shader_recompiler: emulate 8-bit and 16-bit storage writes with cas loop
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6533dfd7ce
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2a0d707ce1
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@ -65,6 +65,14 @@ void WriteStorage32(EmitContext& ctx, const IR::Value& binding, const IR::Value&
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WriteStorage(ctx, binding, offset, value, ctx.storage_types.U32, sizeof(u32),
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&StorageDefinitions::U32, index_offset);
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}
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void WriteStorageByCasLoop(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
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Id value, Id bit_offset, Id bit_count) {
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const Id pointer{StoragePointer(ctx, binding, offset, ctx.storage_types.U32, sizeof(u32),
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&StorageDefinitions::U32)};
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ctx.OpFunctionCall(ctx.TypeVoid(), ctx.write_storage_cas_loop_func, pointer, value, bit_offset,
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bit_count);
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}
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} // Anonymous namespace
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void EmitLoadGlobalU8(EmitContext&) {
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@ -219,26 +227,42 @@ Id EmitLoadStorage128(EmitContext& ctx, const IR::Value& binding, const IR::Valu
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void EmitWriteStorageU8(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
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Id value) {
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if (ctx.profile.support_int8) {
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WriteStorage(ctx, binding, offset, ctx.OpSConvert(ctx.U8, value), ctx.storage_types.U8,
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sizeof(u8), &StorageDefinitions::U8);
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} else {
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WriteStorageByCasLoop(ctx, binding, offset, value, ctx.BitOffset8(offset), ctx.Const(8u));
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}
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}
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void EmitWriteStorageS8(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
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Id value) {
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if (ctx.profile.support_int8) {
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WriteStorage(ctx, binding, offset, ctx.OpSConvert(ctx.S8, value), ctx.storage_types.S8,
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sizeof(s8), &StorageDefinitions::S8);
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} else {
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WriteStorageByCasLoop(ctx, binding, offset, value, ctx.BitOffset8(offset), ctx.Const(8u));
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}
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}
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void EmitWriteStorageU16(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
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Id value) {
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if (ctx.profile.support_int16) {
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WriteStorage(ctx, binding, offset, ctx.OpSConvert(ctx.U16, value), ctx.storage_types.U16,
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sizeof(u16), &StorageDefinitions::U16);
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} else {
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WriteStorageByCasLoop(ctx, binding, offset, value, ctx.BitOffset16(offset), ctx.Const(16u));
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}
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}
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void EmitWriteStorageS16(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
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Id value) {
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if (ctx.profile.support_int16) {
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WriteStorage(ctx, binding, offset, ctx.OpSConvert(ctx.S16, value), ctx.storage_types.S16,
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sizeof(s16), &StorageDefinitions::S16);
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} else {
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WriteStorageByCasLoop(ctx, binding, offset, value, ctx.BitOffset16(offset), ctx.Const(16u));
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}
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}
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void EmitWriteStorage32(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
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@ -480,6 +480,7 @@ EmitContext::EmitContext(const Profile& profile_, const RuntimeInfo& runtime_inf
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DefineTextures(program.info, texture_binding, bindings.texture_scaling_index);
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DefineImages(program.info, image_binding, bindings.image_scaling_index);
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DefineAttributeMemAccess(program.info);
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DefineWriteStorageCasLoopFunction(program.info);
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DefineGlobalMemoryFunctions(program.info);
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DefineRescalingInput(program.info);
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DefineRenderArea(program.info);
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@ -877,6 +878,56 @@ void EmitContext::DefineAttributeMemAccess(const Info& info) {
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}
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}
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void EmitContext::DefineWriteStorageCasLoopFunction(const Info& info) {
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if (profile.support_int8 && profile.support_int16) {
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return;
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}
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if (!info.uses_int8 && !info.uses_int16) {
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return;
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}
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AddCapability(spv::Capability::VariablePointersStorageBuffer);
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const Id ptr_type{TypePointer(spv::StorageClass::StorageBuffer, U32[1])};
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const Id func_type{TypeFunction(void_id, ptr_type, U32[1], U32[1], U32[1])};
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const Id func{OpFunction(void_id, spv::FunctionControlMask::MaskNone, func_type)};
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const Id pointer{OpFunctionParameter(ptr_type)};
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const Id value{OpFunctionParameter(U32[1])};
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const Id bit_offset{OpFunctionParameter(U32[1])};
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const Id bit_count{OpFunctionParameter(U32[1])};
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AddLabel();
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const Id scope_device{Const(1u)};
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const Id ordering_relaxed{u32_zero_value};
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const Id body_label{OpLabel()};
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const Id continue_label{OpLabel()};
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const Id endloop_label{OpLabel()};
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const Id beginloop_label{OpLabel()};
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OpBranch(beginloop_label);
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AddLabel(beginloop_label);
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OpLoopMerge(endloop_label, continue_label, spv::LoopControlMask::MaskNone);
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OpBranch(body_label);
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AddLabel(body_label);
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const Id expected_value{OpLoad(U32[1], pointer)};
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const Id desired_value{OpBitFieldInsert(U32[1], expected_value, value, bit_offset, bit_count)};
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const Id actual_value{OpAtomicCompareExchange(U32[1], pointer, scope_device, ordering_relaxed,
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ordering_relaxed, desired_value, expected_value)};
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const Id store_successful{OpIEqual(U1, expected_value, actual_value)};
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OpBranchConditional(store_successful, endloop_label, continue_label);
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AddLabel(endloop_label);
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OpReturn();
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AddLabel(continue_label);
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OpBranch(beginloop_label);
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OpFunctionEnd();
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write_storage_cas_loop_func = func;
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}
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void EmitContext::DefineGlobalMemoryFunctions(const Info& info) {
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if (!info.uses_global_memory || !profile.support_int64) {
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return;
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@ -325,6 +325,8 @@ public:
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Id f32x2_min_cas{};
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Id f32x2_max_cas{};
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Id write_storage_cas_loop_func{};
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Id load_global_func_u32{};
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Id load_global_func_u32x2{};
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Id load_global_func_u32x4{};
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@ -372,6 +374,7 @@ private:
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void DefineTextures(const Info& info, u32& binding, u32& scaling_index);
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void DefineImages(const Info& info, u32& binding, u32& scaling_index);
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void DefineAttributeMemAccess(const Info& info);
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void DefineWriteStorageCasLoopFunction(const Info& info);
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void DefineGlobalMemoryFunctions(const Info& info);
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void DefineRescalingInput(const Info& info);
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void DefineRescalingInputPushConstant();
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