mirror of
https://github.com/CloverHackyColor/CloverBootloader.git
synced 2024-11-24 11:45:27 +01:00
1cb7b4e69e
Renamed some method in XArray XObjArray and XStringW.
247 lines
8.7 KiB
C++
247 lines
8.7 KiB
C++
///*
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// * libeg/load_icns.c
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// * Loading function for .icns Apple icon images
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// *
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// * Copyright (c) 2006 Christoph Pfisterer
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// * 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
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// * met:
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// *
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// * * Redistributions of source code must retain the above copyright
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// * notice, this list of conditions and the following disclaimer.
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// *
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// * * Redistributions in binary form must reproduce the above copyright
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// * notice, this list of conditions and the following disclaimer in the
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// * documentation and/or other materials provided with the
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// * distribution.
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// *
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// * * Neither the name of Christoph Pfisterer nor the names of the
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// * contributors may be used to endorse or promote products derived
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// * from this software without specific prior written permission.
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// *
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// * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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// * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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// * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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// * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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// * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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// * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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// * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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// * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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// * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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// * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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// * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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// */
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////#if !defined(LODEPNG)
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//#include "libegint.h"
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//
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//#ifndef DEBUG_ALL
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//#define DEBUG_IMG 0
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//#else
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//#define DEBUG_IMG DEBUG_ALL
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//#endif
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//
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//#if DEBUG_IMG == 0
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//#define DBG(...)
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//#else
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//#define DBG(...) DebugLog(DEBUG_IMG, __VA_ARGS__)
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//#endif
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//
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//
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////
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//// Decompress .icns RLE data
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////
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//
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//VOID egDecompressIcnsRLE(IN OUT UINT8 **CompData, IN OUT UINTN *CompLen, IN UINT8 *PixelData, IN UINTN PixelCount)
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//{
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// UINT8 *cp;
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// UINT8 *cp_end;
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// UINT8 *pp;
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// UINTN pp_left;
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// UINTN len, i;
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// UINT8 value;
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//
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// // setup variables
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// cp = *CompData;
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// cp_end = cp + *CompLen;
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// pp = PixelData;
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// pp_left = PixelCount;
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//
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// // decode
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// while (cp + 1 < cp_end && pp_left > 0) {
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// len = *cp++;
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// if (len & 0x80) { // compressed data: repeat next byte
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// len -= 125;
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// if (len > pp_left)
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// break;
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// value = *cp++;
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// for (i = 0; i < len; i++) {
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// *pp = value;
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// pp += 4;
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// }
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// } else { // uncompressed data: copy bytes
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// len++;
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// if (len > pp_left || cp + len > cp_end)
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// break;
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// for (i = 0; i < len; i++) {
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// *pp = *cp++;
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// pp += 4;
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// }
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// }
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// pp_left -= len;
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// }
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//
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// if (pp_left > 0) {
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// DBG(" egDecompressIcnsRLE: still need %d bytes of pixel data\n", pp_left);
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// }
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//
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// // record what's left of the compressed data stream
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// *CompData = cp;
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// *CompLen = (UINTN)(cp_end - cp);
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//}
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//
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////
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//// Load Apple .icns icons
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////
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//
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//EG_IMAGE * egDecodeICNS(IN UINT8 *FileData, IN UINTN FileDataLength, IN UINTN IconSize, IN BOOLEAN WantAlpha)
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//{
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// EG_IMAGE *NewImage;
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// UINT8 *Ptr, *BufferEnd, *DataPtr, *MaskPtr;
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// UINT32 BlockLen, DataLen, MaskLen;
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// UINTN FetchPixelSize, PixelCount, i;
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// UINT8 *CompData;
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// UINTN CompLen;
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// UINT8 *SrcPtr;
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// EG_PIXEL *DestPtr;
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//
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// if (FileDataLength < 8 || FileData == NULL ||
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// FileData[0] != 'i' || FileData[1] != 'c' || FileData[2] != 'n' || FileData[3] != 's') {
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// // not an icns file...
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// DBG("not icns\n");
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// return NULL;
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// }
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//
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// FetchPixelSize = IconSize;
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// for (;;) {
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// DataPtr = NULL;
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// DataLen = 0;
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// MaskPtr = NULL;
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// MaskLen = 0;
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//
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// Ptr = FileData + 8;
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// BufferEnd = FileData + FileDataLength;
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// // iterate over tagged blocks in the file
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// while (Ptr + 8 <= BufferEnd) {
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// BlockLen = ((UINT32)Ptr[4] << 24) + ((UINT32)Ptr[5] << 16) + ((UINT32)Ptr[6] << 8) + (UINT32)Ptr[7];
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// if (Ptr + BlockLen > BufferEnd) // block continues beyond end of file
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// break;
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//
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// // extract the appropriate blocks for each pixel size
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// if (FetchPixelSize == 128) {
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// if (Ptr[0] == 'i' && Ptr[1] == 't' && Ptr[2] == '3' && Ptr[3] == '2') {
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// if (Ptr[8] == 0 && Ptr[9] == 0 && Ptr[10] == 0 && Ptr[11] == 0) {
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// DataPtr = Ptr + 12;
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// DataLen = BlockLen - 12;
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// }
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// } else if (Ptr[0] == 't' && Ptr[1] == '8' && Ptr[2] == 'm' && Ptr[3] == 'k') {
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// MaskPtr = Ptr + 8;
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// MaskLen = BlockLen - 8;
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// }
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//
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// } else if (FetchPixelSize == 48) {
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// if (Ptr[0] == 'i' && Ptr[1] == 'h' && Ptr[2] == '3' && Ptr[3] == '2') {
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// DataPtr = Ptr + 8;
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// DataLen = BlockLen - 8;
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// } else if (Ptr[0] == 'h' && Ptr[1] == '8' && Ptr[2] == 'm' && Ptr[3] == 'k') {
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// MaskPtr = Ptr + 8;
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// MaskLen = BlockLen - 8;
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// }
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//
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// } else if (FetchPixelSize == 32) {
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// if (Ptr[0] == 'i' && Ptr[1] == 'l' && Ptr[2] == '3' && Ptr[3] == '2') {
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// DataPtr = Ptr + 8;
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// DataLen = BlockLen - 8;
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// } else if (Ptr[0] == 'l' && Ptr[1] == '8' && Ptr[2] == 'm' && Ptr[3] == 'k') {
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// MaskPtr = Ptr + 8;
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// MaskLen = BlockLen - 8;
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// }
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//
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// } else if (FetchPixelSize == 16) {
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// if (Ptr[0] == 'i' && Ptr[1] == 's' && Ptr[2] == '3' && Ptr[3] == '2') {
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// DataPtr = Ptr + 8;
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// DataLen = BlockLen - 8;
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// } else if (Ptr[0] == 's' && Ptr[1] == '8' && Ptr[2] == 'm' && Ptr[3] == 'k') {
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// MaskPtr = Ptr + 8;
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// MaskLen = BlockLen - 8;
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// }
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//
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// }
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//
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// Ptr += BlockLen;
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// }
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// //TODO - take different larger size if not found
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// // FUTURE: try to load a different size and scale it later
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// if (DataPtr == NULL && FetchPixelSize == 128) {
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// FetchPixelSize = 32;
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// continue;
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// }
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//
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// break;
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// }
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//
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// if (DataPtr == NULL) {
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// DBG("not found such IconSize\n");
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// return NULL; // no image found
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// }
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//
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// // allocate image structure and buffer
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// NewImage = egCreateImage(FetchPixelSize, FetchPixelSize, WantAlpha);
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// if (NewImage == NULL)
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// return NULL;
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// PixelCount = FetchPixelSize * FetchPixelSize;
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//
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// if (DataLen < PixelCount * 3) {
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//
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// // pixel data is compressed, RGB planar
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// CompData = DataPtr;
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// CompLen = DataLen;
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// egDecompressIcnsRLE(&CompData, &CompLen, &NewImage->PixelData->r, PixelCount);
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// egDecompressIcnsRLE(&CompData, &CompLen, &NewImage->PixelData->g, PixelCount);
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// egDecompressIcnsRLE(&CompData, &CompLen, &NewImage->PixelData->b, PixelCount);
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// // possible assertion: CompLen == 0
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// if (CompLen > 0) {
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// DBG(" egLoadICNSIcon: %d bytes of compressed data left\n", CompLen);
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// }
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//
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// } else {
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//
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// // pixel data is uncompressed, RGB interleaved
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// SrcPtr = DataPtr;
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// DestPtr = NewImage->PixelData;
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// for (i = 0; i < PixelCount; i++, DestPtr++) {
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// DestPtr->r = *SrcPtr++;
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// DestPtr->g = *SrcPtr++;
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// DestPtr->b = *SrcPtr++;
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// }
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//
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// }
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//
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// // Jief : not sure where they should define TODO !
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// extern VOID egInsertPlane(IN UINT8 *SrcDataPtr, IN UINT8 *DestPlanePtr, IN UINTN PixelCount);
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// extern VOID egSetPlane(IN UINT8 *DestPlanePtr, IN UINT8 Value, IN UINT64 PixelCount);
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//
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// // add/set alpha plane
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// if (MaskPtr != NULL && MaskLen >= PixelCount && WantAlpha)
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// egInsertPlane(MaskPtr, &NewImage->PixelData->a, PixelCount);
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// else
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// egSetPlane(&NewImage->PixelData->a, WantAlpha ? 255 : 0, PixelCount);
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//
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// // FUTURE: scale to originally requested size if we had to load another size
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//
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// return NewImage;
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//}
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////#endif
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///* EOF */
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