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if-then-else AST node - this one is not for ternary expressions
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1 /*
2  * Copyright (C) 2012
3  *     Wolfgang Bumiller
4  *
5  * Permission is hereby granted, free of charge, to any person obtaining a copy of
6  * this software and associated documentation files (the "Software"), to deal in
7  * the Software without restriction, including without limitation the rights to
8  * use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies
9  * of the Software, and to permit persons to whom the Software is furnished to do
10  * so, subject to the following conditions:
11  *
12  * The above copyright notice and this permission notice shall be included in all
13  * copies or substantial portions of the 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 THE
18  * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
19  * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
20  * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
21  * SOFTWARE.
22  */
23 #include <stdio.h>
24 #include <stdlib.h>
25 #include <string.h>
26
27 #include "gmqcc.h"
28 #include "ast.h"
29
30 #define ast_instantiate(T, ctx, destroyfn)                          \
31     T* self = (T*)mem_a(sizeof(T));                                 \
32     if (!self) {                                                    \
33         return NULL;                                                \
34     }                                                               \
35     ast_node_init((ast_node*)self, ctx);                            \
36     ( (ast_node*)self )->node.destroy = (ast_node_delete*)destroyfn
37
38 /* It must not be possible to get here. */
39 static void _ast_node_destroy(ast_node *self)
40 {
41     fprintf(stderr, "ast node missing destroy()\n");
42     abort();
43 }
44
45 /* Initialize main ast node aprts */
46 static void ast_node_init(ast_node *self, lex_ctx ctx)
47 {
48     self->node.context = ctx;
49     self->node.destroy = &_ast_node_destroy;
50     self->node.keep    = false;
51 }
52
53 /* General expression initialization */
54 static void ast_expression_init(ast_expression *self,
55                                 ast_expression_codegen *codegen)
56 {
57     self->expression.codegen = codegen;
58 }
59
60 ast_value* ast_value_new(lex_ctx ctx, const char *name, int t)
61 {
62     ast_instantiate(ast_value, ctx, ast_value_delete);
63     ast_expression_init((ast_expression*)self,
64                         (ast_expression_codegen*)&ast_value_codegen);
65     self->expression.node.keep = true; /* keep */
66
67     self->name = name ? util_strdup(name) : NULL;
68     self->vtype = t;
69     self->next = NULL;
70     MEM_VECTOR_INIT(self, params);
71     self->isconst = false;
72     memset(&self->constval, 0, sizeof(self->constval));
73
74     self->ir_v    = NULL;
75
76     return self;
77 }
78 MEM_VEC_FUNCTIONS(ast_value, ast_value*, params)
79
80 void ast_value_delete(ast_value* self)
81 {
82     size_t i;
83     if (self->name)
84         mem_d((void*)self->name);
85     for (i = 0; i < self->params_count; ++i)
86         ast_value_delete(self->params[i]); /* delete, the ast_function is expected to die first */
87     MEM_VECTOR_CLEAR(self, params);
88     if (self->next) /* delete, not unref, types are always copied */
89         ast_delete(self->next);
90     if (self->isconst) {
91         switch (self->vtype)
92         {
93         case TYPE_STRING:
94             mem_d((void*)self->constval.vstring);
95             break;
96         case TYPE_FUNCTION:
97             /* unlink us from the function node */
98             self->constval.vfunc->vtype = NULL;
99             break;
100         /* NOTE: delete function? currently collected in
101          * the parser structure
102          */
103         default:
104             break;
105         }
106     }
107     mem_d(self);
108 }
109
110 bool ast_value_set_name(ast_value *self, const char *name)
111 {
112     if (self->name)
113         mem_d((void*)self->name);
114     self->name = util_strdup(name);
115     return !!self->name;
116 }
117
118 ast_binary* ast_binary_new(lex_ctx ctx, int op,
119                            ast_expression* left, ast_expression* right)
120 {
121     ast_instantiate(ast_binary, ctx, ast_binary_delete);
122     ast_expression_init((ast_expression*)self, (ast_expression_codegen*)&ast_binary_codegen);
123
124     self->op = op;
125     self->left = left;
126     self->right = right;
127
128     return self;
129 }
130
131 void ast_binary_delete(ast_binary *self)
132 {
133     ast_unref(self->left);
134     ast_unref(self->right);
135     mem_d(self);
136 }
137
138 ast_entfield* ast_entfield_new(lex_ctx ctx, ast_expression *entity, ast_expression *field)
139 {
140     ast_instantiate(ast_entfield, ctx, ast_entfield_delete);
141     ast_expression_init((ast_expression*)self, (ast_expression_codegen*)&ast_entfield_codegen);
142
143     self->entity = entity;
144     self->field  = field;
145
146     return self;
147 }
148
149 void ast_entfield_delete(ast_entfield *self)
150 {
151     ast_unref(self->entity);
152     ast_unref(self->field);
153     mem_d(self);
154 }
155
156 ast_ifthen* ast_ifthen_new(lex_ctx ctx, ast_expression *cond, ast_expression *ontrue, ast_expression *onfalse)
157 {
158     ast_instantiate(ast_ifthen, ctx, ast_ifthen_delete);
159     if (!ontrue && !onfalse) {
160         /* because it is invalid */
161         mem_d(self);
162         return NULL;
163     }
164     ast_expression_init((ast_expression*)self, (ast_expression_codegen*)&ast_ifthen_codegen);
165
166     self->cond     = cond;
167     self->on_true  = ontrue;
168     self->on_false = onfalse;
169
170     return self;
171 }
172
173 void ast_ifthen_delete(ast_ifthen *self)
174 {
175     ast_unref(self->cond);
176     ast_unref(self->on_true);
177     ast_unref(self->on_false);
178     mem_d(self);
179 }
180
181 ast_store* ast_store_new(lex_ctx ctx, int op,
182                          ast_value *dest, ast_expression *source)
183 {
184     ast_instantiate(ast_store, ctx, ast_store_delete);
185     ast_expression_init((ast_expression*)self, (ast_expression_codegen*)&ast_store_codegen);
186
187     self->op = op;
188     self->dest = dest;
189     self->source = source;
190
191     return self;
192 }
193
194 void ast_store_delete(ast_store *self)
195 {
196     ast_unref(self->dest);
197     ast_unref(self->source);
198     mem_d(self);
199 }
200
201 ast_block* ast_block_new(lex_ctx ctx)
202 {
203     ast_instantiate(ast_block, ctx, ast_block_delete);
204     ast_expression_init((ast_expression*)self,
205                         (ast_expression_codegen*)&ast_block_codegen);
206
207     MEM_VECTOR_INIT(self, locals);
208     MEM_VECTOR_INIT(self, exprs);
209
210     return self;
211 }
212 MEM_VEC_FUNCTIONS(ast_block, ast_value*, locals)
213 MEM_VEC_FUNCTIONS(ast_block, ast_expression*, exprs)
214
215 void ast_block_delete(ast_block *self)
216 {
217     size_t i;
218     for (i = 0; i < self->exprs_count; ++i)
219         ast_unref(self->exprs[i]);
220     MEM_VECTOR_CLEAR(self, exprs);
221     for (i = 0; i < self->locals_count; ++i)
222         ast_delete(self->locals[i]);
223     MEM_VECTOR_CLEAR(self, locals);
224     mem_d(self);
225 }
226
227 ast_function* ast_function_new(lex_ctx ctx, const char *name, ast_value *vtype)
228 {
229     ast_instantiate(ast_function, ctx, ast_function_delete);
230
231     if (!vtype ||
232         vtype->isconst ||
233         vtype->vtype != TYPE_FUNCTION)
234     {
235         mem_d(self);
236         return NULL;
237     }
238
239     self->vtype = vtype;
240     self->name = name ? util_strdup(name) : NULL;
241     MEM_VECTOR_INIT(self, blocks);
242
243     self->ir_func = NULL;
244
245     vtype->isconst = true;
246     vtype->constval.vfunc = self;
247
248     return self;
249 }
250
251 MEM_VEC_FUNCTIONS(ast_function, ast_block*, blocks)
252
253 void ast_function_delete(ast_function *self)
254 {
255     size_t i;
256     if (self->name)
257         mem_d((void*)self->name);
258     if (self->vtype) {
259         /* ast_value_delete(self->vtype); */
260         self->vtype->isconst = false;
261         self->vtype->constval.vfunc = NULL;
262         /* We use unref - if it was stored in a global table it is supposed
263          * to be deleted from *there*
264          */
265         ast_unref(self->vtype);
266     }
267     for (i = 0; i < self->blocks_count; ++i)
268         ast_delete(self->blocks[i]);
269     MEM_VECTOR_CLEAR(self, blocks);
270     mem_d(self);
271 }
272
273 /*********************************************************************/
274 /* AST codegen aprt
275  */
276
277 bool ast_value_codegen(ast_value *self, ast_function *func, bool lvalue, ir_value **out)
278 {
279     /* NOTE: This is the codegen for a variable used in an expression.
280      * It is not the codegen to generate the value. For this purpose,
281      * ast_local_codegen and ast_global_codegen are to be used before this
282      * is executed. ast_function_codegen should take care of its locals,
283      * and the ast-user should take care of ast_global_codegen to be used
284      * on all the globals.
285      */
286     return false;
287 }
288
289 bool ast_global_codegen(ast_value *self, ir_builder *ir)
290 {
291     ir_value *v = NULL;
292     if (self->isconst && self->vtype == TYPE_FUNCTION)
293     {
294         ir_function *func = ir_builder_create_function(ir, self->name);
295         if (!func)
296             return false;
297
298         self->constval.vfunc->ir_func = func;
299         /* The function is filled later on ast_function_codegen... */
300         return true;
301     }
302
303     v = ir_builder_create_global(ir, self->name, self->vtype);
304     if (!v)
305         return false;
306
307     if (self->isconst) {
308         switch (self->vtype)
309         {
310             case TYPE_FLOAT:
311                 if (!ir_value_set_float(v, self->constval.vfloat))
312                     goto error;
313                 break;
314             case TYPE_VECTOR:
315                 if (!ir_value_set_vector(v, self->constval.vvec))
316                     goto error;
317                 break;
318             case TYPE_STRING:
319                 if (!ir_value_set_string(v, self->constval.vstring))
320                     goto error;
321                 break;
322             case TYPE_FUNCTION:
323                 /* Cannot generate an IR value for a function,
324                  * need a pointer pointing to a function rather.
325                  */
326                 goto error;
327             default:
328                 printf("TODO: global constant type %i\n", self->vtype);
329                 break;
330         }
331     }
332
333     /* link us to the ir_value */
334     self->ir_v = v;
335     return true;
336
337 error: /* clean up */
338     ir_value_delete(v);
339     return false;
340 }
341
342 bool ast_function_codegen(ast_function *self, ir_builder *ir)
343 {
344     if (!self->ir_func) {
345         printf("ast_function's related ast_value was not generated yet\n");
346         return false;
347     }
348     return false;
349 }
350
351 bool ast_block_codegen(ast_block *self, ast_function *func, bool lvalue, ir_value **out)
352 {
353     return false;
354 }
355
356 bool ast_store_codegen(ast_store *self, ast_function *func, bool lvalue, ir_value **out)
357 {
358     /* NOTE: remember: destination codegen needs to have lvalue=true */
359     return false;
360 }
361
362 bool ast_binary_codegen(ast_binary *self, ast_function *func, bool lvalue, ir_value **out)
363 {
364     return false;
365 }
366
367 bool ast_entfield_codegen(ast_entfield *self, ast_function *func, bool lvalue, ir_value **out)
368 {
369     return false;
370 }
371
372 bool ast_ifthen_codegen(ast_ifthen *self, ast_function *func, bool lvalue, ir_value **out)
373 {
374     if (out) *out = NULL;
375     return false;
376 }