rpc_cout.c revision 1.31 1 1.31 dholland /* $NetBSD: rpc_cout.c,v 1.31 2013/08/11 08:03:10 dholland Exp $ */
2 1.1 glass /*
3 1.1 glass * Sun RPC is a product of Sun Microsystems, Inc. and is provided for
4 1.1 glass * unrestricted use provided that this legend is included on all tape
5 1.1 glass * media and as a part of the software program in whole or part. Users
6 1.1 glass * may copy or modify Sun RPC without charge, but are not authorized
7 1.1 glass * to license or distribute it to anyone else except as part of a product or
8 1.4 pk * program developed by the user or with the express written consent of
9 1.4 pk * Sun Microsystems, Inc.
10 1.4 pk *
11 1.1 glass * SUN RPC IS PROVIDED AS IS WITH NO WARRANTIES OF ANY KIND INCLUDING THE
12 1.1 glass * WARRANTIES OF DESIGN, MERCHANTIBILITY AND FITNESS FOR A PARTICULAR
13 1.1 glass * PURPOSE, OR ARISING FROM A COURSE OF DEALING, USAGE OR TRADE PRACTICE.
14 1.4 pk *
15 1.1 glass * Sun RPC is provided with no support and without any obligation on the
16 1.1 glass * part of Sun Microsystems, Inc. to assist in its use, correction,
17 1.1 glass * modification or enhancement.
18 1.4 pk *
19 1.1 glass * SUN MICROSYSTEMS, INC. SHALL HAVE NO LIABILITY WITH RESPECT TO THE
20 1.1 glass * INFRINGEMENT OF COPYRIGHTS, TRADE SECRETS OR ANY PATENTS BY SUN RPC
21 1.1 glass * OR ANY PART THEREOF.
22 1.4 pk *
23 1.1 glass * In no event will Sun Microsystems, Inc. be liable for any lost revenue
24 1.1 glass * or profits or other special, indirect and consequential damages, even if
25 1.1 glass * Sun has been advised of the possibility of such damages.
26 1.4 pk *
27 1.1 glass * Sun Microsystems, Inc.
28 1.1 glass * 2550 Garcia Avenue
29 1.1 glass * Mountain View, California 94043
30 1.1 glass */
31 1.4 pk
32 1.26 jmc #if HAVE_NBTOOL_CONFIG_H
33 1.26 jmc #include "nbtool_config.h"
34 1.26 jmc #endif
35 1.26 jmc
36 1.11 christos #include <sys/cdefs.h>
37 1.19 tv #if defined(__RCSID) && !defined(lint)
38 1.11 christos #if 0
39 1.4 pk static char sccsid[] = "@(#)rpc_cout.c 1.13 89/02/22 (C) 1987 SMI";
40 1.11 christos #else
41 1.31 dholland __RCSID("$NetBSD: rpc_cout.c,v 1.31 2013/08/11 08:03:10 dholland Exp $");
42 1.11 christos #endif
43 1.1 glass #endif
44 1.1 glass
45 1.1 glass /*
46 1.4 pk * rpc_cout.c, XDR routine outputter for the RPC protocol compiler
47 1.1 glass */
48 1.19 tv #include <ctype.h>
49 1.19 tv #include <err.h>
50 1.1 glass #include <stdio.h>
51 1.5 cgd #include <stdlib.h>
52 1.4 pk #include <string.h>
53 1.11 christos #include "rpc_scan.h"
54 1.4 pk #include "rpc_parse.h"
55 1.1 glass #include "rpc_util.h"
56 1.1 glass
57 1.31 dholland static int findtype __P((definition *, const char *));
58 1.31 dholland static int undefined __P((const char *));
59 1.31 dholland static void print_generic_header __P((const char *, int));
60 1.11 christos static void print_header __P((definition *));
61 1.11 christos static void print_prog_header __P((proc_list *));
62 1.11 christos static void print_trailer __P((void));
63 1.31 dholland static void print_ifopen __P((int, const char *));
64 1.31 dholland static void print_ifarg __P((const char *));
65 1.31 dholland static void print_ifsizeof __P((const char *, const char *));
66 1.11 christos static void print_ifclose __P((int));
67 1.31 dholland static void print_ifstat __P((int, const char *, const char *, relation,
68 1.31 dholland const char *, const char *, const char *));
69 1.11 christos static void emit_enum __P((definition *));
70 1.11 christos static void emit_program __P((definition *));
71 1.11 christos static void emit_union __P((definition *));
72 1.11 christos static void emit_struct __P((definition *));
73 1.11 christos static void emit_typedef __P((definition *));
74 1.11 christos static void print_stat __P((int, declaration *));
75 1.1 glass
76 1.1 glass /*
77 1.4 pk * Emit the C-routine for the given definition
78 1.1 glass */
79 1.1 glass void
80 1.31 dholland emit(definition *def)
81 1.1 glass {
82 1.4 pk if (def->def_kind == DEF_CONST) {
83 1.4 pk return;
84 1.4 pk }
85 1.4 pk if (def->def_kind == DEF_PROGRAM) {
86 1.4 pk emit_program(def);
87 1.1 glass return;
88 1.1 glass }
89 1.4 pk if (def->def_kind == DEF_TYPEDEF) {
90 1.4 pk /* now we need to handle declarations like struct typedef foo
91 1.4 pk * foo; since we dont want this to be expanded into 2 calls to
92 1.4 pk * xdr_foo */
93 1.4 pk
94 1.4 pk if (strcmp(def->def.ty.old_type, def->def_name) == 0)
95 1.4 pk return;
96 1.4 pk };
97 1.4 pk
98 1.1 glass print_header(def);
99 1.7 mycroft
100 1.1 glass switch (def->def_kind) {
101 1.1 glass case DEF_UNION:
102 1.1 glass emit_union(def);
103 1.1 glass break;
104 1.1 glass case DEF_ENUM:
105 1.1 glass emit_enum(def);
106 1.1 glass break;
107 1.1 glass case DEF_STRUCT:
108 1.1 glass emit_struct(def);
109 1.1 glass break;
110 1.1 glass case DEF_TYPEDEF:
111 1.1 glass emit_typedef(def);
112 1.1 glass break;
113 1.11 christos case DEF_PROGRAM:
114 1.11 christos case DEF_CONST:
115 1.24 itojun errx(1, "Internal error %s, %d: Case %d not handled",
116 1.11 christos __FILE__, __LINE__, def->def_kind);
117 1.11 christos break;
118 1.1 glass }
119 1.1 glass print_trailer();
120 1.1 glass }
121 1.1 glass
122 1.11 christos static int
123 1.31 dholland findtype(definition *def, const char *type)
124 1.1 glass {
125 1.4 pk
126 1.1 glass if (def->def_kind == DEF_PROGRAM || def->def_kind == DEF_CONST) {
127 1.1 glass return (0);
128 1.1 glass } else {
129 1.1 glass return (streq(def->def_name, type));
130 1.1 glass }
131 1.1 glass }
132 1.1 glass
133 1.11 christos static int
134 1.31 dholland undefined(const char *type)
135 1.1 glass {
136 1.1 glass definition *def;
137 1.1 glass
138 1.1 glass def = (definition *) FINDVAL(defined, type, findtype);
139 1.4 pk
140 1.4 pk
141 1.1 glass return (def == NULL);
142 1.1 glass }
143 1.1 glass
144 1.11 christos static void
145 1.31 dholland print_generic_header(const char *procname, int pointerp)
146 1.4 pk {
147 1.4 pk f_print(fout, "\n");
148 1.4 pk f_print(fout, "bool_t\n");
149 1.4 pk if (Cflag) {
150 1.4 pk f_print(fout, "xdr_%s(", procname);
151 1.4 pk f_print(fout, "XDR *xdrs, ");
152 1.4 pk f_print(fout, "%s ", procname);
153 1.4 pk if (pointerp)
154 1.4 pk f_print(fout, "*");
155 1.7 mycroft f_print(fout, "objp)\n{\n");
156 1.4 pk } else {
157 1.4 pk f_print(fout, "xdr_%s(xdrs, objp)\n", procname);
158 1.4 pk f_print(fout, "\tXDR *xdrs;\n");
159 1.4 pk f_print(fout, "\t%s ", procname);
160 1.4 pk if (pointerp)
161 1.4 pk f_print(fout, "*");
162 1.7 mycroft f_print(fout, "objp;\n{\n");
163 1.4 pk }
164 1.4 pk }
165 1.1 glass
166 1.11 christos static void
167 1.31 dholland print_header(definition *def)
168 1.1 glass {
169 1.4 pk print_generic_header(def->def_name,
170 1.4 pk def->def_kind != DEF_TYPEDEF ||
171 1.4 pk !isvectordef(def->def.ty.old_type, def->def.ty.rel));
172 1.4 pk }
173 1.4 pk
174 1.11 christos static void
175 1.31 dholland print_prog_header(proc_list *plist)
176 1.4 pk {
177 1.4 pk print_generic_header(plist->args.argname, 1);
178 1.1 glass }
179 1.1 glass
180 1.11 christos static void
181 1.31 dholland print_trailer(void)
182 1.1 glass {
183 1.1 glass f_print(fout, "\treturn (TRUE);\n");
184 1.1 glass f_print(fout, "}\n");
185 1.1 glass }
186 1.1 glass
187 1.1 glass
188 1.11 christos static void
189 1.31 dholland print_ifopen(int indent, const char *name)
190 1.1 glass {
191 1.16 fvdl char _t_kludge[32];
192 1.16 fvdl /*
193 1.16 fvdl * XXX Solaris seems to strip the _t. No idea why.
194 1.16 fvdl */
195 1.16 fvdl if (!strcmp(name, "rpcprog_t") || !strcmp(name, "rpcvers_t") ||
196 1.16 fvdl !strcmp(name, "rpcproc_t") || !strcmp(name, "rpcprot_t") ||
197 1.16 fvdl !strcmp(name, "rpcport_t") || !strcmp(name, "rpcpinline_t")) {
198 1.16 fvdl strncpy(_t_kludge, name, strlen(name) - 2);
199 1.16 fvdl name = _t_kludge;
200 1.16 fvdl }
201 1.1 glass tabify(fout, indent);
202 1.7 mycroft f_print(fout, "if (!xdr_%s(xdrs", name);
203 1.1 glass }
204 1.1 glass
205 1.11 christos static void
206 1.31 dholland print_ifarg(const char *arg)
207 1.1 glass {
208 1.1 glass f_print(fout, ", %s", arg);
209 1.1 glass }
210 1.1 glass
211 1.11 christos static void
212 1.31 dholland print_ifsizeof(const char *prefix, const char *type)
213 1.1 glass {
214 1.1 glass if (streq(type, "bool")) {
215 1.21 christos f_print(fout, ", (u_int)sizeof(bool_t), (xdrproc_t)xdr_bool");
216 1.1 glass } else {
217 1.21 christos f_print(fout, ", (u_int)sizeof(");
218 1.1 glass if (undefined(type) && prefix) {
219 1.1 glass f_print(fout, "%s ", prefix);
220 1.1 glass }
221 1.4 pk f_print(fout, "%s), (xdrproc_t)xdr_%s", type, type);
222 1.1 glass }
223 1.1 glass }
224 1.1 glass
225 1.11 christos static void
226 1.31 dholland print_ifclose(int indent)
227 1.1 glass {
228 1.7 mycroft f_print(fout, "))\n");
229 1.1 glass tabify(fout, indent);
230 1.7 mycroft f_print(fout, "\treturn (FALSE);\n");
231 1.1 glass }
232 1.1 glass
233 1.11 christos static void
234 1.31 dholland print_ifstat(int indent, const char *prefix, const char *type, relation rel,
235 1.31 dholland const char *amax, const char *objname, const char *name)
236 1.1 glass {
237 1.31 dholland const char *alt = NULL;
238 1.1 glass
239 1.1 glass switch (rel) {
240 1.1 glass case REL_POINTER:
241 1.1 glass print_ifopen(indent, "pointer");
242 1.29 mrg print_ifarg("(char **)(void *)");
243 1.1 glass f_print(fout, "%s", objname);
244 1.1 glass print_ifsizeof(prefix, type);
245 1.1 glass break;
246 1.1 glass case REL_VECTOR:
247 1.1 glass if (streq(type, "string")) {
248 1.1 glass alt = "string";
249 1.4 pk } else
250 1.4 pk if (streq(type, "opaque")) {
251 1.4 pk alt = "opaque";
252 1.4 pk }
253 1.1 glass if (alt) {
254 1.1 glass print_ifopen(indent, alt);
255 1.1 glass print_ifarg(objname);
256 1.1 glass } else {
257 1.1 glass print_ifopen(indent, "vector");
258 1.20 christos print_ifarg("(char *)(void *)");
259 1.1 glass f_print(fout, "%s", objname);
260 1.1 glass }
261 1.1 glass print_ifarg(amax);
262 1.1 glass if (!alt) {
263 1.1 glass print_ifsizeof(prefix, type);
264 1.1 glass }
265 1.1 glass break;
266 1.1 glass case REL_ARRAY:
267 1.1 glass if (streq(type, "string")) {
268 1.1 glass alt = "string";
269 1.4 pk } else
270 1.4 pk if (streq(type, "opaque")) {
271 1.4 pk alt = "bytes";
272 1.4 pk }
273 1.1 glass if (streq(type, "string")) {
274 1.1 glass print_ifopen(indent, alt);
275 1.1 glass print_ifarg(objname);
276 1.1 glass } else {
277 1.1 glass if (alt) {
278 1.1 glass print_ifopen(indent, alt);
279 1.1 glass } else {
280 1.1 glass print_ifopen(indent, "array");
281 1.1 glass }
282 1.29 mrg print_ifarg("(char **)(void *)");
283 1.1 glass if (*objname == '&') {
284 1.1 glass f_print(fout, "%s.%s_val, (u_int *)%s.%s_len",
285 1.4 pk objname, name, objname, name);
286 1.1 glass } else {
287 1.1 glass f_print(fout, "&%s->%s_val, (u_int *)&%s->%s_len",
288 1.4 pk objname, name, objname, name);
289 1.1 glass }
290 1.1 glass }
291 1.1 glass print_ifarg(amax);
292 1.1 glass if (!alt) {
293 1.1 glass print_ifsizeof(prefix, type);
294 1.1 glass }
295 1.1 glass break;
296 1.1 glass case REL_ALIAS:
297 1.1 glass print_ifopen(indent, type);
298 1.1 glass print_ifarg(objname);
299 1.1 glass break;
300 1.1 glass }
301 1.1 glass print_ifclose(indent);
302 1.1 glass }
303 1.1 glass /* ARGSUSED */
304 1.11 christos static void
305 1.31 dholland emit_enum(definition *def)
306 1.1 glass {
307 1.20 christos tabify(fout, 1);
308 1.20 christos f_print(fout, "{\n");
309 1.20 christos tabify(fout, 2);
310 1.20 christos f_print(fout, "enum_t et = (enum_t)*objp;\n");
311 1.20 christos print_ifopen(2, "enum");
312 1.20 christos print_ifarg("&et");
313 1.20 christos print_ifclose(2);
314 1.22 christos tabify(fout, 2);
315 1.22 christos f_print(fout, "*objp = (%s)et;\n", def->def_name);
316 1.20 christos tabify(fout, 1);
317 1.20 christos f_print(fout, "}\n");
318 1.1 glass }
319 1.1 glass
320 1.11 christos static void
321 1.31 dholland emit_program(definition *def)
322 1.4 pk {
323 1.4 pk decl_list *dl;
324 1.4 pk version_list *vlist;
325 1.4 pk proc_list *plist;
326 1.4 pk
327 1.4 pk for (vlist = def->def.pr.versions; vlist != NULL; vlist = vlist->next)
328 1.4 pk for (plist = vlist->procs; plist != NULL; plist = plist->next) {
329 1.4 pk if (!newstyle || plist->arg_num < 2)
330 1.4 pk continue; /* old style, or single
331 1.4 pk * argument */
332 1.4 pk print_prog_header(plist);
333 1.4 pk for (dl = plist->args.decls; dl != NULL;
334 1.4 pk dl = dl->next)
335 1.4 pk print_stat(1, &dl->decl);
336 1.4 pk print_trailer();
337 1.4 pk }
338 1.4 pk }
339 1.4 pk
340 1.1 glass
341 1.11 christos static void
342 1.31 dholland emit_union(definition *def)
343 1.1 glass {
344 1.1 glass declaration *dflt;
345 1.1 glass case_list *cl;
346 1.1 glass declaration *cs;
347 1.4 pk char *object;
348 1.23 yamt static const char vecformat[] = "objp->%s_u.%s";
349 1.23 yamt static const char format[] = "&objp->%s_u.%s";
350 1.1 glass
351 1.7 mycroft f_print(fout, "\n");
352 1.4 pk print_stat(1, &def->def.un.enum_decl);
353 1.1 glass f_print(fout, "\tswitch (objp->%s) {\n", def->def.un.enum_decl.name);
354 1.1 glass for (cl = def->def.un.cases; cl != NULL; cl = cl->next) {
355 1.4 pk f_print(fout, "\tcase %s:\n", cl->case_name);
356 1.4 pk if (cl->contflag == 1) /* a continued case statement */
357 1.4 pk continue;
358 1.1 glass cs = &cl->case_decl;
359 1.1 glass if (!streq(cs->type, "void")) {
360 1.1 glass object = alloc(strlen(def->def_name) + strlen(format) +
361 1.4 pk strlen(cs->name) + 1);
362 1.4 pk if (isvectordef(cs->type, cs->rel)) {
363 1.4 pk s_print(object, vecformat, def->def_name,
364 1.4 pk cs->name);
365 1.4 pk } else {
366 1.4 pk s_print(object, format, def->def_name,
367 1.4 pk cs->name);
368 1.4 pk }
369 1.7 mycroft print_ifstat(2, cs->prefix, cs->type, cs->rel,
370 1.7 mycroft cs->array_max, object, cs->name);
371 1.1 glass free(object);
372 1.1 glass }
373 1.1 glass f_print(fout, "\t\tbreak;\n");
374 1.1 glass }
375 1.1 glass dflt = def->def.un.default_decl;
376 1.7 mycroft f_print(fout, "\tdefault:\n");
377 1.1 glass if (dflt != NULL) {
378 1.1 glass if (!streq(dflt->type, "void")) {
379 1.1 glass object = alloc(strlen(def->def_name) + strlen(format) +
380 1.4 pk strlen(dflt->name) + 1);
381 1.4 pk if (isvectordef(dflt->type, dflt->rel)) {
382 1.4 pk s_print(object, vecformat, def->def_name,
383 1.4 pk dflt->name);
384 1.4 pk } else {
385 1.4 pk s_print(object, format, def->def_name,
386 1.4 pk dflt->name);
387 1.4 pk }
388 1.1 glass print_ifstat(2, dflt->prefix, dflt->type, dflt->rel,
389 1.4 pk dflt->array_max, object, dflt->name);
390 1.1 glass free(object);
391 1.1 glass }
392 1.7 mycroft f_print(fout, "\t\tbreak;\n");
393 1.1 glass } else {
394 1.1 glass f_print(fout, "\t\treturn (FALSE);\n");
395 1.1 glass }
396 1.4 pk
397 1.1 glass f_print(fout, "\t}\n");
398 1.1 glass }
399 1.1 glass
400 1.11 christos static void
401 1.31 dholland emit_struct(definition *def)
402 1.1 glass {
403 1.1 glass decl_list *dl;
404 1.4 pk int i, j, size, flag;
405 1.11 christos decl_list *cur = NULL, *psav;
406 1.4 pk bas_type *ptr;
407 1.31 dholland char *sizestr;
408 1.31 dholland const char *plus;
409 1.4 pk char ptemp[256];
410 1.4 pk int can_inline;
411 1.1 glass
412 1.4 pk
413 1.11 christos if (doinline == 0) {
414 1.20 christos f_print(fout, "\n");
415 1.4 pk for (dl = def->def.st.decls; dl != NULL; dl = dl->next)
416 1.4 pk print_stat(1, &dl->decl);
417 1.4 pk return;
418 1.1 glass }
419 1.4 pk size = 0;
420 1.4 pk can_inline = 0;
421 1.4 pk for (dl = def->def.st.decls; dl != NULL; dl = dl->next)
422 1.4 pk if ((dl->decl.prefix == NULL) &&
423 1.4 pk ((ptr = find_type(dl->decl.type)) != NULL) &&
424 1.4 pk ((dl->decl.rel == REL_ALIAS) || (dl->decl.rel == REL_VECTOR))) {
425 1.4 pk
426 1.4 pk if (dl->decl.rel == REL_ALIAS)
427 1.4 pk size += ptr->length;
428 1.4 pk else {
429 1.4 pk can_inline = 1;
430 1.4 pk break; /* can be inlined */
431 1.4 pk };
432 1.4 pk } else {
433 1.11 christos if (size >= doinline) {
434 1.4 pk can_inline = 1;
435 1.4 pk break; /* can be inlined */
436 1.4 pk }
437 1.4 pk size = 0;
438 1.4 pk }
439 1.11 christos if (size > doinline)
440 1.4 pk can_inline = 1;
441 1.4 pk
442 1.4 pk if (can_inline == 0) { /* can not inline, drop back to old mode */
443 1.20 christos f_print(fout, "\n");
444 1.4 pk for (dl = def->def.st.decls; dl != NULL; dl = dl->next)
445 1.4 pk print_stat(1, &dl->decl);
446 1.4 pk return;
447 1.4 pk };
448 1.4 pk
449 1.7 mycroft /* May cause lint to complain. but ... */
450 1.12 lukem f_print(fout, "\tint32_t *buf;\n");
451 1.4 pk
452 1.7 mycroft flag = PUT;
453 1.7 mycroft f_print(fout, "\n\tif (xdrs->x_op == XDR_ENCODE) {\n");
454 1.4 pk
455 1.4 pk for (j = 0; j < 2; j++) {
456 1.4 pk i = 0;
457 1.4 pk size = 0;
458 1.4 pk sizestr = NULL;
459 1.4 pk for (dl = def->def.st.decls; dl != NULL; dl = dl->next) { /* xxx */
460 1.4 pk
461 1.4 pk /* now walk down the list and check for basic types */
462 1.4 pk if ((dl->decl.prefix == NULL) && ((ptr = find_type(dl->decl.type)) != NULL) && ((dl->decl.rel == REL_ALIAS) || (dl->decl.rel == REL_VECTOR))) {
463 1.4 pk if (i == 0)
464 1.4 pk cur = dl;
465 1.4 pk i++;
466 1.4 pk
467 1.4 pk if (dl->decl.rel == REL_ALIAS)
468 1.4 pk size += ptr->length;
469 1.4 pk else {
470 1.4 pk /* this is required to handle arrays */
471 1.4 pk
472 1.4 pk if (sizestr == NULL)
473 1.10 mycroft plus = "";
474 1.4 pk else
475 1.10 mycroft plus = " + ";
476 1.4 pk
477 1.4 pk if (ptr->length != 1)
478 1.10 mycroft s_print(ptemp, "%s%s * %d", plus, dl->decl.array_max, ptr->length);
479 1.4 pk else
480 1.10 mycroft s_print(ptemp, "%s%s", plus, dl->decl.array_max);
481 1.4 pk
482 1.4 pk /* now concatenate to sizestr !!!! */
483 1.4 pk if (sizestr == NULL)
484 1.4 pk sizestr = strdup(ptemp);
485 1.4 pk else {
486 1.25 itojun char *nsizestr;
487 1.25 itojun
488 1.25 itojun nsizestr = (char *) realloc(sizestr, strlen(sizestr) + strlen(ptemp) + 1);
489 1.25 itojun if (nsizestr == NULL) {
490 1.4 pk
491 1.7 mycroft f_print(stderr, "Fatal error : no memory\n");
492 1.4 pk crash();
493 1.25 itojun }
494 1.25 itojun sizestr = nsizestr;
495 1.4 pk sizestr = strcat(sizestr, ptemp); /* build up length of
496 1.4 pk * array */
497 1.4 pk
498 1.4 pk }
499 1.4 pk }
500 1.4 pk
501 1.4 pk } else {
502 1.14 ross if (i > 0) {
503 1.11 christos if (sizestr == NULL && size < doinline) {
504 1.4 pk /* don't expand into inline
505 1.11 christos * code if size < doinline */
506 1.4 pk while (cur != dl) {
507 1.7 mycroft print_stat(2, &cur->decl);
508 1.4 pk cur = cur->next;
509 1.4 pk }
510 1.4 pk } else {
511 1.4 pk
512 1.4 pk
513 1.4 pk
514 1.4 pk /* were already looking at a
515 1.4 pk * xdr_inlineable structure */
516 1.4 pk if (sizestr == NULL)
517 1.7 mycroft f_print(fout, "\t\tbuf = (int32_t *)XDR_INLINE(xdrs, %d * BYTES_PER_XDR_UNIT);\n",
518 1.4 pk size);
519 1.4 pk else
520 1.4 pk if (size == 0)
521 1.4 pk f_print(fout,
522 1.7 mycroft "\t\tbuf = (int32_t *)XDR_INLINE(xdrs, %s * BYTES_PER_XDR_UNIT);\n",
523 1.4 pk sizestr);
524 1.4 pk else
525 1.4 pk f_print(fout,
526 1.7 mycroft "\t\tbuf = (int32_t *)XDR_INLINE(xdrs, (%d + %s) * BYTES_PER_XDR_UNIT);\n",
527 1.4 pk size, sizestr);
528 1.4 pk
529 1.7 mycroft f_print(fout, "\t\tif (buf == NULL) {\n");
530 1.4 pk
531 1.4 pk psav = cur;
532 1.4 pk while (cur != dl) {
533 1.7 mycroft print_stat(3, &cur->decl);
534 1.4 pk cur = cur->next;
535 1.4 pk }
536 1.4 pk
537 1.7 mycroft f_print(fout, "\t\t} else {\n");
538 1.4 pk
539 1.4 pk cur = psav;
540 1.4 pk while (cur != dl) {
541 1.4 pk emit_inline(&cur->decl, flag);
542 1.4 pk cur = cur->next;
543 1.4 pk }
544 1.4 pk
545 1.7 mycroft f_print(fout, "\t\t}\n");
546 1.4 pk }
547 1.14 ross }
548 1.4 pk size = 0;
549 1.4 pk i = 0;
550 1.28 christos if (sizestr) {
551 1.28 christos free(sizestr);
552 1.28 christos sizestr = NULL;
553 1.28 christos }
554 1.7 mycroft print_stat(2, &dl->decl);
555 1.4 pk }
556 1.4 pk
557 1.4 pk }
558 1.14 ross if (i > 0) {
559 1.11 christos if (sizestr == NULL && size < doinline) {
560 1.4 pk /* don't expand into inline code if size <
561 1.11 christos * doinline */
562 1.4 pk while (cur != dl) {
563 1.7 mycroft print_stat(2, &cur->decl);
564 1.4 pk cur = cur->next;
565 1.4 pk }
566 1.4 pk } else {
567 1.4 pk
568 1.4 pk /* were already looking at a xdr_inlineable
569 1.4 pk * structure */
570 1.4 pk if (sizestr == NULL)
571 1.7 mycroft f_print(fout, "\t\tbuf = (int32_t *)XDR_INLINE(xdrs, %d * BYTES_PER_XDR_UNIT);\n",
572 1.4 pk size);
573 1.4 pk else
574 1.4 pk if (size == 0)
575 1.4 pk f_print(fout,
576 1.7 mycroft "\t\tbuf = (int32_t *)XDR_INLINE(xdrs, %s * BYTES_PER_XDR_UNIT);\n",
577 1.4 pk sizestr);
578 1.4 pk else
579 1.4 pk f_print(fout,
580 1.7 mycroft "\t\tbuf = (int32_t *)XDR_INLINE(xdrs, (%d + %s) * BYTES_PER_XDR_UNIT);\n",
581 1.4 pk size, sizestr);
582 1.4 pk
583 1.7 mycroft f_print(fout, "\t\tif (buf == NULL) {\n");
584 1.4 pk
585 1.4 pk psav = cur;
586 1.4 pk while (cur != NULL) {
587 1.7 mycroft print_stat(3, &cur->decl);
588 1.4 pk cur = cur->next;
589 1.4 pk }
590 1.7 mycroft f_print(fout, "\t\t} else {\n");
591 1.4 pk
592 1.4 pk cur = psav;
593 1.4 pk while (cur != dl) {
594 1.4 pk emit_inline(&cur->decl, flag);
595 1.4 pk cur = cur->next;
596 1.4 pk }
597 1.4 pk
598 1.7 mycroft f_print(fout, "\t\t}\n");
599 1.1 glass
600 1.4 pk }
601 1.14 ross }
602 1.7 mycroft if (flag == PUT) {
603 1.7 mycroft flag = GET;
604 1.7 mycroft f_print(fout, "\t} else if (xdrs->x_op == XDR_DECODE) {\n");
605 1.7 mycroft }
606 1.4 pk }
607 1.7 mycroft
608 1.7 mycroft f_print(fout, "\t} else {\n");
609 1.1 glass
610 1.4 pk /* now take care of XDR_FREE case */
611 1.1 glass
612 1.4 pk for (dl = def->def.st.decls; dl != NULL; dl = dl->next)
613 1.7 mycroft print_stat(2, &dl->decl);
614 1.7 mycroft
615 1.7 mycroft f_print(fout, "\t}\n");
616 1.4 pk }
617 1.1 glass
618 1.11 christos static void
619 1.31 dholland emit_typedef(definition *def)
620 1.1 glass {
621 1.31 dholland const char *prefix = def->def.ty.old_prefix;
622 1.31 dholland const char *type = def->def.ty.old_type;
623 1.31 dholland const char *amax = def->def.ty.array_max;
624 1.1 glass relation rel = def->def.ty.rel;
625 1.1 glass
626 1.20 christos f_print(fout, "\n");
627 1.1 glass print_ifstat(1, prefix, type, rel, amax, "objp", def->def_name);
628 1.1 glass }
629 1.1 glass
630 1.11 christos static void
631 1.31 dholland print_stat(int indent, declaration *dec)
632 1.31 dholland {
633 1.31 dholland const char *prefix = dec->prefix;
634 1.31 dholland const char *type = dec->type;
635 1.31 dholland const char *amax = dec->array_max;
636 1.1 glass relation rel = dec->rel;
637 1.4 pk char name[256];
638 1.1 glass
639 1.1 glass if (isvectordef(type, rel)) {
640 1.1 glass s_print(name, "objp->%s", dec->name);
641 1.1 glass } else {
642 1.1 glass s_print(name, "&objp->%s", dec->name);
643 1.1 glass }
644 1.4 pk print_ifstat(indent, prefix, type, rel, amax, name, dec->name);
645 1.4 pk }
646 1.4 pk
647 1.4 pk
648 1.11 christos void
649 1.31 dholland emit_inline(declaration *decl, int flag)
650 1.4 pk {
651 1.4 pk
652 1.4 pk /*check whether an array or not */
653 1.4 pk
654 1.4 pk switch (decl->rel) {
655 1.4 pk case REL_ALIAS:
656 1.4 pk emit_single_in_line(decl, flag, REL_ALIAS);
657 1.4 pk break;
658 1.4 pk case REL_VECTOR:
659 1.7 mycroft f_print(fout, "\t\t\t{\n");
660 1.12 lukem f_print(fout, "\t\t\t\tint i;\n");
661 1.12 lukem f_print(fout, "\t\t\t\t%s *genp;\n", decl->type);
662 1.9 mycroft f_print(fout, "\n");
663 1.7 mycroft f_print(fout, "\t\t\t\tfor (i = 0, genp = objp->%s;\n",
664 1.7 mycroft decl->name);
665 1.7 mycroft f_print(fout, "\t\t\t\t i < %s; i++) {\n\t\t",
666 1.7 mycroft decl->array_max);
667 1.4 pk emit_single_in_line(decl, flag, REL_VECTOR);
668 1.7 mycroft f_print(fout, "\t\t\t\t}\n\t\t\t}\n");
669 1.11 christos break;
670 1.11 christos case REL_ARRAY:
671 1.11 christos case REL_POINTER:
672 1.24 itojun errx(1, "Internal error %s, %d: Case %d not handled",
673 1.11 christos __FILE__, __LINE__, decl->rel);
674 1.4 pk }
675 1.4 pk }
676 1.4 pk
677 1.11 christos void
678 1.31 dholland emit_single_in_line(declaration *decl, int flag, relation rel)
679 1.4 pk {
680 1.31 dholland const char *upp_case;
681 1.31 dholland char *freeable;
682 1.4 pk int freed = 0;
683 1.4 pk
684 1.4 pk if (flag == PUT)
685 1.7 mycroft f_print(fout, "\t\t\tIXDR_PUT_");
686 1.4 pk else
687 1.4 pk if (rel == REL_ALIAS)
688 1.7 mycroft f_print(fout, "\t\t\tobjp->%s = IXDR_GET_", decl->name);
689 1.4 pk else
690 1.7 mycroft f_print(fout, "\t\t\t*genp++ = IXDR_GET_");
691 1.4 pk
692 1.31 dholland upp_case = freeable = upcase(decl->type);
693 1.4 pk
694 1.4 pk /* hack - XX */
695 1.4 pk if (strcmp(upp_case, "INT") == 0) {
696 1.31 dholland free(freeable);
697 1.4 pk freed = 1;
698 1.20 christos upp_case = "INT32";
699 1.4 pk }
700 1.4 pk if (strcmp(upp_case, "U_INT") == 0) {
701 1.31 dholland free(freeable);
702 1.4 pk freed = 1;
703 1.20 christos upp_case = "U_INT32";
704 1.4 pk }
705 1.15 christos if (flag == PUT) {
706 1.4 pk if (rel == REL_ALIAS)
707 1.8 mycroft f_print(fout, "%s(buf, objp->%s);\n", upp_case, decl->name);
708 1.4 pk else
709 1.8 mycroft f_print(fout, "%s(buf, *genp++);\n", upp_case);
710 1.4 pk
711 1.15 christos } else
712 1.4 pk f_print(fout, "%s(buf);\n", upp_case);
713 1.4 pk if (!freed)
714 1.31 dholland free(freeable);
715 1.4 pk
716 1.4 pk }
717 1.4 pk
718 1.4 pk
719 1.13 lukem char *
720 1.31 dholland upcase(const char *str)
721 1.4 pk {
722 1.4 pk char *ptr, *hptr;
723 1.4 pk
724 1.4 pk
725 1.13 lukem ptr = (char *) malloc(strlen(str) + 1);
726 1.30 plunky if (ptr == NULL) {
727 1.7 mycroft f_print(stderr, "malloc failed\n");
728 1.4 pk exit(1);
729 1.4 pk };
730 1.4 pk
731 1.4 pk hptr = ptr;
732 1.4 pk while (*str != '\0')
733 1.27 dsl *ptr++ = toupper((unsigned char)*str++);
734 1.4 pk
735 1.4 pk *ptr = '\0';
736 1.4 pk return (hptr);
737 1.4 pk
738 1.1 glass }
739