mirror of
https://github.com/RPCS3/llvm-mirror.git
synced 2024-11-24 03:33:20 +01:00
ed9a033b66
In r296921, we added the G_[UN]MERGE_VALUES node, but did not update the documentation. Fixing that. NFC. llvm-svn: 314168
595 lines
17 KiB
TableGen
595 lines
17 KiB
TableGen
//===-- GenericOpcodes.td - Opcodes used with GlobalISel ---*- tablegen -*-===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// This file defines the generic opcodes used with GlobalISel.
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// After instruction selection, these opcodes should not appear.
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//
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//===----------------------------------------------------------------------===//
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//------------------------------------------------------------------------------
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// Unary ops.
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//------------------------------------------------------------------------------
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// Extend the underlying scalar type of an operation, leaving the high bits
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// unspecified.
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def G_ANYEXT : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type1:$src);
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let hasSideEffects = 0;
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}
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// Sign extend the underlying scalar type of an operation, copying the sign bit
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// into the newly-created space.
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def G_SEXT : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type1:$src);
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let hasSideEffects = 0;
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}
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// Zero extend the underlying scalar type of an operation, putting zero bits
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// into the newly-created space.
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def G_ZEXT : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type1:$src);
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let hasSideEffects = 0;
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}
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// Truncate the underlying scalar type of an operation. This is equivalent to
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// G_EXTRACT for scalar types, but acts elementwise on vectors.
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def G_TRUNC : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type1:$src);
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let hasSideEffects = 0;
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}
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def G_IMPLICIT_DEF : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins);
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let hasSideEffects = 0;
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}
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def G_PHI : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins variable_ops);
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let hasSideEffects = 0;
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}
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def G_FRAME_INDEX : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins unknown:$src2);
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let hasSideEffects = 0;
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}
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def G_GLOBAL_VALUE : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins unknown:$src);
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let hasSideEffects = 0;
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}
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def G_INTTOPTR : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type1:$src);
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let hasSideEffects = 0;
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}
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def G_PTRTOINT : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type1:$src);
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let hasSideEffects = 0;
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}
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def G_BITCAST : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type1:$src);
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let hasSideEffects = 0;
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}
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def G_CONSTANT : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins unknown:$imm);
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let hasSideEffects = 0;
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}
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def G_FCONSTANT : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins unknown:$imm);
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let hasSideEffects = 0;
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}
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def G_VASTART : Instruction {
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let OutOperandList = (outs);
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let InOperandList = (ins type0:$list);
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let hasSideEffects = 0;
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let mayStore = 1;
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}
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def G_VAARG : Instruction {
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let OutOperandList = (outs type0:$val);
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let InOperandList = (ins type1:$list, unknown:$align);
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let hasSideEffects = 0;
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let mayLoad = 1;
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let mayStore = 1;
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}
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def G_BSWAP : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src);
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let hasSideEffects = 0;
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}
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//------------------------------------------------------------------------------
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// Binary ops.
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//------------------------------------------------------------------------------
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// Generic addition.
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def G_ADD : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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let isCommutable = 1;
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}
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// Generic subtraction.
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def G_SUB : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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let isCommutable = 0;
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}
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// Generic multiplication.
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def G_MUL : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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let isCommutable = 1;
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}
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// Generic signed division.
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def G_SDIV : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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let isCommutable = 0;
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}
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// Generic unsigned division.
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def G_UDIV : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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let isCommutable = 0;
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}
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// Generic signed remainder.
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def G_SREM : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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let isCommutable = 0;
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}
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// Generic unsigned remainder.
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def G_UREM : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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let isCommutable = 0;
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}
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// Generic bitwise and.
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def G_AND : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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let isCommutable = 1;
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}
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// Generic bitwise or.
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def G_OR : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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let isCommutable = 1;
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}
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// Generic bitwise xor.
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def G_XOR : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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let isCommutable = 1;
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}
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// Generic left-shift.
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def G_SHL : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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}
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// Generic logical right-shift.
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def G_LSHR : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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}
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// Generic arithmetic right-shift.
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def G_ASHR : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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}
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// Generic integer comparison.
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def G_ICMP : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins unknown:$tst, type1:$src1, type1:$src2);
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let hasSideEffects = 0;
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}
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// Generic floating-point comparison.
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def G_FCMP : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins unknown:$tst, type1:$src1, type1:$src2);
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let hasSideEffects = 0;
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}
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// Generic select
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def G_SELECT : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type1:$tst, type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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}
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// Generic pointer offset.
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def G_GEP : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type1:$src2);
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let hasSideEffects = 0;
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}
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def G_PTR_MASK : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src, unknown:$bits);
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let hasSideEffects = 0;
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}
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//------------------------------------------------------------------------------
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// Overflow ops
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//------------------------------------------------------------------------------
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// Generic unsigned addition consuming and producing a carry flag.
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def G_UADDE : Instruction {
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let OutOperandList = (outs type0:$dst, type1:$carry_out);
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let InOperandList = (ins type0:$src1, type0:$src2, type1:$carry_in);
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let hasSideEffects = 0;
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}
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// Generic signed addition producing a carry flag.
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def G_SADDO : Instruction {
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let OutOperandList = (outs type0:$dst, type1:$carry_out);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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let isCommutable = 1;
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}
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// Generic unsigned subtraction consuming and producing a carry flag.
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def G_USUBE : Instruction {
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let OutOperandList = (outs type0:$dst, type1:$carry_out);
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let InOperandList = (ins type0:$src1, type0:$src2, type1:$carry_in);
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let hasSideEffects = 0;
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}
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// Generic unsigned subtraction producing a carry flag.
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def G_SSUBO : Instruction {
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let OutOperandList = (outs type0:$dst, type1:$carry_out);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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}
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// Generic unsigned multiplication producing a carry flag.
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def G_UMULO : Instruction {
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let OutOperandList = (outs type0:$dst, type1:$carry_out);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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let isCommutable = 1;
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}
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// Generic signed multiplication producing a carry flag.
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def G_SMULO : Instruction {
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let OutOperandList = (outs type0:$dst, type1:$carry_out);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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let isCommutable = 1;
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}
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// Multiply two numbers at twice the incoming bit width (unsigned) and return
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// the high half of the result.
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def G_UMULH : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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let isCommutable = 1;
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}
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// Multiply two numbers at twice the incoming bit width (signed) and return
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// the high half of the result.
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def G_SMULH : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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let isCommutable = 1;
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}
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//------------------------------------------------------------------------------
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// Floating Point Unary Ops.
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//------------------------------------------------------------------------------
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def G_FNEG : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src);
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let hasSideEffects = 0;
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}
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def G_FPEXT : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type1:$src);
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let hasSideEffects = 0;
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}
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def G_FPTRUNC : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type1:$src);
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let hasSideEffects = 0;
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}
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def G_FPTOSI : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type1:$src);
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let hasSideEffects = 0;
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}
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def G_FPTOUI : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type1:$src);
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let hasSideEffects = 0;
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}
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def G_SITOFP : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type1:$src);
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let hasSideEffects = 0;
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}
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def G_UITOFP : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type1:$src);
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let hasSideEffects = 0;
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}
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//------------------------------------------------------------------------------
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// Floating Point Binary ops.
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//------------------------------------------------------------------------------
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// Generic FP addition.
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def G_FADD : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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let isCommutable = 1;
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}
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// Generic FP subtraction.
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def G_FSUB : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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let isCommutable = 0;
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}
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// Generic FP multiplication.
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def G_FMUL : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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let isCommutable = 1;
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}
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// Generic fused multiply-add instruction.
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// Behaves like llvm fma intrinsic ie src1 * src2 + src3
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def G_FMA : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type0:$src2, type0:$src3);
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let hasSideEffects = 0;
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let isCommutable = 0;
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}
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// Generic FP division.
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def G_FDIV : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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}
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// Generic FP remainder.
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def G_FREM : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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}
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// Floating point exponentiation.
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def G_FPOW : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1, type0:$src2);
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let hasSideEffects = 0;
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}
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// Floating point base-e exponential of a value.
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def G_FEXP : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1);
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let hasSideEffects = 0;
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}
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// Floating point base-2 exponential of a value.
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def G_FEXP2 : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1);
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let hasSideEffects = 0;
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}
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// Floating point base-2 logarithm of a value.
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def G_FLOG : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1);
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let hasSideEffects = 0;
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}
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// Floating point base-2 logarithm of a value.
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def G_FLOG2 : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src1);
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let hasSideEffects = 0;
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}
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//------------------------------------------------------------------------------
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// Memory ops
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//------------------------------------------------------------------------------
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// Generic load. Expects a MachineMemOperand in addition to explicit operands.
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def G_LOAD : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type1:$addr);
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let hasSideEffects = 0;
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let mayLoad = 1;
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}
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// Generic store. Expects a MachineMemOperand in addition to explicit operands.
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def G_STORE : Instruction {
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let OutOperandList = (outs);
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let InOperandList = (ins type0:$src, type1:$addr);
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let hasSideEffects = 0;
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let mayStore = 1;
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}
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//------------------------------------------------------------------------------
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// Variadic ops
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//------------------------------------------------------------------------------
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// Extract a register of the specified size, starting from the block given by
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// index. This will almost certainly be mapped to sub-register COPYs after
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// register banks have been selected.
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def G_EXTRACT : Instruction {
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let OutOperandList = (outs type0:$res);
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let InOperandList = (ins type1:$src, unknown:$offset);
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let hasSideEffects = 0;
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}
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// Extract multiple registers specified size, starting from blocks given by
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// indexes. This will almost certainly be mapped to sub-register COPYs after
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// register banks have been selected.
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def G_UNMERGE_VALUES : Instruction {
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let OutOperandList = (outs);
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let InOperandList = (ins variable_ops);
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let hasSideEffects = 0;
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}
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// Insert a smaller register into a larger one at the specified bit-index.
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def G_INSERT : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins type0:$src, type1:$op, unknown:$offset);
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let hasSideEffects = 0;
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}
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/// Concatenante multiple registers of the same size into a wider register.
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def G_MERGE_VALUES : Instruction {
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let OutOperandList = (outs type0:$dst);
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let InOperandList = (ins variable_ops);
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let hasSideEffects = 0;
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}
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// Intrinsic without side effects.
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def G_INTRINSIC : Instruction {
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let OutOperandList = (outs);
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let InOperandList = (ins unknown:$intrin, variable_ops);
|
|
let hasSideEffects = 0;
|
|
}
|
|
|
|
// Intrinsic with side effects.
|
|
def G_INTRINSIC_W_SIDE_EFFECTS : Instruction {
|
|
let OutOperandList = (outs);
|
|
let InOperandList = (ins unknown:$intrin, variable_ops);
|
|
let hasSideEffects = 1;
|
|
let mayLoad = 1;
|
|
let mayStore = 1;
|
|
}
|
|
|
|
//------------------------------------------------------------------------------
|
|
// Branches.
|
|
//------------------------------------------------------------------------------
|
|
|
|
// Generic unconditional branch.
|
|
def G_BR : Instruction {
|
|
let OutOperandList = (outs);
|
|
let InOperandList = (ins unknown:$src1);
|
|
let hasSideEffects = 0;
|
|
let isBranch = 1;
|
|
let isTerminator = 1;
|
|
let isBarrier = 1;
|
|
}
|
|
|
|
// Generic conditional branch.
|
|
def G_BRCOND : Instruction {
|
|
let OutOperandList = (outs);
|
|
let InOperandList = (ins type0:$tst, unknown:$truebb);
|
|
let hasSideEffects = 0;
|
|
let isBranch = 1;
|
|
let isTerminator = 1;
|
|
}
|
|
|
|
// Generic indirect branch.
|
|
def G_BRINDIRECT : Instruction {
|
|
let OutOperandList = (outs);
|
|
let InOperandList = (ins type0:$src1);
|
|
let hasSideEffects = 0;
|
|
let isBranch = 1;
|
|
let isTerminator = 1;
|
|
}
|
|
|
|
//------------------------------------------------------------------------------
|
|
// Vector ops
|
|
//------------------------------------------------------------------------------
|
|
|
|
// Generic insertelement.
|
|
def G_INSERT_VECTOR_ELT : Instruction {
|
|
let OutOperandList = (outs type0:$dst);
|
|
let InOperandList = (ins type0:$src, type1:$elt, type2:$idx);
|
|
let hasSideEffects = 0;
|
|
}
|
|
|
|
// Generic extractelement.
|
|
def G_EXTRACT_VECTOR_ELT : Instruction {
|
|
let OutOperandList = (outs type0:$dst);
|
|
let InOperandList = (ins type1:$src, type2:$idx);
|
|
let hasSideEffects = 0;
|
|
}
|
|
|
|
// Generic shufflevector.
|
|
def G_SHUFFLE_VECTOR: Instruction {
|
|
let OutOperandList = (outs type0:$dst);
|
|
let InOperandList = (ins type1:$v1, type1:$v2, type2:$mask);
|
|
let hasSideEffects = 0;
|
|
}
|
|
|
|
// TODO: Add the other generic opcodes.
|