// WebAssemblyInstrMemory.td-WebAssembly Memory codegen support -*- tablegen -*- // // The LLVM Compiler Infrastructure // // This file is distributed under the University of Illinois Open Source // License. See LICENSE.TXT for details. // //===----------------------------------------------------------------------===// /// /// \file /// \brief WebAssembly Memory operand code-gen constructs. /// //===----------------------------------------------------------------------===// // TODO: // - HasAddr64 // - WebAssemblyTargetLowering having to do with atomics // - Each has optional alignment. // WebAssembly has i8/i16/i32/i64/f32/f64 memory types, but doesn't have i8/i16 // local types. These memory-only types instead zero- or sign-extend into local // types when loading, and truncate when storing. // WebAssembly constant offsets are performed as unsigned with infinite // precision, so we need to check for NoUnsignedWrap so that we don't fold an // offset for an add that needs wrapping. def regPlusImm : PatFrag<(ops node:$addr, node:$off), (add node:$addr, node:$off), [{ return N->getFlags().hasNoUnsignedWrap(); }]>; // Treat an 'or' node as an 'add' if the or'ed bits are known to be zero. def or_is_add : PatFrag<(ops node:$lhs, node:$rhs), (or node:$lhs, node:$rhs),[{ if (ConstantSDNode *CN = dyn_cast(N->getOperand(1))) return CurDAG->MaskedValueIsZero(N->getOperand(0), CN->getAPIntValue()); KnownBits Known0; CurDAG->computeKnownBits(N->getOperand(0), Known0, 0); KnownBits Known1; CurDAG->computeKnownBits(N->getOperand(1), Known1, 0); return (~Known0.Zero & ~Known1.Zero) == 0; }]>; // GlobalAddresses are conceptually unsigned values, so we can also fold them // into immediate values as long as the add is 'nuw'. // TODO: We'd like to also match GA offsets but there are cases where the // register can have a negative value. Find out what more we can do. def regPlusGA : PatFrag<(ops node:$addr, node:$off), (add node:$addr, node:$off), [{ return N->getFlags().hasNoUnsignedWrap(); }]>; // We don't need a regPlusES because external symbols never have constant // offsets folded into them, so we can just use add. let Defs = [ARGUMENTS] in { // Defines atomic and non-atomic loads, regular and extending. class WebAssemblyLoad : I<(outs rc:$dst), (ins P2Align:$p2align, offset32_op:$off, I32:$addr), [], !strconcat(Name, "\t$dst, ${off}(${addr})${p2align}"), Opcode>; // Basic load. // FIXME: When we can break syntax compatibility, reorder the fields in the // asmstrings to match the binary encoding. def LOAD_I32 : WebAssemblyLoad; def LOAD_I64 : WebAssemblyLoad; def LOAD_F32 : WebAssemblyLoad; def LOAD_F64 : WebAssemblyLoad; } // Defs = [ARGUMENTS] // Select loads with no constant offset. class LoadPatNoOffset : Pat<(ty (node I32:$addr)), (inst 0, 0, $addr)>; def : LoadPatNoOffset; def : LoadPatNoOffset; def : LoadPatNoOffset; def : LoadPatNoOffset; // Select loads with a constant offset. // Pattern with address + immediate offset class LoadPatImmOff : Pat<(ty (loadkind (operand I32:$addr, imm:$off))), (inst 0, imm:$off, $addr)>; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; class LoadPatGlobalAddr : Pat<(ty (loadkind (regPlusGA I32:$addr, (WebAssemblywrapper tglobaladdr:$off)))), (inst 0, tglobaladdr:$off, $addr)>; def : LoadPatGlobalAddr; def : LoadPatGlobalAddr; def : LoadPatGlobalAddr; def : LoadPatGlobalAddr; class LoadPatExternalSym : Pat<(ty (loadkind (add I32:$addr, (WebAssemblywrapper texternalsym:$off)))), (inst 0, texternalsym:$off, $addr)>; def : LoadPatExternalSym; def : LoadPatExternalSym; def : LoadPatExternalSym; def : LoadPatExternalSym; // Select loads with just a constant offset. class LoadPatOffsetOnly : Pat<(ty (loadkind imm:$off)), (inst 0, imm:$off, (CONST_I32 0))>; def : LoadPatOffsetOnly; def : LoadPatOffsetOnly; def : LoadPatOffsetOnly; def : LoadPatOffsetOnly; class LoadPatGlobalAddrOffOnly : Pat<(ty (loadkind (WebAssemblywrapper tglobaladdr:$off))), (inst 0, tglobaladdr:$off, (CONST_I32 0))>; def : LoadPatGlobalAddrOffOnly; def : LoadPatGlobalAddrOffOnly; def : LoadPatGlobalAddrOffOnly; def : LoadPatGlobalAddrOffOnly; class LoadPatExternSymOffOnly : Pat<(ty (loadkind (WebAssemblywrapper texternalsym:$off))), (inst 0, texternalsym:$off, (CONST_I32 0))>; def : LoadPatExternSymOffOnly; def : LoadPatExternSymOffOnly; def : LoadPatExternSymOffOnly; def : LoadPatExternSymOffOnly; let Defs = [ARGUMENTS] in { // Extending load. def LOAD8_S_I32 : WebAssemblyLoad; def LOAD8_U_I32 : WebAssemblyLoad; def LOAD16_S_I32 : WebAssemblyLoad; def LOAD16_U_I32 : WebAssemblyLoad; def LOAD8_S_I64 : WebAssemblyLoad; def LOAD8_U_I64 : WebAssemblyLoad; def LOAD16_S_I64 : WebAssemblyLoad; def LOAD16_U_I64 : WebAssemblyLoad; def LOAD32_S_I64 : WebAssemblyLoad; def LOAD32_U_I64 : WebAssemblyLoad; } // Defs = [ARGUMENTS] // Select extending loads with no constant offset. def : LoadPatNoOffset; def : LoadPatNoOffset; def : LoadPatNoOffset; def : LoadPatNoOffset; def : LoadPatNoOffset; def : LoadPatNoOffset; def : LoadPatNoOffset; def : LoadPatNoOffset; def : LoadPatNoOffset; def : LoadPatNoOffset; // Select extending loads with a constant offset. def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatGlobalAddr; def : LoadPatGlobalAddr; def : LoadPatGlobalAddr; def : LoadPatGlobalAddr; def : LoadPatGlobalAddr; def : LoadPatGlobalAddr; def : LoadPatGlobalAddr; def : LoadPatGlobalAddr; def : LoadPatGlobalAddr; def : LoadPatGlobalAddr; def : LoadPatExternalSym; def : LoadPatExternalSym; def : LoadPatExternalSym; def : LoadPatExternalSym; def : LoadPatExternalSym; def : LoadPatExternalSym; def : LoadPatExternalSym; def : LoadPatExternalSym; def : LoadPatExternalSym; def : LoadPatExternalSym; // Select extending loads with just a constant offset. def : LoadPatOffsetOnly; def : LoadPatOffsetOnly; def : LoadPatOffsetOnly; def : LoadPatOffsetOnly; def : LoadPatOffsetOnly; def : LoadPatOffsetOnly; def : LoadPatOffsetOnly; def : LoadPatOffsetOnly; def : LoadPatOffsetOnly; def : LoadPatOffsetOnly; def : LoadPatGlobalAddrOffOnly; def : LoadPatGlobalAddrOffOnly; def : LoadPatGlobalAddrOffOnly; def : LoadPatGlobalAddrOffOnly; def : LoadPatGlobalAddrOffOnly; def : LoadPatGlobalAddrOffOnly; def : LoadPatGlobalAddrOffOnly; def : LoadPatGlobalAddrOffOnly; def : LoadPatGlobalAddrOffOnly; def : LoadPatGlobalAddrOffOnly; def : LoadPatExternSymOffOnly; def : LoadPatExternSymOffOnly; def : LoadPatExternSymOffOnly; def : LoadPatExternSymOffOnly; def : LoadPatExternSymOffOnly; def : LoadPatExternSymOffOnly; def : LoadPatExternSymOffOnly; def : LoadPatExternSymOffOnly; def : LoadPatExternSymOffOnly; def : LoadPatExternSymOffOnly; // Resolve "don't care" extending loads to zero-extending loads. This is // somewhat arbitrary, but zero-extending is conceptually simpler. // Select "don't care" extending loads with no constant offset. def : LoadPatNoOffset; def : LoadPatNoOffset; def : LoadPatNoOffset; def : LoadPatNoOffset; def : LoadPatNoOffset; // Select "don't care" extending loads with a constant offset. def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatImmOff; def : LoadPatGlobalAddr; def : LoadPatGlobalAddr; def : LoadPatGlobalAddr; def : LoadPatGlobalAddr; def : LoadPatGlobalAddr; def : LoadPatExternalSym; def : LoadPatExternalSym; def : LoadPatExternalSym; def : LoadPatExternalSym; def : LoadPatExternalSym; // Select "don't care" extending loads with just a constant offset. def : LoadPatOffsetOnly; def : LoadPatOffsetOnly; def : LoadPatOffsetOnly; def : LoadPatOffsetOnly; def : LoadPatOffsetOnly; def : LoadPatGlobalAddrOffOnly; def : LoadPatGlobalAddrOffOnly; def : LoadPatGlobalAddrOffOnly; def : LoadPatGlobalAddrOffOnly; def : LoadPatGlobalAddrOffOnly; def : LoadPatExternSymOffOnly; def : LoadPatExternSymOffOnly; def : LoadPatExternSymOffOnly; def : LoadPatExternSymOffOnly; def : LoadPatExternSymOffOnly; let Defs = [ARGUMENTS] in { // Basic store. // Note: WebAssembly inverts SelectionDAG's usual operand order. def STORE_I32 : I<(outs), (ins P2Align:$p2align, offset32_op:$off, I32:$addr, I32:$val), [], "i32.store\t${off}(${addr})${p2align}, $val", 0x36>; def STORE_I64 : I<(outs), (ins P2Align:$p2align, offset32_op:$off, I32:$addr, I64:$val), [], "i64.store\t${off}(${addr})${p2align}, $val", 0x37>; def STORE_F32 : I<(outs), (ins P2Align:$p2align, offset32_op:$off, I32:$addr, F32:$val), [], "f32.store\t${off}(${addr})${p2align}, $val", 0x38>; def STORE_F64 : I<(outs), (ins P2Align:$p2align, offset32_op:$off, I32:$addr, F64:$val), [], "f64.store\t${off}(${addr})${p2align}, $val", 0x39>; } // Defs = [ARGUMENTS] // Select stores with no constant offset. def : Pat<(store I32:$val, I32:$addr), (STORE_I32 0, 0, I32:$addr, I32:$val)>; def : Pat<(store I64:$val, I32:$addr), (STORE_I64 0, 0, I32:$addr, I64:$val)>; def : Pat<(store F32:$val, I32:$addr), (STORE_F32 0, 0, I32:$addr, F32:$val)>; def : Pat<(store F64:$val, I32:$addr), (STORE_F64 0, 0, I32:$addr, F64:$val)>; // Select stores with a constant offset. def : Pat<(store I32:$val, (regPlusImm I32:$addr, imm:$off)), (STORE_I32 0, imm:$off, I32:$addr, I32:$val)>; def : Pat<(store I64:$val, (regPlusImm I32:$addr, imm:$off)), (STORE_I64 0, imm:$off, I32:$addr, I64:$val)>; def : Pat<(store F32:$val, (regPlusImm I32:$addr, imm:$off)), (STORE_F32 0, imm:$off, I32:$addr, F32:$val)>; def : Pat<(store F64:$val, (regPlusImm I32:$addr, imm:$off)), (STORE_F64 0, imm:$off, I32:$addr, F64:$val)>; def : Pat<(store I32:$val, (or_is_add I32:$addr, imm:$off)), (STORE_I32 0, imm:$off, I32:$addr, I32:$val)>; def : Pat<(store I64:$val, (or_is_add I32:$addr, imm:$off)), (STORE_I64 0, imm:$off, I32:$addr, I64:$val)>; def : Pat<(store F32:$val, (or_is_add I32:$addr, imm:$off)), (STORE_F32 0, imm:$off, I32:$addr, F32:$val)>; def : Pat<(store F64:$val, (or_is_add I32:$addr, imm:$off)), (STORE_F64 0, imm:$off, I32:$addr, F64:$val)>; def : Pat<(store I32:$val, (regPlusGA I32:$addr, (WebAssemblywrapper tglobaladdr:$off))), (STORE_I32 0, tglobaladdr:$off, I32:$addr, I32:$val)>; def : Pat<(store I64:$val, (regPlusGA I32:$addr, (WebAssemblywrapper tglobaladdr:$off))), (STORE_I64 0, tglobaladdr:$off, I32:$addr, I64:$val)>; def : Pat<(store F32:$val, (regPlusGA I32:$addr, (WebAssemblywrapper tglobaladdr:$off))), (STORE_F32 0, tglobaladdr:$off, I32:$addr, F32:$val)>; def : Pat<(store F64:$val, (regPlusGA I32:$addr, (WebAssemblywrapper tglobaladdr:$off))), (STORE_F64 0, tglobaladdr:$off, I32:$addr, F64:$val)>; def : Pat<(store I32:$val, (add I32:$addr, (WebAssemblywrapper texternalsym:$off))), (STORE_I32 0, texternalsym:$off, I32:$addr, I32:$val)>; def : Pat<(store I64:$val, (add I32:$addr, (WebAssemblywrapper texternalsym:$off))), (STORE_I64 0, texternalsym:$off, I32:$addr, I64:$val)>; def : Pat<(store F32:$val, (add I32:$addr, (WebAssemblywrapper texternalsym:$off))), (STORE_F32 0, texternalsym:$off, I32:$addr, F32:$val)>; def : Pat<(store F64:$val, (add I32:$addr, (WebAssemblywrapper texternalsym:$off))), (STORE_F64 0, texternalsym:$off, I32:$addr, F64:$val)>; // Select stores with just a constant offset. def : Pat<(store I32:$val, imm:$off), (STORE_I32 0, imm:$off, (CONST_I32 0), I32:$val)>; def : Pat<(store I64:$val, imm:$off), (STORE_I64 0, imm:$off, (CONST_I32 0), I64:$val)>; def : Pat<(store F32:$val, imm:$off), (STORE_F32 0, imm:$off, (CONST_I32 0), F32:$val)>; def : Pat<(store F64:$val, imm:$off), (STORE_F64 0, imm:$off, (CONST_I32 0), F64:$val)>; def : Pat<(store I32:$val, (WebAssemblywrapper tglobaladdr:$off)), (STORE_I32 0, tglobaladdr:$off, (CONST_I32 0), I32:$val)>; def : Pat<(store I64:$val, (WebAssemblywrapper tglobaladdr:$off)), (STORE_I64 0, tglobaladdr:$off, (CONST_I32 0), I64:$val)>; def : Pat<(store F32:$val, (WebAssemblywrapper tglobaladdr:$off)), (STORE_F32 0, tglobaladdr:$off, (CONST_I32 0), F32:$val)>; def : Pat<(store F64:$val, (WebAssemblywrapper tglobaladdr:$off)), (STORE_F64 0, tglobaladdr:$off, (CONST_I32 0), F64:$val)>; def : Pat<(store I32:$val, (WebAssemblywrapper texternalsym:$off)), (STORE_I32 0, texternalsym:$off, (CONST_I32 0), I32:$val)>; def : Pat<(store I64:$val, (WebAssemblywrapper texternalsym:$off)), (STORE_I64 0, texternalsym:$off, (CONST_I32 0), I64:$val)>; def : Pat<(store F32:$val, (WebAssemblywrapper texternalsym:$off)), (STORE_F32 0, texternalsym:$off, (CONST_I32 0), F32:$val)>; def : Pat<(store F64:$val, (WebAssemblywrapper texternalsym:$off)), (STORE_F64 0, texternalsym:$off, (CONST_I32 0), F64:$val)>; let Defs = [ARGUMENTS] in { // Truncating store. def STORE8_I32 : I<(outs), (ins P2Align:$p2align, offset32_op:$off, I32:$addr, I32:$val), [], "i32.store8\t${off}(${addr})${p2align}, $val", 0x3a>; def STORE16_I32 : I<(outs), (ins P2Align:$p2align, offset32_op:$off, I32:$addr, I32:$val), [], "i32.store16\t${off}(${addr})${p2align}, $val", 0x3b>; def STORE8_I64 : I<(outs), (ins P2Align:$p2align, offset32_op:$off, I32:$addr, I64:$val), [], "i64.store8\t${off}(${addr})${p2align}, $val", 0x3c>; def STORE16_I64 : I<(outs), (ins P2Align:$p2align, offset32_op:$off, I32:$addr, I64:$val), [], "i64.store16\t${off}(${addr})${p2align}, $val", 0x3d>; def STORE32_I64 : I<(outs), (ins P2Align:$p2align, offset32_op:$off, I32:$addr, I64:$val), [], "i64.store32\t${off}(${addr})${p2align}, $val", 0x3e>; } // Defs = [ARGUMENTS] // Select truncating stores with no constant offset. def : Pat<(truncstorei8 I32:$val, I32:$addr), (STORE8_I32 0, 0, I32:$addr, I32:$val)>; def : Pat<(truncstorei16 I32:$val, I32:$addr), (STORE16_I32 0, 0, I32:$addr, I32:$val)>; def : Pat<(truncstorei8 I64:$val, I32:$addr), (STORE8_I64 0, 0, I32:$addr, I64:$val)>; def : Pat<(truncstorei16 I64:$val, I32:$addr), (STORE16_I64 0, 0, I32:$addr, I64:$val)>; def : Pat<(truncstorei32 I64:$val, I32:$addr), (STORE32_I64 0, 0, I32:$addr, I64:$val)>; // Select truncating stores with a constant offset. def : Pat<(truncstorei8 I32:$val, (regPlusImm I32:$addr, imm:$off)), (STORE8_I32 0, imm:$off, I32:$addr, I32:$val)>; def : Pat<(truncstorei16 I32:$val, (regPlusImm I32:$addr, imm:$off)), (STORE16_I32 0, imm:$off, I32:$addr, I32:$val)>; def : Pat<(truncstorei8 I64:$val, (regPlusImm I32:$addr, imm:$off)), (STORE8_I64 0, imm:$off, I32:$addr, I64:$val)>; def : Pat<(truncstorei16 I64:$val, (regPlusImm I32:$addr, imm:$off)), (STORE16_I64 0, imm:$off, I32:$addr, I64:$val)>; def : Pat<(truncstorei32 I64:$val, (regPlusImm I32:$addr, imm:$off)), (STORE32_I64 0, imm:$off, I32:$addr, I64:$val)>; def : Pat<(truncstorei8 I32:$val, (or_is_add I32:$addr, imm:$off)), (STORE8_I32 0, imm:$off, I32:$addr, I32:$val)>; def : Pat<(truncstorei16 I32:$val, (or_is_add I32:$addr, imm:$off)), (STORE16_I32 0, imm:$off, I32:$addr, I32:$val)>; def : Pat<(truncstorei8 I64:$val, (or_is_add I32:$addr, imm:$off)), (STORE8_I64 0, imm:$off, I32:$addr, I64:$val)>; def : Pat<(truncstorei16 I64:$val, (or_is_add I32:$addr, imm:$off)), (STORE16_I64 0, imm:$off, I32:$addr, I64:$val)>; def : Pat<(truncstorei32 I64:$val, (or_is_add I32:$addr, imm:$off)), (STORE32_I64 0, imm:$off, I32:$addr, I64:$val)>; def : Pat<(truncstorei8 I32:$val, (regPlusGA I32:$addr, (WebAssemblywrapper tglobaladdr:$off))), (STORE8_I32 0, tglobaladdr:$off, I32:$addr, I32:$val)>; def : Pat<(truncstorei16 I32:$val, (regPlusGA I32:$addr, (WebAssemblywrapper tglobaladdr:$off))), (STORE16_I32 0, tglobaladdr:$off, I32:$addr, I32:$val)>; def : Pat<(truncstorei8 I64:$val, (regPlusGA I32:$addr, (WebAssemblywrapper tglobaladdr:$off))), (STORE8_I64 0, tglobaladdr:$off, I32:$addr, I64:$val)>; def : Pat<(truncstorei16 I64:$val, (regPlusGA I32:$addr, (WebAssemblywrapper tglobaladdr:$off))), (STORE16_I64 0, tglobaladdr:$off, I32:$addr, I64:$val)>; def : Pat<(truncstorei32 I64:$val, (regPlusGA I32:$addr, (WebAssemblywrapper tglobaladdr:$off))), (STORE32_I64 0, tglobaladdr:$off, I32:$addr, I64:$val)>; def : Pat<(truncstorei8 I32:$val, (add I32:$addr, (WebAssemblywrapper texternalsym:$off))), (STORE8_I32 0, texternalsym:$off, I32:$addr, I32:$val)>; def : Pat<(truncstorei16 I32:$val, (add I32:$addr, (WebAssemblywrapper texternalsym:$off))), (STORE16_I32 0, texternalsym:$off, I32:$addr, I32:$val)>; def : Pat<(truncstorei8 I64:$val, (add I32:$addr, (WebAssemblywrapper texternalsym:$off))), (STORE8_I64 0, texternalsym:$off, I32:$addr, I64:$val)>; def : Pat<(truncstorei16 I64:$val, (add I32:$addr, (WebAssemblywrapper texternalsym:$off))), (STORE16_I64 0, texternalsym:$off, I32:$addr, I64:$val)>; def : Pat<(truncstorei32 I64:$val, (add I32:$addr, (WebAssemblywrapper texternalsym:$off))), (STORE32_I64 0, texternalsym:$off, I32:$addr, I64:$val)>; // Select truncating stores with just a constant offset. def : Pat<(truncstorei8 I32:$val, imm:$off), (STORE8_I32 0, imm:$off, (CONST_I32 0), I32:$val)>; def : Pat<(truncstorei16 I32:$val, imm:$off), (STORE16_I32 0, imm:$off, (CONST_I32 0), I32:$val)>; def : Pat<(truncstorei8 I64:$val, imm:$off), (STORE8_I64 0, imm:$off, (CONST_I32 0), I64:$val)>; def : Pat<(truncstorei16 I64:$val, imm:$off), (STORE16_I64 0, imm:$off, (CONST_I32 0), I64:$val)>; def : Pat<(truncstorei32 I64:$val, imm:$off), (STORE32_I64 0, imm:$off, (CONST_I32 0), I64:$val)>; def : Pat<(truncstorei8 I32:$val, (WebAssemblywrapper tglobaladdr:$off)), (STORE8_I32 0, tglobaladdr:$off, (CONST_I32 0), I32:$val)>; def : Pat<(truncstorei16 I32:$val, (WebAssemblywrapper tglobaladdr:$off)), (STORE16_I32 0, tglobaladdr:$off, (CONST_I32 0), I32:$val)>; def : Pat<(truncstorei8 I64:$val, (WebAssemblywrapper tglobaladdr:$off)), (STORE8_I64 0, tglobaladdr:$off, (CONST_I32 0), I64:$val)>; def : Pat<(truncstorei16 I64:$val, (WebAssemblywrapper tglobaladdr:$off)), (STORE16_I64 0, tglobaladdr:$off, (CONST_I32 0), I64:$val)>; def : Pat<(truncstorei32 I64:$val, (WebAssemblywrapper tglobaladdr:$off)), (STORE32_I64 0, tglobaladdr:$off, (CONST_I32 0), I64:$val)>; def : Pat<(truncstorei8 I32:$val, (WebAssemblywrapper texternalsym:$off)), (STORE8_I32 0, texternalsym:$off, (CONST_I32 0), I32:$val)>; def : Pat<(truncstorei16 I32:$val, (WebAssemblywrapper texternalsym:$off)), (STORE16_I32 0, texternalsym:$off, (CONST_I32 0), I32:$val)>; def : Pat<(truncstorei8 I64:$val, (WebAssemblywrapper texternalsym:$off)), (STORE8_I64 0, texternalsym:$off, (CONST_I32 0), I64:$val)>; def : Pat<(truncstorei16 I64:$val, (WebAssemblywrapper texternalsym:$off)), (STORE16_I64 0, texternalsym:$off, (CONST_I32 0), I64:$val)>; def : Pat<(truncstorei32 I64:$val, (WebAssemblywrapper texternalsym:$off)), (STORE32_I64 0, texternalsym:$off, (CONST_I32 0), I64:$val)>; let Defs = [ARGUMENTS] in { // Current memory size. def CURRENT_MEMORY_I32 : I<(outs I32:$dst), (ins i32imm:$flags), [], "current_memory\t$dst", 0x3f>, Requires<[HasAddr32]>; // Grow memory. def GROW_MEMORY_I32 : I<(outs I32:$dst), (ins i32imm:$flags, I32:$delta), [], "grow_memory\t$dst, $delta", 0x40>, Requires<[HasAddr32]>; } // Defs = [ARGUMENTS] def : Pat<(int_wasm_current_memory), (CURRENT_MEMORY_I32 0)>; def : Pat<(int_wasm_grow_memory I32:$delta), (GROW_MEMORY_I32 0, $delta)>;