Add an icmp_imm instruction.
Compare a scalar integer to an immediate constant. Both Intel and RISC-V ISAs have this operation. This requires the addition of a new IntCompareImm instruction format.
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@@ -678,6 +678,7 @@ Integer operations
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------------------
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.. autoinst:: icmp
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.. autoinst:: icmp_imm
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.. autoinst:: iadd
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.. autoinst:: iadd_imm
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.. autoinst:: iadd_cin
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@@ -54,14 +54,14 @@ function icmp(i32, i32) {
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ebb0(vx0: i32, vx1: i32):
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v0 = icmp eq, vx0, vx1
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v1 = icmp ult, vx0, vx1
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v2 = icmp sge, vx0, vx1
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v2 = icmp_imm sge, vx0, -12
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v3 = irsub_imm vx1, 45
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}
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; sameln: function icmp(i32, i32) {
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; nextln: ebb0(vx0: i32, vx1: i32):
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; nextln: v0 = icmp eq, vx0, vx1
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; nextln: v1 = icmp ult, vx0, vx1
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; nextln: v2 = icmp sge, vx0, vx1
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; nextln: v2 = icmp_imm sge, vx0, -12
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; nextln: v3 = irsub_imm vx1, 45
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; nextln: }
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@@ -38,6 +38,7 @@ InsertLane = InstructionFormat(VALUE, ('lane', uimm8), VALUE)
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ExtractLane = InstructionFormat(VALUE, ('lane', uimm8))
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IntCompare = InstructionFormat(intcc, VALUE, VALUE)
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IntCompareImm = InstructionFormat(intcc, VALUE, imm64)
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FloatCompare = InstructionFormat(floatcc, VALUE, VALUE)
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Jump = InstructionFormat(ebb, VARIABLE_ARGS)
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@@ -367,6 +367,22 @@ icmp = Instruction(
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""",
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ins=(Cond, x, y), outs=a)
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a = Operand('a', b1)
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x = Operand('x', iB)
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Y = Operand('Y', imm64)
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icmp_imm = Instruction(
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'icmp_imm', r"""
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Compare scalar integer to a constant.
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This is the same as the :inst:`icmp` instruction, except one operand is
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an immediate constant.
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This instruction can only compare scalars. Use :inst:`icmp` for
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lane-wise vector comparisons.
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""",
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ins=(Cond, x, Y), outs=a)
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a = Operand('a', Int)
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x = Operand('x', Int)
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y = Operand('y', Int)
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@@ -175,6 +175,13 @@ pub enum InstructionData {
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cond: IntCC,
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args: [Value; 2],
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},
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IntCompareImm {
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opcode: Opcode,
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ty: Type,
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cond: IntCC,
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arg: Value,
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imm: Imm64,
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},
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FloatCompare {
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opcode: Opcode,
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ty: Type,
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@@ -251,6 +251,7 @@ impl<'a> Verifier<'a> {
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&InsertLane { .. } |
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&ExtractLane { .. } |
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&IntCompare { .. } |
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&IntCompareImm { .. } |
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&FloatCompare { .. } => {}
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}
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@@ -682,4 +683,4 @@ mod tests {
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let verifier = Verifier::new(&func);
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assert_err_with_msg!(verifier.run(), "instruction format");
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}
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}
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}
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@@ -260,6 +260,7 @@ pub fn write_operands(w: &mut Write, dfg: &DataFlowGraph, inst: Inst) -> Result
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InsertLane { lane, args, .. } => write!(w, " {}, {}, {}", args[0], lane, args[1]),
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ExtractLane { lane, arg, .. } => write!(w, " {}, {}", arg, lane),
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IntCompare { cond, args, .. } => write!(w, " {}, {}, {}", cond, args[0], args[1]),
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IntCompareImm { cond, arg, imm, .. } => write!(w, " {}, {}, {}", cond, arg, imm),
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FloatCompare { cond, args, .. } => write!(w, " {}, {}, {}", cond, args[0], args[1]),
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Jump { destination, ref args, .. } => {
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if args.is_empty() {
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@@ -216,11 +216,12 @@ impl<'a> Context<'a> {
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InstructionData::UnaryIeee32 { .. } |
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InstructionData::UnaryIeee64 { .. } => {}
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InstructionData::Unary { ref mut arg, .. } |
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InstructionData::UnarySplit { ref mut arg, .. } |
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InstructionData::BinaryImm { ref mut arg, .. } |
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InstructionData::BranchTable { ref mut arg, .. } |
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InstructionData::ExtractLane { ref mut arg, .. } |
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InstructionData::BranchTable { ref mut arg, .. } => {
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InstructionData::IntCompareImm { ref mut arg, .. } |
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InstructionData::Unary { ref mut arg, .. } |
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InstructionData::UnarySplit { ref mut arg, .. } => {
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self.map.rewrite_value(arg, loc)?;
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}
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@@ -1557,6 +1558,20 @@ impl<'a> Parser<'a> {
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args: [lhs, rhs],
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}
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}
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InstructionFormat::IntCompareImm => {
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let cond = self.match_enum("expected intcc condition code")?;
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self.match_token(Token::Comma, "expected ',' between operands")?;
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let lhs = self.match_value("expected SSA value first operand")?;
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self.match_token(Token::Comma, "expected ',' between operands")?;
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let rhs = self.match_imm64("expected immediate second operand")?;
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InstructionData::IntCompareImm {
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opcode: opcode,
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ty: VOID,
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cond: cond,
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arg: lhs,
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imm: rhs,
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}
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}
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InstructionFormat::FloatCompare => {
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let cond = self.match_enum("expected floatcc condition code")?;
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self.match_token(Token::Comma, "expected ',' between operands")?;
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