shader: Implement BAR and fix memory barriers
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@ -28,6 +28,7 @@ void EmitSelectionMerge(EmitContext& ctx, Id merge_label);
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void EmitReturn(EmitContext& ctx);
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void EmitUnreachable(EmitContext& ctx);
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void EmitDemoteToHelperInvocation(EmitContext& ctx, Id continue_label);
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void EmitBarrier(EmitContext& ctx);
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void EmitMemoryBarrierWorkgroupLevel(EmitContext& ctx);
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void EmitMemoryBarrierDeviceLevel(EmitContext& ctx);
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void EmitMemoryBarrierSystemLevel(EmitContext& ctx);
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@ -8,16 +8,25 @@
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namespace Shader::Backend::SPIRV {
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namespace {
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void EmitMemoryBarrierImpl(EmitContext& ctx, spv::Scope scope) {
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const auto semantics =
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const auto semantics{
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spv::MemorySemanticsMask::AcquireRelease | spv::MemorySemanticsMask::UniformMemory |
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spv::MemorySemanticsMask::WorkgroupMemory | spv::MemorySemanticsMask::AtomicCounterMemory |
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spv::MemorySemanticsMask::ImageMemory;
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spv::MemorySemanticsMask::ImageMemory};
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ctx.OpMemoryBarrier(ctx.Constant(ctx.U32[1], static_cast<u32>(scope)),
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ctx.Constant(ctx.U32[1], static_cast<u32>(semantics)));
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}
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} // Anonymous namespace
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void EmitBarrier(EmitContext& ctx) {
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const auto execution{spv::Scope::Workgroup};
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const auto memory{spv::Scope::Workgroup};
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const auto memory_semantics{spv::MemorySemanticsMask::AcquireRelease |
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spv::MemorySemanticsMask::WorkgroupMemory};
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ctx.OpControlBarrier(ctx.Constant(ctx.U32[1], static_cast<u32>(execution)),
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ctx.Constant(ctx.U32[1], static_cast<u32>(memory)),
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ctx.Constant(ctx.U32[1], static_cast<u32>(memory_semantics)));
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}
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void EmitMemoryBarrierWorkgroupLevel(EmitContext& ctx) {
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EmitMemoryBarrierImpl(ctx, spv::Scope::Workgroup);
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}
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@ -82,6 +82,10 @@ void IREmitter::SelectionMerge(Block* merge_block) {
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Inst(Opcode::SelectionMerge, merge_block);
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}
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void IREmitter::Barrier() {
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Inst(Opcode::Barrier);
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}
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void IREmitter::MemoryBarrier(MemoryScope scope) {
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switch (scope) {
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case MemoryScope::Workgroup:
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@ -128,6 +128,7 @@ public:
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[[nodiscard]] Value Select(const U1& condition, const Value& true_value,
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const Value& false_value);
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[[nodiscard]] void Barrier();
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[[nodiscard]] void MemoryBarrier(MemoryScope scope);
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template <typename Dest, typename Source>
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@ -57,6 +57,10 @@ bool Inst::MayHaveSideEffects() const noexcept {
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case Opcode::Return:
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case Opcode::Unreachable:
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case Opcode::DemoteToHelperInvocation:
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case Opcode::Barrier:
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case Opcode::MemoryBarrierWorkgroupLevel:
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case Opcode::MemoryBarrierDeviceLevel:
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case Opcode::MemoryBarrierSystemLevel:
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case Opcode::Prologue:
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case Opcode::Epilogue:
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case Opcode::SetAttribute:
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@ -17,6 +17,7 @@ OPCODE(Unreachable, Void,
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OPCODE(DemoteToHelperInvocation, Void, Label, )
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// Barriers
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OPCODE(Barrier, Void, )
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OPCODE(MemoryBarrierWorkgroupLevel, Void, )
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OPCODE(MemoryBarrierDeviceLevel, Void, )
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OPCODE(MemoryBarrierSystemLevel, Void, )
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@ -38,6 +38,7 @@ void TranslatorVisitor::MEMBAR(u64 inst) {
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u64 raw;
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BitField<8, 2, LocalScope> scope;
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} membar{inst};
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ir.MemoryBarrier(LocalScopeToMemoryScope(membar.scope));
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}
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@ -45,8 +46,61 @@ void TranslatorVisitor::DEPBAR() {
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// DEPBAR is a no-op
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}
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void TranslatorVisitor::BAR(u64) {
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throw NotImplementedException("Instruction {} is not implemented", Opcode::BAR);
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void TranslatorVisitor::BAR(u64 insn) {
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enum class Mode {
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RedPopc,
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Scan,
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RedAnd,
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RedOr,
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Sync,
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Arrive,
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};
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union {
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u64 raw;
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BitField<43, 1, u64> is_a_imm;
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BitField<44, 1, u64> is_b_imm;
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BitField<8, 8, u64> imm_a;
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BitField<20, 12, u64> imm_b;
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BitField<42, 1, u64> neg_pred;
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BitField<39, 3, IR::Pred> pred;
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} const bar{insn};
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const Mode mode{[insn] {
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switch (insn & 0x0000009B00000000ULL) {
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case 0x0000000200000000ULL:
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return Mode::RedPopc;
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case 0x0000000300000000ULL:
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return Mode::Scan;
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case 0x0000000A00000000ULL:
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return Mode::RedAnd;
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case 0x0000001200000000ULL:
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return Mode::RedOr;
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case 0x0000008000000000ULL:
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return Mode::Sync;
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case 0x0000008100000000ULL:
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return Mode::Arrive;
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}
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throw NotImplementedException("Invalid encoding");
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}()};
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if (mode != Mode::Sync) {
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throw NotImplementedException("BAR mode {}", mode);
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}
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if (bar.is_a_imm == 0) {
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throw NotImplementedException("Non-immediate input A");
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}
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if (bar.imm_a != 0) {
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throw NotImplementedException("Non-zero input A");
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}
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if (bar.is_b_imm == 0) {
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throw NotImplementedException("Non-immediate input B");
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}
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if (bar.imm_b != 0) {
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throw NotImplementedException("Non-zero input B");
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}
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if (bar.pred != IR::Pred::PT && bar.neg_pred != 0) {
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throw NotImplementedException("Non-true input predicate");
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}
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ir.Barrier();
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}
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} // namespace Shader::Maxwell
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