| 1 | /* | 
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| 2 | * jctrans.c | 
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| 3 | * | 
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| 4 | * Copyright (C) 1995-1998, Thomas G. Lane. | 
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| 5 | * Modified 2000-2009 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 library routines for transcoding compression, | 
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| 10 | * that is, writing raw DCT coefficient arrays to an output JPEG file. | 
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| 11 | * The routines in jcapimin.c will also be needed by a transcoder. | 
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| 12 | */ | 
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| 13 |  | 
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| 14 | #define JPEG_INTERNALS | 
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| 15 | #include "jinclude.h" | 
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| 16 | #include "jpeglib.h" | 
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| 17 |  | 
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| 18 |  | 
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| 19 | /* Forward declarations */ | 
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| 20 | LOCAL(void) transencode_master_selection | 
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| 21 | JPP((j_compress_ptr cinfo, jvirt_barray_ptr * coef_arrays)); | 
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| 22 | LOCAL(void) transencode_coef_controller | 
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| 23 | JPP((j_compress_ptr cinfo, jvirt_barray_ptr * coef_arrays)); | 
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| 24 |  | 
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| 25 |  | 
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| 26 | /* | 
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| 27 | * Compression initialization for writing raw-coefficient data. | 
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| 28 | * Before calling this, all parameters and a data destination must be set up. | 
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| 29 | * Call jpeg_finish_compress() to actually write the data. | 
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| 30 | * | 
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| 31 | * The number of passed virtual arrays must match cinfo->num_components. | 
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| 32 | * Note that the virtual arrays need not be filled or even realized at | 
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| 33 | * the time write_coefficients is called; indeed, if the virtual arrays | 
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| 34 | * were requested from this compression object's memory manager, they | 
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| 35 | * typically will be realized during this routine and filled afterwards. | 
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| 36 | */ | 
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| 37 |  | 
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| 38 | GLOBAL(void) | 
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| 39 | jpeg_write_coefficients (j_compress_ptr cinfo, jvirt_barray_ptr * coef_arrays) | 
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| 40 | { | 
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| 41 | if (cinfo->global_state != CSTATE_START) | 
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| 42 | ERREXIT1(cinfo, JERR_BAD_STATE, cinfo->global_state); | 
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| 43 | /* Mark all tables to be written */ | 
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| 44 | jpeg_suppress_tables(cinfo, FALSE); | 
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| 45 | /* (Re)initialize error mgr and destination modules */ | 
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| 46 | (*cinfo->err->reset_error_mgr) ((j_common_ptr) cinfo); | 
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| 47 | (*cinfo->dest->init_destination) (cinfo); | 
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| 48 | /* Perform master selection of active modules */ | 
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| 49 | transencode_master_selection(cinfo, coef_arrays); | 
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| 50 | /* Wait for jpeg_finish_compress() call */ | 
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| 51 | cinfo->next_scanline = 0;     /* so jpeg_write_marker works */ | 
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| 52 | cinfo->global_state = CSTATE_WRCOEFS; | 
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| 53 | } | 
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| 54 |  | 
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| 55 |  | 
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| 56 | /* | 
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| 57 | * Initialize the compression object with default parameters, | 
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| 58 | * then copy from the source object all parameters needed for lossless | 
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| 59 | * transcoding.  Parameters that can be varied without loss (such as | 
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| 60 | * scan script and Huffman optimization) are left in their default states. | 
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| 61 | */ | 
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| 62 |  | 
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| 63 | GLOBAL(void) | 
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| 64 | jpeg_copy_critical_parameters (j_decompress_ptr srcinfo, | 
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| 65 | j_compress_ptr dstinfo) | 
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| 66 | { | 
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| 67 | JQUANT_TBL ** qtblptr; | 
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| 68 | jpeg_component_info *incomp, *outcomp; | 
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| 69 | JQUANT_TBL *c_quant, *slot_quant; | 
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| 70 | int tblno, ci, coefi; | 
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| 71 |  | 
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| 72 | /* Safety check to ensure start_compress not called yet. */ | 
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| 73 | if (dstinfo->global_state != CSTATE_START) | 
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| 74 | ERREXIT1(dstinfo, JERR_BAD_STATE, dstinfo->global_state); | 
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| 75 | /* Copy fundamental image dimensions */ | 
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| 76 | dstinfo->image_width = srcinfo->image_width; | 
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| 77 | dstinfo->image_height = srcinfo->image_height; | 
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| 78 | dstinfo->input_components = srcinfo->num_components; | 
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| 79 | dstinfo->in_color_space = srcinfo->jpeg_color_space; | 
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| 80 | dstinfo->jpeg_width = srcinfo->output_width; | 
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| 81 | dstinfo->jpeg_height = srcinfo->output_height; | 
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| 82 | dstinfo->min_DCT_h_scaled_size = srcinfo->min_DCT_h_scaled_size; | 
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| 83 | dstinfo->min_DCT_v_scaled_size = srcinfo->min_DCT_v_scaled_size; | 
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| 84 | /* Initialize all parameters to default values */ | 
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| 85 | jpeg_set_defaults(dstinfo); | 
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| 86 | /* jpeg_set_defaults may choose wrong colorspace, eg YCbCr if input is RGB. | 
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| 87 | * Fix it to get the right header markers for the image colorspace. | 
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| 88 | */ | 
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| 89 | jpeg_set_colorspace(dstinfo, srcinfo->jpeg_color_space); | 
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| 90 | dstinfo->data_precision = srcinfo->data_precision; | 
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| 91 | dstinfo->CCIR601_sampling = srcinfo->CCIR601_sampling; | 
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| 92 | /* Copy the source's quantization tables. */ | 
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| 93 | for (tblno = 0; tblno < NUM_QUANT_TBLS; tblno++) { | 
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| 94 | if (srcinfo->quant_tbl_ptrs[tblno] != NULL) { | 
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| 95 | qtblptr = & dstinfo->quant_tbl_ptrs[tblno]; | 
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| 96 | if (*qtblptr == NULL) | 
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| 97 | *qtblptr = jpeg_alloc_quant_table((j_common_ptr) dstinfo); | 
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| 98 | MEMCOPY((*qtblptr)->quantval, | 
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| 99 | srcinfo->quant_tbl_ptrs[tblno]->quantval, | 
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| 100 | SIZEOF((*qtblptr)->quantval)); | 
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| 101 | (*qtblptr)->sent_table = FALSE; | 
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| 102 | } | 
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| 103 | } | 
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| 104 | /* Copy the source's per-component info. | 
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| 105 | * Note we assume jpeg_set_defaults has allocated the dest comp_info array. | 
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| 106 | */ | 
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| 107 | dstinfo->num_components = srcinfo->num_components; | 
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| 108 | if (dstinfo->num_components < 1 || dstinfo->num_components > MAX_COMPONENTS) | 
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| 109 | ERREXIT2(dstinfo, JERR_COMPONENT_COUNT, dstinfo->num_components, | 
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| 110 | MAX_COMPONENTS); | 
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| 111 | for (ci = 0, incomp = srcinfo->comp_info, outcomp = dstinfo->comp_info; | 
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| 112 | ci < dstinfo->num_components; ci++, incomp++, outcomp++) { | 
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| 113 | outcomp->component_id = incomp->component_id; | 
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| 114 | outcomp->h_samp_factor = incomp->h_samp_factor; | 
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| 115 | outcomp->v_samp_factor = incomp->v_samp_factor; | 
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| 116 | outcomp->quant_tbl_no = incomp->quant_tbl_no; | 
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| 117 | /* Make sure saved quantization table for component matches the qtable | 
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| 118 | * slot.  If not, the input file re-used this qtable slot. | 
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| 119 | * IJG encoder currently cannot duplicate this. | 
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| 120 | */ | 
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| 121 | tblno = outcomp->quant_tbl_no; | 
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| 122 | if (tblno < 0 || tblno >= NUM_QUANT_TBLS || | 
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| 123 | srcinfo->quant_tbl_ptrs[tblno] == NULL) | 
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| 124 | ERREXIT1(dstinfo, JERR_NO_QUANT_TABLE, tblno); | 
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| 125 | slot_quant = srcinfo->quant_tbl_ptrs[tblno]; | 
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| 126 | c_quant = incomp->quant_table; | 
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| 127 | if (c_quant != NULL) { | 
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| 128 | for (coefi = 0; coefi < DCTSIZE2; coefi++) { | 
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| 129 | if (c_quant->quantval[coefi] != slot_quant->quantval[coefi]) | 
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| 130 | ERREXIT1(dstinfo, JERR_MISMATCHED_QUANT_TABLE, tblno); | 
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| 131 | } | 
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| 132 | } | 
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| 133 | /* Note: we do not copy the source's Huffman table assignments; | 
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| 134 | * instead we rely on jpeg_set_colorspace to have made a suitable choice. | 
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| 135 | */ | 
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| 136 | } | 
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| 137 | /* Also copy JFIF version and resolution information, if available. | 
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| 138 | * Strictly speaking this isn't "critical" info, but it's nearly | 
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| 139 | * always appropriate to copy it if available.  In particular, | 
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| 140 | * if the application chooses to copy JFIF 1.02 extension markers from | 
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| 141 | * the source file, we need to copy the version to make sure we don't | 
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| 142 | * emit a file that has 1.02 extensions but a claimed version of 1.01. | 
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| 143 | * We will *not*, however, copy version info from mislabeled "2.01" files. | 
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| 144 | */ | 
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| 145 | if (srcinfo->saw_JFIF_marker) { | 
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| 146 | if (srcinfo->JFIF_major_version == 1) { | 
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| 147 | dstinfo->JFIF_major_version = srcinfo->JFIF_major_version; | 
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| 148 | dstinfo->JFIF_minor_version = srcinfo->JFIF_minor_version; | 
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| 149 | } | 
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| 150 | dstinfo->density_unit = srcinfo->density_unit; | 
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| 151 | dstinfo->X_density = srcinfo->X_density; | 
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| 152 | dstinfo->Y_density = srcinfo->Y_density; | 
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| 153 | } | 
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| 154 | } | 
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| 155 |  | 
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| 156 |  | 
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| 157 | /* | 
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| 158 | * Master selection of compression modules for transcoding. | 
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| 159 | * This substitutes for jcinit.c's initialization of the full compressor. | 
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| 160 | */ | 
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| 161 |  | 
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| 162 | LOCAL(void) | 
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| 163 | transencode_master_selection (j_compress_ptr cinfo, | 
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| 164 | jvirt_barray_ptr * coef_arrays) | 
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| 165 | { | 
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| 166 | /* Initialize master control (includes parameter checking/processing) */ | 
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| 167 | jinit_c_master_control(cinfo, TRUE /* transcode only */); | 
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| 168 |  | 
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| 169 | /* Entropy encoding: either Huffman or arithmetic coding. */ | 
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| 170 | if (cinfo->arith_code) | 
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| 171 | jinit_arith_encoder(cinfo); | 
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| 172 | else { | 
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| 173 | jinit_huff_encoder(cinfo); | 
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| 174 | } | 
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| 175 |  | 
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| 176 | /* We need a special coefficient buffer controller. */ | 
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| 177 | transencode_coef_controller(cinfo, coef_arrays); | 
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| 178 |  | 
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| 179 | jinit_marker_writer(cinfo); | 
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| 180 |  | 
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| 181 | /* We can now tell the memory manager to allocate virtual arrays. */ | 
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| 182 | (*cinfo->mem->realize_virt_arrays) ((j_common_ptr) cinfo); | 
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| 183 |  | 
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| 184 | /* Write the datastream header (SOI, JFIF) immediately. | 
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| 185 | * Frame and scan headers are postponed till later. | 
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| 186 | * This lets application insert special markers after the SOI. | 
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| 187 | */ | 
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| 188 | (*cinfo->marker->write_file_header) (cinfo); | 
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| 189 | } | 
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| 190 |  | 
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| 191 |  | 
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| 192 | /* | 
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| 193 | * The rest of this file is a special implementation of the coefficient | 
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| 194 | * buffer controller.  This is similar to jccoefct.c, but it handles only | 
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| 195 | * output from presupplied virtual arrays.  Furthermore, we generate any | 
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| 196 | * dummy padding blocks on-the-fly rather than expecting them to be present | 
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| 197 | * in the arrays. | 
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| 198 | */ | 
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| 199 |  | 
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| 200 | /* Private buffer controller object */ | 
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| 201 |  | 
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| 202 | typedef struct { | 
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| 203 | struct jpeg_c_coef_controller pub; /* public fields */ | 
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| 204 |  | 
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| 205 | JDIMENSION iMCU_row_num;      /* iMCU row # within image */ | 
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| 206 | JDIMENSION mcu_ctr;           /* counts MCUs processed in current row */ | 
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| 207 | int MCU_vert_offset;          /* counts MCU rows within iMCU row */ | 
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| 208 | int MCU_rows_per_iMCU_row;    /* number of such rows needed */ | 
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| 209 |  | 
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| 210 | /* Virtual block array for each component. */ | 
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| 211 | jvirt_barray_ptr * whole_image; | 
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| 212 |  | 
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| 213 | /* Workspace for constructing dummy blocks at right/bottom edges. */ | 
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| 214 | JBLOCKROW dummy_buffer[C_MAX_BLOCKS_IN_MCU]; | 
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| 215 | } my_coef_controller; | 
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| 216 |  | 
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| 217 | typedef my_coef_controller * my_coef_ptr; | 
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| 218 |  | 
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| 219 |  | 
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| 220 | LOCAL(void) | 
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| 221 | start_iMCU_row (j_compress_ptr cinfo) | 
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| 222 | /* Reset within-iMCU-row counters for a new row */ | 
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| 223 | { | 
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| 224 | my_coef_ptr coef = (my_coef_ptr) cinfo->coef; | 
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| 225 |  | 
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| 226 | /* In an interleaved scan, an MCU row is the same as an iMCU row. | 
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| 227 | * In a noninterleaved scan, an iMCU row has v_samp_factor MCU rows. | 
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| 228 | * But at the bottom of the image, process only what's left. | 
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| 229 | */ | 
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| 230 | if (cinfo->comps_in_scan > 1) { | 
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| 231 | coef->MCU_rows_per_iMCU_row = 1; | 
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| 232 | } else { | 
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| 233 | if (coef->iMCU_row_num < (cinfo->total_iMCU_rows-1)) | 
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| 234 | coef->MCU_rows_per_iMCU_row = cinfo->cur_comp_info[0]->v_samp_factor; | 
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| 235 | else | 
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| 236 | coef->MCU_rows_per_iMCU_row = cinfo->cur_comp_info[0]->last_row_height; | 
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| 237 | } | 
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| 238 |  | 
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| 239 | coef->mcu_ctr = 0; | 
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| 240 | coef->MCU_vert_offset = 0; | 
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| 241 | } | 
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| 242 |  | 
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| 243 |  | 
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| 244 | /* | 
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| 245 | * Initialize for a processing pass. | 
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| 246 | */ | 
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| 247 |  | 
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| 248 | METHODDEF(void) | 
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| 249 | start_pass_coef (j_compress_ptr cinfo, J_BUF_MODE pass_mode) | 
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| 250 | { | 
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| 251 | my_coef_ptr coef = (my_coef_ptr) cinfo->coef; | 
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| 252 |  | 
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| 253 | if (pass_mode != JBUF_CRANK_DEST) | 
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| 254 | ERREXIT(cinfo, JERR_BAD_BUFFER_MODE); | 
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| 255 |  | 
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| 256 | coef->iMCU_row_num = 0; | 
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| 257 | start_iMCU_row(cinfo); | 
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| 258 | } | 
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| 259 |  | 
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| 260 |  | 
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| 261 | /* | 
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| 262 | * Process some data. | 
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| 263 | * We process the equivalent of one fully interleaved MCU row ("iMCU" row) | 
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| 264 | * per call, ie, v_samp_factor block rows for each component in the scan. | 
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| 265 | * The data is obtained from the virtual arrays and fed to the entropy coder. | 
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| 266 | * Returns TRUE if the iMCU row is completed, FALSE if suspended. | 
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| 267 | * | 
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| 268 | * NB: input_buf is ignored; it is likely to be a NULL pointer. | 
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| 269 | */ | 
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| 270 |  | 
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| 271 | METHODDEF(boolean) | 
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| 272 | compress_output (j_compress_ptr cinfo, JSAMPIMAGE input_buf) | 
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| 273 | { | 
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| 274 | my_coef_ptr coef = (my_coef_ptr) cinfo->coef; | 
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| 275 | JDIMENSION MCU_col_num;       /* index of current MCU within row */ | 
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| 276 | JDIMENSION last_MCU_col = cinfo->MCUs_per_row - 1; | 
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| 277 | JDIMENSION last_iMCU_row = cinfo->total_iMCU_rows - 1; | 
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| 278 | int blkn, ci, xindex, yindex, yoffset, blockcnt; | 
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| 279 | JDIMENSION start_col; | 
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| 280 | JBLOCKARRAY buffer[MAX_COMPS_IN_SCAN]; | 
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| 281 | JBLOCKROW MCU_buffer[C_MAX_BLOCKS_IN_MCU]; | 
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| 282 | JBLOCKROW buffer_ptr; | 
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| 283 | jpeg_component_info *compptr; | 
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| 284 |  | 
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| 285 | /* Align the virtual buffers for the components used in this scan. */ | 
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| 286 | for (ci = 0; ci < cinfo->comps_in_scan; ci++) { | 
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| 287 | compptr = cinfo->cur_comp_info[ci]; | 
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| 288 | buffer[ci] = (*cinfo->mem->access_virt_barray) | 
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| 289 | ((j_common_ptr) cinfo, coef->whole_image[compptr->component_index], | 
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| 290 | coef->iMCU_row_num * compptr->v_samp_factor, | 
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| 291 | (JDIMENSION) compptr->v_samp_factor, FALSE); | 
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| 292 | } | 
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| 293 |  | 
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| 294 | /* Loop to process one whole iMCU row */ | 
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| 295 | for (yoffset = coef->MCU_vert_offset; yoffset < coef->MCU_rows_per_iMCU_row; | 
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| 296 | yoffset++) { | 
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| 297 | for (MCU_col_num = coef->mcu_ctr; MCU_col_num < cinfo->MCUs_per_row; | 
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| 298 | MCU_col_num++) { | 
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| 299 | /* Construct list of pointers to DCT blocks belonging to this MCU */ | 
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| 300 | blkn = 0;                 /* index of current DCT block within MCU */ | 
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| 301 | for (ci = 0; ci < cinfo->comps_in_scan; ci++) { | 
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| 302 | compptr = cinfo->cur_comp_info[ci]; | 
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| 303 | start_col = MCU_col_num * compptr->MCU_width; | 
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| 304 | blockcnt = (MCU_col_num < last_MCU_col) ? compptr->MCU_width | 
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| 305 | : compptr->last_col_width; | 
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| 306 | for (yindex = 0; yindex < compptr->MCU_height; yindex++) { | 
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| 307 | if (coef->iMCU_row_num < last_iMCU_row || | 
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| 308 | yindex+yoffset < compptr->last_row_height) { | 
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| 309 | /* Fill in pointers to real blocks in this row */ | 
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| 310 | buffer_ptr = buffer[ci][yindex+yoffset] + start_col; | 
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| 311 | for (xindex = 0; xindex < blockcnt; xindex++) | 
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| 312 | MCU_buffer[blkn++] = buffer_ptr++; | 
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| 313 | } else { | 
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| 314 | /* At bottom of image, need a whole row of dummy blocks */ | 
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| 315 | xindex = 0; | 
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| 316 | } | 
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| 317 | /* Fill in any dummy blocks needed in this row. | 
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| 318 | * Dummy blocks are filled in the same way as in jccoefct.c: | 
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| 319 | * all zeroes in the AC entries, DC entries equal to previous | 
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| 320 | * block's DC value.  The init routine has already zeroed the | 
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| 321 | * AC entries, so we need only set the DC entries correctly. | 
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| 322 | */ | 
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| 323 | for (; xindex < compptr->MCU_width; xindex++) { | 
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| 324 | MCU_buffer[blkn] = coef->dummy_buffer[blkn]; | 
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| 325 | MCU_buffer[blkn][0][0] = MCU_buffer[blkn-1][0][0]; | 
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| 326 | blkn++; | 
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| 327 | } | 
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| 328 | } | 
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| 329 | } | 
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| 330 | /* Try to write the MCU. */ | 
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| 331 | if (! (*cinfo->entropy->encode_mcu) (cinfo, MCU_buffer)) { | 
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| 332 | /* Suspension forced; update state counters and exit */ | 
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| 333 | coef->MCU_vert_offset = yoffset; | 
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| 334 | coef->mcu_ctr = MCU_col_num; | 
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| 335 | return FALSE; | 
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| 336 | } | 
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| 337 | } | 
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| 338 | /* Completed an MCU row, but perhaps not an iMCU row */ | 
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| 339 | coef->mcu_ctr = 0; | 
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| 340 | } | 
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| 341 | /* Completed the iMCU row, advance counters for next one */ | 
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| 342 | coef->iMCU_row_num++; | 
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| 343 | start_iMCU_row(cinfo); | 
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| 344 | return TRUE; | 
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| 345 | } | 
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| 346 |  | 
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| 347 |  | 
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| 348 | /* | 
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| 349 | * Initialize coefficient buffer controller. | 
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| 350 | * | 
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| 351 | * Each passed coefficient array must be the right size for that | 
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| 352 | * coefficient: width_in_blocks wide and height_in_blocks high, | 
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| 353 | * with unitheight at least v_samp_factor. | 
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| 354 | */ | 
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| 355 |  | 
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| 356 | LOCAL(void) | 
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| 357 | transencode_coef_controller (j_compress_ptr cinfo, | 
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| 358 | jvirt_barray_ptr * coef_arrays) | 
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| 359 | { | 
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| 360 | my_coef_ptr coef; | 
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| 361 | JBLOCKROW buffer; | 
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| 362 | int i; | 
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| 363 |  | 
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| 364 | coef = (my_coef_ptr) | 
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| 365 | (*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_IMAGE, | 
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| 366 | SIZEOF(my_coef_controller)); | 
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| 367 | cinfo->coef = (struct jpeg_c_coef_controller *) coef; | 
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| 368 | coef->pub.start_pass = start_pass_coef; | 
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| 369 | coef->pub.compress_data = compress_output; | 
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| 370 |  | 
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| 371 | /* Save pointer to virtual arrays */ | 
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| 372 | coef->whole_image = coef_arrays; | 
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| 373 |  | 
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| 374 | /* Allocate and pre-zero space for dummy DCT blocks. */ | 
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| 375 | buffer = (JBLOCKROW) | 
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| 376 | (*cinfo->mem->alloc_large) ((j_common_ptr) cinfo, JPOOL_IMAGE, | 
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| 377 | C_MAX_BLOCKS_IN_MCU * SIZEOF(JBLOCK)); | 
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| 378 | jzero_far((void FAR *) buffer, C_MAX_BLOCKS_IN_MCU * SIZEOF(JBLOCK)); | 
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| 379 | for (i = 0; i < C_MAX_BLOCKS_IN_MCU; i++) { | 
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| 380 | coef->dummy_buffer[i] = buffer + i; | 
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| 381 | } | 
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| 382 | } | 
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