#include "ir.h"
#include "ir_visitor.h"
#include "ir_rvalue_visitor.h"
#include "glsl_types.h"
static bool debug = false;
namespace {
namespace opt_array_splitting {
class variable_entry : public exec_node
{
public:
variable_entry(ir_variable *var)
{
this->var = var;
this->split = true;
this->declaration = false;
this->components = NULL;
this->mem_ctx = NULL;
if (var->type->is_array())
this->size = var->type->length;
else
this->size = var->type->matrix_columns;
}
ir_variable *var;
unsigned size;
bool split;
bool declaration;
ir_variable **components;
void *mem_ctx;
};
}
using namespace opt_array_splitting;
class ir_array_reference_visitor : public ir_hierarchical_visitor {
public:
ir_array_reference_visitor(bool split_shader_outputs)
{
this->split_shader_outputs = split_shader_outputs;
this->mem_ctx = ralloc_context(NULL);
this->variable_list.make_empty();
}
~ir_array_reference_visitor(void)
{
ralloc_free(mem_ctx);
}
bool get_split_list(exec_list *instructions, bool linked);
virtual ir_visitor_status visit(ir_variable *);
virtual ir_visitor_status visit(ir_dereference_variable *);
virtual ir_visitor_status visit_enter(ir_dereference_array *);
virtual ir_visitor_status visit_enter(ir_function_signature *);
variable_entry *get_variable_entry(ir_variable *var);
exec_list variable_list;
void *mem_ctx;
bool split_shader_outputs;
};
}
variable_entry *
ir_array_reference_visitor::get_variable_entry(ir_variable *var)
{
assert(var);
if (var->data.mode != ir_var_auto &&
var->data.mode != ir_var_temporary &&
(!this->split_shader_outputs || (var->data.mode != ir_var_shader_out && var->data.mode != ir_var_shader_inout))
)
return NULL;
if (!(var->type->is_array() || var->type->is_matrix()))
return NULL;
if (var->type->is_unsized_array())
return NULL;
foreach_in_list(variable_entry, entry, &this->variable_list) {
if (entry->var == var)
return entry;
}
variable_entry *entry = new(mem_ctx) variable_entry(var);
this->variable_list.push_tail(entry);
return entry;
}
ir_visitor_status
ir_array_reference_visitor::visit(ir_variable *ir)
{
variable_entry *entry = this->get_variable_entry(ir);
if (entry)
entry->declaration = true;
return visit_continue;
}
ir_visitor_status
ir_array_reference_visitor::visit(ir_dereference_variable *ir)
{
variable_entry *entry = this->get_variable_entry(ir->var);
if (entry)
entry->split = false;
return visit_continue;
}
ir_visitor_status
ir_array_reference_visitor::visit_enter(ir_dereference_array *ir)
{
ir_dereference_variable *deref = ir->array->as_dereference_variable();
if (!deref)
return visit_continue;
variable_entry *entry = this->get_variable_entry(deref->var);
if (entry && !ir->array_index->as_constant())
entry->split = false;
return visit_continue_with_parent;
}
ir_visitor_status
ir_array_reference_visitor::visit_enter(ir_function_signature *ir)
{
visit_list_elements(this, &ir->body);
return visit_continue_with_parent;
}
bool
ir_array_reference_visitor::get_split_list(exec_list *instructions,
bool linked)
{
visit_list_elements(this, instructions);
if (!linked) {
foreach_in_list(ir_instruction, node, instructions) {
ir_variable *var = node->as_variable();
if (var) {
variable_entry *entry = get_variable_entry(var);
if (entry)
entry->remove();
}
}
}
foreach_in_list_safe(variable_entry, entry, &variable_list) {
if (debug) {
printf("array %s@%p: decl %d, split %d\n",
entry->var->name, (void *) entry->var, entry->declaration,
entry->split);
}
if (!(entry->declaration && entry->split)) {
entry->remove();
}
}
return !variable_list.is_empty();
}
class ir_array_splitting_visitor : public ir_rvalue_visitor {
public:
ir_array_splitting_visitor(exec_list *vars)
{
this->variable_list = vars;
}
virtual ~ir_array_splitting_visitor()
{
}
virtual ir_visitor_status visit_leave(ir_assignment *);
void split_deref(ir_dereference **deref);
void handle_rvalue(ir_rvalue **rvalue);
variable_entry *get_splitting_entry(ir_variable *var);
exec_list *variable_list;
};
variable_entry *
ir_array_splitting_visitor::get_splitting_entry(ir_variable *var)
{
assert(var);
foreach_in_list(variable_entry, entry, this->variable_list) {
if (entry->var == var) {
return entry;
}
}
return NULL;
}
void
ir_array_splitting_visitor::split_deref(ir_dereference **deref)
{
ir_dereference_array *deref_array = (*deref)->as_dereference_array();
if (!deref_array)
return;
ir_dereference_variable *deref_var = deref_array->array->as_dereference_variable();
if (!deref_var)
return;
ir_variable *var = deref_var->var;
variable_entry *entry = get_splitting_entry(var);
if (!entry)
return;
ir_constant *constant = deref_array->array_index->as_constant();
assert(constant);
if (constant->value.i[0] < (int)entry->size) {
*deref = new(entry->mem_ctx)
ir_dereference_variable(entry->components[constant->value.i[0]]);
} else {
ir_variable *temp = new(entry->mem_ctx) ir_variable(deref_array->type,
"undef",
ir_var_temporary, deref_array->get_precision());
entry->components[0]->insert_before(temp);
*deref = new(entry->mem_ctx) ir_dereference_variable(temp);
}
}
void
ir_array_splitting_visitor::handle_rvalue(ir_rvalue **rvalue)
{
if (!*rvalue)
return;
ir_dereference *deref = (*rvalue)->as_dereference();
if (!deref)
return;
split_deref(&deref);
*rvalue = deref;
}
ir_visitor_status
ir_array_splitting_visitor::visit_leave(ir_assignment *ir)
{
ir_rvalue *lhs = ir->lhs;
handle_rvalue(&lhs);
ir->lhs = lhs->as_dereference();
ir->lhs->accept(this);
handle_rvalue(&ir->rhs);
ir->rhs->accept(this);
if (ir->condition) {
handle_rvalue(&ir->condition);
ir->condition->accept(this);
}
return visit_continue;
}
bool
optimize_split_arrays(exec_list *instructions, bool linked, bool split_shader_outputs)
{
ir_array_reference_visitor refs(split_shader_outputs);
if (!refs.get_split_list(instructions, linked))
return false;
void *mem_ctx = ralloc_context(NULL);
foreach_in_list(variable_entry, entry, &refs.variable_list) {
const struct glsl_type *type = entry->var->type;
const struct glsl_type *subtype;
glsl_precision subprec = (glsl_precision)entry->var->data.precision;
if (type->is_matrix()) {
subtype = type->column_type();
} else {
subtype = type->fields.array;
}
entry->mem_ctx = ralloc_parent(entry->var);
entry->components = ralloc_array(mem_ctx,
ir_variable *,
entry->size);
for (unsigned int i = 0; i < entry->size; i++) {
const char *name = ralloc_asprintf(mem_ctx, "%s_%d",
entry->var->name, i);
entry->components[i] =
new(entry->mem_ctx) ir_variable(subtype, name, (ir_variable_mode)entry->var->data.mode, subprec);
entry->var->insert_before(entry->components[i]);
if (entry->var->data.explicit_location)
{
entry->components[i]->data.explicit_location = true;
entry->components[i]->data.location = entry->var->data.location + i;
}
}
entry->var->remove();
}
ir_array_splitting_visitor split(&refs.variable_list);
visit_list_elements(&split, instructions);
if (debug)
_mesa_print_ir(stdout, instructions, NULL);
ralloc_free(mem_ctx);
return true;
}