1 | /*
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2 | * jcmaster.c
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3 | *
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4 | * Copyright (C) 1991-1997, Thomas G. Lane.
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5 | * Modified 2003-2010 by Guido Vollbeding.
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6 | * This file is part of the Independent JPEG Group's software.
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7 | * For conditions of distribution and use, see the accompanying README file.
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8 | *
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9 | * This file contains master control logic for the JPEG compressor.
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10 | * These routines are concerned with parameter validation, initial setup,
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11 | * and inter-pass control (determining the number of passes and the work
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12 | * to be done in each pass).
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13 | */
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14 |
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15 | #define JPEG_INTERNALS
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16 | #include "jinclude.h"
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17 | #include "jpeglib.h"
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18 |
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19 |
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20 | /* Private state */
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21 |
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22 | typedef enum {
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23 | main_pass, /* input data, also do first output step */
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24 | huff_opt_pass, /* Huffman code optimization pass */
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25 | output_pass /* data output pass */
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26 | } c_pass_type;
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27 |
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28 | typedef struct {
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29 | struct jpeg_comp_master pub; /* public fields */
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30 |
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31 | c_pass_type pass_type; /* the type of the current pass */
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32 |
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33 | int pass_number; /* # of passes completed */
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34 | int total_passes; /* total # of passes needed */
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35 |
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36 | int scan_number; /* current index in scan_info[] */
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37 | } my_comp_master;
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38 |
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39 | typedef my_comp_master * my_master_ptr;
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40 |
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41 |
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42 | /*
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43 | * Support routines that do various essential calculations.
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44 | */
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45 |
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46 | /*
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47 | * Compute JPEG image dimensions and related values.
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48 | * NOTE: this is exported for possible use by application.
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49 | * Hence it mustn't do anything that can't be done twice.
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50 | */
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51 |
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52 | GLOBAL(void)
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53 | jpeg_calc_jpeg_dimensions (j_compress_ptr cinfo)
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54 | /* Do computations that are needed before master selection phase */
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55 | {
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56 | #ifdef DCT_SCALING_SUPPORTED
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57 |
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58 | /* Compute actual JPEG image dimensions and DCT scaling choices. */
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59 | if (cinfo->scale_num >= cinfo->scale_denom * 8) {
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60 | /* Provide 8/1 scaling */
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61 | cinfo->jpeg_width = cinfo->image_width << 3;
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62 | cinfo->jpeg_height = cinfo->image_height << 3;
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63 | cinfo->min_DCT_h_scaled_size = 1;
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64 | cinfo->min_DCT_v_scaled_size = 1;
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65 | } else if (cinfo->scale_num >= cinfo->scale_denom * 4) {
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66 | /* Provide 4/1 scaling */
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67 | cinfo->jpeg_width = cinfo->image_width << 2;
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68 | cinfo->jpeg_height = cinfo->image_height << 2;
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69 | cinfo->min_DCT_h_scaled_size = 2;
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70 | cinfo->min_DCT_v_scaled_size = 2;
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71 | } else if (cinfo->scale_num * 3 >= cinfo->scale_denom * 8) {
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72 | /* Provide 8/3 scaling */
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73 | cinfo->jpeg_width = (cinfo->image_width << 1) + (JDIMENSION)
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74 | jdiv_round_up((long) cinfo->image_width * 2, 3L);
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75 | cinfo->jpeg_height = (cinfo->image_height << 1) + (JDIMENSION)
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76 | jdiv_round_up((long) cinfo->image_height * 2, 3L);
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77 | cinfo->min_DCT_h_scaled_size = 3;
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78 | cinfo->min_DCT_v_scaled_size = 3;
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79 | } else if (cinfo->scale_num >= cinfo->scale_denom * 2) {
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80 | /* Provide 2/1 scaling */
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81 | cinfo->jpeg_width = cinfo->image_width << 1;
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82 | cinfo->jpeg_height = cinfo->image_height << 1;
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83 | cinfo->min_DCT_h_scaled_size = 4;
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84 | cinfo->min_DCT_v_scaled_size = 4;
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85 | } else if (cinfo->scale_num * 5 >= cinfo->scale_denom * 8) {
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86 | /* Provide 8/5 scaling */
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87 | cinfo->jpeg_width = cinfo->image_width + (JDIMENSION)
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88 | jdiv_round_up((long) cinfo->image_width * 3, 5L);
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89 | cinfo->jpeg_height = cinfo->image_height + (JDIMENSION)
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90 | jdiv_round_up((long) cinfo->image_height * 3, 5L);
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91 | cinfo->min_DCT_h_scaled_size = 5;
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92 | cinfo->min_DCT_v_scaled_size = 5;
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93 | } else if (cinfo->scale_num * 3 >= cinfo->scale_denom * 4) {
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94 | /* Provide 4/3 scaling */
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95 | cinfo->jpeg_width = cinfo->image_width + (JDIMENSION)
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96 | jdiv_round_up((long) cinfo->image_width, 3L);
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97 | cinfo->jpeg_height = cinfo->image_height + (JDIMENSION)
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98 | jdiv_round_up((long) cinfo->image_height, 3L);
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99 | cinfo->min_DCT_h_scaled_size = 6;
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100 | cinfo->min_DCT_v_scaled_size = 6;
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101 | } else if (cinfo->scale_num * 7 >= cinfo->scale_denom * 8) {
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102 | /* Provide 8/7 scaling */
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103 | cinfo->jpeg_width = cinfo->image_width + (JDIMENSION)
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104 | jdiv_round_up((long) cinfo->image_width, 7L);
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105 | cinfo->jpeg_height = cinfo->image_height + (JDIMENSION)
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106 | jdiv_round_up((long) cinfo->image_height, 7L);
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107 | cinfo->min_DCT_h_scaled_size = 7;
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108 | cinfo->min_DCT_v_scaled_size = 7;
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109 | } else if (cinfo->scale_num >= cinfo->scale_denom) {
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110 | /* Provide 1/1 scaling */
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111 | cinfo->jpeg_width = cinfo->image_width;
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112 | cinfo->jpeg_height = cinfo->image_height;
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113 | cinfo->min_DCT_h_scaled_size = 8;
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114 | cinfo->min_DCT_v_scaled_size = 8;
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115 | } else if (cinfo->scale_num * 9 >= cinfo->scale_denom * 8) {
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116 | /* Provide 8/9 scaling */
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117 | cinfo->jpeg_width = (JDIMENSION)
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118 | jdiv_round_up((long) cinfo->image_width * 8, 9L);
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119 | cinfo->jpeg_height = (JDIMENSION)
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120 | jdiv_round_up((long) cinfo->image_height * 8, 9L);
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121 | cinfo->min_DCT_h_scaled_size = 9;
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122 | cinfo->min_DCT_v_scaled_size = 9;
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123 | } else if (cinfo->scale_num * 5 >= cinfo->scale_denom * 4) {
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124 | /* Provide 4/5 scaling */
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125 | cinfo->jpeg_width = (JDIMENSION)
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126 | jdiv_round_up((long) cinfo->image_width * 4, 5L);
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127 | cinfo->jpeg_height = (JDIMENSION)
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128 | jdiv_round_up((long) cinfo->image_height * 4, 5L);
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129 | cinfo->min_DCT_h_scaled_size = 10;
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130 | cinfo->min_DCT_v_scaled_size = 10;
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131 | } else if (cinfo->scale_num * 11 >= cinfo->scale_denom * 8) {
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132 | /* Provide 8/11 scaling */
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133 | cinfo->jpeg_width = (JDIMENSION)
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134 | jdiv_round_up((long) cinfo->image_width * 8, 11L);
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135 | cinfo->jpeg_height = (JDIMENSION)
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136 | jdiv_round_up((long) cinfo->image_height * 8, 11L);
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137 | cinfo->min_DCT_h_scaled_size = 11;
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138 | cinfo->min_DCT_v_scaled_size = 11;
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139 | } else if (cinfo->scale_num * 3 >= cinfo->scale_denom * 2) {
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140 | /* Provide 2/3 scaling */
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141 | cinfo->jpeg_width = (JDIMENSION)
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142 | jdiv_round_up((long) cinfo->image_width * 2, 3L);
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143 | cinfo->jpeg_height = (JDIMENSION)
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144 | jdiv_round_up((long) cinfo->image_height * 2, 3L);
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145 | cinfo->min_DCT_h_scaled_size = 12;
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146 | cinfo->min_DCT_v_scaled_size = 12;
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147 | } else if (cinfo->scale_num * 13 >= cinfo->scale_denom * 8) {
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148 | /* Provide 8/13 scaling */
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149 | cinfo->jpeg_width = (JDIMENSION)
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150 | jdiv_round_up((long) cinfo->image_width * 8, 13L);
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151 | cinfo->jpeg_height = (JDIMENSION)
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152 | jdiv_round_up((long) cinfo->image_height * 8, 13L);
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153 | cinfo->min_DCT_h_scaled_size = 13;
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154 | cinfo->min_DCT_v_scaled_size = 13;
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155 | } else if (cinfo->scale_num * 7 >= cinfo->scale_denom * 4) {
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156 | /* Provide 4/7 scaling */
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157 | cinfo->jpeg_width = (JDIMENSION)
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158 | jdiv_round_up((long) cinfo->image_width * 4, 7L);
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159 | cinfo->jpeg_height = (JDIMENSION)
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160 | jdiv_round_up((long) cinfo->image_height * 4, 7L);
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161 | cinfo->min_DCT_h_scaled_size = 14;
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162 | cinfo->min_DCT_v_scaled_size = 14;
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163 | } else if (cinfo->scale_num * 15 >= cinfo->scale_denom * 8) {
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164 | /* Provide 8/15 scaling */
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165 | cinfo->jpeg_width = (JDIMENSION)
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166 | jdiv_round_up((long) cinfo->image_width * 8, 15L);
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167 | cinfo->jpeg_height = (JDIMENSION)
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168 | jdiv_round_up((long) cinfo->image_height * 8, 15L);
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169 | cinfo->min_DCT_h_scaled_size = 15;
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170 | cinfo->min_DCT_v_scaled_size = 15;
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171 | } else {
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172 | /* Provide 1/2 scaling */
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173 | cinfo->jpeg_width = (JDIMENSION)
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174 | jdiv_round_up((long) cinfo->image_width, 2L);
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175 | cinfo->jpeg_height = (JDIMENSION)
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176 | jdiv_round_up((long) cinfo->image_height, 2L);
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177 | cinfo->min_DCT_h_scaled_size = 16;
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178 | cinfo->min_DCT_v_scaled_size = 16;
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179 | }
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180 |
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181 | #else /* !DCT_SCALING_SUPPORTED */
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182 |
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183 | /* Hardwire it to "no scaling" */
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184 | cinfo->jpeg_width = cinfo->image_width;
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185 | cinfo->jpeg_height = cinfo->image_height;
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186 | cinfo->min_DCT_h_scaled_size = DCTSIZE;
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187 | cinfo->min_DCT_v_scaled_size = DCTSIZE;
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188 |
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189 | #endif /* DCT_SCALING_SUPPORTED */
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190 |
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191 | cinfo->block_size = DCTSIZE;
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192 | cinfo->natural_order = jpeg_natural_order;
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193 | cinfo->lim_Se = DCTSIZE2-1;
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194 | }
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195 |
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196 |
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197 | LOCAL(void)
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198 | jpeg_calc_trans_dimensions (j_compress_ptr cinfo)
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199 | {
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200 | if (cinfo->min_DCT_h_scaled_size < 1 || cinfo->min_DCT_h_scaled_size > 16
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201 | || cinfo->min_DCT_h_scaled_size != cinfo->min_DCT_v_scaled_size)
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202 | ERREXIT2(cinfo, JERR_BAD_DCTSIZE,
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203 | cinfo->min_DCT_h_scaled_size, cinfo->min_DCT_v_scaled_size);
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204 |
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205 | cinfo->block_size = cinfo->min_DCT_h_scaled_size;
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206 |
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207 | switch (cinfo->block_size) {
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208 | case 2: cinfo->natural_order = jpeg_natural_order2; break;
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209 | case 3: cinfo->natural_order = jpeg_natural_order3; break;
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210 | case 4: cinfo->natural_order = jpeg_natural_order4; break;
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211 | case 5: cinfo->natural_order = jpeg_natural_order5; break;
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212 | case 6: cinfo->natural_order = jpeg_natural_order6; break;
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213 | case 7: cinfo->natural_order = jpeg_natural_order7; break;
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214 | default: cinfo->natural_order = jpeg_natural_order; break;
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215 | }
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216 |
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217 | cinfo->lim_Se = cinfo->block_size < DCTSIZE ?
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218 | cinfo->block_size * cinfo->block_size - 1 : DCTSIZE2-1;
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219 | }
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220 |
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221 |
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222 | LOCAL(void)
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223 | initial_setup (j_compress_ptr cinfo, boolean transcode_only)
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224 | /* Do computations that are needed before master selection phase */
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225 | {
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226 | int ci, ssize;
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227 | jpeg_component_info *compptr;
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228 | long samplesperrow;
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229 | JDIMENSION jd_samplesperrow;
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230 |
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231 | if (transcode_only)
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232 | jpeg_calc_trans_dimensions(cinfo);
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233 | else
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234 | jpeg_calc_jpeg_dimensions(cinfo);
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235 |
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236 | /* Sanity check on image dimensions */
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237 | if (cinfo->jpeg_height <= 0 || cinfo->jpeg_width <= 0 ||
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238 | cinfo->num_components <= 0 || cinfo->input_components <= 0)
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239 | ERREXIT(cinfo, JERR_EMPTY_IMAGE);
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240 |
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241 | /* Make sure image isn't bigger than I can handle */
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242 | if ((long) cinfo->jpeg_height > (long) JPEG_MAX_DIMENSION ||
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243 | (long) cinfo->jpeg_width > (long) JPEG_MAX_DIMENSION)
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244 | ERREXIT1(cinfo, JERR_IMAGE_TOO_BIG, (unsigned int) JPEG_MAX_DIMENSION);
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245 |
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246 | /* Width of an input scanline must be representable as JDIMENSION. */
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247 | samplesperrow = (long) cinfo->image_width * (long) cinfo->input_components;
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248 | jd_samplesperrow = (JDIMENSION) samplesperrow;
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249 | if ((long) jd_samplesperrow != samplesperrow)
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250 | ERREXIT(cinfo, JERR_WIDTH_OVERFLOW);
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251 |
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252 | /* For now, precision must match compiled-in value... */
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253 | if (cinfo->data_precision != BITS_IN_JSAMPLE)
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254 | ERREXIT1(cinfo, JERR_BAD_PRECISION, cinfo->data_precision);
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255 |
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256 | /* Check that number of components won't exceed internal array sizes */
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257 | if (cinfo->num_components > MAX_COMPONENTS)
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258 | ERREXIT2(cinfo, JERR_COMPONENT_COUNT, cinfo->num_components,
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259 | MAX_COMPONENTS);
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260 |
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261 | /* Compute maximum sampling factors; check factor validity */
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262 | cinfo->max_h_samp_factor = 1;
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263 | cinfo->max_v_samp_factor = 1;
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264 | for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
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265 | ci++, compptr++) {
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266 | if (compptr->h_samp_factor<=0 || compptr->h_samp_factor>MAX_SAMP_FACTOR ||
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267 | compptr->v_samp_factor<=0 || compptr->v_samp_factor>MAX_SAMP_FACTOR)
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268 | ERREXIT(cinfo, JERR_BAD_SAMPLING);
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269 | cinfo->max_h_samp_factor = MAX(cinfo->max_h_samp_factor,
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270 | compptr->h_samp_factor);
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271 | cinfo->max_v_samp_factor = MAX(cinfo->max_v_samp_factor,
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272 | compptr->v_samp_factor);
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273 | }
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274 |
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275 | /* Compute dimensions of components */
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276 | for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
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277 | ci++, compptr++) {
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278 | /* Fill in the correct component_index value; don't rely on application */
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279 | compptr->component_index = ci;
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280 | /* In selecting the actual DCT scaling for each component, we try to
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281 | * scale down the chroma components via DCT scaling rather than downsampling.
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282 | * This saves time if the downsampler gets to use 1:1 scaling.
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283 | * Note this code adapts subsampling ratios which are powers of 2.
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284 | */
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285 | ssize = 1;
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286 | #ifdef DCT_SCALING_SUPPORTED
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287 | while (cinfo->min_DCT_h_scaled_size * ssize <=
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288 | (cinfo->do_fancy_downsampling ? DCTSIZE : DCTSIZE / 2) &&
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289 | (cinfo->max_h_samp_factor % (compptr->h_samp_factor * ssize * 2)) == 0) {
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290 | ssize = ssize * 2;
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291 | }
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292 | #endif
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293 | compptr->DCT_h_scaled_size = cinfo->min_DCT_h_scaled_size * ssize;
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294 | ssize = 1;
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295 | #ifdef DCT_SCALING_SUPPORTED
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296 | while (cinfo->min_DCT_v_scaled_size * ssize <=
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297 | (cinfo->do_fancy_downsampling ? DCTSIZE : DCTSIZE / 2) &&
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298 | (cinfo->max_v_samp_factor % (compptr->v_samp_factor * ssize * 2)) == 0) {
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299 | ssize = ssize * 2;
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300 | }
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301 | #endif
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302 | compptr->DCT_v_scaled_size = cinfo->min_DCT_v_scaled_size * ssize;
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303 |
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304 | /* We don't support DCT ratios larger than 2. */
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305 | if (compptr->DCT_h_scaled_size > compptr->DCT_v_scaled_size * 2)
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306 | compptr->DCT_h_scaled_size = compptr->DCT_v_scaled_size * 2;
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307 | else if (compptr->DCT_v_scaled_size > compptr->DCT_h_scaled_size * 2)
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308 | compptr->DCT_v_scaled_size = compptr->DCT_h_scaled_size * 2;
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309 |
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310 | /* Size in DCT blocks */
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311 | compptr->width_in_blocks = (JDIMENSION)
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312 | jdiv_round_up((long) cinfo->jpeg_width * (long) compptr->h_samp_factor,
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313 | (long) (cinfo->max_h_samp_factor * cinfo->block_size));
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314 | compptr->height_in_blocks = (JDIMENSION)
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315 | jdiv_round_up((long) cinfo->jpeg_height * (long) compptr->v_samp_factor,
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316 | (long) (cinfo->max_v_samp_factor * cinfo->block_size));
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317 | /* Size in samples */
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318 | compptr->downsampled_width = (JDIMENSION)
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319 | jdiv_round_up((long) cinfo->jpeg_width *
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320 | (long) (compptr->h_samp_factor * compptr->DCT_h_scaled_size),
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321 | (long) (cinfo->max_h_samp_factor * cinfo->block_size));
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322 | compptr->downsampled_height = (JDIMENSION)
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323 | jdiv_round_up((long) cinfo->jpeg_height *
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324 | (long) (compptr->v_samp_factor * compptr->DCT_v_scaled_size),
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325 | (long) (cinfo->max_v_samp_factor * cinfo->block_size));
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326 | /* Mark component needed (this flag isn't actually used for compression) */
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327 | compptr->component_needed = TRUE;
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328 | }
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329 |
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330 | /* Compute number of fully interleaved MCU rows (number of times that
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331 | * main controller will call coefficient controller).
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332 | */
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333 | cinfo->total_iMCU_rows = (JDIMENSION)
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334 | jdiv_round_up((long) cinfo->jpeg_height,
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335 | (long) (cinfo->max_v_samp_factor * cinfo->block_size));
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336 | }
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337 |
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338 |
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339 | #ifdef C_MULTISCAN_FILES_SUPPORTED
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340 |
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341 | LOCAL(void)
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342 | validate_script (j_compress_ptr cinfo)
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343 | /* Verify that the scan script in cinfo->scan_info[] is valid; also
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344 | * determine whether it uses progressive JPEG, and set cinfo->progressive_mode.
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345 | */
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346 | {
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347 | const jpeg_scan_info * scanptr;
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348 | int scanno, ncomps, ci, coefi, thisi;
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349 | int Ss, Se, Ah, Al;
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350 | boolean component_sent[MAX_COMPONENTS];
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351 | #ifdef C_PROGRESSIVE_SUPPORTED
|
---|
352 | int * last_bitpos_ptr;
|
---|
353 | int last_bitpos[MAX_COMPONENTS][DCTSIZE2];
|
---|
354 | /* -1 until that coefficient has been seen; then last Al for it */
|
---|
355 | #endif
|
---|
356 |
|
---|
357 | if (cinfo->num_scans <= 0)
|
---|
358 | ERREXIT1(cinfo, JERR_BAD_SCAN_SCRIPT, 0);
|
---|
359 |
|
---|
360 | /* For sequential JPEG, all scans must have Ss=0, Se=DCTSIZE2-1;
|
---|
361 | * for progressive JPEG, no scan can have this.
|
---|
362 | */
|
---|
363 | scanptr = cinfo->scan_info;
|
---|
364 | if (scanptr->Ss != 0 || scanptr->Se != DCTSIZE2-1) {
|
---|
365 | #ifdef C_PROGRESSIVE_SUPPORTED
|
---|
366 | cinfo->progressive_mode = TRUE;
|
---|
367 | last_bitpos_ptr = & last_bitpos[0][0];
|
---|
368 | for (ci = 0; ci < cinfo->num_components; ci++)
|
---|
369 | for (coefi = 0; coefi < DCTSIZE2; coefi++)
|
---|
370 | *last_bitpos_ptr++ = -1;
|
---|
371 | #else
|
---|
372 | ERREXIT(cinfo, JERR_NOT_COMPILED);
|
---|
373 | #endif
|
---|
374 | } else {
|
---|
375 | cinfo->progressive_mode = FALSE;
|
---|
376 | for (ci = 0; ci < cinfo->num_components; ci++)
|
---|
377 | component_sent[ci] = FALSE;
|
---|
378 | }
|
---|
379 |
|
---|
380 | for (scanno = 1; scanno <= cinfo->num_scans; scanptr++, scanno++) {
|
---|
381 | /* Validate component indexes */
|
---|
382 | ncomps = scanptr->comps_in_scan;
|
---|
383 | if (ncomps <= 0 || ncomps > MAX_COMPS_IN_SCAN)
|
---|
384 | ERREXIT2(cinfo, JERR_COMPONENT_COUNT, ncomps, MAX_COMPS_IN_SCAN);
|
---|
385 | for (ci = 0; ci < ncomps; ci++) {
|
---|
386 | thisi = scanptr->component_index[ci];
|
---|
387 | if (thisi < 0 || thisi >= cinfo->num_components)
|
---|
388 | ERREXIT1(cinfo, JERR_BAD_SCAN_SCRIPT, scanno);
|
---|
389 | /* Components must appear in SOF order within each scan */
|
---|
390 | if (ci > 0 && thisi <= scanptr->component_index[ci-1])
|
---|
391 | ERREXIT1(cinfo, JERR_BAD_SCAN_SCRIPT, scanno);
|
---|
392 | }
|
---|
393 | /* Validate progression parameters */
|
---|
394 | Ss = scanptr->Ss;
|
---|
395 | Se = scanptr->Se;
|
---|
396 | Ah = scanptr->Ah;
|
---|
397 | Al = scanptr->Al;
|
---|
398 | if (cinfo->progressive_mode) {
|
---|
399 | #ifdef C_PROGRESSIVE_SUPPORTED
|
---|
400 | /* The JPEG spec simply gives the ranges 0..13 for Ah and Al, but that
|
---|
401 | * seems wrong: the upper bound ought to depend on data precision.
|
---|
402 | * Perhaps they really meant 0..N+1 for N-bit precision.
|
---|
403 | * Here we allow 0..10 for 8-bit data; Al larger than 10 results in
|
---|
404 | * out-of-range reconstructed DC values during the first DC scan,
|
---|
405 | * which might cause problems for some decoders.
|
---|
406 | */
|
---|
407 | #if BITS_IN_JSAMPLE == 8
|
---|
408 | #define MAX_AH_AL 10
|
---|
409 | #else
|
---|
410 | #define MAX_AH_AL 13
|
---|
411 | #endif
|
---|
412 | if (Ss < 0 || Ss >= DCTSIZE2 || Se < Ss || Se >= DCTSIZE2 ||
|
---|
413 | Ah < 0 || Ah > MAX_AH_AL || Al < 0 || Al > MAX_AH_AL)
|
---|
414 | ERREXIT1(cinfo, JERR_BAD_PROG_SCRIPT, scanno);
|
---|
415 | if (Ss == 0) {
|
---|
416 | if (Se != 0) /* DC and AC together not OK */
|
---|
417 | ERREXIT1(cinfo, JERR_BAD_PROG_SCRIPT, scanno);
|
---|
418 | } else {
|
---|
419 | if (ncomps != 1) /* AC scans must be for only one component */
|
---|
420 | ERREXIT1(cinfo, JERR_BAD_PROG_SCRIPT, scanno);
|
---|
421 | }
|
---|
422 | for (ci = 0; ci < ncomps; ci++) {
|
---|
423 | last_bitpos_ptr = & last_bitpos[scanptr->component_index[ci]][0];
|
---|
424 | if (Ss != 0 && last_bitpos_ptr[0] < 0) /* AC without prior DC scan */
|
---|
425 | ERREXIT1(cinfo, JERR_BAD_PROG_SCRIPT, scanno);
|
---|
426 | for (coefi = Ss; coefi <= Se; coefi++) {
|
---|
427 | if (last_bitpos_ptr[coefi] < 0) {
|
---|
428 | /* first scan of this coefficient */
|
---|
429 | if (Ah != 0)
|
---|
430 | ERREXIT1(cinfo, JERR_BAD_PROG_SCRIPT, scanno);
|
---|
431 | } else {
|
---|
432 | /* not first scan */
|
---|
433 | if (Ah != last_bitpos_ptr[coefi] || Al != Ah-1)
|
---|
434 | ERREXIT1(cinfo, JERR_BAD_PROG_SCRIPT, scanno);
|
---|
435 | }
|
---|
436 | last_bitpos_ptr[coefi] = Al;
|
---|
437 | }
|
---|
438 | }
|
---|
439 | #endif
|
---|
440 | } else {
|
---|
441 | /* For sequential JPEG, all progression parameters must be these: */
|
---|
442 | if (Ss != 0 || Se != DCTSIZE2-1 || Ah != 0 || Al != 0)
|
---|
443 | ERREXIT1(cinfo, JERR_BAD_PROG_SCRIPT, scanno);
|
---|
444 | /* Make sure components are not sent twice */
|
---|
445 | for (ci = 0; ci < ncomps; ci++) {
|
---|
446 | thisi = scanptr->component_index[ci];
|
---|
447 | if (component_sent[thisi])
|
---|
448 | ERREXIT1(cinfo, JERR_BAD_SCAN_SCRIPT, scanno);
|
---|
449 | component_sent[thisi] = TRUE;
|
---|
450 | }
|
---|
451 | }
|
---|
452 | }
|
---|
453 |
|
---|
454 | /* Now verify that everything got sent. */
|
---|
455 | if (cinfo->progressive_mode) {
|
---|
456 | #ifdef C_PROGRESSIVE_SUPPORTED
|
---|
457 | /* For progressive mode, we only check that at least some DC data
|
---|
458 | * got sent for each component; the spec does not require that all bits
|
---|
459 | * of all coefficients be transmitted. Would it be wiser to enforce
|
---|
460 | * transmission of all coefficient bits??
|
---|
461 | */
|
---|
462 | for (ci = 0; ci < cinfo->num_components; ci++) {
|
---|
463 | if (last_bitpos[ci][0] < 0)
|
---|
464 | ERREXIT(cinfo, JERR_MISSING_DATA);
|
---|
465 | }
|
---|
466 | #endif
|
---|
467 | } else {
|
---|
468 | for (ci = 0; ci < cinfo->num_components; ci++) {
|
---|
469 | if (! component_sent[ci])
|
---|
470 | ERREXIT(cinfo, JERR_MISSING_DATA);
|
---|
471 | }
|
---|
472 | }
|
---|
473 | }
|
---|
474 |
|
---|
475 |
|
---|
476 | LOCAL(void)
|
---|
477 | reduce_script (j_compress_ptr cinfo)
|
---|
478 | /* Adapt scan script for use with reduced block size;
|
---|
479 | * assume that script has been validated before.
|
---|
480 | */
|
---|
481 | {
|
---|
482 | jpeg_scan_info * scanptr;
|
---|
483 | int idxout, idxin;
|
---|
484 |
|
---|
485 | /* Circumvent const declaration for this function */
|
---|
486 | scanptr = (jpeg_scan_info *) cinfo->scan_info;
|
---|
487 | idxout = 0;
|
---|
488 |
|
---|
489 | for (idxin = 0; idxin < cinfo->num_scans; idxin++) {
|
---|
490 | /* After skipping, idxout becomes smaller than idxin */
|
---|
491 | if (idxin != idxout)
|
---|
492 | /* Copy rest of data;
|
---|
493 | * note we stay in given chunk of allocated memory.
|
---|
494 | */
|
---|
495 | scanptr[idxout] = scanptr[idxin];
|
---|
496 | if (scanptr[idxout].Ss > cinfo->lim_Se)
|
---|
497 | /* Entire scan out of range - skip this entry */
|
---|
498 | continue;
|
---|
499 | if (scanptr[idxout].Se > cinfo->lim_Se)
|
---|
500 | /* Limit scan to end of block */
|
---|
501 | scanptr[idxout].Se = cinfo->lim_Se;
|
---|
502 | idxout++;
|
---|
503 | }
|
---|
504 |
|
---|
505 | cinfo->num_scans = idxout;
|
---|
506 | }
|
---|
507 |
|
---|
508 | #endif /* C_MULTISCAN_FILES_SUPPORTED */
|
---|
509 |
|
---|
510 |
|
---|
511 | LOCAL(void)
|
---|
512 | select_scan_parameters (j_compress_ptr cinfo)
|
---|
513 | /* Set up the scan parameters for the current scan */
|
---|
514 | {
|
---|
515 | int ci;
|
---|
516 |
|
---|
517 | #ifdef C_MULTISCAN_FILES_SUPPORTED
|
---|
518 | if (cinfo->scan_info != NULL) {
|
---|
519 | /* Prepare for current scan --- the script is already validated */
|
---|
520 | my_master_ptr master = (my_master_ptr) cinfo->master;
|
---|
521 | const jpeg_scan_info * scanptr = cinfo->scan_info + master->scan_number;
|
---|
522 |
|
---|
523 | cinfo->comps_in_scan = scanptr->comps_in_scan;
|
---|
524 | for (ci = 0; ci < scanptr->comps_in_scan; ci++) {
|
---|
525 | cinfo->cur_comp_info[ci] =
|
---|
526 | &cinfo->comp_info[scanptr->component_index[ci]];
|
---|
527 | }
|
---|
528 | if (cinfo->progressive_mode) {
|
---|
529 | cinfo->Ss = scanptr->Ss;
|
---|
530 | cinfo->Se = scanptr->Se;
|
---|
531 | cinfo->Ah = scanptr->Ah;
|
---|
532 | cinfo->Al = scanptr->Al;
|
---|
533 | return;
|
---|
534 | }
|
---|
535 | }
|
---|
536 | else
|
---|
537 | #endif
|
---|
538 | {
|
---|
539 | /* Prepare for single sequential-JPEG scan containing all components */
|
---|
540 | if (cinfo->num_components > MAX_COMPS_IN_SCAN)
|
---|
541 | ERREXIT2(cinfo, JERR_COMPONENT_COUNT, cinfo->num_components,
|
---|
542 | MAX_COMPS_IN_SCAN);
|
---|
543 | cinfo->comps_in_scan = cinfo->num_components;
|
---|
544 | for (ci = 0; ci < cinfo->num_components; ci++) {
|
---|
545 | cinfo->cur_comp_info[ci] = &cinfo->comp_info[ci];
|
---|
546 | }
|
---|
547 | }
|
---|
548 | cinfo->Ss = 0;
|
---|
549 | cinfo->Se = cinfo->block_size * cinfo->block_size - 1;
|
---|
550 | cinfo->Ah = 0;
|
---|
551 | cinfo->Al = 0;
|
---|
552 | }
|
---|
553 |
|
---|
554 |
|
---|
555 | LOCAL(void)
|
---|
556 | per_scan_setup (j_compress_ptr cinfo)
|
---|
557 | /* Do computations that are needed before processing a JPEG scan */
|
---|
558 | /* cinfo->comps_in_scan and cinfo->cur_comp_info[] are already set */
|
---|
559 | {
|
---|
560 | int ci, mcublks, tmp;
|
---|
561 | jpeg_component_info *compptr;
|
---|
562 |
|
---|
563 | if (cinfo->comps_in_scan == 1) {
|
---|
564 |
|
---|
565 | /* Noninterleaved (single-component) scan */
|
---|
566 | compptr = cinfo->cur_comp_info[0];
|
---|
567 |
|
---|
568 | /* Overall image size in MCUs */
|
---|
569 | cinfo->MCUs_per_row = compptr->width_in_blocks;
|
---|
570 | cinfo->MCU_rows_in_scan = compptr->height_in_blocks;
|
---|
571 |
|
---|
572 | /* For noninterleaved scan, always one block per MCU */
|
---|
573 | compptr->MCU_width = 1;
|
---|
574 | compptr->MCU_height = 1;
|
---|
575 | compptr->MCU_blocks = 1;
|
---|
576 | compptr->MCU_sample_width = compptr->DCT_h_scaled_size;
|
---|
577 | compptr->last_col_width = 1;
|
---|
578 | /* For noninterleaved scans, it is convenient to define last_row_height
|
---|
579 | * as the number of block rows present in the last iMCU row.
|
---|
580 | */
|
---|
581 | tmp = (int) (compptr->height_in_blocks % compptr->v_samp_factor);
|
---|
582 | if (tmp == 0) tmp = compptr->v_samp_factor;
|
---|
583 | compptr->last_row_height = tmp;
|
---|
584 |
|
---|
585 | /* Prepare array describing MCU composition */
|
---|
586 | cinfo->blocks_in_MCU = 1;
|
---|
587 | cinfo->MCU_membership[0] = 0;
|
---|
588 |
|
---|
589 | } else {
|
---|
590 |
|
---|
591 | /* Interleaved (multi-component) scan */
|
---|
592 | if (cinfo->comps_in_scan <= 0 || cinfo->comps_in_scan > MAX_COMPS_IN_SCAN)
|
---|
593 | ERREXIT2(cinfo, JERR_COMPONENT_COUNT, cinfo->comps_in_scan,
|
---|
594 | MAX_COMPS_IN_SCAN);
|
---|
595 |
|
---|
596 | /* Overall image size in MCUs */
|
---|
597 | cinfo->MCUs_per_row = (JDIMENSION)
|
---|
598 | jdiv_round_up((long) cinfo->jpeg_width,
|
---|
599 | (long) (cinfo->max_h_samp_factor * cinfo->block_size));
|
---|
600 | cinfo->MCU_rows_in_scan = (JDIMENSION)
|
---|
601 | jdiv_round_up((long) cinfo->jpeg_height,
|
---|
602 | (long) (cinfo->max_v_samp_factor * cinfo->block_size));
|
---|
603 |
|
---|
604 | cinfo->blocks_in_MCU = 0;
|
---|
605 |
|
---|
606 | for (ci = 0; ci < cinfo->comps_in_scan; ci++) {
|
---|
607 | compptr = cinfo->cur_comp_info[ci];
|
---|
608 | /* Sampling factors give # of blocks of component in each MCU */
|
---|
609 | compptr->MCU_width = compptr->h_samp_factor;
|
---|
610 | compptr->MCU_height = compptr->v_samp_factor;
|
---|
611 | compptr->MCU_blocks = compptr->MCU_width * compptr->MCU_height;
|
---|
612 | compptr->MCU_sample_width = compptr->MCU_width * compptr->DCT_h_scaled_size;
|
---|
613 | /* Figure number of non-dummy blocks in last MCU column & row */
|
---|
614 | tmp = (int) (compptr->width_in_blocks % compptr->MCU_width);
|
---|
615 | if (tmp == 0) tmp = compptr->MCU_width;
|
---|
616 | compptr->last_col_width = tmp;
|
---|
617 | tmp = (int) (compptr->height_in_blocks % compptr->MCU_height);
|
---|
618 | if (tmp == 0) tmp = compptr->MCU_height;
|
---|
619 | compptr->last_row_height = tmp;
|
---|
620 | /* Prepare array describing MCU composition */
|
---|
621 | mcublks = compptr->MCU_blocks;
|
---|
622 | if (cinfo->blocks_in_MCU + mcublks > C_MAX_BLOCKS_IN_MCU)
|
---|
623 | ERREXIT(cinfo, JERR_BAD_MCU_SIZE);
|
---|
624 | while (mcublks-- > 0) {
|
---|
625 | cinfo->MCU_membership[cinfo->blocks_in_MCU++] = ci;
|
---|
626 | }
|
---|
627 | }
|
---|
628 |
|
---|
629 | }
|
---|
630 |
|
---|
631 | /* Convert restart specified in rows to actual MCU count. */
|
---|
632 | /* Note that count must fit in 16 bits, so we provide limiting. */
|
---|
633 | if (cinfo->restart_in_rows > 0) {
|
---|
634 | long nominal = (long) cinfo->restart_in_rows * (long) cinfo->MCUs_per_row;
|
---|
635 | cinfo->restart_interval = (unsigned int) MIN(nominal, 65535L);
|
---|
636 | }
|
---|
637 | }
|
---|
638 |
|
---|
639 |
|
---|
640 | /*
|
---|
641 | * Per-pass setup.
|
---|
642 | * This is called at the beginning of each pass. We determine which modules
|
---|
643 | * will be active during this pass and give them appropriate start_pass calls.
|
---|
644 | * We also set is_last_pass to indicate whether any more passes will be
|
---|
645 | * required.
|
---|
646 | */
|
---|
647 |
|
---|
648 | METHODDEF(void)
|
---|
649 | prepare_for_pass (j_compress_ptr cinfo)
|
---|
650 | {
|
---|
651 | my_master_ptr master = (my_master_ptr) cinfo->master;
|
---|
652 |
|
---|
653 | switch (master->pass_type) {
|
---|
654 | case main_pass:
|
---|
655 | /* Initial pass: will collect input data, and do either Huffman
|
---|
656 | * optimization or data output for the first scan.
|
---|
657 | */
|
---|
658 | select_scan_parameters(cinfo);
|
---|
659 | per_scan_setup(cinfo);
|
---|
660 | if (! cinfo->raw_data_in) {
|
---|
661 | (*cinfo->cconvert->start_pass) (cinfo);
|
---|
662 | (*cinfo->downsample->start_pass) (cinfo);
|
---|
663 | (*cinfo->prep->start_pass) (cinfo, JBUF_PASS_THRU);
|
---|
664 | }
|
---|
665 | (*cinfo->fdct->start_pass) (cinfo);
|
---|
666 | (*cinfo->entropy->start_pass) (cinfo, cinfo->optimize_coding);
|
---|
667 | (*cinfo->coef->start_pass) (cinfo,
|
---|
668 | (master->total_passes > 1 ?
|
---|
669 | JBUF_SAVE_AND_PASS : JBUF_PASS_THRU));
|
---|
670 | (*cinfo->main->start_pass) (cinfo, JBUF_PASS_THRU);
|
---|
671 | if (cinfo->optimize_coding) {
|
---|
672 | /* No immediate data output; postpone writing frame/scan headers */
|
---|
673 | master->pub.call_pass_startup = FALSE;
|
---|
674 | } else {
|
---|
675 | /* Will write frame/scan headers at first jpeg_write_scanlines call */
|
---|
676 | master->pub.call_pass_startup = TRUE;
|
---|
677 | }
|
---|
678 | break;
|
---|
679 | #ifdef ENTROPY_OPT_SUPPORTED
|
---|
680 | case huff_opt_pass:
|
---|
681 | /* Do Huffman optimization for a scan after the first one. */
|
---|
682 | select_scan_parameters(cinfo);
|
---|
683 | per_scan_setup(cinfo);
|
---|
684 | if (cinfo->Ss != 0 || cinfo->Ah == 0) {
|
---|
685 | (*cinfo->entropy->start_pass) (cinfo, TRUE);
|
---|
686 | (*cinfo->coef->start_pass) (cinfo, JBUF_CRANK_DEST);
|
---|
687 | master->pub.call_pass_startup = FALSE;
|
---|
688 | break;
|
---|
689 | }
|
---|
690 | /* Special case: Huffman DC refinement scans need no Huffman table
|
---|
691 | * and therefore we can skip the optimization pass for them.
|
---|
692 | */
|
---|
693 | master->pass_type = output_pass;
|
---|
694 | master->pass_number++;
|
---|
695 | /*FALLTHROUGH*/
|
---|
696 | #endif
|
---|
697 | case output_pass:
|
---|
698 | /* Do a data-output pass. */
|
---|
699 | /* We need not repeat per-scan setup if prior optimization pass did it. */
|
---|
700 | if (! cinfo->optimize_coding) {
|
---|
701 | select_scan_parameters(cinfo);
|
---|
702 | per_scan_setup(cinfo);
|
---|
703 | }
|
---|
704 | (*cinfo->entropy->start_pass) (cinfo, FALSE);
|
---|
705 | (*cinfo->coef->start_pass) (cinfo, JBUF_CRANK_DEST);
|
---|
706 | /* We emit frame/scan headers now */
|
---|
707 | if (master->scan_number == 0)
|
---|
708 | (*cinfo->marker->write_frame_header) (cinfo);
|
---|
709 | (*cinfo->marker->write_scan_header) (cinfo);
|
---|
710 | master->pub.call_pass_startup = FALSE;
|
---|
711 | break;
|
---|
712 | default:
|
---|
713 | ERREXIT(cinfo, JERR_NOT_COMPILED);
|
---|
714 | }
|
---|
715 |
|
---|
716 | master->pub.is_last_pass = (master->pass_number == master->total_passes-1);
|
---|
717 |
|
---|
718 | /* Set up progress monitor's pass info if present */
|
---|
719 | if (cinfo->progress != NULL) {
|
---|
720 | cinfo->progress->completed_passes = master->pass_number;
|
---|
721 | cinfo->progress->total_passes = master->total_passes;
|
---|
722 | }
|
---|
723 | }
|
---|
724 |
|
---|
725 |
|
---|
726 | /*
|
---|
727 | * Special start-of-pass hook.
|
---|
728 | * This is called by jpeg_write_scanlines if call_pass_startup is TRUE.
|
---|
729 | * In single-pass processing, we need this hook because we don't want to
|
---|
730 | * write frame/scan headers during jpeg_start_compress; we want to let the
|
---|
731 | * application write COM markers etc. between jpeg_start_compress and the
|
---|
732 | * jpeg_write_scanlines loop.
|
---|
733 | * In multi-pass processing, this routine is not used.
|
---|
734 | */
|
---|
735 |
|
---|
736 | METHODDEF(void)
|
---|
737 | pass_startup (j_compress_ptr cinfo)
|
---|
738 | {
|
---|
739 | cinfo->master->call_pass_startup = FALSE; /* reset flag so call only once */
|
---|
740 |
|
---|
741 | (*cinfo->marker->write_frame_header) (cinfo);
|
---|
742 | (*cinfo->marker->write_scan_header) (cinfo);
|
---|
743 | }
|
---|
744 |
|
---|
745 |
|
---|
746 | /*
|
---|
747 | * Finish up at end of pass.
|
---|
748 | */
|
---|
749 |
|
---|
750 | METHODDEF(void)
|
---|
751 | finish_pass_master (j_compress_ptr cinfo)
|
---|
752 | {
|
---|
753 | my_master_ptr master = (my_master_ptr) cinfo->master;
|
---|
754 |
|
---|
755 | /* The entropy coder always needs an end-of-pass call,
|
---|
756 | * either to analyze statistics or to flush its output buffer.
|
---|
757 | */
|
---|
758 | (*cinfo->entropy->finish_pass) (cinfo);
|
---|
759 |
|
---|
760 | /* Update state for next pass */
|
---|
761 | switch (master->pass_type) {
|
---|
762 | case main_pass:
|
---|
763 | /* next pass is either output of scan 0 (after optimization)
|
---|
764 | * or output of scan 1 (if no optimization).
|
---|
765 | */
|
---|
766 | master->pass_type = output_pass;
|
---|
767 | if (! cinfo->optimize_coding)
|
---|
768 | master->scan_number++;
|
---|
769 | break;
|
---|
770 | case huff_opt_pass:
|
---|
771 | /* next pass is always output of current scan */
|
---|
772 | master->pass_type = output_pass;
|
---|
773 | break;
|
---|
774 | case output_pass:
|
---|
775 | /* next pass is either optimization or output of next scan */
|
---|
776 | if (cinfo->optimize_coding)
|
---|
777 | master->pass_type = huff_opt_pass;
|
---|
778 | master->scan_number++;
|
---|
779 | break;
|
---|
780 | }
|
---|
781 |
|
---|
782 | master->pass_number++;
|
---|
783 | }
|
---|
784 |
|
---|
785 |
|
---|
786 | /*
|
---|
787 | * Initialize master compression control.
|
---|
788 | */
|
---|
789 |
|
---|
790 | GLOBAL(void)
|
---|
791 | jinit_c_master_control (j_compress_ptr cinfo, boolean transcode_only)
|
---|
792 | {
|
---|
793 | my_master_ptr master;
|
---|
794 |
|
---|
795 | master = (my_master_ptr)
|
---|
796 | (*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_IMAGE,
|
---|
797 | SIZEOF(my_comp_master));
|
---|
798 | cinfo->master = (struct jpeg_comp_master *) master;
|
---|
799 | master->pub.prepare_for_pass = prepare_for_pass;
|
---|
800 | master->pub.pass_startup = pass_startup;
|
---|
801 | master->pub.finish_pass = finish_pass_master;
|
---|
802 | master->pub.is_last_pass = FALSE;
|
---|
803 |
|
---|
804 | /* Validate parameters, determine derived values */
|
---|
805 | initial_setup(cinfo, transcode_only);
|
---|
806 |
|
---|
807 | if (cinfo->scan_info != NULL) {
|
---|
808 | #ifdef C_MULTISCAN_FILES_SUPPORTED
|
---|
809 | validate_script(cinfo);
|
---|
810 | if (cinfo->block_size < DCTSIZE)
|
---|
811 | reduce_script(cinfo);
|
---|
812 | #else
|
---|
813 | ERREXIT(cinfo, JERR_NOT_COMPILED);
|
---|
814 | #endif
|
---|
815 | } else {
|
---|
816 | cinfo->progressive_mode = FALSE;
|
---|
817 | cinfo->num_scans = 1;
|
---|
818 | }
|
---|
819 |
|
---|
820 | if ((cinfo->progressive_mode || cinfo->block_size < DCTSIZE) &&
|
---|
821 | !cinfo->arith_code) /* TEMPORARY HACK ??? */
|
---|
822 | /* assume default tables no good for progressive or downscale mode */
|
---|
823 | cinfo->optimize_coding = TRUE;
|
---|
824 |
|
---|
825 | /* Initialize my private state */
|
---|
826 | if (transcode_only) {
|
---|
827 | /* no main pass in transcoding */
|
---|
828 | if (cinfo->optimize_coding)
|
---|
829 | master->pass_type = huff_opt_pass;
|
---|
830 | else
|
---|
831 | master->pass_type = output_pass;
|
---|
832 | } else {
|
---|
833 | /* for normal compression, first pass is always this type: */
|
---|
834 | master->pass_type = main_pass;
|
---|
835 | }
|
---|
836 | master->scan_number = 0;
|
---|
837 | master->pass_number = 0;
|
---|
838 | if (cinfo->optimize_coding)
|
---|
839 | master->total_passes = cinfo->num_scans * 2;
|
---|
840 | else
|
---|
841 | master->total_passes = cinfo->num_scans;
|
---|
842 | }
|
---|