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1 /* gzio.c -- IO on .gz files
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2 * Copyright (C) 1995-2002 Jean-loup Gailly.
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3 * For conditions of distribution and use, see copyright notice in zlib.h
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4 *
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5 * Compile this file with -DNO_DEFLATE to avoid the compression code.
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6 */
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7
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8 /* memgzio.c - IO on .gz files in memory
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9 * Adapted from original gzio.c from zlib library by Forgotten
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10 */
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11
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12 /* @(#) $Id: memgzio.c,v 1.5 2006/06/06 21:04:20 spacy51 Exp $ */
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13
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14 #include <stdio.h>
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15 #include <stdarg.h>
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16 #include <stdlib.h>
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17 #include <string.h>
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18 #include <errno.h>
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19
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20 #include "memgzio.h"
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21
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22 #ifndef local
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23 #define local static
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24 #endif
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25
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26 #ifndef DEF_MEM_LEVEL
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27 # define DEF_MEM_LEVEL 8
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28 #endif
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29
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30 #ifndef OS_CODE
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31 #define OS_CODE 3
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32 #endif
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33
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34 #ifndef zmemcpy
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35 #define zmemcpy memcpy
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36 #endif
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37
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38 /*struct internal_state {int dummy;};*/ /* for buggy compilers */
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39
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40 #ifndef Z_BUFSIZE
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41 # ifdef MAXSEG_64K
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42 # define Z_BUFSIZE 4096 /* minimize memory usage for 16-bit DOS */
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43 # else
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44 # define Z_BUFSIZE 16384
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45 # endif
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46 #endif
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47 #ifndef Z_PRINTF_BUFSIZE
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48 # define Z_PRINTF_BUFSIZE 4096
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49 #endif
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50
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51 #define ALLOC(size) malloc(size)
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52 #define TRYFREE(p) \
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53 {if (p) \
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54 free(p);}
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55
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56 static int gz_magic[2] = {0x1f, 0x8b}; /* gzip magic header */
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57
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58 /* gzip flag byte */
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59 #define ASCII_FLAG 0x01 /* bit 0 set: file probably ascii text */
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60 #define HEAD_CRC 0x02 /* bit 1 set: header CRC present */
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61 #define EXTRA_FIELD 0x04 /* bit 2 set: extra field present */
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62 #define ORIG_NAME 0x08 /* bit 3 set: original file name present */
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63 #define COMMENT 0x10 /* bit 4 set: file comment present */
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64 #define RESERVED 0xE0 /* bits 5..7: reserved */
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65
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66 typedef struct _MemFile
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67 {
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68 char *memory;
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69 char *next;
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70 int available;
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71 int error;
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72 char mode;
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73 } MEMFILE;
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74
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75 typedef struct mem_stream
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76 {
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77 z_stream stream;
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78 int z_err; /* error code for last stream operation */
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79 int z_eof; /* set if end of input file */
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80 MEMFILE *file; /* memoru file */
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81 Byte * inbuf; /* input buffer */
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82 Byte * outbuf; /* output buffer */
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83 uLong crc; /* crc32 of uncompressed data */
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84 char * msg; /* error message */
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85 int transparent; /* 1 if input file is not a .gz file */
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86 char mode; /* 'w' or 'r' */
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87 long startpos; /* start of compressed data in file (header skipped) */
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88 } mem_stream;
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89
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90 local gzFile gz_open OF((char *memory, const int available, const char *mode));
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91 local int do_flush OF((gzFile file, int flush));
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92 local int get_byte OF((mem_stream *s));
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93 local void check_header OF((mem_stream *s));
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94 local int destroy OF((mem_stream *s));
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95 local void putLong OF((MEMFILE *file, uLong x));
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96 local uLong getLong OF((mem_stream *s));
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97
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98 local MEMFILE *memOpen(char *memory, int available, char mode)
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99 {
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100 MEMFILE *f;
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101
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102 if (available <= 8)
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103 return NULL;
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104
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105 if (mode != 'w' && mode != 'r')
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106 return NULL;
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107
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108 f = (MEMFILE *)malloc(sizeof(MEMFILE));
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109
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110 f->memory = memory;
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111 f->mode = mode;
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112 f->error = 0;
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113
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114 if (mode == 'w')
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115 {
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116 f->available = available - 8;
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117 f->next = memory + 8;
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118 memory[0] = 'V';
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119 memory[1] = 'B';
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120 memory[2] = 'A';
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121 memory[3] = ' ';
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122 *((int *)(memory+4)) = 0;
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123 }
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124 else
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125 {
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126 if (memory[0] != 'V' || memory[1] != 'B' || memory[2] != 'A' ||
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127 memory[3] != ' ')
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128 {
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129 free(f);
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130 return NULL;
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131 }
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132 f->available = *((int *)(memory+4));
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133 f->next = memory+8;
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134 }
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135
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136 return f;
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137 }
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138
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139 local size_t memWrite(const void *buffer, size_t size, size_t count,
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140 MEMFILE *file)
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141 {
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142 size_t total = size*count;
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143
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144 if (file->mode != 'w')
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145 {
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146 file->error = 1;
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147 return 0;
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148 }
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149
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150 if (total > (size_t)file->available)
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151 {
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152 total = file->available;
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153 }
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154 memcpy(file->next, buffer, total);
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155 file->available -= (int)total;
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156 file->next += total;
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157 return total;
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158 }
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159
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160 local size_t memRead(void *buffer, size_t size, size_t count,
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161 MEMFILE *file)
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162 {
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163 size_t total = size*count;
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164
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165 if (file->mode != 'r')
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166 {
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167 file->error = 1;
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168 return 0;
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169 }
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170
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171 if (file->available == 0)
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172 return -1;
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173
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174 if (total > (size_t)file->available)
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175 {
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176 total = file->available;
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177 }
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178 memcpy(buffer, file->next, total);
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179 file->available -= (int)total;
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180 file->next += total;
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181 return total;
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182 }
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183
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184 local int memPutc(int c, MEMFILE *file)
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185 {
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186 if (file->mode != 'w')
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187 {
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188 file->error = 1;
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189 return -1;
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190 }
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191
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192 if (file->available >= 1)
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193 {
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194 *file->next++ = c;
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195 file->available--;
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196 }
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197 else
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198 return -1;
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199
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200 return c;
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201 }
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202
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203 local long memTell(MEMFILE *f)
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204 {
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205 return (long)(f->next - f->memory) - 8;
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206 }
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207
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208 local int memError(MEMFILE *f)
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209 {
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210 return f->error;
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211 }
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212
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213 local int memClose(MEMFILE *f)
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214 {
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215 if (f->mode == 'w')
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216 {
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217 *((int *)(f->memory+4)) = memTell(f);
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218 }
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219 free(f);
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220 return 0;
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221 }
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222
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223 local int memPrintf(MEMFILE *f, const char *format, ...)
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224 {
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225 char buffer[80];
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226 va_list list;
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227 int len;
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228
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229 va_start(list, format);
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230 len = vsprintf(buffer, format, list);
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231 va_end(list);
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232
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233 return (int)memWrite(buffer, 1, len, f);
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234 }
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235
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236 /* ===========================================================================
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237 Opens a gzip (.gz) file for reading or writing. The mode parameter
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238 is as in fopen ("rb" or "wb"). The file is given either by file descriptor
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239 or path name (if fd == -1).
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240 gz_open return NULL if the file could not be opened or if there was
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241 insufficient memory to allocate the (de)compression state; errno
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242 can be checked to distinguish the two cases (if errno is zero, the
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243 zlib error is Z_MEM_ERROR).
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244 */
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245 local gzFile gz_open(memory, available, mode)
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246 char *memory;
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247 const int available;
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248 const char *mode;
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249 {
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250 int err;
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251 int level = Z_DEFAULT_COMPRESSION; /* compression level */
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252 int strategy = Z_DEFAULT_STRATEGY; /* compression strategy */
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253 char * p = (char *)mode;
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254 mem_stream *s;
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255 char fmode[80]; /* copy of mode, without the compression level */
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256 char * m = fmode;
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257
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258 s = (mem_stream *)ALLOC(sizeof(mem_stream));
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259 if (!s)
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260 return Z_NULL;
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261
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262 s->stream.zalloc = (alloc_func)0;
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263 s->stream.zfree = (free_func)0;
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264 s->stream.opaque = (voidpf)0;
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265 s->stream.next_in = s->inbuf = Z_NULL;
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266 s->stream.next_out = s->outbuf = Z_NULL;
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267 s->stream.avail_in = s->stream.avail_out = 0;
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268 s->z_err = Z_OK;
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269 s->z_eof = 0;
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270 s->crc = crc32(0L, Z_NULL, 0);
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271 s->msg = NULL;
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272 s->transparent = 0;
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273 s->file = NULL;
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274
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275 s->mode = '\0';
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276 do
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277 {
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278 if (*p == 'r')
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279 s->mode = 'r';
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280 if (*p == 'w' || *p == 'a')
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281 s->mode = 'w';
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282 if (*p >= '0' && *p <= '9')
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283 {
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284 level = *p - '0';
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285 }
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286 else if (*p == 'f')
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287 {
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288 strategy = Z_FILTERED;
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289 }
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290 else if (*p == 'h')
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291 {
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292 strategy = Z_HUFFMAN_ONLY;
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293 }
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294 else
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295 {
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296 *m++ = *p; /* copy the mode */
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297 }
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298 }
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299 while (*p++ && m != fmode + sizeof(fmode));
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300 if (s->mode == '\0')
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301 return destroy(s), (gzFile)Z_NULL;
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302
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303 if (s->mode == 'w')
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304 {
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305 #ifdef NO_DEFLATE
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306 err = Z_STREAM_ERROR;
|
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307 #else
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308 err = deflateInit2(&(s->stream), level,
|
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309 Z_DEFLATED, -MAX_WBITS, DEF_MEM_LEVEL, strategy);
|
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310 /* windowBits is passed < 0 to suppress zlib header */
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311
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312 s->stream.next_out = s->outbuf = (Byte *)ALLOC(Z_BUFSIZE);
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313 #endif
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314 if (err != Z_OK || s->outbuf == Z_NULL)
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315 {
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316 return destroy(s), (gzFile)Z_NULL;
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317 }
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318 }
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319 else
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320 {
|
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321 s->stream.next_in = s->inbuf = (Byte *)ALLOC(Z_BUFSIZE);
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322
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323 err = inflateInit2(&(s->stream), -MAX_WBITS);
|
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324 /* windowBits is passed < 0 to tell that there is no zlib header.
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325 * Note that in this case inflate *requires* an extra "dummy" byte
|
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326 * after the compressed stream in order to complete decompression and
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327 * return Z_STREAM_END. Here the gzip CRC32 ensures that 4 bytes are
|
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328 * present after the compressed stream.
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329 */
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330 if (err != Z_OK || s->inbuf == Z_NULL)
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331 {
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332 return destroy(s), (gzFile)Z_NULL;
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333 }
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334 }
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335 s->stream.avail_out = Z_BUFSIZE;
|
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336
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337 errno = 0;
|
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338 s->file = memOpen(memory, available, s->mode);
|
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339
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340 if (s->file == NULL)
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rlm@1
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341 {
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342 return destroy(s), (gzFile)Z_NULL;
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343 }
|
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344
|
rlm@1
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345 if (s->mode == 'w')
|
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346 {
|
rlm@1
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347 /* Write a very simple .gz header:
|
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348 */
|
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349 memPrintf(s->file, "%c%c%c%c%c%c%c%c%c%c", gz_magic[0], gz_magic[1],
|
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350 Z_DEFLATED, 0 /*flags*/, 0, 0, 0, 0 /*time*/, 0 /*xflags*/, OS_CODE);
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351 s->startpos = 10L;
|
rlm@1
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352 /* We use 10L instead of ftell(s->file) to because ftell causes an
|
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353 * fflush on some systems. This version of the library doesn't use
|
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354 * startpos anyway in write mode, so this initialization is not
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355 * necessary.
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356 */
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357 }
|
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358 else
|
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359 {
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360 check_header(s); /* skip the .gz header */
|
rlm@1
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361 s->startpos = (memTell(s->file) - s->stream.avail_in);
|
rlm@1
|
362 }
|
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363
|
rlm@1
|
364 return (gzFile)s;
|
rlm@1
|
365 }
|
rlm@1
|
366
|
rlm@1
|
367 /* ===========================================================================
|
rlm@1
|
368 Opens a gzip (.gz) file for reading or writing.
|
rlm@1
|
369 */
|
rlm@1
|
370 gzFile ZEXPORT memgzopen(memory, available, mode)
|
rlm@1
|
371 char *memory;
|
rlm@1
|
372 int available;
|
rlm@1
|
373 const char *mode;
|
rlm@1
|
374 {
|
rlm@1
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375 return gz_open(memory, available, mode);
|
rlm@1
|
376 }
|
rlm@1
|
377
|
rlm@1
|
378 /* ===========================================================================
|
rlm@1
|
379 Read a byte from a mem_stream; update next_in and avail_in. Return EOF
|
rlm@1
|
380 for end of file.
|
rlm@1
|
381 IN assertion: the stream s has been sucessfully opened for reading.
|
rlm@1
|
382 */
|
rlm@1
|
383 local int get_byte(s)
|
rlm@1
|
384 mem_stream *s;
|
rlm@1
|
385 {
|
rlm@1
|
386 if (s->z_eof)
|
rlm@1
|
387 return EOF;
|
rlm@1
|
388 if (s->stream.avail_in == 0)
|
rlm@1
|
389 {
|
rlm@1
|
390 errno = 0;
|
rlm@1
|
391 s->stream.avail_in = (uInt)memRead(s->inbuf, 1, Z_BUFSIZE, s->file);
|
rlm@1
|
392 if (s->stream.avail_in == 0)
|
rlm@1
|
393 {
|
rlm@1
|
394 s->z_eof = 1;
|
rlm@1
|
395 if (memError(s->file))
|
rlm@1
|
396 s->z_err = Z_ERRNO;
|
rlm@1
|
397 return EOF;
|
rlm@1
|
398 }
|
rlm@1
|
399 s->stream.next_in = s->inbuf;
|
rlm@1
|
400 }
|
rlm@1
|
401 s->stream.avail_in--;
|
rlm@1
|
402 return *(s->stream.next_in)++;
|
rlm@1
|
403 }
|
rlm@1
|
404
|
rlm@1
|
405 /* ===========================================================================
|
rlm@1
|
406 Check the gzip header of a mem_stream opened for reading. Set the stream
|
rlm@1
|
407 mode to transparent if the gzip magic header is not present; set s->err
|
rlm@1
|
408 to Z_DATA_ERROR if the magic header is present but the rest of the header
|
rlm@1
|
409 is incorrect.
|
rlm@1
|
410 IN assertion: the stream s has already been created sucessfully;
|
rlm@1
|
411 s->stream.avail_in is zero for the first time, but may be non-zero
|
rlm@1
|
412 for concatenated .gz files.
|
rlm@1
|
413 */
|
rlm@1
|
414 local void check_header(s)
|
rlm@1
|
415 mem_stream *s;
|
rlm@1
|
416 {
|
rlm@1
|
417 int method; /* method byte */
|
rlm@1
|
418 int flags; /* flags byte */
|
rlm@1
|
419 uInt len;
|
rlm@1
|
420 int c;
|
rlm@1
|
421
|
rlm@1
|
422 /* Check the gzip magic header */
|
rlm@1
|
423 for (len = 0; len < 2; len++)
|
rlm@1
|
424 {
|
rlm@1
|
425 c = get_byte(s);
|
rlm@1
|
426 if (c != gz_magic[len])
|
rlm@1
|
427 {
|
rlm@1
|
428 if (len != 0)
|
rlm@1
|
429 s->stream.avail_in++, s->stream.next_in--;
|
rlm@1
|
430 if (c != EOF)
|
rlm@1
|
431 {
|
rlm@1
|
432 s->stream.avail_in++, s->stream.next_in--;
|
rlm@1
|
433 s->transparent = 1;
|
rlm@1
|
434 }
|
rlm@1
|
435 s->z_err = s->stream.avail_in != 0 ? Z_OK : Z_STREAM_END;
|
rlm@1
|
436 return;
|
rlm@1
|
437 }
|
rlm@1
|
438 }
|
rlm@1
|
439 method = get_byte(s);
|
rlm@1
|
440 flags = get_byte(s);
|
rlm@1
|
441 if (method != Z_DEFLATED || (flags & RESERVED) != 0)
|
rlm@1
|
442 {
|
rlm@1
|
443 s->z_err = Z_DATA_ERROR;
|
rlm@1
|
444 return;
|
rlm@1
|
445 }
|
rlm@1
|
446
|
rlm@1
|
447 /* Discard time, xflags and OS code: */
|
rlm@1
|
448 for (len = 0; len < 6; len++)
|
rlm@1
|
449 (void)get_byte(s);
|
rlm@1
|
450
|
rlm@1
|
451 if ((flags & EXTRA_FIELD) != 0) /* skip the extra field */
|
rlm@1
|
452 {
|
rlm@1
|
453 len = (uInt)get_byte(s);
|
rlm@1
|
454 len += ((uInt)get_byte(s))<<8;
|
rlm@1
|
455 /* len is garbage if EOF but the loop below will quit anyway */
|
rlm@1
|
456 while (len-- != 0 && get_byte(s) != EOF)
|
rlm@1
|
457 ;
|
rlm@1
|
458 }
|
rlm@1
|
459 if ((flags & ORIG_NAME) != 0) /* skip the original file name */
|
rlm@1
|
460 {
|
rlm@1
|
461 while ((c = get_byte(s)) != 0 && c != EOF)
|
rlm@1
|
462 ;
|
rlm@1
|
463 }
|
rlm@1
|
464 if ((flags & COMMENT) != 0) /* skip the .gz file comment */
|
rlm@1
|
465 {
|
rlm@1
|
466 while ((c = get_byte(s)) != 0 && c != EOF)
|
rlm@1
|
467 ;
|
rlm@1
|
468 }
|
rlm@1
|
469 if ((flags & HEAD_CRC) != 0) /* skip the header crc */
|
rlm@1
|
470 {
|
rlm@1
|
471 for (len = 0; len < 2; len++)
|
rlm@1
|
472 (void)get_byte(s);
|
rlm@1
|
473 }
|
rlm@1
|
474 s->z_err = s->z_eof ? Z_DATA_ERROR : Z_OK;
|
rlm@1
|
475 }
|
rlm@1
|
476
|
rlm@1
|
477 /* ===========================================================================
|
rlm@1
|
478 * Cleanup then free the given mem_stream. Return a zlib error code.
|
rlm@1
|
479 Try freeing in the reverse order of allocations.
|
rlm@1
|
480 */
|
rlm@1
|
481 local int destroy(s)
|
rlm@1
|
482 mem_stream *s;
|
rlm@1
|
483 {
|
rlm@1
|
484 int err = Z_OK;
|
rlm@1
|
485
|
rlm@1
|
486 if (!s)
|
rlm@1
|
487 return Z_STREAM_ERROR;
|
rlm@1
|
488
|
rlm@1
|
489 TRYFREE(s->msg);
|
rlm@1
|
490
|
rlm@1
|
491 if (s->stream.state != NULL)
|
rlm@1
|
492 {
|
rlm@1
|
493 if (s->mode == 'w')
|
rlm@1
|
494 {
|
rlm@1
|
495 #ifdef NO_DEFLATE
|
rlm@1
|
496 err = Z_STREAM_ERROR;
|
rlm@1
|
497 #else
|
rlm@1
|
498 err = deflateEnd(&(s->stream));
|
rlm@1
|
499 #endif
|
rlm@1
|
500 }
|
rlm@1
|
501 else if (s->mode == 'r')
|
rlm@1
|
502 {
|
rlm@1
|
503 err = inflateEnd(&(s->stream));
|
rlm@1
|
504 }
|
rlm@1
|
505 }
|
rlm@1
|
506 if (s->file != NULL && memClose(s->file))
|
rlm@1
|
507 {
|
rlm@1
|
508 #ifdef ESPIPE
|
rlm@1
|
509 if (errno != ESPIPE) /* fclose is broken for pipes in HP/UX */
|
rlm@1
|
510 #endif
|
rlm@1
|
511 err = Z_ERRNO;
|
rlm@1
|
512 }
|
rlm@1
|
513 if (s->z_err < 0)
|
rlm@1
|
514 err = s->z_err;
|
rlm@1
|
515
|
rlm@1
|
516 TRYFREE(s->inbuf);
|
rlm@1
|
517 TRYFREE(s->outbuf);
|
rlm@1
|
518 TRYFREE(s);
|
rlm@1
|
519 return err;
|
rlm@1
|
520 }
|
rlm@1
|
521
|
rlm@1
|
522 /* ===========================================================================
|
rlm@1
|
523 Reads the given number of uncompressed bytes from the compressed file.
|
rlm@1
|
524 gzread returns the number of bytes actually read (0 for end of file).
|
rlm@1
|
525 */
|
rlm@1
|
526 int ZEXPORT memgzread(file, buf, len)
|
rlm@1
|
527 gzFile file;
|
rlm@1
|
528 voidp buf;
|
rlm@1
|
529 unsigned len;
|
rlm@1
|
530 {
|
rlm@1
|
531 mem_stream *s = (mem_stream *)file;
|
rlm@1
|
532 Bytef * start = (Bytef *)buf; /* starting point for crc computation */
|
rlm@1
|
533 Byte * next_out; /* == stream.next_out but not forced far (for MSDOS) */
|
rlm@1
|
534
|
rlm@1
|
535 if (s == NULL || s->mode != 'r')
|
rlm@1
|
536 return Z_STREAM_ERROR;
|
rlm@1
|
537
|
rlm@1
|
538 if (s->z_err == Z_DATA_ERROR || s->z_err == Z_ERRNO)
|
rlm@1
|
539 return -1;
|
rlm@1
|
540 if (s->z_err == Z_STREAM_END)
|
rlm@1
|
541 return 0; /* EOF */
|
rlm@1
|
542
|
rlm@1
|
543 next_out = (Byte *)buf;
|
rlm@1
|
544 s->stream.next_out = (Bytef *)buf;
|
rlm@1
|
545 s->stream.avail_out = len;
|
rlm@1
|
546
|
rlm@1
|
547 while (s->stream.avail_out != 0)
|
rlm@1
|
548 {
|
rlm@1
|
549 if (s->transparent)
|
rlm@1
|
550 {
|
rlm@1
|
551 /* Copy first the lookahead bytes: */
|
rlm@1
|
552 uInt n = s->stream.avail_in;
|
rlm@1
|
553 if (n > s->stream.avail_out)
|
rlm@1
|
554 n = s->stream.avail_out;
|
rlm@1
|
555 if (n > 0)
|
rlm@1
|
556 {
|
rlm@1
|
557 zmemcpy(s->stream.next_out, s->stream.next_in, n);
|
rlm@1
|
558 next_out += n;
|
rlm@1
|
559 s->stream.next_out = next_out;
|
rlm@1
|
560 s->stream.next_in += n;
|
rlm@1
|
561 s->stream.avail_out -= n;
|
rlm@1
|
562 s->stream.avail_in -= n;
|
rlm@1
|
563 }
|
rlm@1
|
564 if (s->stream.avail_out > 0)
|
rlm@1
|
565 {
|
rlm@1
|
566 s->stream.avail_out -= (uInt)memRead(next_out, 1, s->stream.avail_out, s->file);
|
rlm@1
|
567 }
|
rlm@1
|
568 len -= s->stream.avail_out;
|
rlm@1
|
569 s->stream.total_in += (uLong)len;
|
rlm@1
|
570 s->stream.total_out += (uLong)len;
|
rlm@1
|
571 if (len == 0)
|
rlm@1
|
572 s->z_eof = 1;
|
rlm@1
|
573 return (int)len;
|
rlm@1
|
574 }
|
rlm@1
|
575 if (s->stream.avail_in == 0 && !s->z_eof)
|
rlm@1
|
576 {
|
rlm@1
|
577 errno = 0;
|
rlm@1
|
578 s->stream.avail_in = (uInt)memRead(s->inbuf, 1, Z_BUFSIZE, s->file);
|
rlm@1
|
579 if (s->stream.avail_in == 0)
|
rlm@1
|
580 {
|
rlm@1
|
581 s->z_eof = 1;
|
rlm@1
|
582 if (memError(s->file))
|
rlm@1
|
583 {
|
rlm@1
|
584 s->z_err = Z_ERRNO;
|
rlm@1
|
585 break;
|
rlm@1
|
586 }
|
rlm@1
|
587 }
|
rlm@1
|
588 s->stream.next_in = s->inbuf;
|
rlm@1
|
589 }
|
rlm@1
|
590 s->z_err = inflate(&(s->stream), Z_NO_FLUSH);
|
rlm@1
|
591
|
rlm@1
|
592 if (s->z_err == Z_STREAM_END)
|
rlm@1
|
593 {
|
rlm@1
|
594 /* Check CRC and original size */
|
rlm@1
|
595 s->crc = crc32(s->crc, start, (uInt)(s->stream.next_out - start));
|
rlm@1
|
596 start = s->stream.next_out;
|
rlm@1
|
597
|
rlm@1
|
598 if (getLong(s) != s->crc)
|
rlm@1
|
599 {
|
rlm@1
|
600 s->z_err = Z_DATA_ERROR;
|
rlm@1
|
601 }
|
rlm@1
|
602 else
|
rlm@1
|
603 {
|
rlm@1
|
604 (void)getLong(s);
|
rlm@1
|
605 /* The uncompressed length returned by above getlong() may
|
rlm@1
|
606 * be different from s->stream.total_out) in case of
|
rlm@1
|
607 * concatenated .gz files. Check for such files:
|
rlm@1
|
608 */
|
rlm@1
|
609 check_header(s);
|
rlm@1
|
610 if (s->z_err == Z_OK)
|
rlm@1
|
611 {
|
rlm@1
|
612 uLong total_in = s->stream.total_in;
|
rlm@1
|
613 uLong total_out = s->stream.total_out;
|
rlm@1
|
614
|
rlm@1
|
615 inflateReset(&(s->stream));
|
rlm@1
|
616 s->stream.total_in = total_in;
|
rlm@1
|
617 s->stream.total_out = total_out;
|
rlm@1
|
618 s->crc = crc32(0L, Z_NULL, 0);
|
rlm@1
|
619 }
|
rlm@1
|
620 }
|
rlm@1
|
621 }
|
rlm@1
|
622 if (s->z_err != Z_OK || s->z_eof)
|
rlm@1
|
623 break;
|
rlm@1
|
624 }
|
rlm@1
|
625 s->crc = crc32(s->crc, start, (uInt)(s->stream.next_out - start));
|
rlm@1
|
626
|
rlm@1
|
627 return (int)(len - s->stream.avail_out);
|
rlm@1
|
628 }
|
rlm@1
|
629
|
rlm@1
|
630 #ifndef NO_DEFLATE
|
rlm@1
|
631 /* ===========================================================================
|
rlm@1
|
632 Writes the given number of uncompressed bytes into the compressed file.
|
rlm@1
|
633 gzwrite returns the number of bytes actually written (0 in case of error).
|
rlm@1
|
634 */
|
rlm@1
|
635 int ZEXPORT memgzwrite(file, buf, len)
|
rlm@1
|
636 gzFile file;
|
rlm@1
|
637 const voidp buf;
|
rlm@1
|
638 unsigned len;
|
rlm@1
|
639 {
|
rlm@1
|
640 mem_stream *s = (mem_stream *)file;
|
rlm@1
|
641
|
rlm@1
|
642 if (s == NULL || s->mode != 'w')
|
rlm@1
|
643 return Z_STREAM_ERROR;
|
rlm@1
|
644
|
rlm@1
|
645 s->stream.next_in = (Bytef *)buf;
|
rlm@1
|
646 s->stream.avail_in = len;
|
rlm@1
|
647
|
rlm@1
|
648 while (s->stream.avail_in != 0)
|
rlm@1
|
649 {
|
rlm@1
|
650 if (s->stream.avail_out == 0)
|
rlm@1
|
651 {
|
rlm@1
|
652 s->stream.next_out = s->outbuf;
|
rlm@1
|
653 if (memWrite(s->outbuf, 1, Z_BUFSIZE, s->file) != Z_BUFSIZE)
|
rlm@1
|
654 {
|
rlm@1
|
655 s->z_err = Z_ERRNO;
|
rlm@1
|
656 break;
|
rlm@1
|
657 }
|
rlm@1
|
658 s->stream.avail_out = Z_BUFSIZE;
|
rlm@1
|
659 }
|
rlm@1
|
660 s->z_err = deflate(&(s->stream), Z_NO_FLUSH);
|
rlm@1
|
661 if (s->z_err != Z_OK)
|
rlm@1
|
662 break;
|
rlm@1
|
663 }
|
rlm@1
|
664 s->crc = crc32(s->crc, (const Bytef *)buf, len);
|
rlm@1
|
665
|
rlm@1
|
666 return (int)(len - s->stream.avail_in);
|
rlm@1
|
667 }
|
rlm@1
|
668 #endif
|
rlm@1
|
669 /* ===========================================================================
|
rlm@1
|
670 Flushes all pending output into the compressed file. The parameter
|
rlm@1
|
671 flush is as in the deflate() function.
|
rlm@1
|
672 */
|
rlm@1
|
673 local int do_flush(file, flush)
|
rlm@1
|
674 gzFile file;
|
rlm@1
|
675 int flush;
|
rlm@1
|
676 {
|
rlm@1
|
677 uInt len;
|
rlm@1
|
678 int done = 0;
|
rlm@1
|
679 mem_stream *s = (mem_stream *)file;
|
rlm@1
|
680
|
rlm@1
|
681 if (s == NULL || s->mode != 'w')
|
rlm@1
|
682 return Z_STREAM_ERROR;
|
rlm@1
|
683
|
rlm@1
|
684 s->stream.avail_in = 0; /* should be zero already anyway */
|
rlm@1
|
685
|
rlm@1
|
686 for (;;)
|
rlm@1
|
687 {
|
rlm@1
|
688 len = Z_BUFSIZE - s->stream.avail_out;
|
rlm@1
|
689
|
rlm@1
|
690 if (len != 0)
|
rlm@1
|
691 {
|
rlm@1
|
692 if ((uInt)memWrite(s->outbuf, 1, len, s->file) != len)
|
rlm@1
|
693 {
|
rlm@1
|
694 s->z_err = Z_ERRNO;
|
rlm@1
|
695 return Z_ERRNO;
|
rlm@1
|
696 }
|
rlm@1
|
697 s->stream.next_out = s->outbuf;
|
rlm@1
|
698 s->stream.avail_out = Z_BUFSIZE;
|
rlm@1
|
699 }
|
rlm@1
|
700 if (done)
|
rlm@1
|
701 break;
|
rlm@1
|
702 s->z_err = deflate(&(s->stream), flush);
|
rlm@1
|
703
|
rlm@1
|
704 /* Ignore the second of two consecutive flushes: */
|
rlm@1
|
705 if (len == 0 && s->z_err == Z_BUF_ERROR)
|
rlm@1
|
706 s->z_err = Z_OK;
|
rlm@1
|
707
|
rlm@1
|
708 /* deflate has finished flushing only when it hasn't used up
|
rlm@1
|
709 * all the available space in the output buffer:
|
rlm@1
|
710 */
|
rlm@1
|
711 done = (s->stream.avail_out != 0 || s->z_err == Z_STREAM_END);
|
rlm@1
|
712
|
rlm@1
|
713 if (s->z_err != Z_OK && s->z_err != Z_STREAM_END)
|
rlm@1
|
714 break;
|
rlm@1
|
715 }
|
rlm@1
|
716 return s->z_err == Z_STREAM_END ? Z_OK : s->z_err;
|
rlm@1
|
717 }
|
rlm@1
|
718
|
rlm@1
|
719 /* ===========================================================================
|
rlm@1
|
720 Outputs a long in LSB order to the given file
|
rlm@1
|
721 */
|
rlm@1
|
722 local void putLong(file, x)
|
rlm@1
|
723 MEMFILE *file;
|
rlm@1
|
724 uLong x;
|
rlm@1
|
725 {
|
rlm@1
|
726 int n;
|
rlm@1
|
727 for (n = 0; n < 4; n++)
|
rlm@1
|
728 {
|
rlm@1
|
729 memPutc((int)(x & 0xff), file);
|
rlm@1
|
730 x >>= 8;
|
rlm@1
|
731 }
|
rlm@1
|
732 }
|
rlm@1
|
733
|
rlm@1
|
734 /* ===========================================================================
|
rlm@1
|
735 Reads a long in LSB order from the given mem_stream. Sets z_err in case
|
rlm@1
|
736 of error.
|
rlm@1
|
737 */
|
rlm@1
|
738 local uLong getLong(s)
|
rlm@1
|
739 mem_stream *s;
|
rlm@1
|
740 {
|
rlm@1
|
741 uLong x = (uLong)get_byte(s);
|
rlm@1
|
742 int c;
|
rlm@1
|
743
|
rlm@1
|
744 x += ((uLong)get_byte(s))<<8;
|
rlm@1
|
745 x += ((uLong)get_byte(s))<<16;
|
rlm@1
|
746 c = get_byte(s);
|
rlm@1
|
747 if (c == EOF)
|
rlm@1
|
748 s->z_err = Z_DATA_ERROR;
|
rlm@1
|
749 x += ((uLong)c)<<24;
|
rlm@1
|
750 return x;
|
rlm@1
|
751 }
|
rlm@1
|
752
|
rlm@1
|
753 /* ===========================================================================
|
rlm@1
|
754 Flushes all pending output if necessary, closes the compressed file
|
rlm@1
|
755 and deallocates all the (de)compression state.
|
rlm@1
|
756 */
|
rlm@1
|
757 int ZEXPORT memgzclose(file)
|
rlm@1
|
758 gzFile file;
|
rlm@1
|
759 {
|
rlm@1
|
760 int err;
|
rlm@1
|
761 mem_stream *s = (mem_stream *)file;
|
rlm@1
|
762
|
rlm@1
|
763 if (s == NULL)
|
rlm@1
|
764 return Z_STREAM_ERROR;
|
rlm@1
|
765
|
rlm@1
|
766 if (s->mode == 'w')
|
rlm@1
|
767 {
|
rlm@1
|
768 #ifdef NO_DEFLATE
|
rlm@1
|
769 return Z_STREAM_ERROR;
|
rlm@1
|
770 #else
|
rlm@1
|
771 err = do_flush(file, Z_FINISH);
|
rlm@1
|
772 if (err != Z_OK)
|
rlm@1
|
773 return destroy((mem_stream *)file);
|
rlm@1
|
774
|
rlm@1
|
775 putLong(s->file, s->crc);
|
rlm@1
|
776 putLong(s->file, s->stream.total_in);
|
rlm@1
|
777 #endif
|
rlm@1
|
778 }
|
rlm@1
|
779 return destroy((mem_stream *)file);
|
rlm@1
|
780 }
|
rlm@1
|
781
|
rlm@1
|
782 long ZEXPORT memtell(file)
|
rlm@1
|
783 gzFile file;
|
rlm@1
|
784 {
|
rlm@1
|
785 mem_stream *s = (mem_stream *)file;
|
rlm@1
|
786
|
rlm@1
|
787 if (s == NULL)
|
rlm@1
|
788 return Z_STREAM_ERROR;
|
rlm@1
|
789
|
rlm@1
|
790 return memTell(s->file);
|
rlm@1
|
791 }
|