1 // SPDX-License-Identifier: 0BSD 2 3 /////////////////////////////////////////////////////////////////////////////// 4 // 5 /// \file alone_decoder.c 6 /// \brief Decoder for LZMA_Alone files 7 // 8 // Author: Lasse Collin 9 // 10 /////////////////////////////////////////////////////////////////////////////// 11 12 #include "alone_decoder.h" 13 #include "lzma_decoder.h" 14 #include "lz_decoder.h" 15 16 17 typedef struct { 18 lzma_next_coder next; 19 20 enum { 21 SEQ_PROPERTIES, 22 SEQ_DICTIONARY_SIZE, 23 SEQ_UNCOMPRESSED_SIZE, 24 SEQ_CODER_INIT, 25 SEQ_CODE, 26 } sequence; 27 28 /// If true, reject files that are unlikely to be .lzma files. 29 /// If false, more non-.lzma files get accepted and will give 30 /// LZMA_DATA_ERROR either immediately or after a few output bytes. 31 bool picky; 32 33 /// Position in the header fields 34 size_t pos; 35 36 /// Uncompressed size decoded from the header 37 lzma_vli uncompressed_size; 38 39 /// Memory usage limit 40 uint64_t memlimit; 41 42 /// Amount of memory actually needed (only an estimate) 43 uint64_t memusage; 44 45 /// Options decoded from the header needed to initialize 46 /// the LZMA decoder 47 lzma_options_lzma options; 48 } lzma_alone_coder; 49 50 51 static lzma_ret 52 alone_decode(void *coder_ptr, const lzma_allocator *allocator, 53 const uint8_t *restrict in, size_t *restrict in_pos, 54 size_t in_size, uint8_t *restrict out, 55 size_t *restrict out_pos, size_t out_size, 56 lzma_action action) 57 { 58 lzma_alone_coder *coder = coder_ptr; 59 60 while (*out_pos < out_size 61 && (coder->sequence == SEQ_CODE || *in_pos < in_size)) 62 switch (coder->sequence) { 63 case SEQ_PROPERTIES: 64 if (lzma_lzma_lclppb_decode(&coder->options, in[*in_pos])) 65 return LZMA_FORMAT_ERROR; 66 67 coder->sequence = SEQ_DICTIONARY_SIZE; 68 ++*in_pos; 69 break; 70 71 case SEQ_DICTIONARY_SIZE: 72 coder->options.dict_size 73 |= (size_t)(in[*in_pos]) << (coder->pos * 8); 74 75 if (++coder->pos == 4) { 76 if (coder->picky && coder->options.dict_size 77 != UINT32_MAX) { 78 // A hack to ditch tons of false positives: 79 // We allow only dictionary sizes that are 80 // 2^n or 2^n + 2^(n-1). LZMA_Alone created 81 // only files with 2^n, but accepts any 82 // dictionary size. 83 uint32_t d = coder->options.dict_size - 1; 84 d |= d >> 2; 85 d |= d >> 3; 86 d |= d >> 4; 87 d |= d >> 8; 88 d |= d >> 16; 89 ++d; 90 91 if (d != coder->options.dict_size) 92 return LZMA_FORMAT_ERROR; 93 } 94 95 coder->pos = 0; 96 coder->sequence = SEQ_UNCOMPRESSED_SIZE; 97 } 98 99 ++*in_pos; 100 break; 101 102 case SEQ_UNCOMPRESSED_SIZE: 103 coder->uncompressed_size 104 |= (lzma_vli)(in[*in_pos]) << (coder->pos * 8); 105 ++*in_pos; 106 if (++coder->pos < 8) 107 break; 108 109 // Another hack to ditch false positives: Assume that 110 // if the uncompressed size is known, it must be less 111 // than 256 GiB. 112 // 113 // FIXME? Without picky we allow > LZMA_VLI_MAX which doesn't 114 // really matter in this specific situation (> LZMA_VLI_MAX is 115 // safe in the LZMA decoder) but it's somewhat weird still. 116 if (coder->picky 117 && coder->uncompressed_size != LZMA_VLI_UNKNOWN 118 && coder->uncompressed_size 119 >= (LZMA_VLI_C(1) << 38)) 120 return LZMA_FORMAT_ERROR; 121 122 // Use LZMA_FILTER_LZMA1EXT features to specify the 123 // uncompressed size and that the end marker is allowed 124 // even when the uncompressed size is known. Both .lzma 125 // header and LZMA1EXT use UINT64_MAX indicate that size 126 // is unknown. 127 coder->options.ext_flags = LZMA_LZMA1EXT_ALLOW_EOPM; 128 lzma_set_ext_size(coder->options, coder->uncompressed_size); 129 130 // Calculate the memory usage so that it is ready 131 // for SEQ_CODER_INIT. 132 coder->memusage = lzma_lzma_decoder_memusage(&coder->options) 133 + LZMA_MEMUSAGE_BASE; 134 135 coder->pos = 0; 136 coder->sequence = SEQ_CODER_INIT; 137 FALLTHROUGH; 138 139 case SEQ_CODER_INIT: { 140 if (coder->memusage > coder->memlimit) 141 return LZMA_MEMLIMIT_ERROR; 142 143 lzma_filter_info filters[2] = { 144 { 145 .id = LZMA_FILTER_LZMA1EXT, 146 .init = &lzma_lzma_decoder_init, 147 .options = &coder->options, 148 }, { 149 .init = NULL, 150 } 151 }; 152 153 return_if_error(lzma_next_filter_init(&coder->next, 154 allocator, filters)); 155 156 coder->sequence = SEQ_CODE; 157 break; 158 } 159 160 case SEQ_CODE: { 161 return coder->next.code(coder->next.coder, 162 allocator, in, in_pos, in_size, 163 out, out_pos, out_size, action); 164 } 165 166 default: 167 return LZMA_PROG_ERROR; 168 } 169 170 return LZMA_OK; 171 } 172 173 174 static void 175 alone_decoder_end(void *coder_ptr, const lzma_allocator *allocator) 176 { 177 lzma_alone_coder *coder = coder_ptr; 178 lzma_next_end(&coder->next, allocator); 179 lzma_free(coder, allocator); 180 return; 181 } 182 183 184 static lzma_ret 185 alone_decoder_memconfig(void *coder_ptr, uint64_t *memusage, 186 uint64_t *old_memlimit, uint64_t new_memlimit) 187 { 188 lzma_alone_coder *coder = coder_ptr; 189 190 *memusage = coder->memusage; 191 *old_memlimit = coder->memlimit; 192 193 if (new_memlimit != 0) { 194 if (new_memlimit < coder->memusage) 195 return LZMA_MEMLIMIT_ERROR; 196 197 coder->memlimit = new_memlimit; 198 } 199 200 return LZMA_OK; 201 } 202 203 204 extern lzma_ret 205 lzma_alone_decoder_init(lzma_next_coder *next, const lzma_allocator *allocator, 206 uint64_t memlimit, bool picky) 207 { 208 lzma_next_coder_init(&lzma_alone_decoder_init, next, allocator); 209 210 lzma_alone_coder *coder = next->coder; 211 212 if (coder == NULL) { 213 coder = lzma_alloc(sizeof(lzma_alone_coder), allocator); 214 if (coder == NULL) 215 return LZMA_MEM_ERROR; 216 217 next->coder = coder; 218 next->code = &alone_decode; 219 next->end = &alone_decoder_end; 220 next->memconfig = &alone_decoder_memconfig; 221 coder->next = LZMA_NEXT_CODER_INIT; 222 } 223 224 coder->sequence = SEQ_PROPERTIES; 225 coder->picky = picky; 226 coder->pos = 0; 227 coder->options.dict_size = 0; 228 coder->options.preset_dict = NULL; 229 coder->options.preset_dict_size = 0; 230 coder->uncompressed_size = 0; 231 coder->memlimit = my_max(1, memlimit); 232 coder->memusage = LZMA_MEMUSAGE_BASE; 233 234 return LZMA_OK; 235 } 236 237 238 extern LZMA_API(lzma_ret) 239 lzma_alone_decoder(lzma_stream *strm, uint64_t memlimit) 240 { 241 lzma_next_strm_init(lzma_alone_decoder_init, strm, memlimit, false); 242 243 strm->internal->supported_actions[LZMA_RUN] = true; 244 strm->internal->supported_actions[LZMA_FINISH] = true; 245 246 return LZMA_OK; 247 } 248