setFeatureBits(Mips::FeatureMips32r2,"mips32r2");
getTargetStreamer().emitDirectiveSetMips32R2();
return false;
+ } else if (Tok.getString() == "dsp") {
+ Parser.Lex(); // Eat token.
+ if (getLexer().isNot(AsmToken::EndOfStatement))
+ return reportParseError("unexpected token in .set directive");
+ setFeatureBits(Mips::FeatureDSP, "dsp");
+ getTargetStreamer().emitDirectiveSetDsp();
+ return false;
} else {
// It is just an identifier, look for an assignment.
parseSetAssignment();
OS << "\t.set\tmips32r2\n";
}
+void MipsTargetAsmStreamer::emitDirectiveSetDsp() {
+ OS << "\t.set\tdsp\n";
+}
// Print a 32 bit hex number with all numbers.
static void printHex32(unsigned Value, raw_ostream &OS) {
OS << "0x";
void MipsTargetELFStreamer::emitDirectiveSetMips32R2() {
// No action required for ELF output.
}
+
+void MipsTargetELFStreamer::emitDirectiveSetDsp() {
+ // No action required for ELF output.
+}
virtual void emitFMask(unsigned FPUBitmask, int FPUTopSavedRegOff) = 0;
virtual void emitDirectiveSetMips32R2() = 0;
+ virtual void emitDirectiveSetDsp() = 0;
};
// This part is for ascii assembly output
virtual void emitFMask(unsigned FPUBitmask, int FPUTopSavedRegOff);
virtual void emitDirectiveSetMips32R2();
+ virtual void emitDirectiveSetDsp();
};
// This part is for ELF object output
virtual void emitFMask(unsigned FPUBitmask, int FPUTopSavedRegOff);
virtual void emitDirectiveSetMips32R2();
+ virtual void emitDirectiveSetDsp();
};
}
#endif
ldxc1 $f0, $zero($5)
luxc1 $f0, $6($5)
lwxc1 $f6, $2($5)
+
+# CHECK: .set dsp
+# CHECK: lbux $7, $10($11) # encoding: [0x7d,0x6a,0x39,0x8a]
+# CHECK: lhx $5, $6($7) # encoding: [0x7c,0xe6,0x29,0x0a]
+ .set dsp
+ lbux $7, $10($11)
+ lhx $5, $6($7)