mirror of
https://github.com/yuzu-emu/yuzu-android.git
synced 2024-12-25 07:55:39 +00:00
Pica/Texture: Move part of ETC1 decoding to new file and cleanups
This commit is contained in:
parent
09a750e866
commit
c74787a11c
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@ -15,6 +15,7 @@ set(SRCS
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shader/shader.cpp
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shader/shader.cpp
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shader/shader_interpreter.cpp
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shader/shader_interpreter.cpp
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swrasterizer.cpp
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swrasterizer.cpp
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texture/etc1.cpp
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texture/texture_decode.cpp
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texture/texture_decode.cpp
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vertex_loader.cpp
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vertex_loader.cpp
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video_core.cpp
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video_core.cpp
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@ -44,6 +45,7 @@ set(HEADERS
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shader/shader.h
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shader/shader.h
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shader/shader_interpreter.h
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shader/shader_interpreter.h
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swrasterizer.h
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swrasterizer.h
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texture/etc1.h
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texture/texture_decode.h
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texture/texture_decode.h
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utils.h
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utils.h
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vertex_loader.h
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vertex_loader.h
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124
src/video_core/texture/etc1.cpp
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124
src/video_core/texture/etc1.cpp
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@ -0,0 +1,124 @@
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// Copyright 2017 Citra Emulator Project
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// Licensed under GPLv2 or any later version
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// Refer to the license.txt file included.
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#pragma once
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#include <array>
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#include "common/bit_field.h"
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#include "common/color.h"
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#include "common/common_types.h"
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#include "common/math_util.h"
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#include "common/vector_math.h"
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#include "video_core/texture/etc1.h"
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namespace Pica {
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namespace Texture {
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namespace {
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constexpr std::array<u8[2], 8> etc1_modifier_table = {{
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{2, 8}, {5, 17}, {9, 29}, {13, 42}, {18, 60}, {24, 80}, {33, 106}, {47, 183},
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}};
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union ETC1Tile {
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u64 raw;
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// Each of these two is a collection of 16 bits (one per lookup value)
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BitField<0, 16, u64> table_subindexes;
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BitField<16, 16, u64> negation_flags;
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unsigned GetTableSubIndex(unsigned index) const {
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return (table_subindexes >> index) & 1;
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}
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bool GetNegationFlag(unsigned index) const {
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return ((negation_flags >> index) & 1) == 1;
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}
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BitField<32, 1, u64> flip;
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BitField<33, 1, u64> differential_mode;
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BitField<34, 3, u64> table_index_2;
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BitField<37, 3, u64> table_index_1;
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union {
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// delta value + base value
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BitField<40, 3, s64> db;
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BitField<43, 5, u64> b;
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BitField<48, 3, s64> dg;
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BitField<51, 5, u64> g;
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BitField<56, 3, s64> dr;
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BitField<59, 5, u64> r;
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} differential;
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union {
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BitField<40, 4, u64> b2;
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BitField<44, 4, u64> b1;
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BitField<48, 4, u64> g2;
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BitField<52, 4, u64> g1;
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BitField<56, 4, u64> r2;
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BitField<60, 4, u64> r1;
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} separate;
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const Math::Vec3<u8> GetRGB(unsigned int x, unsigned int y) const {
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int texel = 4 * x + y;
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if (flip)
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std::swap(x, y);
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// Lookup base value
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Math::Vec3<int> ret;
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if (differential_mode) {
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ret.r() = static_cast<int>(differential.r);
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ret.g() = static_cast<int>(differential.g);
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ret.b() = static_cast<int>(differential.b);
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if (x >= 2) {
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ret.r() += static_cast<int>(differential.dr);
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ret.g() += static_cast<int>(differential.dg);
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ret.b() += static_cast<int>(differential.db);
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}
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ret.r() = Color::Convert5To8(ret.r());
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ret.g() = Color::Convert5To8(ret.g());
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ret.b() = Color::Convert5To8(ret.b());
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} else {
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if (x < 2) {
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ret.r() = Color::Convert4To8(static_cast<u8>(separate.r1));
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ret.g() = Color::Convert4To8(static_cast<u8>(separate.g1));
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ret.b() = Color::Convert4To8(static_cast<u8>(separate.b1));
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} else {
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ret.r() = Color::Convert4To8(static_cast<u8>(separate.r2));
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ret.g() = Color::Convert4To8(static_cast<u8>(separate.g2));
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ret.b() = Color::Convert4To8(static_cast<u8>(separate.b2));
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}
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}
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// Add modifier
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unsigned table_index =
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static_cast<int>((x < 2) ? table_index_1.Value() : table_index_2.Value());
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int modifier = etc1_modifier_table[table_index][GetTableSubIndex(texel)];
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if (GetNegationFlag(texel))
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modifier *= -1;
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ret.r() = MathUtil::Clamp(ret.r() + modifier, 0, 255);
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ret.g() = MathUtil::Clamp(ret.g() + modifier, 0, 255);
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ret.b() = MathUtil::Clamp(ret.b() + modifier, 0, 255);
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return ret.Cast<u8>();
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}
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};
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} // anonymous namespace
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Math::Vec3<u8> SampleETC1Subtile(u64 value, unsigned int x, unsigned int y) {
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ETC1Tile tile{value};
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return tile.GetRGB(x, y);
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}
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} // namespace Texture
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} // namespace Pica
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16
src/video_core/texture/etc1.h
Normal file
16
src/video_core/texture/etc1.h
Normal file
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@ -0,0 +1,16 @@
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// Copyright 2017 Citra Emulator Project
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// Licensed under GPLv2 or any later version
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// Refer to the license.txt file included.
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#pragma once
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#include "common/common_types.h"
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#include "common/vector_math.h"
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namespace Pica {
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namespace Texture {
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Math::Vec3<u8> SampleETC1Subtile(u64 value, unsigned int x, unsigned int y);
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} // namespace Texture
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} // namespace Pica
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@ -8,8 +8,10 @@
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#include "common/color.h"
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#include "common/color.h"
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#include "common/logging/log.h"
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#include "common/logging/log.h"
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#include "common/math_util.h"
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#include "common/math_util.h"
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#include "common/swap.h"
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#include "common/vector_math.h"
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#include "common/vector_math.h"
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#include "video_core/pica.h"
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#include "video_core/pica.h"
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#include "video_core/texture/etc1.h"
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#include "video_core/texture/texture_decode.h"
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#include "video_core/texture/texture_decode.h"
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#include "video_core/utils.h"
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#include "video_core/utils.h"
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@ -177,127 +179,32 @@ Math::Vec4<u8> LookupTexelInTile(const u8* source, unsigned int x, unsigned int
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case Regs::TextureFormat::ETC1:
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case Regs::TextureFormat::ETC1:
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case Regs::TextureFormat::ETC1A4: {
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case Regs::TextureFormat::ETC1A4: {
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bool has_alpha = (info.format == Regs::TextureFormat::ETC1A4);
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bool has_alpha = (info.format == Regs::TextureFormat::ETC1A4);
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size_t subtile_size = has_alpha ? 16 : 8;
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// ETC1 further subdivides each 8x8 tile into four 4x4 subtiles
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// ETC1 further subdivides each 8x8 tile into four 4x4 subtiles
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constexpr unsigned int subtile_width = 4;
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constexpr unsigned int subtile_width = 4;
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constexpr unsigned int subtile_height = 4;
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constexpr unsigned int subtile_height = 4;
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unsigned int subtile_index = (x / subtile_width) + 2 * (y / subtile_height);
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unsigned int subtile_index = (x / subtile_width) + 2 * (y / subtile_height);
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size_t subtile_size = has_alpha ? 16 : 8;
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x %= subtile_width;
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y %= subtile_height;
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// TODO(yuriks): Use memcpy instead of reinterpret_cast
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const u8* subtile_ptr = source + subtile_index * subtile_size;
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const u64* source_ptr = reinterpret_cast<const u64*>(source + subtile_index * subtile_size);
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u64 alpha = 0xFFFFFFFFFFFFFFFF;
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u8 alpha = 255;
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if (has_alpha) {
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if (has_alpha) {
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alpha = *source_ptr;
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u64_le packed_alpha;
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source_ptr++;
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memcpy(&packed_alpha, subtile_ptr, sizeof(u64));
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subtile_ptr += sizeof(u64);
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alpha = Color::Convert4To8((packed_alpha >> (4 * (x * subtile_width + y))) & 0xF);
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}
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}
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union ETC1Tile {
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u64_le subtile_data;
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// Each of these two is a collection of 16 bits (one per lookup value)
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memcpy(&subtile_data, subtile_ptr, sizeof(u64));
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BitField<0, 16, u64> table_subindexes;
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BitField<16, 16, u64> negation_flags;
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unsigned GetTableSubIndex(unsigned index) const {
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return Math::MakeVec(SampleETC1Subtile(subtile_data, x, y),
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return (table_subindexes >> index) & 1;
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disable_alpha ? (u8)255 : alpha);
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}
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bool GetNegationFlag(unsigned index) const {
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return ((negation_flags >> index) & 1) == 1;
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}
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BitField<32, 1, u64> flip;
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BitField<33, 1, u64> differential_mode;
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BitField<34, 3, u64> table_index_2;
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BitField<37, 3, u64> table_index_1;
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union {
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// delta value + base value
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BitField<40, 3, s64> db;
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BitField<43, 5, u64> b;
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BitField<48, 3, s64> dg;
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BitField<51, 5, u64> g;
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BitField<56, 3, s64> dr;
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BitField<59, 5, u64> r;
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} differential;
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union {
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BitField<40, 4, u64> b2;
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BitField<44, 4, u64> b1;
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BitField<48, 4, u64> g2;
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BitField<52, 4, u64> g1;
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BitField<56, 4, u64> r2;
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BitField<60, 4, u64> r1;
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} separate;
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const Math::Vec3<u8> GetRGB(int x, int y) const {
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int texel = 4 * x + y;
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if (flip)
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std::swap(x, y);
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// Lookup base value
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Math::Vec3<int> ret;
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if (differential_mode) {
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ret.r() = static_cast<int>(differential.r);
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ret.g() = static_cast<int>(differential.g);
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ret.b() = static_cast<int>(differential.b);
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if (x >= 2) {
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ret.r() += static_cast<int>(differential.dr);
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ret.g() += static_cast<int>(differential.dg);
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ret.b() += static_cast<int>(differential.db);
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}
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ret.r() = Color::Convert5To8(ret.r());
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ret.g() = Color::Convert5To8(ret.g());
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ret.b() = Color::Convert5To8(ret.b());
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} else {
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if (x < 2) {
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ret.r() = Color::Convert4To8(static_cast<u8>(separate.r1));
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ret.g() = Color::Convert4To8(static_cast<u8>(separate.g1));
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ret.b() = Color::Convert4To8(static_cast<u8>(separate.b1));
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} else {
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ret.r() = Color::Convert4To8(static_cast<u8>(separate.r2));
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ret.g() = Color::Convert4To8(static_cast<u8>(separate.g2));
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ret.b() = Color::Convert4To8(static_cast<u8>(separate.b2));
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}
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}
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// Add modifier
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unsigned table_index =
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static_cast<int>((x < 2) ? table_index_1.Value() : table_index_2.Value());
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static const std::array<std::array<u8, 2>, 8> etc1_modifier_table = {{
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{{2, 8}},
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{{5, 17}},
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{{9, 29}},
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{{13, 42}},
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{{18, 60}},
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{{24, 80}},
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{{33, 106}},
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{{47, 183}},
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}};
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int modifier = etc1_modifier_table.at(table_index).at(GetTableSubIndex(texel));
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if (GetNegationFlag(texel))
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modifier *= -1;
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ret.r() = MathUtil::Clamp(ret.r() + modifier, 0, 255);
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ret.g() = MathUtil::Clamp(ret.g() + modifier, 0, 255);
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ret.b() = MathUtil::Clamp(ret.b() + modifier, 0, 255);
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return ret.Cast<u8>();
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}
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} const* etc1_tile = reinterpret_cast<const ETC1Tile*>(source_ptr);
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alpha >>= 4 * ((x & 3) * 4 + (y & 3));
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return Math::MakeVec(etc1_tile->GetRGB(x & 3, y & 3),
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disable_alpha ? (u8)255 : Color::Convert4To8(alpha & 0xF));
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}
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}
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default:
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default:
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