return true;
}
+static uint32_t
+brw_conditional_for_comparison(unsigned int op)
+{
+ switch (op) {
+ case ir_binop_less:
+ return BRW_CONDITIONAL_L;
+ case ir_binop_greater:
+ return BRW_CONDITIONAL_G;
+ case ir_binop_lequal:
+ return BRW_CONDITIONAL_LE;
+ case ir_binop_gequal:
+ return BRW_CONDITIONAL_GE;
+ case ir_binop_equal:
+ case ir_binop_all_equal: /* same as equal for scalars */
+ return BRW_CONDITIONAL_Z;
+ case ir_binop_nequal:
+ case ir_binop_any_nequal: /* same as nequal for scalars */
+ return BRW_CONDITIONAL_NZ;
+ default:
+ assert(!"not reached: bad operation for comparison");
+ return BRW_CONDITIONAL_NZ;
+ }
+}
+
void
fs_visitor::visit(ir_expression *ir)
{
break;
case ir_binop_less:
- inst = emit(fs_inst(BRW_OPCODE_CMP, this->result, op[0], op[1]));
- inst->conditional_mod = BRW_CONDITIONAL_L;
- emit(fs_inst(BRW_OPCODE_AND, this->result, this->result, fs_reg(0x1)));
- break;
case ir_binop_greater:
- inst = emit(fs_inst(BRW_OPCODE_CMP, this->result, op[0], op[1]));
- inst->conditional_mod = BRW_CONDITIONAL_G;
- emit(fs_inst(BRW_OPCODE_AND, this->result, this->result, fs_reg(0x1)));
- break;
case ir_binop_lequal:
- inst = emit(fs_inst(BRW_OPCODE_CMP, this->result, op[0], op[1]));
- inst->conditional_mod = BRW_CONDITIONAL_LE;
- emit(fs_inst(BRW_OPCODE_AND, this->result, this->result, fs_reg(0x1)));
- break;
case ir_binop_gequal:
- inst = emit(fs_inst(BRW_OPCODE_CMP, this->result, op[0], op[1]));
- inst->conditional_mod = BRW_CONDITIONAL_GE;
- emit(fs_inst(BRW_OPCODE_AND, this->result, this->result, fs_reg(0x1)));
- break;
case ir_binop_equal:
- case ir_binop_all_equal: /* same as nequal for scalars */
- inst = emit(fs_inst(BRW_OPCODE_CMP, this->result, op[0], op[1]));
- inst->conditional_mod = BRW_CONDITIONAL_Z;
- emit(fs_inst(BRW_OPCODE_AND, this->result, this->result, fs_reg(0x1)));
- break;
+ case ir_binop_all_equal:
case ir_binop_nequal:
- case ir_binop_any_nequal: /* same as nequal for scalars */
+ case ir_binop_any_nequal:
inst = emit(fs_inst(BRW_OPCODE_CMP, this->result, op[0], op[1]));
- inst->conditional_mod = BRW_CONDITIONAL_NZ;
+ inst->conditional_mod = brw_conditional_for_comparison(ir->operation);
emit(fs_inst(BRW_OPCODE_AND, this->result, this->result, fs_reg(0x1)));
break;
break;
case ir_binop_greater:
- inst = emit(fs_inst(BRW_OPCODE_CMP, reg_null_d, op[0], op[1]));
- inst->conditional_mod = BRW_CONDITIONAL_G;
- break;
case ir_binop_gequal:
- inst = emit(fs_inst(BRW_OPCODE_CMP, reg_null_d, op[0], op[1]));
- inst->conditional_mod = BRW_CONDITIONAL_GE;
- break;
case ir_binop_less:
- inst = emit(fs_inst(BRW_OPCODE_CMP, reg_null_d, op[0], op[1]));
- inst->conditional_mod = BRW_CONDITIONAL_L;
- break;
case ir_binop_lequal:
- inst = emit(fs_inst(BRW_OPCODE_CMP, reg_null_d, op[0], op[1]));
- inst->conditional_mod = BRW_CONDITIONAL_LE;
- break;
case ir_binop_equal:
case ir_binop_all_equal:
- inst = emit(fs_inst(BRW_OPCODE_CMP, reg_null_d, op[0], op[1]));
- inst->conditional_mod = BRW_CONDITIONAL_Z;
- break;
case ir_binop_nequal:
case ir_binop_any_nequal:
inst = emit(fs_inst(BRW_OPCODE_CMP, reg_null_d, op[0], op[1]));
- inst->conditional_mod = BRW_CONDITIONAL_NZ;
+ inst->conditional_mod =
+ brw_conditional_for_comparison(expr->operation);
break;
+
default:
assert(!"not reached");
this->fail = true;
return;
case ir_binop_greater:
- inst = emit(fs_inst(BRW_OPCODE_IF, reg_null_d, op[0], op[1]));
- inst->conditional_mod = BRW_CONDITIONAL_G;
- return;
case ir_binop_gequal:
- inst = emit(fs_inst(BRW_OPCODE_IF, reg_null_d, op[0], op[1]));
- inst->conditional_mod = BRW_CONDITIONAL_GE;
- return;
case ir_binop_less:
- inst = emit(fs_inst(BRW_OPCODE_IF, reg_null_d, op[0], op[1]));
- inst->conditional_mod = BRW_CONDITIONAL_L;
- return;
case ir_binop_lequal:
- inst = emit(fs_inst(BRW_OPCODE_IF, reg_null_d, op[0], op[1]));
- inst->conditional_mod = BRW_CONDITIONAL_LE;
- return;
case ir_binop_equal:
case ir_binop_all_equal:
- inst = emit(fs_inst(BRW_OPCODE_IF, reg_null_d, op[0], op[1]));
- inst->conditional_mod = BRW_CONDITIONAL_Z;
- return;
case ir_binop_nequal:
case ir_binop_any_nequal:
inst = emit(fs_inst(BRW_OPCODE_IF, reg_null_d, op[0], op[1]));
- inst->conditional_mod = BRW_CONDITIONAL_NZ;
+ inst->conditional_mod =
+ brw_conditional_for_comparison(expr->operation);
return;
default:
assert(!"not reached");
this->base_ir = ir->to;
ir->to->accept(this);
- fs_inst *inst = emit(fs_inst(BRW_OPCODE_CMP, reg_null_d,
+ fs_inst *inst = emit(fs_inst(BRW_OPCODE_CMP, reg_null_cmp,
counter, this->result));
- switch (ir->cmp) {
- case ir_binop_equal:
- inst->conditional_mod = BRW_CONDITIONAL_Z;
- break;
- case ir_binop_nequal:
- inst->conditional_mod = BRW_CONDITIONAL_NZ;
- break;
- case ir_binop_gequal:
- inst->conditional_mod = BRW_CONDITIONAL_GE;
- break;
- case ir_binop_lequal:
- inst->conditional_mod = BRW_CONDITIONAL_LE;
- break;
- case ir_binop_greater:
- inst->conditional_mod = BRW_CONDITIONAL_G;
- break;
- case ir_binop_less:
- inst->conditional_mod = BRW_CONDITIONAL_L;
- break;
- default:
- assert(!"not reached: unknown loop condition");
- this->fail = true;
- break;
- }
+ inst->conditional_mod = brw_conditional_for_comparison(ir->cmp);
inst = emit(fs_inst(BRW_OPCODE_BREAK));
inst->predicated = true;