* in particular. No support for other instruction types (assignments,
* jumps, calls, etc.) is planned.
*/
- virtual bool equals(ir_instruction *ir);
+ virtual bool equals(ir_instruction *ir, enum ir_node_type ignore = ir_type_unset);
protected:
ir_instruction()
return this;
}
- virtual bool equals(ir_instruction *ir);
+ virtual bool equals(ir_instruction *ir, enum ir_node_type ignore = ir_type_unset);
virtual ir_expression *clone(void *mem_ctx, struct hash_table *ht) const;
virtual ir_visitor_status accept(ir_hierarchical_visitor *);
- virtual bool equals(ir_instruction *ir);
+ virtual bool equals(ir_instruction *ir, enum ir_node_type ignore = ir_type_unset);
/**
* Return a string representing the ir_texture_opcode.
virtual ir_visitor_status accept(ir_hierarchical_visitor *);
- virtual bool equals(ir_instruction *ir);
+ virtual bool equals(ir_instruction *ir, enum ir_node_type ignore = ir_type_unset);
bool is_lvalue() const
{
return this;
}
- virtual bool equals(ir_instruction *ir);
+ virtual bool equals(ir_instruction *ir, enum ir_node_type ignore = ir_type_unset);
/**
* Get the variable that is ultimately referenced by an r-value
return this;
}
- virtual bool equals(ir_instruction *ir);
+ virtual bool equals(ir_instruction *ir, enum ir_node_type ignore = ir_type_unset);
/**
* Get the variable that is ultimately referenced by an r-value
virtual ir_visitor_status accept(ir_hierarchical_visitor *);
- virtual bool equals(ir_instruction *ir);
+ virtual bool equals(ir_instruction *ir, enum ir_node_type ignore = ir_type_unset);
/**
* Get a particular component of a constant as a specific type
* can't access a's vtable in that case.
*/
static bool
-possibly_null_equals(ir_instruction *a, ir_instruction *b)
+possibly_null_equals(ir_instruction *a, ir_instruction *b, enum ir_node_type ignore)
{
if (!a || !b)
return !a && !b;
- return a->equals(b);
+ return a->equals(b, ignore);
}
/**
* about.
*/
bool
-ir_instruction::equals(ir_instruction *ir)
+ir_instruction::equals(ir_instruction *ir, enum ir_node_type)
{
return false;
}
bool
-ir_constant::equals(ir_instruction *ir)
+ir_constant::equals(ir_instruction *ir, enum ir_node_type ignore)
{
const ir_constant *other = ir->as_constant();
if (!other)
}
bool
-ir_dereference_variable::equals(ir_instruction *ir)
+ir_dereference_variable::equals(ir_instruction *ir, enum ir_node_type ignore)
{
const ir_dereference_variable *other = ir->as_dereference_variable();
if (!other)
}
bool
-ir_dereference_array::equals(ir_instruction *ir)
+ir_dereference_array::equals(ir_instruction *ir, enum ir_node_type ignore)
{
const ir_dereference_array *other = ir->as_dereference_array();
if (!other)
if (type != other->type)
return false;
- if (!array->equals(other->array))
+ if (!array->equals(other->array, ignore))
return false;
- if (!array_index->equals(other->array_index))
+ if (!array_index->equals(other->array_index, ignore))
return false;
return true;
}
bool
-ir_swizzle::equals(ir_instruction *ir)
+ir_swizzle::equals(ir_instruction *ir, enum ir_node_type ignore)
{
const ir_swizzle *other = ir->as_swizzle();
if (!other)
if (type != other->type)
return false;
- if (mask.x != other->mask.x ||
- mask.y != other->mask.y ||
- mask.z != other->mask.z ||
- mask.w != other->mask.w) {
- return false;
+ if (ignore != ir_type_swizzle) {
+ if (mask.x != other->mask.x ||
+ mask.y != other->mask.y ||
+ mask.z != other->mask.z ||
+ mask.w != other->mask.w) {
+ return false;
+ }
}
- return val->equals(other->val);
+ return val->equals(other->val, ignore);
}
bool
-ir_texture::equals(ir_instruction *ir)
+ir_texture::equals(ir_instruction *ir, enum ir_node_type ignore)
{
const ir_texture *other = ir->as_texture();
if (!other)
if (op != other->op)
return false;
- if (!possibly_null_equals(coordinate, other->coordinate))
+ if (!possibly_null_equals(coordinate, other->coordinate, ignore))
return false;
- if (!possibly_null_equals(projector, other->projector))
+ if (!possibly_null_equals(projector, other->projector, ignore))
return false;
- if (!possibly_null_equals(shadow_comparitor, other->shadow_comparitor))
+ if (!possibly_null_equals(shadow_comparitor, other->shadow_comparitor, ignore))
return false;
- if (!possibly_null_equals(offset, other->offset))
+ if (!possibly_null_equals(offset, other->offset, ignore))
return false;
- if (!sampler->equals(other->sampler))
+ if (!sampler->equals(other->sampler, ignore))
return false;
switch (op) {
case ir_query_levels:
break;
case ir_txb:
- if (!lod_info.bias->equals(other->lod_info.bias))
+ if (!lod_info.bias->equals(other->lod_info.bias, ignore))
return false;
break;
case ir_txl:
case ir_txf:
case ir_txs:
- if (!lod_info.lod->equals(other->lod_info.lod))
+ if (!lod_info.lod->equals(other->lod_info.lod, ignore))
return false;
break;
case ir_txd:
- if (!lod_info.grad.dPdx->equals(other->lod_info.grad.dPdx) ||
- !lod_info.grad.dPdy->equals(other->lod_info.grad.dPdy))
+ if (!lod_info.grad.dPdx->equals(other->lod_info.grad.dPdx, ignore) ||
+ !lod_info.grad.dPdy->equals(other->lod_info.grad.dPdy, ignore))
return false;
break;
case ir_txf_ms:
- if (!lod_info.sample_index->equals(other->lod_info.sample_index))
+ if (!lod_info.sample_index->equals(other->lod_info.sample_index, ignore))
return false;
break;
case ir_tg4:
- if (!lod_info.component->equals(other->lod_info.component))
+ if (!lod_info.component->equals(other->lod_info.component, ignore))
return false;
break;
default:
}
bool
-ir_expression::equals(ir_instruction *ir)
+ir_expression::equals(ir_instruction *ir, enum ir_node_type ignore)
{
const ir_expression *other = ir->as_expression();
if (!other)
return false;
for (unsigned i = 0; i < get_num_operands(); i++) {
- if (!operands[i]->equals(other->operands[i]))
+ if (!operands[i]->equals(other->operands[i], ignore))
return false;
}