emit-rtl.c, [...]: Remove all #ifndef REAL_ARITHMETIC blocks...
[gcc.git] / gcc / gengenrtl.c
1 /* Generate code to allocate RTL structures.
2 Copyright (C) 1997, 1998, 1999, 2000 Free Software Foundation, Inc.
3
4 This file is part of GCC.
5
6 GCC is free software; you can redistribute it and/or modify it under
7 the terms of the GNU General Public License as published by the Free
8 Software Foundation; either version 2, or (at your option) any later
9 version.
10
11 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
12 WARRANTY; without even the implied warranty of MERCHANTABILITY or
13 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
14 for more details.
15
16 You should have received a copy of the GNU General Public License
17 along with GCC; see the file COPYING. If not, write to the Free
18 Software Foundation, 59 Temple Place - Suite 330, Boston, MA
19 02111-1307, USA. */
20
21
22 #include "hconfig.h"
23 #include "system.h"
24
25 #define NO_GENRTL_H
26 #include "rtl.h"
27 #undef abort
28
29 #include "real.h"
30
31 /* Calculate the format for CONST_DOUBLE. This depends on the relative
32 widths of HOST_WIDE_INT and REAL_VALUE_TYPE.
33
34 We need to go out to e0wwwww, since real.c assumes 16 bits per element
35 in REAL_VALUE_TYPE.
36
37 This is duplicated in rtl.c.
38
39 A number of places assume that there are always at least two 'w'
40 slots in a CONST_DOUBLE, so we provide them even if one would suffice. */
41
42 #if MAX_LONG_DOUBLE_TYPE_SIZE == 96
43 # define REAL_WIDTH \
44 (11*8 + HOST_BITS_PER_WIDE_INT)/HOST_BITS_PER_WIDE_INT
45 #else
46 # if MAX_LONG_DOUBLE_TYPE_SIZE == 128
47 # define REAL_WIDTH \
48 (19*8 + HOST_BITS_PER_WIDE_INT)/HOST_BITS_PER_WIDE_INT
49 # else
50 # if HOST_FLOAT_FORMAT != TARGET_FLOAT_FORMAT
51 # define REAL_WIDTH \
52 (7*8 + HOST_BITS_PER_WIDE_INT)/HOST_BITS_PER_WIDE_INT
53 # endif
54 # endif
55 #endif
56
57 #ifndef REAL_WIDTH
58 # if HOST_BITS_PER_WIDE_INT*2 >= MAX_LONG_DOUBLE_TYPE_SIZE
59 # define REAL_WIDTH 2
60 # else
61 # if HOST_BITS_PER_WIDE_INT*3 >= MAX_LONG_DOUBLE_TYPE_SIZE
62 # define REAL_WIDTH 3
63 # else
64 # if HOST_BITS_PER_WIDE_INT*4 >= MAX_LONG_DOUBLE_TYPE_SIZE
65 # define REAL_WIDTH 4
66 # endif
67 # endif
68 # endif
69 #endif /* REAL_WIDTH */
70
71 #if REAL_WIDTH == 1
72 # define CONST_DOUBLE_FORMAT "0ww"
73 #else
74 # if REAL_WIDTH == 2
75 # define CONST_DOUBLE_FORMAT "0ww"
76 # else
77 # if REAL_WIDTH == 3
78 # define CONST_DOUBLE_FORMAT "0www"
79 # else
80 # if REAL_WIDTH == 4
81 # define CONST_DOUBLE_FORMAT "0wwww"
82 # else
83 # if REAL_WIDTH == 5
84 # define CONST_DOUBLE_FORMAT "0wwwww"
85 # else
86 # define CONST_DOUBLE_FORMAT /* nothing - will cause syntax error */
87 # endif
88 # endif
89 # endif
90 # endif
91 #endif
92
93
94 struct rtx_definition
95 {
96 const char *const enumname, *const name, *const format;
97 };
98
99 #define DEF_RTL_EXPR(ENUM, NAME, FORMAT, CLASS) { STRINGX(ENUM), NAME, FORMAT },
100
101 static const struct rtx_definition defs[] =
102 {
103 #include "rtl.def" /* rtl expressions are documented here */
104 };
105
106 static const char *formats[NUM_RTX_CODE];
107
108 static const char *type_from_format PARAMS ((int));
109 static const char *accessor_from_format PARAMS ((int));
110 static int special_format PARAMS ((const char *));
111 static int special_rtx PARAMS ((int));
112 static void find_formats PARAMS ((void));
113 static void gendecl PARAMS ((const char *));
114 static void genmacro PARAMS ((int));
115 static void gendef PARAMS ((const char *));
116 static void genlegend PARAMS ((void));
117 static void genheader PARAMS ((void));
118 static void gencode PARAMS ((void));
119 \f
120 /* Decode a format letter into a C type string. */
121
122 static const char *
123 type_from_format (c)
124 int c;
125 {
126 switch (c)
127 {
128 case 'i':
129 return "int ";
130
131 case 'w':
132 return "HOST_WIDE_INT ";
133
134 case 's':
135 return "const char *";
136
137 case 'e': case 'u':
138 return "rtx ";
139
140 case 'E':
141 return "rtvec ";
142 case 'b':
143 return "struct bitmap_head_def *"; /* bitmap - typedef not available */
144 case 't':
145 return "union tree_node *"; /* tree - typedef not available */
146 default:
147 abort ();
148 }
149 }
150
151 /* Decode a format letter into the proper accessor function. */
152
153 static const char *
154 accessor_from_format (c)
155 int c;
156 {
157 switch (c)
158 {
159 case 'i':
160 return "XINT";
161
162 case 'w':
163 return "XWINT";
164
165 case 's':
166 return "XSTR";
167
168 case 'e': case 'u':
169 return "XEXP";
170
171 case 'E':
172 return "XVEC";
173
174 case 'b':
175 return "XBITMAP";
176
177 case 't':
178 return "XTREE";
179
180 default:
181 abort ();
182 }
183 }
184
185 /* Return nonzero if we should ignore FMT, an RTL format, when making
186 the list of formats we write routines to create. */
187
188 static int
189 special_format (fmt)
190 const char *fmt;
191 {
192 return (strchr (fmt, '*') != 0
193 || strchr (fmt, 'V') != 0
194 || strchr (fmt, 'S') != 0
195 || strchr (fmt, 'n') != 0);
196 }
197
198 /* Return nonzero if the RTL code given by index IDX is one that we should not
199 generate a gen_RTX_FOO function foo (because that function is present
200 elsewhere in the compiler). */
201
202 static int
203 special_rtx (idx)
204 int idx;
205 {
206 return (strcmp (defs[idx].enumname, "CONST_INT") == 0
207 || strcmp (defs[idx].enumname, "CONST_DOUBLE") == 0
208 || strcmp (defs[idx].enumname, "REG") == 0
209 || strcmp (defs[idx].enumname, "SUBREG") == 0
210 || strcmp (defs[idx].enumname, "MEM") == 0);
211 }
212
213 /* Place a list of all format specifiers we use into the array FORMAT. */
214
215 static void
216 find_formats ()
217 {
218 int i;
219
220 for (i = 0; i < NUM_RTX_CODE; i++)
221 {
222 const char **f;
223
224 if (special_format (defs[i].format))
225 continue;
226
227 for (f = formats; *f; f++)
228 if (! strcmp (*f, defs[i].format))
229 break;
230
231 if (*f == 0)
232 *f = defs[i].format;
233 }
234 }
235
236 /* Write the declarations for the routine to allocate RTL with FORMAT. */
237
238 static void
239 gendecl (format)
240 const char *format;
241 {
242 const char *p;
243 int i, pos;
244
245 printf ("extern rtx gen_rtx_fmt_%s\tPARAMS ((RTX_CODE, ", format);
246 printf ("enum machine_mode mode");
247
248 /* Write each parameter that is needed and start a new line when the line
249 would overflow. */
250 for (p = format, i = 0, pos = 75; *p != 0; p++)
251 if (*p != '0')
252 {
253 int ourlen = strlen (type_from_format (*p)) + 6 + (i > 9);
254
255 printf (",");
256 if (pos + ourlen > 76)
257 printf ("\n\t\t\t\t "), pos = 39;
258
259 printf (" %sarg%d", type_from_format (*p), i++);
260 pos += ourlen;
261 }
262
263 printf ("));\n");
264 }
265
266 /* Generate macros to generate RTL of code IDX using the functions we
267 write. */
268
269 static void
270 genmacro (idx)
271 int idx;
272 {
273 const char *p;
274 int i;
275
276 /* We write a macro that defines gen_rtx_RTLCODE to be an equivalent to
277 gen_rtx_fmt_FORMAT where FORMAT is the RTX_FORMAT of RTLCODE. */
278
279 printf ("#define gen_rtx_%s%s(MODE",
280 special_rtx (idx) ? "raw_" : "", defs[idx].enumname);
281
282 for (p = defs[idx].format, i = 0; *p != 0; p++)
283 if (*p != '0')
284 printf (", ARG%d", i++);
285
286 printf (") \\\n gen_rtx_fmt_%s (%s, (MODE)",
287 defs[idx].format, defs[idx].enumname);
288
289 for (p = defs[idx].format, i = 0; *p != 0; p++)
290 if (*p != '0')
291 printf (", (ARG%d)", i++);
292
293 puts (")");
294 }
295
296 /* Generate the code for the function to generate RTL whose
297 format is FORMAT. */
298
299 static void
300 gendef (format)
301 const char *format;
302 {
303 const char *p;
304 int i, j;
305
306 /* Start by writing the definition of the function name and the types
307 of the arguments. */
308
309 printf ("rtx\ngen_rtx_fmt_%s (code, mode", format);
310 for (p = format, i = 0; *p != 0; p++)
311 if (*p != '0')
312 printf (", arg%d", i++);
313
314 puts (")\n RTX_CODE code;\n enum machine_mode mode;");
315 for (p = format, i = 0; *p != 0; p++)
316 if (*p != '0')
317 printf (" %sarg%d;\n", type_from_format (*p), i++);
318
319 /* Now write out the body of the function itself, which allocates
320 the memory and initializes it. */
321 puts ("{");
322 puts (" rtx rt;");
323 printf (" rt = ggc_alloc_rtx (%d);\n", (int) strlen (format));
324
325 puts (" memset (rt, 0, sizeof (struct rtx_def) - sizeof (rtunion));\n");
326 puts (" PUT_CODE (rt, code);");
327 puts (" PUT_MODE (rt, mode);");
328
329 for (p = format, i = j = 0; *p ; ++p, ++i)
330 if (*p != '0')
331 printf (" %s (rt, %d) = arg%d;\n", accessor_from_format (*p), i, j++);
332 else
333 printf (" X0EXP (rt, %d) = NULL_RTX;\n", i);
334
335 puts ("\n return rt;\n}\n");
336 }
337
338 /* Generate the documentation header for files we write. */
339
340 static void
341 genlegend ()
342 {
343 puts ("/* Generated automatically by gengenrtl from rtl.def. */\n");
344 }
345
346 /* Generate the text of the header file we make, genrtl.h. */
347
348 static void
349 genheader ()
350 {
351 int i;
352 const char **fmt;
353
354 puts ("#ifndef GCC_GENRTL_H");
355 puts ("#define GCC_GENRTL_H\n");
356
357 for (fmt = formats; *fmt; ++fmt)
358 gendecl (*fmt);
359
360 putchar ('\n');
361
362 for (i = 0; i < NUM_RTX_CODE; i++)
363 if (! special_format (defs[i].format))
364 genmacro (i);
365
366 puts ("\n#endif /* GCC_GENRTL_H */");
367 }
368
369 /* Generate the text of the code file we write, genrtl.c. */
370
371 static void
372 gencode ()
373 {
374 const char **fmt;
375
376 puts ("#include \"config.h\"");
377 puts ("#include \"system.h\"");
378 puts ("#include \"obstack.h\"");
379 puts ("#include \"rtl.h\"");
380 puts ("#include \"ggc.h\"\n");
381 puts ("extern struct obstack *rtl_obstack;\n");
382 puts ("#define obstack_alloc_rtx(n) \\");
383 puts (" ((rtx) obstack_alloc (rtl_obstack, \\");
384 puts (" sizeof (struct rtx_def) \\");
385 puts (" + ((n) - 1) * sizeof (rtunion)))\n");
386
387 for (fmt = formats; *fmt != 0; fmt++)
388 gendef (*fmt);
389 }
390
391 /* This is the main program. We accept only one argument, "-h", which
392 says we are writing the genrtl.h file. Otherwise we are writing the
393 genrtl.c file. */
394 extern int main PARAMS ((int, char **));
395
396 int
397 main (argc, argv)
398 int argc;
399 char **argv;
400 {
401 find_formats ();
402 genlegend ();
403
404 if (argc == 2 && argv[1][0] == '-' && argv[1][1] == 'h')
405 genheader ();
406 else
407 gencode ();
408
409 if (ferror (stdout) || fflush (stdout) || fclose (stdout))
410 return FATAL_EXIT_CODE;
411
412 return SUCCESS_EXIT_CODE;
413 }