• Home
  • Line#
  • Scopes#
  • Navigate#
  • Raw
  • Download
1 /*
2  * Copyright © 2010 Intel Corporation
3  *
4  * Permission is hereby granted, free of charge, to any person obtaining a
5  * copy of this software and associated documentation files (the "Software"),
6  * to deal in the Software without restriction, including without limitation
7  * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8  * and/or sell copies of the Software, and to permit persons to whom the
9  * Software is furnished to do so, subject to the following conditions:
10  *
11  * The above copyright notice and this permission notice (including the next
12  * paragraph) shall be included in all copies or substantial portions of the
13  * Software.
14  *
15  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
16  * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
17  * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
18  * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
19  * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
20  * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
21  * DEALINGS IN THE SOFTWARE.
22  */
23 
24 /**
25  * \file opt_structure_splitting.cpp
26  *
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.
30  *
31  * This skips structures like uniforms, which need to be accessible as
32  * structures for their access by the GL.
33  */
34 
35 #include "ir.h"
36 #include "ir_visitor.h"
37 #include "ir_print_visitor.h"
38 #include "ir_rvalue_visitor.h"
39 #include "glsl_types.h"
40 
41 static bool debug = false;
42 
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
46 // here go away?
47 class variable_entry2 : public exec_node
48 {
49 public:
variable_entry2(ir_variable * var)50    variable_entry2(ir_variable *var)
51    {
52       this->var = var;
53       this->whole_structure_access = 0;
54       this->declaration = false;
55       this->components = NULL;
56       this->mem_ctx = NULL;
57    }
58 
59    ir_variable *var; /* The key: the variable's pointer. */
60 
61    /** Number of times the variable is referenced, including assignments. */
62    unsigned whole_structure_access;
63 
64    bool declaration; /* If the variable had a decl in the instruction stream */
65 
66    ir_variable **components;
67 
68    /** hieralloc_parent(this->var) -- the shader's hieralloc context. */
69    void *mem_ctx;
70 };
71 
72 
73 class ir_structure_reference_visitor : public ir_hierarchical_visitor {
74 public:
ir_structure_reference_visitor(void)75    ir_structure_reference_visitor(void)
76    {
77       this->mem_ctx = hieralloc_new(NULL);
78       this->variable_list.make_empty();
79    }
80 
~ir_structure_reference_visitor(void)81    ~ir_structure_reference_visitor(void)
82    {
83       hieralloc_free(mem_ctx);
84    }
85 
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 *);
91 
92    variable_entry2 *get_variable_entry2(ir_variable *var);
93 
94    /* List of variable_entry */
95    exec_list variable_list;
96 
97    void *mem_ctx;
98 };
99 
100 variable_entry2 *
get_variable_entry2(ir_variable * var)101 ir_structure_reference_visitor::get_variable_entry2(ir_variable *var)
102 {
103    assert(var);
104 
105    if (!var->type->is_record() || var->mode == ir_var_uniform)
106       return NULL;
107 
108    foreach_iter(exec_list_iterator, iter, this->variable_list) {
109       variable_entry2 *entry = (variable_entry2 *)iter.get();
110       if (entry->var == var)
111 	 return entry;
112    }
113 
114    variable_entry2 *entry = new(mem_ctx) variable_entry2(var);
115    this->variable_list.push_tail(entry);
116    return entry;
117 }
118 
119 
120 ir_visitor_status
visit(ir_variable * ir)121 ir_structure_reference_visitor::visit(ir_variable *ir)
122 {
123    variable_entry2 *entry = this->get_variable_entry2(ir);
124 
125    if (entry)
126       entry->declaration = true;
127 
128    return visit_continue;
129 }
130 
131 ir_visitor_status
visit(ir_dereference_variable * ir)132 ir_structure_reference_visitor::visit(ir_dereference_variable *ir)
133 {
134    ir_variable *const var = ir->variable_referenced();
135    variable_entry2 *entry = this->get_variable_entry2(var);
136 
137    if (entry)
138       entry->whole_structure_access++;
139 
140    return visit_continue;
141 }
142 
143 ir_visitor_status
visit_enter(ir_dereference_record * ir)144 ir_structure_reference_visitor::visit_enter(ir_dereference_record *ir)
145 {
146    (void) ir;
147    /* Don't descend into the ir_dereference_variable below. */
148    return visit_continue_with_parent;
149 }
150 
151 ir_visitor_status
visit_enter(ir_assignment * ir)152 ir_structure_reference_visitor::visit_enter(ir_assignment *ir)
153 {
154    if (ir->lhs->as_dereference_variable() &&
155        ir->rhs->as_dereference_variable() &&
156        !ir->condition) {
157       /* We'll split copies of a structure to copies of components, so don't
158        * descend to the ir_dereference_variables.
159        */
160       return visit_continue_with_parent;
161    }
162    return visit_continue;
163 }
164 
165 ir_visitor_status
visit_enter(ir_function_signature * ir)166 ir_structure_reference_visitor::visit_enter(ir_function_signature *ir)
167 {
168    /* We don't want to descend into the function parameters and
169     * dead-code eliminate them, so just accept the body here.
170     */
171    visit_list_elements(this, &ir->body);
172    return visit_continue_with_parent;
173 }
174 
175 class ir_structure_splitting_visitor : public ir_rvalue_visitor {
176 public:
ir_structure_splitting_visitor(exec_list * vars)177    ir_structure_splitting_visitor(exec_list *vars)
178    {
179       this->variable_list = vars;
180    }
181 
~ir_structure_splitting_visitor()182    virtual ~ir_structure_splitting_visitor()
183    {
184    }
185 
186    virtual ir_visitor_status visit_leave(ir_assignment *);
187 
188    void split_deref(ir_dereference **deref);
189    void handle_rvalue(ir_rvalue **rvalue);
190    variable_entry2 *get_splitting_entry(ir_variable *var);
191 
192    exec_list *variable_list;
193    void *mem_ctx;
194 };
195 
196 variable_entry2 *
get_splitting_entry(ir_variable * var)197 ir_structure_splitting_visitor::get_splitting_entry(ir_variable *var)
198 {
199    assert(var);
200 
201    if (!var->type->is_record())
202       return NULL;
203 
204    foreach_iter(exec_list_iterator, iter, *this->variable_list) {
205       variable_entry2 *entry = (variable_entry2 *)iter.get();
206       if (entry->var == var) {
207 	 return entry;
208       }
209    }
210 
211    return NULL;
212 }
213 
214 void
split_deref(ir_dereference ** deref)215 ir_structure_splitting_visitor::split_deref(ir_dereference **deref)
216 {
217    if ((*deref)->ir_type != ir_type_dereference_record)
218       return;
219 
220    ir_dereference_record *deref_record = (ir_dereference_record *)*deref;
221    ir_dereference_variable *deref_var = deref_record->record->as_dereference_variable();
222    if (!deref_var)
223       return;
224 
225    variable_entry2 *entry = get_splitting_entry(deref_var->var);
226    if (!entry)
227       return;
228 
229    unsigned int i;
230    for (i = 0; i < entry->var->type->length; i++) {
231       if (strcmp(deref_record->field,
232 		 entry->var->type->fields.structure[i].name) == 0)
233 	 break;
234    }
235    assert(i != entry->var->type->length);
236 
237    *deref = new(entry->mem_ctx) ir_dereference_variable(entry->components[i]);
238 }
239 
240 void
handle_rvalue(ir_rvalue ** rvalue)241 ir_structure_splitting_visitor::handle_rvalue(ir_rvalue **rvalue)
242 {
243    if (!*rvalue)
244       return;
245 
246    ir_dereference *deref = (*rvalue)->as_dereference();
247 
248    if (!deref)
249       return;
250 
251    split_deref(&deref);
252    *rvalue = deref;
253 }
254 
255 ir_visitor_status
visit_leave(ir_assignment * ir)256 ir_structure_splitting_visitor::visit_leave(ir_assignment *ir)
257 {
258    ir_dereference_variable *lhs_deref = ir->lhs->as_dereference_variable();
259    ir_dereference_variable *rhs_deref = ir->rhs->as_dereference_variable();
260    variable_entry2 *lhs_entry = lhs_deref ? get_splitting_entry(lhs_deref->var) : NULL;
261    variable_entry2 *rhs_entry = rhs_deref ? get_splitting_entry(rhs_deref->var) : NULL;
262    const glsl_type *type = ir->rhs->type;
263 
264    if ((lhs_entry || rhs_entry) && !ir->condition) {
265       for (unsigned int i = 0; i < type->length; i++) {
266 	 ir_dereference *new_lhs, *new_rhs;
267 	 void *mem_ctx = lhs_entry ? lhs_entry->mem_ctx : rhs_entry->mem_ctx;
268 
269 	 if (lhs_entry) {
270 	    new_lhs = new(mem_ctx) ir_dereference_variable(lhs_entry->components[i]);
271 	 } else {
272 	    new_lhs = new(mem_ctx)
273 	       ir_dereference_record(ir->lhs->clone(mem_ctx, NULL),
274 				     type->fields.structure[i].name);
275 	 }
276 
277 	 if (rhs_entry) {
278 	    new_rhs = new(mem_ctx) ir_dereference_variable(rhs_entry->components[i]);
279 	 } else {
280 	    new_rhs = new(mem_ctx)
281 	       ir_dereference_record(ir->rhs->clone(mem_ctx, NULL),
282 				     type->fields.structure[i].name);
283 	 }
284 
285 	 ir->insert_before(new(mem_ctx) ir_assignment(new_lhs,
286 						      new_rhs,
287 						      NULL));
288       }
289       ir->remove();
290    } else {
291       handle_rvalue(&ir->rhs);
292       split_deref(&ir->lhs);
293    }
294 
295    handle_rvalue(&ir->condition);
296 
297    return visit_continue;
298 }
299 
300 bool
do_structure_splitting(exec_list * instructions)301 do_structure_splitting(exec_list *instructions)
302 {
303    ir_structure_reference_visitor refs;
304 
305    visit_list_elements(&refs, instructions);
306 
307    /* Trim out variables we can't split. */
308    foreach_iter(exec_list_iterator, iter, refs.variable_list) {
309       variable_entry2 *entry = (variable_entry2 *)iter.get();
310 
311       if (debug) {
312 	 printf("structure %s@%p: decl %d, whole_access %d\n",
313 		entry->var->name, (void *) entry->var, entry->declaration,
314 		entry->whole_structure_access);
315       }
316 
317       if (!entry->declaration || entry->whole_structure_access) {
318 	 entry->remove();
319       }
320    }
321 
322    if (refs.variable_list.is_empty())
323       return false;
324 
325    void *mem_ctx = hieralloc_new(NULL);
326 
327    /* Replace the decls of the structures to be split with their split
328     * components.
329     */
330    foreach_iter(exec_list_iterator, iter, refs.variable_list) {
331       variable_entry2 *entry = (variable_entry2 *)iter.get();
332       const struct glsl_type *type = entry->var->type;
333 
334       entry->mem_ctx = hieralloc_parent(entry->var);
335 
336       entry->components = hieralloc_array(mem_ctx,
337 				       ir_variable *,
338 				       type->length);
339 
340       for (unsigned int i = 0; i < entry->var->type->length; i++) {
341 	 const char *name = hieralloc_asprintf(mem_ctx, "%s_%s",
342 					    entry->var->name,
343 					    type->fields.structure[i].name);
344 
345 	 entry->components[i] =
346 	    new(entry->mem_ctx) ir_variable(type->fields.structure[i].type,
347 					    name,
348 					    ir_var_temporary);
349 	 entry->var->insert_before(entry->components[i]);
350       }
351 
352       entry->var->remove();
353    }
354 
355    ir_structure_splitting_visitor split(&refs.variable_list);
356    visit_list_elements(&split, instructions);
357 
358    hieralloc_free(mem_ctx);
359 
360    return true;
361 }
362