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929 lines
29 KiB
929 lines
29 KiB
/* |
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* Copyright (C)2009-2014, 2017-2018 D. R. Commander. All Rights Reserved. |
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* |
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* Redistribution and use in source and binary forms, with or without |
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* modification, are permitted provided that the following conditions are met: |
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* |
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* - Redistributions of source code must retain the above copyright notice, |
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* this list of conditions and the following disclaimer. |
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* - Redistributions in binary form must reproduce the above copyright notice, |
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* this list of conditions and the following disclaimer in the documentation |
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* and/or other materials provided with the distribution. |
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* - Neither the name of the libjpeg-turbo Project nor the names of its |
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* contributors may be used to endorse or promote products derived from this |
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* software without specific prior written permission. |
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* |
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS", |
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* AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE |
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE |
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* ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDERS OR CONTRIBUTORS BE |
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* LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR |
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* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF |
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* SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS |
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* INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN |
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* CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) |
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* ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE |
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* POSSIBILITY OF SUCH DAMAGE. |
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*/ |
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|
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/* |
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* This program tests the various code paths in the TurboJPEG C Wrapper |
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*/ |
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|
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#include <stdio.h> |
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#include <stdlib.h> |
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#include <string.h> |
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#include <errno.h> |
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#include "tjutil.h" |
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#include "turbojpeg.h" |
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#include "md5/md5.h" |
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#include "cmyk.h" |
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#ifdef _WIN32 |
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#include <time.h> |
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#define random() rand() |
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#else |
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#include <unistd.h> |
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#endif |
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|
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|
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void usage(char *progName) |
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{ |
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printf("\nUSAGE: %s [options]\n\n", progName); |
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printf("Options:\n"); |
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printf("-yuv = test YUV encoding/decoding support\n"); |
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printf("-noyuvpad = do not pad each line of each Y, U, and V plane to the nearest\n"); |
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printf(" 4-byte boundary\n"); |
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printf("-alloc = test automatic buffer allocation\n"); |
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printf("-bmp = tjLoadImage()/tjSaveImage() unit test\n\n"); |
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exit(1); |
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} |
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|
|
|
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#define THROW_TJ() { \ |
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printf("TurboJPEG ERROR:\n%s\n", tjGetErrorStr()); \ |
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BAILOUT() \ |
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} |
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#define TRY_TJ(f) { if ((f) == -1) THROW_TJ(); } |
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#define THROW(m) { printf("ERROR: %s\n", m); BAILOUT() } |
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#define THROW_MD5(filename, md5sum, ref) { \ |
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printf("\n%s has an MD5 sum of %s.\n Should be %s.\n", filename, md5sum, \ |
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ref); \ |
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BAILOUT() \ |
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} |
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|
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const char *subNameLong[TJ_NUMSAMP] = { |
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"4:4:4", "4:2:2", "4:2:0", "GRAY", "4:4:0", "4:1:1" |
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}; |
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const char *subName[TJ_NUMSAMP] = { |
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"444", "422", "420", "GRAY", "440", "411" |
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}; |
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|
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const char *pixFormatStr[TJ_NUMPF] = { |
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"RGB", "BGR", "RGBX", "BGRX", "XBGR", "XRGB", "Grayscale", |
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"RGBA", "BGRA", "ABGR", "ARGB", "CMYK" |
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}; |
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|
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const int _3byteFormats[] = { TJPF_RGB, TJPF_BGR }; |
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const int _4byteFormats[] = { |
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TJPF_RGBX, TJPF_BGRX, TJPF_XBGR, TJPF_XRGB, TJPF_CMYK |
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}; |
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const int _onlyGray[] = { TJPF_GRAY }; |
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const int _onlyRGB[] = { TJPF_RGB }; |
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|
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int doYUV = 0, alloc = 0, pad = 4; |
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|
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int exitStatus = 0; |
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#define BAILOUT() { exitStatus = -1; goto bailout; } |
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|
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|
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void initBuf(unsigned char *buf, int w, int h, int pf, int flags) |
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{ |
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int roffset = tjRedOffset[pf]; |
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int goffset = tjGreenOffset[pf]; |
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int boffset = tjBlueOffset[pf]; |
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int ps = tjPixelSize[pf]; |
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int index, row, col, halfway = 16; |
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|
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if (pf == TJPF_GRAY) { |
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memset(buf, 0, w * h * ps); |
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for (row = 0; row < h; row++) { |
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for (col = 0; col < w; col++) { |
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if (flags & TJFLAG_BOTTOMUP) index = (h - row - 1) * w + col; |
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else index = row * w + col; |
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if (((row / 8) + (col / 8)) % 2 == 0) |
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buf[index] = (row < halfway) ? 255 : 0; |
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else buf[index] = (row < halfway) ? 76 : 226; |
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} |
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} |
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} else if (pf == TJPF_CMYK) { |
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memset(buf, 255, w * h * ps); |
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for (row = 0; row < h; row++) { |
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for (col = 0; col < w; col++) { |
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if (flags & TJFLAG_BOTTOMUP) index = (h - row - 1) * w + col; |
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else index = row * w + col; |
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if (((row / 8) + (col / 8)) % 2 == 0) { |
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if (row >= halfway) buf[index * ps + 3] = 0; |
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} else { |
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buf[index * ps + 2] = 0; |
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if (row < halfway) buf[index * ps + 1] = 0; |
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} |
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} |
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} |
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} else { |
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memset(buf, 0, w * h * ps); |
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for (row = 0; row < h; row++) { |
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for (col = 0; col < w; col++) { |
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if (flags & TJFLAG_BOTTOMUP) index = (h - row - 1) * w + col; |
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else index = row * w + col; |
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if (((row / 8) + (col / 8)) % 2 == 0) { |
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if (row < halfway) { |
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buf[index * ps + roffset] = 255; |
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buf[index * ps + goffset] = 255; |
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buf[index * ps + boffset] = 255; |
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} |
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} else { |
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buf[index * ps + roffset] = 255; |
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if (row >= halfway) buf[index * ps + goffset] = 255; |
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} |
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} |
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} |
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} |
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} |
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|
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#define CHECKVAL(v, cv) { \ |
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if (v < cv - 1 || v > cv + 1) { \ |
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printf("\nComp. %s at %d,%d should be %d, not %d\n", #v, row, col, cv, \ |
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v); \ |
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retval = 0; exitStatus = -1; goto bailout; \ |
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} \ |
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} |
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|
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#define CHECKVAL0(v) { \ |
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if (v > 1) { \ |
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printf("\nComp. %s at %d,%d should be 0, not %d\n", #v, row, col, v); \ |
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retval = 0; exitStatus = -1; goto bailout; \ |
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} \ |
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} |
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|
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#define CHECKVAL255(v) { \ |
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if (v < 254) { \ |
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printf("\nComp. %s at %d,%d should be 255, not %d\n", #v, row, col, v); \ |
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retval = 0; exitStatus = -1; goto bailout; \ |
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} \ |
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} |
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int checkBuf(unsigned char *buf, int w, int h, int pf, int subsamp, |
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tjscalingfactor sf, int flags) |
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{ |
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int roffset = tjRedOffset[pf]; |
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int goffset = tjGreenOffset[pf]; |
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int boffset = tjBlueOffset[pf]; |
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int aoffset = tjAlphaOffset[pf]; |
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int ps = tjPixelSize[pf]; |
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int index, row, col, retval = 1; |
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int halfway = 16 * sf.num / sf.denom; |
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int blocksize = 8 * sf.num / sf.denom; |
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|
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if (pf == TJPF_GRAY) roffset = goffset = boffset = 0; |
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|
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if (pf == TJPF_CMYK) { |
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for (row = 0; row < h; row++) { |
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for (col = 0; col < w; col++) { |
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unsigned char c, m, y, k; |
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|
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if (flags & TJFLAG_BOTTOMUP) index = (h - row - 1) * w + col; |
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else index = row * w + col; |
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c = buf[index * ps]; |
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m = buf[index * ps + 1]; |
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y = buf[index * ps + 2]; |
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k = buf[index * ps + 3]; |
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if (((row / blocksize) + (col / blocksize)) % 2 == 0) { |
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CHECKVAL255(c); CHECKVAL255(m); CHECKVAL255(y); |
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if (row < halfway) CHECKVAL255(k) |
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else CHECKVAL0(k) |
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} else { |
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CHECKVAL255(c); CHECKVAL0(y); CHECKVAL255(k); |
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if (row < halfway) CHECKVAL0(m) |
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else CHECKVAL255(m) |
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} |
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} |
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} |
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return 1; |
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} |
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|
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for (row = 0; row < h; row++) { |
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for (col = 0; col < w; col++) { |
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unsigned char r, g, b, a; |
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|
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if (flags & TJFLAG_BOTTOMUP) index = (h - row - 1) * w + col; |
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else index = row * w + col; |
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r = buf[index * ps + roffset]; |
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g = buf[index * ps + goffset]; |
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b = buf[index * ps + boffset]; |
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a = aoffset >= 0 ? buf[index * ps + aoffset] : 0xFF; |
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if (((row / blocksize) + (col / blocksize)) % 2 == 0) { |
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if (row < halfway) { |
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CHECKVAL255(r); CHECKVAL255(g); CHECKVAL255(b); |
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} else { |
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CHECKVAL0(r); CHECKVAL0(g); CHECKVAL0(b); |
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} |
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} else { |
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if (subsamp == TJSAMP_GRAY) { |
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if (row < halfway) { |
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CHECKVAL(r, 76); CHECKVAL(g, 76); CHECKVAL(b, 76); |
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} else { |
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CHECKVAL(r, 226); CHECKVAL(g, 226); CHECKVAL(b, 226); |
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} |
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} else { |
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if (row < halfway) { |
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CHECKVAL255(r); CHECKVAL0(g); CHECKVAL0(b); |
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} else { |
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CHECKVAL255(r); CHECKVAL255(g); CHECKVAL0(b); |
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} |
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} |
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} |
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CHECKVAL255(a); |
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} |
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} |
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|
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bailout: |
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if (retval == 0) { |
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for (row = 0; row < h; row++) { |
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for (col = 0; col < w; col++) { |
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if (pf == TJPF_CMYK) |
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printf("%.3d/%.3d/%.3d/%.3d ", buf[(row * w + col) * ps], |
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buf[(row * w + col) * ps + 1], buf[(row * w + col) * ps + 2], |
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buf[(row * w + col) * ps + 3]); |
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else |
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printf("%.3d/%.3d/%.3d ", buf[(row * w + col) * ps + roffset], |
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buf[(row * w + col) * ps + goffset], |
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buf[(row * w + col) * ps + boffset]); |
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} |
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printf("\n"); |
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} |
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} |
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return retval; |
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} |
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|
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#define PAD(v, p) ((v + (p) - 1) & (~((p) - 1))) |
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|
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int checkBufYUV(unsigned char *buf, int w, int h, int subsamp, |
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tjscalingfactor sf) |
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{ |
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int row, col; |
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int hsf = tjMCUWidth[subsamp] / 8, vsf = tjMCUHeight[subsamp] / 8; |
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int pw = PAD(w, hsf), ph = PAD(h, vsf); |
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int cw = pw / hsf, ch = ph / vsf; |
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int ypitch = PAD(pw, pad), uvpitch = PAD(cw, pad); |
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int retval = 1; |
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int halfway = 16 * sf.num / sf.denom; |
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int blocksize = 8 * sf.num / sf.denom; |
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|
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for (row = 0; row < ph; row++) { |
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for (col = 0; col < pw; col++) { |
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unsigned char y = buf[ypitch * row + col]; |
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|
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if (((row / blocksize) + (col / blocksize)) % 2 == 0) { |
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if (row < halfway) CHECKVAL255(y) |
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else CHECKVAL0(y); |
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} else { |
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if (row < halfway) CHECKVAL(y, 76) |
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else CHECKVAL(y, 226); |
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} |
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} |
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} |
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if (subsamp != TJSAMP_GRAY) { |
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int halfway = 16 / vsf * sf.num / sf.denom; |
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|
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for (row = 0; row < ch; row++) { |
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for (col = 0; col < cw; col++) { |
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unsigned char u = buf[ypitch * ph + (uvpitch * row + col)], |
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v = buf[ypitch * ph + uvpitch * ch + (uvpitch * row + col)]; |
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|
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if (((row * vsf / blocksize) + (col * hsf / blocksize)) % 2 == 0) { |
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CHECKVAL(u, 128); CHECKVAL(v, 128); |
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} else { |
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if (row < halfway) { |
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CHECKVAL(u, 85); CHECKVAL255(v); |
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} else { |
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CHECKVAL0(u); CHECKVAL(v, 149); |
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} |
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} |
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} |
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} |
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} |
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|
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bailout: |
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if (retval == 0) { |
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for (row = 0; row < ph; row++) { |
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for (col = 0; col < pw; col++) |
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printf("%.3d ", buf[ypitch * row + col]); |
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printf("\n"); |
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} |
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printf("\n"); |
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for (row = 0; row < ch; row++) { |
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for (col = 0; col < cw; col++) |
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printf("%.3d ", buf[ypitch * ph + (uvpitch * row + col)]); |
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printf("\n"); |
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} |
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printf("\n"); |
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for (row = 0; row < ch; row++) { |
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for (col = 0; col < cw; col++) |
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printf("%.3d ", |
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buf[ypitch * ph + uvpitch * ch + (uvpitch * row + col)]); |
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printf("\n"); |
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} |
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} |
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|
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return retval; |
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} |
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|
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void writeJPEG(unsigned char *jpegBuf, unsigned long jpegSize, char *filename) |
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{ |
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FILE *file = fopen(filename, "wb"); |
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|
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if (!file || fwrite(jpegBuf, jpegSize, 1, file) != 1) { |
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printf("ERROR: Could not write to %s.\n%s\n", filename, strerror(errno)); |
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BAILOUT() |
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} |
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|
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bailout: |
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if (file) fclose(file); |
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} |
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|
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|
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void compTest(tjhandle handle, unsigned char **dstBuf, unsigned long *dstSize, |
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int w, int h, int pf, char *basename, int subsamp, int jpegQual, |
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int flags) |
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{ |
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char tempStr[1024]; |
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unsigned char *srcBuf = NULL, *yuvBuf = NULL; |
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const char *pfStr = pixFormatStr[pf]; |
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const char *buStrLong = |
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(flags & TJFLAG_BOTTOMUP) ? "Bottom-Up" : "Top-Down "; |
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const char *buStr = (flags & TJFLAG_BOTTOMUP) ? "BU" : "TD"; |
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|
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if ((srcBuf = (unsigned char *)malloc(w * h * tjPixelSize[pf])) == NULL) |
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THROW("Memory allocation failure"); |
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initBuf(srcBuf, w, h, pf, flags); |
|
|
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if (*dstBuf && *dstSize > 0) memset(*dstBuf, 0, *dstSize); |
|
|
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if (!alloc) flags |= TJFLAG_NOREALLOC; |
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if (doYUV) { |
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unsigned long yuvSize = tjBufSizeYUV2(w, pad, h, subsamp); |
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tjscalingfactor sf = { 1, 1 }; |
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tjhandle handle2 = tjInitCompress(); |
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|
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if (!handle2) THROW_TJ(); |
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|
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if ((yuvBuf = (unsigned char *)malloc(yuvSize)) == NULL) |
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THROW("Memory allocation failure"); |
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memset(yuvBuf, 0, yuvSize); |
|
|
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printf("%s %s -> YUV %s ... ", pfStr, buStrLong, subNameLong[subsamp]); |
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TRY_TJ(tjEncodeYUV3(handle2, srcBuf, w, 0, h, pf, yuvBuf, pad, subsamp, |
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flags)); |
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tjDestroy(handle2); |
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if (checkBufYUV(yuvBuf, w, h, subsamp, sf)) printf("Passed.\n"); |
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else printf("FAILED!\n"); |
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|
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printf("YUV %s %s -> JPEG Q%d ... ", subNameLong[subsamp], buStrLong, |
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jpegQual); |
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TRY_TJ(tjCompressFromYUV(handle, yuvBuf, w, pad, h, subsamp, dstBuf, |
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dstSize, jpegQual, flags)); |
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} else { |
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printf("%s %s -> %s Q%d ... ", pfStr, buStrLong, subNameLong[subsamp], |
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jpegQual); |
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TRY_TJ(tjCompress2(handle, srcBuf, w, 0, h, pf, dstBuf, dstSize, subsamp, |
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jpegQual, flags)); |
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} |
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|
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snprintf(tempStr, 1024, "%s_enc_%s_%s_%s_Q%d.jpg", basename, pfStr, buStr, |
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subName[subsamp], jpegQual); |
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writeJPEG(*dstBuf, *dstSize, tempStr); |
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printf("Done.\n Result in %s\n", tempStr); |
|
|
|
bailout: |
|
if (yuvBuf) free(yuvBuf); |
|
if (srcBuf) free(srcBuf); |
|
} |
|
|
|
|
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void _decompTest(tjhandle handle, unsigned char *jpegBuf, |
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unsigned long jpegSize, int w, int h, int pf, char *basename, |
|
int subsamp, int flags, tjscalingfactor sf) |
|
{ |
|
unsigned char *dstBuf = NULL, *yuvBuf = NULL; |
|
int _hdrw = 0, _hdrh = 0, _hdrsubsamp = -1; |
|
int scaledWidth = TJSCALED(w, sf); |
|
int scaledHeight = TJSCALED(h, sf); |
|
unsigned long dstSize = 0; |
|
|
|
TRY_TJ(tjDecompressHeader2(handle, jpegBuf, jpegSize, &_hdrw, &_hdrh, |
|
&_hdrsubsamp)); |
|
if (_hdrw != w || _hdrh != h || _hdrsubsamp != subsamp) |
|
THROW("Incorrect JPEG header"); |
|
|
|
dstSize = scaledWidth * scaledHeight * tjPixelSize[pf]; |
|
if ((dstBuf = (unsigned char *)malloc(dstSize)) == NULL) |
|
THROW("Memory allocation failure"); |
|
memset(dstBuf, 0, dstSize); |
|
|
|
if (doYUV) { |
|
unsigned long yuvSize = tjBufSizeYUV2(scaledWidth, pad, scaledHeight, |
|
subsamp); |
|
tjhandle handle2 = tjInitDecompress(); |
|
|
|
if (!handle2) THROW_TJ(); |
|
|
|
if ((yuvBuf = (unsigned char *)malloc(yuvSize)) == NULL) |
|
THROW("Memory allocation failure"); |
|
memset(yuvBuf, 0, yuvSize); |
|
|
|
printf("JPEG -> YUV %s ", subNameLong[subsamp]); |
|
if (sf.num != 1 || sf.denom != 1) |
|
printf("%d/%d ... ", sf.num, sf.denom); |
|
else printf("... "); |
|
TRY_TJ(tjDecompressToYUV2(handle, jpegBuf, jpegSize, yuvBuf, scaledWidth, |
|
pad, scaledHeight, flags)); |
|
if (checkBufYUV(yuvBuf, scaledWidth, scaledHeight, subsamp, sf)) |
|
printf("Passed.\n"); |
|
else printf("FAILED!\n"); |
|
|
|
printf("YUV %s -> %s %s ... ", subNameLong[subsamp], pixFormatStr[pf], |
|
(flags & TJFLAG_BOTTOMUP) ? "Bottom-Up" : "Top-Down "); |
|
TRY_TJ(tjDecodeYUV(handle2, yuvBuf, pad, subsamp, dstBuf, scaledWidth, 0, |
|
scaledHeight, pf, flags)); |
|
tjDestroy(handle2); |
|
} else { |
|
printf("JPEG -> %s %s ", pixFormatStr[pf], |
|
(flags & TJFLAG_BOTTOMUP) ? "Bottom-Up" : "Top-Down "); |
|
if (sf.num != 1 || sf.denom != 1) |
|
printf("%d/%d ... ", sf.num, sf.denom); |
|
else printf("... "); |
|
TRY_TJ(tjDecompress2(handle, jpegBuf, jpegSize, dstBuf, scaledWidth, 0, |
|
scaledHeight, pf, flags)); |
|
} |
|
|
|
if (checkBuf(dstBuf, scaledWidth, scaledHeight, pf, subsamp, sf, flags)) |
|
printf("Passed."); |
|
else printf("FAILED!"); |
|
printf("\n"); |
|
|
|
bailout: |
|
if (yuvBuf) free(yuvBuf); |
|
if (dstBuf) free(dstBuf); |
|
} |
|
|
|
|
|
void decompTest(tjhandle handle, unsigned char *jpegBuf, |
|
unsigned long jpegSize, int w, int h, int pf, char *basename, |
|
int subsamp, int flags) |
|
{ |
|
int i, n = 0; |
|
tjscalingfactor *sf = tjGetScalingFactors(&n); |
|
|
|
if (!sf || !n) THROW_TJ(); |
|
|
|
for (i = 0; i < n; i++) { |
|
if (subsamp == TJSAMP_444 || subsamp == TJSAMP_GRAY || |
|
(subsamp == TJSAMP_411 && sf[i].num == 1 && |
|
(sf[i].denom == 2 || sf[i].denom == 1)) || |
|
(subsamp != TJSAMP_411 && sf[i].num == 1 && |
|
(sf[i].denom == 4 || sf[i].denom == 2 || sf[i].denom == 1))) |
|
_decompTest(handle, jpegBuf, jpegSize, w, h, pf, basename, subsamp, |
|
flags, sf[i]); |
|
} |
|
|
|
bailout: |
|
return; |
|
} |
|
|
|
|
|
void doTest(int w, int h, const int *formats, int nformats, int subsamp, |
|
char *basename) |
|
{ |
|
tjhandle chandle = NULL, dhandle = NULL; |
|
unsigned char *dstBuf = NULL; |
|
unsigned long size = 0; |
|
int pfi, pf, i; |
|
|
|
if (!alloc) |
|
size = tjBufSize(w, h, subsamp); |
|
if (size != 0) |
|
if ((dstBuf = (unsigned char *)tjAlloc(size)) == NULL) |
|
THROW("Memory allocation failure."); |
|
|
|
if ((chandle = tjInitCompress()) == NULL || |
|
(dhandle = tjInitDecompress()) == NULL) |
|
THROW_TJ(); |
|
|
|
for (pfi = 0; pfi < nformats; pfi++) { |
|
for (i = 0; i < 2; i++) { |
|
int flags = 0; |
|
|
|
if (subsamp == TJSAMP_422 || subsamp == TJSAMP_420 || |
|
subsamp == TJSAMP_440 || subsamp == TJSAMP_411) |
|
flags |= TJFLAG_FASTUPSAMPLE; |
|
if (i == 1) flags |= TJFLAG_BOTTOMUP; |
|
pf = formats[pfi]; |
|
compTest(chandle, &dstBuf, &size, w, h, pf, basename, subsamp, 100, |
|
flags); |
|
decompTest(dhandle, dstBuf, size, w, h, pf, basename, subsamp, flags); |
|
if (pf >= TJPF_RGBX && pf <= TJPF_XRGB) { |
|
printf("\n"); |
|
decompTest(dhandle, dstBuf, size, w, h, pf + (TJPF_RGBA - TJPF_RGBX), |
|
basename, subsamp, flags); |
|
} |
|
printf("\n"); |
|
} |
|
} |
|
printf("--------------------\n\n"); |
|
|
|
bailout: |
|
if (chandle) tjDestroy(chandle); |
|
if (dhandle) tjDestroy(dhandle); |
|
if (dstBuf) tjFree(dstBuf); |
|
} |
|
|
|
|
|
#if SIZEOF_SIZE_T == 8 |
|
#define CHECKSIZE(function) { \ |
|
if ((unsigned long long)size < (unsigned long long)0xFFFFFFFF) \ |
|
THROW(#function " overflow"); \ |
|
} |
|
#else |
|
#define CHECKSIZE(function) { \ |
|
if (size != (unsigned long)(-1) || \ |
|
!strcmp(tjGetErrorStr2(NULL), "No error")) \ |
|
THROW(#function " overflow"); \ |
|
} |
|
#endif |
|
|
|
static void overflowTest(void) |
|
{ |
|
/* Ensure that the various buffer size functions don't overflow */ |
|
unsigned long size; |
|
|
|
size = tjBufSize(26755, 26755, TJSAMP_444); |
|
CHECKSIZE(tjBufSize()); |
|
size = TJBUFSIZE(26755, 26755); |
|
CHECKSIZE(TJBUFSIZE()); |
|
size = tjBufSizeYUV2(37838, 1, 37838, TJSAMP_444); |
|
CHECKSIZE(tjBufSizeYUV2()); |
|
size = TJBUFSIZEYUV(37838, 37838, TJSAMP_444); |
|
CHECKSIZE(TJBUFSIZEYUV()); |
|
size = tjBufSizeYUV(37838, 37838, TJSAMP_444); |
|
CHECKSIZE(tjBufSizeYUV()); |
|
size = tjPlaneSizeYUV(0, 65536, 0, 65536, TJSAMP_444); |
|
CHECKSIZE(tjPlaneSizeYUV()); |
|
|
|
bailout: |
|
return; |
|
} |
|
|
|
|
|
static void bufSizeTest(void) |
|
{ |
|
int w, h, i, subsamp; |
|
unsigned char *srcBuf = NULL, *dstBuf = NULL; |
|
tjhandle handle = NULL; |
|
unsigned long dstSize = 0; |
|
|
|
if ((handle = tjInitCompress()) == NULL) THROW_TJ(); |
|
|
|
printf("Buffer size regression test\n"); |
|
for (subsamp = 0; subsamp < TJ_NUMSAMP; subsamp++) { |
|
for (w = 1; w < 48; w++) { |
|
int maxh = (w == 1) ? 2048 : 48; |
|
|
|
for (h = 1; h < maxh; h++) { |
|
if (h % 100 == 0) printf("%.4d x %.4d\b\b\b\b\b\b\b\b\b\b\b", w, h); |
|
if ((srcBuf = (unsigned char *)malloc(w * h * 4)) == NULL) |
|
THROW("Memory allocation failure"); |
|
if (!alloc || doYUV) { |
|
if (doYUV) dstSize = tjBufSizeYUV2(w, pad, h, subsamp); |
|
else dstSize = tjBufSize(w, h, subsamp); |
|
if ((dstBuf = (unsigned char *)tjAlloc(dstSize)) == NULL) |
|
THROW("Memory allocation failure"); |
|
} |
|
|
|
for (i = 0; i < w * h * 4; i++) { |
|
if (random() < RAND_MAX / 2) srcBuf[i] = 0; |
|
else srcBuf[i] = 255; |
|
} |
|
|
|
if (doYUV) { |
|
TRY_TJ(tjEncodeYUV3(handle, srcBuf, w, 0, h, TJPF_BGRX, dstBuf, pad, |
|
subsamp, 0)); |
|
} else { |
|
TRY_TJ(tjCompress2(handle, srcBuf, w, 0, h, TJPF_BGRX, &dstBuf, |
|
&dstSize, subsamp, 100, |
|
alloc ? 0 : TJFLAG_NOREALLOC)); |
|
} |
|
free(srcBuf); srcBuf = NULL; |
|
if (!alloc || doYUV) { |
|
tjFree(dstBuf); dstBuf = NULL; |
|
} |
|
|
|
if ((srcBuf = (unsigned char *)malloc(h * w * 4)) == NULL) |
|
THROW("Memory allocation failure"); |
|
if (!alloc || doYUV) { |
|
if (doYUV) dstSize = tjBufSizeYUV2(h, pad, w, subsamp); |
|
else dstSize = tjBufSize(h, w, subsamp); |
|
if ((dstBuf = (unsigned char *)tjAlloc(dstSize)) == NULL) |
|
THROW("Memory allocation failure"); |
|
} |
|
|
|
for (i = 0; i < h * w * 4; i++) { |
|
if (random() < RAND_MAX / 2) srcBuf[i] = 0; |
|
else srcBuf[i] = 255; |
|
} |
|
|
|
if (doYUV) { |
|
TRY_TJ(tjEncodeYUV3(handle, srcBuf, h, 0, w, TJPF_BGRX, dstBuf, pad, |
|
subsamp, 0)); |
|
} else { |
|
TRY_TJ(tjCompress2(handle, srcBuf, h, 0, w, TJPF_BGRX, &dstBuf, |
|
&dstSize, subsamp, 100, |
|
alloc ? 0 : TJFLAG_NOREALLOC)); |
|
} |
|
free(srcBuf); srcBuf = NULL; |
|
if (!alloc || doYUV) { |
|
tjFree(dstBuf); dstBuf = NULL; |
|
} |
|
} |
|
} |
|
} |
|
printf("Done. \n"); |
|
|
|
bailout: |
|
if (srcBuf) free(srcBuf); |
|
if (dstBuf) tjFree(dstBuf); |
|
if (handle) tjDestroy(handle); |
|
} |
|
|
|
|
|
void initBitmap(unsigned char *buf, int width, int pitch, int height, int pf, |
|
int flags) |
|
{ |
|
int roffset = tjRedOffset[pf]; |
|
int goffset = tjGreenOffset[pf]; |
|
int boffset = tjBlueOffset[pf]; |
|
int ps = tjPixelSize[pf]; |
|
int i, j; |
|
|
|
for (j = 0; j < height; j++) { |
|
int row = (flags & TJFLAG_BOTTOMUP) ? height - j - 1 : j; |
|
|
|
for (i = 0; i < width; i++) { |
|
unsigned char r = (i * 256 / width) % 256; |
|
unsigned char g = (j * 256 / height) % 256; |
|
unsigned char b = (j * 256 / height + i * 256 / width) % 256; |
|
|
|
memset(&buf[row * pitch + i * ps], 0, ps); |
|
if (pf == TJPF_GRAY) buf[row * pitch + i * ps] = b; |
|
else if (pf == TJPF_CMYK) |
|
rgb_to_cmyk(r, g, b, &buf[row * pitch + i * ps + 0], |
|
&buf[row * pitch + i * ps + 1], |
|
&buf[row * pitch + i * ps + 2], |
|
&buf[row * pitch + i * ps + 3]); |
|
else { |
|
buf[row * pitch + i * ps + roffset] = r; |
|
buf[row * pitch + i * ps + goffset] = g; |
|
buf[row * pitch + i * ps + boffset] = b; |
|
} |
|
} |
|
} |
|
} |
|
|
|
|
|
int cmpBitmap(unsigned char *buf, int width, int pitch, int height, int pf, |
|
int flags, int gray2rgb) |
|
{ |
|
int roffset = tjRedOffset[pf]; |
|
int goffset = tjGreenOffset[pf]; |
|
int boffset = tjBlueOffset[pf]; |
|
int aoffset = tjAlphaOffset[pf]; |
|
int ps = tjPixelSize[pf]; |
|
int i, j; |
|
|
|
for (j = 0; j < height; j++) { |
|
int row = (flags & TJFLAG_BOTTOMUP) ? height - j - 1 : j; |
|
|
|
for (i = 0; i < width; i++) { |
|
unsigned char r = (i * 256 / width) % 256; |
|
unsigned char g = (j * 256 / height) % 256; |
|
unsigned char b = (j * 256 / height + i * 256 / width) % 256; |
|
|
|
if (pf == TJPF_GRAY) { |
|
if (buf[row * pitch + i * ps] != b) |
|
return 0; |
|
} else if (pf == TJPF_CMYK) { |
|
unsigned char rf, gf, bf; |
|
|
|
cmyk_to_rgb(buf[row * pitch + i * ps + 0], |
|
buf[row * pitch + i * ps + 1], |
|
buf[row * pitch + i * ps + 2], |
|
buf[row * pitch + i * ps + 3], &rf, &gf, &bf); |
|
if (gray2rgb) { |
|
if (rf != b || gf != b || bf != b) |
|
return 0; |
|
} else if (rf != r || gf != g || bf != b) return 0; |
|
} else { |
|
if (gray2rgb) { |
|
if (buf[row * pitch + i * ps + roffset] != b || |
|
buf[row * pitch + i * ps + goffset] != b || |
|
buf[row * pitch + i * ps + boffset] != b) |
|
return 0; |
|
} else if (buf[row * pitch + i * ps + roffset] != r || |
|
buf[row * pitch + i * ps + goffset] != g || |
|
buf[row * pitch + i * ps + boffset] != b) |
|
return 0; |
|
if (aoffset >= 0 && buf[row * pitch + i * ps + aoffset] != 0xFF) |
|
return 0; |
|
} |
|
} |
|
} |
|
return 1; |
|
} |
|
|
|
|
|
int doBmpTest(const char *ext, int width, int align, int height, int pf, |
|
int flags) |
|
{ |
|
char filename[80], *md5sum, md5buf[65]; |
|
int ps = tjPixelSize[pf], pitch = PAD(width * ps, align), loadWidth = 0, |
|
loadHeight = 0, retval = 0, pixelFormat = pf; |
|
unsigned char *buf = NULL; |
|
char *md5ref; |
|
|
|
if (pf == TJPF_GRAY) { |
|
md5ref = !strcasecmp(ext, "ppm") ? "112c682e82ce5de1cca089e20d60000b" : |
|
"51976530acf75f02beddf5d21149101d"; |
|
} else { |
|
md5ref = !strcasecmp(ext, "ppm") ? "c0c9f772b464d1896326883a5c79c545" : |
|
"6d659071b9bfcdee2def22cb58ddadca"; |
|
} |
|
|
|
if ((buf = (unsigned char *)tjAlloc(pitch * height)) == NULL) |
|
THROW("Could not allocate memory"); |
|
initBitmap(buf, width, pitch, height, pf, flags); |
|
|
|
snprintf(filename, 80, "test_bmp_%s_%d_%s.%s", pixFormatStr[pf], align, |
|
(flags & TJFLAG_BOTTOMUP) ? "bu" : "td", ext); |
|
TRY_TJ(tjSaveImage(filename, buf, width, pitch, height, pf, flags)); |
|
md5sum = MD5File(filename, md5buf); |
|
if (strcasecmp(md5sum, md5ref)) |
|
THROW_MD5(filename, md5sum, md5ref); |
|
|
|
tjFree(buf); buf = NULL; |
|
if ((buf = tjLoadImage(filename, &loadWidth, align, &loadHeight, &pf, |
|
flags)) == NULL) |
|
THROW_TJ(); |
|
if (width != loadWidth || height != loadHeight) { |
|
printf("\n Image dimensions of %s are bogus\n", filename); |
|
retval = -1; goto bailout; |
|
} |
|
if (!cmpBitmap(buf, width, pitch, height, pf, flags, 0)) { |
|
printf("\n Pixel data in %s is bogus\n", filename); |
|
retval = -1; goto bailout; |
|
} |
|
if (pf == TJPF_GRAY) { |
|
tjFree(buf); buf = NULL; |
|
pf = TJPF_XBGR; |
|
if ((buf = tjLoadImage(filename, &loadWidth, align, &loadHeight, &pf, |
|
flags)) == NULL) |
|
THROW_TJ(); |
|
pitch = PAD(width * tjPixelSize[pf], align); |
|
if (!cmpBitmap(buf, width, pitch, height, pf, flags, 1)) { |
|
printf("\n Converting %s to RGB failed\n", filename); |
|
retval = -1; goto bailout; |
|
} |
|
|
|
tjFree(buf); buf = NULL; |
|
pf = TJPF_CMYK; |
|
if ((buf = tjLoadImage(filename, &loadWidth, align, &loadHeight, &pf, |
|
flags)) == NULL) |
|
THROW_TJ(); |
|
pitch = PAD(width * tjPixelSize[pf], align); |
|
if (!cmpBitmap(buf, width, pitch, height, pf, flags, 1)) { |
|
printf("\n Converting %s to CMYK failed\n", filename); |
|
retval = -1; goto bailout; |
|
} |
|
} |
|
/* Verify that tjLoadImage() returns the proper "preferred" pixel format for |
|
the file type. */ |
|
tjFree(buf); buf = NULL; |
|
pf = pixelFormat; |
|
pixelFormat = TJPF_UNKNOWN; |
|
if ((buf = tjLoadImage(filename, &loadWidth, align, &loadHeight, |
|
&pixelFormat, flags)) == NULL) |
|
THROW_TJ(); |
|
if ((pf == TJPF_GRAY && pixelFormat != TJPF_GRAY) || |
|
(pf != TJPF_GRAY && !strcasecmp(ext, "bmp") && |
|
pixelFormat != TJPF_BGR) || |
|
(pf != TJPF_GRAY && !strcasecmp(ext, "ppm") && |
|
pixelFormat != TJPF_RGB)) { |
|
printf("\n tjLoadImage() returned unexpected pixel format: %s\n", |
|
pixFormatStr[pixelFormat]); |
|
retval = -1; |
|
} |
|
unlink(filename); |
|
|
|
bailout: |
|
if (buf) tjFree(buf); |
|
if (exitStatus < 0) return exitStatus; |
|
return retval; |
|
} |
|
|
|
|
|
int bmpTest(void) |
|
{ |
|
int align, width = 35, height = 39, format; |
|
|
|
for (align = 1; align <= 8; align *= 2) { |
|
for (format = 0; format < TJ_NUMPF; format++) { |
|
printf("%s Top-Down BMP (row alignment = %d bytes) ... ", |
|
pixFormatStr[format], align); |
|
if (doBmpTest("bmp", width, align, height, format, 0) == -1) |
|
return -1; |
|
printf("OK.\n"); |
|
|
|
printf("%s Top-Down PPM (row alignment = %d bytes) ... ", |
|
pixFormatStr[format], align); |
|
if (doBmpTest("ppm", width, align, height, format, |
|
TJFLAG_BOTTOMUP) == -1) |
|
return -1; |
|
printf("OK.\n"); |
|
|
|
printf("%s Bottom-Up BMP (row alignment = %d bytes) ... ", |
|
pixFormatStr[format], align); |
|
if (doBmpTest("bmp", width, align, height, format, 0) == -1) |
|
return -1; |
|
printf("OK.\n"); |
|
|
|
printf("%s Bottom-Up PPM (row alignment = %d bytes) ... ", |
|
pixFormatStr[format], align); |
|
if (doBmpTest("ppm", width, align, height, format, |
|
TJFLAG_BOTTOMUP) == -1) |
|
return -1; |
|
printf("OK.\n"); |
|
} |
|
} |
|
|
|
return 0; |
|
} |
|
|
|
|
|
int main(int argc, char *argv[]) |
|
{ |
|
int i, num4bf = 5; |
|
|
|
#ifdef _WIN32 |
|
srand((unsigned int)time(NULL)); |
|
#endif |
|
if (argc > 1) { |
|
for (i = 1; i < argc; i++) { |
|
if (!strcasecmp(argv[i], "-yuv")) doYUV = 1; |
|
else if (!strcasecmp(argv[i], "-noyuvpad")) pad = 1; |
|
else if (!strcasecmp(argv[i], "-alloc")) alloc = 1; |
|
else if (!strcasecmp(argv[i], "-bmp")) return bmpTest(); |
|
else usage(argv[0]); |
|
} |
|
} |
|
if (alloc) printf("Testing automatic buffer allocation\n"); |
|
if (doYUV) num4bf = 4; |
|
overflowTest(); |
|
doTest(35, 39, _3byteFormats, 2, TJSAMP_444, "test"); |
|
doTest(39, 41, _4byteFormats, num4bf, TJSAMP_444, "test"); |
|
doTest(41, 35, _3byteFormats, 2, TJSAMP_422, "test"); |
|
doTest(35, 39, _4byteFormats, num4bf, TJSAMP_422, "test"); |
|
doTest(39, 41, _3byteFormats, 2, TJSAMP_420, "test"); |
|
doTest(41, 35, _4byteFormats, num4bf, TJSAMP_420, "test"); |
|
doTest(35, 39, _3byteFormats, 2, TJSAMP_440, "test"); |
|
doTest(39, 41, _4byteFormats, num4bf, TJSAMP_440, "test"); |
|
doTest(41, 35, _3byteFormats, 2, TJSAMP_411, "test"); |
|
doTest(35, 39, _4byteFormats, num4bf, TJSAMP_411, "test"); |
|
doTest(39, 41, _onlyGray, 1, TJSAMP_GRAY, "test"); |
|
doTest(41, 35, _3byteFormats, 2, TJSAMP_GRAY, "test"); |
|
doTest(35, 39, _4byteFormats, 4, TJSAMP_GRAY, "test"); |
|
bufSizeTest(); |
|
if (doYUV) { |
|
printf("\n--------------------\n\n"); |
|
doTest(48, 48, _onlyRGB, 1, TJSAMP_444, "test_yuv0"); |
|
doTest(48, 48, _onlyRGB, 1, TJSAMP_422, "test_yuv0"); |
|
doTest(48, 48, _onlyRGB, 1, TJSAMP_420, "test_yuv0"); |
|
doTest(48, 48, _onlyRGB, 1, TJSAMP_440, "test_yuv0"); |
|
doTest(48, 48, _onlyRGB, 1, TJSAMP_411, "test_yuv0"); |
|
doTest(48, 48, _onlyRGB, 1, TJSAMP_GRAY, "test_yuv0"); |
|
doTest(48, 48, _onlyGray, 1, TJSAMP_GRAY, "test_yuv0"); |
|
} |
|
|
|
return exitStatus; |
|
}
|
|
|