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https://github.com/yuzu-emu/yuzu-mainline.git
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Vulkan: rework stencil tracking.
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@ -2711,7 +2711,7 @@ public:
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u32 post_z_pixel_imask; ///< 0x0F1C
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INSERT_PADDING_BYTES_NOINIT(0x20);
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ConstantColorRendering const_color_rendering; ///< 0x0F40
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s32 stencil_back_ref; ///< 0x0F54
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u32 stencil_back_ref; ///< 0x0F54
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u32 stencil_back_mask; ///< 0x0F58
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u32 stencil_back_func_mask; ///< 0x0F5C
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INSERT_PADDING_BYTES_NOINIT(0x14);
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@ -2835,9 +2835,9 @@ public:
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Blend blend; ///< 0x133C
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u32 stencil_enable; ///< 0x1380
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StencilOp stencil_front_op; ///< 0x1384
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s32 stencil_front_ref; ///< 0x1394
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s32 stencil_front_func_mask; ///< 0x1398
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s32 stencil_front_mask; ///< 0x139C
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u32 stencil_front_ref; ///< 0x1394
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u32 stencil_front_func_mask; ///< 0x1398
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u32 stencil_front_mask; ///< 0x139C
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INSERT_PADDING_BYTES_NOINIT(0x4);
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u32 draw_auto_start_byte_count; ///< 0x13A4
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PsSaturate frag_color_clamp; ///< 0x13A8
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@ -886,32 +886,92 @@ void RasterizerVulkan::UpdateStencilFaces(Tegra::Engines::Maxwell3D::Regs& regs)
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if (!state_tracker.TouchStencilProperties()) {
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return;
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}
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if (regs.stencil_two_side_enable) {
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// Separate values per face
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scheduler.Record(
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[front_ref = regs.stencil_front_ref, front_write_mask = regs.stencil_front_mask,
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front_test_mask = regs.stencil_front_func_mask, back_ref = regs.stencil_back_ref,
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back_write_mask = regs.stencil_back_mask,
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back_test_mask = regs.stencil_back_func_mask](vk::CommandBuffer cmdbuf) {
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// Front face
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cmdbuf.SetStencilReference(VK_STENCIL_FACE_FRONT_BIT, front_ref);
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cmdbuf.SetStencilWriteMask(VK_STENCIL_FACE_FRONT_BIT, front_write_mask);
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cmdbuf.SetStencilCompareMask(VK_STENCIL_FACE_FRONT_BIT, front_test_mask);
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// Back face
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cmdbuf.SetStencilReference(VK_STENCIL_FACE_BACK_BIT, back_ref);
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cmdbuf.SetStencilWriteMask(VK_STENCIL_FACE_BACK_BIT, back_write_mask);
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cmdbuf.SetStencilCompareMask(VK_STENCIL_FACE_BACK_BIT, back_test_mask);
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});
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} else {
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// Front face defines both faces
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scheduler.Record([ref = regs.stencil_front_ref, write_mask = regs.stencil_front_mask,
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test_mask = regs.stencil_front_func_mask](vk::CommandBuffer cmdbuf) {
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cmdbuf.SetStencilReference(VK_STENCIL_FACE_FRONT_AND_BACK, ref);
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cmdbuf.SetStencilWriteMask(VK_STENCIL_FACE_FRONT_AND_BACK, write_mask);
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cmdbuf.SetStencilCompareMask(VK_STENCIL_FACE_FRONT_AND_BACK, test_mask);
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});
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bool update_references = state_tracker.TouchStencilReference();
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bool update_write_mask = state_tracker.TouchStencilWriteMask();
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bool update_compare_masks = state_tracker.TouchStencilCompare();
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if (state_tracker.TouchStencilSide(regs.stencil_two_side_enable != 0)) {
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update_references = true;
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update_write_mask = true;
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update_compare_masks = true;
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}
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if (update_references) {
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[&]() {
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if (regs.stencil_two_side_enable) {
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if (!state_tracker.CheckStencilReferenceFront(regs.stencil_front_ref) &&
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!state_tracker.CheckStencilReferenceBack(regs.stencil_back_ref)) {
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return;
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}
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} else {
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if (!state_tracker.CheckStencilReferenceFront(regs.stencil_front_ref)) {
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return;
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}
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}
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scheduler.Record([front_ref = regs.stencil_front_ref, back_ref = regs.stencil_back_ref,
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two_sided = regs.stencil_two_side_enable](vk::CommandBuffer cmdbuf) {
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const bool set_back = two_sided && front_ref != back_ref;
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// Front face
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cmdbuf.SetStencilReference(set_back ? VK_STENCIL_FACE_FRONT_BIT
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: VK_STENCIL_FACE_FRONT_AND_BACK,
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front_ref);
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if (set_back) {
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cmdbuf.SetStencilReference(VK_STENCIL_FACE_BACK_BIT, back_ref);
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}
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});
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}();
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}
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if (update_write_mask) {
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[&]() {
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if (regs.stencil_two_side_enable) {
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if (!state_tracker.CheckStencilWriteMaskFront(regs.stencil_front_mask) &&
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!state_tracker.CheckStencilWriteMaskBack(regs.stencil_back_mask)) {
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return;
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}
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} else {
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if (!state_tracker.CheckStencilWriteMaskFront(regs.stencil_front_mask)) {
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return;
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}
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}
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scheduler.Record([front_write_mask = regs.stencil_front_mask,
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back_write_mask = regs.stencil_back_mask,
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two_sided = regs.stencil_two_side_enable](vk::CommandBuffer cmdbuf) {
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const bool set_back = two_sided && front_write_mask != back_write_mask;
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// Front face
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cmdbuf.SetStencilWriteMask(set_back ? VK_STENCIL_FACE_FRONT_BIT
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: VK_STENCIL_FACE_FRONT_AND_BACK,
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front_write_mask);
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if (set_back) {
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cmdbuf.SetStencilWriteMask(VK_STENCIL_FACE_BACK_BIT, back_write_mask);
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}
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});
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}();
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}
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if (update_compare_masks) {
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[&]() {
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if (regs.stencil_two_side_enable) {
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if (!state_tracker.CheckStencilCompareMaskFront(regs.stencil_front_func_mask) &&
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!state_tracker.CheckStencilCompareMaskBack(regs.stencil_back_func_mask)) {
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return;
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}
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} else {
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if (!state_tracker.CheckStencilCompareMaskFront(regs.stencil_front_func_mask)) {
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return;
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}
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}
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scheduler.Record([front_test_mask = regs.stencil_front_func_mask,
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back_test_mask = regs.stencil_back_func_mask,
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two_sided = regs.stencil_two_side_enable](vk::CommandBuffer cmdbuf) {
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const bool set_back = two_sided && front_test_mask != back_test_mask;
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// Front face
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cmdbuf.SetStencilCompareMask(set_back ? VK_STENCIL_FACE_FRONT_BIT
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: VK_STENCIL_FACE_FRONT_AND_BACK,
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front_test_mask);
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if (set_back) {
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cmdbuf.SetStencilCompareMask(VK_STENCIL_FACE_BACK_BIT, back_test_mask);
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}
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});
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}();
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}
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state_tracker.ClearStencilReset();
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}
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void RasterizerVulkan::UpdateLineWidth(Tegra::Engines::Maxwell3D::Regs& regs) {
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@ -33,6 +33,9 @@ Flags MakeInvalidationFlags() {
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BlendConstants,
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DepthBounds,
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StencilProperties,
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StencilReference,
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StencilWriteMask,
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StencilCompare,
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LineWidth,
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CullMode,
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DepthBoundsEnable,
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@ -99,14 +102,17 @@ void SetupDirtyDepthBounds(Tables& tables) {
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}
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void SetupDirtyStencilProperties(Tables& tables) {
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auto& table = tables[0];
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table[OFF(stencil_two_side_enable)] = StencilProperties;
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table[OFF(stencil_front_ref)] = StencilProperties;
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table[OFF(stencil_front_mask)] = StencilProperties;
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table[OFF(stencil_front_func_mask)] = StencilProperties;
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table[OFF(stencil_back_ref)] = StencilProperties;
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table[OFF(stencil_back_mask)] = StencilProperties;
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table[OFF(stencil_back_func_mask)] = StencilProperties;
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const auto setup = [&](size_t position, u8 flag) {
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tables[0][position] = flag;
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tables[1][position] = StencilProperties;
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};
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tables[0][OFF(stencil_two_side_enable)] = StencilProperties;
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setup(OFF(stencil_front_ref), StencilReference);
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setup(OFF(stencil_front_mask), StencilWriteMask);
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setup(OFF(stencil_front_func_mask), StencilCompare);
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setup(OFF(stencil_back_ref), StencilReference);
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setup(OFF(stencil_back_mask), StencilWriteMask);
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setup(OFF(stencil_back_func_mask), StencilCompare);
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}
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void SetupDirtyLineWidth(Tables& tables) {
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@ -238,9 +244,11 @@ void StateTracker::ChangeChannel(Tegra::Control::ChannelState& channel_state) {
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void StateTracker::InvalidateState() {
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flags->set();
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current_topology = INVALID_TOPOLOGY;
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stencil_reset = true;
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}
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StateTracker::StateTracker()
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: flags{&default_flags}, default_flags{}, invalidation_flags{MakeInvalidationFlags()} {}
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} // namespace Vulkan
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} // namespace Vulkan
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@ -35,6 +35,9 @@ enum : u8 {
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BlendConstants,
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DepthBounds,
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StencilProperties,
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StencilReference,
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StencilWriteMask,
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StencilCompare,
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LineWidth,
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CullMode,
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@ -74,6 +77,7 @@ public:
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void InvalidateCommandBufferState() {
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(*flags) |= invalidation_flags;
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current_topology = INVALID_TOPOLOGY;
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stencil_reset = true;
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}
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void InvalidateViewports() {
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@ -113,6 +117,57 @@ public:
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return Exchange(Dirty::StencilProperties, false);
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}
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bool TouchStencilReference() {
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return Exchange(Dirty::StencilReference, false);
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}
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bool TouchStencilWriteMask() {
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return Exchange(Dirty::StencilWriteMask, false);
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}
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bool TouchStencilCompare() {
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return Exchange(Dirty::StencilCompare, false);
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}
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template <typename T>
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bool ExchangeCheck(T& old_value, T new_value) {
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bool result = old_value != new_value;
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old_value = new_value;
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return result;
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}
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bool TouchStencilSide(bool two_sided_stencil_new) {
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return ExchangeCheck(two_sided_stencil, two_sided_stencil_new) || stencil_reset;
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}
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bool CheckStencilReferenceFront(u32 new_value) {
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return ExchangeCheck(front.ref, new_value) || stencil_reset;
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}
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bool CheckStencilReferenceBack(u32 new_value) {
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return ExchangeCheck(back.ref, new_value) || stencil_reset;
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}
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bool CheckStencilWriteMaskFront(u32 new_value) {
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return ExchangeCheck(front.write_mask, new_value) || stencil_reset;
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}
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bool CheckStencilWriteMaskBack(u32 new_value) {
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return ExchangeCheck(back.write_mask, new_value) || stencil_reset;
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}
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bool CheckStencilCompareMaskFront(u32 new_value) {
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return ExchangeCheck(front.compare_mask, new_value) || stencil_reset;
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}
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bool CheckStencilCompareMaskBack(u32 new_value) {
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return ExchangeCheck(back.compare_mask, new_value) || stencil_reset;
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}
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void ClearStencilReset() {
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stencil_reset = false;
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}
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bool TouchLineWidth() const {
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return Exchange(Dirty::LineWidth, false);
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}
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@ -214,10 +269,20 @@ private:
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return is_dirty;
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}
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struct StencilProperties {
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u32 ref = 0;
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u32 write_mask = 0;
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u32 compare_mask = 0;
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};
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Tegra::Engines::Maxwell3D::DirtyState::Flags* flags;
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Tegra::Engines::Maxwell3D::DirtyState::Flags default_flags;
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Tegra::Engines::Maxwell3D::DirtyState::Flags invalidation_flags;
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Maxwell::PrimitiveTopology current_topology = INVALID_TOPOLOGY;
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bool two_sided_stencil = false;
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StencilProperties front{};
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StencilProperties back{};
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bool stencil_reset = false;
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};
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} // namespace Vulkan
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