mirror of
https://github.com/RPCS3/rpcs3.git
synced 2024-11-22 02:32:36 +01:00
GL: minor fixes (#2105)
* Minor fixes * temporary disable 2-sided lighting * Disable user clip planes until they are properly handled
This commit is contained in:
parent
6e07e07cd0
commit
bb66b97251
@ -46,15 +46,6 @@ void GLFragmentDecompilerThread::insertIntputs(std::stringstream & OS)
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{
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{
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for (const ParamItem& PI : PT.items)
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for (const ParamItem& PI : PT.items)
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{
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{
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if (m_prog.front_back_color_enabled)
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{
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if (PI.name == "diff_color" && m_prog.back_color_diffuse_output)
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OS << "in vec4 back_diff_color;" << std::endl;
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if (PI.name == "spec_color" && m_prog.back_color_specular_output)
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OS << "in vec4 back_spec_color;" << std::endl;
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}
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//Rename fogc to fog_c to differentiate the input register from the variable
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//Rename fogc to fog_c to differentiate the input register from the variable
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if (PI.name == "fogc")
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if (PI.name == "fogc")
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OS << "in vec4 fog_c;" << std::endl;
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OS << "in vec4 fog_c;" << std::endl;
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@ -62,16 +53,6 @@ void GLFragmentDecompilerThread::insertIntputs(std::stringstream & OS)
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OS << "in " << PT.type << " " << PI.name << ";" << std::endl;
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OS << "in " << PT.type << " " << PI.name << ";" << std::endl;
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}
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}
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}
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}
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if (m_prog.front_back_color_enabled)
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{
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if (m_prog.front_color_diffuse_output)
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OS << "in vec4 front_diff_color;" << std::endl;
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if (m_prog.front_color_specular_output)
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OS << "in vec4 front_spec_color;" << std::endl;
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}
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}
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}
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void GLFragmentDecompilerThread::insertOutputs(std::stringstream & OS)
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void GLFragmentDecompilerThread::insertOutputs(std::stringstream & OS)
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@ -207,20 +188,6 @@ void GLFragmentDecompilerThread::insertMainStart(std::stringstream & OS)
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{
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{
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for (const ParamItem& PI : PT.items)
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for (const ParamItem& PI : PT.items)
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{
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{
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if (m_prog.front_back_color_enabled)
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{
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if (PI.name == "spec_color" && m_prog.back_color_specular_output)
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{
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OS << " vec4 spec_color = gl_FrontFacing ? front_spec_color : spec_color;\n";
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continue;
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}
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if (PI.name == "diff_color" && m_prog.back_color_diffuse_output)
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{
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OS << " vec4 diff_color = gl_FrontFacing ? front_diff_color : diff_color;\n";
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continue;
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}
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}
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if (PI.name == "fogc")
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if (PI.name == "fogc")
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{
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{
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insert_fog_declaration(OS, m_prog.fog_equation);
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insert_fog_declaration(OS, m_prog.fog_equation);
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@ -600,40 +600,6 @@ bool GLGSRender::do_method(u32 cmd, u32 arg)
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return true;
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return true;
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}
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}
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struct alignas(4) glsl_scale_buffer
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{
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float viewport_matrix[4][4];
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float window_matrix[4][4];
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float normalize_matrix[4][4];
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};
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struct alignas(4) glsl_vertex_constants_buffer
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{
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float vc[468][4];
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};
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struct alignas(4) glsl_fragment_constants_buffer
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{
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float fc[2048][4];
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};
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struct alignas(4) glsl_fragment_state_buffer
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{
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float fog_param0;
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float fog_param1;
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uint alpha_test;
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float alpha_ref;
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};
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static void fill_fragment_state_buffer(glsl_fragment_state_buffer *buffer)
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{
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const float fog_params[2] = { rsx::method_registers.fog_params_0(), rsx::method_registers.fog_params_1() };
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std::memcpy(&buffer->fog_param0, fog_params, sizeof(float) * 2);
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buffer->alpha_test = rsx::method_registers.alpha_test_enabled();
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buffer->alpha_ref = rsx::method_registers.alpha_ref() / 255.f;
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}
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bool GLGSRender::load_program()
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bool GLGSRender::load_program()
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{
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{
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RSXVertexProgram vertex_program = get_current_vertex_program();
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RSXVertexProgram vertex_program = get_current_vertex_program();
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@ -644,59 +610,53 @@ bool GLGSRender::load_program()
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u32 fragment_constants_size = m_prog_buffer.get_fragment_constants_buffer_size(fragment_program);
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u32 fragment_constants_size = m_prog_buffer.get_fragment_constants_buffer_size(fragment_program);
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fragment_constants_size = std::max(32U, fragment_constants_size);
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fragment_constants_size = std::max(32U, fragment_constants_size);
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u32 max_buffer_sz =
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u32 max_buffer_sz = 512 + 8192 + align(fragment_constants_size, m_uniform_buffer_offset_align);
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align(sizeof(glsl_scale_buffer), m_uniform_buffer_offset_align) +
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m_uniform_ring_buffer.reserve_and_map(max_buffer_sz);
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align(sizeof(glsl_vertex_constants_buffer), m_uniform_buffer_offset_align) +
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align(fragment_constants_size, m_uniform_buffer_offset_align) +
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align(sizeof(glsl_fragment_state_buffer), m_uniform_buffer_offset_align);
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u8 *buf;
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u32 scale_offset_offset;
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u32 scale_offset_offset;
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u32 vertex_constants_offset;
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u32 vertex_constants_offset;
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u32 fragment_constants_offset;
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u32 fragment_constants_offset;
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u32 fragment_state_offset;
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m_uniform_ring_buffer.reserve_and_map(max_buffer_sz);
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// Scale offset
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// Scale offset
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{
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auto mapping = m_uniform_ring_buffer.alloc_from_reserve(512);
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auto mapping = m_uniform_ring_buffer.alloc_from_reserve(sizeof(glsl_scale_buffer), m_uniform_buffer_offset_align);
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buf = static_cast<u8*>(mapping.first);
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fill_scale_offset_data((glsl_scale_buffer *)mapping.first, false);
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scale_offset_offset = mapping.second;
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scale_offset_offset = mapping.second;
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}
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fill_scale_offset_data(buf, false);
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// Fragment state
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// Fragment state
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{
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u32 is_alpha_tested = rsx::method_registers.alpha_test_enabled();
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auto mapping = m_uniform_ring_buffer.alloc_from_reserve(sizeof(glsl_fragment_state_buffer), m_uniform_buffer_offset_align);
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float alpha_ref = rsx::method_registers.alpha_ref() / 255.f;
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fill_fragment_state_buffer((glsl_fragment_state_buffer *)mapping.first);
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f32 fog0 = rsx::method_registers.fog_params_0();
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fragment_state_offset = mapping.second;
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f32 fog1 = rsx::method_registers.fog_params_1();
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}
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memcpy(buf + 16 * sizeof(float), &fog0, sizeof(float));
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memcpy(buf + 17 * sizeof(float), &fog1, sizeof(float));
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memcpy(buf + 18 * sizeof(float), &is_alpha_tested, sizeof(u32));
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memcpy(buf + 19 * sizeof(float), &alpha_ref, sizeof(float));
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// Vertex constants
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// Vertex constants
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{
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mapping = m_uniform_ring_buffer.alloc_from_reserve(8192);
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auto mapping = m_uniform_ring_buffer.alloc_from_reserve(sizeof(glsl_vertex_constants_buffer), m_uniform_buffer_offset_align);
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buf = static_cast<u8*>(mapping.first);
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fill_vertex_program_constants_data(mapping.first);
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vertex_constants_offset = mapping.second;
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vertex_constants_offset = mapping.second;
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}
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fill_vertex_program_constants_data(buf);
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// Fragment constants
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// Fragment constants
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if (fragment_constants_size)
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if (fragment_constants_size)
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{
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{
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auto mapping = m_uniform_ring_buffer.alloc_from_reserve(fragment_constants_size, m_uniform_buffer_offset_align);
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mapping = m_uniform_ring_buffer.alloc_from_reserve(fragment_constants_size);
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u8 *buf = static_cast<u8*>(mapping.first);
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buf = static_cast<u8*>(mapping.first);
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m_prog_buffer.fill_fragment_constants_buffer({ reinterpret_cast<float*>(buf), gsl::narrow<int>(fragment_constants_size) }, fragment_program);
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fragment_constants_offset = mapping.second;
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fragment_constants_offset = mapping.second;
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m_prog_buffer.fill_fragment_constants_buffer({ reinterpret_cast<float*>(buf), gsl::narrow<int>(fragment_constants_size) }, fragment_program);
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}
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}
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m_uniform_ring_buffer.unmap();
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m_uniform_ring_buffer.unmap();
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m_uniform_ring_buffer.bind_range(0, scale_offset_offset, sizeof(glsl_scale_buffer));
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m_uniform_ring_buffer.bind_range(0, scale_offset_offset, 512);
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m_uniform_ring_buffer.bind_range(1, vertex_constants_offset, sizeof(glsl_vertex_constants_buffer));
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m_uniform_ring_buffer.bind_range(1, vertex_constants_offset, 8192);
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if (fragment_constants_size)
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if (fragment_constants_size)
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{
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{
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m_uniform_ring_buffer.bind_range(2, fragment_constants_offset, fragment_constants_size);
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m_uniform_ring_buffer.bind_range(2, fragment_constants_offset, fragment_constants_size);
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}
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}
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m_uniform_ring_buffer.bind_range(3, fragment_state_offset, sizeof(glsl_fragment_state_buffer));
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return true;
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return true;
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}
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}
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@ -114,9 +114,10 @@ static const reg_info reg_table[] =
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{ "gl_ClipDistance[1]", false, "dst_reg5", ".z", false },
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{ "gl_ClipDistance[1]", false, "dst_reg5", ".z", false },
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{ "gl_ClipDistance[2]", false, "dst_reg5", ".w", false },
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{ "gl_ClipDistance[2]", false, "dst_reg5", ".w", false },
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{ "gl_PointSize", false, "dst_reg6", ".x", false },
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{ "gl_PointSize", false, "dst_reg6", ".x", false },
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{ "gl_ClipDistance[3]", false, "dst_reg6", ".y", false },
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//Disable user clip planes until they are properly handled
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{ "gl_ClipDistance[4]", false, "dst_reg6", ".z", false },
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//{ "gl_ClipDistance[3]", false, "dst_reg6", ".y", false },
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{ "gl_ClipDistance[5]", false, "dst_reg6", ".w", false },
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//{ "gl_ClipDistance[4]", false, "dst_reg6", ".z", false },
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//{ "gl_ClipDistance[5]", false, "dst_reg6", ".w", false },
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{ "tc0", true, "dst_reg7", "", false },
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{ "tc0", true, "dst_reg7", "", false },
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{ "tc1", true, "dst_reg8", "", false },
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{ "tc1", true, "dst_reg8", "", false },
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{ "tc2", true, "dst_reg9", "", false },
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{ "tc2", true, "dst_reg9", "", false },
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@ -225,53 +226,15 @@ GLVertexProgram::GLVertexProgram()
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GLVertexProgram::~GLVertexProgram()
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GLVertexProgram::~GLVertexProgram()
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{
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{
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//if (m_decompiler_thread)
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//{
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// Wait();
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// if (m_decompiler_thread->IsAlive())
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// {
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// m_decompiler_thread->Stop();
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// }
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// delete m_decompiler_thread;
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// m_decompiler_thread = nullptr;
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//}
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Delete();
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Delete();
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}
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}
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//void GLVertexProgram::Wait()
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//{
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// if (m_decompiler_thread && m_decompiler_thread->IsAlive())
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// {
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// m_decompiler_thread->Join();
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// }
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//}
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void GLVertexProgram::Decompile(const RSXVertexProgram& prog)
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void GLVertexProgram::Decompile(const RSXVertexProgram& prog)
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{
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{
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GLVertexDecompilerThread decompiler(prog, shader, parr);
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GLVertexDecompilerThread decompiler(prog, shader, parr);
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decompiler.Task();
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decompiler.Task();
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}
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}
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//void GLVertexProgram::DecompileAsync(RSXVertexProgram& prog)
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//{
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// if (m_decompiler_thread)
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// {
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// Wait();
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// if (m_decompiler_thread->IsAlive())
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// {
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// m_decompiler_thread->Stop();
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// }
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//
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// delete m_decompiler_thread;
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// m_decompiler_thread = nullptr;
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// }
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//
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// m_decompiler_thread = new GLVertexDecompilerThread(prog.data, shader, parr);
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// m_decompiler_thread->Start();
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//}
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void GLVertexProgram::Compile()
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void GLVertexProgram::Compile()
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{
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{
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if (id)
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if (id)
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@ -305,8 +268,6 @@ void GLVertexProgram::Compile()
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LOG_NOTICE(RSX, "%s", shader.c_str());
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LOG_NOTICE(RSX, "%s", shader.c_str());
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Emu.Pause();
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Emu.Pause();
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}
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}
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//else LOG_WARNING(RSX, "Vertex shader compiled successfully!");
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}
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}
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void GLVertexProgram::Delete()
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void GLVertexProgram::Delete()
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