return result;
}
+LLVMValueRef ac_build_bitfield_reverse(struct ac_llvm_context *ctx,
+ LLVMValueRef src0)
+{
+ LLVMValueRef result;
+ unsigned bitsize;
+
+ bitsize = ac_get_elem_bits(ctx, LLVMTypeOf(src0));
+
+ switch (bitsize) {
+ case 32:
+ result = ac_build_intrinsic(ctx, "llvm.bitreverse.i32", ctx->i32,
+ (LLVMValueRef []) { src0 }, 1,
+ AC_FUNC_ATTR_READNONE);
+ break;
+ default:
+ unreachable(!"invalid bitsize");
+ break;
+ }
+
+ return result;
+}
+
#define AC_EXP_TARGET 0
#define AC_EXP_ENABLED_CHANNELS 1
#define AC_EXP_OUT0 2
LLVMValueRef ac_build_bit_count(struct ac_llvm_context *ctx, LLVMValueRef src0);
+LLVMValueRef ac_build_bitfield_reverse(struct ac_llvm_context *ctx,
+ LLVMValueRef src0);
+
void ac_optimize_vs_outputs(struct ac_llvm_context *ac,
LLVMValueRef main_fn,
uint8_t *vs_output_param_offset,
result = emit_bitfield_insert(&ctx->ac, src[0], src[1], src[2], src[3]);
break;
case nir_op_bitfield_reverse:
- result = ac_build_intrinsic(&ctx->ac, "llvm.bitreverse.i32", ctx->ac.i32, src, 1, AC_FUNC_ATTR_READNONE);
+ result = ac_build_bitfield_reverse(&ctx->ac, src[0]);
break;
case nir_op_bit_count:
result = ac_build_bit_count(&ctx->ac, src[0]);