machine_mode op_mode = GET_MODE (op0);
bool is_sse = SSE_FLOAT_MODE_SSEMATH_OR_HF_P (op_mode);
+ if (op_mode == BFmode)
+ {
+ rtx op = gen_lowpart (HImode, op0);
+ if (CONST_INT_P (op))
+ op = simplify_const_unary_operation (FLOAT_EXTEND, SFmode,
+ op0, BFmode);
+ else
+ {
+ rtx t1 = gen_reg_rtx (SImode);
+ emit_insn (gen_zero_extendhisi2 (t1, op));
+ emit_insn (gen_ashlsi3 (t1, t1, GEN_INT (16)));
+ op = gen_lowpart (SFmode, t1);
+ }
+ *pop0 = op;
+ op = gen_lowpart (HImode, op1);
+ if (CONST_INT_P (op))
+ op = simplify_const_unary_operation (FLOAT_EXTEND, SFmode,
+ op1, BFmode);
+ else
+ {
+ rtx t1 = gen_reg_rtx (SImode);
+ emit_insn (gen_zero_extendhisi2 (t1, op));
+ emit_insn (gen_ashlsi3 (t1, t1, GEN_INT (16)));
+ op = gen_lowpart (SFmode, t1);
+ }
+ *pop1 = op;
+ return ix86_prepare_fp_compare_args (code, pop0, pop1);
+ }
+
/* All of the unordered compare instructions only work on registers.
The same is true of the fcomi compare instructions. The XFmode
compare instructions require registers except when comparing
&& !TARGET_64BIT))
return false;
+ if (GET_MODE (op0) == BFmode
+ && !ix86_fp_comparison_operator (operands[1], VOIDmode))
+ return false;
+
start_sequence ();
compare_op = ix86_expand_compare (code, op0, op1);
compare_seq = get_insns ();
rtx op0 = XEXP (operands[1], 0);
rtx op1 = XEXP (operands[1], 1);
+ if (GET_MODE (op0) == BFmode
+ && !ix86_fp_comparison_operator (operands[1], VOIDmode))
+ return false;
+
if (SSE_FLOAT_MODE_SSEMATH_OR_HF_P (mode))
{
machine_mode cmode;