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194 lines
5.8 KiB
194 lines
5.8 KiB
#include "levels/reencode_dun_cels.hpp" |
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#include <cstddef> |
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#include <cstdint> |
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#include <cstring> |
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#include <memory> |
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#include <span> |
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#include <utility> |
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#include <SDL_endian.h> |
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#include "levels/dun_tile.hpp" |
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#include "utils/attributes.h" |
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#include "utils/endian.hpp" |
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#include "utils/format_int.hpp" |
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#include "utils/log.hpp" |
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namespace devilution { |
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namespace { |
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constexpr size_t LowerTriangleBloat = 16; |
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constexpr size_t TriangleBloat = LowerTriangleBloat + 14; |
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DVL_ALWAYS_INLINE void ReencodeDungeonCelsLeftTriangleLower(uint8_t *&dst, const uint8_t *&src) |
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{ |
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unsigned width = 0; |
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for (unsigned i = 0; i < 8; ++i) { |
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src += 2; // Skips the two zero bytes (aka bloat). |
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width += 2; |
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std::memcpy(dst, src, width); |
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src += width; |
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dst += width; |
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width += 2; |
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std::memcpy(dst, src, width); |
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src += width; |
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dst += width; |
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} |
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} |
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DVL_ALWAYS_INLINE void ReencodeDungeonCelsLeftTriangle(uint8_t *&dst, const uint8_t *&src) |
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{ |
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ReencodeDungeonCelsLeftTriangleLower(dst, src); |
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unsigned width = DunFrameWidth; |
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for (unsigned i = 0; i < 7; ++i) { |
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src += 2; // Skips the two zero bytes (aka bloat). |
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width -= 2; |
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std::memcpy(dst, src, width); |
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src += width; |
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dst += width; |
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width -= 2; |
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std::memcpy(dst, src, width); |
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src += width; |
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dst += width; |
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} |
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std::memcpy(dst, src, width); |
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src += width; |
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dst += width; |
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} |
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DVL_ALWAYS_INLINE void ReencodeDungeonCelsRightTriangleLower(uint8_t *&dst, const uint8_t *&src) |
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{ |
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unsigned width = 0; |
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for (unsigned i = 0; i < 8; ++i) { |
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width += 2; |
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std::memcpy(dst, src, width); |
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src += width + 2; // Skips the two zero bytes (aka bloat). |
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dst += width; |
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width += 2; |
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std::memcpy(dst, src, width); |
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src += width; |
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dst += width; |
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} |
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} |
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DVL_ALWAYS_INLINE void ReencodeDungeonCelsRightTriangle(uint8_t *&dst, const uint8_t *&src) |
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{ |
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ReencodeDungeonCelsRightTriangleLower(dst, src); |
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unsigned width = DunFrameWidth; |
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for (unsigned i = 0; i < 7; ++i) { |
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width -= 2; |
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std::memcpy(dst, src, width); |
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src += width + 2; // Skips the two zero bytes (aka bloat). |
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dst += width; |
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width -= 2; |
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std::memcpy(dst, src, width); |
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src += width; |
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dst += width; |
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} |
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std::memcpy(dst, src, width); |
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src += width; |
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dst += width; |
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} |
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DVL_ALWAYS_INLINE void ReencodeDungeonCelsLeftTrapezoid(uint8_t *&dst, const uint8_t *&src) |
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{ |
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ReencodeDungeonCelsLeftTriangleLower(dst, src); |
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std::memcpy(dst, src, DunFrameWidth * 16); |
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src += DunFrameWidth * 16; |
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dst += DunFrameWidth * 16; |
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} |
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DVL_ALWAYS_INLINE void ReencodeDungeonCelsRightTrapezoid(uint8_t *&dst, const uint8_t *&src) |
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{ |
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ReencodeDungeonCelsRightTriangleLower(dst, src); |
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std::memcpy(dst, src, DunFrameWidth * 16); |
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src += DunFrameWidth * 16; |
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dst += DunFrameWidth * 16; |
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} |
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size_t GetReencodedSize(const uint8_t *dungeonCels, std::span<std::pair<uint16_t, TileType>> frames) |
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{ |
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size_t result = (2 + frames.size()) * 4; |
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const auto *srcOffsets = reinterpret_cast<const uint32_t *>(dungeonCels); |
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for (const auto &[frame, type] : frames) { |
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size_t frameSize; |
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switch (type) { |
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case TileType::TransparentSquare: { |
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const uint32_t srcFrameBegin = SDL_SwapLE32(srcOffsets[frame]); |
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const uint32_t srcFrameEnd = SDL_SwapLE32(srcOffsets[frame + 1]); |
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frameSize = srcFrameEnd - srcFrameBegin; |
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} break; |
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case TileType::Square: { |
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frameSize = DunFrameWidth * DunFrameHeight; |
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} break; |
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case TileType::LeftTriangle: |
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case TileType::RightTriangle: |
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frameSize = 544 - TriangleBloat; |
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break; |
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case TileType::LeftTrapezoid: |
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case TileType::RightTrapezoid: |
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frameSize = 800 - LowerTriangleBloat; |
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break; |
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} |
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result += frameSize; |
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} |
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return result; |
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} |
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} // namespace |
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void ReencodeDungeonCels(std::unique_ptr<std::byte[]> &dungeonCels, std::span<std::pair<uint16_t, TileType>> frames) |
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{ |
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const auto *srcData = reinterpret_cast<const uint8_t *>(dungeonCels.get()); |
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const auto *srcOffsets = reinterpret_cast<const uint32_t *>(srcData); |
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LogVerbose("Re-encoding dungeon CELs: {} frames, {} bytes", |
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FormatInteger(SDL_SwapLE32(srcOffsets[0])), |
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FormatInteger(SDL_SwapLE32(srcOffsets[SDL_SwapLE32(srcOffsets[0]) + 1]))); |
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const size_t outSize = GetReencodedSize(srcData, frames); |
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std::unique_ptr<std::byte[]> result { new std::byte[outSize] }; |
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auto *const resultPtr = reinterpret_cast<uint8_t *>(result.get()); |
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WriteLE32(resultPtr, frames.size()); |
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uint8_t *out = resultPtr + (2 + frames.size()) * 4; // number of frames, frame offsets, file size |
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for (const auto &[frame, type] : frames) { |
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WriteLE32(&resultPtr[static_cast<size_t>(frame * 4)], out - resultPtr); |
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const uint32_t srcFrameBegin = SDL_SwapLE32(srcOffsets[frame]); |
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const uint8_t *src = &srcData[srcFrameBegin]; |
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switch (type) { |
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case TileType::TransparentSquare: { |
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const uint32_t srcFrameEnd = SDL_SwapLE32(srcOffsets[frame + 1]); |
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const uint32_t size = srcFrameEnd - srcFrameBegin; |
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std::memcpy(out, src, size); |
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out += size; |
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} break; |
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case TileType::Square: |
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std::memcpy(out, src, DunFrameWidth * DunFrameHeight); |
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out += DunFrameWidth * DunFrameHeight; |
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break; |
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case TileType::LeftTriangle: |
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ReencodeDungeonCelsLeftTriangle(out, src); |
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break; |
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case TileType::RightTriangle: |
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ReencodeDungeonCelsRightTriangle(out, src); |
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break; |
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case TileType::LeftTrapezoid: |
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ReencodeDungeonCelsLeftTrapezoid(out, src); |
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break; |
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case TileType::RightTrapezoid: |
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ReencodeDungeonCelsRightTrapezoid(out, src); |
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break; |
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} |
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} |
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WriteLE32(&resultPtr[(1 + frames.size()) * 4], outSize); |
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const auto *dstOffsets = reinterpret_cast<const uint32_t *>(resultPtr); |
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LogVerbose(" Re-encoded dungeon CELs: {} frames, {} bytes", |
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FormatInteger(SDL_SwapLE32(dstOffsets[0])), |
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FormatInteger(SDL_SwapLE32(dstOffsets[SDL_SwapLE32(dstOffsets[0]) + 1]))); |
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dungeonCels = std::move(result); |
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} |
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} // namespace devilution
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