AC_FUNC_ATTR_READNONE |
AC_FUNC_ATTR_CONVERGENT);
}
+
+LLVMValueRef
+ac_build_frexp_mant(struct ac_llvm_context *ctx, LLVMValueRef src0,
+ unsigned bitsize)
+{
+ LLVMTypeRef type;
+ char *intr;
+
+ if (bitsize == 16) {
+ intr = "llvm.amdgcn.frexp.mant.f16";
+ type = ctx->f16;
+ } else if (bitsize == 32) {
+ intr = "llvm.amdgcn.frexp.mant.f32";
+ type = ctx->f32;
+ } else {
+ intr = "llvm.amdgcn.frexp.mant.f64";
+ type = ctx->f64;
+ }
+
+ LLVMValueRef params[] = {
+ src0,
+ };
+ return ac_build_intrinsic(ctx, intr, type, params, 1,
+ AC_FUNC_ATTR_READNONE);
+}
LLVMValueRef
ac_build_shuffle(struct ac_llvm_context *ctx, LLVMValueRef src, LLVMValueRef index);
+LLVMValueRef
+ac_build_frexp_mant(struct ac_llvm_context *ctx, LLVMValueRef src0,
+ unsigned bitsize);
+
#ifdef __cplusplus
}
#endif
break;
case nir_op_frexp_sig:
src[0] = ac_to_float(&ctx->ac, src[0]);
- result = ac_build_intrinsic(&ctx->ac, "llvm.amdgcn.frexp.mant.f64",
- ctx->ac.f64, src, 1, AC_FUNC_ATTR_READNONE);
+ result = ac_build_frexp_mant(&ctx->ac, src[0],
+ instr->dest.dest.ssa.bit_size);
break;
case nir_op_fpow:
result = emit_intrin_2f_param(&ctx->ac, "llvm.pow",