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Port of #29838 - 3rdparty/libtiff: upgrade libtiff to 4.7.2 - #29864
3rdparty/libtiff: Upgrade libtiff to 4.7.2 - port of #29838
[Feature Request] Upgrade libtiff to 4.7.2 (https://libtiff.gitlab.io/libtiff/releases/v4.7.2.html)
See details at https://github.com/opencv/opencv/wiki/How_to_contribute#making-a-good-pull-request
- [x] I agree to contribute to the project under Apache 2 License.
- [x] To the best of my knowledge, the proposed patch is not based on a code under GPL or another license that is incompatible with OpenCV
- [x] The PR is proposed to the proper branch
- [ ] There is a reference to the original bug report and related work
- [ ] There is accuracy test, performance test and test data in opencv_extra repository, if applicable Patch to opencv_extra has the same branch name.
- [ ] The feature is well documented and sample code can be built with the project CMake
(cherry picked from commit 5b526645b6)
### Pull Request Readiness Checklist
See details at https://github.com/opencv/opencv/wiki/How_to_contribute#making-a-good-pull-request
- [x] I agree to contribute to the project under Apache 2 License.
- [x] To the best of my knowledge, the proposed patch is not based on a code under GPL or another license that is incompatible with OpenCV
- [x] The PR is proposed to the proper branch
- [ ] There is a reference to the original bug report and related work
- [ ] There is accuracy test, performance test and test data in opencv_extra repository, if applicable
Patch to opencv_extra has the same branch name.
- [ ] The feature is well documented and sample code can be built with the project CMake
278 lines
8.9 KiB
C
278 lines
8.9 KiB
C
/*
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* Copyright (c) 1991-1997 Sam Leffler
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* Copyright (c) 1991-1997 Silicon Graphics, Inc.
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*
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* Permission to use, copy, modify, distribute, and sell this software and
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* its documentation for any purpose is hereby granted without fee, provided
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* that (i) the above copyright notices and this permission notice appear in
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* all copies of the software and related documentation, and (ii) the names of
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* Sam Leffler and Silicon Graphics may not be used in any advertising or
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* publicity relating to the software without the specific, prior written
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* permission of Sam Leffler and Silicon Graphics.
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*
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* THE SOFTWARE IS PROVIDED "AS-IS" AND WITHOUT WARRANTY OF ANY KIND,
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* EXPRESS, IMPLIED OR OTHERWISE, INCLUDING WITHOUT LIMITATION, ANY
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* WARRANTY OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE.
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*
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* IN NO EVENT SHALL SAM LEFFLER OR SILICON GRAPHICS BE LIABLE FOR
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* ANY SPECIAL, INCIDENTAL, INDIRECT OR CONSEQUENTIAL DAMAGES OF ANY KIND,
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* OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS,
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* WHETHER OR NOT ADVISED OF THE POSSIBILITY OF DAMAGE, AND ON ANY THEORY OF
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* LIABILITY, ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE
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* OF THIS SOFTWARE.
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*/
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/*
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* TIFF Library.
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*
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* Tiled Image Support Routines.
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*/
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#include "tiffiop.h"
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/*
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* Compute which tile an (x,y,z,s) value is in.
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*/
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uint32_t TIFFComputeTile(TIFF *tif, uint32_t x, uint32_t y, uint32_t z,
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uint16_t s)
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{
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TIFFDirectory *td = &tif->tif_dir;
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uint32_t dx = td->td_tilewidth;
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uint32_t dy = td->td_tilelength;
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uint32_t dz = td->td_tiledepth;
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uint32_t tile = 1;
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if (td->td_imagedepth == 1)
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z = 0;
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if (dx == (uint32_t)-1)
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dx = td->td_imagewidth;
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if (dy == (uint32_t)-1)
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dy = td->td_imagelength;
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if (dz == (uint32_t)-1)
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dz = td->td_imagedepth;
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if (dx != 0 && dy != 0 && dz != 0)
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{
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uint32_t xpt = TIFFhowmany_32(td->td_imagewidth, dx);
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uint32_t ypt = TIFFhowmany_32(td->td_imagelength, dy);
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uint32_t zpt = TIFFhowmany_32(td->td_imagedepth, dz);
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uint32_t xpt_ypt = _TIFFMultiply32(tif, xpt, ypt, "TIFFComputeTile");
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uint32_t xpt_ypt_zpt =
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_TIFFMultiply32(tif, xpt_ypt, zpt, "TIFFComputeTile");
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uint64_t z_offset;
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uint64_t y_offset;
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uint64_t tile64;
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if ((xpt_ypt == 0 && xpt != 0 && ypt != 0) ||
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(xpt_ypt_zpt == 0 && xpt_ypt != 0 && zpt != 0))
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return (0);
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z_offset = _TIFFMultiply64(tif, xpt_ypt, z / dz, "TIFFComputeTile");
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y_offset = _TIFFMultiply64(tif, xpt, y / dy, "TIFFComputeTile");
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if ((z_offset == 0 && xpt_ypt != 0 && (z / dz) != 0) ||
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(y_offset == 0 && xpt != 0 && (y / dy) != 0))
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return (0);
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tile64 = _TIFFAdd64(tif, z_offset, y_offset, "TIFFComputeTile");
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if (tile64 == 0 && (z_offset != 0 || y_offset != 0))
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return (0);
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tile64 = _TIFFAdd64(tif, tile64, x / dx, "TIFFComputeTile");
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if (tile64 == 0 && (z_offset != 0 || y_offset != 0 || (x / dx) != 0))
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return (0);
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if (td->td_planarconfig == PLANARCONFIG_SEPARATE)
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{
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uint64_t sample_offset;
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if (s >= td->td_samplesperpixel)
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{
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TIFFErrorExtR(
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tif, "TIFFComputeTile", "%lu: Sample out of range, max %lu",
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(unsigned long)s, (unsigned long)td->td_samplesperpixel);
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return (0);
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}
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sample_offset =
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_TIFFMultiply64(tif, xpt_ypt_zpt, s, "TIFFComputeTile");
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if (sample_offset == 0 && xpt_ypt_zpt != 0 && s != 0)
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return (0);
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tile64 = _TIFFAdd64(tif, sample_offset, tile64, "TIFFComputeTile");
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if (tile64 == 0 && (sample_offset != 0 || z_offset != 0 ||
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y_offset != 0 || (x / dx) != 0))
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return (0);
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}
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tile = _TIFFCastUInt64ToUInt32(tif, tile64, "TIFFComputeTile");
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if (tile == 0 && tile64 != 0)
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return (0);
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}
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return (tile);
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}
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/*
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* Check an (x,y,z,s) coordinate
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* against the image bounds.
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*/
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int TIFFCheckTile(TIFF *tif, uint32_t x, uint32_t y, uint32_t z, uint16_t s)
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{
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TIFFDirectory *td = &tif->tif_dir;
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if (x >= td->td_imagewidth)
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{
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TIFFErrorExtR(tif, tif->tif_name, "%lu: Col out of range, max %lu",
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(unsigned long)x, (unsigned long)(td->td_imagewidth - 1));
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return (0);
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}
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if (y >= td->td_imagelength)
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{
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TIFFErrorExtR(tif, tif->tif_name, "%lu: Row out of range, max %lu",
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(unsigned long)y,
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(unsigned long)(td->td_imagelength - 1));
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return (0);
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}
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if (z >= td->td_imagedepth)
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{
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TIFFErrorExtR(tif, tif->tif_name, "%lu: Depth out of range, max %lu",
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(unsigned long)z, (unsigned long)(td->td_imagedepth - 1));
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return (0);
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}
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if (td->td_planarconfig == PLANARCONFIG_SEPARATE &&
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s >= td->td_samplesperpixel)
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{
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TIFFErrorExtR(tif, tif->tif_name, "%lu: Sample out of range, max %lu",
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(unsigned long)s,
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(unsigned long)(td->td_samplesperpixel - 1));
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return (0);
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}
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return (1);
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}
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/*
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* Compute how many tiles are in an image.
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*/
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uint32_t TIFFNumberOfTiles(TIFF *tif)
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{
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TIFFDirectory *td = &tif->tif_dir;
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uint32_t dx = td->td_tilewidth;
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uint32_t dy = td->td_tilelength;
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uint32_t dz = td->td_tiledepth;
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uint32_t ntiles;
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if (dx == (uint32_t)-1)
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dx = td->td_imagewidth;
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if (dy == (uint32_t)-1)
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dy = td->td_imagelength;
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if (dz == (uint32_t)-1)
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dz = td->td_imagedepth;
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ntiles =
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(dx == 0 || dy == 0 || dz == 0)
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? 0
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: _TIFFMultiply32(
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tif,
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_TIFFMultiply32(tif, TIFFhowmany_32(td->td_imagewidth, dx),
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TIFFhowmany_32(td->td_imagelength, dy),
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"TIFFNumberOfTiles"),
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TIFFhowmany_32(td->td_imagedepth, dz), "TIFFNumberOfTiles");
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if (td->td_planarconfig == PLANARCONFIG_SEPARATE)
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ntiles = _TIFFMultiply32(tif, ntiles, td->td_samplesperpixel,
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"TIFFNumberOfTiles");
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return (ntiles);
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}
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/*
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* Compute the # bytes in each row of a tile.
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*/
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uint64_t TIFFTileRowSize64(TIFF *tif)
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{
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static const char module[] = "TIFFTileRowSize64";
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TIFFDirectory *td = &tif->tif_dir;
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uint64_t rowsize;
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uint64_t tilerowsize;
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if (td->td_tilelength == 0)
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{
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TIFFErrorExtR(tif, module, "Tile length is zero");
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return 0;
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}
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if (td->td_tilewidth == 0)
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{
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TIFFErrorExtR(tif, module, "Tile width is zero");
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return (0);
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}
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rowsize = _TIFFMultiply64(tif, td->td_bitspersample, td->td_tilewidth,
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"TIFFTileRowSize");
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if (td->td_planarconfig == PLANARCONFIG_CONTIG)
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{
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if (td->td_samplesperpixel == 0)
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{
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TIFFErrorExtR(tif, module, "Samples per pixel is zero");
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return 0;
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}
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rowsize = _TIFFMultiply64(tif, rowsize, td->td_samplesperpixel,
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"TIFFTileRowSize");
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}
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tilerowsize = TIFFhowmany8_64(rowsize);
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if (tilerowsize == 0)
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{
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TIFFErrorExtR(tif, module, "Computed tile row size is zero");
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return 0;
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}
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return (tilerowsize);
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}
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tmsize_t TIFFTileRowSize(TIFF *tif)
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{
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static const char module[] = "TIFFTileRowSize";
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uint64_t m;
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m = TIFFTileRowSize64(tif);
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return _TIFFCastUInt64ToSSize(tif, m, module);
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}
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/*
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* Compute the # bytes in a variable length, row-aligned tile.
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*/
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uint64_t TIFFVTileSize64(TIFF *tif, uint32_t nrows)
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{
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return _TIFFStrileSize64(tif, nrows, /* isStrip = */ FALSE);
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}
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tmsize_t TIFFVTileSize(TIFF *tif, uint32_t nrows)
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{
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static const char module[] = "TIFFVTileSize";
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uint64_t m;
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m = TIFFVTileSize64(tif, nrows);
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return _TIFFCastUInt64ToSSize(tif, m, module);
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}
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/*
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* Compute the # bytes in a row-aligned tile.
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*/
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uint64_t TIFFTileSize64(TIFF *tif)
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{
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return (TIFFVTileSize64(tif, tif->tif_dir.td_tilelength));
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}
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tmsize_t TIFFTileSize(TIFF *tif)
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{
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static const char module[] = "TIFFTileSize";
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uint64_t m;
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m = TIFFTileSize64(tif);
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return _TIFFCastUInt64ToSSize(tif, m, module);
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}
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/*
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* Compute a default tile size based on the image
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* characteristics and a requested value. If a
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* request is <1 then we choose a size according
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* to certain heuristics.
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*/
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void TIFFDefaultTileSize(TIFF *tif, uint32_t *tw, uint32_t *th)
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{
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(*tif->tif_deftilesize)(tif, tw, th);
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}
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void _TIFFDefaultTileSize(TIFF *tif, uint32_t *tw, uint32_t *th)
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{
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(void)tif;
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if (*(int32_t *)tw < 1)
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*tw = 256;
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if (*(int32_t *)th < 1)
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*th = 256;
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/* roundup to a multiple of 16 per the spec */
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if (*tw & 0xf)
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*tw = TIFFroundup_32(*tw, 16);
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if (*th & 0xf)
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*th = TIFFroundup_32(*th, 16);
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}
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