Support assignments and expressions in linker scripts.
[deliverable/binutils-gdb.git] / gold / expression.cc
1 // expression.cc -- expressions in linker scripts for gold
2
3 // Copyright 2006, 2007, 2008 Free Software Foundation, Inc.
4 // Written by Ian Lance Taylor <iant@google.com>.
5
6 // This file is part of gold.
7
8 // This program is free software; you can redistribute it and/or modify
9 // it under the terms of the GNU General Public License as published by
10 // the Free Software Foundation; either version 3 of the License, or
11 // (at your option) any later version.
12
13 // This program is distributed in the hope that it will be useful,
14 // but WITHOUT ANY WARRANTY; without even the implied warranty of
15 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 // GNU General Public License for more details.
17
18 // You should have received a copy of the GNU General Public License
19 // along with this program; if not, write to the Free Software
20 // Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
21 // MA 02110-1301, USA.
22
23 #include "gold.h"
24
25 #include <string>
26
27 #include "parameters.h"
28 #include "symtab.h"
29 #include "layout.h"
30 #include "script.h"
31 #include "script-c.h"
32
33 namespace gold
34 {
35
36 // This file holds the code which handles linker expressions.
37
38 // When evaluating the value of an expression, we pass in a pointer to
39 // this struct, so that the expression evaluation can find the
40 // information it needs.
41
42 struct Expression::Expression_eval_info
43 {
44 const Symbol_table* symtab;
45 const Layout* layout;
46 };
47
48 // Evaluate an expression.
49
50 uint64_t
51 Expression::eval(const Symbol_table* symtab, const Layout* layout)
52 {
53 Expression_eval_info eei;
54 eei.symtab = symtab;
55 eei.layout = layout;
56 return this->value(&eei);
57 }
58
59 // A number.
60
61 class Integer_expression : public Expression
62 {
63 public:
64 Integer_expression(uint64_t val)
65 : val_(val)
66 { }
67
68 uint64_t
69 value(const Expression_eval_info*)
70 { return this->val_; }
71
72 private:
73 uint64_t val_;
74 };
75
76 extern "C" Expression*
77 script_exp_integer(uint64_t val)
78 {
79 return new Integer_expression(val);
80 }
81
82 // An expression whose value is the value of a symbol.
83
84 class Symbol_expression : public Expression
85 {
86 public:
87 Symbol_expression(const char* name, size_t length)
88 : name_(name, length)
89 { }
90
91 uint64_t
92 value(const Expression_eval_info*);
93
94 private:
95 std::string name_;
96 };
97
98 uint64_t
99 Symbol_expression::value(const Expression_eval_info* eei)
100 {
101 Symbol* sym = eei->symtab->lookup(this->name_.c_str());
102 if (sym == NULL || !sym->is_defined())
103 {
104 gold_error(_("undefined symbol '%s' referenced in expression"),
105 this->name_.c_str());
106 return 0;
107 }
108
109 if (parameters->get_size() == 32)
110 return eei->symtab->get_sized_symbol<32>(sym)->value();
111 else if (parameters->get_size() == 64)
112 return eei->symtab->get_sized_symbol<64>(sym)->value();
113 else
114 gold_unreachable();
115 }
116
117 // An expression whose value is the value of the special symbol ".".
118 // This is only valid within a SECTIONS clause.
119
120 class Dot_expression : public Expression
121 {
122 public:
123 Dot_expression()
124 { }
125
126 uint64_t
127 value(const Expression_eval_info*);
128 };
129
130 uint64_t
131 Dot_expression::value(const Expression_eval_info*)
132 {
133 gold_error("dot symbol unimplemented");
134 return 0;
135 }
136
137 // A string. This is either the name of a symbol, or ".".
138
139 extern "C" Expression*
140 script_exp_string(const char* name, size_t length)
141 {
142 if (length == 1 && name[0] == '.')
143 return new Dot_expression();
144 else
145 return new Symbol_expression(name, length);
146 }
147
148 // A unary expression.
149
150 class Unary_expression : public Expression
151 {
152 public:
153 Unary_expression(Expression* arg)
154 : arg_(arg)
155 { }
156
157 ~Unary_expression()
158 { delete this->arg_; }
159
160 protected:
161 uint64_t
162 arg_value(const Expression_eval_info* eei) const
163 { return this->arg_->value(eei); }
164
165 private:
166 Expression* arg_;
167 };
168
169 // Handle unary operators. We use a preprocessor macro as a hack to
170 // capture the C operator.
171
172 #define UNARY_EXPRESSION(NAME, OPERATOR) \
173 class Unary_ ## NAME : public Unary_expression \
174 { \
175 public: \
176 Unary_ ## NAME(Expression* arg) \
177 : Unary_expression(arg) \
178 { } \
179 \
180 uint64_t \
181 value(const Expression_eval_info* eei) \
182 { return OPERATOR this->arg_value(eei); } \
183 }; \
184 \
185 extern "C" Expression* \
186 script_exp_unary_ ## NAME(Expression* arg) \
187 { \
188 return new Unary_ ## NAME(arg); \
189 }
190
191 UNARY_EXPRESSION(minus, -)
192 UNARY_EXPRESSION(logical_not, !)
193 UNARY_EXPRESSION(bitwise_not, ~)
194
195 // A binary expression.
196
197 class Binary_expression : public Expression
198 {
199 public:
200 Binary_expression(Expression* left, Expression* right)
201 : left_(left), right_(right)
202 { }
203
204 ~Binary_expression()
205 {
206 delete this->left_;
207 delete this->right_;
208 }
209
210 protected:
211 uint64_t
212 left_value(const Expression_eval_info* eei) const
213 { return this->left_->value(eei); }
214
215 uint64_t
216 right_value(const Expression_eval_info* eei) const
217 { return this->right_->value(eei); }
218
219 private:
220 Expression* left_;
221 Expression* right_;
222 };
223
224 // Handle binary operators. We use a preprocessor macro as a hack to
225 // capture the C operator.
226
227 #define BINARY_EXPRESSION(NAME, OPERATOR) \
228 class Binary_ ## NAME : public Binary_expression \
229 { \
230 public: \
231 Binary_ ## NAME(Expression* left, Expression* right) \
232 : Binary_expression(left, right) \
233 { } \
234 \
235 uint64_t \
236 value(const Expression_eval_info* eei) \
237 { \
238 return (this->left_value(eei) \
239 OPERATOR this->right_value(eei)); \
240 } \
241 }; \
242 \
243 extern "C" Expression* \
244 script_exp_binary_ ## NAME(Expression* left, Expression* right) \
245 { \
246 return new Binary_ ## NAME(left, right); \
247 }
248
249 BINARY_EXPRESSION(mult, *)
250 BINARY_EXPRESSION(div, /)
251 BINARY_EXPRESSION(mod, %)
252 BINARY_EXPRESSION(add, +)
253 BINARY_EXPRESSION(sub, -)
254 BINARY_EXPRESSION(lshift, <<)
255 BINARY_EXPRESSION(rshift, >>)
256 BINARY_EXPRESSION(eq, ==)
257 BINARY_EXPRESSION(ne, !=)
258 BINARY_EXPRESSION(le, <=)
259 BINARY_EXPRESSION(ge, >=)
260 BINARY_EXPRESSION(lt, <)
261 BINARY_EXPRESSION(gt, >)
262 BINARY_EXPRESSION(bitwise_and, &)
263 BINARY_EXPRESSION(bitwise_xor, ^)
264 BINARY_EXPRESSION(bitwise_or, |)
265 BINARY_EXPRESSION(logical_and, &&)
266 BINARY_EXPRESSION(logical_or, ||)
267
268 // A trinary expression.
269
270 class Trinary_expression : public Expression
271 {
272 public:
273 Trinary_expression(Expression* arg1, Expression* arg2, Expression* arg3)
274 : arg1_(arg1), arg2_(arg2), arg3_(arg3)
275 { }
276
277 ~Trinary_expression()
278 {
279 delete this->arg1_;
280 delete this->arg2_;
281 delete this->arg3_;
282 }
283
284 protected:
285 uint64_t
286 arg1_value(const Expression_eval_info* eei) const
287 { return this->arg1_->value(eei); }
288
289 uint64_t
290 arg2_value(const Expression_eval_info* eei) const
291 { return this->arg2_->value(eei); }
292
293 uint64_t
294 arg3_value(const Expression_eval_info* eei) const
295 { return this->arg3_->value(eei); }
296
297 private:
298 Expression* arg1_;
299 Expression* arg2_;
300 Expression* arg3_;
301 };
302
303 // The conditional operator.
304
305 class Trinary_cond : public Trinary_expression
306 {
307 public:
308 Trinary_cond(Expression* arg1, Expression* arg2, Expression* arg3)
309 : Trinary_expression(arg1, arg2, arg3)
310 { }
311
312 uint64_t
313 value(const Expression_eval_info* eei)
314 {
315 return (this->arg1_value(eei)
316 ? this->arg2_value(eei)
317 : this->arg3_value(eei));
318 }
319 };
320
321 extern "C" Expression*
322 script_exp_trinary_cond(Expression* arg1, Expression* arg2, Expression* arg3)
323 {
324 return new Trinary_cond(arg1, arg2, arg3);
325 }
326
327 // Max function.
328
329 class Max_expression : public Binary_expression
330 {
331 public:
332 Max_expression(Expression* left, Expression* right)
333 : Binary_expression(left, right)
334 { }
335
336 uint64_t
337 value(const Expression_eval_info* eei)
338 { return std::max(this->left_value(eei), this->right_value(eei)); }
339 };
340
341 extern "C" Expression*
342 script_exp_function_max(Expression* left, Expression* right)
343 {
344 return new Max_expression(left, right);
345 }
346
347 // Min function.
348
349 class Min_expression : public Binary_expression
350 {
351 public:
352 Min_expression(Expression* left, Expression* right)
353 : Binary_expression(left, right)
354 { }
355
356 uint64_t
357 value(const Expression_eval_info* eei)
358 { return std::min(this->left_value(eei), this->right_value(eei)); }
359 };
360
361 extern "C" Expression*
362 script_exp_function_min(Expression* left, Expression* right)
363 {
364 return new Min_expression(left, right);
365 }
366
367 // Align function.
368
369 class Align_expression : public Binary_expression
370 {
371 public:
372 Align_expression(Expression* left, Expression* right)
373 : Binary_expression(left, right)
374 { }
375
376 uint64_t
377 value(const Expression_eval_info* eei)
378 {
379 uint64_t align = this->right_value(eei);
380 uint64_t value = this->left_value(eei);
381 if (align <= 1)
382 return value;
383 return ((value + align - 1) / align) * align;
384 }
385 };
386
387 extern "C" Expression*
388 script_exp_function_align(Expression* left, Expression* right)
389 {
390 return new Align_expression(left, right);
391 }
392
393 // Assert function.
394
395 class Assert_expression : public Unary_expression
396 {
397 public:
398 Assert_expression(Expression* arg, const char* message, size_t length)
399 : Unary_expression(arg), message_(message, length)
400 { }
401
402 uint64_t
403 value(const Expression_eval_info* eei)
404 {
405 uint64_t value = this->arg_value(eei);
406 if (!value)
407 gold_error("%s", this->message_.c_str());
408 return value;
409 }
410
411 private:
412 std::string message_;
413 };
414
415 extern "C" Expression*
416 script_exp_function_assert(Expression* expr, const char* message,
417 size_t length)
418 {
419 return new Assert_expression(expr, message, length);
420 }
421
422 // Functions.
423
424 extern "C" Expression*
425 script_exp_function_defined(const char*, size_t)
426 {
427 gold_fatal(_("DEFINED not implemented"));
428 }
429
430 extern "C" Expression*
431 script_exp_function_sizeof_headers()
432 {
433 gold_fatal(_("SIZEOF_HEADERS not implemented"));
434 }
435
436 extern "C" Expression*
437 script_exp_function_alignof(const char*, size_t)
438 {
439 gold_fatal(_("ALIGNOF not implemented"));
440 }
441
442 extern "C" Expression*
443 script_exp_function_sizeof(const char*, size_t)
444 {
445 gold_fatal(_("SIZEOF not implemented"));
446 }
447
448 extern "C" Expression*
449 script_exp_function_addr(const char*, size_t)
450 {
451 gold_fatal(_("ADDR not implemented"));
452 }
453
454 extern "C" Expression*
455 script_exp_function_loadaddr(const char*, size_t)
456 {
457 gold_fatal(_("LOADADDR not implemented"));
458 }
459
460 extern "C" Expression*
461 script_exp_function_origin(const char*, size_t)
462 {
463 gold_fatal(_("ORIGIN not implemented"));
464 }
465
466 extern "C" Expression*
467 script_exp_function_length(const char*, size_t)
468 {
469 gold_fatal(_("LENGTH not implemented"));
470 }
471
472 extern "C" Expression*
473 script_exp_function_constant(const char*, size_t)
474 {
475 gold_fatal(_("CONSTANT not implemented"));
476 }
477
478 extern "C" Expression*
479 script_exp_function_absolute(Expression*)
480 {
481 gold_fatal(_("ABSOLUTE not implemented"));
482 }
483
484 extern "C" Expression*
485 script_exp_function_data_segment_align(Expression*, Expression*)
486 {
487 gold_fatal(_("DATA_SEGMENT_ALIGN not implemented"));
488 }
489
490 extern "C" Expression*
491 script_exp_function_data_segment_relro_end(Expression*, Expression*)
492 {
493 gold_fatal(_("DATA_SEGMENT_RELRO_END not implemented"));
494 }
495
496 extern "C" Expression*
497 script_exp_function_data_segment_end(Expression*)
498 {
499 gold_fatal(_("DATA_SEGMENT_END not implemented"));
500 }
501
502 extern "C" Expression*
503 script_exp_function_segment_start(const char*, size_t, Expression*)
504 {
505 gold_fatal(_("SEGMENT_START not implemented"));
506 }
507
508 } // End namespace gold.
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