1 | ///////////////////////////////////////////////////////////////////////////////
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2 | //
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3 | /// \file index_hash.c
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4 | /// \brief Validates Index by using a hash function
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5 | //
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6 | // Author: Lasse Collin
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7 | //
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8 | // This file has been put into the public domain.
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9 | // You can do whatever you want with this file.
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10 | //
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11 | ///////////////////////////////////////////////////////////////////////////////
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12 |
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13 | #include "common.h"
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14 | #include "index.h"
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15 | #include "check.h"
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16 |
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17 |
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18 | typedef struct {
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19 | /// Sum of the Block sizes (including Block Padding)
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20 | lzma_vli blocks_size;
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21 |
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22 | /// Sum of the Uncompressed Size fields
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23 | lzma_vli uncompressed_size;
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24 |
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25 | /// Number of Records
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26 | lzma_vli count;
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27 |
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28 | /// Size of the List of Index Records as bytes
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29 | lzma_vli index_list_size;
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30 |
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31 | /// Check calculated from Unpadded Sizes and Uncompressed Sizes.
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32 | lzma_check_state check;
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33 |
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34 | } lzma_index_hash_info;
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35 |
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36 |
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37 | struct lzma_index_hash_s {
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38 | enum {
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39 | SEQ_BLOCK,
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40 | SEQ_COUNT,
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41 | SEQ_UNPADDED,
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42 | SEQ_UNCOMPRESSED,
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43 | SEQ_PADDING_INIT,
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44 | SEQ_PADDING,
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45 | SEQ_CRC32,
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46 | } sequence;
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47 |
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48 | /// Information collected while decoding the actual Blocks.
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49 | lzma_index_hash_info blocks;
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50 |
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51 | /// Information collected from the Index field.
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52 | lzma_index_hash_info records;
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53 |
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54 | /// Number of Records not fully decoded
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55 | lzma_vli remaining;
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56 |
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57 | /// Unpadded Size currently being read from an Index Record.
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58 | lzma_vli unpadded_size;
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59 |
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60 | /// Uncompressed Size currently being read from an Index Record.
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61 | lzma_vli uncompressed_size;
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62 |
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63 | /// Position in variable-length integers when decoding them from
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64 | /// the List of Records.
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65 | size_t pos;
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66 |
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67 | /// CRC32 of the Index
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68 | uint32_t crc32;
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69 | };
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70 |
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71 |
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72 | extern LZMA_API(lzma_index_hash *)
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73 | lzma_index_hash_init(lzma_index_hash *index_hash,
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74 | const lzma_allocator *allocator)
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75 | {
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76 | if (index_hash == NULL) {
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77 | index_hash = lzma_alloc(sizeof(lzma_index_hash), allocator);
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78 | if (index_hash == NULL)
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79 | return NULL;
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80 | }
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81 |
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82 | index_hash->sequence = SEQ_BLOCK;
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83 | index_hash->blocks.blocks_size = 0;
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84 | index_hash->blocks.uncompressed_size = 0;
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85 | index_hash->blocks.count = 0;
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86 | index_hash->blocks.index_list_size = 0;
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87 | index_hash->records.blocks_size = 0;
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88 | index_hash->records.uncompressed_size = 0;
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89 | index_hash->records.count = 0;
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90 | index_hash->records.index_list_size = 0;
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91 | index_hash->unpadded_size = 0;
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92 | index_hash->uncompressed_size = 0;
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93 | index_hash->pos = 0;
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94 | index_hash->crc32 = 0;
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95 |
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96 | // These cannot fail because LZMA_CHECK_BEST is known to be supported.
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97 | (void)lzma_check_init(&index_hash->blocks.check, LZMA_CHECK_BEST);
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98 | (void)lzma_check_init(&index_hash->records.check, LZMA_CHECK_BEST);
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99 |
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100 | return index_hash;
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101 | }
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102 |
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103 |
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104 | extern LZMA_API(void)
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105 | lzma_index_hash_end(lzma_index_hash *index_hash,
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106 | const lzma_allocator *allocator)
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107 | {
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108 | lzma_free(index_hash, allocator);
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109 | return;
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110 | }
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111 |
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112 |
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113 | extern LZMA_API(lzma_vli)
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114 | lzma_index_hash_size(const lzma_index_hash *index_hash)
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115 | {
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116 | // Get the size of the Index from ->blocks instead of ->records for
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117 | // cases where application wants to know the Index Size before
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118 | // decoding the Index.
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119 | return index_size(index_hash->blocks.count,
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120 | index_hash->blocks.index_list_size);
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121 | }
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122 |
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123 |
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124 | /// Updates the sizes and the hash without any validation.
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125 | static void
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126 | hash_append(lzma_index_hash_info *info, lzma_vli unpadded_size,
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127 | lzma_vli uncompressed_size)
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128 | {
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129 | info->blocks_size += vli_ceil4(unpadded_size);
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130 | info->uncompressed_size += uncompressed_size;
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131 | info->index_list_size += lzma_vli_size(unpadded_size)
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132 | + lzma_vli_size(uncompressed_size);
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133 | ++info->count;
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134 |
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135 | const lzma_vli sizes[2] = { unpadded_size, uncompressed_size };
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136 | lzma_check_update(&info->check, LZMA_CHECK_BEST,
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137 | (const uint8_t *)(sizes), sizeof(sizes));
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138 |
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139 | return;
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140 | }
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141 |
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142 |
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143 | extern LZMA_API(lzma_ret)
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144 | lzma_index_hash_append(lzma_index_hash *index_hash, lzma_vli unpadded_size,
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145 | lzma_vli uncompressed_size)
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146 | {
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147 | // Validate the arguments.
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148 | if (index_hash == NULL || index_hash->sequence != SEQ_BLOCK
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149 | || unpadded_size < UNPADDED_SIZE_MIN
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150 | || unpadded_size > UNPADDED_SIZE_MAX
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151 | || uncompressed_size > LZMA_VLI_MAX)
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152 | return LZMA_PROG_ERROR;
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153 |
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154 | // Update the hash.
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155 | hash_append(&index_hash->blocks, unpadded_size, uncompressed_size);
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156 |
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157 | // Validate the properties of *info are still in allowed limits.
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158 | if (index_hash->blocks.blocks_size > LZMA_VLI_MAX
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159 | || index_hash->blocks.uncompressed_size > LZMA_VLI_MAX
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160 | || index_size(index_hash->blocks.count,
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161 | index_hash->blocks.index_list_size)
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162 | > LZMA_BACKWARD_SIZE_MAX
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163 | || index_stream_size(index_hash->blocks.blocks_size,
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164 | index_hash->blocks.count,
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165 | index_hash->blocks.index_list_size)
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166 | > LZMA_VLI_MAX)
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167 | return LZMA_DATA_ERROR;
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168 |
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169 | return LZMA_OK;
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170 | }
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171 |
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172 |
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173 | extern LZMA_API(lzma_ret)
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174 | lzma_index_hash_decode(lzma_index_hash *index_hash, const uint8_t *in,
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175 | size_t *in_pos, size_t in_size)
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176 | {
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177 | // Catch zero input buffer here, because in contrast to Index encoder
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178 | // and decoder functions, applications call this function directly
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179 | // instead of via lzma_code(), which does the buffer checking.
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180 | if (*in_pos >= in_size)
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181 | return LZMA_BUF_ERROR;
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182 |
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183 | // NOTE: This function has many similarities to index_encode() and
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184 | // index_decode() functions found from index_encoder.c and
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185 | // index_decoder.c. See the comments especially in index_encoder.c.
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186 | const size_t in_start = *in_pos;
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187 | lzma_ret ret = LZMA_OK;
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188 |
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189 | while (*in_pos < in_size)
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190 | switch (index_hash->sequence) {
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191 | case SEQ_BLOCK:
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192 | // Check the Index Indicator is present.
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193 | if (in[(*in_pos)++] != INDEX_INDICATOR)
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194 | return LZMA_DATA_ERROR;
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195 |
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196 | index_hash->sequence = SEQ_COUNT;
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197 | break;
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198 |
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199 | case SEQ_COUNT: {
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200 | ret = lzma_vli_decode(&index_hash->remaining,
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201 | &index_hash->pos, in, in_pos, in_size);
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202 | if (ret != LZMA_STREAM_END)
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203 | goto out;
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204 |
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205 | // The count must match the count of the Blocks decoded.
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206 | if (index_hash->remaining != index_hash->blocks.count)
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207 | return LZMA_DATA_ERROR;
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208 |
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209 | ret = LZMA_OK;
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210 | index_hash->pos = 0;
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211 |
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212 | // Handle the special case when there are no Blocks.
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213 | index_hash->sequence = index_hash->remaining == 0
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214 | ? SEQ_PADDING_INIT : SEQ_UNPADDED;
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215 | break;
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216 | }
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217 |
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218 | case SEQ_UNPADDED:
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219 | case SEQ_UNCOMPRESSED: {
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220 | lzma_vli *size = index_hash->sequence == SEQ_UNPADDED
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221 | ? &index_hash->unpadded_size
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222 | : &index_hash->uncompressed_size;
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223 |
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224 | ret = lzma_vli_decode(size, &index_hash->pos,
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225 | in, in_pos, in_size);
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226 | if (ret != LZMA_STREAM_END)
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227 | goto out;
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228 |
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229 | ret = LZMA_OK;
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230 | index_hash->pos = 0;
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231 |
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232 | if (index_hash->sequence == SEQ_UNPADDED) {
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233 | if (index_hash->unpadded_size < UNPADDED_SIZE_MIN
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234 | || index_hash->unpadded_size
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235 | > UNPADDED_SIZE_MAX)
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236 | return LZMA_DATA_ERROR;
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237 |
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238 | index_hash->sequence = SEQ_UNCOMPRESSED;
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239 | } else {
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240 | // Update the hash.
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241 | hash_append(&index_hash->records,
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242 | index_hash->unpadded_size,
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243 | index_hash->uncompressed_size);
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244 |
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245 | // Verify that we don't go over the known sizes. Note
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246 | // that this validation is simpler than the one used
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247 | // in lzma_index_hash_append(), because here we know
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248 | // that values in index_hash->blocks are already
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249 | // validated and we are fine as long as we don't
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250 | // exceed them in index_hash->records.
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251 | if (index_hash->blocks.blocks_size
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252 | < index_hash->records.blocks_size
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253 | || index_hash->blocks.uncompressed_size
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254 | < index_hash->records.uncompressed_size
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255 | || index_hash->blocks.index_list_size
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256 | < index_hash->records.index_list_size)
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257 | return LZMA_DATA_ERROR;
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258 |
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259 | // Check if this was the last Record.
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260 | index_hash->sequence = --index_hash->remaining == 0
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261 | ? SEQ_PADDING_INIT : SEQ_UNPADDED;
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262 | }
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263 |
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264 | break;
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265 | }
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266 |
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267 | case SEQ_PADDING_INIT:
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268 | index_hash->pos = (LZMA_VLI_C(4) - index_size_unpadded(
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269 | index_hash->records.count,
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270 | index_hash->records.index_list_size)) & 3;
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271 | index_hash->sequence = SEQ_PADDING;
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272 |
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273 | // Fall through
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274 |
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275 | case SEQ_PADDING:
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276 | if (index_hash->pos > 0) {
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277 | --index_hash->pos;
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278 | if (in[(*in_pos)++] != 0x00)
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279 | return LZMA_DATA_ERROR;
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280 |
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281 | break;
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282 | }
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283 |
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284 | // Compare the sizes.
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285 | if (index_hash->blocks.blocks_size
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286 | != index_hash->records.blocks_size
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287 | || index_hash->blocks.uncompressed_size
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288 | != index_hash->records.uncompressed_size
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289 | || index_hash->blocks.index_list_size
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290 | != index_hash->records.index_list_size)
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291 | return LZMA_DATA_ERROR;
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292 |
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293 | // Finish the hashes and compare them.
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294 | lzma_check_finish(&index_hash->blocks.check, LZMA_CHECK_BEST);
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295 | lzma_check_finish(&index_hash->records.check, LZMA_CHECK_BEST);
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296 | if (memcmp(index_hash->blocks.check.buffer.u8,
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297 | index_hash->records.check.buffer.u8,
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298 | lzma_check_size(LZMA_CHECK_BEST)) != 0)
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299 | return LZMA_DATA_ERROR;
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300 |
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301 | // Finish the CRC32 calculation.
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302 | index_hash->crc32 = lzma_crc32(in + in_start,
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303 | *in_pos - in_start, index_hash->crc32);
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304 |
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305 | index_hash->sequence = SEQ_CRC32;
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306 |
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307 | // Fall through
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308 |
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309 | case SEQ_CRC32:
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310 | do {
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311 | if (*in_pos == in_size)
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312 | return LZMA_OK;
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313 |
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314 | if (((index_hash->crc32 >> (index_hash->pos * 8))
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315 | & 0xFF) != in[(*in_pos)++]) {
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316 | #ifndef FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION
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317 | return LZMA_DATA_ERROR;
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318 | #endif
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319 | }
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320 |
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321 | } while (++index_hash->pos < 4);
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322 |
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323 | return LZMA_STREAM_END;
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324 |
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325 | default:
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326 | assert(0);
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327 | return LZMA_PROG_ERROR;
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328 | }
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329 |
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330 | out:
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331 | // Update the CRC32,
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332 | index_hash->crc32 = lzma_crc32(in + in_start,
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333 | *in_pos - in_start, index_hash->crc32);
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334 |
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335 | return ret;
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336 | }
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