blob: e06e170f4e846a5190b2d3a7c7cc1e15d44a29bf [file] [log] [blame]
Dees_Troy51a0e822012-09-05 15:24:24 -04001/*
2 * jdtrans.c
3 *
4 * Copyright (C) 1995-1997, Thomas G. Lane.
5 * This file is part of the Independent JPEG Group's software.
6 * For conditions of distribution and use, see the accompanying README file.
7 *
8 * This file contains library routines for transcoding decompression,
9 * that is, reading raw DCT coefficient arrays from an input JPEG file.
10 * The routines in jdapimin.c will also be needed by a transcoder.
11 */
12
13#define JPEG_INTERNALS
14#include "jinclude.h"
15#include "jpeglib.h"
16
17
18/* Forward declarations */
19LOCAL(void) transdecode_master_selection JPP((j_decompress_ptr cinfo));
20
21
22/*
23 * Read the coefficient arrays from a JPEG file.
24 * jpeg_read_header must be completed before calling this.
25 *
26 * The entire image is read into a set of virtual coefficient-block arrays,
27 * one per component. The return value is a pointer to the array of
28 * virtual-array descriptors. These can be manipulated directly via the
29 * JPEG memory manager, or handed off to jpeg_write_coefficients().
30 * To release the memory occupied by the virtual arrays, call
31 * jpeg_finish_decompress() when done with the data.
32 *
33 * An alternative usage is to simply obtain access to the coefficient arrays
34 * during a buffered-image-mode decompression operation. This is allowed
35 * after any jpeg_finish_output() call. The arrays can be accessed until
36 * jpeg_finish_decompress() is called. (Note that any call to the library
37 * may reposition the arrays, so don't rely on access_virt_barray() results
38 * to stay valid across library calls.)
39 *
40 * Returns NULL if suspended. This case need be checked only if
41 * a suspending data source is used.
42 */
43
44GLOBAL(jvirt_barray_ptr *)
45jpeg_read_coefficients (j_decompress_ptr cinfo)
46{
47 if (cinfo->global_state == DSTATE_READY) {
48 /* First call: initialize active modules */
49 transdecode_master_selection(cinfo);
50 cinfo->global_state = DSTATE_RDCOEFS;
51 }
52 if (cinfo->global_state == DSTATE_RDCOEFS) {
53 /* Absorb whole file into the coef buffer */
54 for (;;) {
55 int retcode;
56 /* Call progress monitor hook if present */
57 if (cinfo->progress != NULL)
58 (*cinfo->progress->progress_monitor) ((j_common_ptr) cinfo);
59 /* Absorb some more input */
60 retcode = (*cinfo->inputctl->consume_input) (cinfo);
61 if (retcode == JPEG_SUSPENDED)
62 return NULL;
63 if (retcode == JPEG_REACHED_EOI)
64 break;
65 /* Advance progress counter if appropriate */
66 if (cinfo->progress != NULL &&
67 (retcode == JPEG_ROW_COMPLETED || retcode == JPEG_REACHED_SOS)) {
68 if (++cinfo->progress->pass_counter >= cinfo->progress->pass_limit) {
69 /* startup underestimated number of scans; ratchet up one scan */
70 cinfo->progress->pass_limit += (long) cinfo->total_iMCU_rows;
71 }
72 }
73 }
74 /* Set state so that jpeg_finish_decompress does the right thing */
75 cinfo->global_state = DSTATE_STOPPING;
76 }
77 /* At this point we should be in state DSTATE_STOPPING if being used
78 * standalone, or in state DSTATE_BUFIMAGE if being invoked to get access
79 * to the coefficients during a full buffered-image-mode decompression.
80 */
81 if ((cinfo->global_state == DSTATE_STOPPING ||
82 cinfo->global_state == DSTATE_BUFIMAGE) && cinfo->buffered_image) {
83 return cinfo->coef->coef_arrays;
84 }
85 /* Oops, improper usage */
86 ERREXIT1(cinfo, JERR_BAD_STATE, cinfo->global_state);
87 return NULL; /* keep compiler happy */
88}
89
90LOCAL(boolean)
91jpeg_build_huffman_index_progressive(j_decompress_ptr cinfo,
92 huffman_index *index)
93{
94 if (cinfo->global_state == DSTATE_READY) {
95 printf("Progressive Mode\n");
96 /* First call: initialize active modules */
97 transdecode_master_selection(cinfo);
98 cinfo->global_state = DSTATE_RDCOEFS;
99 }
100 if (cinfo->global_state == DSTATE_RDCOEFS) {
101 unsigned int mcu;
102 int i;
103 cinfo->marker->get_sos_marker_position(cinfo, index);
104
105 /* Absorb whole file into the coef buffer */
106 for (mcu = 0; mcu < cinfo->total_iMCU_rows; mcu++) {
107 int retcode = 0;
108 /* Call progress monitor hook if present */
109 if (cinfo->progress != NULL)
110 (*cinfo->progress->progress_monitor) ((j_common_ptr) cinfo);
111 /* Absorb some more input */
112 jinit_phuff_decoder(cinfo);
113 for (i = 0; i < index->scan_count; i++) {
114 (*cinfo->inputctl->finish_input_pass) (cinfo);
115 jset_input_stream_position(cinfo, index->scan[i].bitstream_offset);
116 cinfo->unread_marker = 0;
117 retcode = (*cinfo->inputctl->consume_input_build_huffman_index)
118 (cinfo, index, i);
119 if (retcode == JPEG_REACHED_EOI)
120 break;
121 cinfo->input_iMCU_row = mcu;
122 if (mcu != 0)
123 (*cinfo->entropy->configure_huffman_decoder)
124 (cinfo, index->scan[i].prev_MCU_offset);
125 cinfo->input_scan_number = i;
126 retcode = (*cinfo->inputctl->consume_input_build_huffman_index)
127 (cinfo, index, i);
128 }
129 if (retcode == JPEG_SUSPENDED)
130 return FALSE;
131 if (retcode == JPEG_REACHED_EOI)
132 break;
133 /* Advance progress counter if appropriate */
134 if (cinfo->progress != NULL &&
135 (retcode == JPEG_ROW_COMPLETED || retcode == JPEG_REACHED_SOS)) {
136 if (++cinfo->progress->pass_counter >= cinfo->progress->pass_limit) {
137 /* startup underestimated number of scans; ratchet up one scan */
138 cinfo->progress->pass_limit += (long) cinfo->total_iMCU_rows;
139 }
140 }
141 }
142 cinfo->global_state = DSTATE_STOPPING;
143 }
144 /* At this point we should be in state DSTATE_STOPPING if being used
145 * standalone, or in state DSTATE_BUFIMAGE if being invoked to get access
146 * to the coefficients during a full buffered-image-mode decompression.
147 */
148 if ((cinfo->global_state == DSTATE_STOPPING ||
149 cinfo->global_state == DSTATE_BUFIMAGE) && cinfo->buffered_image) {
150 return TRUE;
151 }
152 /* Oops, improper usage */
153 ERREXIT1(cinfo, JERR_BAD_STATE, cinfo->global_state);
154 return FALSE; /* keep compiler happy */
155}
156
157LOCAL(boolean)
158jpeg_build_huffman_index_baseline(j_decompress_ptr cinfo, huffman_index *index)
159{
160 if (cinfo->global_state == DSTATE_READY) {
161 printf("Baseline Mode\n");
162 /* First call: initialize active modules */
163 transdecode_master_selection(cinfo);
164 cinfo->global_state = DSTATE_RDCOEFS;
165 }
166 if (cinfo->global_state == DSTATE_RDCOEFS) {
167 /* Absorb whole file into the coef buffer */
168 for (;;) {
169 int retcode;
170 /* Call progress monitor hook if present */
171 if (cinfo->progress != NULL)
172 (*cinfo->progress->progress_monitor) ((j_common_ptr) cinfo);
173 /* Absorb some more input */
174 retcode = (*cinfo->inputctl->consume_input_build_huffman_index)
175 (cinfo, index, 0);
176 if (retcode == JPEG_SUSPENDED)
177 return FALSE;
178 if (retcode == JPEG_REACHED_EOI)
179 break;
180 if (retcode == JPEG_SCAN_COMPLETED)
181 break;
182
183 /* Advance progress counter if appropriate */
184 if (cinfo->progress != NULL &&
185 (retcode == JPEG_ROW_COMPLETED || retcode == JPEG_REACHED_SOS)) {
186 if (++cinfo->progress->pass_counter >= cinfo->progress->pass_limit) {
187 /* startup underestimated number of scans; ratchet up one scan */
188 cinfo->progress->pass_limit += (long) cinfo->total_iMCU_rows;
189 }
190 }
191 }
192 /* Set state so that jpeg_finish_decompress does the right thing */
193 cinfo->global_state = DSTATE_STOPPING;
194 }
195 /* At this point we should be in state DSTATE_STOPPING if being used
196 * standalone, or in state DSTATE_BUFIMAGE if being invoked to get access
197 * to the coefficients during a full buffered-image-mode decompression.
198 */
199 if ((cinfo->global_state == DSTATE_STOPPING ||
200 cinfo->global_state == DSTATE_BUFIMAGE) && cinfo->buffered_image) {
201 return TRUE;
202 }
203 /* Oops, improper usage */
204 ERREXIT1(cinfo, JERR_BAD_STATE, cinfo->global_state);
205 return FALSE; /* keep compiler happy */
206}
207
208GLOBAL(boolean)
209jpeg_build_huffman_index(j_decompress_ptr cinfo, huffman_index *index)
210{
211 cinfo->tile_decode = TRUE;
212 if (cinfo->progressive_mode)
213 return jpeg_build_huffman_index_progressive(cinfo, index);
214 else
215 return jpeg_build_huffman_index_baseline(cinfo, index);
216}
217
218/*
219 * Master selection of decompression modules for transcoding.
220 * This substitutes for jdmaster.c's initialization of the full decompressor.
221 */
222
223LOCAL(void)
224transdecode_master_selection (j_decompress_ptr cinfo)
225{
226 /* This is effectively a buffered-image operation. */
227 cinfo->buffered_image = TRUE;
228
229 /* Entropy decoding: either Huffman or arithmetic coding. */
230 if (cinfo->arith_code) {
231 ERREXIT(cinfo, JERR_ARITH_NOTIMPL);
232 } else {
233 if (cinfo->progressive_mode) {
234#ifdef D_PROGRESSIVE_SUPPORTED
235 jinit_phuff_decoder(cinfo);
236#else
237 ERREXIT(cinfo, JERR_NOT_COMPILED);
238#endif
239 } else {
240 jinit_huff_decoder(cinfo);
241 }
242 }
243
244 /* Always get a full-image coefficient buffer. */
245 jinit_d_coef_controller(cinfo, TRUE);
246
247 /* We can now tell the memory manager to allocate virtual arrays. */
248 (*cinfo->mem->realize_virt_arrays) ((j_common_ptr) cinfo);
249
250 /* Initialize input side of decompressor to consume first scan. */
251 (*cinfo->inputctl->start_input_pass) (cinfo);
252
253 /* Initialize progress monitoring. */
254 if (cinfo->progress != NULL) {
255 int nscans;
256 /* Estimate number of scans to set pass_limit. */
257 if (cinfo->progressive_mode) {
258 /* Arbitrarily estimate 2 interleaved DC scans + 3 AC scans/component. */
259 nscans = 2 + 3 * cinfo->num_components;
260 } else if (cinfo->inputctl->has_multiple_scans) {
261 /* For a nonprogressive multiscan file, estimate 1 scan per component. */
262 nscans = cinfo->num_components;
263 } else {
264 nscans = 1;
265 }
266 cinfo->progress->pass_counter = 0L;
267 cinfo->progress->pass_limit = (long) cinfo->total_iMCU_rows * nscans;
268 cinfo->progress->completed_passes = 0;
269 cinfo->progress->total_passes = 1;
270 }
271}