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gl_shader_gen: Various cleanups to shader generation.
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240a3b80d9
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0ebcff710e
@ -95,7 +95,7 @@ namespace std {
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template <>
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struct hash<PicaShaderConfig> {
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std::size_t operator()(const PicaShaderConfig& k) const {
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size_t operator()(const PicaShaderConfig& k) const {
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return Common::ComputeHash64(&k, sizeof(PicaShaderConfig));
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}
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};
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@ -29,33 +29,33 @@ static void AppendSource(std::string& out, TevStageConfig::Source source,
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using Source = TevStageConfig::Source;
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switch (source) {
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case Source::PrimaryColor:
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out += "attr[2]";
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out += "primary_color";
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break;
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case Source::PrimaryFragmentColor:
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// HACK: Until we implement fragment lighting, use primary_color
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out += "attr[2]";
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out += "primary_color";
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break;
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case Source::SecondaryFragmentColor:
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// HACK: Until we implement fragment lighting, use zero
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out += "vec4(0.0, 0.0, 0.0, 0.0)";
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out += "vec4(0.0)";
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break;
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case Source::Texture0:
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out += "texture(tex[0], attr[3].xy)";
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out += "texture(tex[0], texcoord[0])";
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break;
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case Source::Texture1:
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out += "texture(tex[1], attr[3].zw)";
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out += "texture(tex[1], texcoord[1])";
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break;
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case Source::Texture2: // TODO: Unverified
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out += "texture(tex[2], attr[5].zw)";
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case Source::Texture2:
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out += "texture(tex[2], texcoord[2])";
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break;
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case Source::PreviousBuffer:
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out += "g_combiner_buffer";
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out += "combiner_buffer";
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break;
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case Source::Constant:
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out += "const_color[" + index_name + "]";
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((out += "const_color[") += index_name) += ']';
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break;
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case Source::Previous:
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out += "g_last_tex_env_out";
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out += "last_tex_env_out";
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break;
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default:
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out += "vec4(0.0)";
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@ -172,8 +172,8 @@ static void AppendAlphaModifier(std::string& out, TevStageConfig::AlphaModifier
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/// Writes the combiner function for the color components for the specified TEV stage operation
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static void AppendColorCombiner(std::string& out, TevStageConfig::Operation operation,
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const std::string& variable_name) {
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out += "clamp(";
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using Operation = TevStageConfig::Operation;
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switch (operation) {
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case Operation::Replace:
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out += variable_name + "[0]";
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@ -182,19 +182,20 @@ static void AppendColorCombiner(std::string& out, TevStageConfig::Operation oper
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out += variable_name + "[0] * " + variable_name + "[1]";
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break;
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case Operation::Add:
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out += "min(" + variable_name + "[0] + " + variable_name + "[1], vec3(1.0))";
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out += variable_name + "[0] + " + variable_name + "[1]";
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break;
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case Operation::AddSigned:
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out += "clamp(" + variable_name + "[0] + " + variable_name + "[1] - vec3(0.5), vec3(0.0), vec3(1.0))";
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out += variable_name + "[0] + " + variable_name + "[1] - vec3(0.5)";
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break;
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case Operation::Lerp:
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// TODO(bunnei): Verify if HW actually does this per-component, otherwise we can just use builtin lerp
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out += variable_name + "[0] * " + variable_name + "[2] + " + variable_name + "[1] * (vec3(1.0) - " + variable_name + "[2])";
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break;
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case Operation::Subtract:
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out += "max(" + variable_name + "[0] - " + variable_name + "[1], vec3(0.0))";
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out += variable_name + "[0] - " + variable_name + "[1]";
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break;
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case Operation::MultiplyThenAdd:
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out += "min(" + variable_name + "[0] * " + variable_name + "[1] + " + variable_name + "[2], vec3(1.0))";
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out += variable_name + "[0] * " + variable_name + "[1] + " + variable_name + "[2]";
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break;
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case Operation::AddThenMultiply:
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out += "min(" + variable_name + "[0] + " + variable_name + "[1], vec3(1.0)) * " + variable_name + "[2]";
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@ -204,11 +205,13 @@ static void AppendColorCombiner(std::string& out, TevStageConfig::Operation oper
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LOG_CRITICAL(Render_OpenGL, "Unknown color combiner operation: %u", operation);
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break;
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}
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out += ", vec3(0.0), vec3(1.0))";
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}
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/// Writes the combiner function for the alpha component for the specified TEV stage operation
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static void AppendAlphaCombiner(std::string& out, TevStageConfig::Operation operation,
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const std::string& variable_name) {
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out += "clamp(";
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using Operation = TevStageConfig::Operation;
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switch (operation) {
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case Operation::Replace:
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@ -218,19 +221,19 @@ static void AppendAlphaCombiner(std::string& out, TevStageConfig::Operation oper
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out += variable_name + "[0] * " + variable_name + "[1]";
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break;
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case Operation::Add:
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out += "min(" + variable_name + "[0] + " + variable_name + "[1], 1.0)";
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out += variable_name + "[0] + " + variable_name + "[1]";
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break;
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case Operation::AddSigned:
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out += "clamp(" + variable_name + "[0] + " + variable_name + "[1] - 0.5, 0.0, 1.0)";
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out += variable_name + "[0] + " + variable_name + "[1] - 0.5";
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break;
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case Operation::Lerp:
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out += variable_name + "[0] * " + variable_name + "[2] + " + variable_name + "[1] * (1.0 - " + variable_name + "[2])";
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break;
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case Operation::Subtract:
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out += "max(" + variable_name + "[0] - " + variable_name + "[1], 0.0)";
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out += variable_name + "[0] - " + variable_name + "[1]";
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break;
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case Operation::MultiplyThenAdd:
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out += "min(" + variable_name + "[0] * " + variable_name + "[1] + " + variable_name + "[2], 1.0)";
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out += variable_name + "[0] * " + variable_name + "[1] + " + variable_name + "[2]";
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break;
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case Operation::AddThenMultiply:
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out += "min(" + variable_name + "[0] + " + variable_name + "[1], 1.0) * " + variable_name + "[2]";
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@ -240,6 +243,7 @@ static void AppendAlphaCombiner(std::string& out, TevStageConfig::Operation oper
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LOG_CRITICAL(Render_OpenGL, "Unknown alpha combiner operation: %u", operation);
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break;
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}
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out += ", 0.0, 1.0)";
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}
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/// Writes the if-statement condition used to evaluate alpha testing
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@ -253,22 +257,22 @@ static void AppendAlphaTestCondition(std::string& out, Regs::CompareFunc func) {
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out += "false";
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break;
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case CompareFunc::Equal:
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out += "int(g_last_tex_env_out.a * 255.0f) != alphatest_ref";
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out += "int(last_tex_env_out.a * 255.0f) != alphatest_ref";
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break;
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case CompareFunc::NotEqual:
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out += "int(g_last_tex_env_out.a * 255.0f) == alphatest_ref";
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out += "int(last_tex_env_out.a * 255.0f) == alphatest_ref";
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break;
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case CompareFunc::LessThan:
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out += "int(g_last_tex_env_out.a * 255.0f) >= alphatest_ref";
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out += "int(last_tex_env_out.a * 255.0f) >= alphatest_ref";
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break;
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case CompareFunc::LessThanOrEqual:
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out += "int(g_last_tex_env_out.a * 255.0f) > alphatest_ref";
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out += "int(last_tex_env_out.a * 255.0f) > alphatest_ref";
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break;
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case CompareFunc::GreaterThan:
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out += "int(g_last_tex_env_out.a * 255.0f) <= alphatest_ref";
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out += "int(last_tex_env_out.a * 255.0f) <= alphatest_ref";
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break;
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case CompareFunc::GreaterThanOrEqual:
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out += "int(g_last_tex_env_out.a * 255.0f) < alphatest_ref";
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out += "int(last_tex_env_out.a * 255.0f) < alphatest_ref";
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break;
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default:
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out += "false";
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@ -307,16 +311,16 @@ static void WriteTevStage(std::string& out, const PicaShaderConfig& config, unsi
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AppendAlphaCombiner(out, stage.alpha_op, "alpha_results_" + index_name);
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out += ";\n";
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out += "g_last_tex_env_out = vec4("
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"clamp(color_output_" + index_name + " * " + std::to_string(stage.GetColorMultiplier()) + ".0, 0.0, 1.0),"
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out += "last_tex_env_out = vec4("
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"clamp(color_output_" + index_name + " * " + std::to_string(stage.GetColorMultiplier()) + ".0, vec3(0.0), vec3(1.0)),"
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"clamp(alpha_output_" + index_name + " * " + std::to_string(stage.GetAlphaMultiplier()) + ".0, 0.0, 1.0));\n";
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}
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if (config.TevStageUpdatesCombinerBufferColor(index))
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out += "g_combiner_buffer.rgb = g_last_tex_env_out.rgb;\n";
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out += "combiner_buffer.rgb = last_tex_env_out.rgb;\n";
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if (config.TevStageUpdatesCombinerBufferAlpha(index))
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out += "g_combiner_buffer.a = g_last_tex_env_out.a;\n";
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out += "combiner_buffer.a = last_tex_env_out.a;\n";
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}
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std::string GenerateFragmentShader(const PicaShaderConfig& config) {
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@ -324,10 +328,11 @@ std::string GenerateFragmentShader(const PicaShaderConfig& config) {
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#version 330
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#extension GL_ARB_explicit_uniform_location : require
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#define NUM_VTX_ATTR 7
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#define NUM_TEV_STAGES 6
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in vec4 attr[NUM_VTX_ATTR];
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in vec4 primary_color;
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in vec2 texcoord[3];
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out vec4 color;
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)";
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@ -347,16 +352,16 @@ out vec4 color;
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return out;
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}
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for (std::size_t index = 0; index < config.tev_stages.size(); ++index)
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for (size_t index = 0; index < config.tev_stages.size(); ++index)
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WriteTevStage(out, config, (unsigned)index);
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if (config.alpha_test_func != Regs::CompareFunc::Always) {
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out += "if (";
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AppendAlphaTestCondition(out, config.alpha_test_func);
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out += ") {\n discard;\n }\n";
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out += ") discard;\n";
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}
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out += "color = g_last_tex_env_out;\n}";
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out += "color = last_tex_env_out;\n}";
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return out;
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}
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@ -365,21 +370,20 @@ std::string GenerateVertexShader() {
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static const std::string out = R"(
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#version 330
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#define NUM_VTX_ATTR 7
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in vec4 vert_position;
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in vec4 vert_color;
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in vec2 vert_texcoords0;
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in vec2 vert_texcoords1;
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in vec2 vert_texcoords2;
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in vec2 vert_texcoord0;
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in vec2 vert_texcoord1;
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in vec2 vert_texcoord2;
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out vec4 attr[NUM_VTX_ATTR];
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out vec4 primary_color;
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out vec2 texcoord[3];
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void main() {
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attr[2] = vert_color;
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attr[3] = vec4(vert_texcoords0.xy, vert_texcoords1.xy);
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attr[5] = vec4(0.0, 0.0, vert_texcoords2.xy);
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primary_color = vert_color;
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texcoord[0] = vert_texcoord0;
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texcoord[1] = vert_texcoord1;
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texcoord[2] = vert_texcoord2;
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gl_Position = vec4(vert_position.x, -vert_position.y, -vert_position.z, vert_position.w);
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}
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)";
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@ -68,9 +68,9 @@ GLuint LoadProgram(const char* vertex_shader, const char* fragment_shader) {
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glBindAttribLocation(program_id, Attributes::ATTRIBUTE_POSITION, "vert_position");
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glBindAttribLocation(program_id, Attributes::ATTRIBUTE_COLOR, "vert_color");
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glBindAttribLocation(program_id, Attributes::ATTRIBUTE_TEXCOORDS + 0, "vert_texcoords0");
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glBindAttribLocation(program_id, Attributes::ATTRIBUTE_TEXCOORDS + 1, "vert_texcoords1");
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glBindAttribLocation(program_id, Attributes::ATTRIBUTE_TEXCOORDS + 2, "vert_texcoords2");
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glBindAttribLocation(program_id, Attributes::ATTRIBUTE_TEXCOORDS + 0, "vert_texcoord0");
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glBindAttribLocation(program_id, Attributes::ATTRIBUTE_TEXCOORDS + 1, "vert_texcoord1");
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glBindAttribLocation(program_id, Attributes::ATTRIBUTE_TEXCOORDS + 2, "vert_texcoord2");
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glLinkProgram(program_id);
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