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				@@ -13,132 +13,193 @@
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				namespace Shader::Backend::GLSL {
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				namespace {
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				static constexpr std::string_view cas_loop{R"(
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				{} {};
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				uint {};
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				for (;;){{
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				    {} old_value={};
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				    {} = atomicCompSwap({},old_value,{}({},{}));
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				    uint old_value={};
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				    {}=atomicCompSwap({},old_value,{}({},{}));
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				    if ({}==old_value){{break;}}
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				}})"};
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				void CasFunction(EmitContext& ctx, IR::Inst& inst, std::string_view ssbo, std::string_view value,
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				                 std::string_view type, std::string_view function) {
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				void CasFunction(EmitContext& ctx, std::string_view ret, std::string_view ssbo,
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				                 std::string_view value, std::string_view function) {
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				    ctx.Add(cas_loop.data(), ret, ssbo, ret, ssbo, function, ssbo, value, ret);
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				}
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				void CasFunctionInt32(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
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				                      const IR::Value& offset, std::string_view value, std::string_view function) {
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				    const auto ret{ctx.reg_alloc.Define(inst)};
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				    ctx.Add(cas_loop.data(), type, ret, type, ssbo, ret, ssbo, function, ssbo, value, ret);
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				    const std::string ssbo{fmt::format("ssbo{}[{}]", binding.U32(), offset.U32())};
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				    CasFunction(ctx, ret, ssbo, value, function);
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				}
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				void CasFunctionF32(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
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				                    const IR::Value& offset, std::string_view value, std::string_view function) {
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				    const std::string ssbo{fmt::format("ssbo{}[{}]", binding.U32(), offset.U32())};
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				    const std::string u32_value{fmt::format("floatBitsToUint({})", value)};
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				    const auto ret{ctx.reg_alloc.Define(inst)};
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				    const auto ret_32{ret + "_u32"};
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				    CasFunction(ctx, ret_32, ssbo, u32_value, function);
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				    ctx.Add("float {}=uintBitsToFloat({});", ret, ret_32);
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				}
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				void CasFunctionF32x2(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
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				                      const IR::Value& offset, std::string_view value, std::string_view function) {
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				    const std::string ssbo{fmt::format("ssbo{}[{}]", binding.U32(), offset.U32())};
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				    const std::string u32_value{fmt::format("packHalf2x16({})", value)};
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				    const auto ret{ctx.reg_alloc.Define(inst)};
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				    CasFunction(ctx, ret, ssbo, u32_value, function);
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				}
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				} // namespace
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				void EmitStorageAtomicIAdd32(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
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				                             const IR::Value& offset, std::string_view value) {
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				    ctx.AddU32("{}=atomicAdd(ssbo{}_u32[{}],{});", inst, binding.U32(), offset.U32(), value);
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				    ctx.AddU32("{}=atomicAdd(ssbo{}[{}],{});", inst, binding.U32(), offset.U32(), value);
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				}
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				void EmitStorageAtomicSMin32(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
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				                             const IR::Value& offset, std::string_view value) {
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				    ctx.AddS32("{}=atomicMin(ssbo{}_s32[{}],int({}));", inst, binding.U32(), offset.U32(), value);
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				    const std::string u32_value{fmt::format("uint({})", value)};
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				    CasFunctionInt32(ctx, inst, binding, offset, u32_value, "CasMinS32");
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				}
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				void EmitStorageAtomicUMin32(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
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				                             const IR::Value& offset, std::string_view value) {
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				    ctx.AddU32("{}=atomicMin(ssbo{}_u32[{}],{});", inst, binding.U32(), offset.U32(), value);
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				    ctx.AddU32("{}=atomicMin(ssbo{}[{}],{});", inst, binding.U32(), offset.U32(), value);
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				}
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				void EmitStorageAtomicSMax32(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
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				                             const IR::Value& offset, std::string_view value) {
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				    ctx.AddS32("{}=atomicMax(ssbo{}_s32[{}],int({}));", inst, binding.U32(), offset.U32(), value);
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				    const std::string u32_value{fmt::format("uint({})", value)};
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				    CasFunctionInt32(ctx, inst, binding, offset, u32_value, "CasMaxS32");
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				}
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				void EmitStorageAtomicUMax32(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
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				                             const IR::Value& offset, std::string_view value) {
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				    ctx.AddU32("{}=atomicMax(ssbo{}_u32[{}],{});", inst, binding.U32(), offset.U32(), value);
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				    ctx.AddU32("{}=atomicMax(ssbo{}[{}],{});", inst, binding.U32(), offset.U32(), value);
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				}
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				void EmitStorageAtomicInc32(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
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				                            [[maybe_unused]] const IR::Value& offset, std::string_view value) {
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				    // const auto ret{ctx.reg_alloc.Define(inst)};
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				    // const auto type{"uint"};
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				    // ctx.Add(cas_loop.data(), type, ret, type, ssbo, ret, ssbo, "CasIncrement", ssbo, value, ret);
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				    const std::string ssbo{fmt::format("ssbo{}_u32[{}]", binding.U32(), offset.U32())};
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				    CasFunction(ctx, inst, ssbo, value, "uint", "CasIncrement");
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				                            const IR::Value& offset, std::string_view value) {
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				    CasFunctionInt32(ctx, inst, binding, offset, value, "CasIncrement");
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				}
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				void EmitStorageAtomicDec32(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
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				                            const IR::Value& offset, std::string_view value) {
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				    const std::string ssbo{fmt::format("ssbo{}_u32[{}]", binding.U32(), offset.U32())};
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				    CasFunction(ctx, inst, ssbo, value, "uint", "CasDecrement");
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				    CasFunctionInt32(ctx, inst, binding, offset, value, "CasDecrement");
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				}
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				void EmitStorageAtomicAnd32(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
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				                            const IR::Value& offset, std::string_view value) {
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				    ctx.AddU32("{}=atomicAnd(ssbo{}_u32[{}],{});", inst, binding.U32(), offset.U32(), value);
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				    ctx.AddU32("{}=atomicAnd(ssbo{}[{}],{});", inst, binding.U32(), offset.U32(), value);
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				}
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				void EmitStorageAtomicOr32(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
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				                           const IR::Value& offset, std::string_view value) {
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				    ctx.AddU32("{}=atomicOr(ssbo{}_u32[{}],{});", inst, binding.U32(), offset.U32(), value);
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				    ctx.AddU32("{}=atomicOr(ssbo{}[{}],{});", inst, binding.U32(), offset.U32(), value);
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				}
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				void EmitStorageAtomicXor32(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
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				                            const IR::Value& offset, std::string_view value) {
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				    ctx.AddU32("{}=atomicXor(ssbo{}_u32[{}],{});", inst, binding.U32(), offset.U32(), value);
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				    ctx.AddU32("{}=atomicXor(ssbo{}[{}],{});", inst, binding.U32(), offset.U32(), value);
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				}
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				void EmitStorageAtomicExchange32(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
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				                                 const IR::Value& offset, std::string_view value) {
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				    ctx.AddU32("{}=atomicExchange(ssbo{}_u32[{}],{});", inst, binding.U32(), offset.U32(), value);
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				    ctx.AddU32("{}=atomicExchange(ssbo{}[{}],{});", inst, binding.U32(), offset.U32(), value);
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				}
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				void EmitStorageAtomicIAdd64(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
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				                             const IR::Value& offset, std::string_view value) {
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				    // ctx.AddU64("{}=atomicAdd(ssbo{}_u64[{}],{});", inst, binding.U32(), offset.U32(), value);
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				    ctx.AddU64("{}=ssbo{}_u64[{}];", inst, binding.U32(), offset.U32());
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				    ctx.Add("ssbo{}_u64[{}]+={};", binding.U32(), offset.U32(), value);
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				    // LOG_WARNING(..., "Op falling to non-atomic");
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				    ctx.AddU64("{}=uint64_t(uvec2(ssbo{}[{}],ssbo{}[{}]));", inst, binding.U32(), offset.U32(),
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				               binding.U32(), offset.U32() + 1);
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				    ctx.Add("ssbo{}[{}]+=unpackUint2x32({}).x;ssbo{}[{}]+=unpackUint2x32({}).y;", binding.U32(),
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				            offset.U32(), value, binding.U32(), offset.U32() + 1, value);
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				}
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				void EmitStorageAtomicSMin64(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
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				                             const IR::Value& offset, std::string_view value) {
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				    ctx.AddS64("{}=atomicMin(int64_t(ssbo{}_u64[{}]),int64_t({}));", inst, binding.U32(),
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				               offset.U32(), value);
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				    // LOG_WARNING(..., "Op falling to non-atomic");
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				    ctx.AddS64("{}=int64_t(ivec2(ssbo{}[{}],ssbo{}[{}]));", inst, binding.U32(), offset.U32(),
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				               binding.U32(), offset.U32() + 1);
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				    ctx.Add(R"(
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				for(int i=0;i<2;++i){{
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				ssbo{}[{}+i]=uint(min(int(ssbo{}[{}+i]),unpackInt2x32(int64_t({}))[i]));
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				}}
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				)",
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				            binding.U32(), offset.U32(), binding.U32(), offset.U32(), value);
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				}
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				void EmitStorageAtomicUMin64(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
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				                             const IR::Value& offset, std::string_view value) {
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				    ctx.AddU64("{}=atomicMin(ssbo{}_u64[{}],{});", inst, binding.U32(), offset.U32(), value);
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				    // LOG_WARNING(..., "Op falling to non-atomic");
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				    ctx.AddU64("{}=uint64_t(uvec2(ssbo{}[{}],ssbo{}[{}]));", inst, binding.U32(), offset.U32(),
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				               binding.U32(), offset.U32() + 1);
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				    ctx.Add(R"(
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				for(int i=0;i<2;++i){{
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				ssbo{}[{}+i]=min(ssbo{}[{}+i],unpackUint2x32(uint64_t({}))[i]);
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				}}
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				)",
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				            binding.U32(), offset.U32(), binding.U32(), offset.U32(), value);
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				}
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				void EmitStorageAtomicSMax64(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
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				                             const IR::Value& offset, std::string_view value) {
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				    ctx.AddS64("{}=atomicMax(int64_t(ssbo{}_u64[{}]),int64_t({}));", inst, binding.U32(),
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				               offset.U32(), value);
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				    // LOG_WARNING(..., "Op falling to non-atomic");
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				    ctx.AddS64("{}=int64_t(ivec2(ssbo{}[{}],ssbo{}[{}]));", inst, binding.U32(), offset.U32(),
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				               binding.U32(), offset.U32() + 1);
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				    ctx.Add(R"(
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				for(int i=0;i<2;++i){{
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				ssbo{}[{}+i]=uint(max(int(ssbo{}[{}+i]),unpackInt2x32(int64_t({}))[i]));
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				}}
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				)",
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				            binding.U32(), offset.U32(), binding.U32(), offset.U32(), value);
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				}
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				void EmitStorageAtomicUMax64(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
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				                             const IR::Value& offset, std::string_view value) {
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				    ctx.AddU64("{}=atomicMax(ssbo{}_u64[{}],{});", inst, binding.U32(), offset.U32(), value);
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				    // LOG_WARNING(..., "Op falling to non-atomic");
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				    ctx.AddU64("{}=uint64_t(uvec2(ssbo{}[{}],ssbo{}[{}]));", inst, binding.U32(), offset.U32(),
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				               binding.U32(), offset.U32() + 1);
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				    ctx.Add(R"(
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				for(int i=0;i<2;++i){{
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				ssbo{}[{}+i]=max(ssbo{}[{}+i],unpackUint2x32(uint64_t({}))[i]);
 | 
			
		
		
	
		
			
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				}}
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				)",
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				            binding.U32(), offset.U32(), binding.U32(), offset.U32(), value);
 | 
			
		
		
	
		
			
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				}
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				void EmitStorageAtomicAnd64(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
 | 
			
		
		
	
		
			
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				                            const IR::Value& offset, std::string_view value) {
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				    ctx.AddU64("{}=atomicAnd(ssbo{}_u64[{}],{});", inst, binding.U32(), offset.U32(), value);
 | 
			
		
		
	
		
			
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				    ctx.AddU64("{}=uint64_t(uvec2(atomicAnd(ssbo{}[{}],unpackUint2x32({}).x),atomicAnd(ssbo{}[{}],"
 | 
			
		
		
	
		
			
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			 | 
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				               "unpackUint2x32({}).y)));",
 | 
			
		
		
	
		
			
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				               inst, binding.U32(), offset.U32(), value, binding.U32(), offset.U32() + 1, value);
 | 
			
		
		
	
		
			
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			 | 
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				}
 | 
			
		
		
	
		
			
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				void EmitStorageAtomicOr64(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
 | 
			
		
		
	
		
			
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			 | 
			 | 
			
				                           const IR::Value& offset, std::string_view value) {
 | 
			
		
		
	
		
			
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			 | 
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				    ctx.AddU64("{}=atomicOr(ssbo{}_u64[{}],{});", inst, binding.U32(), offset.U32(), value);
 | 
			
		
		
	
		
			
				 | 
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			 | 
			 | 
			
				    ctx.AddU64("{}=uint64_t(uvec2(atomicOr(ssbo{}[{}],unpackUint2x32({}).x),atomicOr(ssbo{}[{}],"
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				               "unpackUint2x32({}).y)));",
 | 
			
		
		
	
		
			
				 | 
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			 | 
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				               inst, binding.U32(), offset.U32(), value, binding.U32(), offset.U32() + 1, value);
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				}
 | 
			
		
		
	
		
			
				 | 
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 | 
			
		
		
	
		
			
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			 | 
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				void EmitStorageAtomicXor64(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
 | 
			
		
		
	
		
			
				 | 
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			 | 
			 | 
			
				                            const IR::Value& offset, std::string_view value) {
 | 
			
		
		
	
		
			
				 | 
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			 | 
			 | 
			
				    ctx.AddU64("{}=atomicXor(ssbo{}_u64[{}],{});", inst, binding.U32(), offset.U32(), value);
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				    ctx.AddU64("{}=uint64_t(uvec2(atomicXor(ssbo{}[{}],unpackUint2x32({}).x),atomicXor(ssbo{}[{}],"
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				               "unpackUint2x32({}).y)));",
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				               inst, binding.U32(), offset.U32(), value, binding.U32(), offset.U32() + 1, value);
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				}
 | 
			
		
		
	
		
			
				 | 
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			 | 
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 | 
			
		
		
	
		
			
				 | 
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			 | 
			 | 
			
				void EmitStorageAtomicExchange64(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				                                 const IR::Value& offset, std::string_view value) {
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				    ctx.AddU64("{}=atomicExchange(ssbo{}_u64[{}],{});", inst, binding.U32(), offset.U32(), value);
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				    ctx.AddU64("{}=uint64_t(uvec2(atomicExchange(ssbo{}[{}],unpackUint2x32({}).x),atomicExchange("
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				               "ssbo{}[{}],unpackUint2x32({}).y)));",
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				               inst, binding.U32(), offset.U32(), value, binding.U32(), offset.U32() + 1, value);
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				}
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
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 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				void EmitStorageAtomicAddF32(EmitContext& ctx, IR::Inst& inst, const IR::Value& binding,
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				                             const IR::Value& offset, std::string_view value) {
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				    ctx.AddF32("{}=atomicAdd(ssbo{}_u32[{}],{});", inst, binding.U32(), offset.U32(), value);
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				    CasFunctionF32(ctx, inst, binding, offset, value, "CasFloatAdd");
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				}
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
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 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				void EmitStorageAtomicAddF16x2([[maybe_unused]] EmitContext& ctx, [[maybe_unused]] IR::Inst& inst,
 | 
			
		
		
	
	
		
			
				
					
					| 
						
					 | 
				
			
			 | 
			 | 
			
				@@ -152,7 +213,7 @@ void EmitStorageAtomicAddF32x2([[maybe_unused]] EmitContext& ctx, [[maybe_unused
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				                               [[maybe_unused]] const IR::Value& binding,
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				                               [[maybe_unused]] const IR::Value& offset,
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				                               [[maybe_unused]] std::string_view value) {
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				    throw NotImplementedException("GLSL Instrucion");
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				    CasFunctionF32x2(ctx, inst, binding, offset, value, "CasFloatAdd32x2");
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				}
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				void EmitStorageAtomicMinF16x2([[maybe_unused]] EmitContext& ctx, [[maybe_unused]] IR::Inst& inst,
 | 
			
		
		
	
	
		
			
				
					
					| 
						
					 | 
				
			
			 | 
			 | 
			
				@@ -166,7 +227,7 @@ void EmitStorageAtomicMinF32x2([[maybe_unused]] EmitContext& ctx, [[maybe_unused
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				                               [[maybe_unused]] const IR::Value& binding,
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				                               [[maybe_unused]] const IR::Value& offset,
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				                               [[maybe_unused]] std::string_view value) {
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				    throw NotImplementedException("GLSL Instrucion");
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				    CasFunctionF32x2(ctx, inst, binding, offset, value, "CasFloatMin32x2");
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				}
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				void EmitStorageAtomicMaxF16x2([[maybe_unused]] EmitContext& ctx, [[maybe_unused]] IR::Inst& inst,
 | 
			
		
		
	
	
		
			
				
					
					| 
						
					 | 
				
			
			 | 
			 | 
			
				@@ -180,7 +241,7 @@ void EmitStorageAtomicMaxF32x2([[maybe_unused]] EmitContext& ctx, [[maybe_unused
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				                               [[maybe_unused]] const IR::Value& binding,
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				                               [[maybe_unused]] const IR::Value& offset,
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				                               [[maybe_unused]] std::string_view value) {
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				    throw NotImplementedException("GLSL Instrucion");
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				    CasFunctionF32x2(ctx, inst, binding, offset, value, "CasFloatMax32x2");
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				}
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				
 | 
			
		
		
	
		
			
				 | 
				 | 
			
			 | 
			 | 
			
				void EmitGlobalAtomicIAdd32(EmitContext&) {
 | 
			
		
		
	
	
		
			
				
					
					| 
						
					 | 
				
			
			 | 
			 | 
			
				 
 |