label_bitwise = 1 << 18,
label_minmax = 1 << 19,
label_fcmp = 1 << 20,
+ label_uniform_bool = 1 << 21,
};
static constexpr uint32_t instr_labels = label_vec | label_mul | label_mad | label_omod_success | label_clamp_success | label_add_sub | label_bitwise | label_minmax | label_fcmp;
-static constexpr uint32_t temp_labels = label_abs | label_neg | label_temp | label_vcc | label_b2f;
+static constexpr uint32_t temp_labels = label_abs | label_neg | label_temp | label_vcc | label_b2f | label_uniform_bool;
static constexpr uint32_t val_labels = label_constant | label_literal | label_mad;
struct ssa_info {
return label & label_fcmp;
}
+ void set_uniform_bool(Temp uniform_bool)
+ {
+ add_label(label_uniform_bool);
+ temp = uniform_bool;
+ }
+
+ bool is_uniform_bool()
+ {
+ return label & label_uniform_bool;
+ }
+
};
struct opt_ctx {
case aco_opcode::s_add_u32:
ctx.info[instr->definitions[0].tempId()].set_add_sub(instr.get());
break;
+ case aco_opcode::s_and_b64:
+ if (instr->operands[1].isFixed() && instr->operands[1].physReg() == exec &&
+ instr->operands[0].isTemp() && ctx.info[instr->operands[0].tempId()].is_uniform_bool()) {
+ ctx.info[instr->definitions[1].tempId()].set_temp(ctx.info[instr->operands[0].tempId()].temp);
+ }
+ /* fallthrough */
+ case aco_opcode::s_and_b32:
case aco_opcode::s_not_b32:
case aco_opcode::s_not_b64:
- case aco_opcode::s_and_b32:
- case aco_opcode::s_and_b64:
case aco_opcode::s_or_b32:
case aco_opcode::s_or_b64:
case aco_opcode::s_xor_b32:
case aco_opcode::v_cmp_nlt_f32:
ctx.info[instr->definitions[0].tempId()].set_fcmp(instr.get());
break;
+ case aco_opcode::s_cselect_b64:
+ if (instr->operands[0].constantEquals((unsigned) -1) &&
+ instr->operands[1].constantEquals(0)) {
+ /* Found a cselect that operates on a uniform bool that comes from eg. s_cmp */
+ ctx.info[instr->definitions[0].tempId()].set_uniform_bool(instr->operands[2].getTemp());
+ }
+ break;
default:
break;
}