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25 * \file opt_structure_splitting.cpp
27 * If a structure is only ever referenced by its components, then
28 * split those components out to individual variables so they can be
29 * handled normally by other optimization passes.
31 * This skips structures like uniforms, which need to be accessible as
32 * structures for their access by the GL.
36 #include "ir_visitor.h"
37 #include "ir_print_visitor.h"
38 #include "ir_rvalue_visitor.h"
39 #include "glsl_types.h"
41 static bool debug
= false;
43 // XXX using variable_entry2 here to avoid collision (MSVC multiply-defined
44 // function) with the variable_entry class seen in ir_variable_refcount.h
45 // Perhaps we can use the one in ir_variable_refcount.h and make this class
47 class variable_entry2
: public exec_node
50 variable_entry2(ir_variable
*var
)
53 this->whole_structure_access
= 0;
54 this->declaration
= false;
55 this->components
= NULL
;
59 ir_variable
*var
; /* The key: the variable's pointer. */
61 /** Number of times the variable is referenced, including assignments. */
62 unsigned whole_structure_access
;
64 bool declaration
; /* If the variable had a decl in the instruction stream */
66 ir_variable
**components
;
68 /** ralloc_parent(this->var) -- the shader's ralloc context. */
73 class ir_structure_reference_visitor
: public ir_hierarchical_visitor
{
75 ir_structure_reference_visitor(void)
77 this->mem_ctx
= ralloc_context(NULL
);
78 this->variable_list
.make_empty();
81 ~ir_structure_reference_visitor(void)
86 virtual ir_visitor_status
visit(ir_variable
*);
87 virtual ir_visitor_status
visit(ir_dereference_variable
*);
88 virtual ir_visitor_status
visit_enter(ir_dereference_record
*);
89 virtual ir_visitor_status
visit_enter(ir_assignment
*);
90 virtual ir_visitor_status
visit_enter(ir_function_signature
*);
92 variable_entry2
*get_variable_entry2(ir_variable
*var
);
94 /* List of variable_entry */
95 exec_list variable_list
;
101 ir_structure_reference_visitor::get_variable_entry2(ir_variable
*var
)
105 if (!var
->type
->is_record() || var
->mode
== ir_var_uniform
)
108 foreach_iter(exec_list_iterator
, iter
, this->variable_list
) {
109 variable_entry2
*entry
= (variable_entry2
*)iter
.get();
110 if (entry
->var
== var
)
114 variable_entry2
*entry
= new(mem_ctx
) variable_entry2(var
);
115 this->variable_list
.push_tail(entry
);
121 ir_structure_reference_visitor::visit(ir_variable
*ir
)
123 variable_entry2
*entry
= this->get_variable_entry2(ir
);
126 entry
->declaration
= true;
128 return visit_continue
;
132 ir_structure_reference_visitor::visit(ir_dereference_variable
*ir
)
134 ir_variable
*const var
= ir
->variable_referenced();
135 variable_entry2
*entry
= this->get_variable_entry2(var
);
138 entry
->whole_structure_access
++;
140 return visit_continue
;
144 ir_structure_reference_visitor::visit_enter(ir_dereference_record
*ir
)
147 /* Don't descend into the ir_dereference_variable below. */
148 return visit_continue_with_parent
;
152 ir_structure_reference_visitor::visit_enter(ir_assignment
*ir
)
154 /* If there are no structure references yet, no need to bother with
155 * processing the expression tree.
157 if (this->variable_list
.is_empty())
158 return visit_continue_with_parent
;
160 if (ir
->lhs
->as_dereference_variable() &&
161 ir
->rhs
->as_dereference_variable() &&
163 /* We'll split copies of a structure to copies of components, so don't
164 * descend to the ir_dereference_variables.
166 return visit_continue_with_parent
;
168 return visit_continue
;
172 ir_structure_reference_visitor::visit_enter(ir_function_signature
*ir
)
174 /* We don't want to descend into the function parameters and
175 * dead-code eliminate them, so just accept the body here.
177 visit_list_elements(this, &ir
->body
);
178 return visit_continue_with_parent
;
181 class ir_structure_splitting_visitor
: public ir_rvalue_visitor
{
183 ir_structure_splitting_visitor(exec_list
*vars
)
185 this->variable_list
= vars
;
188 virtual ~ir_structure_splitting_visitor()
192 virtual ir_visitor_status
visit_leave(ir_assignment
*);
194 void split_deref(ir_dereference
**deref
);
195 void handle_rvalue(ir_rvalue
**rvalue
);
196 variable_entry2
*get_splitting_entry(ir_variable
*var
);
198 exec_list
*variable_list
;
203 ir_structure_splitting_visitor::get_splitting_entry(ir_variable
*var
)
207 if (!var
->type
->is_record())
210 foreach_iter(exec_list_iterator
, iter
, *this->variable_list
) {
211 variable_entry2
*entry
= (variable_entry2
*)iter
.get();
212 if (entry
->var
== var
) {
221 ir_structure_splitting_visitor::split_deref(ir_dereference
**deref
)
223 if ((*deref
)->ir_type
!= ir_type_dereference_record
)
226 ir_dereference_record
*deref_record
= (ir_dereference_record
*)*deref
;
227 ir_dereference_variable
*deref_var
= deref_record
->record
->as_dereference_variable();
231 variable_entry2
*entry
= get_splitting_entry(deref_var
->var
);
236 for (i
= 0; i
< entry
->var
->type
->length
; i
++) {
237 if (strcmp(deref_record
->field
,
238 entry
->var
->type
->fields
.structure
[i
].name
) == 0)
241 assert(i
!= entry
->var
->type
->length
);
243 *deref
= new(entry
->mem_ctx
) ir_dereference_variable(entry
->components
[i
]);
247 ir_structure_splitting_visitor::handle_rvalue(ir_rvalue
**rvalue
)
252 ir_dereference
*deref
= (*rvalue
)->as_dereference();
262 ir_structure_splitting_visitor::visit_leave(ir_assignment
*ir
)
264 ir_dereference_variable
*lhs_deref
= ir
->lhs
->as_dereference_variable();
265 ir_dereference_variable
*rhs_deref
= ir
->rhs
->as_dereference_variable();
266 variable_entry2
*lhs_entry
= lhs_deref
? get_splitting_entry(lhs_deref
->var
) : NULL
;
267 variable_entry2
*rhs_entry
= rhs_deref
? get_splitting_entry(rhs_deref
->var
) : NULL
;
268 const glsl_type
*type
= ir
->rhs
->type
;
270 if ((lhs_entry
|| rhs_entry
) && !ir
->condition
) {
271 for (unsigned int i
= 0; i
< type
->length
; i
++) {
272 ir_dereference
*new_lhs
, *new_rhs
;
273 void *mem_ctx
= lhs_entry
? lhs_entry
->mem_ctx
: rhs_entry
->mem_ctx
;
276 new_lhs
= new(mem_ctx
) ir_dereference_variable(lhs_entry
->components
[i
]);
278 new_lhs
= new(mem_ctx
)
279 ir_dereference_record(ir
->lhs
->clone(mem_ctx
, NULL
),
280 type
->fields
.structure
[i
].name
);
284 new_rhs
= new(mem_ctx
) ir_dereference_variable(rhs_entry
->components
[i
]);
286 new_rhs
= new(mem_ctx
)
287 ir_dereference_record(ir
->rhs
->clone(mem_ctx
, NULL
),
288 type
->fields
.structure
[i
].name
);
291 ir
->insert_before(new(mem_ctx
) ir_assignment(new_lhs
,
297 handle_rvalue(&ir
->rhs
);
298 split_deref(&ir
->lhs
);
301 handle_rvalue(&ir
->condition
);
303 return visit_continue
;
307 do_structure_splitting(exec_list
*instructions
)
309 ir_structure_reference_visitor refs
;
311 visit_list_elements(&refs
, instructions
);
313 /* Trim out variables we can't split. */
314 foreach_iter(exec_list_iterator
, iter
, refs
.variable_list
) {
315 variable_entry2
*entry
= (variable_entry2
*)iter
.get();
318 printf("structure %s@%p: decl %d, whole_access %d\n",
319 entry
->var
->name
, (void *) entry
->var
, entry
->declaration
,
320 entry
->whole_structure_access
);
323 if (!entry
->declaration
|| entry
->whole_structure_access
) {
328 if (refs
.variable_list
.is_empty())
331 void *mem_ctx
= ralloc_context(NULL
);
333 /* Replace the decls of the structures to be split with their split
336 foreach_iter(exec_list_iterator
, iter
, refs
.variable_list
) {
337 variable_entry2
*entry
= (variable_entry2
*)iter
.get();
338 const struct glsl_type
*type
= entry
->var
->type
;
340 entry
->mem_ctx
= ralloc_parent(entry
->var
);
342 entry
->components
= ralloc_array(mem_ctx
,
346 for (unsigned int i
= 0; i
< entry
->var
->type
->length
; i
++) {
347 const char *name
= ralloc_asprintf(mem_ctx
, "%s_%s",
349 type
->fields
.structure
[i
].name
);
351 entry
->components
[i
] =
352 new(entry
->mem_ctx
) ir_variable(type
->fields
.structure
[i
].type
,
355 entry
->var
->insert_before(entry
->components
[i
]);
358 entry
->var
->remove();
361 ir_structure_splitting_visitor
split(&refs
.variable_list
);
362 visit_list_elements(&split
, instructions
);
364 ralloc_free(mem_ctx
);