2019-08-23 11:56:54 -07:00
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#define XMD_H
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#include "JPEGData.h"
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#include "MemStream.h"
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#include "ImageUtils.h"
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#include <setjmp.h>
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extern "C"
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{
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#include "jpeg/jpeglib.h"
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#include "jpeg/jerror.h"
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#include "jpeg/jpegint.h"
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}
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USING_NS_BF;
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// -----------------------------------------------------------------------
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// JPEG error handling
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// Will "longjmp" on error_exit.
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// -----------------------------------------------------------------------
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struct ErrorHandler
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{
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/** "subclass" of jpeg_error_mgr */
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struct jpeg_error_mgr errorMgr;
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jmp_buf setjmpBuffer;
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ErrorHandler( j_decompress_ptr cinfo )
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{
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Init( (j_common_ptr)cinfo );
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}
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ErrorHandler( j_compress_ptr cinfo )
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{
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Init( (j_common_ptr)cinfo );
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}
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void Init( j_common_ptr cinfo )
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{
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// setup the standard error handling.
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cinfo->err = jpeg_std_error( &errorMgr );
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// then hook up our error_exit function.
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errorMgr.error_exit = &ErrorHandler::OnErrorExit;
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}
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static void OnErrorExit( j_common_ptr cinfo )
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{
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// recover the pointer to "derived class" instance
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ErrorHandler* errorHandler = (ErrorHandler*)cinfo->err;
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// use the default error message output.
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(*cinfo->err->output_message)( cinfo );
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// return control to the setjmp point.
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longjmp( errorHandler->setjmpBuffer, 1 );
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}
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};
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struct JpegMemSource
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{
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JpegMemSource(JPEGData* buffer, j_decompress_ptr cinfo )
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{
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struct jpeg_source_mgr * src;
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if ( cinfo->src == NULL )
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{
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// Have the jpeg library allocate the source manager object so
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// that it is automatically deallocated by the decompressor.
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cinfo->src = (struct jpeg_source_mgr *)(*cinfo->mem->alloc_small)( (j_common_ptr)cinfo, JPOOL_PERMANENT, sizeof(struct jpeg_source_mgr) );
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}
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src = cinfo->src;
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src->init_source = &JpegMemSource::InitSource;
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src->fill_input_buffer = &JpegMemSource::FillInputBuffer;
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src->skip_input_data = &JpegMemSource::SkipInputData;
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src->resync_to_restart = jpeg_resync_to_restart; /* use default method */
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src->term_source = &JpegMemSource::TermSource;
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src->bytes_in_buffer = (size_t) buffer->mSrcDataLen;
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src->next_input_byte = (JOCTET *) buffer->mSrcData;
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}
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~JpegMemSource()
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{
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// The setjmp/longjmp action in ErrorHandler can actually
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// completely skip the destruction of this C++ data source wrapper,
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// but that is OK so long as there is no actual cleanup to do.
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}
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static void InitSource( j_decompress_ptr cinfo )
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{
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/* no work necessary here */
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}
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static boolean FillInputBuffer( j_decompress_ptr cinfo )
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{
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static JOCTET mybuffer[4];
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/* The whole JPEG data is expected to reside in the supplied memory
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* buffer, so any request for more data beyond the given buffer size
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* is treated as an error.
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*/
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WARNMS(cinfo, JWRN_JPEG_EOF);
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/* Insert a fake EOI marker */
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mybuffer[0] = (JOCTET) 0xFF;
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mybuffer[1] = (JOCTET) JPEG_EOI;
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cinfo->src->next_input_byte = mybuffer;
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cinfo->src->bytes_in_buffer = 2;
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return TRUE;
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}
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static void SkipInputData( j_decompress_ptr cinfo, long num_bytes )
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{
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struct jpeg_source_mgr * src = cinfo->src;
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/* Just a dumb implementation for now. Could use fseek() except
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* it doesn't work on pipes. Not clear that being smart is worth
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* any trouble anyway --- large skips are infrequent.
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*/
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if (num_bytes > 0) {
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while (num_bytes > (long) src->bytes_in_buffer) {
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num_bytes -= (long) src->bytes_in_buffer;
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(void) (*src->fill_input_buffer) (cinfo);
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/* note we assume that fill_input_buffer will never return FALSE,
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* so suspension need not be handled.
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*/
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}
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src->next_input_byte += (size_t) num_bytes;
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src->bytes_in_buffer -= (size_t) num_bytes;
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}
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}
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static void TermSource( j_decompress_ptr cinfo )
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{
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/* no work necessary here */
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}
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};
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2021-04-12 17:23:18 -04:00
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#define JPEGMEMDEST_BLOCK_SIZE 16384
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struct JpegMemDest : jpeg_destination_mgr
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{
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Array<uint8> mData;
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JpegMemDest(JPEGData* buffer, j_compress_ptr cinfo)
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{
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if (cinfo->dest == NULL)
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{
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cinfo->dest = this;
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}
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init_destination = &InitDestination;
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empty_output_buffer = &EmptyOutputBuffer;
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term_destination = &TermDestination;
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}
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~JpegMemDest()
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{
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}
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static void InitDestination(j_compress_ptr cinfo)
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{
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auto self = (JpegMemDest*)cinfo->dest;
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self->mData.Resize(JPEGMEMDEST_BLOCK_SIZE);
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cinfo->dest->next_output_byte = &self->mData[0];
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cinfo->dest->free_in_buffer = self->mData.size();
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}
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static boolean EmptyOutputBuffer(j_compress_ptr cinfo)
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{
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auto self = (JpegMemDest*)cinfo->dest;
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size_t oldsize = self->mData.size();
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self->mData.Resize(oldsize + JPEGMEMDEST_BLOCK_SIZE);
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cinfo->dest->next_output_byte = &self->mData[oldsize];
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cinfo->dest->free_in_buffer = self->mData.size() - oldsize;
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return true;
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}
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static void TermDestination(j_compress_ptr cinfo)
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{
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auto self = (JpegMemDest*)cinfo->dest;
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self->mData.Resize(self->mData.size() - cinfo->dest->free_in_buffer);
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}
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};
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2019-08-23 11:56:54 -07:00
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bool JPEGData::ReadData()
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{
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jpeg_decompress_struct cinfo;
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ErrorHandler err( &cinfo );
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if ( setjmp( err.setjmpBuffer ) )
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{
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// ErrorHandler::OnErrorExit will longjmp back to here from
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// within the ReadImage call below.
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jpeg_destroy_decompress( &cinfo );
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return false;
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}
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jpeg_create_decompress( &cinfo );
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2021-04-12 17:23:18 -04:00
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JpegMemSource(this, &cinfo );
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2019-08-23 11:56:54 -07:00
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jpeg_read_header( &cinfo, TRUE );
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jpeg_start_decompress( &cinfo );
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mWidth = cinfo.output_width;
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mHeight = cinfo.output_height;
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mBits = new uint32[ mWidth * mHeight ];
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uint32* destPtr = mBits;
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// Have the jpeg library allocate a scan-line buffer as a
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// per-image resource so that it will be automatically deallocated
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// by jpeg_finish_decompress.
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int row_stride = cinfo.output_width * cinfo.output_components;
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unsigned char** scanline = (*cinfo.mem->alloc_sarray)( (j_common_ptr)&cinfo, JPOOL_IMAGE, row_stride, 1 );
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if ( cinfo.output_components == 1 )
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{
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while ( cinfo.output_scanline < cinfo.output_height )
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{
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jpeg_read_scanlines( &cinfo, scanline, 1 );
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uint8* p = *scanline;
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for ( JDIMENSION i = 0; i < cinfo.output_width; ++i )
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{
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int r = *p++;
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*destPtr++ = 0xFF000000 | (r << 16) | (r << 8) | (r);
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}
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}
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}
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else
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{
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while ( cinfo.output_scanline < cinfo.output_height )
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{
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jpeg_read_scanlines(&cinfo, scanline, 1 );
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uint8* p = *scanline;
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for ( JDIMENSION i = 0; i < cinfo.output_width; ++i )
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{
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int r = *p++;
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int g = *p++;
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int b = *p++;
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*destPtr++ = 0xFF000000 | (r << 16) | (g << 8) | (b);
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}
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}
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}
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jpeg_finish_decompress( &cinfo );
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jpeg_destroy_decompress( &cinfo );
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return true;
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2021-04-12 17:23:18 -04:00
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}
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void JPEGData::Compress(int quality)
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{
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jpeg_compress_struct cinfo;
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/* Now we can initialize the JPEG compression object. */
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jpeg_create_compress(&cinfo);
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ErrorHandler err(&cinfo);
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if (setjmp(err.setjmpBuffer))
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{
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// ErrorHandler::OnErrorExit will longjmp back to here from
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// within the ReadImage call below.
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jpeg_destroy_compress(&cinfo);
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return;
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}
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JSAMPROW row_pointer[1];
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JpegMemDest jpegMemDest(this, &cinfo);
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//jpeg_stdio_dest(&cinfo, outfile);
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/* Step 3: set parameters for compression */
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/* First we supply a description of the input image.
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* Four fields of the cinfo struct must be filled in:
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*/
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cinfo.image_width = mWidth; /* image width and height, in pixels */
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cinfo.image_height = mHeight;
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cinfo.input_components = 3; /* # of color components per pixel */
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cinfo.in_color_space = JCS_RGB; /* colorspace of input image */
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/* Now use the library's routine to set default compression parameters.
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* (You must set at least cinfo.in_color_space before calling this,
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* since the defaults depend on the source color space.)
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*/
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jpeg_set_defaults(&cinfo);
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/* Now you can set any non-default parameters you wish to.
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* Here we just illustrate the use of quality (quantization table) scaling:
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*/
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jpeg_set_quality(&cinfo, quality, TRUE /* limit to baseline-JPEG values */);
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/* Step 4: Start compressor */
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/* TRUE ensures that we will write a complete interchange-JPEG file.
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* Pass TRUE unless you are very sure of what you're doing.
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*/
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jpeg_start_compress(&cinfo, TRUE);
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/* Step 5: while (scan lines remain to be written) */
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/* jpeg_write_scanlines(...); */
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/* Here we use the library's state variable cinfo.next_scanline as the
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* loop counter, so that we don't have to keep track ourselves.
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* To keep things simple, we pass one scanline per call; you can pass
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* more if you wish, though.
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*/
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int row_stride = mWidth * 3; /* JSAMPLEs per row in image_buffer */
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uint8* line = new uint8[mWidth * 3];
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row_pointer[0] = (JSAMPROW)line;
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while (cinfo.next_scanline < cinfo.image_height)
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{
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uint8* src = (uint8*)&mBits[(mHeight - cinfo.next_scanline - 1) * mWidth];
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uint8* dest = line;
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for (int x = 0; x < mWidth; x++)
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{
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*(dest++) = src[2];
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*(dest++) = src[1];
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*(dest++) = src[0];
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src += 4;
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}
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(void)jpeg_write_scanlines(&cinfo, row_pointer, 1);
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}
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delete line;
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/* Step 6: Finish compression */
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jpeg_finish_compress(&cinfo);
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/* After finish_compress, we can close the output file. */
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//fclose(outfile);
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/* Step 7: release JPEG compression object */
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/* This is an important step since it will release a good deal of memory. */
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jpeg_destroy_compress(&cinfo);
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mSrcDataLen = (int)jpegMemDest.mData.size();
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mSrcData = new uint8[mSrcDataLen];
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memcpy(mSrcData, &jpegMemDest.mData[0], mSrcDataLen);
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2019-08-23 11:56:54 -07:00
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}
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