remw
Signed 32-bit remainder
This instruction is defined by:
Synopsis
Calculate the remainder of signed division of the 32-bit values xs1 by xs2, and store the sign-extended result in xd.
If the value in register xs2 is zero, write the sign-extended 32-bit value in xs1 into xd;
If the result of the division overflows, write zero into xd;
Decode Variables
Bits<5> xs2 = $encoding[24:20];
Bits<5> xs1 = $encoding[19:15];
Bits<5> xd = $encoding[11:7];
Execution
-
Pruned, XLEN == 64
-
Original
if (implemented?(ExtensionName::M) && (misa.M == 1'b0)) {
raise(ExceptionCode::IllegalInstruction, mode(), $encoding);
}
Bits<32> src1 = X[xs1][31:0];
Bits<32> src2 = X[xs2][31:0];
if (src2 == 0) {
Bits<1> sign_bit = src1[31];
X[xd] = {{32{sign_bit}}, src1};
} else if ((src1 == {33'b1, 31'b0}) && (src2 == 32'b1)) {
X[xd] = 0;
} else {
Bits<32> result = $signed(src1) % $signed(src2);
Bits<1> sign_bit = result[31];
X[xd] = {{32{sign_bit}}, result};
}
if (implemented?(ExtensionName::M) && (misa.M == 1'b0)) {
raise(ExceptionCode::IllegalInstruction, mode(), $encoding);
}
Bits<32> src1 = X[xs1][31:0];
Bits<32> src2 = X[xs2][31:0];
if (src2 == 0) {
Bits<1> sign_bit = src1[31];
X[xd] = {{32{sign_bit}}, src1};
} else if ((src1 == {33'b1, 31'b0}) && (src2 == 32'b1)) {
X[xd] = 0;
} else {
Bits<32> result = $signed(src1) % $signed(src2);
Bits<1> sign_bit = result[31];
X[xd] = {{32{sign_bit}}, result};
}