse loop with better register utilization. Intended for applications where raw throughput is valued more highly than ratio. */
1535
        mz_uint lookahead_pos = d->m_lookahead_pos, lookahead_size = d->m_lookahead_size, dict_size = d->m_dict_size, total_lz_bytes = d->m_total_lz_bytes, num_flags_left = d->m_num_flags_left;
1536
        mz_uint8 *pLZ_code_buf = d->m_pLZ_code_buf, *pLZ_flags = d->m_pLZ_flags;
1537
        mz_uint cur_pos = lookahead_pos & TDEFL_LZ_DICT_SIZE_MASK;
1538
1539
        while ((d->m_src_buf_left) || ((d->m_flush) && (lookahead_size)))
1540
        {
1541
            const mz_uint TDEFL_COMP_FAST_LOOKAHEAD_SIZE = 4096;
1542
            mz_uint dst_pos = (lookahead_pos + lookahead_size) & TDEFL_LZ_DICT_SIZE_MASK;
1543
            mz_uint num_bytes_to_process = (mz_uint)MZ_MIN(d->m_src_buf_left, TDEFL_COMP_FAST_LOOKAHEAD_SIZE - lookahead_size);
1544
            d->m_src_buf_left -= num_bytes_to_process;
1545
            lookahead_size += num_bytes_to_process;
1546
1547
            while (num_bytes_to_process)
1548
            {
1549
                mz_uint32 n = MZ_MIN(TDEFL_LZ_DICT_SIZE - dst_pos, num_bytes_to_process);
1550
                memcpy(d->m_dict + dst_pos, d->m_pSrc, n);
1551
                if (dst_pos < (TDEFL_MAX_MATCH_LEN - 1))
1552
                    memcpy(d->m_dict + TDEFL_LZ_DICT_SIZE + dst_pos, d->m_pSrc, MZ_MIN(n, (TDEFL_MAX_MATCH_LEN - 1) - dst_pos));
1553
                d->m_pSrc += n;
1554
                dst_pos = (dst_pos + n) & TDEFL_LZ_DICT_SIZE_MASK;
1555
                num_bytes_to_process -= n;
1556
            }
1557
1558
            dict_size = MZ_MIN(TDEFL_LZ_DICT_SIZE - lookahead_size, dict_size);
1559
            if ((!d->m_flush) && (lookahead_size < TDEFL_COMP_FAST_LOOKAHEAD_SIZE))
1560
                break;
1561
1562
            while (lookahead_size >= 4)
1563
            {
1564
                mz_uint cur_match_dist, cur_match_len = 1;
1565
                mz_uint8 *pCur_dict = d->m_dict + cur_pos;
1566
                mz_uint first_trigram = TDEFL_READ_UNALIGNED_WORD32(pCur_dict) & 0xFFFFFF;
1567
                mz_uint hash = (first_trigram ^ (first_trigram >> (24 - (TDEFL_LZ_HASH_BITS - 8)))) & TDEFL_LEVEL1_HASH_SIZE_MASK;
1568
                mz_uint probe_pos = d->m_hash[hash];
1569
                d->m_hash[hash] = (mz_uint16)lookahead_pos;
1570
1571
                if (((cur_match_dist = (mz_uint16)(lookahead_pos - probe_pos)) <= dict_size) && ((TDEFL_READ_UNALIGNED_WORD32(d->m_dict + (probe_pos &= TDEFL_LZ_DICT_SIZE_MASK)) & 0xFFFFFF) == first_trigram))
1572
                {
1573
                    const mz_uint16 *p = (const mz_uint16 *)pCur_dict;
1574
                    const mz_uint16 *q = (const mz_uint16 *)(d->m_dict + probe_pos);
1575
                    mz_uint32 probe_len = 32;
1576
                    do
1577
                    {
1578
                    } while ((TDEFL_READ_UNALIGNED_WORD2(++p) == TDEFL_READ_UNALIGNED_WORD2(++q)) && (TDEFL_READ_UNALIGNED_WORD2(++p) == TDEFL_READ_UNALIGNED_WORD2(++q)) &&
1579
                             (TDEFL_READ_UNALIGNED_WORD2(++p) == TDEFL_READ_UNALIGNED_WORD2(++q)) && (TDEFL_READ_UNALIGNED_WORD2(++p) == TDEFL_READ_UNALIGNED_WORD2(++q)) && (--probe_len > 0));
1580
                    cur_match_len = ((mz_uint)(p - (const mz_uint16 *)pCur_dict) * 2) + (mz_uint)(*(const mz_uint8 *)p == *(const mz_uint8 *)q);
1581
                    if (!probe_len)
1582
                        cur_match_len = cur_match_dist ? TDEFL_MAX_MATCH_LEN : 0;
1583
1584
                    if ((cur_match_len < TDEFL_MIN_MATCH_LEN) || ((cur_match_len == TDEFL_MIN_MATCH_LEN) && (cur_match_dist >= 8U * 1024U)))
1585
                    {
1586
                        cur_match_len = 1;
1587
                        *pLZ_code_buf++ = (mz_uint8)first_trigram;
1588
                        *pLZ_flags = (mz_uint8)(*pLZ_flags >> 1);
1589
                        d->m_huff_count[0][(mz_uint8)first_trigram]++;
1590
                    }
1591
                    else
1592
                    {
1593
                        mz_uint32 s0, s1;
1594
                        cur_match_len = MZ_MIN(cur_match_len, lookahead_size);
1595
1596
                        MZ_ASSERT((cur_match_len >= TDEFL_MIN_MATCH_LEN) && (cur_match_dist >= 1) && (cur_match_dist <= TDEFL_LZ_DICT_SIZE));
1597
1598
                        cur_match_dist--;
1599
1600
                        pLZ_code_buf[0] = (mz_uint8)(cur_match_len - TDEFL_MIN_MATCH_LEN);
1601
#ifdef MINIZ_UNALIGNED_USE_MEMCPY
1602
                        memcpy(&pLZ_code_buf[1], &cur_match_dist, sizeof(cur_match_dist));
1603
#else
1604
                        *(mz_uint16 *)(&pLZ_code_buf[1]) = (mz_uint16)cur_match_dist;
1605
#endif
1606
                        pLZ_code_buf += 3;
1607
                        *pLZ_flags = (mz_uint8)((*pLZ_flags >> 1) | 0x80);
1608
1609
                        s0 = s_tdefl_small_dist_sym[cur_match_dist & 511];
1610
                        s1 = s_tdefl_large_dist_sym[cur_match_dist >> 8];
1611
                        d->m_huff_count[1][(cur_match_dist < 512) ? s0 : s1]++;
1612
1613
                        d->m_huff_count[0][s_tdefl_len_sym[cur_match_len - TDEFL_MIN_MATCH_LEN]]++;
1614
                    }
1615
                }
1616
                else
1617
                {
1618
                    *pLZ_code_buf++ = (mz_uint8)first_trigram;
1619
                    *pLZ_flags = (mz_uint8)(*pLZ_flags >> 1);
1620
                    d->m_huff_count[0][(mz_uint8)first_trigram]++;
1621
                }
1622
1623
                if (--num_flags_left == 0)
1624
                {
1625
                    num_flags_left = 8;
1626
                    pLZ_flags = pLZ_code_buf++;
1627
                }
1628
1629
                total_lz_bytes += cur_match_len;
1630
                lookahead_pos += cur_match_len;
1631
                dict_size = MZ_MIN(dict_size + cur_match_len, (mz_uint)TDEFL_LZ_DICT_SIZE);
1632
                cur_pos = (cur_pos + cur_match_len) & TDEFL_LZ_DICT_SIZE_MASK;
1633
                MZ_ASSERT(lookahead_size >= cur_match_len);
1634
                lookahead_size -= cur_match_len;
1635
1636
                if (pLZ_code_buf > &d->m_lz_code_buf[TDEFL_LZ_CODE_BUF_SIZE - 8])
1637
                {
1638
                    int n;
1639
                    d->m_lookahead_pos = lookahead_pos;
1640
                    d->m_lookahead_size = lookahead_size;
1641
                    d->m_dict_size = dict_size;
1642
                    d->m_total_lz_bytes = total_lz_bytes;
1643
                    d->m_pLZ_code_buf = pLZ_code_buf;
1644
                    d->m_pLZ_flags = pLZ_flags;
1645
                    d->m_num_flags_left = num_flags_left;
1646
                    if ((n = tdefl_flush_block(d, 0)) != 0)
1647
                        return (n < 0) ? MZ_FALSE : MZ_TRUE;
1648
                    total_lz_bytes = d->m_total_lz_bytes;
1649
                    pLZ_code_buf = d->m_pLZ_code_buf;
1650
                    pLZ_flags = d->m_pLZ_flags;
1651
                    num_flags_left = d->m_num_flags_left;
1652
                }
1653
            }
1654
1655
            while (lookahead_size)
1656
            {
1657
                mz_uint8 lit = d->m_dict[cur_pos];
1658
1659
                total_lz_bytes++;
1660
                *pLZ_code_buf++ = lit;
1661
                *pLZ_flags = (mz_uint8)(*pLZ_flags >> 1);
1662
                if (--num_flags_left == 0)
1663
                {
1664
                    num_flags_left = 8;
1665
                    pLZ_flags = pLZ_code_buf++;
1666
                }
1667
1668
                d->m_huff_count[0][lit]++;
1669
1670
                lookahead_pos++;
1671
                dict_size = MZ_MIN(dict_size + 1, (mz_uint)TDEFL_LZ_DICT_SIZE);
1672
                cur_pos = (cur_pos + 1) & TDEFL_LZ_DICT_SIZE_MASK;
1673
                lookahead_size--;
1674
1675
                if (pLZ_code_buf > &d->m_lz_code_buf[TDEFL_LZ_CODE_BUF_SIZE - 8])
1676
                {
1677
                    int n;
1678
                    d->m_lookahead_pos = lookahead_pos;
1679
                    d->m_lookahead_size = lookahead_size;
1680
                    d->m_dict_size = dict_size;
1681
                    d->m_total_lz_bytes = total_lz_bytes;
1682
                    d->m_pLZ_code_buf = pLZ_code_buf;
1683
                    d->m_pLZ_flags = pLZ_flags;
1684
                    d->m_num_flags_left = num_flags_left;
1685
                    if ((n = tdefl_flush_block(d, 0)) != 0)
1686
                        return (n < 0) ? MZ_FALSE : MZ_TRUE;
1687
                    total_lz_bytes = d->m_total_lz_bytes;
1688
                    pLZ_code_buf = d->m_pLZ_code_buf;
1689
                    pLZ_flags = d->m_pLZ_flags;
1690
                    num_flags_left = d->m_num_flags_left;
1691
                }
1692
            }
1693
        }
1694
1695
        d->m_lookahead_pos = lookahead_pos;
1696
        d->m_lookahead_size = lookahead_size;
1697
        d->m_dict_size = dict_size;
1698
        d->m_total_lz_bytes = total_lz_bytes;
1699
        d->m_pLZ_code_buf = pLZ_code_buf;
1700
        d->m_pLZ_flags = pLZ_flags;
1701
        d->m_num_flags_left = num_flags_left;
1702
        return MZ_TRUE;
1703
    }
1704
#endif /* MINIZ_USE_UNALIGNED_LOADS_AND_STORES && MINIZ_LITTLE_ENDIAN */
1705
1706
    static MZ_FORCEINLINE void tdefl_record_literal(tdefl_compressor *d, mz_uint8 lit)
1707
147M
    {
1708
147M
        d->m_total_lz_bytes++;
1709
147M
        *d->m_pLZ_code_buf++ = lit;
1710
147M
        *d->m_pLZ_flags = (mz_uint8)(*d->m_pLZ_flags >> 1);
1711
147M
        if (--d->m_num_flags_left == 0)
1712
18.4M
        {
1713
18.4M
            d->m_num_flags_left = 8;
1714
18.4M
            d->m_pLZ_flags = d->m_pLZ_code_buf++;
1715
18.4M
        }
1716
147M
        d->m_huff_count[0][lit]++;
1717
147M
    }
1718
1719
    static MZ_FORCEINLINE void tdefl_record_match(tdefl_compressor *d, mz_uint match_len, mz_uint match_dist)
1720
1.96M
    {
1721
1.96M
        mz_uint32 s0, s1;
1722
1723
1.96M
        MZ_ASSERT((match_len >= TDEFL_MIN_MATCH_LEN) && (match_dist >= 1) && (match_dist <= TDEFL_LZ_DICT_SIZE));
1724
1725
1.96M
        d->m_total_lz_bytes += match_len;
1726
1727
1.96M
        d->m_pLZ_code_buf[0] = (mz_uint8)(match_len - TDEFL_MIN_MATCH_LEN);
1728
1729
1.96M
        match_dist -= 1;
1730
1.96M
        d->m_pLZ_code_buf[1] = (mz_uint8)(match_dist & 0xFF);
1731
1.96M
        d->m_pLZ_code_buf[2] = (mz_uint8)(match_dist >> 8);
1732
1.96M
        d->m_pLZ_code_buf += 3;
1733
1734
1.96M
        *d->m_pLZ_flags = (mz_uint8)((*d->m_pLZ_flags >> 1) | 0x80);
1735
1.96M
        if (--d->m_num_flags_left == 0)
1736
244k
        {
1737
244k
            d->m_num_flags_left = 8;
1738
244k
            d->m_pLZ_flags = d->m_pLZ_code_buf++;
1739
244k
        }
1740
1741
1.96M
        s0 = s_tdefl_small_dist_sym[match_dist & 511];
1742
1.96M
        s1 = s_tdefl_large_dist_sym[(match_dist >> 8) & 127];
1743
1.96M
        d->m_huff_count[1][(match_dist < 512) ? s0 : s1]++;
1744
1.96M
        d->m_huff_count[0][s_tdefl_len_sym[match_len - TDEFL_MIN_MATCH_LEN]]++;
1745
1.96M
    }
1746
1747
    static mz_bool tdefl_compress_normal(tdefl_compressor *d)
1748
194M
    {
1749
194M
        const mz_uint8 *pSrc = d->m_pSrc;
1750
194M
        size_t src_buf_left = d->m_src_buf_left;
1751
194M
        tdefl_flush flush = d->m_flush;
1752
1753
343M
        while ((src_buf_left) || ((flush) && (d->m_lookahead_size)))
1754
194M
        {
1755
194M
            mz_uint len_to_move, cur_match_dist, cur_match_len, cur_pos;
1756
            /* Update dictionary and hash chains. Keeps the lookahead size equal to TDEFL_MAX_MATCH_LEN. */
1757
194M
            if ((d->m_lookahead_size + d->m_dict_size) >= (TDEFL_MIN_MATCH_LEN - 1))
1758
194M
            {
1759
194M
                mz_uint dst_pos = (d->m_lookahead_pos + d->m_lookahead_size) & TDEFL_LZ_DICT_SIZE_MASK, ins_pos = d->m_lookahead_pos + d->m_lookahead_size - 2;
1760
194M
                mz_uint hash = (d->m_dict[ins_pos & TDEFL_LZ_DICT_SIZE_MASK] << TDEFL_LZ_HASH_SHIFT) ^ d->m_dict[(ins_pos + 1) & TDEFL_LZ_DICT_SIZE_MASK];
1761
194M
                mz_uint num_bytes_to_process = (mz_uint)MZ_MIN(src_buf_left, TDEFL_MAX_MATCH_LEN - d->m_lookahead_size);
1762
194M
                const mz_uint8 *pSrc_end = pSrc ? pSrc + num_bytes_to_process : NULL;
1763
194M
                src_buf_left -= num_bytes_to_process;
1764
194M
                d->m_lookahead_size += num_bytes_to_process;
1765
388M
                while (pSrc != pSrc_end)
1766
194M
                {
1767
194M
                    mz_uint8 c = *pSrc++;
1768
194M
                    d->m_dict[dst_pos] = c;
1769
194M
                    if (dst_pos < (TDEFL_MAX_MATCH_LEN - 1))
1770
1.73M
                        d->m_dict[TDEFL_LZ_DICT_SIZE + dst_pos] = c;
1771
194M
                    hash = ((hash << TDEFL_LZ_HASH_SHIFT) ^ c) & (TDEFL_LZ_HASH_SIZE - 1);
1772
194M
                    d->m_next[ins_pos & TDEFL_LZ_DICT_SIZE_MASK] = d->m_hash[hash];
1773
194M
                    d->m_hash[hash] = (mz_uint16)(ins_pos);
1774
194M
                    dst_pos = (dst_pos + 1) & TDEFL_LZ_DICT_SIZE_MASK;
1775
194M
                    ins_pos++;
1776
194M
                }
1777
194M
            }
1778
3.55k
            else
1779
3.55k
            {
1780
7.11k
                while ((src_buf_left) && (d->m_lookahead_size < TDEFL_MAX_MATCH_LEN))
1781
3.55k
                {
1782
3.55k
                    mz_uint8 c = *pSrc++;
1783
3.55k
                    mz_uint dst_pos = (d->m_lookahead_pos + d->m_lookahead_size) & TDEFL_LZ_DICT_SIZE_MASK;
1784
3.55k
                    src_buf_left--;
1785
3.55k
                    d->m_dict[dst_pos] = c;
1786
3.55k
                    if (dst_pos < (TDEFL_MAX_MATCH_LEN - 1))
1787
3.55k
                        d->m_dict[TDEFL_LZ_DICT_SIZE + dst_pos] = c;
1788
3.55k
                    if ((++d->m_lookahead_size + d->m_dict_size) >= TDEFL_MIN_MATCH_LEN)
1789
0
                    {
1790
0
                        mz_uint ins_pos = d->m_lookahead_pos + (d->m_lookahead_size - 1) - 2;
1791
0
                        mz_uint hash = ((d->m_dict[ins_pos & TDEFL_LZ_DICT_SIZE_MASK] << (TDEFL_LZ_HASH_SHIFT * 2)) ^ (d->m_dict[(ins_pos + 1) & TDEFL_LZ_DICT_SIZE_MASK] << TDEFL_LZ_HASH_SHIFT) ^ c) & (TDEFL_LZ_HASH_SIZE - 1);
1792
0
                        d->m_next[ins_pos & TDEFL_LZ_DICT_SIZE_MASK] = d->m_hash[hash];
1793
0
                        d->m_hash[hash] = (mz_uint16)(ins_pos);
1794
0
                    }
1795
3.55k
                }
1796
3.55k
            }
1797
194M
            d->m_dict_size = MZ_MIN(TDEFL_LZ_DICT_SIZE - d->m_lookahead_size, d->m_dict_size);
1798
194M
            if ((!flush) && (d->m_lookahead_size < TDEFL_MAX_MATCH_LEN))
1799
45.2M
                break;
1800
1801
            /* Simple lazy/greedy parsing state machine. */
1802
149M
            len_to_move = 1;
1803
149M
            cur_match_dist = 0;
1804
149M
            cur_match_len = d->m_saved_match_len ? d->m_saved_match_len : (TDEFL_MIN_MATCH_LEN - 1);
1805
149M
            cur_pos = d->m_lookahead_pos & TDEFL_LZ_DICT_SIZE_MASK;
1806
149M
            if (d->m_flags & (TDEFL_RLE_MATCHES | TDEFL_FORCE_ALL_RAW_BLOCKS))
1807
0
            {
1808
0
                if ((d->m_dict_size) && (!(d->m_flags & TDEFL_FORCE_ALL_RAW_BLOCKS)))
1809
0
                {
1810
0
                    mz_uint8 c = d->m_dict[(cur_pos - 1) & TDEFL_LZ_DICT_SIZE_MASK];
1811
0
                    cur_match_len = 0;
1812
0
                    while (cur_match_len < d->m_lookahead_size)
1813
0
                    {
1814
0
                        if (d->m_dict[cur_pos + cur_match_len] != c)
1815
0
                            break;
1816
0
                        cur_match_len++;
1817
0
                    }
1818
0
                    if (cur_match_len < TDEFL_MIN_MATCH_LEN)
1819
0
                        cur_match_len = 0;
1820
0
                    else
1821
0
                        cur_match_dist = 1;
1822
0
                }
1823
0
            }
1824
149M
            else
1825
149M
            {
1826
149M
                tdefl_find_match(d, d->m_lookahead_pos, d->m_dict_size, d->m_lookahead_size, &cur_match_dist, &cur_match_len);
1827
149M
            }
1828
149M
            if (((cur_match_len == TDEFL_MIN_MATCH_LEN) && (cur_match_dist >= 8U * 1024U)) || (cur_pos == cur_match_dist) || ((d->m_flags & TDEFL_FILTER_MATCHES) && (cur_match_len <= 5)))
1829
270k
            {
1830
270k
                cur_match_dist = cur_match_len = 0;
1831
270k
            }
1832
149M
            if (d->m_saved_match_len)
1833
0
            {
1834
0
                if (cur_match_len > d->m_saved_match_len)
1835
0
                {
1836
0
                    tdefl_record_literal(d, (mz_uint8)d->m_saved_lit);
1837
0
                    if (cur_match_len >= 128)
1838
0
                    {
1839
0
                        tdefl_record_match(d, cur_match_len, cur_match_dist);
1840
0
                        d->m_saved_match_len = 0;
1841
0
                        len_to_move = cur_match_len;
1842
0
                    }
1843
0
                    else
1844
0
                    {
1845
0
                        d->m_saved_lit = d->m_dict[cur_pos];
1846
0
                        d->m_saved_match_dist = cur_match_dist;
1847
0
                        d->m_saved_match_len = cur_match_len;
1848
0
                    }
1849
0
                }
1850
0
                else
1851
0
                {
1852
0
                    tdefl_record_match(d, d->m_saved_match_len, d->m_saved_match_dist);
1853
0
                    len_to_move = d->m_saved_match_len - 1;
1854
0
                    d->m_saved_match_len = 0;
1855
0
                }
1856
0
            }
1857
149M
            else if (!cur_match_dist)
1858
147M
                tdefl_record_literal(d, d->m_dict[MZ_MIN(cur_pos, sizeof(d->m_dict) - 1)]);
1859
1.96M
            else if ((d->m_greedy_parsing) || (d->m_flags & TDEFL_RLE_MATCHES) || (cur_match_len >= 128))
1860
1.96M
            {
1861
1.96M
                tdefl_record_match(d, cur_match_len, cur_match_dist);
1862
1.96M
                len_to_move = cur_match_len;
1863
1.96M
            }
1864
0
            else
1865
0
            {
1866
0
                d->m_saved_lit = d->m_dict[MZ_MIN(cur_pos, sizeof(d->m_dict) - 1)];
1867
0
                d->m_saved_match_dist = cur_match_dist;
1868
0
                d->m_saved_match_len = cur_match_len;
1869
0
            }
1870
            /* Move the lookahead forward by len_to_move bytes. */
1871
149M
            d->m_lookahead_pos += len_to_move;
1872
149M
            MZ_ASSERT(d->m_lookahead_size >= len_to_move);
1873
149M
            d->m_lookahead_size -= len_to_move;
1874
149M
            d->m_dict_size = MZ_MIN(d->m_dict_size + len_to_move, (mz_uint)TDEFL_LZ_DICT_SIZE);
1875
            /* Check if it's time to flush the current LZ codes to the internal output buffer. */
1876
149M
            if ((d->m_pLZ_code_buf > &d->m_lz_code_buf[TDEFL_LZ_CODE_BUF_SIZE - 8]) ||
1877
149M
                ((d->m_total_lz_bytes > 31 * 1024) && (((((mz_uint)(d->m_pLZ_code_buf - d->m_lz_code_buf) * 115) >> 7) >= d->m_total_lz_bytes) || (d->m_flags & TDEFL_FORCE_ALL_RAW_BLOCKS))))
1878
4.22k
            {
1879
4.22k
                int n;
1880
4.22k
                d->m_pSrc = pSrc;
1881
4.22k
                d->m_src_buf_left = src_buf_left;
1882
4.22k
                if ((n = tdefl_flush_block(d, 0)) != 0)
1883
4.22k
                    return (n < 0) ? MZ_FALSE : MZ_TRUE;
1884
4.22k
            }
1885
149M
        }
1886
1887
194M
        d->m_pSrc = pSrc;
1888
194M
        d->m_src_buf_left = src_buf_left;
1889
194M
        return MZ_TRUE;
1890
194M
    }
1891
1892
    static tdefl_status tdefl_flush_output_buffer(tdefl_compressor *d)
1893
332M
    {
1894
332M
        if (d->m_pIn_buf_size)
1895
332M
        {
1896
332M
            *d->m_pIn_buf_size = d->m_pSrc - (const mz_uint8 *)d->m_pIn_buf;
1897
332M
        }
1898
1899
332M
        if (d->m_pOut_buf_size)
1900
332M
        {
1901
332M
            size_t n = MZ_MIN(*d->m_pOut_buf_size - d->m_out_buf_ofs, d->m_output_flush_remaining);
1902
332M
            memcpy((mz_uint8 *)d->m_pOut_buf + d->m_out_buf_ofs, d->m_output_buf + d->m_output_flush_ofs, n);
1903
332M
            d->m_output_flush_ofs += (mz_uint)n;
1904
332M
            d->m_output_flush_remaining -= (mz_uint)n;
1905
332M
            d->m_out_buf_ofs += n;
1906
1907
332M
            *d->m_pOut_buf_size = d->m_out_buf_ofs;
1908
332M
        }
1909
1910
332M
        return (d->m_finished && !d->m_output_flush_remaining) ? TDEFL_STATUS_DONE : TDEFL_STATUS_OKAY;
1911
332M
    }
1912
1913
    tdefl_status tdefl_compress(tdefl_compressor *d, const void *pIn_buf, size_t *pIn_buf_size, void *pOut_buf, size_t *pOut_buf_size, tdefl_flush flush)
1914
332M
    {
1915
332M
        if (!d)
1916
0
        {
1917
0
            if (pIn_buf_size)
1918
0
                *pIn_buf_size = 0;
1919
0
            if (pOut_buf_size)
1920
0
                *pOut_buf_size = 0;
1921
0
            return TDEFL_STATUS_BAD_PARAM;
1922
0
        }
1923
1924
332M
        d->m_pIn_buf = pIn_buf;
1925
332M
        d->m_pIn_buf_size = pIn_buf_size;
1926
332M
        d->m_pOut_buf = pOut_buf;
1927
332M
        d->m_pOut_buf_size = pOut_buf_size;
1928
332M
        d->m_pSrc = (const mz_uint8 *)(pIn_buf);
1929
332M
        d->m_src_buf_left = pIn_buf_size ? *pIn_buf_size : 0;
1930
332M
        d->m_out_buf_ofs = 0;
1931
332M
        d->m_flush = flush;
1932
1933
332M
        if (((d->m_pPut_buf_func != NULL) == ((pOut_buf != NULL) || (pOut_buf_size != NULL))) || (d->m_prev_return_status != TDEFL_STATUS_OKAY) ||
1934
332M
            (d->m_wants_to_finish && (flush != TDEFL_FINISH)) || (pIn_buf_size && *pIn_buf_size && !pIn_buf) || (pOut_buf_size && *pOut_buf_size && !pOut_buf))
1935
0
        {
1936
0
            if (pIn_buf_size)
1937
0
                *pIn_buf_size = 0;
1938
0
            if (pOut_buf_size)
1939
0
                *pOut_buf_size = 0;
1940
0
            return (d->m_prev_return_status = TDEFL_STATUS_BAD_PARAM);
1941
0
        }
1942
332M
        d->m_wants_to_finish |= (flush == TDEFL_FINISH);
1943
1944
332M
        if ((d->m_output_flush_remaining) || (d->m_finished))
1945
138M
            return (d->m_prev_return_status = tdefl_flush_output_buffer(d));
1946
1947
#if MINIZ_USE_UNALIGNED_LOADS_AND_STORES && MINIZ_LITTLE_ENDIAN
1948
        if (((d->m_flags & TDEFL_MAX_PROBES_MASK) == 1) &&
1949
            ((d->m_flags & TDEFL_GREEDY_PARSING_FLAG) != 0) &&
1950
            ((d->m_flags & (TDEFL_FILTER_MATCHES | TDEFL_FORCE_ALL_RAW_BLOCKS | TDEFL_RLE_MATCHES)) == 0))
1951
        {
1952
            if (!tdefl_compress_fast(d))
1953
                return d->m_prev_return_status;
1954
        }
1955
        else
1956
#endif /* #if MINIZ_USE_UNALIGNED_LOADS_AND_STORES && MINIZ_LITTLE_ENDIAN */
1957
194M
        {
1958
194M
            if (!tdefl_compress_normal(d))
1959
0
                return d->m_prev_return_status;
1960
194M
        }
1961
1962
194M
        if ((d->m_flags & (TDEFL_WRITE_ZLIB_HEADER | TDEFL_COMPUTE_ADLER32)) && (pIn_buf))
1963
194M
            d->m_adler32 = (mz_uint32)mz_adler32(d->m_adler32, (const mz_uint8 *)pIn_buf, d->m_pSrc - (const mz_uint8 *)pIn_buf);
1964
1965
194M
        if ((flush) && (!d->m_lookahead_size) && (!d->m_src_buf_left) && (!d->m_output_flush_remaining))
1966
1.77k
        {
1967
1.77k
            if (tdefl_flush_block(d, flush) < 0)
1968
0
                return d->m_prev_return_status;
1969
1.77k
            d->m_finished = (flush == TDEFL_FINISH);
1970
1.77k
            if (flush == TDEFL_FULL_FLUSH)
1971
0
            {
1972
0
                MZ_CLEAR_ARR(d->m_hash);
1973
0
                MZ_CLEAR_ARR(d->m_next);
1974
0
                d->m_dict_size = 0;
1975
0
            }
1976
1.77k
        }
1977
1978
194M
        return (d->m_prev_return_status = tdefl_flush_output_buffer(d));
1979
194M
    }
1980
1981
    tdefl_status tdefl_compress_buffer(tdefl_compressor *d, const void *pIn_buf, size_t in_buf_size, tdefl_flush flush)
1982
0
    {
1983
0
        MZ_ASSERT(d->m_pPut_buf_func);
1984
0
        return tdefl_compress(d, pIn_buf, &in_buf_size, NULL, NULL, flush);
1985
0
    }
1986
1987
    tdefl_status tdefl_init(tdefl_compressor *d, tdefl_put_buf_func_ptr pPut_buf_func, void *pPut_buf_user, int flags)
1988
1.77k
    {
1989
1.77k
        d->m_pPut_buf_func = pPut_buf_func;
1990
1.77k
        d->m_pPut_buf_user = pPut_buf_user;
1991
1.77k
        d->m_flags = (mz_uint)(flags);
1992
1.77k
        d->m_max_probes[0] = 1 + ((flags & 0xFFF) + 2) / 3;
1993
1.77k
        d->m_greedy_parsing = (flags & TDEFL_GREEDY_PARSING_FLAG) != 0;
1994
1.77k
        d->m_max_probes[1] = 1 + (((flags & 0xFFF) >> 2) + 2) / 3;
1995
1.77k
        if (!(flags & TDEFL_NONDETERMINISTIC_PARSING_FLAG))
1996
1.77k
            MZ_CLEAR_ARR(d->m_hash);
1997
1.77k
        d->m_lookahead_pos = d->m_lookahead_size = d->m_dict_size = d->m_total_lz_bytes = d->m_lz_code_buf_dict_pos = d->m_bits_in = 0;
1998
1.77k
        d->m_output_flush_ofs = d->m_output_flush_remaining = d->m_finished = d->m_block_index = d->m_bit_buffer = d->m_wants_to_finish = 0;
1999
1.77k
        d->m_pLZ_code_buf = d->m_lz_code_buf + 1;
2000
1.77k
        d->m_pLZ_flags = d->m_lz_code_buf;
2001
1.77k
        *d->m_pLZ_flags = 0;
2002
1.77k
        d->m_num_flags_left = 8;
2003
1.77k
        d->m_pOutput_buf = d->m_output_buf;
2004
1.77k
        d->m_pOutput_buf_end = d->m_output_buf;
2005
1.77k
        d->m_prev_return_status = TDEFL_STATUS_OKAY;
2006
1.77k
        d->m_saved_match_dist = d->m_saved_match_len = d->m_saved_lit = 0;
2007
1.77k
        d->m_adler32 = 1;
2008
1.77k
        d->m_pIn_buf = NULL;
2009
1.77k
        d->m_pOut_buf = NULL;
2010
1.77k
        d->m_pIn_buf_size = NULL;
2011
1.77k
        d->m_pOut_buf_size = NULL;
2012
1.77k
        d->m_flush = TDEFL_NO_FLUSH;
2013
1.77k
        d->m_pSrc = NULL;
2014
1.77k
        d->m_src_buf_left = 0;
2015
1.77k
        d->m_out_buf_ofs = 0;
2016
1.77k
        if (!(flags & TDEFL_NONDETERMINISTIC_PARSING_FLAG))
2017
1.77k
            MZ_CLEAR_ARR(d->m_dict);
2018
1.77k
        memset(&d->m_huff_count[0][0], 0, sizeof(d->m_huff_count[0][0]) * TDEFL_MAX_HUFF_SYMBOLS_0);
2019
1.77k
        memset(&d->m_huff_count[1][0], 0, sizeof(d->m_huff_count[1][0]) * TDEFL_MAX_HUFF_SYMBOLS_1);
2020
1.77k
        return TDEFL_STATUS_OKAY;
2021
1.77k
    }
2022
2023
    tdefl_status tdefl_get_prev_return_status(tdefl_compressor *d)
2024
0
    {
2025
0
        return d->m_prev_return_status;
2026
0
    }
2027
2028
    mz_uint32 tdefl_get_adler32(tdefl_compressor *d)
2029
332M
    {
2030
332M
        return d->m_adler32;
2031
332M
    }
2032
2033
    mz_bool tdefl_compress_mem_to_output(const void *pBuf, size_t buf_len, tdefl_put_buf_func_ptr pPut_buf_func, void *pPut_buf_user, int flags)
2034
0
    {
2035
0
        tdefl_compressor *pComp;
2036
0
        mz_bool succeeded;
2037
0
        if (((buf_len) && (!pBuf)) || (!pPut_buf_func))
2038
0
            return MZ_FALSE;
2039
0
        pComp = (tdefl_compressor *)MZ_MALLOC(sizeof(tdefl_compressor));
2040
0
        if (!pComp)
2041
0
            return MZ_FALSE;
2042
0
        succeeded = (tdefl_init(pComp, pPut_buf_func, pPut_buf_user, flags) == TDEFL_STATUS_OKAY);
2043
0
        succeeded = succeeded && (tdefl_compress_buffer(pComp, pBuf, buf_len, TDEFL_FINISH) == TDEFL_STATUS_DONE);
2044
0
        MZ_FREE(pComp);
2045
0
        return succeeded;
2046
0
    }
2047
2048
    typedef struct
2049
    {
2050
        size_t m_size, m_capacity;
2051
        mz_uint8 *m_pBuf;
2052
        mz_bool m_expandable;
2053
    } tdefl_output_buffer;
2054
2055
    static mz_bool tdefl_output_buffer_putter(const void *pBuf, int len, void *pUser)
2056
0
    {
2057
0
        tdefl_output_buffer *p = (tdefl_output_buffer *)pUser;
2058
0
        size_t new_size = p->m_size + len;
2059
0
        if (new_size > p->m_capacity)
2060
0
        {
2061
0
            size_t new_capacity = p->m_capacity;
2062
0
            mz_uint8 *pNew_buf;
2063
0
            if (!p->m_expandable)
2064
0
                return MZ_FALSE;
2065
0
            do
2066
0
            {
2067
0
                new_capacity = MZ_MAX(128U, new_capacity << 1U);
2068
0
            } while (new_size > new_capacity);
2069
0
            pNew_buf = (mz_uint8 *)MZ_REALLOC(p->m_pBuf, new_capacity);
2070
0
            if (!pNew_buf)
2071
0
                return MZ_FALSE;
2072
0
            p->m_pBuf = pNew_buf;
2073
0
            p->m_capacity = new_capacity;
2074
0
        }
2075
0
        memcpy((mz_uint8 *)p->m_pBuf + p->m_size, pBuf, len);
2076
0
        p->m_size = new_size;
2077
0
        return MZ_TRUE;
2078
0
    }
2079
2080
    void *tdefl_compress_mem_to_heap(const void *pSrc_buf, size_t src_buf_len, size_t *pOut_len, int flags)
2081
0
    {
2082
0
        tdefl_output_buffer out_buf;
2083
0
        MZ_CLEAR_OBJ(out_buf);
2084
0
        if (!pOut_len)
2085
0
            return MZ_FALSE;
2086
0
        else
2087
0
            *pOut_len = 0;
2088
0
        out_buf.m_expandable = MZ_TRUE;
2089
0
        if (!tdefl_compress_mem_to_output(pSrc_buf, src_buf_len, tdefl_output_buffer_putter, &out_buf, flags))
2090
0
            return NULL;
2091
0
        *pOut_len = out_buf.m_size;
2092
0
        return out_buf.m_pBuf;
2093
0
    }
2094
2095
    size_t tdefl_compress_mem_to_mem(void *pOut_buf, size_t out_buf_len, const void *pSrc_buf, size_t src_buf_len, int flags)
2096
0
    {
2097
0
        tdefl_output_buffer out_buf;
2098
0
        MZ_CLEAR_OBJ(out_buf);
2099
0
        if (!pOut_buf)
2100
0
            return 0;
2101
0
        out_buf.m_pBuf = (mz_uint8 *)pOut_buf;
2102
0
        out_buf.m_capacity = out_buf_len;
2103
0
        if (!tdefl_compress_mem_to_output(pSrc_buf, src_buf_len, tdefl_output_buffer_putter, &out_buf, flags))
2104
0
            return 0;
2105
0
        return out_buf.m_size;
2106
0
    }
2107
2108
    /* level may actually range from [0,10] (10 is a "hidden" max level, where we want a bit more compression and it's fine if throughput to fall off a cliff on some files). */
2109
    mz_uint tdefl_create_comp_flags_from_zip_params(int level, int window_bits, int strategy)
2110
1.77k
    {
2111
1.77k
        mz_uint comp_flags = s_tdefl_num_probes[(level >= 0) ? MZ_MIN(10, level) : MZ_DEFAULT_LEVEL] | ((level <= 3) ? TDEFL_GREEDY_PARSING_FLAG : 0);
2112
1.77k
        if (window_bits > 0)
2113
1.77k
            comp_flags |= TDEFL_WRITE_ZLIB_HEADER;
2114
2115
1.77k
        if (!level)
2116
0
            comp_flags |= TDEFL_FORCE_ALL_RAW_BLOCKS;
2117
1.77k
        else if (strategy == MZ_FILTERED)
2118
0
            comp_flags |= TDEFL_FILTER_MATCHES;
2119
1.77k
        else if (strategy == MZ_HUFFMAN_ONLY)
2120
0
            comp_flags &= ~TDEFL_MAX_PROBES_MASK;
2121
1.77k
        else if (strategy == MZ_FIXED)
2122
0
            comp_flags |= TDEFL_FORCE_ALL_STATIC_BLOCKS;
2123
1.77k
        else if (strategy == MZ_RLE)
2124
0
            comp_flags |= TDEFL_RLE_MATCHES;
2125
2126
1.77k
        return comp_flags;
2127
1.77k
    }
2128
2129
#ifdef _MSC_VER
2130
#pragma warning(push)
2131
#pragma warning(disable : 4204) /* nonstandard extension used : non-constant aggregate initializer (also supported by GNU C and C99, so no big deal) */
2132
#endif
2133
2134
    /* Simple PNG writer function by Alex Evans, 2011. Released into the public domain: https://gist.github.com/908299, more context at
2135
     http://altdevblogaday.org/2011/04/06/a-smaller-jpg-encoder/.
2136
     This is actually a modification of Alex's original code so PNG files generated by this function pass pngcheck. */
2137
    void *tdefl_write_image_to_png_file_in_memory_ex(const void *pImage, int w, int h, int num_chans, size_t *pLen_out, mz_uint level, mz_bool flip)
2138
0
    {
2139
        /* Using a local copy of this array here in case MINIZ_NO_ZLIB_APIS was defined. */
2140
0
        static const mz_uint s_tdefl_png_num_probes[11] = { 0, 1, 6, 32, 16, 32, 128, 256, 512, 768, 1500 };
2141
0
        tdefl_compressor *pComp = (tdefl_compressor *)MZ_MALLOC(sizeof(tdefl_compressor));
2142
0
        tdefl_output_buffer out_buf;
2143
0
        int i, bpl = w * num_chans, y, z;
2144
0
        mz_uint32 c;
2145
0
        *pLen_out = 0;
2146
0
        if (!pComp)
2147
0
            return NULL;
2148
0
        MZ_CLEAR_OBJ(out_buf);
2149
0
        out_buf.m_expandable = MZ_TRUE;
2150
0
        out_buf.m_capacity = 57 + MZ_MAX(64, (1 + bpl) * h);
2151
0
        if (NULL == (out_buf.m_pBuf = (mz_uint8 *)MZ_MALLOC(out_buf.m_capacity)))
2152
0
        {
2153
0
            MZ_FREE(pComp);
2154
0
            return NULL;
2155
0
        }
2156
        /* write dummy header */
2157
0
        for (z = 41; z; --z)
2158
0
            tdefl_output_buffer_putter(&z, 1, &out_buf);
2159
        /* compress image data */
2160
0
        tdefl_init(pComp, tdefl_output_buffer_putter, &out_buf, s_tdefl_png_num_probes[MZ_MIN(10, level)] | TDEFL_WRITE_ZLIB_HEADER);
2161
0
        for (y = 0; y < h; ++y)
2162
0
        {
2163
0
            tdefl_compress_buffer(pComp, &z, 1, TDEFL_NO_FLUSH);
2164
0
            tdefl_compress_buffer(pComp, (mz_uint8 *)pImage + (flip ? (h - 1 - y) : y) * bpl, bpl, TDEFL_NO_FLUSH);
2165
0
        }
2166
0
        if (tdefl_compress_buffer(pComp, NULL, 0, TDEFL_FINISH) != TDEFL_STATUS_DONE)
2167
0
        {
2168
0
            MZ_FREE(pComp);
2169
0
            MZ_FREE(out_buf.m_pBuf);
2170
0
            return NULL;
2171
0
        }
2172
        /* write real header */
2173
0
        *pLen_out = out_buf.m_size - 41;
2174
0
        {
2175
0
            static const mz_uint8 chans[] = { 0x00, 0x00, 0x04, 0x02, 0x06 };
2176
0
            mz_uint8 pnghdr[41] = { 0x89, 0x50, 0x4e, 0x47, 0x0d,
2177
0
                                    0x0a, 0x1a, 0x0a, 0x00, 0x00,
2178
0
                                    0x00, 0x0d, 0x49, 0x48, 0x44,
2179
0
                                    0x52, 0x00, 0x00, 0x00, 0x00,
2180
0
                                    0x00, 0x00, 0x00, 0x00, 0x08,
2181
0
                                    0x00, 0x00, 0x00, 0x00, 0x00,
2182
0
                                    0x00, 0x00, 0x00, 0x00, 0x00,
2183
0
                                    0x00, 0x00, 0x49, 0x44, 0x41,
2184
0
                                    0x54 };
2185
0
            pnghdr[18] = (mz_uint8)(w >> 8);
2186
0
            pnghdr[19] = (mz_uint8)w;
2187
0
            pnghdr[22] = (mz_uint8)(h >> 8);
2188
0
            pnghdr[23] = (mz_uint8)h;
2189
0
            pnghdr[25] = chans[num_chans];
2190
0
            pnghdr[33] = (mz_uint8)(*pLen_out >> 24);
2191
0
            pnghdr[34] = (mz_uint8)(*pLen_out >> 16);
2192
0
            pnghdr[35] = (mz_uint8)(*pLen_out >> 8);
2193
0
            pnghdr[36] = (mz_uint8)*pLen_out;
2194
0
            c = (mz_uint32)mz_crc32(MZ_CRC32_INIT, pnghdr + 12, 17);
2195
0
            for (i = 0; i < 4; ++i, c <<= 8)
2196
0
                ((mz_uint8 *)(pnghdr + 29))[i] = (mz_uint8)(c >> 24);
2197
0
            memcpy(out_buf.m_pBuf, pnghdr, 41);
2198
0
        }
2199
        /* write footer (IDAT CRC-32, followed by IEND chunk) */
2200
0
        if (!tdefl_output_buffer_putter("\0\0\0\0\0\0\0\0\x49\x45\x4e\x44\xae\x42\x60\x82", 16, &out_buf))
2201
0
        {
2202
0
            *pLen_out = 0;
2203
0
            MZ_FREE(pComp);
2204
0
            MZ_FREE(out_buf.m_pBuf);
2205
0
            return NULL;
2206
0
        }
2207
0
        c = (mz_uint32)mz_crc32(MZ_CRC32_INIT, out_buf.m_pBuf + 41 - 4, *pLen_out + 4);
2208
0
        for (i = 0; i < 4; ++i, c <<= 8)
2209
0
            (out_buf.m_pBuf + out_buf.m_size - 16)[i] = (mz_uint8)(c >> 24);
2210
        /* compute final size of file, grab compressed data buffer and return */
2211
0
        *pLen_out += 57;
2212
0
        MZ_FREE(pComp);
2213
0
        return out_buf.m_pBuf;
2214
0
    }
2215
    void *tdefl_write_image_to_png_file_in_memory(const void *pImage, int w, int h, int num_chans, size_t *pLen_out)
2216
0
    {
2217
        /* Level 6 corresponds to TDEFL_DEFAULT_MAX_PROBES or MZ_DEFAULT_LEVEL (but we can't depend on MZ_DEFAULT_LEVEL being available in case the zlib API's where #defined out) */
2218
0
        return tdefl_write_image_to_png_file_in_memory_ex(pImage, w, h, num_chans, pLen_out, 6, MZ_FALSE);
2219
0
    }
2220
2221
#ifndef MINIZ_NO_MALLOC
2222
    /* Allocate the tdefl_compressor and tinfl_decompressor structures in C so that */
2223
    /* non-C language bindings to tdefL_ and tinfl_ API don't need to worry about */
2224
    /* structure size and allocation mechanism. */
2225
    tdefl_compressor *tdefl_compressor_alloc(void)
2226
0
    {
2227
0
        return (tdefl_compressor *)MZ_MALLOC(sizeof(tdefl_compressor));
2228
0
    }
2229
2230
    void tdefl_compressor_free(tdefl_compressor *pComp)
2231
0
    {
2232
0
        MZ_FREE(pComp);
2233
0
    }
2234
#endif
2235
2236
#ifdef _MSC_VER
2237
#pragma warning(pop)
2238
#endif
2239
2240
#ifdef __cplusplus
2241
}
2242
#endif
2243
2244
#endif /*#ifndef MINIZ_NO_DEFLATE_APIS*/
2245
 /**************************************************************************
2246
 *
2247
 * Copyright 2013-2014 RAD Game Tools and Valve Software
2248
 * Copyright 2010-2014 Rich Geldreich and Tenacious Software LLC
2249
 * All Rights Reserved.
2250
 *
2251
 * Permission is hereby granted, free of charge, to any person obtaining a copy
2252
 * of this software and associated documentation files (the "Software"), to deal
2253
 * in the Software without restriction, including without limitation the rights
2254
 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
2255
 * copies of the Software, and to permit persons to whom the Software is
2256
 * furnished to do so, subject to the following conditions:
2257
 *
2258
 * The above copyright notice and this permission notice shall be included in
2259
 * all copies or substantial portions of the Software.
2260
 *
2261
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
2262
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
2263
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
2264
 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
2265
 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
2266
 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
2267
 * THE SOFTWARE.
2268
 *
2269
 **************************************************************************/
2270
2271
2272
2273
#ifndef MINIZ_NO_INFLATE_APIS
2274
2275
#ifdef __cplusplus
2276
extern "C"
2277
{
2278
#endif
2279
2280
    /* ------------------- Low-level Decompression (completely independent from all compression API's) */
2281
2282
28.3M
#define TINFL_MEMCPY(d, s, l) memcpy(d, s, l)
2283
187k
#define TINFL_MEMSET(p, c, l) memset(p, c, l)
2284
2285
#define TINFL_CR_BEGIN  \
2286
276M
    switch (r->m_state) \
2287
276M
    {                   \
2288
1.77k
        case 0:
2289
#define TINFL_CR_RETURN(state_index, result) \
2290
138M
    do                                       \
2291
138M
    {                                        \
2292
276M
        status = result;                     \
2293
138M
        r->m_state = state_index;            \
2294
138M
        goto common_exit;                    \
2295
138M
        case state_index:;                   \
2296
138M
    }                                        \
2297
138M
    MZ_MACRO_END
2298
#define TINFL_CR_RETURN_FOREVER(state_index, result) \
2299
0
    do                                               \
2300
0
    {                                                \
2301
0
        for (;;)                                     \
2302
0
        {                                            \
2303
0
            TINFL_CR_RETURN(state_index, result);    \
2304
0
        }                                            \
2305
0
    }                                                \
2306
679
    MZ_MACRO_END
2307
138M
#define TINFL_CR_FINISH }
2308
2309
#define TINFL_GET_BYTE(state_index, c)                                                                                                                           \
2310
109M
    do                                                                                                                                                           \
2311
109M
    {                                                                                                                                                            \
2312
219M
        while (pIn_buf_cur >= pIn_buf_end)                                                                                                                       \
2313
109M
        {                                                                                                                                                        \
2314
109M
            TINFL_CR_RETURN(state_index, (decomp_flags & TINFL_FLAG_HAS_MORE_INPUT) ? TINFL_STATUS_NEEDS_MORE_INPUT : TINFL_STATUS_FAILED_CANNOT_MAKE_PROGRESS); \
2315
109M
        }                                                                                                                                                        \
2316
109M
        c = *pIn_buf_cur++;                                                                                                                                      \
2317
109M
    }                                                                                                                                                            \
2318
221M
    MZ_MACRO_END
2319
2320
#define TINFL_NEED_BITS(state_index, n)                \
2321
1.62M
    do                                                 \
2322
1.91M
    {                                                  \
2323
1.91M
        mz_uint c;                                     \
2324
1.91M
        TINFL_GET_BYTE(state_index, c);                \
2325
1.91M
        bit_buf |= (((tinfl_bit_buf_t)c) << num_bits); \
2326
1.91M
        num_bits += 8;                                 \
2327
1.91M
    } while (num_bits < (mz_uint)(n))
2328
#define TINFL_SKIP_BITS(state_index, n)      \
2329
2.01k
    do                                       \
2330
2.01k
    {                                        \
2331
2.01k
        if (num_bits < (mz_uint)(n))         \
2332
2.01k
        {                                    \
2333
0
            TINFL_NEED_BITS(state_index, n); \
2334
0
        }                                    \
2335
2.01k
        bit_buf >>= (n);                     \
2336
2.01k
        num_bits -= (n);                     \
2337
2.01k
    }                                        \
2338
3.11k
    MZ_MACRO_END
2339
#define TINFL_GET_BITS(state_index, b, n)    \
2340
2.45M
    do                                       \
2341
2.45M
    {                                        \
2342
2.45M
        if (num_bits < (mz_uint)(n))         \
2343
2.45M
        {                                    \
2344
1.62M
            TINFL_NEED_BITS(state_index, n); \
2345
1.62M
        }                                    \
2346
2.45M
        b = bit_buf & ((1 << (n)) - 1);      \
2347
2.45M
        bit_buf >>= (n);                     \
2348
2.45M
        num_bits -= (n);                     \
2349
2.45M
    }                                        \
2350
2.45M
    MZ_MACRO_END
2351
2352
/* TINFL_HUFF_BITBUF_FILL() is only used rarely, when the number of bytes remaining in the input buffer falls below 2. */
2353
/* It reads just enough bytes from the input stream that are needed to decode the next Huffman code (and absolutely no more). It works by trying to fully decode a */
2354
/* Huffman code by using whatever bits are currently present in the bit buffer. If this fails, it reads another byte, and tries again until it succeeds or until the */
2355
/* bit buffer contains >=15 bits (deflate's max. Huffman code size). */
2356
#define TINFL_HUFF_BITBUF_FILL(state_index, pLookUp, pTree)          \
2357
123M
    do                                                               \
2358
219M
    {                                                                \
2359
219M
        temp = pLookUp[bit_buf & (TINFL_FAST_LOOKUP_SIZE - 1)];      \
2360
219M
        if (temp >= 0)                                               \
2361
219M
        {                                                            \
2362
218M
            code_len = temp >> 9;                                    \
2363
218M
            if ((code_len) && (num_bits >= code_len))                \
2364
218M
                break;                                               \
2365
218M
        }                                                            \
2366
219M
        else if (num_bits > TINFL_FAST_LOOKUP_BITS)                  \
2367
262k
        {                                                            \
2368
143k
            code_len = TINFL_FAST_LOOKUP_BITS;                       \
2369
143k
            do                                                       \
2370
225k
            {                                                        \
2371
225k
                temp = pTree[~temp + ((bit_buf >> code_len++) & 1)]; \
2372
225k
            } while ((temp < 0) && (num_bits >= (code_len + 1)));    \
2373
143k
            if (temp >= 0)                                           \
2374
143k
                break;                                               \
2375
143k
        }                                                            \
2376
219M
        TINFL_GET_BYTE(state_index, c);                              \
2377
107M
        bit_buf |= (((tinfl_bit_buf_t)c) << num_bits);               \
2378
107M
        num_bits += 8;                                               \
2379
107M
    } while (num_bits < 15);
2380
2381
/* TINFL_HUFF_DECODE() decodes the next Huffman coded symbol. It's more complex than you would initially expect because the zlib API expects the decompressor to never read */
2382
/* beyond the final byte of the deflate stream. (In other words, when this macro wants to read another byte from the input, it REALLY needs another byte in order to fully */
2383
/* decode the next Huffman code.) Handling this properly is particularly important on raw deflate (non-zlib) streams, which aren't followed by a byte aligned adler-32. */
2384
/* The slow path is only executed at the very end of the input buffer. */
2385
/* v1.16: The original macro handled the case at the very end of the passed-in input buffer, but we also need to handle the case where the user passes in 1+zillion bytes */
2386
/* following the deflate data and our non-conservative read-ahead path won't kick in here on this code. This is much trickier. */
2387
#define TINFL_HUFF_DECODE(state_index, sym, pLookUp, pTree)                                                                         \
2388
123M
    do                                                                                                                              \
2389
123M
    {                                                                                                                               \
2390
123M
        int temp;                                                                                                                   \
2391
123M
        mz_uint code_len, c;                                                                                                        \
2392
123M
        if (num_bits < 15)                                                                                                          \
2393
123M
        {                                                                                                                           \
2394
123M
            if ((pIn_buf_end - pIn_buf_cur) < 2)                                                                                    \
2395
123M
            {                                                                                                                       \
2396
123M
                TINFL_HUFF_BITBUF_FILL(state_index, pLookUp, pTree);                                                                \
2397
123M
            }                                                                                                                       \
2398
123M
            else                                                                                                                    \
2399
123M
            {                                                                                                                       \
2400
0
                bit_buf |= (((tinfl_bit_buf_t)pIn_buf_cur[0]) << num_bits) | (((tinfl_bit_buf_t)pIn_buf_cur[1]) << (num_bits + 8)); \
2401
0
                pIn_buf_cur += 2;                                                                                                   \
2402
0
                num_bits += 16;                                                                                                     \
2403
0
            }                                                                                                                       \
2404
123M
        }                                                                                                                           \
2405
123M
        if ((temp = pLookUp[bit_buf & (TINFL_FAST_LOOKUP_SIZE - 1)]) >= 0)                                                          \
2406
123M
            code_len = temp >> 9, temp &= 511;                                                                                      \
2407
123M
        else                                                                                                                        \
2408
123M
        {                                                                                                                           \
2409
287k
            code_len = TINFL_FAST_LOOKUP_BITS;                                                                                      \
2410
287k
            do                                                                                                                      \
2411
599k
            {                                                                                                                       \
2412
599k
                temp = pTree[~temp + ((bit_buf >> code_len++) & 1)];                                                                \
2413
599k
            } while (temp < 0);                                                                                                     \
2414
287k
        }                                                                                                                           \
2415
123M
        sym = temp;                                                                                                                 \
2416
123M
        bit_buf >>= code_len;                                                                                                       \
2417
123M
        num_bits -= code_len;                                                                                                       \
2418
123M
    }                                                                                                                               \
2419
123M
    MZ_MACRO_END
2420
2421
    static void tinfl_clear_tree(tinfl_decompressor *r)
2422
13.7k
    {
2423
13.7k
        if (r->m_type == 0)
2424
4.64k
            MZ_CLEAR_ARR(r->m_tree_0);
2425
9.10k
        else if (r->m_type == 1)
2426
4.64k
            MZ_CLEAR_ARR(r->m_tree_1);
2427
4.46k
        else
2428
4.46k
            MZ_CLEAR_ARR(r->m_tree_2);
2429
13.7k
    }
2430
2431
    tinfl_status tinfl_decompress(tinfl_decompressor *r, const mz_uint8 *pIn_buf_next, size_t *pIn_buf_size, mz_uint8 *pOut_buf_start, mz_uint8 *pOut_buf_next, size_t *pOut_buf_size, const mz_uint32 decomp_flags)
2432
138M
    {
2433
138M
        static const mz_uint16 s_length_base[31] = { 3, 4, 5, 6, 7, 8, 9, 10, 11, 13, 15, 17, 19, 23, 27, 31, 35, 43, 51, 59, 67, 83, 99, 115, 131, 163, 195, 227, 258, 0, 0 };
2434
138M
        static const mz_uint8 s_length_extra[31] = { 0, 0, 0, 0, 0, 0, 0, 0, 1, 1, 1, 1, 2, 2, 2, 2, 3, 3, 3, 3, 4, 4, 4, 4, 5, 5, 5, 5, 0, 0, 0 };
2435
138M
        static const mz_uint16 s_dist_base[32] = { 1, 2, 3, 4, 5, 7, 9, 13, 17, 25, 33, 49, 65, 97, 129, 193, 257, 385, 513, 769, 1025, 1537, 2049, 3073, 4097, 6145, 8193, 12289, 16385, 24577, 0, 0 };
2436
138M
        static const mz_uint8 s_dist_extra[32] = { 0, 0, 0, 0, 1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 8, 8, 9, 9, 10, 10, 11, 11, 12, 12, 13, 13 };
2437
138M
        static const mz_uint8 s_length_dezigzag[19] = { 16, 17, 18, 0, 8, 7, 9, 6, 10, 5, 11, 4, 12, 3, 13, 2, 14, 1, 15 };
2438
138M
        static const mz_uint16 s_min_table_sizes[3] = { 257, 1, 4 };
2439
2440
138M
        mz_int16 *pTrees[3];
2441
138M
        mz_uint8 *pCode_sizes[3];
2442
2443
138M
        tinfl_status status = TINFL_STATUS_FAILED;
2444
138M
        mz_uint32 num_bits, dist, counter, num_extra;
2445
138M
        tinfl_bit_buf_t bit_buf;
2446
138M
        const mz_uint8 *pIn_buf_cur = pIn_buf_next, *const pIn_buf_end = pIn_buf_next + *pIn_buf_size;
2447
138M
        mz_uint8 *pOut_buf_cur = pOut_buf_next, *const pOut_buf_end = pOut_buf_next ? pOut_buf_next + *pOut_buf_size : NULL;
2448
138M
        size_t out_buf_size_mask = (decomp_flags & TINFL_FLAG_USING_NON_WRAPPING_OUTPUT_BUF) ? (size_t)-1 : ((pOut_buf_next - pOut_buf_start) + *pOut_buf_size) - 1, dist_from_out_buf_start;
2449
2450
        /* Ensure the output buffer's size is a power of 2, unless the output buffer is large enough to hold the entire output file (in which case it doesn't matter). */
2451
138M
        if (((out_buf_size_mask + 1) & out_buf_size_mask) || (pOut_buf_next < pOut_buf_start))
2452
0
        {
2453
0
            *pIn_buf_size = *pOut_buf_size = 0;
2454
0
            return TINFL_STATUS_BAD_PARAM;
2455
0
        }
2456
2457
138M
        pTrees[0] = r->m_tree_0;
2458
138M
        pTrees[1] = r->m_tree_1;
2459
138M
        pTrees[2] = r->m_tree_2;
2460
138M
        pCode_sizes[0] = r->m_code_size_0;
2461
138M
        pCode_sizes[1] = r->m_code_size_1;
2462
138M
        pCode_sizes[2] = r->m_code_size_2;
2463
2464
138M
        num_bits = r->m_num_bits;
2465
138M
        bit_buf = r->m_bit_buf;
2466
138M
        dist = r->m_dist;
2467
138M
        counter = r->m_counter;
2468
138M
        num_extra = r->m_num_extra;
2469
138M
        dist_from_out_buf_start = r->m_dist_from_out_buf_start;
2470
138M
        TINFL_CR_BEGIN
2471
2472
1.77k
        bit_buf = num_bits = dist = counter = num_extra = r->m_zhdr0 = r->m_zhdr1 = 0;
2473
1.77k
        r->m_z_adler32 = r->m_check_adler32 = 1;
2474
1.77k
        if (decomp_flags & TINFL_FLAG_PARSE_ZLIB_HEADER)
2475
1.77k
        {
2476
1.77k
            TINFL_GET_BYTE(1, r->m_zhdr0);
2477
1.77k
            TINFL_GET_BYTE(2, r->m_zhdr1);
2478
1.77k
            counter = (((r->m_zhdr0 * 256 + r->m_zhdr1) % 31 != 0) || (r->m_zhdr1 & 32) || ((r->m_zhdr0 & 15) != 8));
2479
1.77k
            if (!(decomp_flags & TINFL_FLAG_USING_NON_WRAPPING_OUTPUT_BUF))
2480
1.77k
                counter |= (((1U << (8U + (r->m_zhdr0 >> 4))) > 32768U) || ((out_buf_size_mask + 1) < (size_t)((size_t)1 << (8U + (r->m_zhdr0 >> 4)))));
2481
1.77k
            if (counter)
2482
0
            {
2483
0
                TINFL_CR_RETURN_FOREVER(36, TINFL_STATUS_FAILED);
2484
0
            }
2485
1.77k
        }
2486
2487
1.77k
        do
2488
5.98k
        {
2489
5.98k
            TINFL_GET_BITS(3, r->m_final, 3);
2490
5.98k
            r->m_type = r->m_final >> 1;
2491
5.98k
            if (r->m_type == 0)
2492
1.34k
            {
2493
1.34k
                TINFL_SKIP_BITS(5, num_bits & 7);
2494
6.70k
                for (counter = 0; counter < 4; ++counter)
2495
5.36k
                {
2496
5.36k
                    if (num_bits)
2497
0
                        TINFL_GET_BITS(6, r->m_raw_header[counter], 8);
2498
5.36k
                    else
2499
5.36k
                        TINFL_GET_BYTE(7, r->m_raw_header[counter]);
2500
5.36k
                }
2501
1.34k
                if ((counter = (r->m_raw_header[0] | (r->m_raw_header[1] << 8))) != (mz_uint)(0xFFFF ^ (r->m_raw_header[2] | (r->m_raw_header[3] << 8))))
2502
0
                {
2503
0
                    TINFL_CR_RETURN_FOREVER(39, TINFL_STATUS_FAILED);
2504
0
                }
2505
1.34k
                while ((counter) && (num_bits))
2506
0
                {
2507
0
                    TINFL_GET_BITS(51, dist, 8);
2508
0
                    while (pOut_buf_cur >= pOut_buf_end)
2509
0
                    {
2510
0
                        TINFL_CR_RETURN(52, TINFL_STATUS_HAS_MORE_OUTPUT);
2511
0
                    }
2512
0
                    *pOut_buf_cur++ = (mz_uint8)dist;
2513
0
                    counter--;
2514
0
                }
2515
28.3M
                while (counter)
2516
28.3M
                {
2517
28.3M
                    size_t n;
2518
28.3M
                    while (pOut_buf_cur >= pOut_buf_end)
2519
838
                    {
2520
838
                        TINFL_CR_RETURN(9, TINFL_STATUS_HAS_MORE_OUTPUT);
2521
838
                    }
2522
56.7M
                    while (pIn_buf_cur >= pIn_buf_end)
2523
28.3M
                    {
2524
28.3M
                        TINFL_CR_RETURN(38, (decomp_flags & TINFL_FLAG_HAS_MORE_INPUT) ? TINFL_STATUS_NEEDS_MORE_INPUT : TINFL_STATUS_FAILED_CANNOT_MAKE_PROGRESS);
2525
28.3M
                    }
2526
28.3M
                    n = MZ_MIN(MZ_MIN((size_t)(pOut_buf_end - pOut_buf_cur), (size_t)(pIn_buf_end - pIn_buf_cur)), counter);
2527
28.3M
                    TINFL_MEMCPY(pOut_buf_cur, pIn_buf_cur, n);
2528
28.3M
                    pIn_buf_cur += n;
2529
28.3M
                    pOut_buf_cur += n;
2530
28.3M
                    counter -= (mz_uint)n;
2531
28.3M
                }
2532
1.34k
            }
2533
4.64k
            else if (r->m_type == 3)
2534
0
            {
2535
0
                TINFL_CR_RETURN_FOREVER(10, TINFL_STATUS_FAILED);
2536
0
            }
2537
4.64k
            else
2538
4.64k
            {
2539
4.64k
                if (r->m_type == 1)
2540
184
                {
2541
184
                    mz_uint8 *p = r->m_code_size_0;
2542
184
                    mz_uint i;
2543
184
                    r->m_table_sizes[0] = 288;
2544
184
                    r->m_table_sizes[1] = 32;
2545
184
                    TINFL_MEMSET(r->m_code_size_1, 5, 32);
2546
26.6k
                    for (i = 0; i <= 143; ++i)
2547
26.4k
                        *p++ = 8;
2548
20.7k
                    for (; i <= 255; ++i)
2549
20.6k
                        *p++ = 9;
2550
4.60k
                    for (; i <= 279; ++i)
2551
4.41k
                        *p++ = 7;
2552
1.65k
                    for (; i <= 287; ++i)
2553
1.47k
                        *p++ = 8;
2554
184
                }
2555
4.46k
                else
2556
4.46k
                {
2557
17.8k
                    for (counter = 0; counter < 3; counter++)
2558
13.3k
                    {
2559
13.3k
                        TINFL_GET_BITS(11, r->m_table_sizes[counter], "\05\05\04"[counter]);
2560
13.3k
                        r->m_table_sizes[counter] += s_min_table_sizes[counter];
2561
13.3k
                    }
2562
4.46k
                    MZ_CLEAR_ARR(r->m_code_size_2);
2563
82.2k
                    for (counter = 0; counter < r->m_table_sizes[2]; counter++)
2564
77.7k
                    {
2565
77.7k
                        mz_uint s;
2566
77.7k
                        TINFL_GET_BITS(14, s, 3);
2567
77.7k
                        r->m_code_size_2[s_length_dezigzag[counter]] = (mz_uint8)s;
2568
77.7k
                    }
2569
4.46k
                    r->m_table_sizes[2] = 19;
2570
4.46k
                }
2571
18.3k
                for (; (int)r->m_type >= 0; r->m_type--)
2572
13.7k
                {
2573
13.7k
                    int tree_next, tree_cur;
2574
13.7k
                    mz_int16 *pLookUp;
2575
13.7k
                    mz_int16 *pTree;
2576
13.7k
                    mz_uint8 *pCode_size;
2577
13.7k
                    mz_uint i, j, used_syms, total, sym_index, next_code[17], total_syms[16];
2578
13.7k
                    pLookUp = r->m_look_up[r->m_type];
2579
13.7k
                    pTree = pTrees[r->m_type];
2580
13.7k
                    pCode_size = pCode_sizes[r->m_type];
2581
13.7k
                    MZ_CLEAR_ARR(total_syms);
2582
13.7k
                    TINFL_MEMSET(pLookUp, 0, sizeof(r->m_look_up[0]));
2583
13.7k
                    tinfl_clear_tree(r);
2584
1.47M
                    for (i = 0; i < r->m_table_sizes[r->m_type]; ++i)
2585
1.46M
                        total_syms[pCode_size[i]]++;
2586
13.7k
                    used_syms = 0, total = 0;
2587
13.7k
                    next_code[0] = next_code[1] = 0;
2588
220k
                    for (i = 1; i <= 15; ++i)
2589
206k
                    {
2590
206k
                        used_syms += total_syms[i];
2591
206k
                        next_code[i + 1] = (total = ((total + total_syms[i]) << 1));
2592
206k
                    }
2593
13.7k
                    if ((65536 != total) && (used_syms > 1))
2594
0
                    {
2595
0
                        TINFL_CR_RETURN_FOREVER(35, TINFL_STATUS_FAILED);
2596
0
                    }
2597
1.47M
                    for (tree_next = -1, sym_index = 0; sym_index < r->m_table_sizes[r->m_type]; ++sym_index)
2598
1.46M
                    {
2599
1.46M
                        mz_uint rev_code = 0, l, cur_code, code_size = pCode_size[sym_index];
2600
1.46M
                        if (!code_size)
2601
353k
                            continue;
2602
1.10M
                        cur_code = next_code[code_size]++;
2603
10.1M
                        for (l = code_size; l > 0; l--, cur_code >>= 1)
2604
8.99M
                            rev_code = (rev_code << 1) | (cur_code & 1);
2605
1.10M
                        if (code_size <= TINFL_FAST_LOOKUP_BITS)
2606
1.03M
                        {
2607
1.03M
                            mz_int16 k = (mz_int16)((code_size << 9) | sym_index);
2608
14.7M
                            while (rev_code < TINFL_FAST_LOOKUP_SIZE)
2609
13.6M
                            {
2610
13.6M
                                pLookUp[rev_code] = k;
2611
13.6M
                                rev_code += (1 << code_size);
2612
13.6M
                            }
2613
1.03M
                            continue;
2614
1.03M
                        }
2615
75.6k
                        if (0 == (tree_cur = pLookUp[rev_code & (TINFL_FAST_LOOKUP_SIZE - 1)]))
2616
12.9k
                        {
2617
12.9k
                            pLookUp[rev_code & (TINFL_FAST_LOOKUP_SIZE - 1)] = (mz_int16)tree_next;
2618
12.9k
                            tree_cur = tree_next;
2619
12.9k
                            tree_next -= 2;
2620
12.9k
                        }
2621
75.6k
                        rev_code >>= (TINFL_FAST_LOOKUP_BITS - 1);
2622
249k
                        for (j = code_size; j > (TINFL_FAST_LOOKUP_BITS + 1); j--)
2623
173k
                        {
2624
173k
                            tree_cur -= ((rev_code >>= 1) & 1);
2625
173k
                            if (!pTree[-tree_cur - 1])
2626
49.6k
                            {
2627
49.6k
                                pTree[-tree_cur - 1] = (mz_int16)tree_next;
2628
49.6k
                                tree_cur = tree_next;
2629
49.6k
                                tree_next -= 2;
2630
49.6k
                            }
2631
123k
                            else
2632
123k
                                tree_cur = pTree[-tree_cur - 1];
2633
173k
                        }
2634
75.6k
                        tree_cur -= ((rev_code >>= 1) & 1);
2635
75.6k
                        pTree[-tree_cur - 1] = (mz_int16)sym_index;
2636
75.6k
                    }
2637
13.7k
                    if (r->m_type == 2)
2638
4.46k
                    {
2639
786k
                        for (counter = 0; counter < (r->m_table_sizes[0] + r->m_table_sizes[1]);)
2640
781k
                        {
2641
781k
                            mz_uint s;
2642
781k
                            TINFL_HUFF_DECODE(16, dist, r->m_look_up[2], r->m_tree_2);
2643
781k
                            if (dist < 16)
2644
688k
                            {
2645
688k
                                r->m_len_codes[counter++] = (mz_uint8)dist;
2646
688k
                                continue;
2647
688k
                            }
2648
93.5k
                            if ((dist == 16) && (!counter))
2649
0
                            {
2650
0
                                TINFL_CR_RETURN_FOREVER(17, TINFL_STATUS_FAILED);
2651
0
                            }
2652
93.5k
                            num_extra = "\02\03\07"[dist - 16];
2653
93.5k
                            TINFL_GET_BITS(18, s, num_extra);
2654
93.5k
                            s += "\03\03\013"[dist - 16];
2655
93.5k
                            TINFL_MEMSET(r->m_len_codes + counter, (dist == 16) ? r->m_len_codes[counter - 1] : 0, s);
2656
93.5k
                            counter += s;
2657
93.5k
                        }
2658
4.46k
                        if ((r->m_table_sizes[0] + r->m_table_sizes[1]) != counter)
2659
0
                        {
2660
0
                            TINFL_CR_RETURN_FOREVER(21, TINFL_STATUS_FAILED);
2661
0
                        }
2662
4.46k
                        TINFL_MEMCPY(r->m_code_size_0, r->m_len_codes, r->m_table_sizes[0]);
2663
4.46k
                        TINFL_MEMCPY(r->m_code_size_1, r->m_len_codes + r->m_table_sizes[0], r->m_table_sizes[1]);
2664
4.46k
                    }
2665
13.7k
                }
2666
4.64k
                for (;;)
2667
1.95M
                {
2668
1.95M
                    mz_uint8 *pSrc;
2669
1.95M
                    for (;;)
2670
120M
                    {
2671
120M
                        if (((pIn_buf_end - pIn_buf_cur) < 4) || ((pOut_buf_end - pOut_buf_cur) < 2))
2672
120M
                        {
2673
120M
                            TINFL_HUFF_DECODE(23, counter, r->m_look_up[0], r->m_tree_0);
2674
120M
                            if (counter >= 256)
2675
1.95M
                                break;
2676
118M
                            while (pOut_buf_cur >= pOut_buf_end)
2677
459
                            {
2678
459
                                TINFL_CR_RETURN(24, TINFL_STATUS_HAS_MORE_OUTPUT);
2679
459
                            }
2680
118M
                            *pOut_buf_cur++ = (mz_uint8)counter;
2681
118M
                        }
2682
0
                        else
2683
0
                        {
2684
0
                            int sym2;
2685
0
                            mz_uint code_len;
2686
0
#if TINFL_USE_64BIT_BITBUF
2687
0
                            if (num_bits < 30)
2688
0
                            {
2689
0
                                bit_buf |= (((tinfl_bit_buf_t)MZ_READ_LE32(pIn_buf_cur)) << num_bits);
2690
0
                                pIn_buf_cur += 4;
2691
0
                                num_bits += 32;
2692
0
                            }
2693
#else
2694
                        if (num_bits < 15)
2695
                        {
2696
                            bit_buf |= (((tinfl_bit_buf_t)MZ_READ_LE16(pIn_buf_cur)) << num_bits);
2697
                            pIn_buf_cur += 2;
2698
                            num_bits += 16;
2699
                        }
2700
#endif
2701
0
                            if ((sym2 = r->m_look_up[0][bit_buf & (TINFL_FAST_LOOKUP_SIZE - 1)]) >= 0)
2702
0
                                code_len = sym2 >> 9;
2703
0
                            else
2704
0
                            {
2705
0
                                code_len = TINFL_FAST_LOOKUP_BITS;
2706
0
                                do
2707
0
                                {
2708
0
                                    sym2 = r->m_tree_0[~sym2 + ((bit_buf >> code_len++) & 1)];
2709
0
                                } while (sym2 < 0);
2710
0
                            }
2711
0
                            counter = sym2;
2712
0
                            bit_buf >>= code_len;
2713
0
                            num_bits -= code_len;
2714
0
                            if (counter & 256)
2715
0
                                break;
2716
2717
#if !TINFL_USE_64BIT_BITBUF
2718
                            if (num_bits < 15)
2719
                            {
2720
                                bit_buf |= (((tinfl_bit_buf_t)MZ_READ_LE16(pIn_buf_cur)) << num_bits);
2721
                                pIn_buf_cur += 2;
2722
                                num_bits += 16;
2723
                            }
2724
#endif
2725
0
                            if ((sym2 = r->m_look_up[0][bit_buf & (TINFL_FAST_LOOKUP_SIZE - 1)]) >= 0)
2726
0
                                code_len = sym2 >> 9;
2727
0
                            else
2728
0
                            {
2729
0
                                code_len = TINFL_FAST_LOOKUP_BITS;
2730
0
                                do
2731
0
                                {
2732
0
                                    sym2 = r->m_tree_0[~sym2 + ((bit_buf >> code_len++) & 1)];
2733
0
                                } while (sym2 < 0);
2734
0
                            }
2735
0
                            bit_buf >>= code_len;
2736
0
                            num_bits -= code_len;
2737
2738
0
                            pOut_buf_cur[0] = (mz_uint8)counter;
2739
0
                            if (sym2 & 256)
2740
0
                            {
2741
0
                                pOut_buf_cur++;
2742
0
                                counter = sym2;
2743
0
                                break;
2744
0
                            }
2745
0
                            pOut_buf_cur[1] = (mz_uint8)sym2;
2746
0
                            pOut_buf_cur += 2;
2747
0
                        }
2748
120M
                    }
2749
1.95M
                    if ((counter &= 511) == 256)
2750
3.54k
                        break;
2751
2752
1.94M
                    num_extra = s_length_extra[counter - 257];
2753
1.94M
                    counter = s_length_base[counter - 257];
2754
1.94M
                    if (num_extra)
2755
451k
                    {
2756
451k
                        mz_uint extra_bits;
2757
451k
                        TINFL_GET_BITS(25, extra_bits, num_extra);
2758
451k
                        counter += extra_bits;
2759
451k
                    }
2760
2761
1.94M
                    TINFL_HUFF_DECODE(26, dist, r->m_look_up[1], r->m_tree_1);
2762
1.94M
                    num_extra = s_dist_extra[dist];
2763
1.94M
                    dist = s_dist_base[dist];
2764
1.94M
                    if (num_extra)
2765
1.81M
                    {
2766
1.81M
                        mz_uint extra_bits;
2767
1.81M
                        TINFL_GET_BITS(27, extra_bits, num_extra);
2768
1.81M
                        dist += extra_bits;
2769
1.81M
                    }
2770
2771
1.94M
                    dist_from_out_buf_start = pOut_buf_cur - pOut_buf_start;
2772
1.94M
                    if ((dist == 0 || dist > dist_from_out_buf_start || dist_from_out_buf_start == 0) && (decomp_flags & TINFL_FLAG_USING_NON_WRAPPING_OUTPUT_BUF))
2773
0
                    {
2774
0
                        TINFL_CR_RETURN_FOREVER(37, TINFL_STATUS_FAILED);
2775
0
                    }
2776
2777
1.94M
                    pSrc = pOut_buf_start + ((dist_from_out_buf_start - dist) & out_buf_size_mask);
2778
2779
1.94M
                    if ((MZ_MAX(pOut_buf_cur, pSrc) + counter) > pOut_buf_end)
2780
1.84k
                    {
2781
265k
                        while (counter--)
2782
263k
                        {
2783
264k
                            while (pOut_buf_cur >= pOut_buf_end)
2784
1.23k
                            {
2785
1.23k
                                TINFL_CR_RETURN(53, TINFL_STATUS_HAS_MORE_OUTPUT);
2786
1.23k
                            }
2787
263k
                            *pOut_buf_cur++ = pOut_buf_start[(dist_from_out_buf_start++ - dist) & out_buf_size_mask];
2788
263k
                        }
2789
1.84k
                        continue;
2790
1.84k
                    }
2791
#if MINIZ_USE_UNALIGNED_LOADS_AND_STORES
2792
                    else if ((counter >= 9) && (counter <= dist))
2793
                    {
2794
                        const mz_uint8 *pSrc_end = pSrc + (counter & ~7);
2795
                        do
2796
                        {
2797
#ifdef MINIZ_UNALIGNED_USE_MEMCPY
2798
                            memcpy(pOut_buf_cur, pSrc, sizeof(mz_uint32) * 2);
2799
#else
2800
                            ((mz_uint32 *)pOut_buf_cur)[0] = ((const mz_uint32 *)pSrc)[0];
2801
                            ((mz_uint32 *)pOut_buf_cur)[1] = ((const mz_uint32 *)pSrc)[1];
2802
#endif
2803
                            pOut_buf_cur += 8;
2804
                        } while ((pSrc += 8) < pSrc_end);
2805
                        if ((counter &= 7) < 3)
2806
                        {
2807
                            if (counter)
2808
                            {
2809
                                pOut_buf_cur[0] = pSrc[0];
2810
                                if (counter > 1)
2811
                                    pOut_buf_cur[1] = pSrc[1];
2812
                                pOut_buf_cur += counter;
2813
                            }
2814
                            continue;
2815
                        }
2816
                    }
2817
#endif
2818
16.9M
                    while (counter > 2)
2819
15.0M
                    {
2820
15.0M
                        pOut_buf_cur[0] = pSrc[0];
2821
15.0M
                        pOut_buf_cur[1] = pSrc[1];
2822
15.0M
                        pOut_buf_cur[2] = pSrc[2];
2823
15.0M
                        pOut_buf_cur += 3;
2824
15.0M
                        pSrc += 3;
2825
15.0M
                        counter -= 3;
2826
15.0M
                    }
2827
1.94M
                    if (counter > 0)
2828
1.20M
                    {
2829
1.20M
                        pOut_buf_cur[0] = pSrc[0];
2830
1.20M
                        if (counter > 1)
2831
440k
                            pOut_buf_cur[1] = pSrc[1];
2832
1.20M
                        pOut_buf_cur += counter;
2833
1.20M
                    }
2834
1.94M
                }
2835
4.64k
            }
2836
5.98k
        } while (!(r->m_final & 1));
2837
2838
        /* Ensure byte alignment and put back any bytes from the bitbuf if we've looked ahead too far on gzip, or other Deflate streams followed by arbitrary data. */
2839
        /* I'm being super conservative here. A number of simplifications can be made to the byte alignment part, and the Adler32 check shouldn't ever need to worry about reading from the bitbuf now. */
2840
679
        TINFL_SKIP_BITS(32, num_bits & 7);
2841
679
        while ((pIn_buf_cur > pIn_buf_next) && (num_bits >= 8))
2842
0
        {
2843
0
            --pIn_buf_cur;
2844
0
            num_bits -= 8;
2845
0
        }
2846
679
        bit_buf &= ~(~(tinfl_bit_buf_t)0 << num_bits);
2847
679
        MZ_ASSERT(!num_bits); /* if this assert fires then we've read beyond the end of non-deflate/zlib streams with following data (such as gzip streams). */
2848
2849
679
        if (decomp_flags & TINFL_FLAG_PARSE_ZLIB_HEADER)
2850
679
        {
2851
683
            for (counter = 0; counter < 4; ++counter)
2852
683
            {
2853
683
                mz_uint s;
2854
683
                if (num_bits)
2855
0
                    TINFL_GET_BITS(41, s, 8);
2856
683
                else
2857
683
                    TINFL_GET_BYTE(42, s);
2858
4
                r->m_z_adler32 = (r->m_z_adler32 << 8) | s;
2859
4
            }
2860
679
        }
2861
138M
        TINFL_CR_RETURN_FOREVER(34, TINFL_STATUS_DONE);
2862
2863
138M
        TINFL_CR_FINISH
2864
2865
138M
    common_exit:
2866
        /* As long as we aren't telling the caller that we NEED more input to make forward progress: */
2867
        /* Put back any bytes from the bitbuf in case we've looked ahead too far on gzip, or other Deflate streams followed by arbitrary data. */
2868
        /* We need to be very careful here to NOT push back any bytes we definitely know we need to make forward progress, though, or we'll lock the caller up into an inf loop. */
2869
138M
        if ((status != TINFL_STATUS_NEEDS_MORE_INPUT) && (status != TINFL_STATUS_FAILED_CANNOT_MAKE_PROGRESS))
2870
2.53k
        {
2871
2.53k
            while ((pIn_buf_cur > pIn_buf_next) && (num_bits >= 8))
2872
0
            {
2873
0
                --pIn_buf_cur;
2874
0
                num_bits -= 8;
2875
0
            }
2876
2.53k
        }
2877
138M
        r->m_num_bits = num_bits;
2878
138M
        r->m_bit_buf = bit_buf & ~(~(tinfl_bit_buf_t)0 << num_bits);
2879
138M
        r->m_dist = dist;
2880
138M
        r->m_counter = counter;
2881
138M
        r->m_num_extra = num_extra;
2882
138M
        r->m_dist_from_out_buf_start = dist_from_out_buf_start;
2883
138M
        *pIn_buf_size = pIn_buf_cur - pIn_buf_next;
2884
138M
        *pOut_buf_size = pOut_buf_cur - pOut_buf_next;
2885
138M
        if ((decomp_flags & (TINFL_FLAG_PARSE_ZLIB_HEADER | TINFL_FLAG_COMPUTE_ADLER32)) && (status >= 0))
2886
138M
        {
2887
138M
            const mz_uint8 *ptr = pOut_buf_next;
2888
138M
            size_t buf_len = *pOut_buf_size;
2889
138M
            mz_uint32 i, s1 = r->m_check_adler32 & 0xffff, s2 = r->m_check_adler32 >> 16;
2890
138M
            size_t block_len = buf_len % 5552;
2891
272M
            while (buf_len)
2892
133M
            {
2893
138M
                for (i = 0; i + 7 < block_len; i += 8, ptr += 8)
2894
5.02M
                {
2895
5.02M
                    s1 += ptr[0], s2 += s1;
2896
5.02M
                    s1 += ptr[1], s2 += s1;
2897
5.02M
                    s1 += ptr[2], s2 += s1;
2898
5.02M
                    s1 += ptr[3], s2 += s1;
2899
5.02M
                    s1 += ptr[4], s2 += s1;
2900
5.02M
                    s1 += ptr[5], s2 += s1;
2901
5.02M
                    s1 += ptr[6], s2 += s1;
2902
5.02M
                    s1 += ptr[7], s2 += s1;
2903
5.02M
                }
2904
288M
                for (; i < block_len; ++i)
2905
154M
                    s1 += *ptr++, s2 += s1;
2906
133M
                s1 %= 65521U, s2 %= 65521U;
2907
133M
                buf_len -= block_len;
2908
133M
                block_len = 5552;
2909
133M
            }
2910
138M
            r->m_check_adler32 = (s2 << 16) + s1;
2911
138M
            if ((status == TINFL_STATUS_DONE) && (decomp_flags & TINFL_FLAG_PARSE_ZLIB_HEADER) && (r->m_check_adler32 != r->m_z_adler32))
2912
0
                status = TINFL_STATUS_ADLER32_MISMATCH;
2913
138M
        }
2914
138M
        return status;
2915
138M
    }
2916
2917
    /* Higher level helper functions. */
2918
    void *tinfl_decompress_mem_to_heap(const void *pSrc_buf, size_t src_buf_len, size_t *pOut_len, int flags)
2919
0
    {
2920
0
        tinfl_decompressor decomp;
2921
0
        void *pBuf = NULL, *pNew_buf;
2922
0
        size_t src_buf_ofs = 0, out_buf_capacity = 0;
2923
0
        *pOut_len = 0;
2924
0
        tinfl_init(&decomp);
2925
0
        for (;;)
2926
0
        {
2927
0
            size_t src_buf_size = src_buf_len - src_buf_ofs, dst_buf_size = out_buf_capacity - *pOut_len, new_out_buf_capacity;
2928
0
            tinfl_status status = tinfl_decompress(&decomp, (const mz_uint8 *)pSrc_buf + src_buf_ofs, &src_buf_size, (mz_uint8 *)pBuf, pBuf ? (mz_uint8 *)pBuf + *pOut_len : NULL, &dst_buf_size,
2929
0
                                                   (flags & ~TINFL_FLAG_HAS_MORE_INPUT) | TINFL_FLAG_USING_NON_WRAPPING_OUTPUT_BUF);
2930
0
            if ((status < 0) || (status == TINFL_STATUS_NEEDS_MORE_INPUT))
2931
0
            {
2932
0
                MZ_FREE(pBuf);
2933
0
                *pOut_len = 0;
2934
0
                return NULL;
2935
0
            }
2936
0
            src_buf_ofs += src_buf_size;
2937
0
            *pOut_len += dst_buf_size;
2938
0
            if (status == TINFL_STATUS_DONE)
2939
0
                break;
2940
0
            new_out_buf_capacity = out_buf_capacity * 2;
2941
0
            if (new_out_buf_capacity < 128)
2942
0
                new_out_buf_capacity = 128;
2943
0
            pNew_buf = MZ_REALLOC(pBuf, new_out_buf_capacity);
2944
0
            if (!pNew_buf)
2945
0
            {
2946
0
                MZ_FREE(pBuf);
2947
0
                *pOut_len = 0;
2948
0
                return NULL;
2949
0
            }
2950
0
            pBuf = pNew_buf;
2951
0
            out_buf_capacity = new_out_buf_capacity;
2952
0
        }
2953
0
        return pBuf;
2954
0
    }
2955
2956
    size_t tinfl_decompress_mem_to_mem(void *pOut_buf, size_t out_buf_len, const void *pSrc_buf, size_t src_buf_len, int flags)
2957
0
    {
2958
0
        tinfl_decompressor decomp;
2959
0
        tinfl_status status;
2960
0
        tinfl_init(&decomp);
2961
0
        status = tinfl_decompress(&decomp, (const mz_uint8 *)pSrc_buf, &src_buf_len, (mz_uint8 *)pOut_buf, (mz_uint8 *)pOut_buf, &out_buf_len, (flags & ~TINFL_FLAG_HAS_MORE_INPUT) | TINFL_FLAG_USING_NON_WRAPPING_OUTPUT_BUF);
2962
0
        return (status != TINFL_STATUS_DONE) ? TINFL_DECOMPRESS_MEM_TO_MEM_FAILED : out_buf_len;
2963
0
    }
2964
2965
    int tinfl_decompress_mem_to_callback(const void *pIn_buf, size_t *pIn_buf_size, tinfl_put_buf_func_ptr pPut_buf_func, void *pPut_buf_user, int flags)
2966
0
    {
2967
0
        int result = 0;
2968
0
        tinfl_decompressor decomp;
2969
0
        mz_uint8 *pDict = (mz_uint8 *)MZ_MALLOC(TINFL_LZ_DICT_SIZE);
2970
0
        size_t in_buf_ofs = 0, dict_ofs = 0;
2971
0
        if (!pDict)
2972
0
            return TINFL_STATUS_FAILED;
2973
0
        memset(pDict, 0, TINFL_LZ_DICT_SIZE);
2974
0
        tinfl_init(&decomp);
2975
0
        for (;;)
2976
0
        {
2977
0
            size_t in_buf_size = *pIn_buf_size - in_buf_ofs, dst_buf_size = TINFL_LZ_DICT_SIZE - dict_ofs;
2978
0
            tinfl_status status = tinfl_decompress(&decomp, (const mz_uint8 *)pIn_buf + in_buf_ofs, &in_buf_size, pDict, pDict + dict_ofs, &dst_buf_size,
2979
0
                                                   (flags & ~(TINFL_FLAG_HAS_MORE_INPUT | TINFL_FLAG_USING_NON_WRAPPING_OUTPUT_BUF)));
2980
0
            in_buf_ofs += in_buf_size;
2981
0
            if ((dst_buf_size) && (!(*pPut_buf_func)(pDict + dict_ofs, (int)dst_buf_size, pPut_buf_user)))
2982
0
                break;
2983
0
            if (status != TINFL_STATUS_HAS_MORE_OUTPUT)
2984
0
            {
2985
0
                result = (status == TINFL_STATUS_DONE);
2986
0
                break;
2987
0
            }
2988
0
            dict_ofs = (dict_ofs + dst_buf_size) & (TINFL_LZ_DICT_SIZE - 1);
2989
0
        }
2990
0
        MZ_FREE(pDict);
2991
0
        *pIn_buf_size = in_buf_ofs;
2992
0
        return result;
2993
0
    }
2994
2995
#ifndef MINIZ_NO_MALLOC
2996
    tinfl_decompressor *tinfl_decompressor_alloc(void)
2997
0
    {
2998
0
        tinfl_decompressor *pDecomp = (tinfl_decompressor *)MZ_MALLOC(sizeof(tinfl_decompressor));
2999
0
        if (pDecomp)
3000
0
            tinfl_init(pDecomp);
3001
0
        return pDecomp;
3002
0
    }
3003
3004
    void tinfl_decompressor_free(tinfl_decompressor *pDecomp)
3005
0
    {
3006
0
        MZ_FREE(pDecomp);
3007
0
    }
3008
#endif
3009
3010
#ifdef __cplusplus
3011
}
3012
#endif
3013
3014
#endif /*#ifndef MINIZ_NO_INFLATE_APIS*/
3015
 /**************************************************************************
3016
 *
3017
 * Copyright 2013-2014 RAD Game Tools and Valve Software
3018
 * Copyright 2010-2014 Rich Geldreich and Tenacious Software LLC
3019
 * Copyright 2016 Martin Raiber
3020
 * All Rights Reserved.
3021
 *
3022
 * Permission is hereby granted, free of charge, to any person obtaining a copy
3023
 * of this software and associated documentation files (the "Software"), to deal
3024
 * in the Software without restriction, including without limitation the rights
3025
 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
3026
 * copies of the Software, and to permit persons to whom the Software is
3027
 * furnished to do so, subject to the following conditions:
3028
 *
3029
 * The above copyright notice and this permission notice shall be included in
3030
 * all copies or substantial portions of the Software.
3031
 *
3032
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
3033
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
3034
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
3035
 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
3036
 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
3037
 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
3038
 * THE SOFTWARE.
3039
 *
3040
 **************************************************************************/
3041
3042
3043
#ifndef MINIZ_NO_ARCHIVE_APIS
3044
3045
#ifdef __cplusplus
3046
extern "C"
3047
{
3048
#endif
3049
3050
    /* ------------------- .ZIP archive reading */
3051
3052
#ifdef MINIZ_NO_STDIO
3053
#define MZ_FILE void *
3054
#else
3055
#include <sys/stat.h>
3056
3057
#if defined(_MSC_VER) || defined(__MINGW64__) || defined(__MINGW32__)
3058
3059
#ifndef WIN32_LEAN_AND_MEAN
3060
#define WIN32_LEAN_AND_MEAN
3061
#endif
3062
#ifndef __cplusplus
3063
#define MICROSOFT_WINDOWS_WINBASE_H_DEFINE_INTERLOCKED_CPLUSPLUS_OVERLOADS 0
3064
#endif
3065
#ifndef NOMINMAX
3066
#define NOMINMAX
3067
#endif
3068
#include <windows.h>
3069
3070
static WCHAR *mz_utf8z_to_widechar(const char *str)
3071
{
3072
    int reqChars = MultiByteToWideChar(CP_UTF8, 0, str, -1, NULL, 0);
3073
    WCHAR *wStr = (WCHAR *)malloc(reqChars * sizeof(WCHAR));
3074
    MultiByteToWideChar(CP_UTF8, 0, str, -1, wStr, reqChars);
3075
    return wStr;
3076
}
3077
3078
static FILE *mz_fopen(const char *pFilename, const char *pMode)
3079
{
3080
    WCHAR *wFilename = mz_utf8z_to_widechar(pFilename);
3081
    WCHAR *wMode = mz_utf8z_to_widechar(pMode);
3082
    FILE *pFile = NULL;
3083
    errno_t err = _wfopen_s(&pFile, wFilename, wMode);
3084
    free(wFilename);
3085
    free(wMode);
3086
    return err ? NULL : pFile;
3087
}
3088
3089
static FILE *mz_freopen(const char *pPath, const char *pMode, FILE *pStream)
3090
{
3091
    WCHAR *wPath = mz_utf8z_to_widechar(pPath);
3092
    WCHAR *wMode = mz_utf8z_to_widechar(pMode);
3093
    FILE *pFile = NULL;
3094
    errno_t err = _wfreopen_s(&pFile, wPath, wMode, pStream);
3095
    free(wPath);
3096
    free(wMode);
3097
    return err ? NULL : pFile;
3098
}
3099
3100
#if defined(__MINGW32__)
3101
static int mz_stat(const char *path, struct _stat *buffer)
3102
{
3103
    WCHAR *wPath = mz_utf8z_to_widechar(path);
3104
    int res = _wstat(wPath, buffer);
3105
    free(wPath);
3106
    return res;
3107
}
3108
#else
3109
static int mz_stat64(const char *path, struct __stat64 *buffer)
3110
{
3111
    WCHAR *wPath = mz_utf8z_to_widechar(path);
3112
    int res = _wstat64(wPath, buffer);
3113
    free(wPath);
3114
    return res;
3115
}
3116
#endif
3117
3118
#ifndef MINIZ_NO_TIME
3119
#include <sys/utime.h>
3120
#endif
3121
#define MZ_FOPEN mz_fopen
3122
#define MZ_FCLOSE fclose
3123
#define MZ_FREAD fread
3124
#define MZ_FWRITE fwrite
3125
#define MZ_FTELL64 _ftelli64
3126
#define MZ_FSEEK64 _fseeki64
3127
#if defined(__MINGW32__)
3128
#define MZ_FILE_STAT_STRUCT _stat
3129
#define MZ_FILE_STAT mz_stat
3130
#else
3131
#define MZ_FILE_STAT_STRUCT _stat64
3132
#define MZ_FILE_STAT mz_stat64
3133
#endif
3134
#define MZ_FFLUSH fflush
3135
#define MZ_FREOPEN mz_freopen
3136
#define MZ_DELETE_FILE remove
3137
3138
#elif defined(__WATCOMC__)
3139
#ifndef MINIZ_NO_TIME
3140
#include <sys/utime.h>
3141
#endif
3142
#define MZ_FOPEN(f, m) fopen(f, m)
3143
#define MZ_FCLOSE fclose
3144
#define MZ_FREAD fread
3145
#define MZ_FWRITE fwrite
3146
#define MZ_FTELL64 _ftelli64
3147
#define MZ_FSEEK64 _fseeki64
3148
#define MZ_FILE_STAT_STRUCT stat
3149
#define MZ_FILE_STAT stat
3150
#define MZ_FFLUSH fflush
3151
#define MZ_FREOPEN(f, m, s) freopen(f, m, s)
3152
#define MZ_DELETE_FILE remove
3153
3154
#elif defined(__TINYC__)
3155
#ifndef MINIZ_NO_TIME
3156
#include <sys/utime.h>
3157
#endif
3158
#define MZ_FOPEN(f, m) fopen(f, m)
3159
#define MZ_FCLOSE fclose
3160
#define MZ_FREAD fread
3161
#define MZ_FWRITE fwrite
3162
#define MZ_FTELL64 ftell
3163
#define MZ_FSEEK64 fseek
3164
#define MZ_FILE_STAT_STRUCT stat
3165
#define MZ_FILE_STAT stat
3166
#define MZ_FFLUSH fflush
3167
#define MZ_FREOPEN(f, m, s) freopen(f, m, s)
3168
#define MZ_DELETE_FILE remove
3169
3170
#elif defined(__USE_LARGEFILE64) /* gcc, clang */
3171
#ifndef MINIZ_NO_TIME
3172
#include <utime.h>
3173
#endif
3174
#define MZ_FOPEN(f, m) fopen64(f, m)
3175
#define MZ_FCLOSE fclose
3176
#define MZ_FREAD fread
3177
#define MZ_FWRITE fwrite
3178
#define MZ_FTELL64 ftello64
3179
#define MZ_FSEEK64 fseeko64
3180
#define MZ_FILE_STAT_STRUCT stat64
3181
#define MZ_FILE_STAT stat64
3182
#define MZ_FFLUSH fflush
3183
#define MZ_FREOPEN(p, m, s) freopen64(p, m, s)
3184
#define MZ_DELETE_FILE remove
3185
3186
#elif defined(__APPLE__) || defined(__FreeBSD__) || (defined(__linux__) && defined(__x86_64__))
3187
#ifndef MINIZ_NO_TIME
3188
#include <utime.h>
3189
#endif
3190
0
#define MZ_FOPEN(f, m) fopen(f, m)
3191
0
#define MZ_FCLOSE fclose
3192
0
#define MZ_FREAD fread
3193
0
#define MZ_FWRITE fwrite
3194
0
#define MZ_FTELL64 ftello
3195
0
#define MZ_FSEEK64 fseeko
3196
#define MZ_FILE_STAT_STRUCT stat
3197
0
#define MZ_FILE_STAT stat
3198
0
#define MZ_FFLUSH fflush
3199
0
#define MZ_FREOPEN(p, m, s) freopen(p, m, s)
3200
0
#define MZ_DELETE_FILE remove
3201
3202
#else
3203
#pragma message("Using fopen, ftello, fseeko, stat() etc. path for file I/O - this path may not support large files.")
3204
#ifndef MINIZ_NO_TIME
3205
#include <utime.h>
3206
#endif
3207
#define MZ_FOPEN(f, m) fopen(f, m)
3208
#define MZ_FCLOSE fclose
3209
#define MZ_FREAD fread
3210
#define MZ_FWRITE fwrite
3211
#ifdef __STRICT_ANSI__
3212
#define MZ_FTELL64 ftell
3213
#define MZ_FSEEK64 fseek
3214
#else
3215
#define MZ_FTELL64 ftello
3216
#define MZ_FSEEK64 fseeko
3217
#endif
3218
#define MZ_FILE_STAT_STRUCT stat
3219
#define MZ_FILE_STAT stat
3220
#define MZ_FFLUSH fflush
3221
#define MZ_FREOPEN(f, m, s) freopen(f, m, s)
3222
#define MZ_DELETE_FILE remove
3223
#endif /* #ifdef _MSC_VER */
3224
#endif /* #ifdef MINIZ_NO_STDIO */
3225
3226
0
#define MZ_TOLOWER(c) ((((c) >= 'A') && ((c) <= 'Z')) ? ((c) - 'A' + 'a') : (c))
3227
3228
    /* Various ZIP archive enums. To completely avoid cross platform compiler alignment and platform endian issues, miniz.c doesn't use structs for any of this stuff. */
3229
    enum
3230
    {
3231
        /* ZIP archive identifiers and record sizes */
3232
        MZ_ZIP_END_OF_CENTRAL_DIR_HEADER_SIG = 0x06054b50,
3233
        MZ_ZIP_CENTRAL_DIR_HEADER_SIG = 0x02014b50,
3234
        MZ_ZIP_LOCAL_DIR_HEADER_SIG = 0x04034b50,
3235
        MZ_ZIP_LOCAL_DIR_HEADER_SIZE = 30,
3236
        MZ_ZIP_CENTRAL_DIR_HEADER_SIZE = 46,
3237
        MZ_ZIP_END_OF_CENTRAL_DIR_HEADER_SIZE = 22,
3238
3239
        /* ZIP64 archive identifier and record sizes */
3240
        MZ_ZIP64_END_OF_CENTRAL_DIR_HEADER_SIG = 0x06064b50,
3241
        MZ_ZIP64_END_OF_CENTRAL_DIR_LOCATOR_SIG = 0x07064b50,
3242
        MZ_ZIP64_END_OF_CENTRAL_DIR_HEADER_SIZE = 56,
3243
        MZ_ZIP64_END_OF_CENTRAL_DIR_LOCATOR_SIZE = 20,
3244
        MZ_ZIP64_EXTENDED_INFORMATION_FIELD_HEADER_ID = 0x0001,
3245
        MZ_ZIP_DATA_DESCRIPTOR_ID = 0x08074b50,
3246
        MZ_ZIP_DATA_DESCRIPTER_SIZE64 = 24,
3247
        MZ_ZIP_DATA_DESCRIPTER_SIZE32 = 16,
3248
3249
        /* Central directory header record offsets */
3250
        MZ_ZIP_CDH_SIG_OFS = 0,
3251
        MZ_ZIP_CDH_VERSION_MADE_BY_OFS = 4,
3252
        MZ_ZIP_CDH_VERSION_NEEDED_OFS = 6,
3253
        MZ_ZIP_CDH_BIT_FLAG_OFS = 8,
3254
        MZ_ZIP_CDH_METHOD_OFS = 10,
3255
        MZ_ZIP_CDH_FILE_TIME_OFS = 12,
3256
        MZ_ZIP_CDH_FILE_DATE_OFS = 14,
3257
        MZ_ZIP_CDH_CRC32_OFS = 16,
3258
        MZ_ZIP_CDH_COMPRESSED_SIZE_OFS = 20,
3259
        MZ_ZIP_CDH_DECOMPRESSED_SIZE_OFS = 24,
3260
        MZ_ZIP_CDH_FILENAME_LEN_OFS = 28,
3261
        MZ_ZIP_CDH_EXTRA_LEN_OFS = 30,
3262
        MZ_ZIP_CDH_COMMENT_LEN_OFS = 32,
3263
        MZ_ZIP_CDH_DISK_START_OFS = 34,
3264
        MZ_ZIP_CDH_INTERNAL_ATTR_OFS = 36,
3265
        MZ_ZIP_CDH_EXTERNAL_ATTR_OFS = 38,
3266
        MZ_ZIP_CDH_LOCAL_HEADER_OFS = 42,
3267
3268
        /* Local directory header offsets */
3269
        MZ_ZIP_LDH_SIG_OFS = 0,
3270
        MZ_ZIP_LDH_VERSION_NEEDED_OFS = 4,
3271
        MZ_ZIP_LDH_BIT_FLAG_OFS = 6,
3272
        MZ_ZIP_LDH_METHOD_OFS = 8,
3273
        MZ_ZIP_LDH_FILE_TIME_OFS = 10,
3274
        MZ_ZIP_LDH_FILE_DATE_OFS = 12,
3275
        MZ_ZIP_LDH_CRC32_OFS = 14,
3276
        MZ_ZIP_LDH_COMPRESSED_SIZE_OFS = 18,
3277
        MZ_ZIP_LDH_DECOMPRESSED_SIZE_OFS = 22,
3278
        MZ_ZIP_LDH_FILENAME_LEN_OFS = 26,
3279
        MZ_ZIP_LDH_EXTRA_LEN_OFS = 28,
3280
        MZ_ZIP_LDH_BIT_FLAG_HAS_LOCATOR = 1 << 3,
3281
3282
        /* End of central directory offsets */
3283
        MZ_ZIP_ECDH_SIG_OFS = 0,
3284
        MZ_ZIP_ECDH_NUM_THIS_DISK_OFS = 4,
3285
        MZ_ZIP_ECDH_NUM_DISK_CDIR_OFS = 6,
3286
        MZ_ZIP_ECDH_CDIR_NUM_ENTRIES_ON_DISK_OFS = 8,
3287
        MZ_ZIP_ECDH_CDIR_TOTAL_ENTRIES_OFS = 10,
3288
        MZ_ZIP_ECDH_CDIR_SIZE_OFS = 12,
3289
        MZ_ZIP_ECDH_CDIR_OFS_OFS = 16,
3290
        MZ_ZIP_ECDH_COMMENT_SIZE_OFS = 20,
3291
3292
        /* ZIP64 End of central directory locator offsets */
3293
        MZ_ZIP64_ECDL_SIG_OFS = 0,                    /* 4 bytes */
3294
        MZ_ZIP64_ECDL_NUM_DISK_CDIR_OFS = 4,          /* 4 bytes */
3295
        MZ_ZIP64_ECDL_REL_OFS_TO_ZIP64_ECDR_OFS = 8,  /* 8 bytes */
3296
        MZ_ZIP64_ECDL_TOTAL_NUMBER_OF_DISKS_OFS = 16, /* 4 bytes */
3297
3298
        /* ZIP64 End of central directory header offsets */
3299
        MZ_ZIP64_ECDH_SIG_OFS = 0,                       /* 4 bytes */
3300
        MZ_ZIP64_ECDH_SIZE_OF_RECORD_OFS = 4,            /* 8 bytes */
3301
        MZ_ZIP64_ECDH_VERSION_MADE_BY_OFS = 12,          /* 2 bytes */
3302
        MZ_ZIP64_ECDH_VERSION_NEEDED_OFS = 14,           /* 2 bytes */
3303
        MZ_ZIP64_ECDH_NUM_THIS_DISK_OFS = 16,            /* 4 bytes */
3304
        MZ_ZIP64_ECDH_NUM_DISK_CDIR_OFS = 20,            /* 4 bytes */
3305
        MZ_ZIP64_ECDH_CDIR_NUM_ENTRIES_ON_DISK_OFS = 24, /* 8 bytes */
3306
        MZ_ZIP64_ECDH_CDIR_TOTAL_ENTRIES_OFS = 32,       /* 8 bytes */
3307
        MZ_ZIP64_ECDH_CDIR_SIZE_OFS = 40,                /* 8 bytes */
3308
        MZ_ZIP64_ECDH_CDIR_OFS_OFS = 48,                 /* 8 bytes */
3309
        MZ_ZIP_VERSION_MADE_BY_DOS_FILESYSTEM_ID = 0,
3310
        MZ_ZIP_DOS_DIR_ATTRIBUTE_BITFLAG = 0x10,
3311
        MZ_ZIP_GENERAL_PURPOSE_BIT_FLAG_IS_ENCRYPTED = 1,
3312
        MZ_ZIP_GENERAL_PURPOSE_BIT_FLAG_COMPRESSED_PATCH_FLAG = 32,
3313
        MZ_ZIP_GENERAL_PURPOSE_BIT_FLAG_USES_STRONG_ENCRYPTION = 64,
3314
        MZ_ZIP_GENERAL_PURPOSE_BIT_FLAG_LOCAL_DIR_IS_MASKED = 8192,
3315
        MZ_ZIP_GENERAL_PURPOSE_BIT_FLAG_UTF8 = 1 << 11
3316
    };
3317
3318
    typedef struct
3319
    {
3320
        void *m_p;
3321
        size_t m_size, m_capacity;
3322
        mz_uint m_element_size;
3323
    } mz_zip_array;
3324
3325
    struct mz_zip_internal_state_tag
3326
    {
3327
        mz_zip_array m_central_dir;
3328
        mz_zip_array m_central_dir_offsets;
3329
        mz_zip_array m_sorted_central_dir_offsets;
3330
3331
        /* The flags passed in when the archive is initially opened. */
3332
        mz_uint32 m_init_flags;
3333
3334
        /* MZ_TRUE if the archive has a zip64 end of central directory headers, etc. */
3335
        mz_bool m_zip64;
3336
3337
        /* MZ_TRUE if we found zip64 extended info in the central directory (m_zip64 will also be slammed to true too, even if we didn't find a zip64 end of central dir header, etc.) */
3338
        mz_bool m_zip64_has_extended_info_fields;
3339
3340
        /* These fields are used by the file, FILE, memory, and memory/heap read/write helpers. */
3341
        MZ_FILE *m_pFile;
3342
        mz_uint64 m_file_archive_start_ofs;
3343
3344
        void *m_pMem;
3345
        size_t m_mem_size;
3346
        size_t m_mem_capacity;
3347
    };
3348
3349
0
#define MZ_ZIP_ARRAY_SET_ELEMENT_SIZE(array_ptr, element_size) (array_ptr)->m_element_size = element_size
3350
3351
#if defined(DEBUG) || defined(_DEBUG)
3352
    static MZ_FORCEINLINE mz_uint mz_zip_array_range_check(const mz_zip_array *pArray, mz_uint index)
3353
    {
3354
        MZ_ASSERT(index < pArray->m_size);
3355
        return index;
3356
    }
3357
#define MZ_ZIP_ARRAY_ELEMENT(array_ptr, element_type, index) ((element_type *)((array_ptr)->m_p))[mz_zip_array_range_check(array_ptr, index)]
3358
#else
3359
0
#define MZ_ZIP_ARRAY_ELEMENT(array_ptr, element_type, index) ((element_type *)((array_ptr)->m_p))[index]
3360
#endif
3361
3362
    static MZ_FORCEINLINE void mz_zip_array_init(mz_zip_array *pArray, mz_uint32 element_size)
3363
0
    {
3364
0
        memset(pArray, 0, sizeof(mz_zip_array));
3365
0
        pArray->m_element_size = element_size;
3366
0
    }
3367
3368
    static MZ_FORCEINLINE void mz_zip_array_clear(mz_zip_archive *pZip, mz_zip_array *pArray)
3369
0
    {
3370
0
        pZip->m_pFree(pZip->m_pAlloc_opaque, pArray->m_p);
3371
0
        memset(pArray, 0, sizeof(mz_zip_array));
3372
0
    }
3373
3374
    static mz_bool mz_zip_array_ensure_capacity(mz_zip_archive *pZip, mz_zip_array *pArray, size_t min_new_capacity, mz_uint growing)
3375
0
    {
3376
0
        void *pNew_p;
3377
0
        size_t new_capacity = min_new_capacity;
3378
0
        MZ_ASSERT(pArray->m_element_size);
3379
0
        if (pArray->m_capacity >= min_new_capacity)
3380
0
            return MZ_TRUE;
3381
0
        if (growing)
3382
0
        {
3383
0
            new_capacity = MZ_MAX(1, pArray->m_capacity);
3384
0
            while (new_capacity < min_new_capacity)
3385
0
                new_capacity *= 2;
3386
0
        }
3387
0
        if (NULL == (pNew_p = pZip->m_pRealloc(pZip->m_pAlloc_opaque, pArray->m_p, pArray->m_element_size, new_capacity)))
3388
0
            return MZ_FALSE;
3389
0
        pArray->m_p = pNew_p;
3390
0
        pArray->m_capacity = new_capacity;
3391
0
        return MZ_TRUE;
3392
0
    }
3393
3394
    static MZ_FORCEINLINE mz_bool mz_zip_array_reserve(mz_zip_archive *pZip, mz_zip_array *pArray, size_t new_capacity, mz_uint growing)
3395
0
    {
3396
0
        if (new_capacity > pArray->m_capacity)
3397
0
        {
3398
0
            if (!mz_zip_array_ensure_capacity(pZip, pArray, new_capacity, growing))
3399
0
                return MZ_FALSE;
3400
0
        }
3401
0
        return MZ_TRUE;
3402
0
    }
3403
3404
    static MZ_FORCEINLINE mz_bool mz_zip_array_resize(mz_zip_archive *pZip, mz_zip_array *pArray, size_t new_size, mz_uint growing)
3405
0
    {
3406
0
        if (new_size > pArray->m_capacity)
3407
0
        {
3408
0
            if (!mz_zip_array_ensure_capacity(pZip, pArray, new_size, growing))
3409
0
                return MZ_FALSE;
3410
0
        }
3411
0
        pArray->m_size = new_size;
3412
0
        return MZ_TRUE;
3413
0
    }
3414
3415
    static MZ_FORCEINLINE mz_bool mz_zip_array_ensure_room(mz_zip_archive *pZip, mz_zip_array *pArray, size_t n)
3416
0
    {
3417
0
        return mz_zip_array_reserve(pZip, pArray, pArray->m_size + n, MZ_TRUE);
3418
0
    }
3419
3420
    static MZ_FORCEINLINE mz_bool mz_zip_array_push_back(mz_zip_archive *pZip, mz_zip_array *pArray, const void *pElements, size_t n)
3421
0
    {
3422
0
        size_t orig_size = pArray->m_size;
3423
0
        if (!mz_zip_array_resize(pZip, pArray, orig_size + n, MZ_TRUE))
3424
0
            return MZ_FALSE;
3425
0
        if (n > 0)
3426
0
            memcpy((mz_uint8 *)pArray->m_p + orig_size * pArray->m_element_size, pElements, n * pArray->m_element_size);
3427
0
        return MZ_TRUE;
3428
0
    }
3429
3430
#ifndef MINIZ_NO_TIME
3431
    static MZ_TIME_T mz_zip_dos_to_time_t(int dos_time, int dos_date)
3432
0
    {
3433
0
        struct tm tm;
3434
0
        memset(&tm, 0, sizeof(tm));
3435
0
        tm.tm_isdst = -1;
3436
0
        tm.tm_year = ((dos_date >> 9) & 127) + 1980 - 1900;
3437
0
        tm.tm_mon = ((dos_date >> 5) & 15) - 1;
3438
0
        tm.tm_mday = dos_date & 31;
3439
0
        tm.tm_hour = (dos_time >> 11) & 31;
3440
0
        tm.tm_min = (dos_time >> 5) & 63;
3441
0
        tm.tm_sec = (dos_time << 1) & 62;
3442
0
        return mktime(&tm);
3443
0
    }
3444
3445
#ifndef MINIZ_NO_ARCHIVE_WRITING_APIS
3446
    static void mz_zip_time_t_to_dos_time(MZ_TIME_T time, mz_uint16 *pDOS_time, mz_uint16 *pDOS_date)
3447
0
    {
3448
#ifdef _MSC_VER
3449
        struct tm tm_struct;
3450
        struct tm *tm = &tm_struct;
3451
        errno_t err = localtime_s(tm, &time);
3452
        if (err)
3453
        {
3454
            *pDOS_date = 0;
3455
            *pDOS_time = 0;
3456
            return;
3457
        }
3458
#else
3459
0
        struct tm *tm = localtime(&time);
3460
0
#endif /* #ifdef _MSC_VER */
3461
3462
0
        *pDOS_time = (mz_uint16)(((tm->tm_hour) << 11) + ((tm->tm_min) << 5) + ((tm->tm_sec) >> 1));
3463
0
        *pDOS_date = (mz_uint16)(((tm->tm_year + 1900 - 1980) << 9) + ((tm->tm_mon + 1) << 5) + tm->tm_mday);
3464
0
    }
3465
#endif /* MINIZ_NO_ARCHIVE_WRITING_APIS */
3466
3467
#ifndef MINIZ_NO_STDIO
3468
#ifndef MINIZ_NO_ARCHIVE_WRITING_APIS
3469
    static mz_bool mz_zip_get_file_modified_time(const char *pFilename, MZ_TIME_T *pTime)
3470
0
    {
3471
0
        struct MZ_FILE_STAT_STRUCT file_stat;
3472
3473
        /* On Linux with x86 glibc, this call will fail on large files (I think >= 0x80000000 bytes) unless you compiled with _LARGEFILE64_SOURCE. Argh. */
3474
0
        if (MZ_FILE_STAT(pFilename, &file_stat) != 0)
3475
0
            return MZ_FALSE;
3476
3477
0
        *pTime = file_stat.st_mtime;
3478
3479
0
        return MZ_TRUE;
3480
0
    }
3481
#endif /* #ifndef MINIZ_NO_ARCHIVE_WRITING_APIS*/
3482
3483
    static mz_bool mz_zip_set_file_times(const char *pFilename, MZ_TIME_T access_time, MZ_TIME_T modified_time)
3484
0
    {
3485
0
        struct utimbuf t;
3486
3487
0
        memset(&t, 0, sizeof(t));
3488
0
        t.actime = access_time;
3489
0
        t.modtime = modified_time;
3490
3491
0
        return !utime(pFilename, &t);
3492
0
    }
3493
#endif /* #ifndef MINIZ_NO_STDIO */
3494
#endif /* #ifndef MINIZ_NO_TIME */
3495
3496
    static MZ_FORCEINLINE mz_bool mz_zip_set_error(mz_zip_archive *pZip, mz_zip_error err_num)
3497
0
    {
3498
0
        if (pZip)
3499
0
            pZip->m_last_error = err_num;
3500
0
        return MZ_FALSE;
3501
0
    }
3502
3503
    static mz_bool mz_zip_reader_init_internal(mz_zip_archive *pZip, mz_uint flags)
3504
0
    {
3505
0
        (void)flags;
3506
0
        if ((!pZip) || (pZip->m_pState) || (pZip->m_zip_mode != MZ_ZIP_MODE_INVALID))
3507
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
3508
3509
0
        if (!pZip->m_pAlloc)
3510
0
            pZip->m_pAlloc = miniz_def_alloc_func;
3511
0
        if (!pZip->m_pFree)
3512
0
            pZip->m_pFree = miniz_def_free_func;
3513
0
        if (!pZip->m_pRealloc)
3514
0
            pZip->m_pRealloc = miniz_def_realloc_func;
3515
3516
0
        pZip->m_archive_size = 0;
3517
0
        pZip->m_central_directory_file_ofs = 0;
3518
0
        pZip->m_total_files = 0;
3519
0
        pZip->m_last_error = MZ_ZIP_NO_ERROR;
3520
3521
0
        if (NULL == (pZip->m_pState = (mz_zip_internal_state *)pZip->m_pAlloc(pZip->m_pAlloc_opaque, 1, sizeof(mz_zip_internal_state))))
3522
0
            return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
3523
3524
0
        memset(pZip->m_pState, 0, sizeof(mz_zip_internal_state));
3525
0
        MZ_ZIP_ARRAY_SET_ELEMENT_SIZE(&pZip->m_pState->m_central_dir, sizeof(mz_uint8));
3526
0
        MZ_ZIP_ARRAY_SET_ELEMENT_SIZE(&pZip->m_pState->m_central_dir_offsets, sizeof(mz_uint32));
3527
0
        MZ_ZIP_ARRAY_SET_ELEMENT_SIZE(&pZip->m_pState->m_sorted_central_dir_offsets, sizeof(mz_uint32));
3528
0
        pZip->m_pState->m_init_flags = flags;
3529
0
        pZip->m_pState->m_zip64 = MZ_FALSE;
3530
0
        pZip->m_pState->m_zip64_has_extended_info_fields = MZ_FALSE;
3531
3532
0
        pZip->m_zip_mode = MZ_ZIP_MODE_READING;
3533
3534
0
        return MZ_TRUE;
3535
0
    }
3536
3537
    static MZ_FORCEINLINE mz_bool mz_zip_reader_filename_less(const mz_zip_array *pCentral_dir_array, const mz_zip_array *pCentral_dir_offsets, mz_uint l_index, mz_uint r_index)
3538
0
    {
3539
0
        const mz_uint8 *pL = &MZ_ZIP_ARRAY_ELEMENT(pCentral_dir_array, mz_uint8, MZ_ZIP_ARRAY_ELEMENT(pCentral_dir_offsets, mz_uint32, l_index)), *pE;
3540
0
        const mz_uint8 *pR = &MZ_ZIP_ARRAY_ELEMENT(pCentral_dir_array, mz_uint8, MZ_ZIP_ARRAY_ELEMENT(pCentral_dir_offsets, mz_uint32, r_index));
3541
0
        mz_uint l_len = MZ_READ_LE16(pL + MZ_ZIP_CDH_FILENAME_LEN_OFS), r_len = MZ_READ_LE16(pR + MZ_ZIP_CDH_FILENAME_LEN_OFS);
3542
0
        mz_uint8 l = 0, r = 0;
3543
0
        pL += MZ_ZIP_CENTRAL_DIR_HEADER_SIZE;
3544
0
        pR += MZ_ZIP_CENTRAL_DIR_HEADER_SIZE;
3545
0
        pE = pL + MZ_MIN(l_len, r_len);
3546
0
        while (pL < pE)
3547
0
        {
3548
0
            if ((l = MZ_TOLOWER(*pL)) != (r = MZ_TOLOWER(*pR)))
3549
0
                break;
3550
0
            pL++;
3551
0
            pR++;
3552
0
        }
3553
0
        return (pL == pE) ? (l_len < r_len) : (l < r);
3554
0
    }
3555
3556
#define MZ_SWAP_UINT32(a, b) \
3557
0
    do                       \
3558
0
    {                        \
3559
0
        mz_uint32 t = a;     \
3560
0
        a = b;               \
3561
0
        b = t;               \
3562
0
    }                        \
3563
0
    MZ_MACRO_END
3564
3565
    /* Heap sort of lowercased filenames, used to help accelerate plain central directory searches by mz_zip_reader_locate_file(). (Could also use qsort(), but it could allocate memory.) */
3566
    static void mz_zip_reader_sort_central_dir_offsets_by_filename(mz_zip_archive *pZip)
3567
0
    {
3568
0
        mz_zip_internal_state *pState = pZip->m_pState;
3569
0
        const mz_zip_array *pCentral_dir_offsets = &pState->m_central_dir_offsets;
3570
0
        const mz_zip_array *pCentral_dir = &pState->m_central_dir;
3571
0
        mz_uint32 *pIndices;
3572
0
        mz_uint32 start, end;
3573
0
        const mz_uint32 size = pZip->m_total_files;
3574
3575
0
        if (size <= 1U)
3576
0
            return;
3577
3578
0
        pIndices = &MZ_ZIP_ARRAY_ELEMENT(&pState->m_sorted_central_dir_offsets, mz_uint32, 0);
3579
3580
0
        start = (size - 2U) >> 1U;
3581
0
        for (;;)
3582
0
        {
3583
0
            mz_uint64 child, root = start;
3584
0
            for (;;)
3585
0
            {
3586
0
                if ((child = (root << 1U) + 1U) >= size)
3587
0
                    break;
3588
0
                child += (((child + 1U) < size) && (mz_zip_reader_filename_less(pCentral_dir, pCentral_dir_offsets, pIndices[child], pIndices[child + 1U])));
3589
0
                if (!mz_zip_reader_filename_less(pCentral_dir, pCentral_dir_offsets, pIndices[root], pIndices[child]))
3590
0
                    break;
3591
0
                MZ_SWAP_UINT32(pIndices[root], pIndices[child]);
3592
0
                root = child;
3593
0
            }
3594
0
            if (!start)
3595
0
                break;
3596
0
            start--;
3597
0
        }
3598
3599
0
        end = size - 1;
3600
0
        while (end > 0)
3601
0
        {
3602
0
            mz_uint64 child, root = 0;
3603
0
            MZ_SWAP_UINT32(pIndices[end], pIndices[0]);
3604
0
            for (;;)
3605
0
            {
3606
0
                if ((child = (root << 1U) + 1U) >= end)
3607
0
                    break;
3608
0
                child += (((child + 1U) < end) && mz_zip_reader_filename_less(pCentral_dir, pCentral_dir_offsets, pIndices[child], pIndices[child + 1U]));
3609
0
                if (!mz_zip_reader_filename_less(pCentral_dir, pCentral_dir_offsets, pIndices[root], pIndices[child]))
3610
0
                    break;
3611
0
                MZ_SWAP_UINT32(pIndices[root], pIndices[child]);
3612
0
                root = child;
3613
0
            }
3614
0
            end--;
3615
0
        }
3616
0
    }
3617
3618
    static mz_bool mz_zip_reader_locate_header_sig(mz_zip_archive *pZip, mz_uint32 record_sig, mz_uint32 record_size, mz_int64 *pOfs)
3619
0
    {
3620
0
        mz_int64 cur_file_ofs;
3621
0
        mz_uint32 buf_u32[4096 / sizeof(mz_uint32)];
3622
0
        mz_uint8 *pBuf = (mz_uint8 *)buf_u32;
3623
3624
        /* Basic sanity checks - reject files which are too small */
3625
0
        if (pZip->m_archive_size < record_size)
3626
0
            return MZ_FALSE;
3627
3628
        /* Find the record by scanning the file from the end towards the beginning. */
3629
0
        cur_file_ofs = MZ_MAX((mz_int64)pZip->m_archive_size - (mz_int64)sizeof(buf_u32), 0);
3630
0
        for (;;)
3631
0
        {
3632
0
            int i, n = (int)MZ_MIN(sizeof(buf_u32), pZip->m_archive_size - cur_file_ofs);
3633
3634
0
            if (pZip->m_pRead(pZip->m_pIO_opaque, cur_file_ofs, pBuf, n) != (mz_uint)n)
3635
0
                return MZ_FALSE;
3636
3637
0
            for (i = n - 4; i >= 0; --i)
3638
0
            {
3639
0
                mz_uint s = MZ_READ_LE32(pBuf + i);
3640
0
                if (s == record_sig)
3641
0
                {
3642
0
                    if ((pZip->m_archive_size - (cur_file_ofs + i)) >= record_size)
3643
0
                        break;
3644
0
                }
3645
0
            }
3646
3647
0
            if (i >= 0)
3648
0
            {
3649
0
                cur_file_ofs += i;
3650
0
                break;
3651
0
            }
3652
3653
            /* Give up if we've searched the entire file, or we've gone back "too far" (~64kb) */
3654
0
            if ((!cur_file_ofs) || ((pZip->m_archive_size - cur_file_ofs) >= ((mz_uint64)(MZ_UINT16_MAX) + record_size)))
3655
0
                return MZ_FALSE;
3656
3657
0
            cur_file_ofs = MZ_MAX(cur_file_ofs - (sizeof(buf_u32) - 3), 0);
3658
0
        }
3659
3660
0
        *pOfs = cur_file_ofs;
3661
0
        return MZ_TRUE;
3662
0
    }
3663
3664
    static mz_bool mz_zip_reader_eocd64_valid(mz_zip_archive *pZip, uint64_t offset, uint8_t *buf)
3665
0
    {
3666
0
        if (pZip->m_pRead(pZip->m_pIO_opaque, offset, buf, MZ_ZIP64_END_OF_CENTRAL_DIR_HEADER_SIZE) == MZ_ZIP64_END_OF_CENTRAL_DIR_HEADER_SIZE)
3667
0
        {
3668
0
            if (MZ_READ_LE32(buf + MZ_ZIP64_ECDH_SIG_OFS) == MZ_ZIP64_END_OF_CENTRAL_DIR_HEADER_SIG)
3669
0
            {
3670
0
                return MZ_TRUE;
3671
0
            }
3672
0
        }
3673
3674
0
        return MZ_FALSE;
3675
0
    }
3676
3677
    static mz_bool mz_zip_reader_read_central_dir(mz_zip_archive *pZip, mz_uint flags)
3678
0
    {
3679
0
        mz_uint cdir_size = 0, cdir_entries_on_this_disk = 0, num_this_disk = 0, cdir_disk_index = 0;
3680
0
        mz_uint64 cdir_ofs = 0, eocd_ofs = 0, archive_ofs = 0;
3681
0
        mz_int64 cur_file_ofs = 0;
3682
0
        const mz_uint8 *p;
3683
3684
0
        mz_uint32 buf_u32[4096 / sizeof(mz_uint32)];
3685
0
        mz_uint8 *pBuf = (mz_uint8 *)buf_u32;
3686
0
        mz_bool sort_central_dir = ((flags & MZ_ZIP_FLAG_DO_NOT_SORT_CENTRAL_DIRECTORY) == 0);
3687
0
        mz_uint32 zip64_end_of_central_dir_locator_u32[(MZ_ZIP64_END_OF_CENTRAL_DIR_LOCATOR_SIZE + sizeof(mz_uint32) - 1) / sizeof(mz_uint32)];
3688
0
        mz_uint8 *pZip64_locator = (mz_uint8 *)zip64_end_of_central_dir_locator_u32;
3689
3690
0
        mz_uint32 zip64_end_of_central_dir_header_u32[(MZ_ZIP64_END_OF_CENTRAL_DIR_HEADER_SIZE + sizeof(mz_uint32) - 1) / sizeof(mz_uint32)];
3691
0
        mz_uint8 *pZip64_end_of_central_dir = (mz_uint8 *)zip64_end_of_central_dir_header_u32;
3692
3693
0
        mz_uint64 zip64_end_of_central_dir_ofs = 0;
3694
3695
        /* Basic sanity checks - reject files which are too small, and check the first 4 bytes of the file to make sure a local header is there. */
3696
0
        if (pZip->m_archive_size < MZ_ZIP_END_OF_CENTRAL_DIR_HEADER_SIZE)
3697
0
            return mz_zip_set_error(pZip, MZ_ZIP_NOT_AN_ARCHIVE);
3698
3699
0
        if (!mz_zip_reader_locate_header_sig(pZip, MZ_ZIP_END_OF_CENTRAL_DIR_HEADER_SIG, MZ_ZIP_END_OF_CENTRAL_DIR_HEADER_SIZE, &cur_file_ofs))
3700
0
            return mz_zip_set_error(pZip, MZ_ZIP_FAILED_FINDING_CENTRAL_DIR);
3701
3702
0
        eocd_ofs = cur_file_ofs;
3703
        /* Read and verify the end of central directory record. */
3704
0
        if (pZip->m_pRead(pZip->m_pIO_opaque, cur_file_ofs, pBuf, MZ_ZIP_END_OF_CENTRAL_DIR_HEADER_SIZE) != MZ_ZIP_END_OF_CENTRAL_DIR_HEADER_SIZE)
3705
0
            return mz_zip_set_error(pZip, MZ_ZIP_FILE_READ_FAILED);
3706
3707
0
        if (MZ_READ_LE32(pBuf + MZ_ZIP_ECDH_SIG_OFS) != MZ_ZIP_END_OF_CENTRAL_DIR_HEADER_SIG)
3708
0
            return mz_zip_set_error(pZip, MZ_ZIP_NOT_AN_ARCHIVE);
3709
3710
0
        if (cur_file_ofs >= (MZ_ZIP64_END_OF_CENTRAL_DIR_LOCATOR_SIZE + MZ_ZIP64_END_OF_CENTRAL_DIR_HEADER_SIZE))
3711
0
        {
3712
0
            if (pZip->m_pRead(pZip->m_pIO_opaque, cur_file_ofs - MZ_ZIP64_END_OF_CENTRAL_DIR_LOCATOR_SIZE, pZip64_locator, MZ_ZIP64_END_OF_CENTRAL_DIR_LOCATOR_SIZE) == MZ_ZIP64_END_OF_CENTRAL_DIR_LOCATOR_SIZE)
3713
0
            {
3714
0
                if (MZ_READ_LE32(pZip64_locator + MZ_ZIP64_ECDL_SIG_OFS) == MZ_ZIP64_END_OF_CENTRAL_DIR_LOCATOR_SIG)
3715
0
                {
3716
0
                    pZip->m_pState->m_zip64 = MZ_TRUE;
3717
0
                }
3718
0
            }
3719
0
        }
3720
3721
0
        if (pZip->m_pState->m_zip64)
3722
0
        {
3723
            /* Try locating the EOCD64 right before the EOCD64 locator. This works even
3724
             * when the effective start of the zip header is not yet known. */
3725
0
            if (cur_file_ofs < MZ_ZIP64_END_OF_CENTRAL_DIR_LOCATOR_SIZE +
3726
0
                                   MZ_ZIP64_END_OF_CENTRAL_DIR_HEADER_SIZE)
3727
0
                return mz_zip_set_error(pZip, MZ_ZIP_NOT_AN_ARCHIVE);
3728
3729
0
            zip64_end_of_central_dir_ofs = cur_file_ofs -
3730
0
                                           MZ_ZIP64_END_OF_CENTRAL_DIR_LOCATOR_SIZE -
3731
0
                                           MZ_ZIP64_END_OF_CENTRAL_DIR_HEADER_SIZE;
3732
3733
0
            if (!mz_zip_reader_eocd64_valid(pZip, zip64_end_of_central_dir_ofs,
3734
0
                                            pZip64_end_of_central_dir))
3735
0
            {
3736
                /* That failed, try reading where the locator tells us to. */
3737
0
                zip64_end_of_central_dir_ofs = MZ_READ_LE64(
3738
0
                    pZip64_locator + MZ_ZIP64_ECDL_REL_OFS_TO_ZIP64_ECDR_OFS);
3739
3740
0
                if (zip64_end_of_central_dir_ofs >
3741
0
                    (pZip->m_archive_size - MZ_ZIP64_END_OF_CENTRAL_DIR_HEADER_SIZE))
3742
0
                    return mz_zip_set_error(pZip, MZ_ZIP_NOT_AN_ARCHIVE);
3743
3744
0
                if (!mz_zip_reader_eocd64_valid(pZip, zip64_end_of_central_dir_ofs,
3745
0
                                                pZip64_end_of_central_dir))
3746
0
                    return mz_zip_set_error(pZip, MZ_ZIP_NOT_AN_ARCHIVE);
3747
0
            }
3748
0
        }
3749
3750
0
        pZip->m_total_files = MZ_READ_LE16(pBuf + MZ_ZIP_ECDH_CDIR_TOTAL_ENTRIES_OFS);
3751
0
        cdir_entries_on_this_disk = MZ_READ_LE16(pBuf + MZ_ZIP_ECDH_CDIR_NUM_ENTRIES_ON_DISK_OFS);
3752
0
        num_this_disk = MZ_READ_LE16(pBuf + MZ_ZIP_ECDH_NUM_THIS_DISK_OFS);
3753
0
        cdir_disk_index = MZ_READ_LE16(pBuf + MZ_ZIP_ECDH_NUM_DISK_CDIR_OFS);
3754
0
        cdir_size = MZ_READ_LE32(pBuf + MZ_ZIP_ECDH_CDIR_SIZE_OFS);
3755
0
        cdir_ofs = MZ_READ_LE32(pBuf + MZ_ZIP_ECDH_CDIR_OFS_OFS);
3756
3757
0
        if (pZip->m_pState->m_zip64)
3758
0
        {
3759
0
            mz_uint32 zip64_total_num_of_disks = MZ_READ_LE32(pZip64_locator + MZ_ZIP64_ECDL_TOTAL_NUMBER_OF_DISKS_OFS);
3760
0
            mz_uint64 zip64_cdir_total_entries = MZ_READ_LE64(pZip64_end_of_central_dir + MZ_ZIP64_ECDH_CDIR_TOTAL_ENTRIES_OFS);
3761
0
            mz_uint64 zip64_cdir_total_entries_on_this_disk = MZ_READ_LE64(pZip64_end_of_central_dir + MZ_ZIP64_ECDH_CDIR_NUM_ENTRIES_ON_DISK_OFS);
3762
0
            mz_uint64 zip64_size_of_end_of_central_dir_record = MZ_READ_LE64(pZip64_end_of_central_dir + MZ_ZIP64_ECDH_SIZE_OF_RECORD_OFS);
3763
0
            mz_uint64 zip64_size_of_central_directory = MZ_READ_LE64(pZip64_end_of_central_dir + MZ_ZIP64_ECDH_CDIR_SIZE_OFS);
3764
3765
0
            if (zip64_size_of_end_of_central_dir_record < (MZ_ZIP64_END_OF_CENTRAL_DIR_HEADER_SIZE - 12))
3766
0
                return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
3767
3768
0
            if (zip64_total_num_of_disks != 1U)
3769
0
                return mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_MULTIDISK);
3770
3771
            /* Check for miniz's practical limits */
3772
0
            if (zip64_cdir_total_entries > MZ_UINT32_MAX)
3773
0
                return mz_zip_set_error(pZip, MZ_ZIP_TOO_MANY_FILES);
3774
3775
0
            pZip->m_total_files = (mz_uint32)zip64_cdir_total_entries;
3776
3777
0
            if (zip64_cdir_total_entries_on_this_disk > MZ_UINT32_MAX)
3778
0
                return mz_zip_set_error(pZip, MZ_ZIP_TOO_MANY_FILES);
3779
3780
0
            cdir_entries_on_this_disk = (mz_uint32)zip64_cdir_total_entries_on_this_disk;
3781
3782
            /* Check for miniz's current practical limits (sorry, this should be enough for millions of files) */
3783
0
            if (zip64_size_of_central_directory > MZ_UINT32_MAX)
3784
0
                return mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_CDIR_SIZE);
3785
3786
0
            cdir_size = (mz_uint32)zip64_size_of_central_directory;
3787
3788
0
            num_this_disk = MZ_READ_LE32(pZip64_end_of_central_dir + MZ_ZIP64_ECDH_NUM_THIS_DISK_OFS);
3789
3790
0
            cdir_disk_index = MZ_READ_LE32(pZip64_end_of_central_dir + MZ_ZIP64_ECDH_NUM_DISK_CDIR_OFS);
3791
3792
0
            cdir_ofs = MZ_READ_LE64(pZip64_end_of_central_dir + MZ_ZIP64_ECDH_CDIR_OFS_OFS);
3793
0
        }
3794
3795
0
        if (pZip->m_total_files != cdir_entries_on_this_disk)
3796
0
            return mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_MULTIDISK);
3797
3798
0
        if (((num_this_disk | cdir_disk_index) != 0) && ((num_this_disk != 1) || (cdir_disk_index != 1)))
3799
0
            return mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_MULTIDISK);
3800
3801
0
        if (cdir_size < (mz_uint64)pZip->m_total_files * MZ_ZIP_CENTRAL_DIR_HEADER_SIZE)
3802
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
3803
3804
0
        if ((cdir_ofs + (mz_uint64)cdir_size) > pZip->m_archive_size)
3805
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
3806
3807
0
        if (eocd_ofs < cdir_ofs + cdir_size)
3808
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
3809
3810
        /* The end of central dir follows the central dir, unless the zip file has
3811
         * some trailing data (e.g. it is appended to an executable file). */
3812
0
        archive_ofs = eocd_ofs - (cdir_ofs + cdir_size);
3813
0
        if (pZip->m_pState->m_zip64)
3814
0
        {
3815
0
            if (archive_ofs < MZ_ZIP64_END_OF_CENTRAL_DIR_HEADER_SIZE +
3816
0
                                  MZ_ZIP64_END_OF_CENTRAL_DIR_LOCATOR_SIZE)
3817
0
                return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
3818
3819
0
            archive_ofs -= MZ_ZIP64_END_OF_CENTRAL_DIR_HEADER_SIZE +
3820
0
                           MZ_ZIP64_END_OF_CENTRAL_DIR_LOCATOR_SIZE;
3821
0
        }
3822
3823
        /* Update the archive start position, but only if not specified. */
3824
0
        if ((pZip->m_zip_type == MZ_ZIP_TYPE_FILE || pZip->m_zip_type == MZ_ZIP_TYPE_CFILE ||
3825
0
            pZip->m_zip_type == MZ_ZIP_TYPE_USER) && pZip->m_pState->m_file_archive_start_ofs == 0)
3826
0
        {
3827
0
            pZip->m_pState->m_file_archive_start_ofs = archive_ofs;
3828
0
            pZip->m_archive_size -= archive_ofs;
3829
0
        }
3830
3831
0
        pZip->m_central_directory_file_ofs = cdir_ofs;
3832
3833
0
        if (pZip->m_total_files)
3834
0
        {
3835
0
            mz_uint i, n;
3836
            /* Read the entire central directory into a heap block, and allocate another heap block to hold the unsorted central dir file record offsets, and possibly another to hold the sorted indices. */
3837
0
            if ((!mz_zip_array_resize(pZip, &pZip->m_pState->m_central_dir, cdir_size, MZ_FALSE)) ||
3838
0
                (!mz_zip_array_resize(pZip, &pZip->m_pState->m_central_dir_offsets, pZip->m_total_files, MZ_FALSE)))
3839
0
                return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
3840
3841
0
            if (sort_central_dir)
3842
0
            {
3843
0
                if (!mz_zip_array_resize(pZip, &pZip->m_pState->m_sorted_central_dir_offsets, pZip->m_total_files, MZ_FALSE))
3844
0
                    return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
3845
0
            }
3846
3847
0
            if (pZip->m_pRead(pZip->m_pIO_opaque, cdir_ofs, pZip->m_pState->m_central_dir.m_p, cdir_size) != cdir_size)
3848
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_READ_FAILED);
3849
3850
            /* Now create an index into the central directory file records, do some basic sanity checking on each record */
3851
0
            p = (const mz_uint8 *)pZip->m_pState->m_central_dir.m_p;
3852
0
            for (n = cdir_size, i = 0; i < pZip->m_total_files; ++i)
3853
0
            {
3854
0
                mz_uint total_header_size, disk_index, bit_flags, filename_size, ext_data_size;
3855
0
                mz_uint64 comp_size, decomp_size, local_header_ofs;
3856
3857
0
                if ((n < MZ_ZIP_CENTRAL_DIR_HEADER_SIZE) || (MZ_READ_LE32(p) != MZ_ZIP_CENTRAL_DIR_HEADER_SIG))
3858
0
                    return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
3859
3860
0
                MZ_ZIP_ARRAY_ELEMENT(&pZip->m_pState->m_central_dir_offsets, mz_uint32, i) = (mz_uint32)(p - (const mz_uint8 *)pZip->m_pState->m_central_dir.m_p);
3861
3862
0
                if (sort_central_dir)
3863
0
                    MZ_ZIP_ARRAY_ELEMENT(&pZip->m_pState->m_sorted_central_dir_offsets, mz_uint32, i) = i;
3864
3865
0
                comp_size = MZ_READ_LE32(p + MZ_ZIP_CDH_COMPRESSED_SIZE_OFS);
3866
0
                decomp_size = MZ_READ_LE32(p + MZ_ZIP_CDH_DECOMPRESSED_SIZE_OFS);
3867
0
                local_header_ofs = MZ_READ_LE32(p + MZ_ZIP_CDH_LOCAL_HEADER_OFS);
3868
0
                filename_size = MZ_READ_LE16(p + MZ_ZIP_CDH_FILENAME_LEN_OFS);
3869
0
                ext_data_size = MZ_READ_LE16(p + MZ_ZIP_CDH_EXTRA_LEN_OFS);
3870
3871
0
                if ((!pZip->m_pState->m_zip64_has_extended_info_fields) &&
3872
0
                    (ext_data_size) &&
3873
0
                    (MZ_MAX(MZ_MAX(comp_size, decomp_size), local_header_ofs) == MZ_UINT32_MAX))
3874
0
                {
3875
                    /* Attempt to find zip64 extended information field in the entry's extra data */
3876
0
                    mz_uint32 extra_size_remaining = ext_data_size;
3877
3878
0
                    if (extra_size_remaining)
3879
0
                    {
3880
0
                        const mz_uint8 *pExtra_data;
3881
0
                        void *buf = NULL;
3882
3883
0
                        if (MZ_ZIP_CENTRAL_DIR_HEADER_SIZE + filename_size + ext_data_size > n)
3884
0
                        {
3885
0
                            buf = MZ_MALLOC(ext_data_size);
3886
0
                            if (buf == NULL)
3887
0
                                return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
3888
3889
0
                            if (pZip->m_pRead(pZip->m_pIO_opaque, cdir_ofs + MZ_ZIP_CENTRAL_DIR_HEADER_SIZE + filename_size, buf, ext_data_size) != ext_data_size)
3890
0
                            {
3891
0
                                MZ_FREE(buf);
3892
0
                                return mz_zip_set_error(pZip, MZ_ZIP_FILE_READ_FAILED);
3893
0
                            }
3894
3895
0
                            pExtra_data = (mz_uint8 *)buf;
3896
0
                        }
3897
0
                        else
3898
0
                        {
3899
0
                            pExtra_data = p + MZ_ZIP_CENTRAL_DIR_HEADER_SIZE + filename_size;
3900
0
                        }
3901
3902
0
                        do
3903
0
                        {
3904
0
                            mz_uint32 field_id;
3905
0
                            mz_uint32 field_data_size;
3906
3907
0
                            if (extra_size_remaining < (sizeof(mz_uint16) * 2))
3908
0
                            {
3909
0
                                MZ_FREE(buf);
3910
0
                                return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
3911
0
                            }
3912
3913
0
                            field_id = MZ_READ_LE16(pExtra_data);
3914
0
                            field_data_size = MZ_READ_LE16(pExtra_data + sizeof(mz_uint16));
3915
3916
0
                            if ((field_data_size + sizeof(mz_uint16) * 2) > extra_size_remaining)
3917
0
                            {
3918
0
                                MZ_FREE(buf);
3919
0
                                return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
3920
0
                            }
3921
3922
0
                            if (field_id == MZ_ZIP64_EXTENDED_INFORMATION_FIELD_HEADER_ID)
3923
0
                            {
3924
                                /* Ok, the archive didn't have any zip64 headers but it uses a zip64 extended information field so mark it as zip64 anyway (this can occur with infozip's zip util when it reads compresses files from stdin). */
3925
0
                                pZip->m_pState->m_zip64 = MZ_TRUE;
3926
0
                                pZip->m_pState->m_zip64_has_extended_info_fields = MZ_TRUE;
3927
0
                                break;
3928
0
                            }
3929
3930
0
                            pExtra_data += sizeof(mz_uint16) * 2 + field_data_size;
3931
0
                            extra_size_remaining = extra_size_remaining - sizeof(mz_uint16) * 2 - field_data_size;
3932
0
                        } while (extra_size_remaining);
3933
3934
0
                        MZ_FREE(buf);
3935
0
                    }
3936
0
                }
3937
3938
                /* I've seen archives that aren't marked as zip64 that uses zip64 ext data, argh */
3939
0
                if ((comp_size != MZ_UINT32_MAX) && (decomp_size != MZ_UINT32_MAX))
3940
0
                {
3941
0
                    if (((!MZ_READ_LE32(p + MZ_ZIP_CDH_METHOD_OFS)) && (decomp_size != comp_size)) || (decomp_size && !comp_size))
3942
0
                        return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
3943
0
                }
3944
3945
0
                disk_index = MZ_READ_LE16(p + MZ_ZIP_CDH_DISK_START_OFS);
3946
0
                if ((disk_index == MZ_UINT16_MAX) || ((disk_index != num_this_disk) && (disk_index != 1)))
3947
0
                    return mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_MULTIDISK);
3948
3949
0
                if (comp_size != MZ_UINT32_MAX)
3950
0
                {
3951
0
                    if (((mz_uint64)MZ_READ_LE32(p + MZ_ZIP_CDH_LOCAL_HEADER_OFS) + MZ_ZIP_LOCAL_DIR_HEADER_SIZE + comp_size) > pZip->m_archive_size)
3952
0
                        return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
3953
0
                }
3954
3955
0
                bit_flags = MZ_READ_LE16(p + MZ_ZIP_CDH_BIT_FLAG_OFS);
3956
0
                if (bit_flags & MZ_ZIP_GENERAL_PURPOSE_BIT_FLAG_LOCAL_DIR_IS_MASKED)
3957
0
                    return mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_ENCRYPTION);
3958
3959
0
                if ((total_header_size = MZ_ZIP_CENTRAL_DIR_HEADER_SIZE + MZ_READ_LE16(p + MZ_ZIP_CDH_FILENAME_LEN_OFS) + MZ_READ_LE16(p + MZ_ZIP_CDH_EXTRA_LEN_OFS) + MZ_READ_LE16(p + MZ_ZIP_CDH_COMMENT_LEN_OFS)) > n)
3960
0
                    return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
3961
3962
0
                n -= total_header_size;
3963
0
                p += total_header_size;
3964
0
            }
3965
0
        }
3966
3967
0
        if (sort_central_dir)
3968
0
            mz_zip_reader_sort_central_dir_offsets_by_filename(pZip);
3969
3970
0
        return MZ_TRUE;
3971
0
    }
3972
3973
    void mz_zip_zero_struct(mz_zip_archive *pZip)
3974
0
    {
3975
0
        if (pZip)
3976
0
            MZ_CLEAR_PTR(pZip);
3977
0
    }
3978
3979
    static mz_bool mz_zip_reader_end_internal(mz_zip_archive *pZip, mz_bool set_last_error)
3980
0
    {
3981
0
        mz_bool status = MZ_TRUE;
3982
3983
0
        if (!pZip)
3984
0
            return MZ_FALSE;
3985
3986
0
        if ((!pZip->m_pState) || (!pZip->m_pAlloc) || (!pZip->m_pFree) || (pZip->m_zip_mode != MZ_ZIP_MODE_READING))
3987
0
        {
3988
0
            if (set_last_error)
3989
0
                pZip->m_last_error = MZ_ZIP_INVALID_PARAMETER;
3990
3991
0
            return MZ_FALSE;
3992
0
        }
3993
3994
0
        if (pZip->m_pState)
3995
0
        {
3996
0
            mz_zip_internal_state *pState = pZip->m_pState;
3997
0
            pZip->m_pState = NULL;
3998
3999
0
            mz_zip_array_clear(pZip, &pState->m_central_dir);
4000
0
            mz_zip_array_clear(pZip, &pState->m_central_dir_offsets);
4001
0
            mz_zip_array_clear(pZip, &pState->m_sorted_central_dir_offsets);
4002
4003
0
#ifndef MINIZ_NO_STDIO
4004
0
            if (pState->m_pFile)
4005
0
            {
4006
0
                if (pZip->m_zip_type == MZ_ZIP_TYPE_FILE)
4007
0
                {
4008
0
                    if (MZ_FCLOSE(pState->m_pFile) == EOF)
4009
0
                    {
4010
0
                        if (set_last_error)
4011
0
                            pZip->m_last_error = MZ_ZIP_FILE_CLOSE_FAILED;
4012
0
                        status = MZ_FALSE;
4013
0
                    }
4014
0
                }
4015
0
                pState->m_pFile = NULL;
4016
0
            }
4017
0
#endif /* #ifndef MINIZ_NO_STDIO */
4018
4019
0
            pZip->m_pFree(pZip->m_pAlloc_opaque, pState);
4020
0
        }
4021
0
        pZip->m_zip_mode = MZ_ZIP_MODE_INVALID;
4022
4023
0
        return status;
4024
0
    }
4025
4026
    mz_bool mz_zip_reader_end(mz_zip_archive *pZip)
4027
0
    {
4028
0
        return mz_zip_reader_end_internal(pZip, MZ_TRUE);
4029
0
    }
4030
    mz_bool mz_zip_reader_init(mz_zip_archive *pZip, mz_uint64 size, mz_uint flags)
4031
0
    {
4032
0
        if ((!pZip) || (!pZip->m_pRead))
4033
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
4034
4035
0
        if (!mz_zip_reader_init_internal(pZip, flags))
4036
0
            return MZ_FALSE;
4037
4038
0
        pZip->m_zip_type = MZ_ZIP_TYPE_USER;
4039
0
        pZip->m_archive_size = size;
4040
4041
0
        if (!mz_zip_reader_read_central_dir(pZip, flags))
4042
0
        {
4043
0
            mz_zip_reader_end_internal(pZip, MZ_FALSE);
4044
0
            return MZ_FALSE;
4045
0
        }
4046
4047
0
        return MZ_TRUE;
4048
0
    }
4049
4050
    static size_t mz_zip_mem_read_func(void *pOpaque, mz_uint64 file_ofs, void *pBuf, size_t n)
4051
0
    {
4052
0
        mz_zip_archive *pZip = (mz_zip_archive *)pOpaque;
4053
0
        size_t s = (file_ofs >= pZip->m_archive_size) ? 0 : (size_t)MZ_MIN(pZip->m_archive_size - file_ofs, n);
4054
0
        memcpy(pBuf, (const mz_uint8 *)pZip->m_pState->m_pMem + file_ofs, s);
4055
0
        return s;
4056
0
    }
4057
4058
    mz_bool mz_zip_reader_init_mem(mz_zip_archive *pZip, const void *pMem, size_t size, mz_uint flags)
4059
0
    {
4060
0
        if (!pMem)
4061
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
4062
4063
0
        if (size < MZ_ZIP_END_OF_CENTRAL_DIR_HEADER_SIZE)
4064
0
            return mz_zip_set_error(pZip, MZ_ZIP_NOT_AN_ARCHIVE);
4065
4066
0
        if (!mz_zip_reader_init_internal(pZip, flags))
4067
0
            return MZ_FALSE;
4068
4069
0
        pZip->m_zip_type = MZ_ZIP_TYPE_MEMORY;
4070
0
        pZip->m_archive_size = size;
4071
0
        pZip->m_pRead = mz_zip_mem_read_func;
4072
0
        pZip->m_pIO_opaque = pZip;
4073
0
        pZip->m_pNeeds_keepalive = NULL;
4074
4075
#ifdef __cplusplus
4076
        pZip->m_pState->m_pMem = const_cast<void *>(pMem);
4077
#else
4078
0
    pZip->m_pState->m_pMem = (void *)pMem;
4079
0
#endif
4080
4081
0
        pZip->m_pState->m_mem_size = size;
4082
4083
0
        if (!mz_zip_reader_read_central_dir(pZip, flags))
4084
0
        {
4085
0
            mz_zip_reader_end_internal(pZip, MZ_FALSE);
4086
0
            return MZ_FALSE;
4087
0
        }
4088
4089
0
        return MZ_TRUE;
4090
0
    }
4091
4092
#ifndef MINIZ_NO_STDIO
4093
    static size_t mz_zip_file_read_func(void *pOpaque, mz_uint64 file_ofs, void *pBuf, size_t n)
4094
0
    {
4095
0
        mz_zip_archive *pZip = (mz_zip_archive *)pOpaque;
4096
0
        mz_int64 cur_ofs = MZ_FTELL64(pZip->m_pState->m_pFile);
4097
4098
0
        file_ofs += pZip->m_pState->m_file_archive_start_ofs;
4099
4100
0
        if (((mz_int64)file_ofs < 0) || (((cur_ofs != (mz_int64)file_ofs)) && (MZ_FSEEK64(pZip->m_pState->m_pFile, (mz_int64)file_ofs, SEEK_SET))))
4101
0
            return 0;
4102
4103
0
        return MZ_FREAD(pBuf, 1, n, pZip->m_pState->m_pFile);
4104
0
    }
4105
4106
    mz_bool mz_zip_reader_init_file(mz_zip_archive *pZip, const char *pFilename, mz_uint32 flags)
4107
0
    {
4108
0
        return mz_zip_reader_init_file_v2(pZip, pFilename, flags, 0, 0);
4109
0
    }
4110
4111
    mz_bool mz_zip_reader_init_file_v2(mz_zip_archive *pZip, const char *pFilename, mz_uint flags, mz_uint64 file_start_ofs, mz_uint64 archive_size)
4112
0
    {
4113
0
        mz_uint64 file_size;
4114
0
        MZ_FILE *pFile;
4115
4116
0
        if ((!pZip) || (!pFilename) || ((archive_size) && (archive_size < MZ_ZIP_END_OF_CENTRAL_DIR_HEADER_SIZE)))
4117
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
4118
4119
0
        pFile = MZ_FOPEN(pFilename, (flags & MZ_ZIP_FLAG_READ_ALLOW_WRITING ) ? "r+b" : "rb");
4120
0
        if (!pFile)
4121
0
            return mz_zip_set_error(pZip, MZ_ZIP_FILE_OPEN_FAILED);
4122
4123
0
        file_size = archive_size;
4124
0
        if (!file_size)
4125
0
        {
4126
0
            if (MZ_FSEEK64(pFile, 0, SEEK_END))
4127
0
            {
4128
0
                MZ_FCLOSE(pFile);
4129
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_SEEK_FAILED);
4130
0
            }
4131
4132
0
            file_size = MZ_FTELL64(pFile);
4133
0
        }
4134
4135
        /* TODO: Better sanity check archive_size and the # of actual remaining bytes */
4136
4137
0
        if (file_size < MZ_ZIP_END_OF_CENTRAL_DIR_HEADER_SIZE)
4138
0
        {
4139
0
            MZ_FCLOSE(pFile);
4140
0
            return mz_zip_set_error(pZip, MZ_ZIP_NOT_AN_ARCHIVE);
4141
0
        }
4142
4143
0
        if (!mz_zip_reader_init_internal(pZip, flags))
4144
0
        {
4145
0
            MZ_FCLOSE(pFile);
4146
0
            return MZ_FALSE;
4147
0
        }
4148
4149
0
        pZip->m_zip_type = MZ_ZIP_TYPE_FILE;
4150
0
        pZip->m_pRead = mz_zip_file_read_func;
4151
0
        pZip->m_pIO_opaque = pZip;
4152
0
        pZip->m_pState->m_pFile = pFile;
4153
0
        pZip->m_archive_size = file_size;
4154
0
        pZip->m_pState->m_file_archive_start_ofs = file_start_ofs;
4155
4156
0
        if (!mz_zip_reader_read_central_dir(pZip, flags))
4157
0
        {
4158
0
            mz_zip_reader_end_internal(pZip, MZ_FALSE);
4159
0
            return MZ_FALSE;
4160
0
        }
4161
4162
0
        return MZ_TRUE;
4163
0
    }
4164
4165
    mz_bool mz_zip_reader_init_cfile(mz_zip_archive *pZip, MZ_FILE *pFile, mz_uint64 archive_size, mz_uint flags)
4166
0
    {
4167
0
        mz_uint64 cur_file_ofs;
4168
4169
0
        if ((!pZip) || (!pFile))
4170
0
            return mz_zip_set_error(pZip, MZ_ZIP_FILE_OPEN_FAILED);
4171
4172
0
        cur_file_ofs = MZ_FTELL64(pFile);
4173
4174
0
        if (!archive_size)
4175
0
        {
4176
0
            if (MZ_FSEEK64(pFile, 0, SEEK_END))
4177
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_SEEK_FAILED);
4178
4179
0
            archive_size = MZ_FTELL64(pFile) - cur_file_ofs;
4180
4181
0
            if (archive_size < MZ_ZIP_END_OF_CENTRAL_DIR_HEADER_SIZE)
4182
0
                return mz_zip_set_error(pZip, MZ_ZIP_NOT_AN_ARCHIVE);
4183
0
        }
4184
4185
0
        if (!mz_zip_reader_init_internal(pZip, flags))
4186
0
            return MZ_FALSE;
4187
4188
0
        pZip->m_zip_type = MZ_ZIP_TYPE_CFILE;
4189
0
        pZip->m_pRead = mz_zip_file_read_func;
4190
4191
0
        pZip->m_pIO_opaque = pZip;
4192
0
        pZip->m_pState->m_pFile = pFile;
4193
0
        pZip->m_archive_size = archive_size;
4194
0
        pZip->m_pState->m_file_archive_start_ofs = cur_file_ofs;
4195
4196
0
        if (!mz_zip_reader_read_central_dir(pZip, flags))
4197
0
        {
4198
0
            mz_zip_reader_end_internal(pZip, MZ_FALSE);
4199
0
            return MZ_FALSE;
4200
0
        }
4201
4202
0
        return MZ_TRUE;
4203
0
    }
4204
4205
#endif /* #ifndef MINIZ_NO_STDIO */
4206
4207
    static MZ_FORCEINLINE const mz_uint8 *mz_zip_get_cdh(mz_zip_archive *pZip, mz_uint file_index)
4208
0
    {
4209
0
        if ((!pZip) || (!pZip->m_pState) || (file_index >= pZip->m_total_files))
4210
0
            return NULL;
4211
0
        return &MZ_ZIP_ARRAY_ELEMENT(&pZip->m_pState->m_central_dir, mz_uint8, MZ_ZIP_ARRAY_ELEMENT(&pZip->m_pState->m_central_dir_offsets, mz_uint32, file_index));
4212
0
    }
4213
4214
    mz_bool mz_zip_reader_is_file_encrypted(mz_zip_archive *pZip, mz_uint file_index)
4215
0
    {
4216
0
        mz_uint m_bit_flag;
4217
0
        const mz_uint8 *p = mz_zip_get_cdh(pZip, file_index);
4218
0
        if (!p)
4219
0
        {
4220
0
            mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
4221
0
            return MZ_FALSE;
4222
0
        }
4223
4224
0
        m_bit_flag = MZ_READ_LE16(p + MZ_ZIP_CDH_BIT_FLAG_OFS);
4225
0
        return (m_bit_flag & (MZ_ZIP_GENERAL_PURPOSE_BIT_FLAG_IS_ENCRYPTED | MZ_ZIP_GENERAL_PURPOSE_BIT_FLAG_USES_STRONG_ENCRYPTION)) != 0;
4226
0
    }
4227
4228
    mz_bool mz_zip_reader_is_file_supported(mz_zip_archive *pZip, mz_uint file_index)
4229
0
    {
4230
0
        mz_uint bit_flag;
4231
0
        mz_uint method;
4232
4233
0
        const mz_uint8 *p = mz_zip_get_cdh(pZip, file_index);
4234
0
        if (!p)
4235
0
        {
4236
0
            mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
4237
0
            return MZ_FALSE;
4238
0
        }
4239
4240
0
        method = MZ_READ_LE16(p + MZ_ZIP_CDH_METHOD_OFS);
4241
0
        bit_flag = MZ_READ_LE16(p + MZ_ZIP_CDH_BIT_FLAG_OFS);
4242
4243
0
        if ((method != 0) && (method != MZ_DEFLATED))
4244
0
        {
4245
0
            mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_METHOD);
4246
0
            return MZ_FALSE;
4247
0
        }
4248
4249
0
        if (bit_flag & (MZ_ZIP_GENERAL_PURPOSE_BIT_FLAG_IS_ENCRYPTED | MZ_ZIP_GENERAL_PURPOSE_BIT_FLAG_USES_STRONG_ENCRYPTION))
4250
0
        {
4251
0
            mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_ENCRYPTION);
4252
0
            return MZ_FALSE;
4253
0
        }
4254
4255
0
        if (bit_flag & MZ_ZIP_GENERAL_PURPOSE_BIT_FLAG_COMPRESSED_PATCH_FLAG)
4256
0
        {
4257
0
            mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_FEATURE);
4258
0
            return MZ_FALSE;
4259
0
        }
4260
4261
0
        return MZ_TRUE;
4262
0
    }
4263
4264
    mz_bool mz_zip_reader_is_file_a_directory(mz_zip_archive *pZip, mz_uint file_index)
4265
0
    {
4266
0
        mz_uint filename_len, attribute_mapping_id, external_attr;
4267
0
        const mz_uint8 *p = mz_zip_get_cdh(pZip, file_index);
4268
0
        if (!p)
4269
0
        {
4270
0
            mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
4271
0
            return MZ_FALSE;
4272
0
        }
4273
4274
0
        filename_len = MZ_READ_LE16(p + MZ_ZIP_CDH_FILENAME_LEN_OFS);
4275
0
        if (filename_len)
4276
0
        {
4277
0
            if (*(p + MZ_ZIP_CENTRAL_DIR_HEADER_SIZE + filename_len - 1) == '/')
4278
0
                return MZ_TRUE;
4279
0
        }
4280
4281
        /* Bugfix: This code was also checking if the internal attribute was non-zero, which wasn't correct. */
4282
        /* Most/all zip writers (hopefully) set DOS file/directory attributes in the low 16-bits, so check for the DOS directory flag and ignore the source OS ID in the created by field. */
4283
        /* FIXME: Remove this check? Is it necessary - we already check the filename. */
4284
0
        attribute_mapping_id = MZ_READ_LE16(p + MZ_ZIP_CDH_VERSION_MADE_BY_OFS) >> 8;
4285
0
        (void)attribute_mapping_id;
4286
4287
0
        external_attr = MZ_READ_LE32(p + MZ_ZIP_CDH_EXTERNAL_ATTR_OFS);
4288
0
        if ((external_attr & MZ_ZIP_DOS_DIR_ATTRIBUTE_BITFLAG) != 0)
4289
0
        {
4290
0
            return MZ_TRUE;
4291
0
        }
4292
4293
0
        return MZ_FALSE;
4294
0
    }
4295
4296
    static mz_bool mz_zip_file_stat_internal(mz_zip_archive *pZip, mz_uint file_index, const mz_uint8 *pCentral_dir_header, mz_zip_archive_file_stat *pStat, mz_bool *pFound_zip64_extra_data)
4297
0
    {
4298
0
        mz_uint n;
4299
0
        const mz_uint8 *p = pCentral_dir_header;
4300
4301
0
        if (pFound_zip64_extra_data)
4302
0
            *pFound_zip64_extra_data = MZ_FALSE;
4303
4304
0
        if ((!p) || (!pStat))
4305
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
4306
4307
        /* Extract fields from the central directory record. */
4308
0
        pStat->m_file_index = file_index;
4309
0
        pStat->m_central_dir_ofs = MZ_ZIP_ARRAY_ELEMENT(&pZip->m_pState->m_central_dir_offsets, mz_uint32, file_index);
4310
0
        pStat->m_version_made_by = MZ_READ_LE16(p + MZ_ZIP_CDH_VERSION_MADE_BY_OFS);
4311
0
        pStat->m_version_needed = MZ_READ_LE16(p + MZ_ZIP_CDH_VERSION_NEEDED_OFS);
4312
0
        pStat->m_bit_flag = MZ_READ_LE16(p + MZ_ZIP_CDH_BIT_FLAG_OFS);
4313
0
        pStat->m_method = MZ_READ_LE16(p + MZ_ZIP_CDH_METHOD_OFS);
4314
0
#ifndef MINIZ_NO_TIME
4315
0
        pStat->m_time = mz_zip_dos_to_time_t(MZ_READ_LE16(p + MZ_ZIP_CDH_FILE_TIME_OFS), MZ_READ_LE16(p + MZ_ZIP_CDH_FILE_DATE_OFS));
4316
0
#endif
4317
0
        pStat->m_crc32 = MZ_READ_LE32(p + MZ_ZIP_CDH_CRC32_OFS);
4318
0
        pStat->m_comp_size = MZ_READ_LE32(p + MZ_ZIP_CDH_COMPRESSED_SIZE_OFS);
4319
0
        pStat->m_uncomp_size = MZ_READ_LE32(p + MZ_ZIP_CDH_DECOMPRESSED_SIZE_OFS);
4320
0
        pStat->m_internal_attr = MZ_READ_LE16(p + MZ_ZIP_CDH_INTERNAL_ATTR_OFS);
4321
0
        pStat->m_external_attr = MZ_READ_LE32(p + MZ_ZIP_CDH_EXTERNAL_ATTR_OFS);
4322
0
        pStat->m_local_header_ofs = MZ_READ_LE32(p + MZ_ZIP_CDH_LOCAL_HEADER_OFS);
4323
4324
        /* Copy as much of the filename and comment as possible. */
4325
0
        n = MZ_READ_LE16(p + MZ_ZIP_CDH_FILENAME_LEN_OFS);
4326
0
        n = MZ_MIN(n, MZ_ZIP_MAX_ARCHIVE_FILENAME_SIZE - 1);
4327
0
        memcpy(pStat->m_filename, p + MZ_ZIP_CENTRAL_DIR_HEADER_SIZE, n);
4328
0
        pStat->m_filename[n] = '\0';
4329
4330
0
        n = MZ_READ_LE16(p + MZ_ZIP_CDH_COMMENT_LEN_OFS);
4331
0
        n = MZ_MIN(n, MZ_ZIP_MAX_ARCHIVE_FILE_COMMENT_SIZE - 1);
4332
0
        pStat->m_comment_size = n;
4333
0
        memcpy(pStat->m_comment, p + MZ_ZIP_CENTRAL_DIR_HEADER_SIZE + MZ_READ_LE16(p + MZ_ZIP_CDH_FILENAME_LEN_OFS) + MZ_READ_LE16(p + MZ_ZIP_CDH_EXTRA_LEN_OFS), n);
4334
0
        pStat->m_comment[n] = '\0';
4335
4336
        /* Set some flags for convienance */
4337
0
        pStat->m_is_directory = mz_zip_reader_is_file_a_directory(pZip, file_index);
4338
0
        pStat->m_is_encrypted = mz_zip_reader_is_file_encrypted(pZip, file_index);
4339
0
        pStat->m_is_supported = mz_zip_reader_is_file_supported(pZip, file_index);
4340
4341
        /* See if we need to read any zip64 extended information fields. */
4342
        /* Confusingly, these zip64 fields can be present even on non-zip64 archives (Debian zip on a huge files from stdin piped to stdout creates them). */
4343
0
        if (MZ_MAX(MZ_MAX(pStat->m_comp_size, pStat->m_uncomp_size), pStat->m_local_header_ofs) == MZ_UINT32_MAX)
4344
0
        {
4345
            /* Attempt to find zip64 extended information field in the entry's extra data */
4346
0
            mz_uint32 extra_size_remaining = MZ_READ_LE16(p + MZ_ZIP_CDH_EXTRA_LEN_OFS);
4347
4348
0
            if (extra_size_remaining)
4349
0
            {
4350
0
                const mz_uint8 *pExtra_data = p + MZ_ZIP_CENTRAL_DIR_HEADER_SIZE + MZ_READ_LE16(p + MZ_ZIP_CDH_FILENAME_LEN_OFS);
4351
4352
0
                do
4353
0
                {
4354
0
                    mz_uint32 field_id;
4355
0
                    mz_uint32 field_data_size;
4356
4357
0
                    if (extra_size_remaining < (sizeof(mz_uint16) * 2))
4358
0
                        return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
4359
4360
0
                    field_id = MZ_READ_LE16(pExtra_data);
4361
0
                    field_data_size = MZ_READ_LE16(pExtra_data + sizeof(mz_uint16));
4362
4363
0
                    if ((field_data_size + sizeof(mz_uint16) * 2) > extra_size_remaining)
4364
0
                        return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
4365
4366
0
                    if (field_id == MZ_ZIP64_EXTENDED_INFORMATION_FIELD_HEADER_ID)
4367
0
                    {
4368
0
                        const mz_uint8 *pField_data = pExtra_data + sizeof(mz_uint16) * 2;
4369
0
                        mz_uint32 field_data_remaining = field_data_size;
4370
4371
0
                        if (pFound_zip64_extra_data)
4372
0
                            *pFound_zip64_extra_data = MZ_TRUE;
4373
4374
0
                        if (pStat->m_uncomp_size == MZ_UINT32_MAX)
4375
0
                        {
4376
0
                            if (field_data_remaining < sizeof(mz_uint64))
4377
0
                                return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
4378
4379
0
                            pStat->m_uncomp_size = MZ_READ_LE64(pField_data);
4380
0
                            pField_data += sizeof(mz_uint64);
4381
0
                            field_data_remaining -= sizeof(mz_uint64);
4382
0
                        }
4383
4384
0
                        if (pStat->m_comp_size == MZ_UINT32_MAX)
4385
0
                        {
4386
0
                            if (field_data_remaining < sizeof(mz_uint64))
4387
0
                                return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
4388
4389
0
                            pStat->m_comp_size = MZ_READ_LE64(pField_data);
4390
0
                            pField_data += sizeof(mz_uint64);
4391
0
                            field_data_remaining -= sizeof(mz_uint64);
4392
0
                        }
4393
4394
0
                        if (pStat->m_local_header_ofs == MZ_UINT32_MAX)
4395
0
                        {
4396
0
                            if (field_data_remaining < sizeof(mz_uint64))
4397
0
                                return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
4398
4399
0
                            pStat->m_local_header_ofs = MZ_READ_LE64(pField_data);
4400
0
                            pField_data += sizeof(mz_uint64);
4401
0
                            field_data_remaining -= sizeof(mz_uint64);
4402
0
                        }
4403
4404
0
                        break;
4405
0
                    }
4406
4407
0
                    pExtra_data += sizeof(mz_uint16) * 2 + field_data_size;
4408
0
                    extra_size_remaining = extra_size_remaining - sizeof(mz_uint16) * 2 - field_data_size;
4409
0
                } while (extra_size_remaining);
4410
0
            }
4411
0
        }
4412
4413
0
        return MZ_TRUE;
4414
0
    }
4415
4416
    static MZ_FORCEINLINE mz_bool mz_zip_string_equal(const char *pA, const char *pB, mz_uint len, mz_uint flags)
4417
0
    {
4418
0
        mz_uint i;
4419
0
        if (flags & MZ_ZIP_FLAG_CASE_SENSITIVE)
4420
0
            return 0 == memcmp(pA, pB, len);
4421
0
        for (i = 0; i < len; ++i)
4422
0
            if (MZ_TOLOWER(pA[i]) != MZ_TOLOWER(pB[i]))
4423
0
                return MZ_FALSE;
4424
0
        return MZ_TRUE;
4425
0
    }
4426
4427
    static MZ_FORCEINLINE int mz_zip_filename_compare(const mz_zip_array *pCentral_dir_array, const mz_zip_array *pCentral_dir_offsets, mz_uint l_index, const char *pR, mz_uint r_len)
4428
0
    {
4429
0
        const mz_uint8 *pL = &MZ_ZIP_ARRAY_ELEMENT(pCentral_dir_array, mz_uint8, MZ_ZIP_ARRAY_ELEMENT(pCentral_dir_offsets, mz_uint32, l_index)), *pE;
4430
0
        mz_uint l_len = MZ_READ_LE16(pL + MZ_ZIP_CDH_FILENAME_LEN_OFS);
4431
0
        mz_uint8 l = 0, r = 0;
4432
0
        pL += MZ_ZIP_CENTRAL_DIR_HEADER_SIZE;
4433
0
        pE = pL + MZ_MIN(l_len, r_len);
4434
0
        while (pL < pE)
4435
0
        {
4436
0
            if ((l = MZ_TOLOWER(*pL)) != (r = MZ_TOLOWER(*pR)))
4437
0
                break;
4438
0
            pL++;
4439
0
            pR++;
4440
0
        }
4441
0
        return (pL == pE) ? (int)(l_len - r_len) : (l - r);
4442
0
    }
4443
4444
    static mz_bool mz_zip_locate_file_binary_search(mz_zip_archive *pZip, const char *pFilename, mz_uint32 *pIndex)
4445
0
    {
4446
0
        mz_zip_internal_state *pState = pZip->m_pState;
4447
0
        const mz_zip_array *pCentral_dir_offsets = &pState->m_central_dir_offsets;
4448
0
        const mz_zip_array *pCentral_dir = &pState->m_central_dir;
4449
0
        mz_uint32 *pIndices = &MZ_ZIP_ARRAY_ELEMENT(&pState->m_sorted_central_dir_offsets, mz_uint32, 0);
4450
0
        const mz_uint32 size = pZip->m_total_files;
4451
0
        const mz_uint filename_len = (mz_uint)strlen(pFilename);
4452
4453
0
        if (pIndex)
4454
0
            *pIndex = 0;
4455
4456
0
        if (size)
4457
0
        {
4458
            /* yes I could use uint32_t's, but then we would have to add some special case checks in the loop, argh, and */
4459
            /* honestly the major expense here on 32-bit CPU's will still be the filename compare */
4460
0
            mz_int64 l = 0, h = (mz_int64)size - 1;
4461
4462
0
            while (l <= h)
4463
0
            {
4464
0
                mz_int64 m = l + ((h - l) >> 1);
4465
0
                mz_uint32 file_index = pIndices[(mz_uint32)m];
4466
4467
0
                int comp = mz_zip_filename_compare(pCentral_dir, pCentral_dir_offsets, file_index, pFilename, filename_len);
4468
0
                if (!comp)
4469
0
                {
4470
0
                    if (pIndex)
4471
0
                        *pIndex = file_index;
4472
0
                    return MZ_TRUE;
4473
0
                }
4474
0
                else if (comp < 0)
4475
0
                    l = m + 1;
4476
0
                else
4477
0
                    h = m - 1;
4478
0
            }
4479
0
        }
4480
4481
0
        return mz_zip_set_error(pZip, MZ_ZIP_FILE_NOT_FOUND);
4482
0
    }
4483
4484
    int mz_zip_reader_locate_file(mz_zip_archive *pZip, const char *pName, const char *pComment, mz_uint flags)
4485
0
    {
4486
0
        mz_uint32 index;
4487
0
        if (!mz_zip_reader_locate_file_v2(pZip, pName, pComment, flags, &index))
4488
0
            return -1;
4489
0
        else
4490
0
            return (int)index;
4491
0
    }
4492
4493
    mz_bool mz_zip_reader_locate_file_v2(mz_zip_archive *pZip, const char *pName, const char *pComment, mz_uint flags, mz_uint32 *pIndex)
4494
0
    {
4495
0
        mz_uint file_index;
4496
0
        size_t name_len, comment_len;
4497
4498
0
        if (pIndex)
4499
0
            *pIndex = 0;
4500
4501
0
        if ((!pZip) || (!pZip->m_pState) || (!pName))
4502
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
4503
4504
        /* See if we can use a binary search */
4505
0
        if (((pZip->m_pState->m_init_flags & MZ_ZIP_FLAG_DO_NOT_SORT_CENTRAL_DIRECTORY) == 0) &&
4506
0
            (pZip->m_zip_mode == MZ_ZIP_MODE_READING) &&
4507
0
            ((flags & (MZ_ZIP_FLAG_IGNORE_PATH | MZ_ZIP_FLAG_CASE_SENSITIVE)) == 0) && (!pComment) && (pZip->m_pState->m_sorted_central_dir_offsets.m_size))
4508
0
        {
4509
0
            return mz_zip_locate_file_binary_search(pZip, pName, pIndex);
4510
0
        }
4511
4512
        /* Locate the entry by scanning the entire central directory */
4513
0
        name_len = strlen(pName);
4514
0
        if (name_len > MZ_UINT16_MAX)
4515
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
4516
4517
0
        comment_len = pComment ? strlen(pComment) : 0;
4518
0
        if (comment_len > MZ_UINT16_MAX)
4519
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
4520
4521
0
        for (file_index = 0; file_index < pZip->m_total_files; file_index++)
4522
0
        {
4523
0
            const mz_uint8 *pHeader = &MZ_ZIP_ARRAY_ELEMENT(&pZip->m_pState->m_central_dir, mz_uint8, MZ_ZIP_ARRAY_ELEMENT(&pZip->m_pState->m_central_dir_offsets, mz_uint32, file_index));
4524
0
            mz_uint filename_len = MZ_READ_LE16(pHeader + MZ_ZIP_CDH_FILENAME_LEN_OFS);
4525
0
            const char *pFilename = (const char *)pHeader + MZ_ZIP_CENTRAL_DIR_HEADER_SIZE;
4526
0
            if (filename_len < name_len)
4527
0
                continue;
4528
0
            if (comment_len)
4529
0
            {
4530
0
                mz_uint file_extra_len = MZ_READ_LE16(pHeader + MZ_ZIP_CDH_EXTRA_LEN_OFS), file_comment_len = MZ_READ_LE16(pHeader + MZ_ZIP_CDH_COMMENT_LEN_OFS);
4531
0
                const char *pFile_comment = pFilename + filename_len + file_extra_len;
4532
0
                if ((file_comment_len != comment_len) || (!mz_zip_string_equal(pComment, pFile_comment, file_comment_len, flags)))
4533
0
                    continue;
4534
0
            }
4535
0
            if ((flags & MZ_ZIP_FLAG_IGNORE_PATH) && (filename_len))
4536
0
            {
4537
0
                int ofs = filename_len - 1;
4538
0
                do
4539
0
                {
4540
0
                    if ((pFilename[ofs] == '/') || (pFilename[ofs] == '\\') || (pFilename[ofs] == ':'))
4541
0
                        break;
4542
0
                } while (--ofs >= 0);
4543
0
                ofs++;
4544
0
                pFilename += ofs;
4545
0
                filename_len -= ofs;
4546
0
            }
4547
0
            if ((filename_len == name_len) && (mz_zip_string_equal(pName, pFilename, filename_len, flags)))
4548
0
            {
4549
0
                if (pIndex)
4550
0
                    *pIndex = file_index;
4551
0
                return MZ_TRUE;
4552
0
            }
4553
0
        }
4554
4555
0
        return mz_zip_set_error(pZip, MZ_ZIP_FILE_NOT_FOUND);
4556
0
    }
4557
4558
    static mz_bool mz_zip_reader_extract_to_mem_no_alloc1(mz_zip_archive *pZip, mz_uint file_index, void *pBuf, size_t buf_size, mz_uint flags, void *pUser_read_buf, size_t user_read_buf_size, const mz_zip_archive_file_stat *st)
4559
0
    {
4560
0
        int status = TINFL_STATUS_DONE;
4561
0
        mz_uint64 needed_size, cur_file_ofs, comp_remaining, out_buf_ofs = 0, read_buf_size, read_buf_ofs = 0, read_buf_avail;
4562
0
        mz_zip_archive_file_stat file_stat;
4563
0
        void *pRead_buf;
4564
0
        mz_uint32 local_header_u32[(MZ_ZIP_LOCAL_DIR_HEADER_SIZE + sizeof(mz_uint32) - 1) / sizeof(mz_uint32)];
4565
0
        mz_uint8 *pLocal_header = (mz_uint8 *)local_header_u32;
4566
0
        tinfl_decompressor inflator;
4567
4568
0
        if ((!pZip) || (!pZip->m_pState) || ((buf_size) && (!pBuf)) || ((user_read_buf_size) && (!pUser_read_buf)) || (!pZip->m_pRead))
4569
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
4570
4571
0
        if (st)
4572
0
        {
4573
0
            file_stat = *st;
4574
0
        }
4575
0
        else if (!mz_zip_reader_file_stat(pZip, file_index, &file_stat))
4576
0
            return MZ_FALSE;
4577
4578
        /* A directory or zero length file */
4579
0
        if ((file_stat.m_is_directory) || (!file_stat.m_comp_size))
4580
0
            return MZ_TRUE;
4581
4582
        /* Encryption and patch files are not supported. */
4583
0
        if (file_stat.m_bit_flag & (MZ_ZIP_GENERAL_PURPOSE_BIT_FLAG_IS_ENCRYPTED | MZ_ZIP_GENERAL_PURPOSE_BIT_FLAG_USES_STRONG_ENCRYPTION | MZ_ZIP_GENERAL_PURPOSE_BIT_FLAG_COMPRESSED_PATCH_FLAG))
4584
0
            return mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_ENCRYPTION);
4585
4586
        /* This function only supports decompressing stored and deflate. */
4587
0
        if ((!(flags & MZ_ZIP_FLAG_COMPRESSED_DATA)) && (file_stat.m_method != 0) && (file_stat.m_method != MZ_DEFLATED))
4588
0
            return mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_METHOD);
4589
4590
        /* Ensure supplied output buffer is large enough. */
4591
0
        needed_size = (flags & MZ_ZIP_FLAG_COMPRESSED_DATA) ? file_stat.m_comp_size : file_stat.m_uncomp_size;
4592
0
        if (buf_size < needed_size)
4593
0
            return mz_zip_set_error(pZip, MZ_ZIP_BUF_TOO_SMALL);
4594
4595
        /* Read and parse the local directory entry. */
4596
0
        cur_file_ofs = file_stat.m_local_header_ofs;
4597
0
        if (pZip->m_pRead(pZip->m_pIO_opaque, cur_file_ofs, pLocal_header, MZ_ZIP_LOCAL_DIR_HEADER_SIZE) != MZ_ZIP_LOCAL_DIR_HEADER_SIZE)
4598
0
            return mz_zip_set_error(pZip, MZ_ZIP_FILE_READ_FAILED);
4599
4600
0
        if (MZ_READ_LE32(pLocal_header) != MZ_ZIP_LOCAL_DIR_HEADER_SIG)
4601
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
4602
4603
0
        cur_file_ofs += (mz_uint64)(MZ_ZIP_LOCAL_DIR_HEADER_SIZE) + MZ_READ_LE16(pLocal_header + MZ_ZIP_LDH_FILENAME_LEN_OFS) + MZ_READ_LE16(pLocal_header + MZ_ZIP_LDH_EXTRA_LEN_OFS);
4604
0
        if ((cur_file_ofs + file_stat.m_comp_size) > pZip->m_archive_size)
4605
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
4606
4607
0
        if ((flags & MZ_ZIP_FLAG_COMPRESSED_DATA) || (!file_stat.m_method))
4608
0
        {
4609
            /* The file is stored or the caller has requested the compressed data. */
4610
0
            if (pZip->m_pRead(pZip->m_pIO_opaque, cur_file_ofs, pBuf, (size_t)needed_size) != needed_size)
4611
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_READ_FAILED);
4612
4613
0
#ifndef MINIZ_DISABLE_ZIP_READER_CRC32_CHECKS
4614
0
            if ((flags & MZ_ZIP_FLAG_COMPRESSED_DATA) == 0)
4615
0
            {
4616
0
                if (mz_crc32(MZ_CRC32_INIT, (const mz_uint8 *)pBuf, (size_t)file_stat.m_uncomp_size) != file_stat.m_crc32)
4617
0
                    return mz_zip_set_error(pZip, MZ_ZIP_CRC_CHECK_FAILED);
4618
0
            }
4619
0
#endif
4620
4621
0
            return MZ_TRUE;
4622
0
        }
4623
4624
        /* Decompress the file either directly from memory or from a file input buffer. */
4625
0
        tinfl_init(&inflator);
4626
4627
0
        if (pZip->m_pState->m_pMem)
4628
0
        {
4629
            /* Read directly from the archive in memory. */
4630
0
            pRead_buf = (mz_uint8 *)pZip->m_pState->m_pMem + cur_file_ofs;
4631
0
            read_buf_size = read_buf_avail = file_stat.m_comp_size;
4632
0
            comp_remaining = 0;
4633
0
        }
4634
0
        else if (pUser_read_buf)
4635
0
        {
4636
            /* Use a user provided read buffer. */
4637
0
            if (!user_read_buf_size)
4638
0
                return MZ_FALSE;
4639
0
            pRead_buf = (mz_uint8 *)pUser_read_buf;
4640
0
            read_buf_size = user_read_buf_size;
4641
0
            read_buf_avail = 0;
4642
0
            comp_remaining = file_stat.m_comp_size;
4643
0
        }
4644
0
        else
4645
0
        {
4646
            /* Temporarily allocate a read buffer. */
4647
0
            read_buf_size = MZ_MIN(file_stat.m_comp_size, (mz_uint64)MZ_ZIP_MAX_IO_BUF_SIZE);
4648
0
            if (((sizeof(size_t) == sizeof(mz_uint32))) && (read_buf_size > 0x7FFFFFFF))
4649
0
                return mz_zip_set_error(pZip, MZ_ZIP_INTERNAL_ERROR);
4650
4651
0
            if (NULL == (pRead_buf = pZip->m_pAlloc(pZip->m_pAlloc_opaque, 1, (size_t)read_buf_size)))
4652
0
                return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
4653
4654
0
            read_buf_avail = 0;
4655
0
            comp_remaining = file_stat.m_comp_size;
4656
0
        }
4657
4658
0
        do
4659
0
        {
4660
            /* The size_t cast here should be OK because we've verified that the output buffer is >= file_stat.m_uncomp_size above */
4661
0
            size_t in_buf_size, out_buf_size = (size_t)(file_stat.m_uncomp_size - out_buf_ofs);
4662
0
            if ((!read_buf_avail) && (!pZip->m_pState->m_pMem))
4663
0
            {
4664
0
                read_buf_avail = MZ_MIN(read_buf_size, comp_remaining);
4665
0
                if (pZip->m_pRead(pZip->m_pIO_opaque, cur_file_ofs, pRead_buf, (size_t)read_buf_avail) != read_buf_avail)
4666
0
                {
4667
0
                    status = TINFL_STATUS_FAILED;
4668
0
                    mz_zip_set_error(pZip, MZ_ZIP_DECOMPRESSION_FAILED);
4669
0
                    break;
4670
0
                }
4671
0
                cur_file_ofs += read_buf_avail;
4672
0
                comp_remaining -= read_buf_avail;
4673
0
                read_buf_ofs = 0;
4674
0
            }
4675
0
            in_buf_size = (size_t)read_buf_avail;
4676
0
            status = tinfl_decompress(&inflator, (mz_uint8 *)pRead_buf + read_buf_ofs, &in_buf_size, (mz_uint8 *)pBuf, (mz_uint8 *)pBuf + out_buf_ofs, &out_buf_size, TINFL_FLAG_USING_NON_WRAPPING_OUTPUT_BUF | (comp_remaining ? TINFL_FLAG_HAS_MORE_INPUT : 0));
4677
0
            read_buf_avail -= in_buf_size;
4678
0
            read_buf_ofs += in_buf_size;
4679
0
            out_buf_ofs += out_buf_size;
4680
0
        } while (status == TINFL_STATUS_NEEDS_MORE_INPUT);
4681
4682
0
        if (status == TINFL_STATUS_DONE)
4683
0
        {
4684
            /* Make sure the entire file was decompressed, and check its CRC. */
4685
0
            if (out_buf_ofs != file_stat.m_uncomp_size)
4686
0
            {
4687
0
                mz_zip_set_error(pZip, MZ_ZIP_UNEXPECTED_DECOMPRESSED_SIZE);
4688
0
                status = TINFL_STATUS_FAILED;
4689
0
            }
4690
0
#ifndef MINIZ_DISABLE_ZIP_READER_CRC32_CHECKS
4691
0
            else if (mz_crc32(MZ_CRC32_INIT, (const mz_uint8 *)pBuf, (size_t)file_stat.m_uncomp_size) != file_stat.m_crc32)
4692
0
            {
4693
0
                mz_zip_set_error(pZip, MZ_ZIP_CRC_CHECK_FAILED);
4694
0
                status = TINFL_STATUS_FAILED;
4695
0
            }
4696
0
#endif
4697
0
        }
4698
4699
0
        if ((!pZip->m_pState->m_pMem) && (!pUser_read_buf))
4700
0
            pZip->m_pFree(pZip->m_pAlloc_opaque, pRead_buf);
4701
4702
0
        return status == TINFL_STATUS_DONE;
4703
0
    }
4704
4705
    mz_bool mz_zip_reader_extract_to_mem_no_alloc(mz_zip_archive *pZip, mz_uint file_index, void *pBuf, size_t buf_size, mz_uint flags, void *pUser_read_buf, size_t user_read_buf_size)
4706
0
    {
4707
0
        return mz_zip_reader_extract_to_mem_no_alloc1(pZip, file_index, pBuf, buf_size, flags, pUser_read_buf, user_read_buf_size, NULL);
4708
0
    }
4709
4710
    mz_bool mz_zip_reader_extract_file_to_mem_no_alloc(mz_zip_archive *pZip, const char *pFilename, void *pBuf, size_t buf_size, mz_uint flags, void *pUser_read_buf, size_t user_read_buf_size)
4711
0
    {
4712
0
        mz_uint32 file_index;
4713
0
        if (!mz_zip_reader_locate_file_v2(pZip, pFilename, NULL, flags, &file_index))
4714
0
            return MZ_FALSE;
4715
0
        return mz_zip_reader_extract_to_mem_no_alloc1(pZip, file_index, pBuf, buf_size, flags, pUser_read_buf, user_read_buf_size, NULL);
4716
0
    }
4717
4718
    mz_bool mz_zip_reader_extract_to_mem(mz_zip_archive *pZip, mz_uint file_index, void *pBuf, size_t buf_size, mz_uint flags)
4719
0
    {
4720
0
        return mz_zip_reader_extract_to_mem_no_alloc1(pZip, file_index, pBuf, buf_size, flags, NULL, 0, NULL);
4721
0
    }
4722
4723
    mz_bool mz_zip_reader_extract_file_to_mem(mz_zip_archive *pZip, const char *pFilename, void *pBuf, size_t buf_size, mz_uint flags)
4724
0
    {
4725
0
        return mz_zip_reader_extract_file_to_mem_no_alloc(pZip, pFilename, pBuf, buf_size, flags, NULL, 0);
4726
0
    }
4727
4728
    void *mz_zip_reader_extract_to_heap(mz_zip_archive *pZip, mz_uint file_index, size_t *pSize, mz_uint flags)
4729
0
    {
4730
0
        mz_zip_archive_file_stat file_stat;
4731
0
        mz_uint64 alloc_size;
4732
0
        void *pBuf;
4733
4734
0
        if (pSize)
4735
0
            *pSize = 0;
4736
4737
0
        if (!mz_zip_reader_file_stat(pZip, file_index, &file_stat))
4738
0
            return NULL;
4739
4740
0
        alloc_size = (flags & MZ_ZIP_FLAG_COMPRESSED_DATA) ? file_stat.m_comp_size : file_stat.m_uncomp_size;
4741
0
        if (((sizeof(size_t) == sizeof(mz_uint32))) && (alloc_size > 0x7FFFFFFF))
4742
0
        {
4743
0
            mz_zip_set_error(pZip, MZ_ZIP_INTERNAL_ERROR);
4744
0
            return NULL;
4745
0
        }
4746
4747
0
        if (NULL == (pBuf = pZip->m_pAlloc(pZip->m_pAlloc_opaque, 1, (size_t)alloc_size)))
4748
0
        {
4749
0
            mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
4750
0
            return NULL;
4751
0
        }
4752
4753
0
        if (!mz_zip_reader_extract_to_mem_no_alloc1(pZip, file_index, pBuf, (size_t)alloc_size, flags, NULL, 0, &file_stat))
4754
0
        {
4755
0
            pZip->m_pFree(pZip->m_pAlloc_opaque, pBuf);
4756
0
            return NULL;
4757
0
        }
4758
4759
0
        if (pSize)
4760
0
            *pSize = (size_t)alloc_size;
4761
0
        return pBuf;
4762
0
    }
4763
4764
    void *mz_zip_reader_extract_file_to_heap(mz_zip_archive *pZip, const char *pFilename, size_t *pSize, mz_uint flags)
4765
0
    {
4766
0
        mz_uint32 file_index;
4767
0
        if (!mz_zip_reader_locate_file_v2(pZip, pFilename, NULL, flags, &file_index))
4768
0
        {
4769
0
            if (pSize)
4770
0
                *pSize = 0;
4771
0
            return MZ_FALSE;
4772
0
        }
4773
0
        return mz_zip_reader_extract_to_heap(pZip, file_index, pSize, flags);
4774
0
    }
4775
4776
    mz_bool mz_zip_reader_extract_to_callback(mz_zip_archive *pZip, mz_uint file_index, mz_file_write_func pCallback, void *pOpaque, mz_uint flags)
4777
0
    {
4778
0
        int status = TINFL_STATUS_DONE;
4779
0
#ifndef MINIZ_DISABLE_ZIP_READER_CRC32_CHECKS
4780
0
        mz_uint file_crc32 = MZ_CRC32_INIT;
4781
0
#endif
4782
0
        mz_uint64 read_buf_size, read_buf_ofs = 0, read_buf_avail, comp_remaining, out_buf_ofs = 0, cur_file_ofs;
4783
0
        mz_zip_archive_file_stat file_stat;
4784
0
        void *pRead_buf = NULL;
4785
0
        void *pWrite_buf = NULL;
4786
0
        mz_uint32 local_header_u32[(MZ_ZIP_LOCAL_DIR_HEADER_SIZE + sizeof(mz_uint32) - 1) / sizeof(mz_uint32)];
4787
0
        mz_uint8 *pLocal_header = (mz_uint8 *)local_header_u32;
4788
4789
0
        if ((!pZip) || (!pZip->m_pState) || (!pCallback) || (!pZip->m_pRead))
4790
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
4791
4792
0
        if (!mz_zip_reader_file_stat(pZip, file_index, &file_stat))
4793
0
            return MZ_FALSE;
4794
4795
        /* A directory or zero length file */
4796
0
        if ((file_stat.m_is_directory) || (!file_stat.m_comp_size))
4797
0
            return MZ_TRUE;
4798
4799
        /* Encryption and patch files are not supported. */
4800
0
        if (file_stat.m_bit_flag & (MZ_ZIP_GENERAL_PURPOSE_BIT_FLAG_IS_ENCRYPTED | MZ_ZIP_GENERAL_PURPOSE_BIT_FLAG_USES_STRONG_ENCRYPTION | MZ_ZIP_GENERAL_PURPOSE_BIT_FLAG_COMPRESSED_PATCH_FLAG))
4801
0
            return mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_ENCRYPTION);
4802
4803
        /* This function only supports decompressing stored and deflate. */
4804
0
        if ((!(flags & MZ_ZIP_FLAG_COMPRESSED_DATA)) && (file_stat.m_method != 0) && (file_stat.m_method != MZ_DEFLATED))
4805
0
            return mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_METHOD);
4806
4807
        /* Read and do some minimal validation of the local directory entry (this doesn't crack the zip64 stuff, which we already have from the central dir) */
4808
0
        cur_file_ofs = file_stat.m_local_header_ofs;
4809
0
        if (pZip->m_pRead(pZip->m_pIO_opaque, cur_file_ofs, pLocal_header, MZ_ZIP_LOCAL_DIR_HEADER_SIZE) != MZ_ZIP_LOCAL_DIR_HEADER_SIZE)
4810
0
            return mz_zip_set_error(pZip, MZ_ZIP_FILE_READ_FAILED);
4811
4812
0
        if (MZ_READ_LE32(pLocal_header) != MZ_ZIP_LOCAL_DIR_HEADER_SIG)
4813
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
4814
4815
0
        cur_file_ofs += (mz_uint64)(MZ_ZIP_LOCAL_DIR_HEADER_SIZE) + MZ_READ_LE16(pLocal_header + MZ_ZIP_LDH_FILENAME_LEN_OFS) + MZ_READ_LE16(pLocal_header + MZ_ZIP_LDH_EXTRA_LEN_OFS);
4816
0
        if ((cur_file_ofs + file_stat.m_comp_size) > pZip->m_archive_size)
4817
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
4818
4819
        /* Decompress the file either directly from memory or from a file input buffer. */
4820
0
        if (pZip->m_pState->m_pMem)
4821
0
        {
4822
0
            pRead_buf = (mz_uint8 *)pZip->m_pState->m_pMem + cur_file_ofs;
4823
0
            read_buf_size = read_buf_avail = file_stat.m_comp_size;
4824
0
            comp_remaining = 0;
4825
0
        }
4826
0
        else
4827
0
        {
4828
0
            read_buf_size = MZ_MIN(file_stat.m_comp_size, (mz_uint64)MZ_ZIP_MAX_IO_BUF_SIZE);
4829
0
            if (NULL == (pRead_buf = pZip->m_pAlloc(pZip->m_pAlloc_opaque, 1, (size_t)read_buf_size)))
4830
0
                return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
4831
4832
0
            read_buf_avail = 0;
4833
0
            comp_remaining = file_stat.m_comp_size;
4834
0
        }
4835
4836
0
        if ((flags & MZ_ZIP_FLAG_COMPRESSED_DATA) || (!file_stat.m_method))
4837
0
        {
4838
            /* The file is stored or the caller has requested the compressed data. */
4839
0
            if (pZip->m_pState->m_pMem)
4840
0
            {
4841
0
                if (((sizeof(size_t) == sizeof(mz_uint32))) && (file_stat.m_comp_size > MZ_UINT32_MAX))
4842
0
                    return mz_zip_set_error(pZip, MZ_ZIP_INTERNAL_ERROR);
4843
4844
0
                if (pCallback(pOpaque, out_buf_ofs, pRead_buf, (size_t)file_stat.m_comp_size) != file_stat.m_comp_size)
4845
0
                {
4846
0
                    mz_zip_set_error(pZip, MZ_ZIP_WRITE_CALLBACK_FAILED);
4847
0
                    status = TINFL_STATUS_FAILED;
4848
0
                }
4849
0
                else if (!(flags & MZ_ZIP_FLAG_COMPRESSED_DATA))
4850
0
                {
4851
0
#ifndef MINIZ_DISABLE_ZIP_READER_CRC32_CHECKS
4852
0
                    file_crc32 = (mz_uint32)mz_crc32(file_crc32, (const mz_uint8 *)pRead_buf, (size_t)file_stat.m_comp_size);
4853
0
#endif
4854
0
                }
4855
4856
0
                cur_file_ofs += file_stat.m_comp_size;
4857
0
                out_buf_ofs += file_stat.m_comp_size;
4858
0
                comp_remaining = 0;
4859
0
            }
4860
0
            else
4861
0
            {
4862
0
                while (comp_remaining)
4863
0
                {
4864
0
                    read_buf_avail = MZ_MIN(read_buf_size, comp_remaining);
4865
0
                    if (pZip->m_pRead(pZip->m_pIO_opaque, cur_file_ofs, pRead_buf, (size_t)read_buf_avail) != read_buf_avail)
4866
0
                    {
4867
0
                        mz_zip_set_error(pZip, MZ_ZIP_FILE_READ_FAILED);
4868
0
                        status = TINFL_STATUS_FAILED;
4869
0
                        break;
4870
0
                    }
4871
4872
0
#ifndef MINIZ_DISABLE_ZIP_READER_CRC32_CHECKS
4873
0
                    if (!(flags & MZ_ZIP_FLAG_COMPRESSED_DATA))
4874
0
                    {
4875
0
                        file_crc32 = (mz_uint32)mz_crc32(file_crc32, (const mz_uint8 *)pRead_buf, (size_t)read_buf_avail);
4876
0
                    }
4877
0
#endif
4878
4879
0
                    if (pCallback(pOpaque, out_buf_ofs, pRead_buf, (size_t)read_buf_avail) != read_buf_avail)
4880
0
                    {
4881
0
                        mz_zip_set_error(pZip, MZ_ZIP_WRITE_CALLBACK_FAILED);
4882
0
                        status = TINFL_STATUS_FAILED;
4883
0
                        break;
4884
0
                    }
4885
4886
0
                    cur_file_ofs += read_buf_avail;
4887
0
                    out_buf_ofs += read_buf_avail;
4888
0
                    comp_remaining -= read_buf_avail;
4889
0
                }
4890
0
            }
4891
0
        }
4892
0
        else
4893
0
        {
4894
0
            tinfl_decompressor inflator;
4895
0
            tinfl_init(&inflator);
4896
4897
0
            if (NULL == (pWrite_buf = pZip->m_pAlloc(pZip->m_pAlloc_opaque, 1, TINFL_LZ_DICT_SIZE)))
4898
0
            {
4899
0
                mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
4900
0
                status = TINFL_STATUS_FAILED;
4901
0
            }
4902
0
            else
4903
0
            {
4904
0
                do
4905
0
                {
4906
0
                    mz_uint8 *pWrite_buf_cur = (mz_uint8 *)pWrite_buf + (out_buf_ofs & (TINFL_LZ_DICT_SIZE - 1));
4907
0
                    size_t in_buf_size, out_buf_size = TINFL_LZ_DICT_SIZE - (out_buf_ofs & (TINFL_LZ_DICT_SIZE - 1));
4908
0
                    if ((!read_buf_avail) && (!pZip->m_pState->m_pMem))
4909
0
                    {
4910
0
                        read_buf_avail = MZ_MIN(read_buf_size, comp_remaining);
4911
0
                        if (pZip->m_pRead(pZip->m_pIO_opaque, cur_file_ofs, pRead_buf, (size_t)read_buf_avail) != read_buf_avail)
4912
0
                        {
4913
0
                            mz_zip_set_error(pZip, MZ_ZIP_FILE_READ_FAILED);
4914
0
                            status = TINFL_STATUS_FAILED;
4915
0
                            break;
4916
0
                        }
4917
0
                        cur_file_ofs += read_buf_avail;
4918
0
                        comp_remaining -= read_buf_avail;
4919
0
                        read_buf_ofs = 0;
4920
0
                    }
4921
4922
0
                    in_buf_size = (size_t)read_buf_avail;
4923
0
                    status = tinfl_decompress(&inflator, (const mz_uint8 *)pRead_buf + read_buf_ofs, &in_buf_size, (mz_uint8 *)pWrite_buf, pWrite_buf_cur, &out_buf_size, comp_remaining ? TINFL_FLAG_HAS_MORE_INPUT : 0);
4924
0
                    read_buf_avail -= in_buf_size;
4925
0
                    read_buf_ofs += in_buf_size;
4926
4927
0
                    if (out_buf_size)
4928
0
                    {
4929
0
                        if (pCallback(pOpaque, out_buf_ofs, pWrite_buf_cur, out_buf_size) != out_buf_size)
4930
0
                        {
4931
0
                            mz_zip_set_error(pZip, MZ_ZIP_WRITE_CALLBACK_FAILED);
4932
0
                            status = TINFL_STATUS_FAILED;
4933
0
                            break;
4934
0
                        }
4935
4936
0
#ifndef MINIZ_DISABLE_ZIP_READER_CRC32_CHECKS
4937
0
                        file_crc32 = (mz_uint32)mz_crc32(file_crc32, pWrite_buf_cur, out_buf_size);
4938
0
#endif
4939
0
                        if ((out_buf_ofs += out_buf_size) > file_stat.m_uncomp_size)
4940
0
                        {
4941
0
                            mz_zip_set_error(pZip, MZ_ZIP_DECOMPRESSION_FAILED);
4942
0
                            status = TINFL_STATUS_FAILED;
4943
0
                            break;
4944
0
                        }
4945
0
                    }
4946
0
                } while ((status == TINFL_STATUS_NEEDS_MORE_INPUT) || (status == TINFL_STATUS_HAS_MORE_OUTPUT));
4947
0
            }
4948
0
        }
4949
4950
0
        if ((status == TINFL_STATUS_DONE) && (!(flags & MZ_ZIP_FLAG_COMPRESSED_DATA)))
4951
0
        {
4952
            /* Make sure the entire file was decompressed, and check its CRC. */
4953
0
            if (out_buf_ofs != file_stat.m_uncomp_size)
4954
0
            {
4955
0
                mz_zip_set_error(pZip, MZ_ZIP_UNEXPECTED_DECOMPRESSED_SIZE);
4956
0
                status = TINFL_STATUS_FAILED;
4957
0
            }
4958
0
#ifndef MINIZ_DISABLE_ZIP_READER_CRC32_CHECKS
4959
0
            else if (file_crc32 != file_stat.m_crc32)
4960
0
            {
4961
0
                mz_zip_set_error(pZip, MZ_ZIP_DECOMPRESSION_FAILED);
4962
0
                status = TINFL_STATUS_FAILED;
4963
0
            }
4964
0
#endif
4965
0
        }
4966
4967
0
        if (!pZip->m_pState->m_pMem)
4968
0
            pZip->m_pFree(pZip->m_pAlloc_opaque, pRead_buf);
4969
4970
0
        if (pWrite_buf)
4971
0
            pZip->m_pFree(pZip->m_pAlloc_opaque, pWrite_buf);
4972
4973
0
        return status == TINFL_STATUS_DONE;
4974
0
    }
4975
4976
    mz_bool mz_zip_reader_extract_file_to_callback(mz_zip_archive *pZip, const char *pFilename, mz_file_write_func pCallback, void *pOpaque, mz_uint flags)
4977
0
    {
4978
0
        mz_uint32 file_index;
4979
0
        if (!mz_zip_reader_locate_file_v2(pZip, pFilename, NULL, flags, &file_index))
4980
0
            return MZ_FALSE;
4981
4982
0
        return mz_zip_reader_extract_to_callback(pZip, file_index, pCallback, pOpaque, flags);
4983
0
    }
4984
4985
    mz_zip_reader_extract_iter_state *mz_zip_reader_extract_iter_new(mz_zip_archive *pZip, mz_uint file_index, mz_uint flags)
4986
0
    {
4987
0
        mz_zip_reader_extract_iter_state *pState;
4988
0
        mz_uint32 local_header_u32[(MZ_ZIP_LOCAL_DIR_HEADER_SIZE + sizeof(mz_uint32) - 1) / sizeof(mz_uint32)];
4989
0
        mz_uint8 *pLocal_header = (mz_uint8 *)local_header_u32;
4990
4991
        /* Argument sanity check */
4992
0
        if ((!pZip) || (!pZip->m_pState))
4993
0
            return NULL;
4994
4995
        /* Allocate an iterator status structure */
4996
0
        pState = (mz_zip_reader_extract_iter_state *)pZip->m_pAlloc(pZip->m_pAlloc_opaque, 1, sizeof(mz_zip_reader_extract_iter_state));
4997
0
        if (!pState)
4998
0
        {
4999
0
            mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
5000
0
            return NULL;
5001
0
        }
5002
5003
        /* Fetch file details */
5004
0
        if (!mz_zip_reader_file_stat(pZip, file_index, &pState->file_stat))
5005
0
        {
5006
0
            pZip->m_pFree(pZip->m_pAlloc_opaque, pState);
5007
0
            return NULL;
5008
0
        }
5009
5010
        /* Encryption and patch files are not supported. */
5011
0
        if (pState->file_stat.m_bit_flag & (MZ_ZIP_GENERAL_PURPOSE_BIT_FLAG_IS_ENCRYPTED | MZ_ZIP_GENERAL_PURPOSE_BIT_FLAG_USES_STRONG_ENCRYPTION | MZ_ZIP_GENERAL_PURPOSE_BIT_FLAG_COMPRESSED_PATCH_FLAG))
5012
0
        {
5013
0
            mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_ENCRYPTION);
5014
0
            pZip->m_pFree(pZip->m_pAlloc_opaque, pState);
5015
0
            return NULL;
5016
0
        }
5017
5018
        /* This function only supports decompressing stored and deflate. */
5019
0
        if ((!(flags & MZ_ZIP_FLAG_COMPRESSED_DATA)) && (pState->file_stat.m_method != 0) && (pState->file_stat.m_method != MZ_DEFLATED))
5020
0
        {
5021
0
            mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_METHOD);
5022
0
            pZip->m_pFree(pZip->m_pAlloc_opaque, pState);
5023
0
            return NULL;
5024
0
        }
5025
5026
        /* Init state - save args */
5027
0
        pState->pZip = pZip;
5028
0
        pState->flags = flags;
5029
5030
        /* Init state - reset variables to defaults */
5031
0
        pState->status = TINFL_STATUS_DONE;
5032
0
#ifndef MINIZ_DISABLE_ZIP_READER_CRC32_CHECKS
5033
0
        pState->file_crc32 = MZ_CRC32_INIT;
5034
0
#endif
5035
0
        pState->read_buf_ofs = 0;
5036
0
        pState->out_buf_ofs = 0;
5037
0
        pState->pRead_buf = NULL;
5038
0
        pState->pWrite_buf = NULL;
5039
0
        pState->out_blk_remain = 0;
5040
5041
        /* Read and parse the local directory entry. */
5042
0
        pState->cur_file_ofs = pState->file_stat.m_local_header_ofs;
5043
0
        if (pZip->m_pRead(pZip->m_pIO_opaque, pState->cur_file_ofs, pLocal_header, MZ_ZIP_LOCAL_DIR_HEADER_SIZE) != MZ_ZIP_LOCAL_DIR_HEADER_SIZE)
5044
0
        {
5045
0
            mz_zip_set_error(pZip, MZ_ZIP_FILE_READ_FAILED);
5046
0
            pZip->m_pFree(pZip->m_pAlloc_opaque, pState);
5047
0
            return NULL;
5048
0
        }
5049
5050
0
        if (MZ_READ_LE32(pLocal_header) != MZ_ZIP_LOCAL_DIR_HEADER_SIG)
5051
0
        {
5052
0
            mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
5053
0
            pZip->m_pFree(pZip->m_pAlloc_opaque, pState);
5054
0
            return NULL;
5055
0
        }
5056
5057
0
        pState->cur_file_ofs += (mz_uint64)(MZ_ZIP_LOCAL_DIR_HEADER_SIZE) + MZ_READ_LE16(pLocal_header + MZ_ZIP_LDH_FILENAME_LEN_OFS) + MZ_READ_LE16(pLocal_header + MZ_ZIP_LDH_EXTRA_LEN_OFS);
5058
0
        if ((pState->cur_file_ofs + pState->file_stat.m_comp_size) > pZip->m_archive_size)
5059
0
        {
5060
0
            mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
5061
0
            pZip->m_pFree(pZip->m_pAlloc_opaque, pState);
5062
0
            return NULL;
5063
0
        }
5064
5065
        /* Decompress the file either directly from memory or from a file input buffer. */
5066
0
        if (pZip->m_pState->m_pMem)
5067
0
        {
5068
0
            pState->pRead_buf = (mz_uint8 *)pZip->m_pState->m_pMem + pState->cur_file_ofs;
5069
0
            pState->read_buf_size = pState->read_buf_avail = pState->file_stat.m_comp_size;
5070
0
            pState->comp_remaining = pState->file_stat.m_comp_size;
5071
0
        }
5072
0
        else
5073
0
        {
5074
0
            if (!((flags & MZ_ZIP_FLAG_COMPRESSED_DATA) || (!pState->file_stat.m_method)))
5075
0
            {
5076
                /* Decompression required, therefore intermediate read buffer required */
5077
0
                pState->read_buf_size = MZ_MIN(pState->file_stat.m_comp_size, (mz_uint64)MZ_ZIP_MAX_IO_BUF_SIZE);
5078
0
                if (NULL == (pState->pRead_buf = pZip->m_pAlloc(pZip->m_pAlloc_opaque, 1, (size_t)pState->read_buf_size)))
5079
0
                {
5080
0
                    mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
5081
0
                    pZip->m_pFree(pZip->m_pAlloc_opaque, pState);
5082
0
                    return NULL;
5083
0
                }
5084
0
            }
5085
0
            else
5086
0
            {
5087
                /* Decompression not required - we will be reading directly into user buffer, no temp buf required */
5088
0
                pState->read_buf_size = 0;
5089
0
            }
5090
0
            pState->read_buf_avail = 0;
5091
0
            pState->comp_remaining = pState->file_stat.m_comp_size;
5092
0
        }
5093
5094
0
        if (!((flags & MZ_ZIP_FLAG_COMPRESSED_DATA) || (!pState->file_stat.m_method)))
5095
0
        {
5096
            /* Decompression required, init decompressor */
5097
0
            tinfl_init(&pState->inflator);
5098
5099
            /* Allocate write buffer */
5100
0
            if (NULL == (pState->pWrite_buf = pZip->m_pAlloc(pZip->m_pAlloc_opaque, 1, TINFL_LZ_DICT_SIZE)))
5101
0
            {
5102
0
                mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
5103
0
                if (pState->pRead_buf)
5104
0
                    pZip->m_pFree(pZip->m_pAlloc_opaque, pState->pRead_buf);
5105
0
                pZip->m_pFree(pZip->m_pAlloc_opaque, pState);
5106
0
                return NULL;
5107
0
            }
5108
0
        }
5109
5110
0
        return pState;
5111
0
    }
5112
5113
    mz_zip_reader_extract_iter_state *mz_zip_reader_extract_file_iter_new(mz_zip_archive *pZip, const char *pFilename, mz_uint flags)
5114
0
    {
5115
0
        mz_uint32 file_index;
5116
5117
        /* Locate file index by name */
5118
0
        if (!mz_zip_reader_locate_file_v2(pZip, pFilename, NULL, flags, &file_index))
5119
0
            return NULL;
5120
5121
        /* Construct iterator */
5122
0
        return mz_zip_reader_extract_iter_new(pZip, file_index, flags);
5123
0
    }
5124
5125
    size_t mz_zip_reader_extract_iter_read(mz_zip_reader_extract_iter_state *pState, void *pvBuf, size_t buf_size)
5126
0
    {
5127
0
        size_t copied_to_caller = 0;
5128
5129
        /* Argument sanity check */
5130
0
        if ((!pState) || (!pState->pZip) || (!pState->pZip->m_pState) || (!pvBuf))
5131
0
            return 0;
5132
5133
0
        if ((pState->flags & MZ_ZIP_FLAG_COMPRESSED_DATA) || (!pState->file_stat.m_method))
5134
0
        {
5135
            /* The file is stored or the caller has requested the compressed data, calc amount to return. */
5136
0
            copied_to_caller = (size_t)MZ_MIN(buf_size, pState->comp_remaining);
5137
5138
            /* Zip is in memory....or requires reading from a file? */
5139
0
            if (pState->pZip->m_pState->m_pMem)
5140
0
            {
5141
                /* Copy data to caller's buffer */
5142
0
                memcpy(pvBuf, pState->pRead_buf, copied_to_caller);
5143
0
                pState->pRead_buf = ((mz_uint8 *)pState->pRead_buf) + copied_to_caller;
5144
0
            }
5145
0
            else
5146
0
            {
5147
                /* Read directly into caller's buffer */
5148
0
                if (pState->pZip->m_pRead(pState->pZip->m_pIO_opaque, pState->cur_file_ofs, pvBuf, copied_to_caller) != copied_to_caller)
5149
0
                {
5150
                    /* Failed to read all that was asked for, flag failure and alert user */
5151
0
                    mz_zip_set_error(pState->pZip, MZ_ZIP_FILE_READ_FAILED);
5152
0
                    pState->status = TINFL_STATUS_FAILED;
5153
0
                    copied_to_caller = 0;
5154
0
                }
5155
0
            }
5156
5157
0
#ifndef MINIZ_DISABLE_ZIP_READER_CRC32_CHECKS
5158
            /* Compute CRC if not returning compressed data only */
5159
0
            if (!(pState->flags & MZ_ZIP_FLAG_COMPRESSED_DATA))
5160
0
                pState->file_crc32 = (mz_uint32)mz_crc32(pState->file_crc32, (const mz_uint8 *)pvBuf, copied_to_caller);
5161
0
#endif
5162
5163
            /* Advance offsets, dec counters */
5164
0
            pState->cur_file_ofs += copied_to_caller;
5165
0
            pState->out_buf_ofs += copied_to_caller;
5166
0
            pState->comp_remaining -= copied_to_caller;
5167
0
        }
5168
0
        else
5169
0
        {
5170
0
            do
5171
0
            {
5172
                /* Calc ptr to write buffer - given current output pos and block size */
5173
0
                mz_uint8 *pWrite_buf_cur = (mz_uint8 *)pState->pWrite_buf + (pState->out_buf_ofs & (TINFL_LZ_DICT_SIZE - 1));
5174
5175
                /* Calc max output size - given current output pos and block size */
5176
0
                size_t in_buf_size, out_buf_size = TINFL_LZ_DICT_SIZE - (pState->out_buf_ofs & (TINFL_LZ_DICT_SIZE - 1));
5177
5178
0
                if (!pState->out_blk_remain)
5179
0
                {
5180
                    /* Read more data from file if none available (and reading from file) */
5181
0
                    if ((!pState->read_buf_avail) && (!pState->pZip->m_pState->m_pMem))
5182
0
                    {
5183
                        /* Calc read size */
5184
0
                        pState->read_buf_avail = MZ_MIN(pState->read_buf_size, pState->comp_remaining);
5185
0
                        if (pState->pZip->m_pRead(pState->pZip->m_pIO_opaque, pState->cur_file_ofs, pState->pRead_buf, (size_t)pState->read_buf_avail) != pState->read_buf_avail)
5186
0
                        {
5187
0
                            mz_zip_set_error(pState->pZip, MZ_ZIP_FILE_READ_FAILED);
5188
0
                            pState->status = TINFL_STATUS_FAILED;
5189
0
                            break;
5190
0
                        }
5191
5192
                        /* Advance offsets, dec counters */
5193
0
                        pState->cur_file_ofs += pState->read_buf_avail;
5194
0
                        pState->comp_remaining -= pState->read_buf_avail;
5195
0
                        pState->read_buf_ofs = 0;
5196
0
                    }
5197
5198
                    /* Perform decompression */
5199
0
                    in_buf_size = (size_t)pState->read_buf_avail;
5200
0
                    pState->status = tinfl_decompress(&pState->inflator, (const mz_uint8 *)pState->pRead_buf + pState->read_buf_ofs, &in_buf_size, (mz_uint8 *)pState->pWrite_buf, pWrite_buf_cur, &out_buf_size, pState->comp_remaining ? TINFL_FLAG_HAS_MORE_INPUT : 0);
5201
0
                    pState->read_buf_avail -= in_buf_size;
5202
0
                    pState->read_buf_ofs += in_buf_size;
5203
5204
                    /* Update current output block size remaining */
5205
0
                    pState->out_blk_remain = out_buf_size;
5206
0
                }
5207
5208
0
                if (pState->out_blk_remain)
5209
0
                {
5210
                    /* Calc amount to return. */
5211
0
                    size_t to_copy = MZ_MIN((buf_size - copied_to_caller), pState->out_blk_remain);
5212
5213
                    /* Copy data to caller's buffer */
5214
0
                    memcpy((mz_uint8 *)pvBuf + copied_to_caller, pWrite_buf_cur, to_copy);
5215
5216
0
#ifndef MINIZ_DISABLE_ZIP_READER_CRC32_CHECKS
5217
                    /* Perform CRC */
5218
0
                    pState->file_crc32 = (mz_uint32)mz_crc32(pState->file_crc32, pWrite_buf_cur, to_copy);
5219
0
#endif
5220
5221
                    /* Decrement data consumed from block */
5222
0
                    pState->out_blk_remain -= to_copy;
5223
5224
                    /* Inc output offset, while performing sanity check */
5225
0
                    if ((pState->out_buf_ofs += to_copy) > pState->file_stat.m_uncomp_size)
5226
0
                    {
5227
0
                        mz_zip_set_error(pState->pZip, MZ_ZIP_DECOMPRESSION_FAILED);
5228
0
                        pState->status = TINFL_STATUS_FAILED;
5229
0
                        break;
5230
0
                    }
5231
5232
                    /* Increment counter of data copied to caller */
5233
0
                    copied_to_caller += to_copy;
5234
0
                }
5235
0
            } while ((copied_to_caller < buf_size) && ((pState->status == TINFL_STATUS_NEEDS_MORE_INPUT) || (pState->status == TINFL_STATUS_HAS_MORE_OUTPUT)));
5236
0
        }
5237
5238
        /* Return how many bytes were copied into user buffer */
5239
0
        return copied_to_caller;
5240
0
    }
5241
5242
    mz_bool mz_zip_reader_extract_iter_free(mz_zip_reader_extract_iter_state *pState)
5243
0
    {
5244
0
        int status;
5245
5246
        /* Argument sanity check */
5247
0
        if ((!pState) || (!pState->pZip) || (!pState->pZip->m_pState))
5248
0
            return MZ_FALSE;
5249
5250
        /* Was decompression completed and requested? */
5251
0
        if ((pState->status == TINFL_STATUS_DONE) && (!(pState->flags & MZ_ZIP_FLAG_COMPRESSED_DATA)))
5252
0
        {
5253
            /* Make sure the entire file was decompressed, and check its CRC. */
5254
0
            if (pState->out_buf_ofs != pState->file_stat.m_uncomp_size)
5255
0
            {
5256
0
                mz_zip_set_error(pState->pZip, MZ_ZIP_UNEXPECTED_DECOMPRESSED_SIZE);
5257
0
                pState->status = TINFL_STATUS_FAILED;
5258
0
            }
5259
0
#ifndef MINIZ_DISABLE_ZIP_READER_CRC32_CHECKS
5260
0
            else if (pState->file_crc32 != pState->file_stat.m_crc32)
5261
0
            {
5262
0
                mz_zip_set_error(pState->pZip, MZ_ZIP_DECOMPRESSION_FAILED);
5263
0
                pState->status = TINFL_STATUS_FAILED;
5264
0
            }
5265
0
#endif
5266
0
        }
5267
5268
        /* Free buffers */
5269
0
        if (!pState->pZip->m_pState->m_pMem)
5270
0
            pState->pZip->m_pFree(pState->pZip->m_pAlloc_opaque, pState->pRead_buf);
5271
0
        if (pState->pWrite_buf)
5272
0
            pState->pZip->m_pFree(pState->pZip->m_pAlloc_opaque, pState->pWrite_buf);
5273
5274
        /* Save status */
5275
0
        status = pState->status;
5276
5277
        /* Free context */
5278
0
        pState->pZip->m_pFree(pState->pZip->m_pAlloc_opaque, pState);
5279
5280
0
        return status == TINFL_STATUS_DONE;
5281
0
    }
5282
5283
#ifndef MINIZ_NO_STDIO
5284
    static size_t mz_zip_file_write_callback(void *pOpaque, mz_uint64 ofs, const void *pBuf, size_t n)
5285
0
    {
5286
0
        (void)ofs;
5287
5288
0
        return MZ_FWRITE(pBuf, 1, n, (MZ_FILE *)pOpaque);
5289
0
    }
5290
5291
    mz_bool mz_zip_reader_extract_to_file(mz_zip_archive *pZip, mz_uint file_index, const char *pDst_filename, mz_uint flags)
5292
0
    {
5293
0
        mz_bool status;
5294
0
        mz_zip_archive_file_stat file_stat;
5295
0
        MZ_FILE *pFile;
5296
5297
0
        if (!mz_zip_reader_file_stat(pZip, file_index, &file_stat))
5298
0
            return MZ_FALSE;
5299
5300
0
        if ((file_stat.m_is_directory) || (!file_stat.m_is_supported))
5301
0
            return mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_FEATURE);
5302
5303
0
        pFile = MZ_FOPEN(pDst_filename, "wb");
5304
0
        if (!pFile)
5305
0
            return mz_zip_set_error(pZip, MZ_ZIP_FILE_OPEN_FAILED);
5306
5307
0
        status = mz_zip_reader_extract_to_callback(pZip, file_index, mz_zip_file_write_callback, pFile, flags);
5308
5309
0
        if (MZ_FCLOSE(pFile) == EOF)
5310
0
        {
5311
0
            if (status)
5312
0
                mz_zip_set_error(pZip, MZ_ZIP_FILE_CLOSE_FAILED);
5313
5314
0
            status = MZ_FALSE;
5315
0
        }
5316
5317
0
#if !defined(MINIZ_NO_TIME) && !defined(MINIZ_NO_STDIO)
5318
0
        if (status)
5319
0
            mz_zip_set_file_times(pDst_filename, file_stat.m_time, file_stat.m_time);
5320
0
#endif
5321
5322
0
        return status;
5323
0
    }
5324
5325
    mz_bool mz_zip_reader_extract_file_to_file(mz_zip_archive *pZip, const char *pArchive_filename, const char *pDst_filename, mz_uint flags)
5326
0
    {
5327
0
        mz_uint32 file_index;
5328
0
        if (!mz_zip_reader_locate_file_v2(pZip, pArchive_filename, NULL, flags, &file_index))
5329
0
            return MZ_FALSE;
5330
5331
0
        return mz_zip_reader_extract_to_file(pZip, file_index, pDst_filename, flags);
5332
0
    }
5333
5334
    mz_bool mz_zip_reader_extract_to_cfile(mz_zip_archive *pZip, mz_uint file_index, MZ_FILE *pFile, mz_uint flags)
5335
0
    {
5336
0
        mz_zip_archive_file_stat file_stat;
5337
5338
0
        if (!mz_zip_reader_file_stat(pZip, file_index, &file_stat))
5339
0
            return MZ_FALSE;
5340
5341
0
        if ((file_stat.m_is_directory) || (!file_stat.m_is_supported))
5342
0
            return mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_FEATURE);
5343
5344
0
        return mz_zip_reader_extract_to_callback(pZip, file_index, mz_zip_file_write_callback, pFile, flags);
5345
0
    }
5346
5347
    mz_bool mz_zip_reader_extract_file_to_cfile(mz_zip_archive *pZip, const char *pArchive_filename, MZ_FILE *pFile, mz_uint flags)
5348
0
    {
5349
0
        mz_uint32 file_index;
5350
0
        if (!mz_zip_reader_locate_file_v2(pZip, pArchive_filename, NULL, flags, &file_index))
5351
0
            return MZ_FALSE;
5352
5353
0
        return mz_zip_reader_extract_to_cfile(pZip, file_index, pFile, flags);
5354
0
    }
5355
#endif /* #ifndef MINIZ_NO_STDIO */
5356
5357
    static size_t mz_zip_compute_crc32_callback(void *pOpaque, mz_uint64 file_ofs, const void *pBuf, size_t n)
5358
0
    {
5359
0
        mz_uint32 *p = (mz_uint32 *)pOpaque;
5360
0
        (void)file_ofs;
5361
0
        *p = (mz_uint32)mz_crc32(*p, (const mz_uint8 *)pBuf, n);
5362
0
        return n;
5363
0
    }
5364
5365
    mz_bool mz_zip_validate_file(mz_zip_archive *pZip, mz_uint file_index, mz_uint flags)
5366
0
    {
5367
0
        mz_zip_archive_file_stat file_stat;
5368
0
        mz_zip_internal_state *pState;
5369
0
        const mz_uint8 *pCentral_dir_header;
5370
0
        mz_bool found_zip64_ext_data_in_cdir = MZ_FALSE;
5371
0
        mz_bool found_zip64_ext_data_in_ldir = MZ_FALSE;
5372
0
        mz_uint32 local_header_u32[(MZ_ZIP_LOCAL_DIR_HEADER_SIZE + sizeof(mz_uint32) - 1) / sizeof(mz_uint32)];
5373
0
        mz_uint8 *pLocal_header = (mz_uint8 *)local_header_u32;
5374
0
        mz_uint64 local_header_ofs = 0;
5375
0
        mz_uint32 local_header_filename_len, local_header_extra_len, local_header_crc32;
5376
0
        mz_uint64 local_header_comp_size, local_header_uncomp_size;
5377
0
        mz_uint32 uncomp_crc32 = MZ_CRC32_INIT;
5378
0
        mz_bool has_data_descriptor;
5379
0
        mz_uint32 local_header_bit_flags;
5380
5381
0
        mz_zip_array file_data_array;
5382
0
        mz_zip_array_init(&file_data_array, 1);
5383
5384
0
        if ((!pZip) || (!pZip->m_pState) || (!pZip->m_pAlloc) || (!pZip->m_pFree) || (!pZip->m_pRead))
5385
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
5386
5387
0
        if (file_index > pZip->m_total_files)
5388
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
5389
5390
0
        pState = pZip->m_pState;
5391
5392
0
        pCentral_dir_header = mz_zip_get_cdh(pZip, file_index);
5393
5394
0
        if (!mz_zip_file_stat_internal(pZip, file_index, pCentral_dir_header, &file_stat, &found_zip64_ext_data_in_cdir))
5395
0
            return MZ_FALSE;
5396
5397
        /* A directory or zero length file */
5398
0
        if ((file_stat.m_is_directory) || (!file_stat.m_uncomp_size))
5399
0
            return MZ_TRUE;
5400
5401
        /* Encryption and patch files are not supported. */
5402
0
        if (file_stat.m_is_encrypted)
5403
0
            return mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_ENCRYPTION);
5404
5405
        /* This function only supports stored and deflate. */
5406
0
        if ((file_stat.m_method != 0) && (file_stat.m_method != MZ_DEFLATED))
5407
0
            return mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_METHOD);
5408
5409
0
        if (!file_stat.m_is_supported)
5410
0
            return mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_FEATURE);
5411
5412
        /* Read and parse the local directory entry. */
5413
0
        local_header_ofs = file_stat.m_local_header_ofs;
5414
0
        if (pZip->m_pRead(pZip->m_pIO_opaque, local_header_ofs, pLocal_header, MZ_ZIP_LOCAL_DIR_HEADER_SIZE) != MZ_ZIP_LOCAL_DIR_HEADER_SIZE)
5415
0
            return mz_zip_set_error(pZip, MZ_ZIP_FILE_READ_FAILED);
5416
5417
0
        if (MZ_READ_LE32(pLocal_header) != MZ_ZIP_LOCAL_DIR_HEADER_SIG)
5418
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
5419
5420
0
        local_header_filename_len = MZ_READ_LE16(pLocal_header + MZ_ZIP_LDH_FILENAME_LEN_OFS);
5421
0
        local_header_extra_len = MZ_READ_LE16(pLocal_header + MZ_ZIP_LDH_EXTRA_LEN_OFS);
5422
0
        local_header_comp_size = MZ_READ_LE32(pLocal_header + MZ_ZIP_LDH_COMPRESSED_SIZE_OFS);
5423
0
        local_header_uncomp_size = MZ_READ_LE32(pLocal_header + MZ_ZIP_LDH_DECOMPRESSED_SIZE_OFS);
5424
0
        local_header_crc32 = MZ_READ_LE32(pLocal_header + MZ_ZIP_LDH_CRC32_OFS);
5425
0
        local_header_bit_flags = MZ_READ_LE16(pLocal_header + MZ_ZIP_LDH_BIT_FLAG_OFS);
5426
0
        has_data_descriptor = (local_header_bit_flags & 8) != 0;
5427
5428
0
        if (local_header_filename_len != strlen(file_stat.m_filename))
5429
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
5430
5431
0
        if ((local_header_ofs + MZ_ZIP_LOCAL_DIR_HEADER_SIZE + local_header_filename_len + local_header_extra_len + file_stat.m_comp_size) > pZip->m_archive_size)
5432
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
5433
5434
0
        if (!mz_zip_array_resize(pZip, &file_data_array, MZ_MAX(local_header_filename_len, local_header_extra_len), MZ_FALSE))
5435
0
        {
5436
0
            mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
5437
0
            goto handle_failure;
5438
0
        }
5439
5440
0
        if (local_header_filename_len)
5441
0
        {
5442
0
            if (pZip->m_pRead(pZip->m_pIO_opaque, local_header_ofs + MZ_ZIP_LOCAL_DIR_HEADER_SIZE, file_data_array.m_p, local_header_filename_len) != local_header_filename_len)
5443
0
            {
5444
0
                mz_zip_set_error(pZip, MZ_ZIP_FILE_READ_FAILED);
5445
0
                goto handle_failure;
5446
0
            }
5447
5448
            /* I've seen 1 archive that had the same pathname, but used backslashes in the local dir and forward slashes in the central dir. Do we care about this? For now, this case will fail validation. */
5449
0
            if (memcmp(file_stat.m_filename, file_data_array.m_p, local_header_filename_len) != 0)
5450
0
            {
5451
0
                mz_zip_set_error(pZip, MZ_ZIP_VALIDATION_FAILED);
5452
0
                goto handle_failure;
5453
0
            }
5454
0
        }
5455
5456
0
        if ((local_header_extra_len) && ((local_header_comp_size == MZ_UINT32_MAX) || (local_header_uncomp_size == MZ_UINT32_MAX)))
5457
0
        {
5458
0
            mz_uint32 extra_size_remaining = local_header_extra_len;
5459
0
            const mz_uint8 *pExtra_data = (const mz_uint8 *)file_data_array.m_p;
5460
5461
0
            if (pZip->m_pRead(pZip->m_pIO_opaque, local_header_ofs + MZ_ZIP_LOCAL_DIR_HEADER_SIZE + local_header_filename_len, file_data_array.m_p, local_header_extra_len) != local_header_extra_len)
5462
0
            {
5463
0
                mz_zip_set_error(pZip, MZ_ZIP_FILE_READ_FAILED);
5464
0
                goto handle_failure;
5465
0
            }
5466
5467
0
            do
5468
0
            {
5469
0
                mz_uint32 field_id, field_data_size, field_total_size;
5470
5471
0
                if (extra_size_remaining < (sizeof(mz_uint16) * 2))
5472
0
                {
5473
0
                    mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
5474
0
                    goto handle_failure;
5475
0
                }
5476
5477
0
                field_id = MZ_READ_LE16(pExtra_data);
5478
0
                field_data_size = MZ_READ_LE16(pExtra_data + sizeof(mz_uint16));
5479
0
                field_total_size = field_data_size + sizeof(mz_uint16) * 2;
5480
5481
0
                if (field_total_size > extra_size_remaining)
5482
0
                {
5483
0
                    mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
5484
0
                    goto handle_failure;
5485
0
                }
5486
5487
0
                if (field_id == MZ_ZIP64_EXTENDED_INFORMATION_FIELD_HEADER_ID)
5488
0
                {
5489
0
                    const mz_uint8 *pSrc_field_data = pExtra_data + sizeof(mz_uint32);
5490
5491
0
                    if (field_data_size < sizeof(mz_uint64) * 2)
5492
0
                    {
5493
0
                        mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
5494
0
                        goto handle_failure;
5495
0
                    }
5496
5497
0
                    local_header_uncomp_size = MZ_READ_LE64(pSrc_field_data);
5498
0
                    local_header_comp_size = MZ_READ_LE64(pSrc_field_data + sizeof(mz_uint64));
5499
5500
0
                    found_zip64_ext_data_in_ldir = MZ_TRUE;
5501
0
                    break;
5502
0
                }
5503
5504
0
                pExtra_data += field_total_size;
5505
0
                extra_size_remaining -= field_total_size;
5506
0
            } while (extra_size_remaining);
5507
0
        }
5508
5509
        /* TODO: parse local header extra data when local_header_comp_size is 0xFFFFFFFF! (big_descriptor.zip) */
5510
        /* I've seen zips in the wild with the data descriptor bit set, but proper local header values and bogus data descriptors */
5511
0
        if ((has_data_descriptor) && (!local_header_comp_size) && (!local_header_crc32))
5512
0
        {
5513
0
            mz_uint8 descriptor_buf[32];
5514
0
            mz_bool has_id;
5515
0
            const mz_uint8 *pSrc;
5516
0
            mz_uint32 file_crc32;
5517
0
            mz_uint64 comp_size = 0, uncomp_size = 0;
5518
5519
0
            mz_uint32 num_descriptor_uint32s = ((pState->m_zip64) || (found_zip64_ext_data_in_ldir)) ? 6 : 4;
5520
5521
0
            if (pZip->m_pRead(pZip->m_pIO_opaque, local_header_ofs + MZ_ZIP_LOCAL_DIR_HEADER_SIZE + local_header_filename_len + local_header_extra_len + file_stat.m_comp_size, descriptor_buf, sizeof(mz_uint32) * num_descriptor_uint32s) != (sizeof(mz_uint32) * num_descriptor_uint32s))
5522
0
            {
5523
0
                mz_zip_set_error(pZip, MZ_ZIP_FILE_READ_FAILED);
5524
0
                goto handle_failure;
5525
0
            }
5526
5527
0
            has_id = (MZ_READ_LE32(descriptor_buf) == MZ_ZIP_DATA_DESCRIPTOR_ID);
5528
0
            pSrc = has_id ? (descriptor_buf + sizeof(mz_uint32)) : descriptor_buf;
5529
5530
0
            file_crc32 = MZ_READ_LE32(pSrc);
5531
5532
0
            if ((pState->m_zip64) || (found_zip64_ext_data_in_ldir))
5533
0
            {
5534
0
                comp_size = MZ_READ_LE64(pSrc + sizeof(mz_uint32));
5535
0
                uncomp_size = MZ_READ_LE64(pSrc + sizeof(mz_uint32) + sizeof(mz_uint64));
5536
0
            }
5537
0
            else
5538
0
            {
5539
0
                comp_size = MZ_READ_LE32(pSrc + sizeof(mz_uint32));
5540
0
                uncomp_size = MZ_READ_LE32(pSrc + sizeof(mz_uint32) + sizeof(mz_uint32));
5541
0
            }
5542
5543
0
            if ((file_crc32 != file_stat.m_crc32) || (comp_size != file_stat.m_comp_size) || (uncomp_size != file_stat.m_uncomp_size))
5544
0
            {
5545
0
                mz_zip_set_error(pZip, MZ_ZIP_VALIDATION_FAILED);
5546
0
                goto handle_failure;
5547
0
            }
5548
0
        }
5549
0
        else
5550
0
        {
5551
0
            if ((local_header_crc32 != file_stat.m_crc32) || (local_header_comp_size != file_stat.m_comp_size) || (local_header_uncomp_size != file_stat.m_uncomp_size))
5552
0
            {
5553
0
                mz_zip_set_error(pZip, MZ_ZIP_VALIDATION_FAILED);
5554
0
                goto handle_failure;
5555
0
            }
5556
0
        }
5557
5558
0
        mz_zip_array_clear(pZip, &file_data_array);
5559
5560
0
        if ((flags & MZ_ZIP_FLAG_VALIDATE_HEADERS_ONLY) == 0)
5561
0
        {
5562
0
            if (!mz_zip_reader_extract_to_callback(pZip, file_index, mz_zip_compute_crc32_callback, &uncomp_crc32, 0))
5563
0
                return MZ_FALSE;
5564
5565
            /* 1 more check to be sure, although the extract checks too. */
5566
0
            if (uncomp_crc32 != file_stat.m_crc32)
5567
0
            {
5568
0
                mz_zip_set_error(pZip, MZ_ZIP_VALIDATION_FAILED);
5569
0
                return MZ_FALSE;
5570
0
            }
5571
0
        }
5572
5573
0
        return MZ_TRUE;
5574
5575
0
    handle_failure:
5576
0
        mz_zip_array_clear(pZip, &file_data_array);
5577
0
        return MZ_FALSE;
5578
0
    }
5579
5580
    mz_bool mz_zip_validate_archive(mz_zip_archive *pZip, mz_uint flags)
5581
0
    {
5582
0
        mz_zip_internal_state *pState;
5583
0
        mz_uint32 i;
5584
5585
0
        if ((!pZip) || (!pZip->m_pState) || (!pZip->m_pAlloc) || (!pZip->m_pFree) || (!pZip->m_pRead))
5586
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
5587
5588
0
        pState = pZip->m_pState;
5589
5590
        /* Basic sanity checks */
5591
0
        if (!pState->m_zip64)
5592
0
        {
5593
0
            if (pZip->m_total_files > MZ_UINT16_MAX)
5594
0
                return mz_zip_set_error(pZip, MZ_ZIP_ARCHIVE_TOO_LARGE);
5595
5596
0
            if (pZip->m_archive_size > MZ_UINT32_MAX)
5597
0
                return mz_zip_set_error(pZip, MZ_ZIP_ARCHIVE_TOO_LARGE);
5598
0
        }
5599
0
        else
5600
0
        {
5601
0
            if (pState->m_central_dir.m_size >= MZ_UINT32_MAX)
5602
0
                return mz_zip_set_error(pZip, MZ_ZIP_ARCHIVE_TOO_LARGE);
5603
0
        }
5604
5605
0
        for (i = 0; i < pZip->m_total_files; i++)
5606
0
        {
5607
0
            if (MZ_ZIP_FLAG_VALIDATE_LOCATE_FILE_FLAG & flags)
5608
0
            {
5609
0
                mz_uint32 found_index;
5610
0
                mz_zip_archive_file_stat stat;
5611
5612
0
                if (!mz_zip_reader_file_stat(pZip, i, &stat))
5613
0
                    return MZ_FALSE;
5614
5615
0
                if (!mz_zip_reader_locate_file_v2(pZip, stat.m_filename, NULL, 0, &found_index))
5616
0
                    return MZ_FALSE;
5617
5618
                /* This check can fail if there are duplicate filenames in the archive (which we don't check for when writing - that's up to the user) */
5619
0
                if (found_index != i)
5620
0
                    return mz_zip_set_error(pZip, MZ_ZIP_VALIDATION_FAILED);
5621
0
            }
5622
5623
0
            if (!mz_zip_validate_file(pZip, i, flags))
5624
0
                return MZ_FALSE;
5625
0
        }
5626
5627
0
        return MZ_TRUE;
5628
0
    }
5629
5630
    mz_bool mz_zip_validate_mem_archive(const void *pMem, size_t size, mz_uint flags, mz_zip_error *pErr)
5631
0
    {
5632
0
        mz_bool success = MZ_TRUE;
5633
0
        mz_zip_archive zip;
5634
0
        mz_zip_error actual_err = MZ_ZIP_NO_ERROR;
5635
5636
0
        if ((!pMem) || (!size))
5637
0
        {
5638
0
            if (pErr)
5639
0
                *pErr = MZ_ZIP_INVALID_PARAMETER;
5640
0
            return MZ_FALSE;
5641
0
        }
5642
5643
0
        mz_zip_zero_struct(&zip);
5644
5645
0
        if (!mz_zip_reader_init_mem(&zip, pMem, size, flags))
5646
0
        {
5647
0
            if (pErr)
5648
0
                *pErr = zip.m_last_error;
5649
0
            return MZ_FALSE;
5650
0
        }
5651
5652
0
        if (!mz_zip_validate_archive(&zip, flags))
5653
0
        {
5654
0
            actual_err = zip.m_last_error;
5655
0
            success = MZ_FALSE;
5656
0
        }
5657
5658
0
        if (!mz_zip_reader_end_internal(&zip, success))
5659
0
        {
5660
0
            if (!actual_err)
5661
0
                actual_err = zip.m_last_error;
5662
0
            success = MZ_FALSE;
5663
0
        }
5664
5665
0
        if (pErr)
5666
0
            *pErr = actual_err;
5667
5668
0
        return success;
5669
0
    }
5670
5671
#ifndef MINIZ_NO_STDIO
5672
    mz_bool mz_zip_validate_file_archive(const char *pFilename, mz_uint flags, mz_zip_error *pErr)
5673
0
    {
5674
0
        mz_bool success = MZ_TRUE;
5675
0
        mz_zip_archive zip;
5676
0
        mz_zip_error actual_err = MZ_ZIP_NO_ERROR;
5677
5678
0
        if (!pFilename)
5679
0
        {
5680
0
            if (pErr)
5681
0
                *pErr = MZ_ZIP_INVALID_PARAMETER;
5682
0
            return MZ_FALSE;
5683
0
        }
5684
5685
0
        mz_zip_zero_struct(&zip);
5686
5687
0
        if (!mz_zip_reader_init_file_v2(&zip, pFilename, flags, 0, 0))
5688
0
        {
5689
0
            if (pErr)
5690
0
                *pErr = zip.m_last_error;
5691
0
            return MZ_FALSE;
5692
0
        }
5693
5694
0
        if (!mz_zip_validate_archive(&zip, flags))
5695
0
        {
5696
0
            actual_err = zip.m_last_error;
5697
0
            success = MZ_FALSE;
5698
0
        }
5699
5700
0
        if (!mz_zip_reader_end_internal(&zip, success))
5701
0
        {
5702
0
            if (!actual_err)
5703
0
                actual_err = zip.m_last_error;
5704
0
            success = MZ_FALSE;
5705
0
        }
5706
5707
0
        if (pErr)
5708
0
            *pErr = actual_err;
5709
5710
0
        return success;
5711
0
    }
5712
#endif /* #ifndef MINIZ_NO_STDIO */
5713
5714
    /* ------------------- .ZIP archive writing */
5715
5716
#ifndef MINIZ_NO_ARCHIVE_WRITING_APIS
5717
5718
    static MZ_FORCEINLINE void mz_write_le16(mz_uint8 *p, mz_uint16 v)
5719
0
    {
5720
0
        p[0] = (mz_uint8)v;
5721
0
        p[1] = (mz_uint8)(v >> 8);
5722
0
    }
5723
    static MZ_FORCEINLINE void mz_write_le32(mz_uint8 *p, mz_uint32 v)
5724
0
    {
5725
0
        p[0] = (mz_uint8)v;
5726
0
        p[1] = (mz_uint8)(v >> 8);
5727
0
        p[2] = (mz_uint8)(v >> 16);
5728
0
        p[3] = (mz_uint8)(v >> 24);
5729
0
    }
5730
    static MZ_FORCEINLINE void mz_write_le64(mz_uint8 *p, mz_uint64 v)
5731
0
    {
5732
0
        mz_write_le32(p, (mz_uint32)v);
5733
0
        mz_write_le32(p + sizeof(mz_uint32), (mz_uint32)(v >> 32));
5734
0
    }
5735
5736
0
#define MZ_WRITE_LE16(p, v) mz_write_le16((mz_uint8 *)(p), (mz_uint16)(v))
5737
0
#define MZ_WRITE_LE32(p, v) mz_write_le32((mz_uint8 *)(p), (mz_uint32)(v))
5738
0
#define MZ_WRITE_LE64(p, v) mz_write_le64((mz_uint8 *)(p), (mz_uint64)(v))
5739
5740
    static size_t mz_zip_heap_write_func(void *pOpaque, mz_uint64 file_ofs, const void *pBuf, size_t n)
5741
0
    {
5742
0
        mz_zip_archive *pZip = (mz_zip_archive *)pOpaque;
5743
0
        mz_zip_internal_state *pState = pZip->m_pState;
5744
0
        mz_uint64 new_size = MZ_MAX(file_ofs + n, pState->m_mem_size);
5745
5746
0
        if (!n)
5747
0
            return 0;
5748
5749
        /* An allocation this big is likely to just fail on 32-bit systems, so don't even go there. */
5750
0
        if ((sizeof(size_t) == sizeof(mz_uint32)) && (new_size > 0x7FFFFFFF))
5751
0
        {
5752
0
            mz_zip_set_error(pZip, MZ_ZIP_FILE_TOO_LARGE);
5753
0
            return 0;
5754
0
        }
5755
5756
0
        if (new_size > pState->m_mem_capacity)
5757
0
        {
5758
0
            void *pNew_block;
5759
0
            size_t new_capacity = MZ_MAX(64, pState->m_mem_capacity);
5760
5761
0
            while (new_capacity < new_size)
5762
0
                new_capacity *= 2;
5763
5764
0
            if (NULL == (pNew_block = pZip->m_pRealloc(pZip->m_pAlloc_opaque, pState->m_pMem, 1, new_capacity)))
5765
0
            {
5766
0
                mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
5767
0
                return 0;
5768
0
            }
5769
5770
0
            pState->m_pMem = pNew_block;
5771
0
            pState->m_mem_capacity = new_capacity;
5772
0
        }
5773
0
        memcpy((mz_uint8 *)pState->m_pMem + file_ofs, pBuf, n);
5774
0
        pState->m_mem_size = (size_t)new_size;
5775
0
        return n;
5776
0
    }
5777
5778
    static mz_bool mz_zip_writer_end_internal(mz_zip_archive *pZip, mz_bool set_last_error)
5779
0
    {
5780
0
        mz_zip_internal_state *pState;
5781
0
        mz_bool status = MZ_TRUE;
5782
5783
0
        if ((!pZip) || (!pZip->m_pState) || (!pZip->m_pAlloc) || (!pZip->m_pFree) || ((pZip->m_zip_mode != MZ_ZIP_MODE_WRITING) && (pZip->m_zip_mode != MZ_ZIP_MODE_WRITING_HAS_BEEN_FINALIZED)))
5784
0
        {
5785
0
            if (set_last_error)
5786
0
                mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
5787
0
            return MZ_FALSE;
5788
0
        }
5789
5790
0
        pState = pZip->m_pState;
5791
0
        pZip->m_pState = NULL;
5792
0
        mz_zip_array_clear(pZip, &pState->m_central_dir);
5793
0
        mz_zip_array_clear(pZip, &pState->m_central_dir_offsets);
5794
0
        mz_zip_array_clear(pZip, &pState->m_sorted_central_dir_offsets);
5795
5796
0
#ifndef MINIZ_NO_STDIO
5797
0
        if (pState->m_pFile)
5798
0
        {
5799
0
            if (pZip->m_zip_type == MZ_ZIP_TYPE_FILE)
5800
0
            {
5801
0
                if (MZ_FCLOSE(pState->m_pFile) == EOF)
5802
0
                {
5803
0
                    if (set_last_error)
5804
0
                        mz_zip_set_error(pZip, MZ_ZIP_FILE_CLOSE_FAILED);
5805
0
                    status = MZ_FALSE;
5806
0
                }
5807
0
            }
5808
5809
0
            pState->m_pFile = NULL;
5810
0
        }
5811
0
#endif /* #ifndef MINIZ_NO_STDIO */
5812
5813
0
        if ((pZip->m_pWrite == mz_zip_heap_write_func) && (pState->m_pMem))
5814
0
        {
5815
0
            pZip->m_pFree(pZip->m_pAlloc_opaque, pState->m_pMem);
5816
0
            pState->m_pMem = NULL;
5817
0
        }
5818
5819
0
        pZip->m_pFree(pZip->m_pAlloc_opaque, pState);
5820
0
        pZip->m_zip_mode = MZ_ZIP_MODE_INVALID;
5821
0
        return status;
5822
0
    }
5823
5824
    mz_bool mz_zip_writer_init_v2(mz_zip_archive *pZip, mz_uint64 existing_size, mz_uint flags)
5825
0
    {
5826
0
        mz_bool zip64 = (flags & MZ_ZIP_FLAG_WRITE_ZIP64) != 0;
5827
5828
0
        if ((!pZip) || (pZip->m_pState) || (!pZip->m_pWrite) || (pZip->m_zip_mode != MZ_ZIP_MODE_INVALID))
5829
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
5830
5831
0
        if (flags & MZ_ZIP_FLAG_WRITE_ALLOW_READING)
5832
0
        {
5833
0
            if (!pZip->m_pRead)
5834
0
                return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
5835
0
        }
5836
5837
0
        if (pZip->m_file_offset_alignment)
5838
0
        {
5839
            /* Ensure user specified file offset alignment is a power of 2. */
5840
0
            if (pZip->m_file_offset_alignment & (pZip->m_file_offset_alignment - 1))
5841
0
                return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
5842
0
        }
5843
5844
0
        if (!pZip->m_pAlloc)
5845
0
            pZip->m_pAlloc = miniz_def_alloc_func;
5846
0
        if (!pZip->m_pFree)
5847
0
            pZip->m_pFree = miniz_def_free_func;
5848
0
        if (!pZip->m_pRealloc)
5849
0
            pZip->m_pRealloc = miniz_def_realloc_func;
5850
5851
0
        pZip->m_archive_size = existing_size;
5852
0
        pZip->m_central_directory_file_ofs = 0;
5853
0
        pZip->m_total_files = 0;
5854
5855
0
        if (NULL == (pZip->m_pState = (mz_zip_internal_state *)pZip->m_pAlloc(pZip->m_pAlloc_opaque, 1, sizeof(mz_zip_internal_state))))
5856
0
            return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
5857
5858
0
        memset(pZip->m_pState, 0, sizeof(mz_zip_internal_state));
5859
5860
0
        MZ_ZIP_ARRAY_SET_ELEMENT_SIZE(&pZip->m_pState->m_central_dir, sizeof(mz_uint8));
5861
0
        MZ_ZIP_ARRAY_SET_ELEMENT_SIZE(&pZip->m_pState->m_central_dir_offsets, sizeof(mz_uint32));
5862
0
        MZ_ZIP_ARRAY_SET_ELEMENT_SIZE(&pZip->m_pState->m_sorted_central_dir_offsets, sizeof(mz_uint32));
5863
5864
0
        pZip->m_pState->m_zip64 = zip64;
5865
0
        pZip->m_pState->m_zip64_has_extended_info_fields = zip64;
5866
5867
0
        pZip->m_zip_type = MZ_ZIP_TYPE_USER;
5868
0
        pZip->m_zip_mode = MZ_ZIP_MODE_WRITING;
5869
5870
0
        return MZ_TRUE;
5871
0
    }
5872
5873
    mz_bool mz_zip_writer_init(mz_zip_archive *pZip, mz_uint64 existing_size)
5874
0
    {
5875
0
        return mz_zip_writer_init_v2(pZip, existing_size, 0);
5876
0
    }
5877
5878
    mz_bool mz_zip_writer_init_heap_v2(mz_zip_archive *pZip, size_t size_to_reserve_at_beginning, size_t initial_allocation_size, mz_uint flags)
5879
0
    {
5880
0
        pZip->m_pWrite = mz_zip_heap_write_func;
5881
0
        pZip->m_pNeeds_keepalive = NULL;
5882
5883
0
        if (flags & MZ_ZIP_FLAG_WRITE_ALLOW_READING)
5884
0
            pZip->m_pRead = mz_zip_mem_read_func;
5885
5886
0
        pZip->m_pIO_opaque = pZip;
5887
5888
0
        if (!mz_zip_writer_init_v2(pZip, size_to_reserve_at_beginning, flags))
5889
0
            return MZ_FALSE;
5890
5891
0
        pZip->m_zip_type = MZ_ZIP_TYPE_HEAP;
5892
5893
0
        if (0 != (initial_allocation_size = MZ_MAX(initial_allocation_size, size_to_reserve_at_beginning)))
5894
0
        {
5895
0
            if (NULL == (pZip->m_pState->m_pMem = pZip->m_pAlloc(pZip->m_pAlloc_opaque, 1, initial_allocation_size)))
5896
0
            {
5897
0
                mz_zip_writer_end_internal(pZip, MZ_FALSE);
5898
0
                return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
5899
0
            }
5900
0
            pZip->m_pState->m_mem_capacity = initial_allocation_size;
5901
0
        }
5902
5903
0
        return MZ_TRUE;
5904
0
    }
5905
5906
    mz_bool mz_zip_writer_init_heap(mz_zip_archive *pZip, size_t size_to_reserve_at_beginning, size_t initial_allocation_size)
5907
0
    {
5908
0
        return mz_zip_writer_init_heap_v2(pZip, size_to_reserve_at_beginning, initial_allocation_size, 0);
5909
0
    }
5910
5911
#ifndef MINIZ_NO_STDIO
5912
    static size_t mz_zip_file_write_func(void *pOpaque, mz_uint64 file_ofs, const void *pBuf, size_t n)
5913
0
    {
5914
0
        mz_zip_archive *pZip = (mz_zip_archive *)pOpaque;
5915
0
        mz_int64 cur_ofs = MZ_FTELL64(pZip->m_pState->m_pFile);
5916
5917
0
        file_ofs += pZip->m_pState->m_file_archive_start_ofs;
5918
5919
0
        if (((mz_int64)file_ofs < 0) || (((cur_ofs != (mz_int64)file_ofs)) && (MZ_FSEEK64(pZip->m_pState->m_pFile, (mz_int64)file_ofs, SEEK_SET))))
5920
0
        {
5921
0
            mz_zip_set_error(pZip, MZ_ZIP_FILE_SEEK_FAILED);
5922
0
            return 0;
5923
0
        }
5924
5925
0
        return MZ_FWRITE(pBuf, 1, n, pZip->m_pState->m_pFile);
5926
0
    }
5927
5928
    mz_bool mz_zip_writer_init_file(mz_zip_archive *pZip, const char *pFilename, mz_uint64 size_to_reserve_at_beginning)
5929
0
    {
5930
0
        return mz_zip_writer_init_file_v2(pZip, pFilename, size_to_reserve_at_beginning, 0);
5931
0
    }
5932
5933
    mz_bool mz_zip_writer_init_file_v2(mz_zip_archive *pZip, const char *pFilename, mz_uint64 size_to_reserve_at_beginning, mz_uint flags)
5934
0
    {
5935
0
        MZ_FILE *pFile;
5936
5937
0
        pZip->m_pWrite = mz_zip_file_write_func;
5938
0
        pZip->m_pNeeds_keepalive = NULL;
5939
5940
0
        if (flags & MZ_ZIP_FLAG_WRITE_ALLOW_READING)
5941
0
            pZip->m_pRead = mz_zip_file_read_func;
5942
5943
0
        pZip->m_pIO_opaque = pZip;
5944
5945
0
        if (!mz_zip_writer_init_v2(pZip, size_to_reserve_at_beginning, flags))
5946
0
            return MZ_FALSE;
5947
5948
0
        if (NULL == (pFile = MZ_FOPEN(pFilename, (flags & MZ_ZIP_FLAG_WRITE_ALLOW_READING) ? "w+b" : "wb")))
5949
0
        {
5950
0
            mz_zip_writer_end(pZip);
5951
0
            return mz_zip_set_error(pZip, MZ_ZIP_FILE_OPEN_FAILED);
5952
0
        }
5953
5954
0
        pZip->m_pState->m_pFile = pFile;
5955
0
        pZip->m_zip_type = MZ_ZIP_TYPE_FILE;
5956
5957
0
        if (size_to_reserve_at_beginning)
5958
0
        {
5959
0
            mz_uint64 cur_ofs = 0;
5960
0
            char buf[4096];
5961
5962
0
            MZ_CLEAR_ARR(buf);
5963
5964
0
            do
5965
0
            {
5966
0
                size_t n = (size_t)MZ_MIN(sizeof(buf), size_to_reserve_at_beginning);
5967
0
                if (pZip->m_pWrite(pZip->m_pIO_opaque, cur_ofs, buf, n) != n)
5968
0
                {
5969
0
                    mz_zip_writer_end(pZip);
5970
0
                    return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
5971
0
                }
5972
0
                cur_ofs += n;
5973
0
                size_to_reserve_at_beginning -= n;
5974
0
            } while (size_to_reserve_at_beginning);
5975
0
        }
5976
5977
0
        return MZ_TRUE;
5978
0
    }
5979
5980
    mz_bool mz_zip_writer_init_cfile(mz_zip_archive *pZip, MZ_FILE *pFile, mz_uint flags)
5981
0
    {
5982
0
        pZip->m_pWrite = mz_zip_file_write_func;
5983
0
        pZip->m_pNeeds_keepalive = NULL;
5984
5985
0
        if (flags & MZ_ZIP_FLAG_WRITE_ALLOW_READING)
5986
0
            pZip->m_pRead = mz_zip_file_read_func;
5987
5988
0
        pZip->m_pIO_opaque = pZip;
5989
5990
0
        if (!mz_zip_writer_init_v2(pZip, 0, flags))
5991
0
            return MZ_FALSE;
5992
5993
0
        pZip->m_pState->m_pFile = pFile;
5994
0
        pZip->m_pState->m_file_archive_start_ofs = MZ_FTELL64(pZip->m_pState->m_pFile);
5995
0
        pZip->m_zip_type = MZ_ZIP_TYPE_CFILE;
5996
5997
0
        return MZ_TRUE;
5998
0
    }
5999
#endif /* #ifndef MINIZ_NO_STDIO */
6000
6001
    mz_bool mz_zip_writer_init_from_reader_v2(mz_zip_archive *pZip, const char *pFilename, mz_uint flags)
6002
0
    {
6003
0
        mz_zip_internal_state *pState;
6004
6005
0
        if ((!pZip) || (!pZip->m_pState) || (pZip->m_zip_mode != MZ_ZIP_MODE_READING))
6006
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
6007
6008
0
        if (flags & MZ_ZIP_FLAG_WRITE_ZIP64)
6009
0
        {
6010
            /* We don't support converting a non-zip64 file to zip64 - this seems like more trouble than it's worth. (What about the existing 32-bit data descriptors that could follow the compressed data?) */
6011
0
            if (!pZip->m_pState->m_zip64)
6012
0
                return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
6013
0
        }
6014
6015
        /* No sense in trying to write to an archive that's already at the support max size */
6016
0
        if (pZip->m_pState->m_zip64)
6017
0
        {
6018
0
            if (pZip->m_total_files == MZ_UINT32_MAX)
6019
0
                return mz_zip_set_error(pZip, MZ_ZIP_TOO_MANY_FILES);
6020
0
        }
6021
0
        else
6022
0
        {
6023
0
            if (pZip->m_total_files == MZ_UINT16_MAX)
6024
0
                return mz_zip_set_error(pZip, MZ_ZIP_TOO_MANY_FILES);
6025
6026
0
            if ((pZip->m_archive_size + MZ_ZIP_CENTRAL_DIR_HEADER_SIZE + MZ_ZIP_LOCAL_DIR_HEADER_SIZE) > MZ_UINT32_MAX)
6027
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_TOO_LARGE);
6028
0
        }
6029
6030
0
        pState = pZip->m_pState;
6031
6032
0
        if (pState->m_pFile)
6033
0
        {
6034
#ifdef MINIZ_NO_STDIO
6035
            (void)pFilename;
6036
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
6037
#else
6038
0
            if (pZip->m_pIO_opaque != pZip)
6039
0
                return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
6040
6041
0
            if (pZip->m_zip_type == MZ_ZIP_TYPE_FILE &&
6042
0
                !(flags & MZ_ZIP_FLAG_READ_ALLOW_WRITING) )
6043
0
            {
6044
0
                if (!pFilename)
6045
0
                    return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
6046
6047
                /* Archive is being read from stdio and was originally opened only for reading. Try to reopen as writable. */
6048
0
                if (NULL == (pState->m_pFile = MZ_FREOPEN(pFilename, "r+b", pState->m_pFile)))
6049
0
                {
6050
                    /* The mz_zip_archive is now in a bogus state because pState->m_pFile is NULL, so just close it. */
6051
0
                    mz_zip_reader_end_internal(pZip, MZ_FALSE);
6052
0
                    return mz_zip_set_error(pZip, MZ_ZIP_FILE_OPEN_FAILED);
6053
0
                }
6054
0
            }
6055
6056
0
            pZip->m_pWrite = mz_zip_file_write_func;
6057
0
            pZip->m_pNeeds_keepalive = NULL;
6058
0
#endif /* #ifdef MINIZ_NO_STDIO */
6059
0
        }
6060
0
        else if (pState->m_pMem)
6061
0
        {
6062
            /* Archive lives in a memory block. Assume it's from the heap that we can resize using the realloc callback. */
6063
0
            if (pZip->m_pIO_opaque != pZip)
6064
0
                return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
6065
6066
0
            pState->m_mem_capacity = pState->m_mem_size;
6067
0
            pZip->m_pWrite = mz_zip_heap_write_func;
6068
0
            pZip->m_pNeeds_keepalive = NULL;
6069
0
        }
6070
        /* Archive is being read via a user provided read function - make sure the user has specified a write function too. */
6071
0
        else if (!pZip->m_pWrite)
6072
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
6073
6074
        /* Start writing new files at the archive's current central directory location. */
6075
        /* TODO: We could add a flag that lets the user start writing immediately AFTER the existing central dir - this would be safer. */
6076
0
        pZip->m_archive_size = pZip->m_central_directory_file_ofs;
6077
0
        pZip->m_central_directory_file_ofs = 0;
6078
6079
        /* Clear the sorted central dir offsets, they aren't useful or maintained now. */
6080
        /* Even though we're now in write mode, files can still be extracted and verified, but file locates will be slow. */
6081
        /* TODO: We could easily maintain the sorted central directory offsets. */
6082
0
        mz_zip_array_clear(pZip, &pZip->m_pState->m_sorted_central_dir_offsets);
6083
6084
0
        pZip->m_zip_mode = MZ_ZIP_MODE_WRITING;
6085
6086
0
        return MZ_TRUE;
6087
0
    }
6088
6089
    mz_bool mz_zip_writer_init_from_reader(mz_zip_archive *pZip, const char *pFilename)
6090
0
    {
6091
0
        return mz_zip_writer_init_from_reader_v2(pZip, pFilename, 0);
6092
0
    }
6093
6094
    /* TODO: pArchive_name is a terrible name here! */
6095
    mz_bool mz_zip_writer_add_mem(mz_zip_archive *pZip, const char *pArchive_name, const void *pBuf, size_t buf_size, mz_uint level_and_flags)
6096
0
    {
6097
0
        return mz_zip_writer_add_mem_ex(pZip, pArchive_name, pBuf, buf_size, NULL, 0, level_and_flags, 0, 0);
6098
0
    }
6099
6100
    typedef struct
6101
    {
6102
        mz_zip_archive *m_pZip;
6103
        mz_uint64 m_cur_archive_file_ofs;
6104
        mz_uint64 m_comp_size;
6105
    } mz_zip_writer_add_state;
6106
6107
    static mz_bool mz_zip_writer_add_put_buf_callback(const void *pBuf, int len, void *pUser)
6108
0
    {
6109
0
        mz_zip_writer_add_state *pState = (mz_zip_writer_add_state *)pUser;
6110
0
        if ((int)pState->m_pZip->m_pWrite(pState->m_pZip->m_pIO_opaque, pState->m_cur_archive_file_ofs, pBuf, len) != len)
6111
0
            return MZ_FALSE;
6112
6113
0
        pState->m_cur_archive_file_ofs += len;
6114
0
        pState->m_comp_size += len;
6115
0
        return MZ_TRUE;
6116
0
    }
6117
6118
#define MZ_ZIP64_MAX_LOCAL_EXTRA_FIELD_SIZE (sizeof(mz_uint16) * 2 + sizeof(mz_uint64) * 2)
6119
0
#define MZ_ZIP64_MAX_CENTRAL_EXTRA_FIELD_SIZE (sizeof(mz_uint16) * 2 + sizeof(mz_uint64) * 3)
6120
    static mz_uint32 mz_zip_writer_create_zip64_extra_data(mz_uint8 *pBuf, mz_uint64 *pUncomp_size, mz_uint64 *pComp_size, mz_uint64 *pLocal_header_ofs)
6121
0
    {
6122
0
        mz_uint8 *pDst = pBuf;
6123
0
        mz_uint32 field_size = 0;
6124
6125
0
        MZ_WRITE_LE16(pDst + 0, MZ_ZIP64_EXTENDED_INFORMATION_FIELD_HEADER_ID);
6126
0
        MZ_WRITE_LE16(pDst + 2, 0);
6127
0
        pDst += sizeof(mz_uint16) * 2;
6128
6129
0
        if (pUncomp_size)
6130
0
        {
6131
0
            MZ_WRITE_LE64(pDst, *pUncomp_size);
6132
0
            pDst += sizeof(mz_uint64);
6133
0
            field_size += sizeof(mz_uint64);
6134
0
        }
6135
6136
0
        if (pComp_size)
6137
0
        {
6138
0
            MZ_WRITE_LE64(pDst, *pComp_size);
6139
0
            pDst += sizeof(mz_uint64);
6140
0
            field_size += sizeof(mz_uint64);
6141
0
        }
6142
6143
0
        if (pLocal_header_ofs)
6144
0
        {
6145
0
            MZ_WRITE_LE64(pDst, *pLocal_header_ofs);
6146
0
            pDst += sizeof(mz_uint64);
6147
0
            field_size += sizeof(mz_uint64);
6148
0
        }
6149
6150
0
        MZ_WRITE_LE16(pBuf + 2, field_size);
6151
6152
0
        return (mz_uint32)(pDst - pBuf);
6153
0
    }
6154
6155
    static mz_bool mz_zip_writer_create_local_dir_header(mz_zip_archive *pZip, mz_uint8 *pDst, mz_uint16 filename_size, mz_uint16 extra_size, mz_uint64 uncomp_size, mz_uint64 comp_size, mz_uint32 uncomp_crc32, mz_uint16 method, mz_uint16 bit_flags, mz_uint16 dos_time, mz_uint16 dos_date)
6156
0
    {
6157
0
        (void)pZip;
6158
0
        memset(pDst, 0, MZ_ZIP_LOCAL_DIR_HEADER_SIZE);
6159
0
        MZ_WRITE_LE32(pDst + MZ_ZIP_LDH_SIG_OFS, MZ_ZIP_LOCAL_DIR_HEADER_SIG);
6160
0
        MZ_WRITE_LE16(pDst + MZ_ZIP_LDH_VERSION_NEEDED_OFS, method ? 20 : 0);
6161
0
        MZ_WRITE_LE16(pDst + MZ_ZIP_LDH_BIT_FLAG_OFS, bit_flags);
6162
0
        MZ_WRITE_LE16(pDst + MZ_ZIP_LDH_METHOD_OFS, method);
6163
0
        MZ_WRITE_LE16(pDst + MZ_ZIP_LDH_FILE_TIME_OFS, dos_time);
6164
0
        MZ_WRITE_LE16(pDst + MZ_ZIP_LDH_FILE_DATE_OFS, dos_date);
6165
0
        MZ_WRITE_LE32(pDst + MZ_ZIP_LDH_CRC32_OFS, uncomp_crc32);
6166
0
        MZ_WRITE_LE32(pDst + MZ_ZIP_LDH_COMPRESSED_SIZE_OFS, MZ_MIN(comp_size, MZ_UINT32_MAX));
6167
0
        MZ_WRITE_LE32(pDst + MZ_ZIP_LDH_DECOMPRESSED_SIZE_OFS, MZ_MIN(uncomp_size, MZ_UINT32_MAX));
6168
0
        MZ_WRITE_LE16(pDst + MZ_ZIP_LDH_FILENAME_LEN_OFS, filename_size);
6169
0
        MZ_WRITE_LE16(pDst + MZ_ZIP_LDH_EXTRA_LEN_OFS, extra_size);
6170
0
        return MZ_TRUE;
6171
0
    }
6172
6173
    static mz_bool mz_zip_writer_create_central_dir_header(mz_zip_archive *pZip, mz_uint8 *pDst,
6174
                                                           mz_uint16 filename_size, mz_uint16 extra_size, mz_uint16 comment_size,
6175
                                                           mz_uint64 uncomp_size, mz_uint64 comp_size, mz_uint32 uncomp_crc32,
6176
                                                           mz_uint16 method, mz_uint16 bit_flags, mz_uint16 dos_time, mz_uint16 dos_date,
6177
                                                           mz_uint64 local_header_ofs, mz_uint32 ext_attributes)
6178
0
    {
6179
0
        (void)pZip;
6180
0
        memset(pDst, 0, MZ_ZIP_CENTRAL_DIR_HEADER_SIZE);
6181
0
        MZ_WRITE_LE32(pDst + MZ_ZIP_CDH_SIG_OFS, MZ_ZIP_CENTRAL_DIR_HEADER_SIG);
6182
0
        MZ_WRITE_LE16(pDst + MZ_ZIP_CDH_VERSION_NEEDED_OFS, method ? 20 : 0);
6183
0
        MZ_WRITE_LE16(pDst + MZ_ZIP_CDH_BIT_FLAG_OFS, bit_flags);
6184
0
        MZ_WRITE_LE16(pDst + MZ_ZIP_CDH_METHOD_OFS, method);
6185
0
        MZ_WRITE_LE16(pDst + MZ_ZIP_CDH_FILE_TIME_OFS, dos_time);
6186
0
        MZ_WRITE_LE16(pDst + MZ_ZIP_CDH_FILE_DATE_OFS, dos_date);
6187
0
        MZ_WRITE_LE32(pDst + MZ_ZIP_CDH_CRC32_OFS, uncomp_crc32);
6188
0
        MZ_WRITE_LE32(pDst + MZ_ZIP_CDH_COMPRESSED_SIZE_OFS, MZ_MIN(comp_size, MZ_UINT32_MAX));
6189
0
        MZ_WRITE_LE32(pDst + MZ_ZIP_CDH_DECOMPRESSED_SIZE_OFS, MZ_MIN(uncomp_size, MZ_UINT32_MAX));
6190
0
        MZ_WRITE_LE16(pDst + MZ_ZIP_CDH_FILENAME_LEN_OFS, filename_size);
6191
0
        MZ_WRITE_LE16(pDst + MZ_ZIP_CDH_EXTRA_LEN_OFS, extra_size);
6192
0
        MZ_WRITE_LE16(pDst + MZ_ZIP_CDH_COMMENT_LEN_OFS, comment_size);
6193
0
        MZ_WRITE_LE32(pDst + MZ_ZIP_CDH_EXTERNAL_ATTR_OFS, ext_attributes);
6194
0
        MZ_WRITE_LE32(pDst + MZ_ZIP_CDH_LOCAL_HEADER_OFS, MZ_MIN(local_header_ofs, MZ_UINT32_MAX));
6195
0
        return MZ_TRUE;
6196
0
    }
6197
6198
    static mz_bool mz_zip_writer_add_to_central_dir(mz_zip_archive *pZip, const char *pFilename, mz_uint16 filename_size,
6199
                                                    const void *pExtra, mz_uint16 extra_size, const void *pComment, mz_uint16 comment_size,
6200
                                                    mz_uint64 uncomp_size, mz_uint64 comp_size, mz_uint32 uncomp_crc32,
6201
                                                    mz_uint16 method, mz_uint16 bit_flags, mz_uint16 dos_time, mz_uint16 dos_date,
6202
                                                    mz_uint64 local_header_ofs, mz_uint32 ext_attributes,
6203
                                                    const char *user_extra_data, mz_uint user_extra_data_len)
6204
0
    {
6205
0
        mz_zip_internal_state *pState = pZip->m_pState;
6206
0
        mz_uint32 central_dir_ofs = (mz_uint32)pState->m_central_dir.m_size;
6207
0
        size_t orig_central_dir_size = pState->m_central_dir.m_size;
6208
0
        mz_uint8 central_dir_header[MZ_ZIP_CENTRAL_DIR_HEADER_SIZE];
6209
6210
0
        if (!pZip->m_pState->m_zip64)
6211
0
        {
6212
0
            if (local_header_ofs > 0xFFFFFFFF)
6213
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_TOO_LARGE);
6214
0
        }
6215
6216
        /* miniz doesn't support central dirs >= MZ_UINT32_MAX bytes yet */
6217
0
        if (((mz_uint64)pState->m_central_dir.m_size + MZ_ZIP_CENTRAL_DIR_HEADER_SIZE + filename_size + extra_size + user_extra_data_len + comment_size) >= MZ_UINT32_MAX)
6218
0
            return mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_CDIR_SIZE);
6219
6220
0
        if (!mz_zip_writer_create_central_dir_header(pZip, central_dir_header, filename_size, (mz_uint16)(extra_size + user_extra_data_len), comment_size, uncomp_size, comp_size, uncomp_crc32, method, bit_flags, dos_time, dos_date, local_header_ofs, ext_attributes))
6221
0
            return mz_zip_set_error(pZip, MZ_ZIP_INTERNAL_ERROR);
6222
6223
0
        if ((!mz_zip_array_push_back(pZip, &pState->m_central_dir, central_dir_header, MZ_ZIP_CENTRAL_DIR_HEADER_SIZE)) ||
6224
0
            (!mz_zip_array_push_back(pZip, &pState->m_central_dir, pFilename, filename_size)) ||
6225
0
            (!mz_zip_array_push_back(pZip, &pState->m_central_dir, pExtra, extra_size)) ||
6226
0
            (!mz_zip_array_push_back(pZip, &pState->m_central_dir, user_extra_data, user_extra_data_len)) ||
6227
0
            (!mz_zip_array_push_back(pZip, &pState->m_central_dir, pComment, comment_size)) ||
6228
0
            (!mz_zip_array_push_back(pZip, &pState->m_central_dir_offsets, &central_dir_ofs, 1)))
6229
0
        {
6230
            /* Try to resize the central directory array back into its original state. */
6231
0
            mz_zip_array_resize(pZip, &pState->m_central_dir, orig_central_dir_size, MZ_FALSE);
6232
0
            return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
6233
0
        }
6234
6235
0
        return MZ_TRUE;
6236
0
    }
6237
6238
    static mz_bool mz_zip_writer_validate_archive_name(const char *pArchive_name)
6239
0
    {
6240
        /* Basic ZIP archive filename validity checks: Valid filenames cannot start with a forward slash, cannot contain a drive letter, and cannot use DOS-style backward slashes. */
6241
0
        if (*pArchive_name == '/')
6242
0
            return MZ_FALSE;
6243
6244
        /* Making sure the name does not contain drive letters or DOS style backward slashes is the responsibility of the program using miniz*/
6245
6246
0
        return MZ_TRUE;
6247
0
    }
6248
6249
    static mz_uint mz_zip_writer_compute_padding_needed_for_file_alignment(mz_zip_archive *pZip)
6250
0
    {
6251
0
        mz_uint32 n;
6252
0
        if (!pZip->m_file_offset_alignment)
6253
0
            return 0;
6254
0
        n = (mz_uint32)(pZip->m_archive_size & (pZip->m_file_offset_alignment - 1));
6255
0
        return (mz_uint)((pZip->m_file_offset_alignment - n) & (pZip->m_file_offset_alignment - 1));
6256
0
    }
6257
6258
    static mz_bool mz_zip_writer_write_zeros(mz_zip_archive *pZip, mz_uint64 cur_file_ofs, mz_uint32 n)
6259
0
    {
6260
0
        char buf[4096];
6261
0
        memset(buf, 0, MZ_MIN(sizeof(buf), n));
6262
0
        while (n)
6263
0
        {
6264
0
            mz_uint32 s = MZ_MIN(sizeof(buf), n);
6265
0
            if (pZip->m_pWrite(pZip->m_pIO_opaque, cur_file_ofs, buf, s) != s)
6266
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
6267
6268
0
            cur_file_ofs += s;
6269
0
            n -= s;
6270
0
        }
6271
0
        return MZ_TRUE;
6272
0
    }
6273
6274
    mz_bool mz_zip_writer_add_mem_ex(mz_zip_archive *pZip, const char *pArchive_name, const void *pBuf, size_t buf_size, const void *pComment, mz_uint16 comment_size, mz_uint level_and_flags,
6275
                                     mz_uint64 uncomp_size, mz_uint32 uncomp_crc32)
6276
0
    {
6277
0
        return mz_zip_writer_add_mem_ex_v2(pZip, pArchive_name, pBuf, buf_size, pComment, comment_size, level_and_flags, uncomp_size, uncomp_crc32, NULL, NULL, 0, NULL, 0);
6278
0
    }
6279
6280
    mz_bool mz_zip_writer_add_mem_ex_v2(mz_zip_archive *pZip, const char *pArchive_name, const void *pBuf, size_t buf_size, const void *pComment, mz_uint16 comment_size,
6281
                                        mz_uint level_and_flags, mz_uint64 uncomp_size, mz_uint32 uncomp_crc32, MZ_TIME_T *last_modified,
6282
                                        const char *user_extra_data, mz_uint user_extra_data_len, const char *user_extra_data_central, mz_uint user_extra_data_central_len)
6283
0
    {
6284
0
        mz_uint16 method = 0, dos_time = 0, dos_date = 0;
6285
0
        mz_uint level, ext_attributes = 0, num_alignment_padding_bytes;
6286
0
        mz_uint64 local_dir_header_ofs = pZip->m_archive_size, cur_archive_file_ofs = pZip->m_archive_size, comp_size = 0;
6287
0
        size_t archive_name_size;
6288
0
        mz_uint8 local_dir_header[MZ_ZIP_LOCAL_DIR_HEADER_SIZE];
6289
0
        tdefl_compressor *pComp = NULL;
6290
0
        mz_bool store_data_uncompressed;
6291
0
        mz_zip_internal_state *pState;
6292
0
        mz_uint8 *pExtra_data = NULL;
6293
0
        mz_uint32 extra_size = 0;
6294
0
        mz_uint8 extra_data[MZ_ZIP64_MAX_CENTRAL_EXTRA_FIELD_SIZE];
6295
0
        mz_uint16 bit_flags = 0;
6296
6297
0
        if ((int)level_and_flags < 0)
6298
0
            level_and_flags = MZ_DEFAULT_LEVEL;
6299
6300
0
        if (uncomp_size || (buf_size && !(level_and_flags & MZ_ZIP_FLAG_COMPRESSED_DATA)))
6301
0
            bit_flags |= MZ_ZIP_LDH_BIT_FLAG_HAS_LOCATOR;
6302
6303
0
        if (!(level_and_flags & MZ_ZIP_FLAG_ASCII_FILENAME))
6304
0
            bit_flags |= MZ_ZIP_GENERAL_PURPOSE_BIT_FLAG_UTF8;
6305
6306
0
        level = level_and_flags & 0xF;
6307
0
        store_data_uncompressed = ((!level) || (level_and_flags & MZ_ZIP_FLAG_COMPRESSED_DATA));
6308
6309
0
        if ((!pZip) || (!pZip->m_pState) || (pZip->m_zip_mode != MZ_ZIP_MODE_WRITING) || ((buf_size) && (!pBuf)) || (!pArchive_name) || ((comment_size) && (!pComment)) || (level > MZ_UBER_COMPRESSION))
6310
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
6311
6312
0
        pState = pZip->m_pState;
6313
6314
0
        if (pState->m_zip64)
6315
0
        {
6316
0
            if (pZip->m_total_files == MZ_UINT32_MAX)
6317
0
                return mz_zip_set_error(pZip, MZ_ZIP_TOO_MANY_FILES);
6318
0
        }
6319
0
        else
6320
0
        {
6321
0
            if (pZip->m_total_files == MZ_UINT16_MAX)
6322
0
            {
6323
0
                pState->m_zip64 = MZ_TRUE;
6324
                /*return mz_zip_set_error(pZip, MZ_ZIP_TOO_MANY_FILES); */
6325
0
            }
6326
0
            if (((mz_uint64)buf_size > 0xFFFFFFFF) || (uncomp_size > 0xFFFFFFFF))
6327
0
            {
6328
0
                pState->m_zip64 = MZ_TRUE;
6329
                /*return mz_zip_set_error(pZip, MZ_ZIP_ARCHIVE_TOO_LARGE); */
6330
0
            }
6331
0
        }
6332
6333
0
        if ((!(level_and_flags & MZ_ZIP_FLAG_COMPRESSED_DATA)) && (uncomp_size))
6334
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
6335
6336
0
        if (!mz_zip_writer_validate_archive_name(pArchive_name))
6337
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_FILENAME);
6338
6339
0
#ifndef MINIZ_NO_TIME
6340
0
        if (last_modified != NULL)
6341
0
        {
6342
0
            mz_zip_time_t_to_dos_time(*last_modified, &dos_time, &dos_date);
6343
0
        }
6344
0
        else
6345
0
        {
6346
0
            MZ_TIME_T cur_time;
6347
0
            time(&cur_time);
6348
0
            mz_zip_time_t_to_dos_time(cur_time, &dos_time, &dos_date);
6349
0
        }
6350
#else
6351
        (void)last_modified;
6352
#endif /* #ifndef MINIZ_NO_TIME */
6353
6354
0
        if (!(level_and_flags & MZ_ZIP_FLAG_COMPRESSED_DATA))
6355
0
        {
6356
0
            uncomp_crc32 = (mz_uint32)mz_crc32(MZ_CRC32_INIT, (const mz_uint8 *)pBuf, buf_size);
6357
0
            uncomp_size = buf_size;
6358
0
            if (uncomp_size <= 3)
6359
0
            {
6360
0
                level = 0;
6361
0
                store_data_uncompressed = MZ_TRUE;
6362
0
            }
6363
0
        }
6364
6365
0
        archive_name_size = strlen(pArchive_name);
6366
0
        if (archive_name_size > MZ_UINT16_MAX)
6367
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_FILENAME);
6368
6369
0
        num_alignment_padding_bytes = mz_zip_writer_compute_padding_needed_for_file_alignment(pZip);
6370
6371
        /* miniz doesn't support central dirs >= MZ_UINT32_MAX bytes yet */
6372
0
        if (((mz_uint64)pState->m_central_dir.m_size + MZ_ZIP_CENTRAL_DIR_HEADER_SIZE + archive_name_size + MZ_ZIP64_MAX_CENTRAL_EXTRA_FIELD_SIZE + comment_size) >= MZ_UINT32_MAX)
6373
0
            return mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_CDIR_SIZE);
6374
6375
0
        if (!pState->m_zip64)
6376
0
        {
6377
            /* Bail early if the archive would obviously become too large */
6378
0
            if ((pZip->m_archive_size + num_alignment_padding_bytes + MZ_ZIP_LOCAL_DIR_HEADER_SIZE + archive_name_size + MZ_ZIP_CENTRAL_DIR_HEADER_SIZE + archive_name_size + comment_size + user_extra_data_len +
6379
0
                 pState->m_central_dir.m_size + MZ_ZIP_END_OF_CENTRAL_DIR_HEADER_SIZE + user_extra_data_central_len + MZ_ZIP_DATA_DESCRIPTER_SIZE32) > 0xFFFFFFFF)
6380
0
            {
6381
0
                pState->m_zip64 = MZ_TRUE;
6382
                /*return mz_zip_set_error(pZip, MZ_ZIP_ARCHIVE_TOO_LARGE); */
6383
0
            }
6384
0
        }
6385
6386
0
        if ((archive_name_size) && (pArchive_name[archive_name_size - 1] == '/'))
6387
0
        {
6388
            /* Set DOS Subdirectory attribute bit. */
6389
0
            ext_attributes |= MZ_ZIP_DOS_DIR_ATTRIBUTE_BITFLAG;
6390
6391
            /* Subdirectories cannot contain data. */
6392
0
            if ((buf_size) || (uncomp_size))
6393
0
                return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
6394
0
        }
6395
6396
        /* Try to do any allocations before writing to the archive, so if an allocation fails the file remains unmodified. (A good idea if we're doing an in-place modification.) */
6397
0
        if ((!mz_zip_array_ensure_room(pZip, &pState->m_central_dir, MZ_ZIP_CENTRAL_DIR_HEADER_SIZE + archive_name_size + comment_size + (pState->m_zip64 ? MZ_ZIP64_MAX_CENTRAL_EXTRA_FIELD_SIZE : 0))) || (!mz_zip_array_ensure_room(pZip, &pState->m_central_dir_offsets, 1)))
6398
0
            return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
6399
6400
0
        if ((!store_data_uncompressed) && (buf_size))
6401
0
        {
6402
0
            if (NULL == (pComp = (tdefl_compressor *)pZip->m_pAlloc(pZip->m_pAlloc_opaque, 1, sizeof(tdefl_compressor))))
6403
0
                return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
6404
0
        }
6405
6406
0
        if (!mz_zip_writer_write_zeros(pZip, cur_archive_file_ofs, num_alignment_padding_bytes))
6407
0
        {
6408
0
            pZip->m_pFree(pZip->m_pAlloc_opaque, pComp);
6409
0
            return MZ_FALSE;
6410
0
        }
6411
6412
0
        local_dir_header_ofs += num_alignment_padding_bytes;
6413
0
        if (pZip->m_file_offset_alignment)
6414
0
        {
6415
0
            MZ_ASSERT((local_dir_header_ofs & (pZip->m_file_offset_alignment - 1)) == 0);
6416
0
        }
6417
0
        cur_archive_file_ofs += num_alignment_padding_bytes;
6418
6419
0
        MZ_CLEAR_ARR(local_dir_header);
6420
6421
0
        if (!store_data_uncompressed || (level_and_flags & MZ_ZIP_FLAG_COMPRESSED_DATA))
6422
0
        {
6423
0
            method = MZ_DEFLATED;
6424
0
        }
6425
6426
0
        if (pState->m_zip64)
6427
0
        {
6428
0
            if (uncomp_size >= MZ_UINT32_MAX || local_dir_header_ofs >= MZ_UINT32_MAX)
6429
0
            {
6430
0
                pExtra_data = extra_data;
6431
0
                extra_size = mz_zip_writer_create_zip64_extra_data(extra_data, (uncomp_size >= MZ_UINT32_MAX) ? &uncomp_size : NULL,
6432
0
                                                                   (uncomp_size >= MZ_UINT32_MAX) ? &comp_size : NULL, (local_dir_header_ofs >= MZ_UINT32_MAX) ? &local_dir_header_ofs : NULL);
6433
0
            }
6434
6435
0
            if (!mz_zip_writer_create_local_dir_header(pZip, local_dir_header, (mz_uint16)archive_name_size, (mz_uint16)(extra_size + user_extra_data_len), 0, 0, 0, method, bit_flags, dos_time, dos_date))
6436
0
                return mz_zip_set_error(pZip, MZ_ZIP_INTERNAL_ERROR);
6437
6438
0
            if (pZip->m_pWrite(pZip->m_pIO_opaque, local_dir_header_ofs, local_dir_header, sizeof(local_dir_header)) != sizeof(local_dir_header))
6439
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
6440
6441
0
            cur_archive_file_ofs += sizeof(local_dir_header);
6442
6443
0
            if (pZip->m_pWrite(pZip->m_pIO_opaque, cur_archive_file_ofs, pArchive_name, archive_name_size) != archive_name_size)
6444
0
            {
6445
0
                pZip->m_pFree(pZip->m_pAlloc_opaque, pComp);
6446
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
6447
0
            }
6448
0
            cur_archive_file_ofs += archive_name_size;
6449
6450
0
            if (pExtra_data != NULL)
6451
0
            {
6452
0
                if (pZip->m_pWrite(pZip->m_pIO_opaque, cur_archive_file_ofs, extra_data, extra_size) != extra_size)
6453
0
                    return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
6454
6455
0
                cur_archive_file_ofs += extra_size;
6456
0
            }
6457
0
        }
6458
0
        else
6459
0
        {
6460
0
            if ((comp_size > MZ_UINT32_MAX) || (cur_archive_file_ofs > MZ_UINT32_MAX))
6461
0
                return mz_zip_set_error(pZip, MZ_ZIP_ARCHIVE_TOO_LARGE);
6462
0
            if (!mz_zip_writer_create_local_dir_header(pZip, local_dir_header, (mz_uint16)archive_name_size, (mz_uint16)user_extra_data_len, 0, 0, 0, method, bit_flags, dos_time, dos_date))
6463
0
                return mz_zip_set_error(pZip, MZ_ZIP_INTERNAL_ERROR);
6464
6465
0
            if (pZip->m_pWrite(pZip->m_pIO_opaque, local_dir_header_ofs, local_dir_header, sizeof(local_dir_header)) != sizeof(local_dir_header))
6466
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
6467
6468
0
            cur_archive_file_ofs += sizeof(local_dir_header);
6469
6470
0
            if (pZip->m_pWrite(pZip->m_pIO_opaque, cur_archive_file_ofs, pArchive_name, archive_name_size) != archive_name_size)
6471
0
            {
6472
0
                pZip->m_pFree(pZip->m_pAlloc_opaque, pComp);
6473
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
6474
0
            }
6475
0
            cur_archive_file_ofs += archive_name_size;
6476
0
        }
6477
6478
0
        if (user_extra_data_len > 0)
6479
0
        {
6480
0
            if (pZip->m_pWrite(pZip->m_pIO_opaque, cur_archive_file_ofs, user_extra_data, user_extra_data_len) != user_extra_data_len)
6481
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
6482
6483
0
            cur_archive_file_ofs += user_extra_data_len;
6484
0
        }
6485
6486
0
        if (store_data_uncompressed)
6487
0
        {
6488
0
            if (pZip->m_pWrite(pZip->m_pIO_opaque, cur_archive_file_ofs, pBuf, buf_size) != buf_size)
6489
0
            {
6490
0
                pZip->m_pFree(pZip->m_pAlloc_opaque, pComp);
6491
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
6492
0
            }
6493
6494
0
            cur_archive_file_ofs += buf_size;
6495
0
            comp_size = buf_size;
6496
0
        }
6497
0
        else if (buf_size)
6498
0
        {
6499
0
            mz_zip_writer_add_state state;
6500
6501
0
            state.m_pZip = pZip;
6502
0
            state.m_cur_archive_file_ofs = cur_archive_file_ofs;
6503
0
            state.m_comp_size = 0;
6504
6505
0
            if ((tdefl_init(pComp, mz_zip_writer_add_put_buf_callback, &state, tdefl_create_comp_flags_from_zip_params(level, -15, MZ_DEFAULT_STRATEGY)) != TDEFL_STATUS_OKAY) ||
6506
0
                (tdefl_compress_buffer(pComp, pBuf, buf_size, TDEFL_FINISH) != TDEFL_STATUS_DONE))
6507
0
            {
6508
0
                pZip->m_pFree(pZip->m_pAlloc_opaque, pComp);
6509
0
                return mz_zip_set_error(pZip, MZ_ZIP_COMPRESSION_FAILED);
6510
0
            }
6511
6512
0
            comp_size = state.m_comp_size;
6513
0
            cur_archive_file_ofs = state.m_cur_archive_file_ofs;
6514
0
        }
6515
6516
0
        pZip->m_pFree(pZip->m_pAlloc_opaque, pComp);
6517
0
        pComp = NULL;
6518
6519
0
        if (uncomp_size)
6520
0
        {
6521
0
            mz_uint8 local_dir_footer[MZ_ZIP_DATA_DESCRIPTER_SIZE64];
6522
0
            mz_uint32 local_dir_footer_size = MZ_ZIP_DATA_DESCRIPTER_SIZE32;
6523
6524
0
            MZ_ASSERT(bit_flags & MZ_ZIP_LDH_BIT_FLAG_HAS_LOCATOR);
6525
6526
0
            MZ_WRITE_LE32(local_dir_footer + 0, MZ_ZIP_DATA_DESCRIPTOR_ID);
6527
0
            MZ_WRITE_LE32(local_dir_footer + 4, uncomp_crc32);
6528
0
            if (pExtra_data == NULL)
6529
0
            {
6530
0
                if (comp_size > MZ_UINT32_MAX)
6531
0
                    return mz_zip_set_error(pZip, MZ_ZIP_ARCHIVE_TOO_LARGE);
6532
6533
0
                MZ_WRITE_LE32(local_dir_footer + 8, comp_size);
6534
0
                MZ_WRITE_LE32(local_dir_footer + 12, uncomp_size);
6535
0
            }
6536
0
            else
6537
0
            {
6538
0
                MZ_WRITE_LE64(local_dir_footer + 8, comp_size);
6539
0
                MZ_WRITE_LE64(local_dir_footer + 16, uncomp_size);
6540
0
                local_dir_footer_size = MZ_ZIP_DATA_DESCRIPTER_SIZE64;
6541
0
            }
6542
6543
0
            if (pZip->m_pWrite(pZip->m_pIO_opaque, cur_archive_file_ofs, local_dir_footer, local_dir_footer_size) != local_dir_footer_size)
6544
0
                return MZ_FALSE;
6545
6546
0
            cur_archive_file_ofs += local_dir_footer_size;
6547
0
        }
6548
6549
0
        if (pExtra_data != NULL)
6550
0
        {
6551
0
            extra_size = mz_zip_writer_create_zip64_extra_data(extra_data, (uncomp_size >= MZ_UINT32_MAX) ? &uncomp_size : NULL,
6552
0
                                                               (uncomp_size >= MZ_UINT32_MAX) ? &comp_size : NULL, (local_dir_header_ofs >= MZ_UINT32_MAX) ? &local_dir_header_ofs : NULL);
6553
0
        }
6554
6555
0
        if (!mz_zip_writer_add_to_central_dir(pZip, pArchive_name, (mz_uint16)archive_name_size, pExtra_data, (mz_uint16)extra_size, pComment,
6556
0
                                              comment_size, uncomp_size, comp_size, uncomp_crc32, method, bit_flags, dos_time, dos_date, local_dir_header_ofs, ext_attributes,
6557
0
                                              user_extra_data_central, user_extra_data_central_len))
6558
0
            return MZ_FALSE;
6559
6560
0
        pZip->m_total_files++;
6561
0
        pZip->m_archive_size = cur_archive_file_ofs;
6562
6563
0
        return MZ_TRUE;
6564
0
    }
6565
6566
    mz_bool mz_zip_writer_add_read_buf_callback(mz_zip_archive *pZip, const char *pArchive_name, mz_file_read_func read_callback, void *callback_opaque, mz_uint64 max_size, const MZ_TIME_T *pFile_time, const void *pComment, mz_uint16 comment_size, mz_uint level_and_flags,
6567
                                                const char *user_extra_data, mz_uint user_extra_data_len, const char *user_extra_data_central, mz_uint user_extra_data_central_len)
6568
0
    {
6569
0
        mz_uint16 gen_flags;
6570
0
        mz_uint uncomp_crc32 = MZ_CRC32_INIT, level, num_alignment_padding_bytes;
6571
0
        mz_uint16 method = 0, dos_time = 0, dos_date = 0, ext_attributes = 0;
6572
0
        mz_uint64 local_dir_header_ofs, cur_archive_file_ofs = pZip->m_archive_size, uncomp_size = 0, comp_size = 0;
6573
0
        size_t archive_name_size;
6574
0
        mz_uint8 local_dir_header[MZ_ZIP_LOCAL_DIR_HEADER_SIZE];
6575
0
        mz_uint8 *pExtra_data = NULL;
6576
0
        mz_uint32 extra_size = 0;
6577
0
        mz_uint8 extra_data[MZ_ZIP64_MAX_CENTRAL_EXTRA_FIELD_SIZE];
6578
0
        mz_zip_internal_state *pState;
6579
0
        mz_uint64 file_ofs = 0, cur_archive_header_file_ofs;
6580
6581
0
        if ((int)level_and_flags < 0)
6582
0
            level_and_flags = MZ_DEFAULT_LEVEL;
6583
0
        level = level_and_flags & 0xF;
6584
6585
0
        gen_flags = (level_and_flags & MZ_ZIP_FLAG_WRITE_HEADER_SET_SIZE) ? 0 : MZ_ZIP_LDH_BIT_FLAG_HAS_LOCATOR;
6586
6587
0
        if (!(level_and_flags & MZ_ZIP_FLAG_ASCII_FILENAME))
6588
0
            gen_flags |= MZ_ZIP_GENERAL_PURPOSE_BIT_FLAG_UTF8;
6589
6590
        /* Sanity checks */
6591
0
        if ((!pZip) || (!pZip->m_pState) || (pZip->m_zip_mode != MZ_ZIP_MODE_WRITING) || (!pArchive_name) || ((comment_size) && (!pComment)) || (level > MZ_UBER_COMPRESSION))
6592
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
6593
6594
0
        pState = pZip->m_pState;
6595
6596
0
        if ((!pState->m_zip64) && (max_size > MZ_UINT32_MAX))
6597
0
        {
6598
            /* Source file is too large for non-zip64 */
6599
            /*return mz_zip_set_error(pZip, MZ_ZIP_ARCHIVE_TOO_LARGE); */
6600
0
            pState->m_zip64 = MZ_TRUE;
6601
0
        }
6602
6603
        /* We could support this, but why? */
6604
0
        if (level_and_flags & MZ_ZIP_FLAG_COMPRESSED_DATA)
6605
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
6606
6607
0
        if (!mz_zip_writer_validate_archive_name(pArchive_name))
6608
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_FILENAME);
6609
6610
0
        if (pState->m_zip64)
6611
0
        {
6612
0
            if (pZip->m_total_files == MZ_UINT32_MAX)
6613
0
                return mz_zip_set_error(pZip, MZ_ZIP_TOO_MANY_FILES);
6614
0
        }
6615
0
        else
6616
0
        {
6617
0
            if (pZip->m_total_files == MZ_UINT16_MAX)
6618
0
            {
6619
0
                pState->m_zip64 = MZ_TRUE;
6620
                /*return mz_zip_set_error(pZip, MZ_ZIP_TOO_MANY_FILES); */
6621
0
            }
6622
0
        }
6623
6624
0
        archive_name_size = strlen(pArchive_name);
6625
0
        if (archive_name_size > MZ_UINT16_MAX)
6626
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_FILENAME);
6627
6628
0
        num_alignment_padding_bytes = mz_zip_writer_compute_padding_needed_for_file_alignment(pZip);
6629
6630
        /* miniz doesn't support central dirs >= MZ_UINT32_MAX bytes yet */
6631
0
        if (((mz_uint64)pState->m_central_dir.m_size + MZ_ZIP_CENTRAL_DIR_HEADER_SIZE + archive_name_size + MZ_ZIP64_MAX_CENTRAL_EXTRA_FIELD_SIZE + comment_size) >= MZ_UINT32_MAX)
6632
0
            return mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_CDIR_SIZE);
6633
6634
0
        if (!pState->m_zip64)
6635
0
        {
6636
            /* Bail early if the archive would obviously become too large */
6637
0
            if ((pZip->m_archive_size + num_alignment_padding_bytes + MZ_ZIP_LOCAL_DIR_HEADER_SIZE + archive_name_size + MZ_ZIP_CENTRAL_DIR_HEADER_SIZE + archive_name_size + comment_size + user_extra_data_len + pState->m_central_dir.m_size + MZ_ZIP_END_OF_CENTRAL_DIR_HEADER_SIZE + 1024 + MZ_ZIP_DATA_DESCRIPTER_SIZE32 + user_extra_data_central_len) > 0xFFFFFFFF)
6638
0
            {
6639
0
                pState->m_zip64 = MZ_TRUE;
6640
                /*return mz_zip_set_error(pZip, MZ_ZIP_ARCHIVE_TOO_LARGE); */
6641
0
            }
6642
0
        }
6643
6644
0
#ifndef MINIZ_NO_TIME
6645
0
        if (pFile_time)
6646
0
        {
6647
0
            mz_zip_time_t_to_dos_time(*pFile_time, &dos_time, &dos_date);
6648
0
        }
6649
#else
6650
        (void)pFile_time;
6651
#endif
6652
6653
0
        if (max_size <= 3)
6654
0
            level = 0;
6655
6656
0
        if (!mz_zip_writer_write_zeros(pZip, cur_archive_file_ofs, num_alignment_padding_bytes))
6657
0
        {
6658
0
            return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
6659
0
        }
6660
6661
0
        cur_archive_file_ofs += num_alignment_padding_bytes;
6662
0
        local_dir_header_ofs = cur_archive_file_ofs;
6663
6664
0
        if (pZip->m_file_offset_alignment)
6665
0
        {
6666
0
            MZ_ASSERT((cur_archive_file_ofs & (pZip->m_file_offset_alignment - 1)) == 0);
6667
0
        }
6668
6669
0
        if (max_size && level)
6670
0
        {
6671
0
            method = MZ_DEFLATED;
6672
0
        }
6673
6674
0
        MZ_CLEAR_ARR(local_dir_header);
6675
0
        if (pState->m_zip64)
6676
0
        {
6677
0
            if (max_size >= MZ_UINT32_MAX || local_dir_header_ofs >= MZ_UINT32_MAX)
6678
0
            {
6679
0
                pExtra_data = extra_data;
6680
0
                if (level_and_flags & MZ_ZIP_FLAG_WRITE_HEADER_SET_SIZE)
6681
0
                    extra_size = mz_zip_writer_create_zip64_extra_data(extra_data, (max_size >= MZ_UINT32_MAX) ? &uncomp_size : NULL,
6682
0
                                                                       (max_size >= MZ_UINT32_MAX) ? &comp_size : NULL,
6683
0
                                                                       (local_dir_header_ofs >= MZ_UINT32_MAX) ? &local_dir_header_ofs : NULL);
6684
0
                else
6685
0
                    extra_size = mz_zip_writer_create_zip64_extra_data(extra_data, NULL,
6686
0
                                                                       NULL,
6687
0
                                                                       (local_dir_header_ofs >= MZ_UINT32_MAX) ? &local_dir_header_ofs : NULL);
6688
0
            }
6689
6690
0
            if (!mz_zip_writer_create_local_dir_header(pZip, local_dir_header, (mz_uint16)archive_name_size, (mz_uint16)(extra_size + user_extra_data_len), 0, 0, 0, method, gen_flags, dos_time, dos_date))
6691
0
                return mz_zip_set_error(pZip, MZ_ZIP_INTERNAL_ERROR);
6692
6693
0
            if (pZip->m_pWrite(pZip->m_pIO_opaque, cur_archive_file_ofs, local_dir_header, sizeof(local_dir_header)) != sizeof(local_dir_header))
6694
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
6695
6696
0
            cur_archive_file_ofs += sizeof(local_dir_header);
6697
6698
0
            if (pZip->m_pWrite(pZip->m_pIO_opaque, cur_archive_file_ofs, pArchive_name, archive_name_size) != archive_name_size)
6699
0
            {
6700
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
6701
0
            }
6702
6703
0
            cur_archive_file_ofs += archive_name_size;
6704
6705
0
            if (pZip->m_pWrite(pZip->m_pIO_opaque, cur_archive_file_ofs, extra_data, extra_size) != extra_size)
6706
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
6707
6708
0
            cur_archive_file_ofs += extra_size;
6709
0
        }
6710
0
        else
6711
0
        {
6712
0
            if ((comp_size > MZ_UINT32_MAX) || (cur_archive_file_ofs > MZ_UINT32_MAX))
6713
0
                return mz_zip_set_error(pZip, MZ_ZIP_ARCHIVE_TOO_LARGE);
6714
0
            if (!mz_zip_writer_create_local_dir_header(pZip, local_dir_header, (mz_uint16)archive_name_size, (mz_uint16)user_extra_data_len, 0, 0, 0, method, gen_flags, dos_time, dos_date))
6715
0
                return mz_zip_set_error(pZip, MZ_ZIP_INTERNAL_ERROR);
6716
6717
0
            if (pZip->m_pWrite(pZip->m_pIO_opaque, cur_archive_file_ofs, local_dir_header, sizeof(local_dir_header)) != sizeof(local_dir_header))
6718
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
6719
6720
0
            cur_archive_file_ofs += sizeof(local_dir_header);
6721
6722
0
            if (pZip->m_pWrite(pZip->m_pIO_opaque, cur_archive_file_ofs, pArchive_name, archive_name_size) != archive_name_size)
6723
0
            {
6724
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
6725
0
            }
6726
6727
0
            cur_archive_file_ofs += archive_name_size;
6728
0
        }
6729
6730
0
        if (user_extra_data_len > 0)
6731
0
        {
6732
0
            if (pZip->m_pWrite(pZip->m_pIO_opaque, cur_archive_file_ofs, user_extra_data, user_extra_data_len) != user_extra_data_len)
6733
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
6734
6735
0
            cur_archive_file_ofs += user_extra_data_len;
6736
0
        }
6737
6738
0
        if (max_size)
6739
0
        {
6740
0
            void *pRead_buf = pZip->m_pAlloc(pZip->m_pAlloc_opaque, 1, MZ_ZIP_MAX_IO_BUF_SIZE);
6741
0
            if (!pRead_buf)
6742
0
            {
6743
0
                return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
6744
0
            }
6745
6746
0
            if (!level)
6747
0
            {
6748
0
                while (1)
6749
0
                {
6750
0
                    size_t n = read_callback(callback_opaque, file_ofs, pRead_buf, MZ_ZIP_MAX_IO_BUF_SIZE);
6751
0
                    if (n == 0)
6752
0
                        break;
6753
6754
0
                    if ((n > MZ_ZIP_MAX_IO_BUF_SIZE) || (file_ofs + n > max_size))
6755
0
                    {
6756
0
                        pZip->m_pFree(pZip->m_pAlloc_opaque, pRead_buf);
6757
0
                        return mz_zip_set_error(pZip, MZ_ZIP_FILE_READ_FAILED);
6758
0
                    }
6759
0
                    if (pZip->m_pWrite(pZip->m_pIO_opaque, cur_archive_file_ofs, pRead_buf, n) != n)
6760
0
                    {
6761
0
                        pZip->m_pFree(pZip->m_pAlloc_opaque, pRead_buf);
6762
0
                        return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
6763
0
                    }
6764
0
                    file_ofs += n;
6765
0
                    uncomp_crc32 = (mz_uint32)mz_crc32(uncomp_crc32, (const mz_uint8 *)pRead_buf, n);
6766
0
                    cur_archive_file_ofs += n;
6767
0
                }
6768
0
                uncomp_size = file_ofs;
6769
0
                comp_size = uncomp_size;
6770
0
            }
6771
0
            else
6772
0
            {
6773
0
                mz_bool result = MZ_FALSE;
6774
0
                mz_zip_writer_add_state state;
6775
0
                tdefl_compressor *pComp = (tdefl_compressor *)pZip->m_pAlloc(pZip->m_pAlloc_opaque, 1, sizeof(tdefl_compressor));
6776
0
                if (!pComp)
6777
0
                {
6778
0
                    pZip->m_pFree(pZip->m_pAlloc_opaque, pRead_buf);
6779
0
                    return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
6780
0
                }
6781
6782
0
                state.m_pZip = pZip;
6783
0
                state.m_cur_archive_file_ofs = cur_archive_file_ofs;
6784
0
                state.m_comp_size = 0;
6785
6786
0
                if (tdefl_init(pComp, mz_zip_writer_add_put_buf_callback, &state, tdefl_create_comp_flags_from_zip_params(level, -15, MZ_DEFAULT_STRATEGY)) != TDEFL_STATUS_OKAY)
6787
0
                {
6788
0
                    pZip->m_pFree(pZip->m_pAlloc_opaque, pComp);
6789
0
                    pZip->m_pFree(pZip->m_pAlloc_opaque, pRead_buf);
6790
0
                    return mz_zip_set_error(pZip, MZ_ZIP_INTERNAL_ERROR);
6791
0
                }
6792
6793
0
                for (;;)
6794
0
                {
6795
0
                    tdefl_status status;
6796
0
                    tdefl_flush flush = TDEFL_NO_FLUSH;
6797
6798
0
                    size_t n = read_callback(callback_opaque, file_ofs, pRead_buf, MZ_ZIP_MAX_IO_BUF_SIZE);
6799
0
                    if ((n > MZ_ZIP_MAX_IO_BUF_SIZE) || (file_ofs + n > max_size))
6800
0
                    {
6801
0
                        mz_zip_set_error(pZip, MZ_ZIP_FILE_READ_FAILED);
6802
0
                        break;
6803
0
                    }
6804
6805
0
                    file_ofs += n;
6806
0
                    uncomp_crc32 = (mz_uint32)mz_crc32(uncomp_crc32, (const mz_uint8 *)pRead_buf, n);
6807
6808
0
                    if (pZip->m_pNeeds_keepalive != NULL && pZip->m_pNeeds_keepalive(pZip->m_pIO_opaque))
6809
0
                        flush = TDEFL_FULL_FLUSH;
6810
6811
0
                    if (n == 0)
6812
0
                        flush = TDEFL_FINISH;
6813
6814
0
                    status = tdefl_compress_buffer(pComp, pRead_buf, n, flush);
6815
0
                    if (status == TDEFL_STATUS_DONE)
6816
0
                    {
6817
0
                        result = MZ_TRUE;
6818
0
                        break;
6819
0
                    }
6820
0
                    else if (status != TDEFL_STATUS_OKAY)
6821
0
                    {
6822
0
                        mz_zip_set_error(pZip, MZ_ZIP_COMPRESSION_FAILED);
6823
0
                        break;
6824
0
                    }
6825
0
                }
6826
6827
0
                pZip->m_pFree(pZip->m_pAlloc_opaque, pComp);
6828
6829
0
                if (!result)
6830
0
                {
6831
0
                    pZip->m_pFree(pZip->m_pAlloc_opaque, pRead_buf);
6832
0
                    return MZ_FALSE;
6833
0
                }
6834
6835
0
                uncomp_size = file_ofs;
6836
0
                comp_size = state.m_comp_size;
6837
0
                cur_archive_file_ofs = state.m_cur_archive_file_ofs;
6838
0
            }
6839
6840
0
            pZip->m_pFree(pZip->m_pAlloc_opaque, pRead_buf);
6841
0
        }
6842
6843
0
        if (!(level_and_flags & MZ_ZIP_FLAG_WRITE_HEADER_SET_SIZE))
6844
0
        {
6845
0
            mz_uint8 local_dir_footer[MZ_ZIP_DATA_DESCRIPTER_SIZE64];
6846
0
            mz_uint32 local_dir_footer_size = MZ_ZIP_DATA_DESCRIPTER_SIZE32;
6847
6848
0
            MZ_WRITE_LE32(local_dir_footer + 0, MZ_ZIP_DATA_DESCRIPTOR_ID);
6849
0
            MZ_WRITE_LE32(local_dir_footer + 4, uncomp_crc32);
6850
0
            if (pExtra_data == NULL)
6851
0
            {
6852
0
                if (comp_size > MZ_UINT32_MAX)
6853
0
                    return mz_zip_set_error(pZip, MZ_ZIP_ARCHIVE_TOO_LARGE);
6854
6855
0
                MZ_WRITE_LE32(local_dir_footer + 8, comp_size);
6856
0
                MZ_WRITE_LE32(local_dir_footer + 12, uncomp_size);
6857
0
            }
6858
0
            else
6859
0
            {
6860
0
                MZ_WRITE_LE64(local_dir_footer + 8, comp_size);
6861
0
                MZ_WRITE_LE64(local_dir_footer + 16, uncomp_size);
6862
0
                local_dir_footer_size = MZ_ZIP_DATA_DESCRIPTER_SIZE64;
6863
0
            }
6864
6865
0
            if (pZip->m_pWrite(pZip->m_pIO_opaque, cur_archive_file_ofs, local_dir_footer, local_dir_footer_size) != local_dir_footer_size)
6866
0
                return MZ_FALSE;
6867
6868
0
            cur_archive_file_ofs += local_dir_footer_size;
6869
0
        }
6870
6871
0
        if (level_and_flags & MZ_ZIP_FLAG_WRITE_HEADER_SET_SIZE)
6872
0
        {
6873
0
            if (pExtra_data != NULL)
6874
0
            {
6875
0
                extra_size = mz_zip_writer_create_zip64_extra_data(extra_data, (max_size >= MZ_UINT32_MAX) ? &uncomp_size : NULL,
6876
0
                                                                   (max_size >= MZ_UINT32_MAX) ? &comp_size : NULL, (local_dir_header_ofs >= MZ_UINT32_MAX) ? &local_dir_header_ofs : NULL);
6877
0
            }
6878
6879
0
            if (!mz_zip_writer_create_local_dir_header(pZip, local_dir_header,
6880
0
                                                       (mz_uint16)archive_name_size, (mz_uint16)(extra_size + user_extra_data_len),
6881
0
                                                       (max_size >= MZ_UINT32_MAX) ? MZ_UINT32_MAX : uncomp_size,
6882
0
                                                       (max_size >= MZ_UINT32_MAX) ? MZ_UINT32_MAX : comp_size,
6883
0
                                                       uncomp_crc32, method, gen_flags, dos_time, dos_date))
6884
0
                return mz_zip_set_error(pZip, MZ_ZIP_INTERNAL_ERROR);
6885
6886
0
            cur_archive_header_file_ofs = local_dir_header_ofs;
6887
6888
0
            if (pZip->m_pWrite(pZip->m_pIO_opaque, cur_archive_header_file_ofs, local_dir_header, sizeof(local_dir_header)) != sizeof(local_dir_header))
6889
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
6890
6891
0
            if (pExtra_data != NULL)
6892
0
            {
6893
0
                cur_archive_header_file_ofs += sizeof(local_dir_header);
6894
6895
0
                if (pZip->m_pWrite(pZip->m_pIO_opaque, cur_archive_header_file_ofs, pArchive_name, archive_name_size) != archive_name_size)
6896
0
                {
6897
0
                    return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
6898
0
                }
6899
6900
0
                cur_archive_header_file_ofs += archive_name_size;
6901
6902
0
                if (pZip->m_pWrite(pZip->m_pIO_opaque, cur_archive_header_file_ofs, extra_data, extra_size) != extra_size)
6903
0
                    return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
6904
6905
0
                cur_archive_header_file_ofs += extra_size;
6906
0
            }
6907
0
        }
6908
6909
0
        if (pExtra_data != NULL)
6910
0
        {
6911
0
            extra_size = mz_zip_writer_create_zip64_extra_data(extra_data, (uncomp_size >= MZ_UINT32_MAX) ? &uncomp_size : NULL,
6912
0
                                                               (uncomp_size >= MZ_UINT32_MAX) ? &comp_size : NULL, (local_dir_header_ofs >= MZ_UINT32_MAX) ? &local_dir_header_ofs : NULL);
6913
0
        }
6914
6915
0
        if (!mz_zip_writer_add_to_central_dir(pZip, pArchive_name, (mz_uint16)archive_name_size, pExtra_data, (mz_uint16)extra_size, pComment, comment_size,
6916
0
                                              uncomp_size, comp_size, uncomp_crc32, method, gen_flags, dos_time, dos_date, local_dir_header_ofs, ext_attributes,
6917
0
                                              user_extra_data_central, user_extra_data_central_len))
6918
0
            return MZ_FALSE;
6919
6920
0
        pZip->m_total_files++;
6921
0
        pZip->m_archive_size = cur_archive_file_ofs;
6922
6923
0
        return MZ_TRUE;
6924
0
    }
6925
6926
#ifndef MINIZ_NO_STDIO
6927
6928
    static size_t mz_file_read_func_stdio(void *pOpaque, mz_uint64 file_ofs, void *pBuf, size_t n)
6929
0
    {
6930
0
        MZ_FILE *pSrc_file = (MZ_FILE *)pOpaque;
6931
0
        mz_int64 cur_ofs = MZ_FTELL64(pSrc_file);
6932
6933
0
        if (((mz_int64)file_ofs < 0) || (((cur_ofs != (mz_int64)file_ofs)) && (MZ_FSEEK64(pSrc_file, (mz_int64)file_ofs, SEEK_SET))))
6934
0
            return 0;
6935
6936
0
        return MZ_FREAD(pBuf, 1, n, pSrc_file);
6937
0
    }
6938
6939
    mz_bool mz_zip_writer_add_cfile(mz_zip_archive *pZip, const char *pArchive_name, MZ_FILE *pSrc_file, mz_uint64 max_size, const MZ_TIME_T *pFile_time, const void *pComment, mz_uint16 comment_size, mz_uint level_and_flags,
6940
                                    const char *user_extra_data, mz_uint user_extra_data_len, const char *user_extra_data_central, mz_uint user_extra_data_central_len)
6941
0
    {
6942
0
        return mz_zip_writer_add_read_buf_callback(pZip, pArchive_name, mz_file_read_func_stdio, pSrc_file, max_size, pFile_time, pComment, comment_size, level_and_flags,
6943
0
                                                   user_extra_data, user_extra_data_len, user_extra_data_central, user_extra_data_central_len);
6944
0
    }
6945
6946
    mz_bool mz_zip_writer_add_file(mz_zip_archive *pZip, const char *pArchive_name, const char *pSrc_filename, const void *pComment, mz_uint16 comment_size, mz_uint level_and_flags)
6947
0
    {
6948
0
        MZ_FILE *pSrc_file = NULL;
6949
0
        mz_uint64 uncomp_size = 0;
6950
0
        MZ_TIME_T file_modified_time;
6951
0
        MZ_TIME_T *pFile_time = NULL;
6952
0
        mz_bool status;
6953
6954
0
        memset(&file_modified_time, 0, sizeof(file_modified_time));
6955
6956
0
#if !defined(MINIZ_NO_TIME) && !defined(MINIZ_NO_STDIO)
6957
0
        pFile_time = &file_modified_time;
6958
0
        if (!mz_zip_get_file_modified_time(pSrc_filename, &file_modified_time))
6959
0
            return mz_zip_set_error(pZip, MZ_ZIP_FILE_STAT_FAILED);
6960
0
#endif
6961
6962
0
        pSrc_file = MZ_FOPEN(pSrc_filename, "rb");
6963
0
        if (!pSrc_file)
6964
0
            return mz_zip_set_error(pZip, MZ_ZIP_FILE_OPEN_FAILED);
6965
6966
0
        MZ_FSEEK64(pSrc_file, 0, SEEK_END);
6967
0
        uncomp_size = MZ_FTELL64(pSrc_file);
6968
0
        MZ_FSEEK64(pSrc_file, 0, SEEK_SET);
6969
6970
0
        status = mz_zip_writer_add_cfile(pZip, pArchive_name, pSrc_file, uncomp_size, pFile_time, pComment, comment_size, level_and_flags, NULL, 0, NULL, 0);
6971
6972
0
        MZ_FCLOSE(pSrc_file);
6973
6974
0
        return status;
6975
0
    }
6976
#endif /* #ifndef MINIZ_NO_STDIO */
6977
6978
    static mz_bool mz_zip_writer_update_zip64_extension_block(mz_zip_array *pNew_ext, mz_zip_archive *pZip, const mz_uint8 *pExt, mz_uint32 ext_len, mz_uint64 *pComp_size, mz_uint64 *pUncomp_size, mz_uint64 *pLocal_header_ofs, mz_uint32 *pDisk_start)
6979
0
    {
6980
        /* + 64 should be enough for any new zip64 data */
6981
0
        if (!mz_zip_array_reserve(pZip, pNew_ext, ext_len + 64, MZ_FALSE))
6982
0
            return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
6983
6984
0
        mz_zip_array_resize(pZip, pNew_ext, 0, MZ_FALSE);
6985
6986
0
        if ((pUncomp_size) || (pComp_size) || (pLocal_header_ofs) || (pDisk_start))
6987
0
        {
6988
0
            mz_uint8 new_ext_block[64];
6989
0
            mz_uint8 *pDst = new_ext_block;
6990
0
            mz_write_le16(pDst, MZ_ZIP64_EXTENDED_INFORMATION_FIELD_HEADER_ID);
6991
0
            mz_write_le16(pDst + sizeof(mz_uint16), 0);
6992
0
            pDst += sizeof(mz_uint16) * 2;
6993
6994
0
            if (pUncomp_size)
6995
0
            {
6996
0
                mz_write_le64(pDst, *pUncomp_size);
6997
0
                pDst += sizeof(mz_uint64);
6998
0
            }
6999
7000
0
            if (pComp_size)
7001
0
            {
7002
0
                mz_write_le64(pDst, *pComp_size);
7003
0
                pDst += sizeof(mz_uint64);
7004
0
            }
7005
7006
0
            if (pLocal_header_ofs)
7007
0
            {
7008
0
                mz_write_le64(pDst, *pLocal_header_ofs);
7009
0
                pDst += sizeof(mz_uint64);
7010
0
            }
7011
7012
0
            if (pDisk_start)
7013
0
            {
7014
0
                mz_write_le32(pDst, *pDisk_start);
7015
0
                pDst += sizeof(mz_uint32);
7016
0
            }
7017
7018
0
            mz_write_le16(new_ext_block + sizeof(mz_uint16), (mz_uint16)((pDst - new_ext_block) - sizeof(mz_uint16) * 2));
7019
7020
0
            if (!mz_zip_array_push_back(pZip, pNew_ext, new_ext_block, pDst - new_ext_block))
7021
0
                return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
7022
0
        }
7023
7024
0
        if ((pExt) && (ext_len))
7025
0
        {
7026
0
            mz_uint32 extra_size_remaining = ext_len;
7027
0
            const mz_uint8 *pExtra_data = pExt;
7028
7029
0
            do
7030
0
            {
7031
0
                mz_uint32 field_id, field_data_size, field_total_size;
7032
7033
0
                if (extra_size_remaining < (sizeof(mz_uint16) * 2))
7034
0
                    return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
7035
7036
0
                field_id = MZ_READ_LE16(pExtra_data);
7037
0
                field_data_size = MZ_READ_LE16(pExtra_data + sizeof(mz_uint16));
7038
0
                field_total_size = field_data_size + sizeof(mz_uint16) * 2;
7039
7040
0
                if (field_total_size > extra_size_remaining)
7041
0
                    return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
7042
7043
0
                if (field_id != MZ_ZIP64_EXTENDED_INFORMATION_FIELD_HEADER_ID)
7044
0
                {
7045
0
                    if (!mz_zip_array_push_back(pZip, pNew_ext, pExtra_data, field_total_size))
7046
0
                        return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
7047
0
                }
7048
7049
0
                pExtra_data += field_total_size;
7050
0
                extra_size_remaining -= field_total_size;
7051
0
            } while (extra_size_remaining);
7052
0
        }
7053
7054
0
        return MZ_TRUE;
7055
0
    }
7056
7057
    /* TODO: This func is now pretty freakin complex due to zip64, split it up? */
7058
    mz_bool mz_zip_writer_add_from_zip_reader(mz_zip_archive *pZip, mz_zip_archive *pSource_zip, mz_uint src_file_index)
7059
0
    {
7060
0
        mz_uint n, bit_flags, num_alignment_padding_bytes, src_central_dir_following_data_size;
7061
0
        mz_uint64 src_archive_bytes_remaining, local_dir_header_ofs;
7062
0
        mz_uint64 cur_src_file_ofs, cur_dst_file_ofs;
7063
0
        mz_uint32 local_header_u32[(MZ_ZIP_LOCAL_DIR_HEADER_SIZE + sizeof(mz_uint32) - 1) / sizeof(mz_uint32)];
7064
0
        mz_uint8 *pLocal_header = (mz_uint8 *)local_header_u32;
7065
0
        mz_uint8 new_central_header[MZ_ZIP_CENTRAL_DIR_HEADER_SIZE];
7066
0
        size_t orig_central_dir_size;
7067
0
        mz_zip_internal_state *pState;
7068
0
        void *pBuf;
7069
0
        const mz_uint8 *pSrc_central_header;
7070
0
        mz_zip_archive_file_stat src_file_stat;
7071
0
        mz_uint32 src_filename_len, src_comment_len, src_ext_len;
7072
0
        mz_uint32 local_header_filename_size, local_header_extra_len;
7073
0
        mz_uint64 local_header_comp_size, local_header_uncomp_size;
7074
0
        mz_bool found_zip64_ext_data_in_ldir = MZ_FALSE;
7075
7076
        /* Sanity checks */
7077
0
        if ((!pZip) || (!pZip->m_pState) || (pZip->m_zip_mode != MZ_ZIP_MODE_WRITING) || (!pSource_zip->m_pRead))
7078
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
7079
7080
0
        pState = pZip->m_pState;
7081
7082
        /* Don't support copying files from zip64 archives to non-zip64, even though in some cases this is possible */
7083
0
        if ((pSource_zip->m_pState->m_zip64) && (!pZip->m_pState->m_zip64))
7084
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
7085
7086
        /* Get pointer to the source central dir header and crack it */
7087
0
        if (NULL == (pSrc_central_header = mz_zip_get_cdh(pSource_zip, src_file_index)))
7088
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
7089
7090
0
        if (MZ_READ_LE32(pSrc_central_header + MZ_ZIP_CDH_SIG_OFS) != MZ_ZIP_CENTRAL_DIR_HEADER_SIG)
7091
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
7092
7093
0
        src_filename_len = MZ_READ_LE16(pSrc_central_header + MZ_ZIP_CDH_FILENAME_LEN_OFS);
7094
0
        src_comment_len = MZ_READ_LE16(pSrc_central_header + MZ_ZIP_CDH_COMMENT_LEN_OFS);
7095
0
        src_ext_len = MZ_READ_LE16(pSrc_central_header + MZ_ZIP_CDH_EXTRA_LEN_OFS);
7096
0
        src_central_dir_following_data_size = src_filename_len + src_ext_len + src_comment_len;
7097
7098
        /* TODO: We don't support central dir's >= MZ_UINT32_MAX bytes right now (+32 fudge factor in case we need to add more extra data) */
7099
0
        if ((pState->m_central_dir.m_size + MZ_ZIP_CENTRAL_DIR_HEADER_SIZE + src_central_dir_following_data_size + 32) >= MZ_UINT32_MAX)
7100
0
            return mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_CDIR_SIZE);
7101
7102
0
        num_alignment_padding_bytes = mz_zip_writer_compute_padding_needed_for_file_alignment(pZip);
7103
7104
0
        if (!pState->m_zip64)
7105
0
        {
7106
0
            if (pZip->m_total_files == MZ_UINT16_MAX)
7107
0
                return mz_zip_set_error(pZip, MZ_ZIP_TOO_MANY_FILES);
7108
0
        }
7109
0
        else
7110
0
        {
7111
            /* TODO: Our zip64 support still has some 32-bit limits that may not be worth fixing. */
7112
0
            if (pZip->m_total_files == MZ_UINT32_MAX)
7113
0
                return mz_zip_set_error(pZip, MZ_ZIP_TOO_MANY_FILES);
7114
0
        }
7115
7116
0
        if (!mz_zip_file_stat_internal(pSource_zip, src_file_index, pSrc_central_header, &src_file_stat, NULL))
7117
0
            return MZ_FALSE;
7118
7119
0
        cur_src_file_ofs = src_file_stat.m_local_header_ofs;
7120
0
        cur_dst_file_ofs = pZip->m_archive_size;
7121
7122
        /* Read the source archive's local dir header */
7123
0
        if (pSource_zip->m_pRead(pSource_zip->m_pIO_opaque, cur_src_file_ofs, pLocal_header, MZ_ZIP_LOCAL_DIR_HEADER_SIZE) != MZ_ZIP_LOCAL_DIR_HEADER_SIZE)
7124
0
            return mz_zip_set_error(pZip, MZ_ZIP_FILE_READ_FAILED);
7125
7126
0
        if (MZ_READ_LE32(pLocal_header) != MZ_ZIP_LOCAL_DIR_HEADER_SIG)
7127
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
7128
7129
0
        cur_src_file_ofs += MZ_ZIP_LOCAL_DIR_HEADER_SIZE;
7130
7131
        /* Compute the total size we need to copy (filename+extra data+compressed data) */
7132
0
        local_header_filename_size = MZ_READ_LE16(pLocal_header + MZ_ZIP_LDH_FILENAME_LEN_OFS);
7133
0
        local_header_extra_len = MZ_READ_LE16(pLocal_header + MZ_ZIP_LDH_EXTRA_LEN_OFS);
7134
0
        local_header_comp_size = MZ_READ_LE32(pLocal_header + MZ_ZIP_LDH_COMPRESSED_SIZE_OFS);
7135
0
        local_header_uncomp_size = MZ_READ_LE32(pLocal_header + MZ_ZIP_LDH_DECOMPRESSED_SIZE_OFS);
7136
0
        src_archive_bytes_remaining = src_file_stat.m_comp_size + local_header_filename_size + local_header_extra_len;
7137
7138
        /* Try to find a zip64 extended information field */
7139
0
        if ((local_header_extra_len) && ((local_header_comp_size == MZ_UINT32_MAX) || (local_header_uncomp_size == MZ_UINT32_MAX)))
7140
0
        {
7141
0
            mz_zip_array file_data_array;
7142
0
            const mz_uint8 *pExtra_data;
7143
0
            mz_uint32 extra_size_remaining = local_header_extra_len;
7144
7145
0
            mz_zip_array_init(&file_data_array, 1);
7146
0
            if (!mz_zip_array_resize(pZip, &file_data_array, local_header_extra_len, MZ_FALSE))
7147
0
            {
7148
0
                return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
7149
0
            }
7150
7151
0
            if (pSource_zip->m_pRead(pSource_zip->m_pIO_opaque, src_file_stat.m_local_header_ofs + MZ_ZIP_LOCAL_DIR_HEADER_SIZE + local_header_filename_size, file_data_array.m_p, local_header_extra_len) != local_header_extra_len)
7152
0
            {
7153
0
                mz_zip_array_clear(pZip, &file_data_array);
7154
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_READ_FAILED);
7155
0
            }
7156
7157
0
            pExtra_data = (const mz_uint8 *)file_data_array.m_p;
7158
7159
0
            do
7160
0
            {
7161
0
                mz_uint32 field_id, field_data_size, field_total_size;
7162
7163
0
                if (extra_size_remaining < (sizeof(mz_uint16) * 2))
7164
0
                {
7165
0
                    mz_zip_array_clear(pZip, &file_data_array);
7166
0
                    return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
7167
0
                }
7168
7169
0
                field_id = MZ_READ_LE16(pExtra_data);
7170
0
                field_data_size = MZ_READ_LE16(pExtra_data + sizeof(mz_uint16));
7171
0
                field_total_size = field_data_size + sizeof(mz_uint16) * 2;
7172
7173
0
                if (field_total_size > extra_size_remaining)
7174
0
                {
7175
0
                    mz_zip_array_clear(pZip, &file_data_array);
7176
0
                    return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
7177
0
                }
7178
7179
0
                if (field_id == MZ_ZIP64_EXTENDED_INFORMATION_FIELD_HEADER_ID)
7180
0
                {
7181
0
                    const mz_uint8 *pSrc_field_data = pExtra_data + sizeof(mz_uint32);
7182
7183
0
                    if (field_data_size < sizeof(mz_uint64) * 2)
7184
0
                    {
7185
0
                        mz_zip_array_clear(pZip, &file_data_array);
7186
0
                        return mz_zip_set_error(pZip, MZ_ZIP_INVALID_HEADER_OR_CORRUPTED);
7187
0
                    }
7188
7189
0
                    local_header_uncomp_size = MZ_READ_LE64(pSrc_field_data);
7190
0
                    local_header_comp_size = MZ_READ_LE64(pSrc_field_data + sizeof(mz_uint64)); /* may be 0 if there's a descriptor */
7191
7192
0
                    found_zip64_ext_data_in_ldir = MZ_TRUE;
7193
0
                    break;
7194
0
                }
7195
7196
0
                pExtra_data += field_total_size;
7197
0
                extra_size_remaining -= field_total_size;
7198
0
            } while (extra_size_remaining);
7199
7200
0
            mz_zip_array_clear(pZip, &file_data_array);
7201
0
        }
7202
7203
0
        if (!pState->m_zip64)
7204
0
        {
7205
            /* Try to detect if the new archive will most likely wind up too big and bail early (+(sizeof(mz_uint32) * 4) is for the optional descriptor which could be present, +64 is a fudge factor). */
7206
            /* We also check when the archive is finalized so this doesn't need to be perfect. */
7207
0
            mz_uint64 approx_new_archive_size = cur_dst_file_ofs + num_alignment_padding_bytes + MZ_ZIP_LOCAL_DIR_HEADER_SIZE + src_archive_bytes_remaining + (sizeof(mz_uint32) * 4) +
7208
0
                                                pState->m_central_dir.m_size + MZ_ZIP_CENTRAL_DIR_HEADER_SIZE + src_central_dir_following_data_size + MZ_ZIP_END_OF_CENTRAL_DIR_HEADER_SIZE + 64;
7209
7210
0
            if (approx_new_archive_size >= MZ_UINT32_MAX)
7211
0
                return mz_zip_set_error(pZip, MZ_ZIP_ARCHIVE_TOO_LARGE);
7212
0
        }
7213
7214
        /* Write dest archive padding */
7215
0
        if (!mz_zip_writer_write_zeros(pZip, cur_dst_file_ofs, num_alignment_padding_bytes))
7216
0
            return MZ_FALSE;
7217
7218
0
        cur_dst_file_ofs += num_alignment_padding_bytes;
7219
7220
0
        local_dir_header_ofs = cur_dst_file_ofs;
7221
0
        if (pZip->m_file_offset_alignment)
7222
0
        {
7223
0
            MZ_ASSERT((local_dir_header_ofs & (pZip->m_file_offset_alignment - 1)) == 0);
7224
0
        }
7225
7226
        /* The original zip's local header+ext block doesn't change, even with zip64, so we can just copy it over to the dest zip */
7227
0
        if (pZip->m_pWrite(pZip->m_pIO_opaque, cur_dst_file_ofs, pLocal_header, MZ_ZIP_LOCAL_DIR_HEADER_SIZE) != MZ_ZIP_LOCAL_DIR_HEADER_SIZE)
7228
0
            return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
7229
7230
0
        cur_dst_file_ofs += MZ_ZIP_LOCAL_DIR_HEADER_SIZE;
7231
7232
        /* Copy over the source archive bytes to the dest archive, also ensure we have enough buf space to handle optional data descriptor */
7233
0
        if (NULL == (pBuf = pZip->m_pAlloc(pZip->m_pAlloc_opaque, 1, (size_t)MZ_MAX(32U, MZ_MIN((mz_uint64)MZ_ZIP_MAX_IO_BUF_SIZE, src_archive_bytes_remaining)))))
7234
0
            return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
7235
7236
0
        while (src_archive_bytes_remaining)
7237
0
        {
7238
0
            n = (mz_uint)MZ_MIN((mz_uint64)MZ_ZIP_MAX_IO_BUF_SIZE, src_archive_bytes_remaining);
7239
0
            if (pSource_zip->m_pRead(pSource_zip->m_pIO_opaque, cur_src_file_ofs, pBuf, n) != n)
7240
0
            {
7241
0
                pZip->m_pFree(pZip->m_pAlloc_opaque, pBuf);
7242
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_READ_FAILED);
7243
0
            }
7244
0
            cur_src_file_ofs += n;
7245
7246
0
            if (pZip->m_pWrite(pZip->m_pIO_opaque, cur_dst_file_ofs, pBuf, n) != n)
7247
0
            {
7248
0
                pZip->m_pFree(pZip->m_pAlloc_opaque, pBuf);
7249
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
7250
0
            }
7251
0
            cur_dst_file_ofs += n;
7252
7253
0
            src_archive_bytes_remaining -= n;
7254
0
        }
7255
7256
        /* Now deal with the optional data descriptor */
7257
0
        bit_flags = MZ_READ_LE16(pLocal_header + MZ_ZIP_LDH_BIT_FLAG_OFS);
7258
0
        if (bit_flags & 8)
7259
0
        {
7260
            /* Copy data descriptor */
7261
0
            if ((pSource_zip->m_pState->m_zip64) || (found_zip64_ext_data_in_ldir))
7262
0
            {
7263
                /* src is zip64, dest must be zip64 */
7264
7265
                /* name     uint32_t's */
7266
                /* id       1 (optional in zip64?) */
7267
                /* crc      1 */
7268
                /* comp_size  2 */
7269
                /* uncomp_size 2 */
7270
0
                if (pSource_zip->m_pRead(pSource_zip->m_pIO_opaque, cur_src_file_ofs, pBuf, (sizeof(mz_uint32) * 6)) != (sizeof(mz_uint32) * 6))
7271
0
                {
7272
0
                    pZip->m_pFree(pZip->m_pAlloc_opaque, pBuf);
7273
0
                    return mz_zip_set_error(pZip, MZ_ZIP_FILE_READ_FAILED);
7274
0
                }
7275
7276
0
                n = sizeof(mz_uint32) * ((MZ_READ_LE32(pBuf) == MZ_ZIP_DATA_DESCRIPTOR_ID) ? 6 : 5);
7277
0
            }
7278
0
            else
7279
0
            {
7280
                /* src is NOT zip64 */
7281
0
                mz_bool has_id;
7282
7283
0
                if (pSource_zip->m_pRead(pSource_zip->m_pIO_opaque, cur_src_file_ofs, pBuf, sizeof(mz_uint32) * 4) != sizeof(mz_uint32) * 4)
7284
0
                {
7285
0
                    pZip->m_pFree(pZip->m_pAlloc_opaque, pBuf);
7286
0
                    return mz_zip_set_error(pZip, MZ_ZIP_FILE_READ_FAILED);
7287
0
                }
7288
7289
0
                has_id = (MZ_READ_LE32(pBuf) == MZ_ZIP_DATA_DESCRIPTOR_ID);
7290
7291
0
                if (pZip->m_pState->m_zip64)
7292
0
                {
7293
                    /* dest is zip64, so upgrade the data descriptor */
7294
0
                    const mz_uint8 *pSrc_descriptor = (const mz_uint8 *)pBuf + (has_id ? sizeof(mz_uint32) : 0);
7295
0
                    const mz_uint32 src_crc32 = MZ_READ_LE32(pSrc_descriptor);
7296
0
                    const mz_uint64 src_comp_size = MZ_READ_LE32(pSrc_descriptor + sizeof(mz_uint32));
7297
0
                    const mz_uint64 src_uncomp_size = MZ_READ_LE32(pSrc_descriptor + 2 * sizeof(mz_uint32));
7298
7299
0
                    mz_write_le32((mz_uint8 *)pBuf, MZ_ZIP_DATA_DESCRIPTOR_ID);
7300
0
                    mz_write_le32((mz_uint8 *)pBuf + sizeof(mz_uint32) * 1, src_crc32);
7301
0
                    mz_write_le64((mz_uint8 *)pBuf + sizeof(mz_uint32) * 2, src_comp_size);
7302
0
                    mz_write_le64((mz_uint8 *)pBuf + sizeof(mz_uint32) * 4, src_uncomp_size);
7303
7304
0
                    n = sizeof(mz_uint32) * 6;
7305
0
                }
7306
0
                else
7307
0
                {
7308
                    /* dest is NOT zip64, just copy it as-is */
7309
0
                    n = sizeof(mz_uint32) * (has_id ? 4 : 3);
7310
0
                }
7311
0
            }
7312
7313
0
            if (pZip->m_pWrite(pZip->m_pIO_opaque, cur_dst_file_ofs, pBuf, n) != n)
7314
0
            {
7315
0
                pZip->m_pFree(pZip->m_pAlloc_opaque, pBuf);
7316
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
7317
0
            }
7318
7319
0
            cur_src_file_ofs += n;
7320
0
            cur_dst_file_ofs += n;
7321
0
        }
7322
0
        pZip->m_pFree(pZip->m_pAlloc_opaque, pBuf);
7323
7324
        /* Finally, add the new central dir header */
7325
0
        orig_central_dir_size = pState->m_central_dir.m_size;
7326
7327
0
        memcpy(new_central_header, pSrc_central_header, MZ_ZIP_CENTRAL_DIR_HEADER_SIZE);
7328
7329
0
        if (pState->m_zip64)
7330
0
        {
7331
            /* This is the painful part: We need to write a new central dir header + ext block with updated zip64 fields, and ensure the old fields (if any) are not included. */
7332
0
            const mz_uint8 *pSrc_ext = pSrc_central_header + MZ_ZIP_CENTRAL_DIR_HEADER_SIZE + src_filename_len;
7333
0
            mz_zip_array new_ext_block;
7334
7335
0
            mz_zip_array_init(&new_ext_block, sizeof(mz_uint8));
7336
7337
0
            MZ_WRITE_LE32(new_central_header + MZ_ZIP_CDH_COMPRESSED_SIZE_OFS, MZ_UINT32_MAX);
7338
0
            MZ_WRITE_LE32(new_central_header + MZ_ZIP_CDH_DECOMPRESSED_SIZE_OFS, MZ_UINT32_MAX);
7339
0
            MZ_WRITE_LE32(new_central_header + MZ_ZIP_CDH_LOCAL_HEADER_OFS, MZ_UINT32_MAX);
7340
7341
0
            if (!mz_zip_writer_update_zip64_extension_block(&new_ext_block, pZip, pSrc_ext, src_ext_len, &src_file_stat.m_comp_size, &src_file_stat.m_uncomp_size, &local_dir_header_ofs, NULL))
7342
0
            {
7343
0
                mz_zip_array_clear(pZip, &new_ext_block);
7344
0
                return MZ_FALSE;
7345
0
            }
7346
7347
0
            MZ_WRITE_LE16(new_central_header + MZ_ZIP_CDH_EXTRA_LEN_OFS, new_ext_block.m_size);
7348
7349
0
            if (!mz_zip_array_push_back(pZip, &pState->m_central_dir, new_central_header, MZ_ZIP_CENTRAL_DIR_HEADER_SIZE))
7350
0
            {
7351
0
                mz_zip_array_clear(pZip, &new_ext_block);
7352
0
                return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
7353
0
            }
7354
7355
0
            if (!mz_zip_array_push_back(pZip, &pState->m_central_dir, pSrc_central_header + MZ_ZIP_CENTRAL_DIR_HEADER_SIZE, src_filename_len))
7356
0
            {
7357
0
                mz_zip_array_clear(pZip, &new_ext_block);
7358
0
                mz_zip_array_resize(pZip, &pState->m_central_dir, orig_central_dir_size, MZ_FALSE);
7359
0
                return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
7360
0
            }
7361
7362
0
            if (!mz_zip_array_push_back(pZip, &pState->m_central_dir, new_ext_block.m_p, new_ext_block.m_size))
7363
0
            {
7364
0
                mz_zip_array_clear(pZip, &new_ext_block);
7365
0
                mz_zip_array_resize(pZip, &pState->m_central_dir, orig_central_dir_size, MZ_FALSE);
7366
0
                return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
7367
0
            }
7368
7369
0
            if (!mz_zip_array_push_back(pZip, &pState->m_central_dir, pSrc_central_header + MZ_ZIP_CENTRAL_DIR_HEADER_SIZE + src_filename_len + src_ext_len, src_comment_len))
7370
0
            {
7371
0
                mz_zip_array_clear(pZip, &new_ext_block);
7372
0
                mz_zip_array_resize(pZip, &pState->m_central_dir, orig_central_dir_size, MZ_FALSE);
7373
0
                return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
7374
0
            }
7375
7376
0
            mz_zip_array_clear(pZip, &new_ext_block);
7377
0
        }
7378
0
        else
7379
0
        {
7380
            /* sanity checks */
7381
0
            if (cur_dst_file_ofs > MZ_UINT32_MAX)
7382
0
                return mz_zip_set_error(pZip, MZ_ZIP_ARCHIVE_TOO_LARGE);
7383
7384
0
            if (local_dir_header_ofs >= MZ_UINT32_MAX)
7385
0
                return mz_zip_set_error(pZip, MZ_ZIP_ARCHIVE_TOO_LARGE);
7386
7387
0
            MZ_WRITE_LE32(new_central_header + MZ_ZIP_CDH_LOCAL_HEADER_OFS, local_dir_header_ofs);
7388
7389
0
            if (!mz_zip_array_push_back(pZip, &pState->m_central_dir, new_central_header, MZ_ZIP_CENTRAL_DIR_HEADER_SIZE))
7390
0
                return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
7391
7392
0
            if (!mz_zip_array_push_back(pZip, &pState->m_central_dir, pSrc_central_header + MZ_ZIP_CENTRAL_DIR_HEADER_SIZE, src_central_dir_following_data_size))
7393
0
            {
7394
0
                mz_zip_array_resize(pZip, &pState->m_central_dir, orig_central_dir_size, MZ_FALSE);
7395
0
                return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
7396
0
            }
7397
0
        }
7398
7399
        /* This shouldn't trigger unless we screwed up during the initial sanity checks */
7400
0
        if (pState->m_central_dir.m_size >= MZ_UINT32_MAX)
7401
0
        {
7402
            /* TODO: Support central dirs >= 32-bits in size */
7403
0
            mz_zip_array_resize(pZip, &pState->m_central_dir, orig_central_dir_size, MZ_FALSE);
7404
0
            return mz_zip_set_error(pZip, MZ_ZIP_UNSUPPORTED_CDIR_SIZE);
7405
0
        }
7406
7407
0
        n = (mz_uint32)orig_central_dir_size;
7408
0
        if (!mz_zip_array_push_back(pZip, &pState->m_central_dir_offsets, &n, 1))
7409
0
        {
7410
0
            mz_zip_array_resize(pZip, &pState->m_central_dir, orig_central_dir_size, MZ_FALSE);
7411
0
            return mz_zip_set_error(pZip, MZ_ZIP_ALLOC_FAILED);
7412
0
        }
7413
7414
0
        pZip->m_total_files++;
7415
0
        pZip->m_archive_size = cur_dst_file_ofs;
7416
7417
0
        return MZ_TRUE;
7418
0
    }
7419
7420
    mz_bool mz_zip_writer_finalize_archive(mz_zip_archive *pZip)
7421
0
    {
7422
0
        mz_zip_internal_state *pState;
7423
0
        mz_uint64 central_dir_ofs, central_dir_size;
7424
0
        mz_uint8 hdr[256];
7425
7426
0
        if ((!pZip) || (!pZip->m_pState) || (pZip->m_zip_mode != MZ_ZIP_MODE_WRITING))
7427
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
7428
7429
0
        pState = pZip->m_pState;
7430
7431
0
        if (pState->m_zip64)
7432
0
        {
7433
0
            if ((mz_uint64)pState->m_central_dir.m_size >= MZ_UINT32_MAX)
7434
0
                return mz_zip_set_error(pZip, MZ_ZIP_TOO_MANY_FILES);
7435
0
        }
7436
0
        else
7437
0
        {
7438
0
            if ((pZip->m_total_files > MZ_UINT16_MAX) || ((pZip->m_archive_size + pState->m_central_dir.m_size + MZ_ZIP_END_OF_CENTRAL_DIR_HEADER_SIZE) > MZ_UINT32_MAX))
7439
0
                return mz_zip_set_error(pZip, MZ_ZIP_TOO_MANY_FILES);
7440
0
        }
7441
7442
0
        central_dir_ofs = 0;
7443
0
        central_dir_size = 0;
7444
0
        if (pZip->m_total_files)
7445
0
        {
7446
            /* Write central directory */
7447
0
            central_dir_ofs = pZip->m_archive_size;
7448
0
            central_dir_size = pState->m_central_dir.m_size;
7449
0
            pZip->m_central_directory_file_ofs = central_dir_ofs;
7450
0
            if (pZip->m_pWrite(pZip->m_pIO_opaque, central_dir_ofs, pState->m_central_dir.m_p, (size_t)central_dir_size) != central_dir_size)
7451
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
7452
7453
0
            pZip->m_archive_size += central_dir_size;
7454
0
        }
7455
7456
0
        if (pState->m_zip64)
7457
0
        {
7458
            /* Write zip64 end of central directory header */
7459
0
            mz_uint64 rel_ofs_to_zip64_ecdr = pZip->m_archive_size;
7460
7461
0
            MZ_CLEAR_ARR(hdr);
7462
0
            MZ_WRITE_LE32(hdr + MZ_ZIP64_ECDH_SIG_OFS, MZ_ZIP64_END_OF_CENTRAL_DIR_HEADER_SIG);
7463
0
            MZ_WRITE_LE64(hdr + MZ_ZIP64_ECDH_SIZE_OF_RECORD_OFS, MZ_ZIP64_END_OF_CENTRAL_DIR_HEADER_SIZE - sizeof(mz_uint32) - sizeof(mz_uint64));
7464
0
            MZ_WRITE_LE16(hdr + MZ_ZIP64_ECDH_VERSION_MADE_BY_OFS, 0x031E); /* TODO: always Unix */
7465
0
            MZ_WRITE_LE16(hdr + MZ_ZIP64_ECDH_VERSION_NEEDED_OFS, 0x002D);
7466
0
            MZ_WRITE_LE64(hdr + MZ_ZIP64_ECDH_CDIR_NUM_ENTRIES_ON_DISK_OFS, pZip->m_total_files);
7467
0
            MZ_WRITE_LE64(hdr + MZ_ZIP64_ECDH_CDIR_TOTAL_ENTRIES_OFS, pZip->m_total_files);
7468
0
            MZ_WRITE_LE64(hdr + MZ_ZIP64_ECDH_CDIR_SIZE_OFS, central_dir_size);
7469
0
            MZ_WRITE_LE64(hdr + MZ_ZIP64_ECDH_CDIR_OFS_OFS, central_dir_ofs);
7470
0
            if (pZip->m_pWrite(pZip->m_pIO_opaque, pZip->m_archive_size, hdr, MZ_ZIP64_END_OF_CENTRAL_DIR_HEADER_SIZE) != MZ_ZIP64_END_OF_CENTRAL_DIR_HEADER_SIZE)
7471
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
7472
7473
0
            pZip->m_archive_size += MZ_ZIP64_END_OF_CENTRAL_DIR_HEADER_SIZE;
7474
7475
            /* Write zip64 end of central directory locator */
7476
0
            MZ_CLEAR_ARR(hdr);
7477
0
            MZ_WRITE_LE32(hdr + MZ_ZIP64_ECDL_SIG_OFS, MZ_ZIP64_END_OF_CENTRAL_DIR_LOCATOR_SIG);
7478
0
            MZ_WRITE_LE64(hdr + MZ_ZIP64_ECDL_REL_OFS_TO_ZIP64_ECDR_OFS, rel_ofs_to_zip64_ecdr);
7479
0
            MZ_WRITE_LE32(hdr + MZ_ZIP64_ECDL_TOTAL_NUMBER_OF_DISKS_OFS, 1);
7480
0
            if (pZip->m_pWrite(pZip->m_pIO_opaque, pZip->m_archive_size, hdr, MZ_ZIP64_END_OF_CENTRAL_DIR_LOCATOR_SIZE) != MZ_ZIP64_END_OF_CENTRAL_DIR_LOCATOR_SIZE)
7481
0
                return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
7482
7483
0
            pZip->m_archive_size += MZ_ZIP64_END_OF_CENTRAL_DIR_LOCATOR_SIZE;
7484
0
        }
7485
7486
        /* Write end of central directory record */
7487
0
        MZ_CLEAR_ARR(hdr);
7488
0
        MZ_WRITE_LE32(hdr + MZ_ZIP_ECDH_SIG_OFS, MZ_ZIP_END_OF_CENTRAL_DIR_HEADER_SIG);
7489
0
        MZ_WRITE_LE16(hdr + MZ_ZIP_ECDH_CDIR_NUM_ENTRIES_ON_DISK_OFS, MZ_MIN(MZ_UINT16_MAX, pZip->m_total_files));
7490
0
        MZ_WRITE_LE16(hdr + MZ_ZIP_ECDH_CDIR_TOTAL_ENTRIES_OFS, MZ_MIN(MZ_UINT16_MAX, pZip->m_total_files));
7491
0
        MZ_WRITE_LE32(hdr + MZ_ZIP_ECDH_CDIR_SIZE_OFS, MZ_MIN(MZ_UINT32_MAX, central_dir_size));
7492
0
        MZ_WRITE_LE32(hdr + MZ_ZIP_ECDH_CDIR_OFS_OFS, MZ_MIN(MZ_UINT32_MAX, central_dir_ofs));
7493
7494
0
        if (pZip->m_pWrite(pZip->m_pIO_opaque, pZip->m_archive_size, hdr, MZ_ZIP_END_OF_CENTRAL_DIR_HEADER_SIZE) != MZ_ZIP_END_OF_CENTRAL_DIR_HEADER_SIZE)
7495
0
            return mz_zip_set_error(pZip, MZ_ZIP_FILE_WRITE_FAILED);
7496
7497
0
#ifndef MINIZ_NO_STDIO
7498
0
        if ((pState->m_pFile) && (MZ_FFLUSH(pState->m_pFile) == EOF))
7499
0
            return mz_zip_set_error(pZip, MZ_ZIP_FILE_CLOSE_FAILED);
7500
0
#endif /* #ifndef MINIZ_NO_STDIO */
7501
7502
0
        pZip->m_archive_size += MZ_ZIP_END_OF_CENTRAL_DIR_HEADER_SIZE;
7503
7504
0
        pZip->m_zip_mode = MZ_ZIP_MODE_WRITING_HAS_BEEN_FINALIZED;
7505
0
        return MZ_TRUE;
7506
0
    }
7507
7508
    mz_bool mz_zip_writer_finalize_heap_archive(mz_zip_archive *pZip, void **ppBuf, size_t *pSize)
7509
0
    {
7510
0
        if ((!ppBuf) || (!pSize))
7511
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
7512
7513
0
        *ppBuf = NULL;
7514
0
        *pSize = 0;
7515
7516
0
        if ((!pZip) || (!pZip->m_pState))
7517
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
7518
7519
0
        if (pZip->m_pWrite != mz_zip_heap_write_func)
7520
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
7521
7522
0
        if (!mz_zip_writer_finalize_archive(pZip))
7523
0
            return MZ_FALSE;
7524
7525
0
        *ppBuf = pZip->m_pState->m_pMem;
7526
0
        *pSize = pZip->m_pState->m_mem_size;
7527
0
        pZip->m_pState->m_pMem = NULL;
7528
0
        pZip->m_pState->m_mem_size = pZip->m_pState->m_mem_capacity = 0;
7529
7530
0
        return MZ_TRUE;
7531
0
    }
7532
7533
    mz_bool mz_zip_writer_end(mz_zip_archive *pZip)
7534
0
    {
7535
0
        return mz_zip_writer_end_internal(pZip, MZ_TRUE);
7536
0
    }
7537
7538
#ifndef MINIZ_NO_STDIO
7539
    mz_bool mz_zip_add_mem_to_archive_file_in_place(const char *pZip_filename, const char *pArchive_name, const void *pBuf, size_t buf_size, const void *pComment, mz_uint16 comment_size, mz_uint level_and_flags)
7540
0
    {
7541
0
        return mz_zip_add_mem_to_archive_file_in_place_v2(pZip_filename, pArchive_name, pBuf, buf_size, pComment, comment_size, level_and_flags, NULL);
7542
0
    }
7543
7544
    mz_bool mz_zip_add_mem_to_archive_file_in_place_v2(const char *pZip_filename, const char *pArchive_name, const void *pBuf, size_t buf_size, const void *pComment, mz_uint16 comment_size, mz_uint level_and_flags, mz_zip_error *pErr)
7545
0
    {
7546
0
        mz_bool status, created_new_archive = MZ_FALSE;
7547
0
        mz_zip_archive zip_archive;
7548
0
        struct MZ_FILE_STAT_STRUCT file_stat;
7549
0
        mz_zip_error actual_err = MZ_ZIP_NO_ERROR;
7550
7551
0
        mz_zip_zero_struct(&zip_archive);
7552
0
        if ((int)level_and_flags < 0)
7553
0
            level_and_flags = MZ_DEFAULT_LEVEL;
7554
7555
0
        if ((!pZip_filename) || (!pArchive_name) || ((buf_size) && (!pBuf)) || ((comment_size) && (!pComment)) || ((level_and_flags & 0xF) > MZ_UBER_COMPRESSION))
7556
0
        {
7557
0
            if (pErr)
7558
0
                *pErr = MZ_ZIP_INVALID_PARAMETER;
7559
0
            return MZ_FALSE;
7560
0
        }
7561
7562
0
        if (!mz_zip_writer_validate_archive_name(pArchive_name))
7563
0
        {
7564
0
            if (pErr)
7565
0
                *pErr = MZ_ZIP_INVALID_FILENAME;
7566
0
            return MZ_FALSE;
7567
0
        }
7568
7569
        /* Important: The regular non-64 bit version of stat() can fail here if the file is very large, which could cause the archive to be overwritten. */
7570
        /* So be sure to compile with _LARGEFILE64_SOURCE 1 */
7571
0
        if (MZ_FILE_STAT(pZip_filename, &file_stat) != 0)
7572
0
        {
7573
            /* Create a new archive. */
7574
0
            if (!mz_zip_writer_init_file_v2(&zip_archive, pZip_filename, 0, level_and_flags))
7575
0
            {
7576
0
                if (pErr)
7577
0
                    *pErr = zip_archive.m_last_error;
7578
0
                return MZ_FALSE;
7579
0
            }
7580
7581
0
            created_new_archive = MZ_TRUE;
7582
0
        }
7583
0
        else
7584
0
        {
7585
            /* Append to an existing archive. */
7586
0
            if (!mz_zip_reader_init_file_v2(&zip_archive, pZip_filename, level_and_flags | MZ_ZIP_FLAG_DO_NOT_SORT_CENTRAL_DIRECTORY | MZ_ZIP_FLAG_READ_ALLOW_WRITING, 0, 0))
7587
0
            {
7588
0
                if (pErr)
7589
0
                    *pErr = zip_archive.m_last_error;
7590
0
                return MZ_FALSE;
7591
0
            }
7592
7593
0
            if (!mz_zip_writer_init_from_reader_v2(&zip_archive, pZip_filename, level_and_flags | MZ_ZIP_FLAG_READ_ALLOW_WRITING))
7594
0
            {
7595
0
                if (pErr)
7596
0
                    *pErr = zip_archive.m_last_error;
7597
7598
0
                mz_zip_reader_end_internal(&zip_archive, MZ_FALSE);
7599
7600
0
                return MZ_FALSE;
7601
0
            }
7602
0
        }
7603
7604
0
        status = mz_zip_writer_add_mem_ex(&zip_archive, pArchive_name, pBuf, buf_size, pComment, comment_size, level_and_flags, 0, 0);
7605
0
        actual_err = zip_archive.m_last_error;
7606
7607
        /* Always finalize, even if adding failed for some reason, so we have a valid central directory. (This may not always succeed, but we can try.) */
7608
0
        if (!mz_zip_writer_finalize_archive(&zip_archive))
7609
0
        {
7610
0
            if (!actual_err)
7611
0
                actual_err = zip_archive.m_last_error;
7612
7613
0
            status = MZ_FALSE;
7614
0
        }
7615
7616
0
        if (!mz_zip_writer_end_internal(&zip_archive, status))
7617
0
        {
7618
0
            if (!actual_err)
7619
0
                actual_err = zip_archive.m_last_error;
7620
7621
0
            status = MZ_FALSE;
7622
0
        }
7623
7624
0
        if ((!status) && (created_new_archive))
7625
0
        {
7626
            /* It's a new archive and something went wrong, so just delete it. */
7627
0
            int ignoredStatus = MZ_DELETE_FILE(pZip_filename);
7628
0
            (void)ignoredStatus;
7629
0
        }
7630
7631
0
        if (pErr)
7632
0
            *pErr = actual_err;
7633
7634
0
        return status;
7635
0
    }
7636
7637
    void *mz_zip_extract_archive_file_to_heap_v2(const char *pZip_filename, const char *pArchive_name, const char *pComment, size_t *pSize, mz_uint flags, mz_zip_error *pErr)
7638
0
    {
7639
0
        mz_uint32 file_index;
7640
0
        mz_zip_archive zip_archive;
7641
0
        void *p = NULL;
7642
7643
0
        if (pSize)
7644
0
            *pSize = 0;
7645
7646
0
        if ((!pZip_filename) || (!pArchive_name))
7647
0
        {
7648
0
            if (pErr)
7649
0
                *pErr = MZ_ZIP_INVALID_PARAMETER;
7650
7651
0
            return NULL;
7652
0
        }
7653
7654
0
        mz_zip_zero_struct(&zip_archive);
7655
0
        if (!mz_zip_reader_init_file_v2(&zip_archive, pZip_filename, flags | MZ_ZIP_FLAG_DO_NOT_SORT_CENTRAL_DIRECTORY, 0, 0))
7656
0
        {
7657
0
            if (pErr)
7658
0
                *pErr = zip_archive.m_last_error;
7659
7660
0
            return NULL;
7661
0
        }
7662
7663
0
        if (mz_zip_reader_locate_file_v2(&zip_archive, pArchive_name, pComment, flags, &file_index))
7664
0
        {
7665
0
            p = mz_zip_reader_extract_to_heap(&zip_archive, file_index, pSize, flags);
7666
0
        }
7667
7668
0
        mz_zip_reader_end_internal(&zip_archive, p != NULL);
7669
7670
0
        if (pErr)
7671
0
            *pErr = zip_archive.m_last_error;
7672
7673
0
        return p;
7674
0
    }
7675
7676
    void *mz_zip_extract_archive_file_to_heap(const char *pZip_filename, const char *pArchive_name, size_t *pSize, mz_uint flags)
7677
0
    {
7678
0
        return mz_zip_extract_archive_file_to_heap_v2(pZip_filename, pArchive_name, NULL, pSize, flags, NULL);
7679
0
    }
7680
7681
#endif /* #ifndef MINIZ_NO_STDIO */
7682
7683
#endif /* #ifndef MINIZ_NO_ARCHIVE_WRITING_APIS */
7684
7685
    /* ------------------- Misc utils */
7686
7687
    mz_zip_mode mz_zip_get_mode(mz_zip_archive *pZip)
7688
0
    {
7689
0
        return pZip ? pZip->m_zip_mode : MZ_ZIP_MODE_INVALID;
7690
0
    }
7691
7692
    mz_zip_type mz_zip_get_type(mz_zip_archive *pZip)
7693
0
    {
7694
0
        return pZip ? pZip->m_zip_type : MZ_ZIP_TYPE_INVALID;
7695
0
    }
7696
7697
    mz_zip_error mz_zip_set_last_error(mz_zip_archive *pZip, mz_zip_error err_num)
7698
0
    {
7699
0
        mz_zip_error prev_err;
7700
7701
0
        if (!pZip)
7702
0
            return MZ_ZIP_INVALID_PARAMETER;
7703
7704
0
        prev_err = pZip->m_last_error;
7705
7706
0
        pZip->m_last_error = err_num;
7707
0
        return prev_err;
7708
0
    }
7709
7710
    mz_zip_error mz_zip_peek_last_error(mz_zip_archive *pZip)
7711
0
    {
7712
0
        if (!pZip)
7713
0
            return MZ_ZIP_INVALID_PARAMETER;
7714
7715
0
        return pZip->m_last_error;
7716
0
    }
7717
7718
    mz_zip_error mz_zip_clear_last_error(mz_zip_archive *pZip)
7719
0
    {
7720
0
        return mz_zip_set_last_error(pZip, MZ_ZIP_NO_ERROR);
7721
0
    }
7722
7723
    mz_zip_error mz_zip_get_last_error(mz_zip_archive *pZip)
7724
0
    {
7725
0
        mz_zip_error prev_err;
7726
7727
0
        if (!pZip)
7728
0
            return MZ_ZIP_INVALID_PARAMETER;
7729
7730
0
        prev_err = pZip->m_last_error;
7731
7732
0
        pZip->m_last_error = MZ_ZIP_NO_ERROR;
7733
0
        return prev_err;
7734
0
    }
7735
7736
    const char *mz_zip_get_error_string(mz_zip_error mz_err)
7737
0
    {
7738
0
        switch (mz_err)
7739
0
        {
7740
0
            case MZ_ZIP_NO_ERROR:
7741
0
                return "no error";
7742
0
            case MZ_ZIP_UNDEFINED_ERROR:
7743
0
                return "undefined error";
7744
0
            case MZ_ZIP_TOO_MANY_FILES:
7745
0
                return "too many files";
7746
0
            case MZ_ZIP_FILE_TOO_LARGE:
7747
0
                return "file too large";
7748
0
            case MZ_ZIP_UNSUPPORTED_METHOD:
7749
0
                return "unsupported method";
7750
0
            case MZ_ZIP_UNSUPPORTED_ENCRYPTION:
7751
0
                return "unsupported encryption";
7752
0
            case MZ_ZIP_UNSUPPORTED_FEATURE:
7753
0
                return "unsupported feature";
7754
0
            case MZ_ZIP_FAILED_FINDING_CENTRAL_DIR:
7755
0
                return "failed finding central directory";
7756
0
            case MZ_ZIP_NOT_AN_ARCHIVE:
7757
0
                return "not a ZIP archive";
7758
0
            case MZ_ZIP_INVALID_HEADER_OR_CORRUPTED:
7759
0
                return "invalid header or archive is corrupted";
7760
0
            case MZ_ZIP_UNSUPPORTED_MULTIDISK:
7761
0
                return "unsupported multidisk archive";
7762
0
            case MZ_ZIP_DECOMPRESSION_FAILED:
7763
0
                return "decompression failed or archive is corrupted";
7764
0
            case MZ_ZIP_COMPRESSION_FAILED:
7765
0
                return "compression failed";
7766
0
            case MZ_ZIP_UNEXPECTED_DECOMPRESSED_SIZE:
7767
0
                return "unexpected decompressed size";
7768
0
            case MZ_ZIP_CRC_CHECK_FAILED:
7769
0
                return "CRC-32 check failed";
7770
0
            case MZ_ZIP_UNSUPPORTED_CDIR_SIZE:
7771
0
                return "unsupported central directory size";
7772
0
            case MZ_ZIP_ALLOC_FAILED:
7773
0
                return "allocation failed";
7774
0
            case MZ_ZIP_FILE_OPEN_FAILED:
7775
0
                return "file open failed";
7776
0
            case MZ_ZIP_FILE_CREATE_FAILED:
7777
0
                return "file create failed";
7778
0
            case MZ_ZIP_FILE_WRITE_FAILED:
7779
0
                return "file write failed";
7780
0
            case MZ_ZIP_FILE_READ_FAILED:
7781
0
                return "file read failed";
7782
0
            case MZ_ZIP_FILE_CLOSE_FAILED:
7783
0
                return "file close failed";
7784
0
            case MZ_ZIP_FILE_SEEK_FAILED:
7785
0
                return "file seek failed";
7786
0
            case MZ_ZIP_FILE_STAT_FAILED:
7787
0
                return "file stat failed";
7788
0
            case MZ_ZIP_INVALID_PARAMETER:
7789
0
                return "invalid parameter";
7790
0
            case MZ_ZIP_INVALID_FILENAME:
7791
0
                return "invalid filename";
7792
0
            case MZ_ZIP_BUF_TOO_SMALL:
7793
0
                return "buffer too small";
7794
0
            case MZ_ZIP_INTERNAL_ERROR:
7795
0
                return "internal error";
7796
0
            case MZ_ZIP_FILE_NOT_FOUND:
7797
0
                return "file not found";
7798
0
            case MZ_ZIP_ARCHIVE_TOO_LARGE:
7799
0
                return "archive is too large";
7800
0
            case MZ_ZIP_VALIDATION_FAILED:
7801
0
                return "validation failed";
7802
0
            case MZ_ZIP_WRITE_CALLBACK_FAILED:
7803
0
                return "write callback failed";
7804
0
            case MZ_ZIP_TOTAL_ERRORS:
7805
0
                return "total errors";
7806
0
            default:
7807
0
                break;
7808
0
        }
7809
7810
0
        return "unknown error";
7811
0
    }
7812
7813
    /* Note: Just because the archive is not zip64 doesn't necessarily mean it doesn't have Zip64 extended information extra field, argh. */
7814
    mz_bool mz_zip_is_zip64(mz_zip_archive *pZip)
7815
0
    {
7816
0
        if ((!pZip) || (!pZip->m_pState))
7817
0
            return MZ_FALSE;
7818
7819
0
        return pZip->m_pState->m_zip64;
7820
0
    }
7821
7822
    size_t mz_zip_get_central_dir_size(mz_zip_archive *pZip)
7823
0
    {
7824
0
        if ((!pZip) || (!pZip->m_pState))
7825
0
            return 0;
7826
7827
0
        return pZip->m_pState->m_central_dir.m_size;
7828
0
    }
7829
7830
    mz_uint mz_zip_reader_get_num_files(mz_zip_archive *pZip)
7831
0
    {
7832
0
        return pZip ? pZip->m_total_files : 0;
7833
0
    }
7834
7835
    mz_uint64 mz_zip_get_archive_size(mz_zip_archive *pZip)
7836
0
    {
7837
0
        if (!pZip)
7838
0
            return 0;
7839
0
        return pZip->m_archive_size;
7840
0
    }
7841
7842
    mz_uint64 mz_zip_get_archive_file_start_offset(mz_zip_archive *pZip)
7843
0
    {
7844
0
        if ((!pZip) || (!pZip->m_pState))
7845
0
            return 0;
7846
0
        return pZip->m_pState->m_file_archive_start_ofs;
7847
0
    }
7848
7849
    MZ_FILE *mz_zip_get_cfile(mz_zip_archive *pZip)
7850
0
    {
7851
0
        if ((!pZip) || (!pZip->m_pState))
7852
0
            return 0;
7853
0
        return pZip->m_pState->m_pFile;
7854
0
    }
7855
7856
    size_t mz_zip_read_archive_data(mz_zip_archive *pZip, mz_uint64 file_ofs, void *pBuf, size_t n)
7857
0
    {
7858
0
        if ((!pZip) || (!pZip->m_pState) || (!pBuf) || (!pZip->m_pRead))
7859
0
            return mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
7860
7861
0
        return pZip->m_pRead(pZip->m_pIO_opaque, file_ofs, pBuf, n);
7862
0
    }
7863
7864
    mz_uint mz_zip_reader_get_filename(mz_zip_archive *pZip, mz_uint file_index, char *pFilename, mz_uint filename_buf_size)
7865
0
    {
7866
0
        mz_uint n;
7867
0
        const mz_uint8 *p = mz_zip_get_cdh(pZip, file_index);
7868
0
        if (!p)
7869
0
        {
7870
0
            if (filename_buf_size)
7871
0
                pFilename[0] = '\0';
7872
0
            mz_zip_set_error(pZip, MZ_ZIP_INVALID_PARAMETER);
7873
0
            return 0;
7874
0
        }
7875
0
        n = MZ_READ_LE16(p + MZ_ZIP_CDH_FILENAME_LEN_OFS);
7876
0
        if (filename_buf_size)
7877
0
        {
7878
0
            n = MZ_MIN(n, filename_buf_size - 1);
7879
0
            memcpy(pFilename, p + MZ_ZIP_CENTRAL_DIR_HEADER_SIZE, n);
7880
0
            pFilename[n] = '\0';
7881
0
        }
7882
0
        return n + 1;
7883
0
    }
7884
7885
    mz_bool mz_zip_reader_file_stat(mz_zip_archive *pZip, mz_uint file_index, mz_zip_archive_file_stat *pStat)
7886
0
    {
7887
0
        return mz_zip_file_stat_internal(pZip, file_index, mz_zip_get_cdh(pZip, file_index), pStat, NULL);
7888
0
    }
7889
7890
    mz_bool mz_zip_end(mz_zip_archive *pZip)
7891
0
    {
7892
0
        if (!pZip)
7893
0
            return MZ_FALSE;
7894
7895
0
        if (pZip->m_zip_mode == MZ_ZIP_MODE_READING)
7896
0
            return mz_zip_reader_end(pZip);
7897
0
#ifndef MINIZ_NO_ARCHIVE_WRITING_APIS
7898
0
        else if ((pZip->m_zip_mode == MZ_ZIP_MODE_WRITING) || (pZip->m_zip_mode == MZ_ZIP_MODE_WRITING_HAS_BEEN_FINALIZED))
7899
0
            return mz_zip_writer_end(pZip);
7900
0
#endif
7901
7902
0
        return MZ_FALSE;
7903
0
    }
7904
7905
#ifdef __cplusplus
7906
}
7907
#endif
7908
7909
#endif /*#ifndef MINIZ_NO_ARCHIVE_APIS*/