fgen.l revision 1.4 1 1.1 eeh %{
2 1.1 eeh /* FLEX input for FORTH input file scanner */
3 1.2 eeh /*
4 1.2 eeh * Copyright (c) 1998 Eduardo Horvath.
5 1.2 eeh * All rights reserved.
6 1.2 eeh *
7 1.2 eeh * Redistribution and use in source and binary forms, with or without
8 1.2 eeh * modification, are permitted provided that the following conditions
9 1.2 eeh * are met:
10 1.2 eeh * 1. Redistributions of source code must retain the above copyright
11 1.2 eeh * notice, this list of conditions and the following disclaimer.
12 1.2 eeh * 2. Redistributions in binary form must reproduce the above copyright
13 1.2 eeh * notice, this list of conditions and the following disclaimer in the
14 1.2 eeh * documentation and/or other materials provided with the distribution.
15 1.2 eeh * 3. All advertising materials mentioning features or use of this software
16 1.2 eeh * must display the following acknowledgement:
17 1.2 eeh * This product includes software developed by Eduardo Horvath.
18 1.2 eeh * 4. The name of the author may not be used to endorse or promote products
19 1.2 eeh * derived from this software withough specific prior written permission
20 1.2 eeh *
21 1.2 eeh * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
22 1.2 eeh * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
23 1.2 eeh * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
24 1.2 eeh * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
25 1.2 eeh * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
26 1.2 eeh * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
27 1.2 eeh * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
28 1.2 eeh * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
29 1.2 eeh * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
30 1.2 eeh * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
31 1.2 eeh */
32 1.2 eeh /*
33 1.1 eeh Specifications are as follows:
34 1.1 eeh
35 1.1 eeh The function "yylex()" always returns a pointer to a structure:
36 1.1 eeh
37 1.1 eeh struct tok {
38 1.1 eeh int type;
39 1.1 eeh char *text;
40 1.1 eeh }
41 1.1 eeh #define TOKEN struct tok
42 1.1 eeh */
43 1.1 eeh %}
44 1.1 eeh
45 1.1 eeh decimal [0-9]
46 1.1 eeh hex [0-9A-Fa-f]
47 1.1 eeh octal [0-7]
48 1.1 eeh white [ \t\n\r\f]
49 1.1 eeh tail {white}
50 1.1 eeh
51 1.1 eeh %{
52 1.3 mrg #include <sys/types.h>
53 1.3 mrg
54 1.3 mrg #include <assert.h>
55 1.1 eeh #include <errno.h>
56 1.3 mrg #include <fcntl.h>
57 1.1 eeh #include <stdio.h>
58 1.1 eeh #include <string.h>
59 1.2 eeh #include <unistd.h>
60 1.3 mrg
61 1.1 eeh #include "fgen.h"
62 1.1 eeh TOKEN token;
63 1.1 eeh
64 1.1 eeh /*
65 1.1 eeh * Global variables that control the parse state.
66 1.1 eeh */
67 1.1 eeh
68 1.1 eeh struct fcode *dictionary = NULL;
69 1.1 eeh struct macro *aliases = NULL;
70 1.1 eeh int outf = 1; /* stdout */
71 1.1 eeh int state = 0;
72 1.1 eeh int nextfcode = 0x800;
73 1.1 eeh int base = TOK_HEX;
74 1.1 eeh long outpos;
75 1.1 eeh char *outbuf = NULL;
76 1.1 eeh #define BUFCLICK (1024*1024)
77 1.1 eeh size_t outbufsiz = 0;
78 1.1 eeh char *myname = NULL;
79 1.1 eeh int offsetsize = 8;
80 1.1 eeh int defining = 0;
81 1.1 eeh int tokenizer = 0;
82 1.1 eeh
83 1.1 eeh #define PSTKSIZ 1024
84 1.1 eeh Cell parse_stack[PSTKSIZ];
85 1.1 eeh int parse_stack_ptr = 0;
86 1.1 eeh
87 1.3 mrg int main __P((int, char *[]));
88 1.2 eeh YY_DECL;
89 1.2 eeh
90 1.1 eeh int debug = 0;
91 1.1 eeh #define ASSERT if (debug) assert
92 1.2 eeh #define STATE(y, x) do { if (debug) printf( "%ld State %s: token `%s'\n", outpos, x, y); } while (0)
93 1.3 mrg
94 1.3 mrg #define YY_NO_UNPUT
95 1.1 eeh %}
96 1.1 eeh
97 1.1 eeh %%
98 1.1 eeh
99 1.1 eeh 0 { token.type = TOK_OTHER; token.text = yytext;
100 1.1 eeh return &token; }
101 1.1 eeh
102 1.1 eeh 1 { token.type = TOK_OTHER; token.text = yytext;
103 1.1 eeh return &token; }
104 1.1 eeh
105 1.1 eeh 2 { token.type = TOK_OTHER; token.text = yytext;
106 1.1 eeh return &token; }
107 1.1 eeh
108 1.1 eeh 3 { token.type = TOK_OTHER; token.text = yytext;
109 1.1 eeh return &token; }
110 1.1 eeh
111 1.1 eeh -1 { token.type = TOK_OTHER; token.text = yytext;
112 1.1 eeh return &token; }
113 1.1 eeh
114 1.1 eeh {white}* /* whitespace -- keep looping */ ;
115 1.1 eeh
116 1.1 eeh \\[^\n]*\n /* end of line comment -- keep looping */ { STATE(yytext, "EOL comment"); }
117 1.1 eeh
118 1.1 eeh -?{hex}+ { token.type = TOK_NUMBER; token.text = yytext;
119 1.1 eeh return &token; }
120 1.1 eeh
121 1.1 eeh \'.\' { token.type = TOK_C_LIT; token.text = yytext; return &token; }
122 1.1 eeh
123 1.1 eeh \"{white}*(\\\"|[^"])*\" { token.type = TOK_STRING_LIT; token.text = yytext;
124 1.1 eeh return &token; } /* String started by `"' or `."' */
125 1.1 eeh
126 1.1 eeh \.\({white}*(\\\"|[^)])*\) { token.type = TOK_PSTRING; token.text = yytext;
127 1.1 eeh return &token; } /* String of type `.(.....)' */
128 1.1 eeh
129 1.1 eeh \.\"{white}*(\\\"|[^"])*\" { token.type = TOK_PSTRING; token.text = yytext;
130 1.1 eeh return &token; }
131 1.1 eeh
132 1.1 eeh "(" { token.type = TOK_COMMENT; token.text = yytext;
133 1.1 eeh return &token; }
134 1.1 eeh
135 1.1 eeh ")" { token.type = TOK_ENDCOMMENT; token.text = yytext;
136 1.1 eeh return &token; }
137 1.1 eeh
138 1.1 eeh ":" { token.type = TOK_COLON; token.text = yytext;
139 1.1 eeh return &token; }
140 1.1 eeh
141 1.1 eeh ";" { token.type = TOK_SEMICOLON; token.text = yytext;
142 1.1 eeh return &token; }
143 1.1 eeh
144 1.1 eeh \' { token.type = TOK_TOKENIZE; token.text = yytext;
145 1.1 eeh return &token; }
146 1.1 eeh
147 1.1 eeh [aA][gG][aA][iI][nN] { token.type = TOK_AGAIN; token.text = yytext;
148 1.1 eeh return &token; }
149 1.1 eeh
150 1.1 eeh [aA][lL][iI][aA][sS] { token.type = TOK_ALIAS; token.text = yytext;
151 1.1 eeh return &token; }
152 1.1 eeh
153 1.1 eeh \[\'\] { token.type = TOK_GETTOKEN; token.text = yytext;
154 1.1 eeh return &token; }
155 1.1 eeh
156 1.1 eeh [aA][sS][cC][iI][iI] { token.type = TOK_ASCII; token.text = yytext;
157 1.1 eeh return &token; }
158 1.1 eeh
159 1.1 eeh [bB][eE][gG][iI][nN] { token.type = TOK_BEGIN; token.text = yytext;
160 1.1 eeh return &token; }
161 1.1 eeh
162 1.1 eeh [bB][uU][fF][fF][eE][rR]: { token.type = TOK_BUFFER; token.text = yytext;
163 1.1 eeh return &token; }
164 1.1 eeh
165 1.1 eeh [cC][aA][sS][eE] { token.type = TOK_CASE; token.text = yytext;
166 1.1 eeh return &token; }
167 1.1 eeh
168 1.1 eeh [cC][oO][nN][sS][tT][aA][nN][tT] { token.type = TOK_CONSTANT; token.text = yytext;
169 1.1 eeh return &token; }
170 1.1 eeh
171 1.1 eeh [cC][oO][nN][tT][rR][oO][lL] { token.type = TOK_CONTROL; token.text = yytext;
172 1.1 eeh return &token; }
173 1.1 eeh
174 1.1 eeh [cC][rR][eE][aA][tT][eE] { token.type = TOK_CREATE; token.text = yytext;
175 1.1 eeh return &token; }
176 1.1 eeh
177 1.1 eeh [dD]# { token.type = TOK_DECIMAL; token.text = yytext;
178 1.1 eeh return &token; }
179 1.1 eeh
180 1.1 eeh [dD][eE][cC][iI][mM][aA][lL] { token.type = TOK_DECIMAL; token.text = yytext;
181 1.1 eeh return &token; }
182 1.1 eeh
183 1.1 eeh [dD][eE][fF][eE][rR] { token.type = TOK_DEFER; token.text = yytext;
184 1.1 eeh return &token; }
185 1.1 eeh
186 1.1 eeh \??[dD][oO] { token.type = TOK_DO; token.text = yytext;
187 1.1 eeh return &token; }
188 1.1 eeh
189 1.1 eeh [eE][lL][sS][eE] { token.type = TOK_ELSE; token.text = yytext;
190 1.1 eeh return &token; }
191 1.1 eeh
192 1.1 eeh [eE][nN][dD][cC][aA][sS][eE] { token.type = TOK_ENDCASE; token.text = yytext;
193 1.1 eeh return &token; }
194 1.1 eeh
195 1.1 eeh [eE][nN][dD][oO][fF] { token.type = TOK_ENDOF; token.text = yytext;
196 1.1 eeh return &token; }
197 1.1 eeh
198 1.1 eeh [eE][xX][tT][eE][rR][nN][aA][lL] { token.type = TOK_EXTERNAL; token.text = yytext;
199 1.1 eeh return &token; }
200 1.1 eeh
201 1.1 eeh [fF][iI][eE][lL][dD] { token.type = TOK_FIELD; token.text = yytext;
202 1.1 eeh return &token; }
203 1.1 eeh
204 1.1 eeh [hH]# { token.type = TOK_HEX; token.text = yytext;
205 1.1 eeh return &token; }
206 1.1 eeh
207 1.1 eeh [hH][eE][aA][dD][eE][rR][lL][eE][sS][sS] { token.type = TOK_HEADERLESS; token.text = yytext;
208 1.1 eeh return &token; }
209 1.1 eeh
210 1.1 eeh [hH][eE][aA][dD][eE][rR][sS] { token.type = TOK_HEADERS; token.text = yytext;
211 1.1 eeh return &token; }
212 1.1 eeh
213 1.1 eeh [hH][eE][xX] { token.type = TOK_HEX; token.text = yytext;
214 1.1 eeh return &token; }
215 1.1 eeh
216 1.1 eeh [iI][fF] { token.type = TOK_IF; token.text = yytext;
217 1.1 eeh return &token; }
218 1.1 eeh
219 1.1 eeh \??[lL][eE][aA][vV][eE] { token.type = TOK_LEAVE; token.text = yytext;
220 1.1 eeh return &token; }
221 1.1 eeh
222 1.1 eeh \+?[lL][oO][oO][pP] { token.type = TOK_LOOP; token.text = yytext;
223 1.1 eeh return &token; }
224 1.1 eeh
225 1.1 eeh [oO]# { token.type = TOK_OCTAL; token.text = yytext;
226 1.1 eeh return &token; }
227 1.1 eeh
228 1.1 eeh [oO][cC][tT][aA][lL] { token.type = TOK_OCTAL; token.text = yytext;
229 1.1 eeh return &token; }
230 1.1 eeh
231 1.1 eeh [oO][fF] { token.type = TOK_OF; token.text = yytext;
232 1.1 eeh return &token; }
233 1.1 eeh
234 1.1 eeh [rR][eE][pP][eE][aA][tT] { token.type = TOK_REPEAT; token.text = yytext;
235 1.1 eeh return &token; }
236 1.1 eeh
237 1.1 eeh [tT][hH][eE][nN] { token.type = TOK_THEN; token.text = yytext;
238 1.1 eeh return &token; }
239 1.1 eeh
240 1.1 eeh [tT][oO] { token.type = TOK_TO; token.text = yytext;
241 1.1 eeh return &token; }
242 1.1 eeh
243 1.1 eeh [uU][nN][tT][iI][lL] { token.type = TOK_UNTIL; token.text = yytext;
244 1.1 eeh return &token; }
245 1.1 eeh
246 1.1 eeh [vV][aA][lL][uU][eE] { token.type = TOK_VALUE; token.text = yytext;
247 1.1 eeh return &token; }
248 1.1 eeh
249 1.1 eeh [vV][aA][rR][iI][aA][bB][lL][eE] { token.type = TOK_VARIABLE; token.text = yytext;
250 1.1 eeh return &token; }
251 1.1 eeh
252 1.1 eeh [wW][hH][iI][lL][eE] { token.type = TOK_WHILE; token.text = yytext;
253 1.1 eeh return &token; }
254 1.1 eeh
255 1.1 eeh offset16 { token.type = TOK_OFFSET16; token.text = yytext;
256 1.1 eeh return &token; }
257 1.1 eeh
258 1.1 eeh tokenizer\[ { token.type = TOK_BEGTOK; token.text = yytext;
259 1.1 eeh return &token; }
260 1.1 eeh
261 1.1 eeh emit-byte { token.type = TOK_EMIT_BYTE; token.text = yytext;
262 1.1 eeh return &token; }
263 1.1 eeh
264 1.1 eeh \]tokenizer { token.type = TOK_ENDTOK; token.text = yytext;
265 1.1 eeh return &token; }
266 1.1 eeh
267 1.1 eeh fload { token.type = TOK_FLOAD; token.text = yytext;
268 1.1 eeh return &token; }
269 1.1 eeh
270 1.1 eeh
271 1.1 eeh [^ \n\t\r\f]+ { token.type = TOK_OTHER; token.text = yytext;
272 1.1 eeh return &token; }
273 1.1 eeh
274 1.1 eeh <<EOF>> { return NULL; }
275 1.1 eeh %%
276 1.1 eeh
277 1.1 eeh /* Function definitions */
278 1.1 eeh void push __P((Cell));
279 1.1 eeh Cell pop __P((void));
280 1.4 eeh int depth __P((void));
281 1.1 eeh int fadd __P((struct fcode *, struct fcode *));
282 1.1 eeh struct fcode *flookup __P((struct fcode *, char *));
283 1.1 eeh int aadd __P((struct macro *, struct macro *));
284 1.1 eeh struct macro *alookup __P((struct macro *, char *));
285 1.1 eeh void initdic __P((void));
286 1.1 eeh void usage __P((char *));
287 1.3 mrg void tokenize __P((YY_BUFFER_STATE));
288 1.1 eeh int emit __P((char *));
289 1.1 eeh int spit __P((long));
290 1.3 mrg void sspit __P((char *));
291 1.1 eeh int apply_macros __P((YY_BUFFER_STATE, char *));
292 1.2 eeh int main __P((int argc, char *argv[]));
293 1.1 eeh
294 1.1 eeh /*
295 1.1 eeh * Standard FCode names and numbers. Includes standard
296 1.1 eeh * tokenizer aliases.
297 1.1 eeh */
298 1.1 eeh struct fcode fcodes[] = {
299 1.1 eeh { "end0", 0x0000 },
300 1.1 eeh { "b(lit)", 0x0010 },
301 1.1 eeh { "b(')", 0x0011 },
302 1.1 eeh { "b(\")", 0x0012 },
303 1.1 eeh { "bbranch", 0x0013 },
304 1.1 eeh { "b?branch", 0x0014 },
305 1.1 eeh { "b(loop)", 0x0015 },
306 1.1 eeh { "b(+loop)", 0x0016 },
307 1.1 eeh { "b(do)", 0x0017 },
308 1.1 eeh { "b(?do)", 0x0018 },
309 1.1 eeh { "i", 0x0019 },
310 1.1 eeh { "j", 0x001a },
311 1.1 eeh { "b(leave)", 0x001b },
312 1.1 eeh { "b(of)", 0x001c },
313 1.1 eeh { "execute", 0x001d },
314 1.1 eeh { "+", 0x001e },
315 1.1 eeh { "-", 0x001f },
316 1.1 eeh { "*", 0x0020 },
317 1.1 eeh { "/", 0x0021 },
318 1.1 eeh { "mod", 0x0022 },
319 1.1 eeh { "and", 0x0023 },
320 1.1 eeh { "or", 0x0024 },
321 1.1 eeh { "xor", 0x0025 },
322 1.1 eeh { "invert", 0x0026 },
323 1.1 eeh { "lshift", 0x0027 },
324 1.1 eeh { "rshift", 0x0028 },
325 1.1 eeh { ">>a", 0x0029 },
326 1.1 eeh { "/mod", 0x002a },
327 1.1 eeh { "u/mod", 0x002b },
328 1.1 eeh { "negate", 0x002c },
329 1.1 eeh { "abs", 0x002d },
330 1.1 eeh { "min", 0x002e },
331 1.1 eeh { "max", 0x002f },
332 1.1 eeh { ">r", 0x0030 },
333 1.1 eeh { "r>", 0x0031 },
334 1.1 eeh { "r@", 0x0032 },
335 1.1 eeh { "exit", 0x0033 },
336 1.1 eeh { "0=", 0x0034 },
337 1.1 eeh { "0<>", 0x0035 },
338 1.1 eeh { "0<", 0x0036 },
339 1.1 eeh { "0<=", 0x0037 },
340 1.1 eeh { "0>", 0x0038 },
341 1.1 eeh { "0>=", 0x0039 },
342 1.1 eeh { "<", 0x003a },
343 1.1 eeh { ">", 0x003b },
344 1.1 eeh { "=", 0x003c },
345 1.1 eeh { "<>", 0x003d },
346 1.1 eeh { "u>", 0x003e },
347 1.1 eeh { "u<=", 0x003f },
348 1.1 eeh { "u<", 0x0040 },
349 1.1 eeh { "u>=", 0x0041 },
350 1.1 eeh { ">=", 0x0042 },
351 1.1 eeh { "<=", 0x0043 },
352 1.1 eeh { "between", 0x0044 },
353 1.1 eeh { "within", 0x0045 },
354 1.1 eeh { "drop", 0x0046 },
355 1.1 eeh { "dup", 0x0047 },
356 1.1 eeh { "over", 0x0048 },
357 1.1 eeh { "swap", 0x0049 },
358 1.1 eeh { "rot", 0x004a },
359 1.1 eeh { "-rot", 0x004b },
360 1.1 eeh { "tuck", 0x004c },
361 1.1 eeh { "nip", 0x004d },
362 1.1 eeh { "pick", 0x004e },
363 1.1 eeh { "roll", 0x004f },
364 1.1 eeh { "?dup", 0x0050 },
365 1.1 eeh { "depth", 0x0051 },
366 1.1 eeh { "2drop", 0x0052 },
367 1.1 eeh { "2dup", 0x0053 },
368 1.1 eeh { "2over", 0x0054 },
369 1.1 eeh { "2swap", 0x0055 },
370 1.1 eeh { "2rot", 0x0056 },
371 1.1 eeh { "2/", 0x0057 },
372 1.1 eeh { "u2/", 0x0058 },
373 1.1 eeh { "2*", 0x0059 },
374 1.1 eeh { "/c", 0x005a },
375 1.1 eeh { "/w", 0x005b },
376 1.1 eeh { "/l", 0x005c },
377 1.1 eeh { "/n", 0x005d },
378 1.1 eeh { "ca+", 0x005e },
379 1.1 eeh { "wa+", 0x005f },
380 1.1 eeh { "la+", 0x0060 },
381 1.1 eeh { "na+", 0x0061 },
382 1.1 eeh { "char+", 0x0062 },
383 1.1 eeh { "wa1+", 0x0063 },
384 1.1 eeh { "la1+", 0x0064 },
385 1.1 eeh { "cell+", 0x0065 },
386 1.1 eeh { "chars", 0x0066 },
387 1.1 eeh { "/w*", 0x0067 },
388 1.1 eeh { "/l*", 0x0068 },
389 1.1 eeh { "cells", 0x0069 },
390 1.1 eeh { "on", 0x006a },
391 1.1 eeh { "off", 0x006b },
392 1.1 eeh { "+!", 0x006c },
393 1.1 eeh { "@", 0x006d },
394 1.1 eeh { "l@", 0x006e },
395 1.1 eeh { "w@", 0x006f },
396 1.1 eeh { "<w@", 0x0070 },
397 1.1 eeh { "c@", 0x0071 },
398 1.1 eeh { "!", 0x0072 },
399 1.1 eeh { "l!", 0x0073 },
400 1.1 eeh { "w!", 0x0074 },
401 1.1 eeh { "c!", 0x0075 },
402 1.1 eeh { "2@", 0x0076 },
403 1.1 eeh { "2!", 0x0077 },
404 1.1 eeh { "move", 0x0078 },
405 1.1 eeh { "fill", 0x0079 },
406 1.1 eeh { "comp", 0x007a },
407 1.1 eeh { "noop", 0x007b },
408 1.1 eeh { "lwsplit", 0x007c },
409 1.1 eeh { "wjoin", 0x007d },
410 1.1 eeh { "lbsplit", 0x007e },
411 1.1 eeh { "bljoin", 0x007f },
412 1.1 eeh { "wbflip", 0x0080 },
413 1.1 eeh { "upc", 0x0081 },
414 1.1 eeh { "lcc", 0x0082 },
415 1.1 eeh { "pack", 0x0083 },
416 1.1 eeh { "count", 0x0084 },
417 1.1 eeh { "body>", 0x0085 },
418 1.1 eeh { ">body", 0x0086 },
419 1.1 eeh { "fcode-revision", 0x0087 },
420 1.1 eeh { "span", 0x0088 },
421 1.1 eeh { "unloop", 0x0089 },
422 1.1 eeh { "expect", 0x008a },
423 1.1 eeh { "alloc-mem", 0x008b },
424 1.1 eeh { "free-mem", 0x008c },
425 1.1 eeh { "key?", 0x008d },
426 1.1 eeh { "key", 0x008e },
427 1.1 eeh { "emit", 0x008f },
428 1.1 eeh { "type", 0x0090 },
429 1.1 eeh { "(cr", 0x0091 },
430 1.1 eeh { "cr", 0x0092 },
431 1.1 eeh { "#out", 0x0093 },
432 1.1 eeh { "#line", 0x0094 },
433 1.1 eeh { "hold", 0x0095 },
434 1.1 eeh { "<#", 0x0096 },
435 1.1 eeh { "u#>", 0x0097 },
436 1.1 eeh { "sign", 0x0098 },
437 1.1 eeh { "u#", 0x0099 },
438 1.1 eeh { "u#s", 0x009a },
439 1.1 eeh { "u.", 0x009b },
440 1.1 eeh { "u.r", 0x009c },
441 1.1 eeh { ".", 0x009d },
442 1.1 eeh { ".r", 0x009e },
443 1.1 eeh { ".s", 0x009f },
444 1.1 eeh { "base", 0x00a0 },
445 1.1 eeh { "convert", 0x00a1 },
446 1.1 eeh { "$number", 0x00a2 },
447 1.1 eeh { "digit", 0x00a3 },
448 1.1 eeh { "-1", 0x00a4 },
449 1.1 eeh { "true", 0x00a4 },
450 1.1 eeh { "0", 0x00a5 },
451 1.1 eeh { "1", 0x00a6 },
452 1.1 eeh { "2", 0x00a7 },
453 1.1 eeh { "3", 0x00a8 },
454 1.1 eeh { "bl", 0x00a9 },
455 1.1 eeh { "bs", 0x00aa },
456 1.1 eeh { "bell", 0x00ab },
457 1.1 eeh { "bounds", 0x00ac },
458 1.1 eeh { "here", 0x00ad },
459 1.1 eeh { "aligned", 0x00ae },
460 1.1 eeh { "wbsplit", 0x00af },
461 1.1 eeh { "bwjoin", 0x00b0 },
462 1.1 eeh { "b(<mark)", 0x00b1 },
463 1.1 eeh { "b(>resolve)", 0x00b2 },
464 1.1 eeh { "set-token-table", 0x00b3 },
465 1.1 eeh { "set-table", 0x00b4 },
466 1.1 eeh { "new-token", 0x00b5 },
467 1.1 eeh { "named-token", 0x00b6 },
468 1.1 eeh { "b(:)", 0x00b7 },
469 1.1 eeh { "b(value)", 0x00b8 },
470 1.1 eeh { "b(variable)", 0x00b9 },
471 1.1 eeh { "b(constant)", 0x00ba },
472 1.1 eeh { "b(create)", 0x00bb },
473 1.1 eeh { "b(defer)", 0x00bc },
474 1.1 eeh { "b(buffer:)", 0x00bd },
475 1.1 eeh { "b(field)", 0x00be },
476 1.1 eeh { "b(code)", 0x00bf },
477 1.1 eeh { "instance", 0x00c0 },
478 1.1 eeh { "b(;)", 0x00c2 },
479 1.1 eeh { "b(to)", 0x00c3 },
480 1.1 eeh { "b(case)", 0x00c4 },
481 1.1 eeh { "b(endcase)", 0x00c5 },
482 1.1 eeh { "b(endof)", 0x00c6 },
483 1.1 eeh { "#", 0x00c7 },
484 1.1 eeh { "#s", 0x00c8 },
485 1.1 eeh { "#>", 0x00c9 },
486 1.1 eeh { "external-token", 0x00ca },
487 1.1 eeh { "$find", 0x00cb },
488 1.1 eeh { "offset16", 0x00cc },
489 1.1 eeh { "evaluate", 0x00cd },
490 1.1 eeh { "c,", 0x00d0 },
491 1.1 eeh { "w,", 0x00d1 },
492 1.1 eeh { "l,", 0x00d2 },
493 1.1 eeh { "'", 0x00d3 },
494 1.1 eeh { "um*", 0x00d4 },
495 1.1 eeh { "um/mod", 0x00d5 },
496 1.1 eeh { "d+", 0x00d8 },
497 1.1 eeh { "d-", 0x00d9 },
498 1.1 eeh { "get-token", 0x00da },
499 1.1 eeh { "set-token", 0x00db },
500 1.1 eeh { "state", 0x00dc },
501 1.1 eeh { "compile,", 0x00dd },
502 1.1 eeh { "behavior", 0x00de },
503 1.1 eeh { "start0", 0x00f0 },
504 1.1 eeh { "start1", 0x00f1 },
505 1.1 eeh { "start2", 0x00f2 },
506 1.1 eeh { "start4", 0x00f3 },
507 1.1 eeh { "ferror", 0x00fc },
508 1.1 eeh { "version1", 0x00fd },
509 1.1 eeh { "4-byte-id", 0x00fe },
510 1.1 eeh { "end1", 0x00ff },
511 1.1 eeh { "dma-alloc", 0x0101 },
512 1.1 eeh { "my-address", 0x0102 },
513 1.1 eeh { "my-space", 0x0103 },
514 1.1 eeh { "memmap", 0x0104 },
515 1.1 eeh { "free-virtual", 0x0105 },
516 1.1 eeh { ">physical", 0x0106 },
517 1.1 eeh { "my-params", 0x010f },
518 1.1 eeh { "property", 0x0110 },
519 1.1 eeh { "encode-int", 0x0111 },
520 1.1 eeh { "encode+", 0x0112 },
521 1.1 eeh { "encode-phys", 0x0113 },
522 1.1 eeh { "encode-string", 0x0114 },
523 1.1 eeh { "encode-bytes", 0x0115 },
524 1.1 eeh { "reg", 0x0116 },
525 1.1 eeh { "intr", 0x0117 },
526 1.1 eeh { "driver", 0x0118 },
527 1.1 eeh { "model", 0x0119 },
528 1.1 eeh { "device-type", 0x011a },
529 1.1 eeh { "parse-2int", 0x011b },
530 1.1 eeh { "is-install", 0x011c },
531 1.1 eeh { "is-remove", 0x011d },
532 1.1 eeh { "is-selftest", 0x011e },
533 1.1 eeh { "new-device", 0x011f },
534 1.1 eeh { "diagnostic-mode?", 0x0120 },
535 1.1 eeh { "display-status", 0x0121 },
536 1.1 eeh { "memory-test-suite", 0x0122 },
537 1.1 eeh { "group-code", 0x0123 },
538 1.1 eeh { "mask", 0x0124 },
539 1.1 eeh { "get-msecs", 0x0125 },
540 1.1 eeh { "ms", 0x0126 },
541 1.1 eeh { "find-device", 0x0127 },
542 1.1 eeh { "decode-phys", 0x0128 },
543 1.1 eeh { "map-low", 0x0130 },
544 1.1 eeh { "sbus-intr>cpu", 0x0131 },
545 1.1 eeh { "#lines", 0x0150 },
546 1.1 eeh { "#columns", 0x0151 },
547 1.1 eeh { "line#", 0x0152 },
548 1.1 eeh { "column#", 0x0153 },
549 1.1 eeh { "inverse?", 0x0154 },
550 1.1 eeh { "inverse-screen?", 0x0155 },
551 1.1 eeh { "frame-buffer-busy?", 0x0156 },
552 1.1 eeh { "draw-character", 0x0157 },
553 1.1 eeh { "reset-screen", 0x0158 },
554 1.1 eeh { "toggle-cursor", 0x0159 },
555 1.1 eeh { "erase-screen", 0x015a },
556 1.1 eeh { "blink-screen", 0x015b },
557 1.1 eeh { "invert-screen", 0x015c },
558 1.1 eeh { "insert-characters", 0x015d },
559 1.1 eeh { "delete-characters", 0x015e },
560 1.1 eeh { "insert-lines", 0x015f },
561 1.1 eeh { "delete-lines", 0x0160 },
562 1.1 eeh { "draw-logo", 0x0161 },
563 1.1 eeh { "frame-buffer-addr", 0x0162 },
564 1.1 eeh { "screen-height", 0x0163 },
565 1.1 eeh { "screen-width", 0x0164 },
566 1.1 eeh { "window-top", 0x0165 },
567 1.1 eeh { "window-left", 0x0166 },
568 1.1 eeh { "default-font", 0x016a },
569 1.1 eeh { "set-font", 0x016b },
570 1.1 eeh { "char-height", 0x016c },
571 1.1 eeh { "char-width", 0x016d },
572 1.1 eeh { ">font", 0x016e },
573 1.1 eeh { "fontbytes", 0x016f },
574 1.1 eeh { "fb8-draw-character", 0x0180 },
575 1.1 eeh { "fb8-reset-screen", 0x0181 },
576 1.1 eeh { "fb8-toggle-cursor", 0x0182 },
577 1.1 eeh { "fb8-erase-screen", 0x0183 },
578 1.1 eeh { "fb8-blink-screen", 0x0184 },
579 1.1 eeh { "fb8-invert-screen", 0x0185 },
580 1.1 eeh { "fb8-insert-characters", 0x0186 },
581 1.1 eeh { "fb8-delete-characters", 0x0187 },
582 1.1 eeh { "fb8-inisert-lines", 0x0188 },
583 1.1 eeh { "fb8-delete-lines", 0x0189 },
584 1.1 eeh { "fb8-draw-logo", 0x018a },
585 1.1 eeh { "fb8-install", 0x018b },
586 1.1 eeh { "return-buffer", 0x01a0 },
587 1.1 eeh { "xmit-packet", 0x01a1 },
588 1.1 eeh { "poll-packet", 0x01a2 },
589 1.1 eeh { "mac-address", 0x01a4 },
590 1.1 eeh { "device-name", 0x0201 },
591 1.1 eeh { "my-args", 0x0202 },
592 1.1 eeh { "my-self", 0x0203 },
593 1.1 eeh { "find-package", 0x0204 },
594 1.1 eeh { "open-package", 0x0205 },
595 1.1 eeh { "close-package", 0x0206 },
596 1.1 eeh { "find-method", 0x0207 },
597 1.1 eeh { "call-package", 0x0208 },
598 1.1 eeh { "$call-parent", 0x0209 },
599 1.1 eeh { "my-parent", 0x020a },
600 1.1 eeh { "ihandle>phandle", 0x020b },
601 1.1 eeh { "my-unit", 0x020d },
602 1.1 eeh { "$call-method", 0x020e },
603 1.1 eeh { "$open-package", 0x020f },
604 1.1 eeh { "processor-type", 0x0210 },
605 1.1 eeh { "firmware-version", 0x0211 },
606 1.1 eeh { "fcode-version", 0x0212 },
607 1.1 eeh { "alarm", 0x0213 },
608 1.1 eeh { "(is-user-word)", 0x0214 },
609 1.1 eeh { "suspend-fcode", 0x0215 },
610 1.1 eeh { "abort", 0x0216 },
611 1.1 eeh { "catch", 0x0217 },
612 1.1 eeh { "throw", 0x0218 },
613 1.1 eeh { "user-abort", 0x0219 },
614 1.1 eeh { "get-my-property", 0x021a },
615 1.1 eeh { "decode-int", 0x021b },
616 1.1 eeh { "decode-string", 0x021c },
617 1.1 eeh { "get-inherited-property", 0x021d },
618 1.1 eeh { "delete-property", 0x021e },
619 1.1 eeh { "get-package-property", 0x021f },
620 1.1 eeh { "cpeek", 0x0220 },
621 1.1 eeh { "wpeek", 0x0221 },
622 1.1 eeh { "lpeek", 0x0222 },
623 1.1 eeh { "cpoke", 0x0223 },
624 1.1 eeh { "wpoke", 0x0224 },
625 1.1 eeh { "lpoke", 0x0225 },
626 1.1 eeh { "lwflip", 0x0226 },
627 1.1 eeh { "lbflip", 0x0227 },
628 1.1 eeh { "lbflips", 0x0228 },
629 1.1 eeh { "adr-mask", 0x0229 },
630 1.1 eeh { "rb@", 0x0230 },
631 1.1 eeh { "rb!", 0x0231 },
632 1.1 eeh { "rw@", 0x0232 },
633 1.1 eeh { "rw!", 0x0233 },
634 1.1 eeh { "rl@", 0x0234 },
635 1.1 eeh { "rl!", 0x0235 },
636 1.1 eeh { "wbflips", 0x0236 },
637 1.1 eeh { "lwflips", 0x0237 },
638 1.1 eeh { "probe", 0x0238 },
639 1.1 eeh { "probe-virtual", 0x0239 },
640 1.1 eeh { "child", 0x023b },
641 1.1 eeh { "peer", 0x023c },
642 1.1 eeh { "next-property", 0x023d },
643 1.1 eeh { "byte-load", 0x023e },
644 1.1 eeh { "set-args", 0x023f },
645 1.1 eeh { "left-parse-string", 0x0240 },
646 1.1 eeh /* 64-bit FCode extensions */
647 1.1 eeh { "bxjoin", 0x0241 },
648 1.1 eeh { "<l@", 0x0242 },
649 1.1 eeh { "lxjoin", 0x0243 },
650 1.1 eeh { "rx@", 0x022e },
651 1.1 eeh { "rx!", 0x022f },
652 1.1 eeh { "wxjoin", 0x0244 },
653 1.1 eeh { "x,", 0x0245 },
654 1.1 eeh { "x@", 0x0246 },
655 1.1 eeh { "x!", 0x0247 },
656 1.1 eeh { "/x", 0x0248 },
657 1.1 eeh { "/x*", 0x0249 },
658 1.1 eeh { "xa+", 0x024a },
659 1.1 eeh { "xa1+", 0x024b },
660 1.1 eeh { "xbflip", 0x024c },
661 1.1 eeh { "xbflips", 0x024d },
662 1.1 eeh { "xbsplit", 0x024e },
663 1.1 eeh { "xlflip", 0x024f },
664 1.1 eeh { "xlflips", 0x0250 },
665 1.1 eeh { "xlsplit", 0x0251 },
666 1.1 eeh { "xwflip", 0x0252 },
667 1.1 eeh { "xwflips", 0x0253 },
668 1.1 eeh { "xwsplit", 0x0254 },
669 1.1 eeh { NULL, NULL }
670 1.1 eeh };
671 1.1 eeh
672 1.1 eeh /*
673 1.1 eeh * Default macros -- can be overridden by colon definitions.
674 1.1 eeh */
675 1.1 eeh struct macro macros[] = {
676 1.1 eeh { "eval", "evaluate" }, /* Build a more balanced tree */
677 1.1 eeh { "(.)", "dup abs <# u#s swap sign u#>" },
678 1.1 eeh { "<<", "lshift" },
679 1.1 eeh { ">>", "rshift" },
680 1.1 eeh { "?", "@ ." },
681 1.1 eeh { "1+", "1 +" },
682 1.1 eeh { "1-", "1 -" },
683 1.1 eeh { "2+", "2 +" },
684 1.1 eeh { "2-", "2 -" },
685 1.1 eeh { "abort\"", "-2 throw" },
686 1.1 eeh { "accept", "span @ -rot expect span @ swap span !" },
687 1.1 eeh { "allot", "0 max 0 ?do 0 c, loop" },
688 1.1 eeh { "blank", "bl fill" },
689 1.1 eeh { "/c*", "chars" },
690 1.1 eeh { "ca1+", "char+" },
691 1.1 eeh { "carret", "b(lit) 00 00 00 0x0d" },
692 1.1 eeh { ".d" "base @ swap 0x0a base ! . base !" },
693 1.1 eeh { "decode-bytes", ">r over r@ + swap r@ - rot r>" },
694 1.1 eeh { "3drop", "drop 2drop" },
695 1.1 eeh { "3dup", "2 pick 2 pick 2 pick" },
696 1.1 eeh { "erase", "0 fill" },
697 1.1 eeh { "false", "0" },
698 1.1 eeh { ".h" "base @ swap 0x10 base ! . base !" },
699 1.1 eeh { "linefeed", "b(lit) 00 00 00 0x0a" },
700 1.1 eeh { "/n*", "cells" },
701 1.1 eeh { "na1+", "cell+", },
702 1.1 eeh { "not", "invert", },
703 1.1 eeh { "s.", "(.) type space" },
704 1.1 eeh { "space", "bl emit" },
705 1.1 eeh { "spaces", "0 max 0 ?do space loop" },
706 1.1 eeh { "struct", "0" },
707 1.1 eeh { "true", "-1" },
708 1.1 eeh { "(u,)", "<# u#s u#>" },
709 1.1 eeh { NULL, NULL }
710 1.1 eeh };
711 1.1 eeh
712 1.1 eeh /*
713 1.1 eeh * Parser stack control functions.
714 1.1 eeh */
715 1.1 eeh
716 1.1 eeh void
717 1.1 eeh push(val)
718 1.1 eeh Cell val;
719 1.1 eeh {
720 1.1 eeh parse_stack[parse_stack_ptr++] = val;
721 1.1 eeh if (parse_stack_ptr >= PSTKSIZ) {
722 1.1 eeh (void)printf( "Parse stack overflow\n");
723 1.1 eeh exit(1);
724 1.1 eeh }
725 1.1 eeh }
726 1.1 eeh
727 1.1 eeh Cell
728 1.1 eeh pop()
729 1.1 eeh {
730 1.1 eeh ASSERT(parse_stack_ptr);
731 1.1 eeh return parse_stack[--parse_stack_ptr];
732 1.1 eeh }
733 1.1 eeh
734 1.4 eeh int
735 1.4 eeh depth()
736 1.4 eeh {
737 1.4 eeh return (parse_stack_ptr);
738 1.4 eeh }
739 1.4 eeh
740 1.1 eeh /*
741 1.1 eeh * Insert fcode into dictionary.
742 1.1 eeh */
743 1.1 eeh int
744 1.1 eeh fadd(dict, new)
745 1.1 eeh struct fcode *dict, *new;
746 1.1 eeh {
747 1.1 eeh int res = strcmp(dict->name, new->name);
748 1.1 eeh
749 1.1 eeh #ifdef DEBUG
750 1.1 eeh new->type = FCODE;
751 1.1 eeh ASSERT(dict->type == FCODE);
752 1.1 eeh #endif
753 1.1 eeh /* Don't allow duplicate entries. */
754 1.1 eeh if (!res) return (0);
755 1.1 eeh if (res < 0) {
756 1.1 eeh if (dict->l)
757 1.2 eeh return fadd(dict->l, new);
758 1.1 eeh else {
759 1.1 eeh #ifdef DEBUG
760 1.1 eeh if (debug > 1)
761 1.2 eeh (void)printf( "fadd: new FCode `%s' is %lx\n",
762 1.1 eeh new->name, new->num);
763 1.1 eeh #endif
764 1.1 eeh new->l = new->r = NULL;
765 1.1 eeh dict->l = new;
766 1.1 eeh }
767 1.1 eeh } else {
768 1.1 eeh if (dict->r)
769 1.2 eeh return fadd(dict->r, new);
770 1.1 eeh else {
771 1.1 eeh #ifdef DEBUG
772 1.1 eeh if (debug > 1)
773 1.2 eeh (void)printf( "fadd: new FCode `%s' is %lx\n",
774 1.1 eeh new->name, new->num);
775 1.1 eeh #endif
776 1.1 eeh new->l = new->r = NULL;
777 1.1 eeh dict->r = new;
778 1.1 eeh }
779 1.1 eeh }
780 1.1 eeh return (1);
781 1.1 eeh }
782 1.1 eeh
783 1.1 eeh /*
784 1.1 eeh * Look for a code in the dictionary.
785 1.1 eeh */
786 1.1 eeh struct fcode *
787 1.1 eeh flookup(dict, str)
788 1.1 eeh struct fcode *dict;
789 1.1 eeh char *str;
790 1.1 eeh {
791 1.1 eeh int res;
792 1.1 eeh if (!dict) return (dict);
793 1.1 eeh
794 1.1 eeh res = strcmp(dict->name, str);
795 1.1 eeh #ifdef DEBUG
796 1.1 eeh ASSERT(dict->type == FCODE);
797 1.1 eeh if (debug > 2)
798 1.1 eeh (void)printf( "flookup: `%s' and `%s' %s match\n",
799 1.1 eeh str, dict->name, res?"don't":"do");
800 1.1 eeh #endif
801 1.1 eeh if (!res) return (dict);
802 1.1 eeh if (res < 0)
803 1.1 eeh return (flookup(dict->l, str));
804 1.1 eeh else
805 1.1 eeh return (flookup(dict->r, str));
806 1.1 eeh
807 1.1 eeh }
808 1.1 eeh
809 1.1 eeh /*
810 1.1 eeh * Insert alias into macros.
811 1.1 eeh */
812 1.1 eeh int
813 1.1 eeh aadd(dict, new)
814 1.3 mrg struct macro *dict, *new;
815 1.1 eeh {
816 1.1 eeh int res = strcmp(dict->name, new->name);
817 1.1 eeh
818 1.1 eeh #ifdef DEBUG
819 1.1 eeh new->type = MACRO;
820 1.1 eeh ASSERT(dict->type == MACRO);
821 1.1 eeh #endif
822 1.1 eeh /* Don't allow duplicate entries. */
823 1.1 eeh if (!res) return (0);
824 1.1 eeh if (res < 0) {
825 1.1 eeh if (dict->l)
826 1.2 eeh return aadd(dict->l, new);
827 1.1 eeh else {
828 1.1 eeh new->l = new->r = NULL;
829 1.1 eeh dict->l = new;
830 1.1 eeh #ifdef DEBUG
831 1.1 eeh if (debug > 1)
832 1.1 eeh (void)printf( "aadd: new alias `%s' to `%s'\n",
833 1.1 eeh new->name, new->equiv);
834 1.1 eeh #endif
835 1.1 eeh }
836 1.1 eeh } else {
837 1.1 eeh if (dict->r)
838 1.2 eeh return aadd(dict->r, new);
839 1.1 eeh else {
840 1.1 eeh new->l = new->r = NULL;
841 1.1 eeh dict->r = new;
842 1.1 eeh #ifdef DEBUG
843 1.1 eeh if (debug > 1)
844 1.1 eeh (void)printf( "aadd: new alias `%s' to `%s'\n",
845 1.1 eeh new->name, new->equiv);
846 1.1 eeh #endif
847 1.1 eeh }
848 1.1 eeh }
849 1.1 eeh return (1);
850 1.1 eeh }
851 1.1 eeh
852 1.1 eeh /*
853 1.1 eeh * Look for a macro in the aliases.
854 1.1 eeh */
855 1.1 eeh struct macro *
856 1.1 eeh alookup(dict, str)
857 1.1 eeh struct macro *dict;
858 1.1 eeh char *str;
859 1.1 eeh {
860 1.1 eeh int res;
861 1.1 eeh if (!dict) return (dict);
862 1.1 eeh
863 1.1 eeh #ifdef DEBUG
864 1.1 eeh ASSERT(dict->type == MACRO);
865 1.1 eeh #endif
866 1.1 eeh res = strcmp(dict->name, str);
867 1.1 eeh if (!res) return (dict);
868 1.1 eeh if (res < 0)
869 1.1 eeh return (alookup(dict->l, str));
870 1.1 eeh else
871 1.1 eeh return (alookup(dict->r, str));
872 1.1 eeh
873 1.1 eeh }
874 1.1 eeh
875 1.1 eeh /*
876 1.1 eeh * Bootstrap the dictionary and then install
877 1.1 eeh * all the standard FCodes.
878 1.1 eeh */
879 1.1 eeh void
880 1.1 eeh initdic()
881 1.1 eeh {
882 1.1 eeh struct fcode *code = fcodes;
883 1.1 eeh struct macro *alias = macros;
884 1.1 eeh
885 1.1 eeh ASSERT(dictionary == NULL);
886 1.1 eeh code->l = code->r = NULL;
887 1.1 eeh dictionary = code;
888 1.1 eeh #ifdef DEBUG
889 1.1 eeh code->type = FCODE;
890 1.1 eeh #endif
891 1.1 eeh
892 1.1 eeh while ((++code)->name) {
893 1.1 eeh if(!fadd(dictionary, code)) {
894 1.1 eeh printf("init: duplicate dictionary entry %s\n",
895 1.1 eeh code->name);
896 1.1 eeh abort();
897 1.1 eeh }
898 1.1 eeh }
899 1.1 eeh
900 1.1 eeh ASSERT(aliases == NULL);
901 1.1 eeh aliases = alias;
902 1.1 eeh alias->l = alias->r = NULL;
903 1.1 eeh #ifdef DEBUG
904 1.1 eeh alias->type = MACRO;
905 1.1 eeh #endif
906 1.1 eeh while ((++alias)->name) {
907 1.1 eeh if(!aadd(aliases, alias)) {
908 1.1 eeh printf("init: duplicate macro entry %s\n",
909 1.1 eeh alias->name);
910 1.1 eeh abort();
911 1.1 eeh }
912 1.1 eeh }
913 1.1 eeh
914 1.1 eeh }
915 1.1 eeh
916 1.1 eeh int
917 1.1 eeh apply_macros(input, str)
918 1.1 eeh YY_BUFFER_STATE input;
919 1.1 eeh char *str;
920 1.1 eeh {
921 1.1 eeh struct macro *xform = alookup(aliases, str);
922 1.1 eeh
923 1.1 eeh if (xform) {
924 1.1 eeh YY_BUFFER_STATE newbuf;
925 1.1 eeh
926 1.1 eeh newbuf = yy_scan_string(xform->equiv);
927 1.1 eeh yy_switch_to_buffer(newbuf);
928 1.1 eeh tokenize(newbuf);
929 1.1 eeh yy_switch_to_buffer(input);
930 1.1 eeh yy_delete_buffer(newbuf);
931 1.1 eeh }
932 1.1 eeh return (xform != NULL);
933 1.1 eeh }
934 1.1 eeh
935 1.1 eeh void
936 1.1 eeh usage(me)
937 1.3 mrg char *me;
938 1.1 eeh {
939 1.3 mrg (void)fprintf(stderr, "%s: [-o <outfile>] <infile>\n", me);
940 1.1 eeh exit(1);
941 1.1 eeh }
942 1.1 eeh
943 1.1 eeh int
944 1.1 eeh main(argc, argv)
945 1.3 mrg int argc;
946 1.3 mrg char *argv[];
947 1.1 eeh {
948 1.1 eeh extern char *optarg;
949 1.1 eeh extern int optind;
950 1.1 eeh int bflag, ch;
951 1.1 eeh FILE *inf;
952 1.1 eeh struct fcode_header *fheader;
953 1.1 eeh YY_BUFFER_STATE inbuf;
954 1.1 eeh char *hdrtype = "version1";
955 1.1 eeh int i;
956 1.1 eeh
957 1.1 eeh outf = 1; /* stdout */
958 1.1 eeh myname = argv[0];
959 1.1 eeh
960 1.1 eeh bflag = 0;
961 1.1 eeh while ((ch = getopt(argc, argv, "d:o:")) != -1)
962 1.1 eeh switch(ch) {
963 1.1 eeh case 'd':
964 1.1 eeh debug = atol(optarg);
965 1.1 eeh break;
966 1.1 eeh case 'o':
967 1.3 mrg if ((outf = open(optarg, O_WRONLY|O_CREAT|O_TRUNC, 0666)) == NULL) {
968 1.1 eeh (void)printf(
969 1.1 eeh "%s: %s: %s\n",
970 1.1 eeh myname, optarg, strerror(errno));
971 1.1 eeh exit(1);
972 1.1 eeh }
973 1.1 eeh break;
974 1.1 eeh case '?':
975 1.1 eeh default:
976 1.1 eeh printf( "Illegal argument %c\n", ch);
977 1.1 eeh usage(myname);
978 1.1 eeh }
979 1.1 eeh argc -= optind;
980 1.1 eeh argv += optind;
981 1.1 eeh
982 1.1 eeh if (argc != 1) printf( "argc = %d\n", argc);
983 1.1 eeh if (argc != 1) usage(myname);
984 1.1 eeh
985 1.1 eeh /*
986 1.1 eeh * Initialization stuff.
987 1.1 eeh */
988 1.1 eeh initdic();
989 1.1 eeh outbufsiz = BUFCLICK;
990 1.1 eeh outbuf = malloc(outbufsiz);
991 1.1 eeh fheader = (struct fcode_header *)outbuf;
992 1.1 eeh outpos = 0;
993 1.1 eeh emit(hdrtype);
994 1.1 eeh outpos = sizeof(*fheader);
995 1.1 eeh
996 1.1 eeh /*
997 1.1 eeh * Do it.
998 1.1 eeh */
999 1.1 eeh
1000 1.1 eeh if ((inf = fopen(argv[0], "r")) == NULL) {
1001 1.1 eeh (void)printf( "%s: Could not open %s: %s\n",
1002 1.1 eeh myname, argv[0], strerror(errno));
1003 1.1 eeh }
1004 1.1 eeh
1005 1.1 eeh inbuf = yy_create_buffer( inf, YY_BUF_SIZE );
1006 1.1 eeh yy_switch_to_buffer(inbuf);
1007 1.3 mrg tokenize(inbuf);
1008 1.1 eeh yy_delete_buffer(inbuf);
1009 1.1 eeh fclose(inf);
1010 1.1 eeh emit("end0");
1011 1.1 eeh
1012 1.1 eeh /* Now calculate length and checksum and stick them in the header */
1013 1.1 eeh fheader->format = 0x08;
1014 1.2 eeh fheader->length = htonl(outpos);
1015 1.1 eeh fheader->checksum = 0;
1016 1.1 eeh for (i = sizeof(*fheader); i<outpos; i++)
1017 1.1 eeh fheader->checksum += outbuf[i];
1018 1.2 eeh fheader->checksum = htons(fheader->checksum);
1019 1.1 eeh
1020 1.1 eeh if (write(outf, outbuf, outpos) != outpos) {
1021 1.1 eeh close(outf);
1022 1.1 eeh (void)printf( "%s: write error %s\n",
1023 1.1 eeh myname, strerror(errno));
1024 1.1 eeh exit(1);
1025 1.1 eeh }
1026 1.1 eeh close(outf);
1027 1.1 eeh return (0);
1028 1.1 eeh };
1029 1.1 eeh
1030 1.1 eeh /*
1031 1.1 eeh * Tokenize one file. This is a separate function so it can
1032 1.1 eeh * be called recursively to parse mutiple levels of include files.
1033 1.1 eeh */
1034 1.1 eeh
1035 1.3 mrg void
1036 1.1 eeh tokenize(input)
1037 1.1 eeh YY_BUFFER_STATE input;
1038 1.1 eeh {
1039 1.1 eeh FILE *inf;
1040 1.1 eeh YY_BUFFER_STATE inbuf;
1041 1.1 eeh TOKEN *token;
1042 1.4 eeh char *last_token = "";
1043 1.1 eeh struct fcode *fcode;
1044 1.1 eeh int pos, off;
1045 1.1 eeh
1046 1.1 eeh while ((token = yylex()) != NULL) {
1047 1.1 eeh switch (token->type) {
1048 1.1 eeh case TOK_NUMBER:
1049 1.1 eeh STATE(token->text, "TOK_NUMBER");
1050 1.1 eeh {
1051 1.1 eeh char *end;
1052 1.1 eeh Cell value;
1053 1.1 eeh
1054 1.1 eeh if (tokenizer) {
1055 1.1 eeh push(strtol(token->text, &end, 16));
1056 1.1 eeh break;
1057 1.1 eeh }
1058 1.1 eeh value = strtol(token->text, &end, base);
1059 1.1 eeh if (*end != 0) {
1060 1.1 eeh (void)printf( "Illegal number conversion\n");
1061 1.1 eeh exit(1);
1062 1.1 eeh }
1063 1.1 eeh /*
1064 1.1 eeh * If this is a 64-bit value we need to store two literals
1065 1.1 eeh * and issue a `lxjoin' to combine them. But that's a future
1066 1.1 eeh * project.
1067 1.1 eeh */
1068 1.1 eeh emit("b(lit)");
1069 1.1 eeh spit(value>>24);
1070 1.1 eeh spit((value>>16)&0x0ff);
1071 1.1 eeh spit((value>>8)&0x0ff);
1072 1.1 eeh spit(value&0x0ff);
1073 1.1 eeh }
1074 1.1 eeh break;
1075 1.1 eeh case TOK_C_LIT:
1076 1.1 eeh STATE(token->text, "TOK_C_LIT");
1077 1.1 eeh emit("b(lit)");
1078 1.1 eeh spit(0);
1079 1.1 eeh spit(0);
1080 1.1 eeh spit(0);
1081 1.1 eeh spit(token->text[1]);
1082 1.3 mrg break;
1083 1.1 eeh case TOK_STRING_LIT:
1084 1.1 eeh STATE(token->text, "TOK_STRING_LIT:");
1085 1.1 eeh {
1086 1.1 eeh int len;
1087 1.1 eeh char *p = token->text;
1088 1.1 eeh
1089 1.1 eeh ++p; /* Skip the quote */
1090 1.1 eeh len = strlen(++p); /* Skip the 1st space */
1091 1.1 eeh if (len > 255) {
1092 1.1 eeh (void)printf( "string length %d too long\n", len);
1093 1.1 eeh exit(1);
1094 1.1 eeh }
1095 1.1 eeh if (p[len-1] == ')' ||
1096 1.1 eeh p[len-1] == '"') {
1097 1.1 eeh p[len-1] = 0;
1098 1.1 eeh }
1099 1.1 eeh emit("b(\")");
1100 1.1 eeh sspit(p);
1101 1.1 eeh }
1102 1.1 eeh break;
1103 1.1 eeh case TOK_PSTRING:
1104 1.1 eeh STATE(token->text, "TOK_PSTRING:");
1105 1.1 eeh {
1106 1.1 eeh int len;
1107 1.1 eeh char *p = token->text;
1108 1.1 eeh
1109 1.1 eeh if (*p++ == '.') p++; /* Skip over delimiter */
1110 1.1 eeh p++; /* Skip over space/tab */
1111 1.1 eeh
1112 1.1 eeh len = strlen(p);
1113 1.1 eeh if (len > 255) {
1114 1.1 eeh (void)printf( "string length %d too long\n", len);
1115 1.1 eeh exit(1);
1116 1.1 eeh }
1117 1.1 eeh if (p[len-1] == ')' ||
1118 1.1 eeh p[len-1] == '"') {
1119 1.1 eeh p[len-1] = 0;
1120 1.1 eeh }
1121 1.1 eeh emit("b(\")");
1122 1.1 eeh sspit(p);
1123 1.1 eeh emit("type");
1124 1.1 eeh }
1125 1.1 eeh break;
1126 1.1 eeh case TOK_TOKENIZE:
1127 1.1 eeh STATE(token->text, "TOK_TOKENIZE");
1128 1.1 eeh /* The next pass should tokenize the FCODE number */
1129 1.1 eeh emit("b(')");
1130 1.1 eeh break;
1131 1.1 eeh case TOK_COMMENT:
1132 1.1 eeh STATE(token->text, "TOK_COMMENT:");
1133 1.1 eeh while (((token = yylex()) != NULL) && token->type != TOK_ENDCOMMENT);
1134 1.1 eeh break;
1135 1.1 eeh case TOK_ENDCOMMENT:
1136 1.1 eeh STATE(token->text, "TOK_ENDCOMMENT");
1137 1.1 eeh (void)printf( "ENDCOMMENT encountered outside comment\n");
1138 1.1 eeh exit(1);
1139 1.1 eeh break;
1140 1.1 eeh case TOK_COLON:
1141 1.1 eeh STATE(token->text, "TOK_COLON:");
1142 1.1 eeh
1143 1.1 eeh token = yylex();
1144 1.1 eeh if (token == NULL) {
1145 1.1 eeh (void)printf( "EOF in colon definition\n");
1146 1.3 mrg return;
1147 1.1 eeh }
1148 1.1 eeh
1149 1.1 eeh /* Add new code to dictionary */
1150 1.1 eeh fcode = malloc(sizeof(*fcode));
1151 1.1 eeh fcode->num = nextfcode++;
1152 1.1 eeh fcode->name = strdup(token->text);
1153 1.2 eeh if ( !fadd(dictionary, fcode) ) {
1154 1.2 eeh (void)printf( "Duplicate definition: `%s'\n", fcode->name);
1155 1.2 eeh exit(1);
1156 1.2 eeh }
1157 1.1 eeh #ifdef DEBUG
1158 1.1 eeh if (debug) (void)printf( "Adding %s to dictionary\n", token->text);
1159 1.1 eeh #endif
1160 1.1 eeh if (state == 0)
1161 1.1 eeh emit("new-token");
1162 1.1 eeh else {
1163 1.1 eeh if (state == TOK_EXTERNAL)
1164 1.1 eeh emit("external-token");
1165 1.1 eeh else
1166 1.1 eeh /* Here we have a choice of new-token or named-token */
1167 1.1 eeh emit("named-token");
1168 1.1 eeh sspit(token->text);
1169 1.1 eeh }
1170 1.1 eeh spit(fcode->num);
1171 1.1 eeh emit("b(:)");
1172 1.4 eeh last_token = fcode->name;
1173 1.1 eeh defining = 1;
1174 1.1 eeh break;
1175 1.1 eeh case TOK_SEMICOLON:
1176 1.1 eeh STATE(token->text, "TOK_SEMICOLON:");
1177 1.1 eeh emit("b(;)");
1178 1.1 eeh defining = 0;
1179 1.4 eeh if (depth()) {
1180 1.4 eeh (void)printf( "Warning: stack depth %d at end of %s\n",
1181 1.4 eeh depth(), last_token);
1182 1.4 eeh }
1183 1.4 eeh last_token = "";
1184 1.1 eeh break;
1185 1.1 eeh
1186 1.1 eeh /* These are special */
1187 1.1 eeh case TOK_AGAIN:
1188 1.1 eeh STATE(token->text, "TOK_AGAIN");
1189 1.1 eeh emit("bbranch");
1190 1.1 eeh pos = pop();
1191 1.1 eeh pos -= outpos;
1192 1.1 eeh if (offsetsize == 16) {
1193 1.1 eeh spit((pos>>8)&0xff);
1194 1.1 eeh }
1195 1.1 eeh spit(pos&0xff);
1196 1.1 eeh break;
1197 1.1 eeh case TOK_ALIAS:
1198 1.1 eeh STATE(token->text, "TOK_ALIAS");
1199 1.1 eeh {
1200 1.1 eeh struct macro *alias;
1201 1.1 eeh
1202 1.1 eeh token = yylex();
1203 1.1 eeh if (token == NULL) {
1204 1.1 eeh (void)printf( "EOF in alias definition\n");
1205 1.3 mrg return;
1206 1.1 eeh }
1207 1.1 eeh if (token->type != TOK_OTHER) {
1208 1.1 eeh (void)printf( "ENDCOMMENT aliasing weird token type %d\n",
1209 1.1 eeh token->type);
1210 1.1 eeh }
1211 1.1 eeh alias = malloc(sizeof(*alias));
1212 1.1 eeh alias->name = strdup(token->text);
1213 1.1 eeh token = yylex();
1214 1.1 eeh if (token == NULL) {
1215 1.1 eeh (void)printf( "EOF in alias definition\n");
1216 1.3 mrg return;
1217 1.1 eeh }
1218 1.1 eeh alias->equiv = strdup(token->text);
1219 1.1 eeh if (!aadd(aliases, alias)) {
1220 1.1 eeh (void)printf( "ERROR: Duplicate alias %s\n",
1221 1.1 eeh alias->name);
1222 1.1 eeh exit(1);
1223 1.1 eeh }
1224 1.1 eeh }
1225 1.1 eeh break;
1226 1.1 eeh case TOK_GETTOKEN:
1227 1.1 eeh STATE(token->text, "TOK_GETTOKEN");
1228 1.1 eeh /* This is caused by ['] */
1229 1.1 eeh emit("b(')");
1230 1.1 eeh token = yylex();
1231 1.1 eeh if (token == NULL) {
1232 1.1 eeh (void)printf( "EOF in [']\n");
1233 1.3 mrg return;
1234 1.1 eeh }
1235 1.1 eeh if ((fcode = flookup(dictionary, token->text)) == NULL) {
1236 1.1 eeh (void)printf( "[']: %s not found\n", token->text);
1237 1.1 eeh exit(1);
1238 1.1 eeh }
1239 1.1 eeh spit(fcode->num);
1240 1.1 eeh break;
1241 1.1 eeh case TOK_ASCII:
1242 1.1 eeh STATE(token->text, "TOK_ASCII");
1243 1.1 eeh token = yylex();
1244 1.1 eeh if (token == NULL) {
1245 1.1 eeh (void)printf( "EOF after \"ascii\"\n");
1246 1.1 eeh exit(1);
1247 1.1 eeh }
1248 1.1 eeh emit("b(lit)");
1249 1.1 eeh spit(0);
1250 1.1 eeh spit(0);
1251 1.1 eeh spit(0);
1252 1.1 eeh spit(token->text[0]);
1253 1.1 eeh break;
1254 1.1 eeh case TOK_BEGIN:
1255 1.1 eeh STATE(token->text, "TOK_BEGIN");
1256 1.1 eeh emit("b(<mark)");
1257 1.1 eeh push(outpos);
1258 1.1 eeh break;
1259 1.1 eeh case TOK_BUFFER:
1260 1.1 eeh STATE(token->text, "TOK_BUFFER");
1261 1.1 eeh
1262 1.1 eeh token = yylex();
1263 1.1 eeh if (token == NULL) {
1264 1.1 eeh (void)printf( "EOF in colon definition\n");
1265 1.3 mrg return;
1266 1.1 eeh }
1267 1.1 eeh
1268 1.1 eeh /* Add new code to dictionary */
1269 1.1 eeh fcode = malloc(sizeof(*fcode));
1270 1.1 eeh fcode->num = nextfcode++;
1271 1.1 eeh fcode->name = strdup(token->text);
1272 1.1 eeh fadd(dictionary, fcode);
1273 1.1 eeh
1274 1.1 eeh if (state == 0)
1275 1.1 eeh emit("new-token");
1276 1.1 eeh else {
1277 1.1 eeh if (state == TOK_EXTERNAL)
1278 1.1 eeh emit("external-token");
1279 1.1 eeh else
1280 1.1 eeh /* Here we have a choice of new-token or named-token */
1281 1.1 eeh emit("named-token");
1282 1.1 eeh sspit(token->text);
1283 1.1 eeh }
1284 1.1 eeh spit(fcode->num);
1285 1.1 eeh emit("b(buffer:)");
1286 1.1 eeh break;
1287 1.1 eeh case TOK_CASE:
1288 1.1 eeh STATE(token->text, "TOK_CASE");
1289 1.1 eeh emit("b(case)");
1290 1.1 eeh push(0);
1291 1.1 eeh break;
1292 1.1 eeh case TOK_CONSTANT:
1293 1.1 eeh STATE(token->text, "TOK_CONSTANT");
1294 1.1 eeh
1295 1.1 eeh token = yylex();
1296 1.1 eeh if (token == NULL) {
1297 1.1 eeh (void)printf( "EOF in constant definition\n");
1298 1.3 mrg return;
1299 1.1 eeh }
1300 1.1 eeh
1301 1.1 eeh /* Add new code to dictionary */
1302 1.1 eeh fcode = malloc(sizeof(*fcode));
1303 1.1 eeh fcode->num = nextfcode++;
1304 1.1 eeh fcode->name = strdup(token->text);
1305 1.1 eeh fadd(dictionary, fcode);
1306 1.1 eeh
1307 1.1 eeh if (state == 0)
1308 1.1 eeh emit("new-token");
1309 1.1 eeh else {
1310 1.1 eeh if (state == TOK_EXTERNAL)
1311 1.1 eeh emit("external-token");
1312 1.1 eeh else
1313 1.1 eeh /* Here we have a choice of new-token or named-token */
1314 1.1 eeh emit("named-token");
1315 1.1 eeh sspit(token->text);
1316 1.1 eeh }
1317 1.1 eeh spit(fcode->num);
1318 1.1 eeh emit("b(constant)");
1319 1.1 eeh break;
1320 1.1 eeh case TOK_CONTROL:
1321 1.1 eeh STATE(token->text, "TOK_CONTROL");
1322 1.1 eeh token = yylex();
1323 1.1 eeh if (token == NULL) {
1324 1.1 eeh (void)printf( "EOF after \"ascii\"\n");
1325 1.1 eeh exit(1);
1326 1.1 eeh }
1327 1.1 eeh emit("b(lit)");
1328 1.1 eeh spit(0);
1329 1.1 eeh spit(0);
1330 1.1 eeh spit(0);
1331 1.1 eeh spit(token->text[0]&0x1f);
1332 1.1 eeh break;
1333 1.1 eeh case TOK_CREATE:
1334 1.1 eeh STATE(token->text, "TOK_CREATE");
1335 1.1 eeh /* Don't know what this does or if it's right */
1336 1.1 eeh token = yylex();
1337 1.1 eeh if (token == NULL) {
1338 1.1 eeh (void)printf( "EOF in create definition\n");
1339 1.3 mrg return;
1340 1.1 eeh }
1341 1.1 eeh
1342 1.1 eeh /* Add new code to dictionary */
1343 1.1 eeh fcode = malloc(sizeof(*fcode));
1344 1.1 eeh fcode->num = nextfcode++;
1345 1.1 eeh fcode->name = strdup(token->text);
1346 1.1 eeh fadd(dictionary, fcode);
1347 1.1 eeh
1348 1.1 eeh if (state == 0)
1349 1.1 eeh emit("new-token");
1350 1.1 eeh else {
1351 1.1 eeh if (state == TOK_EXTERNAL)
1352 1.1 eeh emit("external-token");
1353 1.1 eeh else
1354 1.1 eeh /* Here we have a choice of new-token or named-token */
1355 1.1 eeh emit("named-token");
1356 1.1 eeh sspit(token->text);
1357 1.1 eeh }
1358 1.1 eeh spit(fcode->num);
1359 1.1 eeh emit("b(create)");
1360 1.1 eeh break;
1361 1.1 eeh case TOK_DECIMAL:
1362 1.1 eeh STATE(token->text, "TOK_DECIMAL");
1363 1.1 eeh if (token->text[1] != '#') {
1364 1.1 eeh if (defining) {
1365 1.1 eeh spit(10);
1366 1.1 eeh emit("base");
1367 1.1 eeh emit("!");
1368 1.1 eeh } else
1369 1.1 eeh base = TOK_DECIMAL;
1370 1.1 eeh } else {
1371 1.1 eeh char *end;
1372 1.1 eeh Cell value;
1373 1.1 eeh
1374 1.1 eeh token = yylex();
1375 1.1 eeh if (token == NULL) {
1376 1.1 eeh (void)printf( "EOF after d#\n");
1377 1.3 mrg return;
1378 1.1 eeh }
1379 1.1 eeh if (token->type == TOK_OTHER) {
1380 1.1 eeh if (strcmp("-1", token->text) == 0) {
1381 1.1 eeh emit(token->text);
1382 1.1 eeh break;
1383 1.1 eeh }
1384 1.1 eeh }
1385 1.1 eeh value = strtol(token->text, &end, 10);
1386 1.1 eeh if (*end != 0) {
1387 1.1 eeh (void)printf( "Illegal number conversion\n");
1388 1.1 eeh exit(1);
1389 1.1 eeh }
1390 1.1 eeh /*
1391 1.1 eeh * If this is a 64-bit value we need to store two literals
1392 1.1 eeh * and issue a `lxjoin' to combine them. But that's a future
1393 1.1 eeh * project.
1394 1.1 eeh */
1395 1.1 eeh emit("b(lit)");
1396 1.1 eeh spit(value>>24);
1397 1.1 eeh spit((value>>16)&0x0ff);
1398 1.1 eeh spit((value>>8)&0x0ff);
1399 1.1 eeh spit(value&0x0ff);
1400 1.1 eeh }
1401 1.1 eeh break;
1402 1.1 eeh case TOK_DEFER:
1403 1.1 eeh STATE(token->text, "TOK_DEFER");
1404 1.1 eeh /* Don't know what this does or if it's right */
1405 1.1 eeh token = yylex();
1406 1.1 eeh if (token == NULL) {
1407 1.1 eeh (void)printf( "EOF in colon definition\n");
1408 1.3 mrg return;
1409 1.1 eeh }
1410 1.1 eeh
1411 1.1 eeh /* Add new code to dictionary */
1412 1.1 eeh fcode = malloc(sizeof(*fcode));
1413 1.1 eeh fcode->num = nextfcode++;
1414 1.1 eeh fcode->name = strdup(token->text);
1415 1.1 eeh fadd(dictionary, fcode);
1416 1.1 eeh
1417 1.1 eeh if (state == 0)
1418 1.1 eeh emit("new-token");
1419 1.1 eeh else {
1420 1.1 eeh if (state == TOK_EXTERNAL)
1421 1.1 eeh emit("external-token");
1422 1.1 eeh else
1423 1.1 eeh /* Here we have a choice of new-token or named-token */
1424 1.1 eeh emit("named-token");
1425 1.1 eeh sspit(token->text);
1426 1.1 eeh }
1427 1.1 eeh spit(fcode->num);
1428 1.1 eeh emit("b(defer)");
1429 1.1 eeh break;
1430 1.1 eeh case TOK_DO:
1431 1.1 eeh STATE(token->text, "TOK_DO");
1432 1.1 eeh /*
1433 1.1 eeh * From the 1275 spec. B is branch location, T is branch target.
1434 1.1 eeh *
1435 1.1 eeh * b(do) offset1 ... b(loop) offset2 ...
1436 1.1 eeh * b(do) offset1 ... b(+loop) offset2 ...
1437 1.1 eeh * b(?do) offset1 ... b(loop) offset2 ...
1438 1.1 eeh * b(?do) offset1 ... b(+loop) offset2 ...
1439 1.1 eeh * ^ ^
1440 1.1 eeh * B1 ^ ^ T1
1441 1.1 eeh * T2 B2
1442 1.1 eeh *
1443 1.1 eeh * How we do this is we generate the b(do) or b(?do), spit out a
1444 1.1 eeh * zero offset while remembering b1 and t2. Then we call tokenize()
1445 1.1 eeh * to generate the body. When tokenize() finds a b(loop) or b(+loop),
1446 1.1 eeh * it generates the FCode and returns, with outpos at b2. We then
1447 1.1 eeh * calculate the offsets, put them in the right slots and finishup.
1448 1.1 eeh */
1449 1.1 eeh
1450 1.1 eeh if (token->text[0] == '?')
1451 1.1 eeh emit("b(?do)");
1452 1.1 eeh else
1453 1.1 eeh emit("b(do)");
1454 1.1 eeh push(outpos);
1455 1.1 eeh if (offsetsize == 16) {
1456 1.1 eeh spit(0);
1457 1.1 eeh }
1458 1.1 eeh spit(0); /* Place holder for later */
1459 1.1 eeh push(outpos);
1460 1.1 eeh break;
1461 1.1 eeh case TOK_ELSE:
1462 1.1 eeh STATE(token->text, "TOK_ELSE");
1463 1.1 eeh /* Get where we need to patch */
1464 1.1 eeh off = pop();
1465 1.1 eeh emit("bbranch");
1466 1.1 eeh /* Save where we are now. */
1467 1.1 eeh push(outpos);
1468 1.1 eeh if (offsetsize == 16) {
1469 1.1 eeh spit(0); /* Place holder for later */
1470 1.1 eeh }
1471 1.1 eeh spit(0); /* Place holder for later */
1472 1.1 eeh emit("b(>resolve)");
1473 1.1 eeh /* Rewind and patch the if branch */
1474 1.1 eeh pos = outpos;
1475 1.1 eeh outpos = off;
1476 1.1 eeh off = pos - off;
1477 1.3 mrg if (offsetsize == 16) {
1478 1.1 eeh spit(0); /* Place holder for later */
1479 1.1 eeh }
1480 1.1 eeh spit(0); /* Place holder for later */
1481 1.1 eeh /* revert to the end */
1482 1.1 eeh outpos = pos;
1483 1.1 eeh break;
1484 1.1 eeh case TOK_ENDCASE:
1485 1.1 eeh STATE(token->text, "TOK_ENDCASE:");
1486 1.1 eeh pos = outpos; /* Remember where we need to branch to */
1487 1.1 eeh
1488 1.1 eeh /* Thread our way backwards and install proper offsets */
1489 1.1 eeh off = pop();
1490 1.1 eeh while (off) {
1491 1.1 eeh int tmp;
1492 1.1 eeh
1493 1.1 eeh /* Move to this offset */
1494 1.1 eeh outpos = off;
1495 1.1 eeh /* Load next offset to process */
1496 1.1 eeh tmp = outbuf[outpos];
1497 1.1 eeh
1498 1.1 eeh /* process this offset */
1499 1.1 eeh off = pos - outpos;
1500 1.1 eeh if (offsetsize == 16) {
1501 1.1 eeh spit((off>>8)&0xff);
1502 1.1 eeh }
1503 1.1 eeh spit(off&0xff);
1504 1.1 eeh off = tmp;
1505 1.1 eeh }
1506 1.1 eeh outpos = pos;
1507 1.1 eeh emit("b(endcase)");
1508 1.1 eeh break;
1509 1.1 eeh case TOK_ENDOF:
1510 1.1 eeh STATE(token->text, "TOK_ENDOF");
1511 1.1 eeh off = pop();
1512 1.1 eeh emit("b(endof)");
1513 1.1 eeh /*
1514 1.1 eeh * Save back pointer in the offset field so we can traverse
1515 1.1 eeh * the linked list and patch it in the endcase.
1516 1.1 eeh */
1517 1.1 eeh pos = pop(); /* get position of prev link. */
1518 1.1 eeh push(outpos); /* save position of this link. */
1519 1.1 eeh spit(pos); /* save potision of prev link. */
1520 1.1 eeh if (offsetsize == 16) {
1521 1.1 eeh spit(0);
1522 1.1 eeh }
1523 1.1 eeh pos = outpos;
1524 1.1 eeh /* Now point the offset from b(of) here. */
1525 1.1 eeh outpos = off;
1526 1.1 eeh off = outpos - off;
1527 1.1 eeh if (offsetsize == 16) {
1528 1.1 eeh spit((off>>8)&0xff);
1529 1.1 eeh }
1530 1.1 eeh spit(off&0xff);
1531 1.1 eeh /* Restore position */
1532 1.1 eeh outpos = pos;
1533 1.1 eeh break;
1534 1.1 eeh case TOK_EXTERNAL:
1535 1.1 eeh STATE(token->text, "TOK_EXTERNAL");
1536 1.1 eeh state = TOK_EXTERNAL;
1537 1.1 eeh break;
1538 1.1 eeh case TOK_FIELD:
1539 1.1 eeh STATE(token->text, "TOK_FIELD");
1540 1.1 eeh
1541 1.1 eeh token = yylex();
1542 1.1 eeh if (token == NULL) {
1543 1.1 eeh (void)printf( "EOF in field definition\n");
1544 1.3 mrg return;
1545 1.1 eeh }
1546 1.1 eeh
1547 1.1 eeh /* Add new code to dictionary */
1548 1.1 eeh fcode = malloc(sizeof(*fcode));
1549 1.1 eeh fcode->num = nextfcode++;
1550 1.1 eeh fcode->name = strdup(token->text);
1551 1.1 eeh fadd(dictionary, fcode);
1552 1.1 eeh
1553 1.1 eeh if (state == 0)
1554 1.1 eeh emit("new-token");
1555 1.1 eeh else {
1556 1.1 eeh if (state == TOK_EXTERNAL)
1557 1.1 eeh emit("external-token");
1558 1.1 eeh else
1559 1.1 eeh /* Here we have a choice of new-token or named-token */
1560 1.1 eeh emit("named-token");
1561 1.1 eeh sspit(token->text);
1562 1.1 eeh }
1563 1.1 eeh spit(fcode->num);
1564 1.1 eeh emit("b(field)");
1565 1.1 eeh break;
1566 1.1 eeh
1567 1.1 eeh case TOK_HEX:
1568 1.1 eeh STATE(token->text, "TOK_HEX");
1569 1.1 eeh if (token->text[1] != '#') {
1570 1.1 eeh if (defining) {
1571 1.1 eeh spit(16);
1572 1.1 eeh emit("base");
1573 1.1 eeh emit("!");
1574 1.1 eeh } else
1575 1.1 eeh base = TOK_HEX;
1576 1.1 eeh } else {
1577 1.1 eeh char *end;
1578 1.1 eeh Cell value;
1579 1.1 eeh
1580 1.1 eeh token = yylex();
1581 1.1 eeh if (token == NULL) {
1582 1.1 eeh (void)printf( "EOF after h#\n");
1583 1.3 mrg return;
1584 1.1 eeh }
1585 1.1 eeh value = strtol(token->text, &end, 16);
1586 1.1 eeh if (*end != 0) {
1587 1.1 eeh (void)printf( "Illegal number conversion\n");
1588 1.1 eeh exit(1);
1589 1.1 eeh }
1590 1.1 eeh /*
1591 1.1 eeh * If this is a 64-bit value we need to store two literals
1592 1.1 eeh * and issue a `lxjoin' to combine them. But that's a future
1593 1.1 eeh * project.
1594 1.1 eeh */
1595 1.1 eeh emit("b(lit)");
1596 1.1 eeh spit(value>>24);
1597 1.1 eeh spit((value>>16)&0x0ff);
1598 1.1 eeh spit((value>>8)&0x0ff);
1599 1.1 eeh spit(value&0x0ff);
1600 1.1 eeh }
1601 1.1 eeh break;
1602 1.1 eeh case TOK_HEADERLESS:
1603 1.1 eeh STATE(token->text, "TOK_HEADERLESS");
1604 1.1 eeh state = 0;
1605 1.1 eeh break;
1606 1.1 eeh case TOK_HEADERS:
1607 1.1 eeh STATE(token->text, "TOK_HEADERS");
1608 1.1 eeh state = TOK_HEADERS;
1609 1.1 eeh break;
1610 1.1 eeh case TOK_OFFSET16:
1611 1.1 eeh STATE(token->text, "TOK_OFFSET16");
1612 1.1 eeh offsetsize = 16;
1613 1.1 eeh emit("offset16");
1614 1.1 eeh break;
1615 1.1 eeh case TOK_IF:
1616 1.1 eeh STATE(token->text, "TOK_IF");
1617 1.1 eeh /*
1618 1.1 eeh * Similar to do but simpler since we only deal w/one branch.
1619 1.1 eeh */
1620 1.1 eeh emit("b?branch");
1621 1.1 eeh push(outpos);
1622 1.1 eeh if (offsetsize == 16) {
1623 1.1 eeh spit(0); /* Place holder for later */
1624 1.1 eeh }
1625 1.1 eeh spit(0); /* Place holder for later */
1626 1.1 eeh break;
1627 1.1 eeh case TOK_LEAVE:
1628 1.1 eeh STATE(token->text, "TOK_LEAVE");
1629 1.1 eeh emit("b(leave)");
1630 1.1 eeh break;
1631 1.1 eeh case TOK_LOOP:
1632 1.1 eeh STATE(token->text, "TOK_LOOP");
1633 1.1 eeh
1634 1.1 eeh if (token->text[0] == '+')
1635 1.1 eeh emit("b(+loop)");
1636 1.1 eeh else
1637 1.1 eeh emit("b(loop)");
1638 1.1 eeh /* First do backwards branch of loop */
1639 1.1 eeh pos = pop();
1640 1.1 eeh off = pos - outpos;
1641 1.1 eeh if (offsetsize == 16) {
1642 1.1 eeh spit((off>>8)&0xff);
1643 1.1 eeh }
1644 1.1 eeh spit(off&0xff);
1645 1.1 eeh /* Now do forward branch of do */
1646 1.1 eeh pos = outpos;
1647 1.1 eeh outpos = pop();
1648 1.1 eeh off = pos - outpos;
1649 1.1 eeh if (offsetsize == 16) {
1650 1.1 eeh spit((off>>8)&0xff);
1651 1.1 eeh }
1652 1.1 eeh spit(off&0xff);
1653 1.1 eeh /* Restore output position */
1654 1.1 eeh outpos = pos;
1655 1.1 eeh break;
1656 1.1 eeh case TOK_OCTAL:
1657 1.1 eeh STATE(token->text, "TOK_OCTAL");
1658 1.1 eeh if (token->text[1] != '#') {
1659 1.1 eeh if (defining) {
1660 1.1 eeh spit(16);
1661 1.1 eeh emit("base");
1662 1.1 eeh emit("!");
1663 1.1 eeh } else
1664 1.1 eeh base = TOK_OCTAL;
1665 1.1 eeh } else {
1666 1.1 eeh char *end;
1667 1.1 eeh Cell value;
1668 1.1 eeh
1669 1.1 eeh token = yylex();
1670 1.1 eeh if (token == NULL) {
1671 1.1 eeh (void)printf( "EOF after o#\n");
1672 1.3 mrg return;
1673 1.1 eeh }
1674 1.1 eeh value = strtol(token->text, &end, 8);
1675 1.1 eeh if (*end != 0) {
1676 1.1 eeh (void)printf( "Illegal number conversion\n");
1677 1.1 eeh exit(1);
1678 1.1 eeh }
1679 1.1 eeh /*
1680 1.1 eeh * If this is a 64-bit value we need to store two literals
1681 1.1 eeh * and issue a `lxjoin' to combine them. But that's a future
1682 1.1 eeh * project.
1683 1.1 eeh */
1684 1.1 eeh emit("b(lit)");
1685 1.1 eeh spit(value>>24);
1686 1.1 eeh spit((value>>16)&0x0ff);
1687 1.1 eeh spit((value>>8)&0x0ff);
1688 1.1 eeh spit(value&0x0ff);
1689 1.1 eeh }
1690 1.1 eeh break;
1691 1.1 eeh case TOK_OF:
1692 1.1 eeh STATE(token->text, "TOK_OF");
1693 1.1 eeh /*
1694 1.1 eeh * Let's hope I get the semantics right.
1695 1.1 eeh *
1696 1.1 eeh * The `of' behaves almost the same as an
1697 1.1 eeh * `if'. The difference is that `endof'
1698 1.1 eeh * takes a branch offset to the associated
1699 1.1 eeh * `endcase'. Here we will generate a temporary
1700 1.1 eeh * offset of the `of' associated with the `endof'.
1701 1.1 eeh * Then in `endcase' we should be pointing just
1702 1.1 eeh * after the offset of the last `endof' so we
1703 1.1 eeh * calculate the offset and thread our way backwards
1704 1.1 eeh * searching for the previous `b(case)' or `b(endof)'.
1705 1.1 eeh */
1706 1.1 eeh emit("b(of)");
1707 1.1 eeh push(outpos);
1708 1.1 eeh if (offsetsize == 16) {
1709 1.1 eeh spit(0);
1710 1.1 eeh }
1711 1.1 eeh spit(0); /* Place holder for later */
1712 1.1 eeh break;
1713 1.1 eeh case TOK_REPEAT:
1714 1.1 eeh STATE(token->text, "TOK_REPEAT");
1715 1.1 eeh emit("bbranch");
1716 1.1 eeh pos = pop();
1717 1.1 eeh off = pop();
1718 1.1 eeh /* First the offset for the branch back to the begin */
1719 1.1 eeh off -= outpos;
1720 1.1 eeh if (offsetsize == 16) {
1721 1.1 eeh spit((off>>8)&0xff);
1722 1.1 eeh }
1723 1.1 eeh spit(off&0xff);
1724 1.1 eeh emit("b(>resolve)");
1725 1.1 eeh /* Now point the offset of the while here. */
1726 1.1 eeh off = outpos;
1727 1.1 eeh outpos = pos;
1728 1.1 eeh pos = off - pos;
1729 1.1 eeh if (offsetsize == 16) {
1730 1.1 eeh spit((pos>>8)&0xff);
1731 1.1 eeh }
1732 1.1 eeh spit(pos&0xff);
1733 1.1 eeh /* Return to the end of the output */
1734 1.1 eeh outpos = off;
1735 1.1 eeh break;
1736 1.1 eeh case TOK_THEN:
1737 1.1 eeh STATE(token->text, "TOK_THEN");
1738 1.1 eeh emit("b(>resolve)");
1739 1.1 eeh pos = outpos;
1740 1.1 eeh outpos = pop();
1741 1.1 eeh off = pos - outpos;
1742 1.1 eeh if (offsetsize == 16) {
1743 1.1 eeh spit((off>>8)&0xff);
1744 1.1 eeh }
1745 1.1 eeh spit(off&0xff);
1746 1.1 eeh outpos = pos;
1747 1.1 eeh break;
1748 1.1 eeh case TOK_TO:
1749 1.1 eeh STATE(token->text, "TOK_TO");
1750 1.1 eeh /* The next pass should tokenize the FCODE number */
1751 1.1 eeh emit("b(to)");
1752 1.1 eeh break;
1753 1.1 eeh case TOK_UNTIL:
1754 1.1 eeh STATE(token->text, "TOK_UNTIL");
1755 1.1 eeh {
1756 1.1 eeh int pos;
1757 1.1 eeh
1758 1.1 eeh emit("b?branch");
1759 1.1 eeh pos = pop();
1760 1.1 eeh pos -= outpos;
1761 1.1 eeh if (offsetsize == 16) {
1762 1.1 eeh spit((pos>>8)&0xff);
1763 1.1 eeh }
1764 1.1 eeh spit(pos&0xff);
1765 1.1 eeh }
1766 1.1 eeh break;
1767 1.1 eeh case TOK_VALUE:
1768 1.1 eeh STATE(token->text, "TOK_VALUE");
1769 1.1 eeh
1770 1.1 eeh token = yylex();
1771 1.1 eeh if (token == NULL) {
1772 1.1 eeh (void)printf( "EOF in value definition\n");
1773 1.3 mrg return;
1774 1.1 eeh }
1775 1.1 eeh
1776 1.1 eeh /* Add new code to dictionary */
1777 1.1 eeh fcode = malloc(sizeof(*fcode));
1778 1.1 eeh fcode->num = nextfcode++;
1779 1.1 eeh fcode->name = strdup(token->text);
1780 1.1 eeh fadd(dictionary, fcode);
1781 1.1 eeh
1782 1.1 eeh if (state == 0)
1783 1.1 eeh emit("new-token");
1784 1.1 eeh else {
1785 1.1 eeh if (state == TOK_EXTERNAL)
1786 1.1 eeh emit("external-token");
1787 1.1 eeh else
1788 1.1 eeh /* Here we have a choice of new-token or named-token */
1789 1.1 eeh emit("named-token");
1790 1.1 eeh sspit(token->text);
1791 1.1 eeh }
1792 1.1 eeh spit(fcode->num);
1793 1.1 eeh emit("b(value)");
1794 1.1 eeh break;
1795 1.1 eeh case TOK_VARIABLE:
1796 1.1 eeh STATE(token->text, "TOK_VARIABLE");
1797 1.1 eeh
1798 1.1 eeh token = yylex();
1799 1.1 eeh if (token == NULL) {
1800 1.1 eeh (void)printf( "EOF in variable definition\n");
1801 1.3 mrg return;
1802 1.1 eeh }
1803 1.1 eeh
1804 1.1 eeh /* Add new code to dictionary */
1805 1.1 eeh fcode = malloc(sizeof(*fcode));
1806 1.1 eeh fcode->num = nextfcode++;
1807 1.1 eeh fcode->name = strdup(token->text);
1808 1.1 eeh fadd(dictionary, fcode);
1809 1.1 eeh
1810 1.1 eeh if (state == 0)
1811 1.1 eeh emit("new-token");
1812 1.1 eeh else {
1813 1.1 eeh if (state == TOK_EXTERNAL)
1814 1.1 eeh emit("external-token");
1815 1.1 eeh else
1816 1.1 eeh /* Here we have a choice of new-token or named-token */
1817 1.1 eeh emit("named-token");
1818 1.1 eeh sspit(token->text);
1819 1.1 eeh }
1820 1.1 eeh spit(fcode->num);
1821 1.1 eeh emit("b(variable)");
1822 1.1 eeh break;
1823 1.1 eeh case TOK_WHILE:
1824 1.1 eeh STATE(token->text, "TOK_WHILE");
1825 1.1 eeh emit("b?branch");
1826 1.1 eeh push(outpos);
1827 1.1 eeh if (offsetsize == 16) {
1828 1.1 eeh spit(0);
1829 1.1 eeh }
1830 1.1 eeh spit(0);
1831 1.1 eeh break;
1832 1.1 eeh
1833 1.1 eeh /* Tokenizer directives */
1834 1.1 eeh case TOK_BEGTOK:
1835 1.1 eeh STATE(token->text, "TOK_BEGTOK");
1836 1.1 eeh tokenizer = 1;
1837 1.1 eeh break;
1838 1.1 eeh case TOK_EMIT_BYTE:
1839 1.1 eeh STATE(token->text, "TOK_EMIT_BYTE");
1840 1.1 eeh spit(pop());
1841 1.1 eeh break;
1842 1.1 eeh case TOK_ENDTOK:
1843 1.1 eeh STATE(token->text, "TOK_ENDTOK");
1844 1.1 eeh tokenizer = 0;
1845 1.1 eeh break;
1846 1.1 eeh case TOK_FLOAD:
1847 1.1 eeh STATE(token->text, "TOK_FLOAD");
1848 1.1 eeh /* Parse a different file for a while */
1849 1.1 eeh token = yylex();
1850 1.1 eeh if ((inf = fopen(token->text, "r")) == NULL) {
1851 1.1 eeh (void)printf( "%s: Could not open %s: %s\n",
1852 1.1 eeh myname, token->text, strerror(errno));
1853 1.1 eeh }
1854 1.1 eeh inbuf = yy_create_buffer( inf, YY_BUF_SIZE );
1855 1.1 eeh yy_switch_to_buffer(inbuf);
1856 1.1 eeh tokenize(inbuf);
1857 1.1 eeh yy_switch_to_buffer(input);
1858 1.1 eeh yy_delete_buffer(inbuf);
1859 1.1 eeh fclose(inf);
1860 1.1 eeh break;
1861 1.1 eeh case TOK_OTHER:
1862 1.1 eeh STATE(token->text, "TOK_OTHER");
1863 1.1 eeh if (apply_macros(input, token->text))
1864 1.1 eeh break;
1865 1.1 eeh if (emit(token->text)) {
1866 1.1 eeh #if 0
1867 1.1 eeh /*
1868 1.1 eeh * Call an external command
1869 1.1 eeh *
1870 1.1 eeh * XXXXX assumes it will always find the command
1871 1.1 eeh */
1872 1.1 eeh sspit(token->text);
1873 1.1 eeh emit("$find");
1874 1.1 eeh emit("drop");
1875 1.1 eeh emit("execute");
1876 1.1 eeh #else
1877 1.1 eeh (void)printf( "%s: undefined token `%s'\n",
1878 1.1 eeh myname, token->text);
1879 1.1 eeh fflush(stderr);
1880 1.1 eeh exit(1);
1881 1.1 eeh #endif
1882 1.1 eeh }
1883 1.1 eeh break;
1884 1.1 eeh default:
1885 1.1 eeh }
1886 1.1 eeh }
1887 1.3 mrg return;
1888 1.1 eeh }
1889 1.1 eeh
1890 1.1 eeh /*
1891 1.1 eeh * Lookup fcode string in dictionary and spit it out.
1892 1.1 eeh *
1893 1.1 eeh * Fcode must be in dictionary. No alias conversion done.
1894 1.1 eeh */
1895 1.1 eeh int
1896 1.1 eeh emit(str)
1897 1.1 eeh char *str;
1898 1.1 eeh {
1899 1.1 eeh struct fcode *code;
1900 1.2 eeh if ((code = flookup( dictionary, str)))
1901 1.1 eeh spit(code->num);
1902 1.1 eeh #ifdef DEBUG
1903 1.1 eeh if (debug > 1) {
1904 1.1 eeh if (code)
1905 1.1 eeh (void)printf( "emitting `%s'\n", code->name);
1906 1.1 eeh else
1907 1.1 eeh (void)printf( "emit: not found `%s'\n", str);
1908 1.1 eeh }
1909 1.1 eeh #endif
1910 1.1 eeh return (code == NULL);
1911 1.1 eeh }
1912 1.1 eeh
1913 1.1 eeh /*
1914 1.1 eeh * Spit out an integral value as a series of FCodes.
1915 1.1 eeh *
1916 1.1 eeh * It will spit out one zero byte or as many bytes as are
1917 1.1 eeh * non-zero.
1918 1.1 eeh */
1919 1.1 eeh int
1920 1.1 eeh spit(n)
1921 1.3 mrg long n;
1922 1.1 eeh {
1923 1.2 eeh int count = 1;
1924 1.1 eeh
1925 1.1 eeh if (n >> 8)
1926 1.2 eeh count += spit(n >> 8);
1927 1.1 eeh if (outpos >= outbufsiz) {
1928 1.1 eeh while (outpos >= outbufsiz) outbufsiz += BUFCLICK;
1929 1.1 eeh if (!(outbuf = realloc(outbuf, outbufsiz))) {
1930 1.2 eeh (void)printf( "realloc of %ld bytes failed -- out of memory\n",
1931 1.3 mrg (long)outbufsiz);
1932 1.1 eeh exit(1);
1933 1.1 eeh }
1934 1.1 eeh }
1935 1.1 eeh outbuf[outpos++] = n;
1936 1.2 eeh return (count);
1937 1.1 eeh }
1938 1.1 eeh
1939 1.1 eeh /*
1940 1.1 eeh * Spit out an FCode string.
1941 1.1 eeh */
1942 1.3 mrg void
1943 1.1 eeh sspit(s)
1944 1.1 eeh char *s;
1945 1.1 eeh {
1946 1.1 eeh int len = strlen(s);
1947 1.1 eeh
1948 1.1 eeh if (len > 255) {
1949 1.1 eeh (void)printf( "string length %d too long\n", len);
1950 1.3 mrg return;
1951 1.1 eeh }
1952 1.1 eeh #ifdef DEBUG
1953 1.1 eeh if (debug > 1)
1954 1.1 eeh (void)printf( "sspit: len %d str `%s'\n", len, s);
1955 1.1 eeh #endif
1956 1.1 eeh spit(len);
1957 1.3 mrg while (*s)
1958 1.3 mrg spit(*s++);
1959 1.1 eeh }
1960 1.1 eeh
1961 1.1 eeh int
1962 1.3 mrg yywrap()
1963 1.3 mrg {
1964 1.1 eeh /* Always generate EOF */
1965 1.1 eeh return (1);
1966 1.1 eeh }
1967