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[lttv.git] / genevent-new / parser.c
CommitLineData
3583026d 1/*
2
3parser.c: Generate helper declarations and functions to trace events
4 from an event description file.
5
a3e6ce64 6 Copyright (C) 2005, Mathieu Desnoyers
7 Copyright (C) 2002, Xianxiu Yang
8 Copyright (C) 2002, Michel Dagenais
9 This program is free software; you can redistribute it and/or modify
3583026d 10 it under the terms of the GNU General Public License as published by
a3e6ce64 11 the Free Software Foundation; version 2 of the License.
3583026d 12
a3e6ce64 13 This program is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
3583026d 15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
17
18 You should have received a copy of the GNU General Public License
19 along with this program; if not, write to the Free Software
20 Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
21*/
22
23/* This program reads the ".xml" event definitions input files
24 and constructs structure for each event.
25
26 The program uses a very simple tokenizer, called from a hand written
27 recursive descent parser to fill a data structure describing the events.
28 The result is a sequence of events definitions which refer to type
29 definitions.
30
31 A table of named types is maintained to allow refering to types by name
32 when the same type is used at several places. Finally a sequence of
33 all types is maintained to facilitate the freeing of all type
34 information when the processing of an ".xml" file is finished. */
35
36#include <stdlib.h>
37#include <string.h>
38#include <stdio.h>
39#include <stdarg.h>
40#include <linux/errno.h>
41#include <assert.h>
42#include <ctype.h>
43
44#include "parser.h"
45
46
2d2d14a7 47char *intOutputTypes[] = {
48 "int8_t", "int16_t", "int32_t", "int64_t" };
3583026d 49
2d2d14a7 50char *uintOutputTypes[] = {
51 "uint8_t", "uint16_t", "uint32_t", "uint64_t" };
3583026d 52
2d2d14a7 53char *floatOutputTypes[] = {
54 "undef", "undef", "float", "double" };
3583026d 55
56
57
58
59/* helper function */
60void strupper(char *string)
61{
62 char *ptr = string;
63
64 while(*ptr != '\0') {
65 *ptr = toupper(*ptr);
66 ptr++;
67 }
68}
69
70
2d2d14a7 71int getSizeindex(unsigned int value)
3583026d 72{
73 switch(value) {
74 case 1:
75 return 0;
76 case 2:
77 return 1;
78 case 4:
79 return 2;
80 case 8:
81 return 3;
82 default:
83 printf("Error : unknown value size %d\n", value);
84 exit(-1);
85 }
86}
87
88/*****************************************************************************
89 *Function name
90 * getSize : translate from string to integer
91 *Input params
92 * in : input file handle
93 *Return values
94 * size
95 *****************************************************************************/
96
2d2d14a7 97unsigned long long int getSize(parse_file_t *in)
3583026d 98{
99 char *token;
100
101 token = getToken(in);
102 if(in->type == NUMBER) {
2d2d14a7 103 return strtoull(token, NULL, 0);
3583026d 104 }
105 in->error(in,"incorrect size specification");
106 return -1;
107}
108
109/*****************************************************************************
110 *Function name
111 * error_callback : print out error info
112 *Input params
113 * in : input file handle
114 * msg : message to be printed
115 ****************************************************************************/
116
117void error_callback(parse_file_t *in, char *msg)
118{
119 if(in)
120 printf("Error in file %s, line %d: %s\n", in->name, in->lineno, msg);
121 else
122 printf("%s\n",msg);
123 assert(0);
124 exit(1);
125}
126
127/*****************************************************************************
128 *Function name
129 * memAlloc : allocate memory
130 *Input params
131 * size : required memory size
132 *return value
133 * void * : pointer to allocate memory or NULL
134 ****************************************************************************/
135
136void * memAlloc(int size)
137{
138 void * addr;
139 if(size == 0) return NULL;
140 addr = malloc(size);
141 if(!addr){
142 printf("Failed to allocate memory");
143 exit(1);
144 }
145 return addr;
146}
147
148/*****************************************************************************
149 *Function name
150 * allocAndCopy : allocate memory and initialize it
151 *Input params
152 * str : string to be put in memory
153 *return value
154 * char * : pointer to allocate memory or NULL
155 ****************************************************************************/
156
157char *allocAndCopy(char *str)
158{
159 char * addr;
160 if(str == NULL) return NULL;
161 addr = (char *)memAlloc(strlen(str)+1);
162 strcpy(addr,str);
163 return addr;
164}
165
166/**************************************************************************
167 * Function :
168 * getTypeAttributes
169 * Description :
170 * Read the attribute from the input file.
171 *
172 * Parameters :
173 * in , input file handle.
174 * t , the type descriptor to fill.
175 *
176 **************************************************************************/
177
be97b953 178void getTypeAttributes(parse_file_t *in, type_descriptor_t *t,
179 sequence_t * unnamed_types, table_t * named_types)
3583026d 180{
181 char * token;
182
183 t->fmt = NULL;
2d2d14a7 184 t->size = 0;
3583026d 185 t->alignment = 0;
186
187 while(1) {
188 token = getToken(in);
189 if(strcmp("/",token) == 0 || strcmp(">",token) == 0){
190 ungetToken(in);
191 break;
192 }
193
194 if(!strcmp("format",token)) {
195 getEqual(in);
196 t->fmt = allocAndCopy(getQuotedString(in));
197 //} else if(!strcmp("name",token)) {
198 // getEqual(in);
199 // car = seekNextChar(in);
200 // if(car == EOF) in->error(in,"name was expected");
201 // else if(car == '\"') t->type_name = allocAndCopy(getQuotedString(in));
202 // else t->type_name = allocAndCopy(getName(in));
be97b953 203 } else if(!strcmp("size",token)) {
3583026d 204 getEqual(in);
205 t->size = getSize(in);
206 } else if(!strcmp("align",token)) {
207 getEqual(in);
208 t->alignment = getNumber(in);
209 }
210 }
211}
212
213/**************************************************************************
214 * Function :
215 * getEventAttributes
216 * Description :
217 * Read the attribute from the input file.
218 *
219 * Parameters :
220 * in , input file handle.
221 * ev , the event to fill.
222 *
223 **************************************************************************/
224
225void getEventAttributes(parse_file_t *in, event_t *ev)
226{
227 char * token;
228 char car;
229
230 ev->name = NULL;
231 ev->per_trace = 0;
232 ev->per_tracefile = 0;
233
234 while(1) {
235 token = getToken(in);
236 if(strcmp("/",token) == 0 || strcmp(">",token) == 0){
237 ungetToken(in);
238 break;
239 }
240
241 if(!strcmp("name",token)) {
242 getEqual(in);
243 car = seekNextChar(in);
244 if(car == EOF) in->error(in,"name was expected");
245 else if(car == '\"') ev->name = allocAndCopy(getQuotedString(in));
246 else ev->name = allocAndCopy(getName(in));
247 } else if(!strcmp("per_trace", token)) {
248 ev->per_trace = 1;
249 } else if(!strcmp("per_tracefile", token)) {
250 ev->per_tracefile = 1;
251 }
252
253 }
254}
255
256/**************************************************************************
257 * Function :
258 * getFacilityAttributes
259 * Description :
260 * Read the attribute from the input file.
261 *
262 * Parameters :
263 * in , input file handle.
264 * fac , the facility to fill.
265 *
266 **************************************************************************/
267
268void getFacilityAttributes(parse_file_t *in, facility_t *fac)
269{
270 char * token;
271 char car;
272
273 fac->name = NULL;
274
275 while(1) {
276 token = getToken(in);
277 if(strcmp("/",token) == 0 || strcmp(">",token) == 0){
278 ungetToken(in);
279 break;
280 }
281
282 if(!strcmp("name",token)) {
283 getEqual(in);
284 car = seekNextChar(in);
285 if(car == EOF) in->error(in,"name was expected");
286 else if(car == '\"') fac->name = allocAndCopy(getQuotedString(in));
287 else fac->name = allocAndCopy(getName(in));
288 }
289 }
290}
291
292/**************************************************************************
293 * Function :
294 * getFieldAttributes
295 * Description :
296 * Read the attribute from the input file.
297 *
298 * Parameters :
299 * in , input file handle.
300 * f , the field to fill.
301 *
302 **************************************************************************/
303
304void getFieldAttributes(parse_file_t *in, field_t *f)
305{
306 char * token;
307 char car;
308
309 f->name = NULL;
310
311 while(1) {
312 token = getToken(in);
313 if(strcmp("/",token) == 0 || strcmp(">",token) == 0){
314 ungetToken(in);
315 break;
316 }
317
318 if(!strcmp("name",token)) {
319 getEqual(in);
320 car = seekNextChar(in);
321 if(car == EOF) in->error(in,"name was expected");
322 else if(car == '\"') f->name = allocAndCopy(getQuotedString(in));
323 else f->name = allocAndCopy(getName(in));
324 }
325 }
326}
327
328char *getNameAttribute(parse_file_t *in)
329{
330 char * token;
331 char *name = NULL;
332 char car;
333
334 while(1) {
335 token = getToken(in);
336 if(strcmp("/",token) == 0 || strcmp(">",token) == 0){
337 ungetToken(in);
338 break;
339 }
340
341 if(!strcmp("name",token)) {
342 getEqual(in);
343 car = seekNextChar(in);
344 if(car == EOF) in->error(in,"name was expected");
345 else if(car == '\"') name = allocAndCopy(getQuotedString(in));
346 else name = allocAndCopy(getName(in));
347 }
348 }
349 if(name == NULL) in->error(in, "Name was expected");
350 return name;
351
352}
353
354
355
356//for <label name=label_name value=n format="..."/>, value is an option
357char * getValueStrAttribute(parse_file_t *in)
358{
359 char * token;
360
361 token = getToken(in);
362 if(strcmp("/",token) == 0){
363 ungetToken(in);
364 return NULL;
365 }
366
367 if(strcmp("value",token))in->error(in,"value was expected");
368 getEqual(in);
369 token = getToken(in);
370 if(in->type != NUMBER) in->error(in,"number was expected");
371 return token;
372}
373
374char * getDescription(parse_file_t *in)
375{
376 long int pos;
377 char * token, car, *str;
378
379 pos = ftell(in->fp);
380
381 getLAnglebracket(in);
382 token = getName(in);
383 if(strcmp("description",token)){
384 fseek(in->fp, pos, SEEK_SET);
385 return NULL;
386 }
387
388 getRAnglebracket(in);
389
390 pos = 0;
391 while((car = getc(in->fp)) != EOF) {
392 if(car == '<') break;
393 if(car == '\0') continue;
394 in->buffer[pos] = car;
395 pos++;
396 }
397 if(car == EOF)in->error(in,"not a valid description");
398 in->buffer[pos] = '\0';
399
400 str = allocAndCopy(in->buffer);
401
402 getForwardslash(in);
403 token = getName(in);
404 if(strcmp("description", token))in->error(in,"not a valid description");
405 getRAnglebracket(in);
406
407 return str;
408}
409
410/*****************************************************************************
411 *Function name
412 * parseFacility : generate event list
413 *Input params
414 * in : input file handle
415 * fac : empty facility
416 *Output params
417 * fac : facility filled with event list
418 ****************************************************************************/
419
420void parseFacility(parse_file_t *in, facility_t * fac)
421{
422 char * token;
423 event_t *ev;
424
425 getFacilityAttributes(in, fac);
426 if(fac->name == NULL) in->error(in, "Attribute not named");
427
428 fac->capname = allocAndCopy(fac->name);
429 strupper(fac->capname);
430 getRAnglebracket(in);
431
432 fac->description = getDescription(in);
433
434 while(1){
435 getLAnglebracket(in);
436
437 token = getToken(in);
438 if(in->type == ENDFILE)
439 in->error(in,"the definition of the facility is not finished");
440
441 if(strcmp("event",token) == 0){
442 ev = (event_t*) memAlloc(sizeof(event_t));
443 sequence_push(&(fac->events),ev);
444 parseEvent(in,ev, &(fac->unnamed_types), &(fac->named_types));
445 }else if(strcmp("type",token) == 0){
446 parseTypeDefinition(in, &(fac->unnamed_types), &(fac->named_types));
447 }else if(in->type == FORWARDSLASH){
448 break;
449 }else in->error(in,"event or type token expected\n");
450 }
451
452 token = getName(in);
453 if(strcmp("facility",token)) in->error(in,"not the end of the facility");
454 getRAnglebracket(in); //</facility>
455}
456
457/*****************************************************************************
458 *Function name
459 * parseEvent : generate event from event definition
460 *Input params
461 * in : input file handle
462 * ev : new event
463 * unnamed_types : array of unamed types
464 * named_types : array of named types
465 *Output params
466 * ev : new event (parameters are passed to it)
467 ****************************************************************************/
468
469void parseEvent(parse_file_t *in, event_t * ev, sequence_t * unnamed_types,
470 table_t * named_types)
471{
472 char *token;
47299663 473 field_t *f;
3583026d 474
47299663 475 sequence_init(&(ev->fields));
3583026d 476 //<event name=eventtype_name>
477 getEventAttributes(in, ev);
478 if(ev->name == NULL) in->error(in, "Event not named");
479 getRAnglebracket(in);
480
47299663 481 //<description>...</description>
3583026d 482 ev->description = getDescription(in);
483
47299663 484 int got_end = 0;
485 /* Events can have multiple fields. each field form at least a function
486 * parameter of the logging function. */
487 while(!got_end) {
488 getLAnglebracket(in);
489 token = getToken(in);
490
491 switch(in->type) {
492 case FORWARDSLASH: /* </event> */
493 token = getName(in);
494 if(strcmp("event",token))in->error(in,"not an event definition");
495 getRAnglebracket(in); //</event>
496 got_end = 1;
497 break;
498 case NAME: /* a field */
499 if(strcmp("field",token))in->error(in,"expecting a field");
500 f = (field_t *)memAlloc(sizeof(field_t));
501 sequence_push(&(ev->fields),f);
a67cd958 502 parseFields(in, f, unnamed_types, named_types, 1);
47299663 503 break;
504 default:
505 in->error(in, "expecting </event> or <field >");
506 break;
507 }
508 }
509#if 0
510 if(in->type == FORWARDSLASH){ //</event> NOTHING
511 ev->type = NULL;
512 }else if(in->type == NAME){
513 if(strcmp("struct",token)==0 || strcmp("typeref",token)==0){
514 ungetToken(in);
515 ev->type = parseType(in,NULL, unnamed_types, named_types);
516 if(ev->type->type != STRUCT && ev->type->type != NONE)
517 in->error(in,"type must be a struct");
518 }else in->error(in, "not a valid type");
519
520 getLAnglebracket(in);
521 getForwardslash(in);
522 }else in->error(in,"not a struct type");
523 getLAnglebracket(in);
524 getForwardslash(in);
525 token = getName(in);
526 if(strcmp("event",token))in->error(in,"not an event definition");
527 getRAnglebracket(in); //</event>
528#endif //0
3583026d 529}
530
531/*****************************************************************************
532 *Function name
533 * parseField : get field infomation from buffer
534 *Input params
535 * in : input file handle
47299663 536 * f : field
3583026d 537 * unnamed_types : array of unamed types
538 * named_types : array of named types
a67cd958 539 * tag : is field surrounded by a <field> </field> tag ?
3583026d 540 ****************************************************************************/
541
47299663 542void parseFields(parse_file_t *in, field_t *f,
3583026d 543 sequence_t * unnamed_types,
a67cd958 544 table_t * named_types,
545 int tag)
3583026d 546{
547 char * token;
a67cd958 548 if(tag) {
549 //<field name=field_name> <description> <type> </field>
550 getFieldAttributes(in, f);
551 if(f->name == NULL) in->error(in, "Field not named");
552 getRAnglebracket(in);
3583026d 553
a67cd958 554 f->description = getDescription(in);
555 }
3583026d 556
557 //<int size=...>
558 getLAnglebracket(in);
559 f->type = parseType(in,NULL, unnamed_types, named_types);
560
a67cd958 561 if(tag) {
562 getLAnglebracket(in);
563 getForwardslash(in);
564 token = getName(in);
565 if(strcmp("field",token))in->error(in,"not a valid field definition");
566 getRAnglebracket(in); //</field>
567 }
3583026d 568}
569
570
571/*****************************************************************************
572 *Function name
573 * parseType : get type information, type can be :
574 * Primitive:
575 * int(size,fmt); uint(size,fmt); float(size,fmt);
576 * string(fmt); enum(size,fmt,(label1,label2...))
577 * Compound:
578 * array(arraySize, type); sequence(lengthSize,type)
579 * struct(field(name,type,description)...)
580 * type name:
581 * type(name,type)
582 *Input params
583 * in : input file handle
584 * inType : a type descriptor
585 * unnamed_types : array of unamed types
586 * named_types : array of named types
587 *Return values
588 * type_descriptor* : a type descriptor
589 ****************************************************************************/
590
591type_descriptor_t *parseType(parse_file_t *in, type_descriptor_t *inType,
592 sequence_t * unnamed_types, table_t * named_types)
593{
594 char *token;
595 type_descriptor_t *t;
47299663 596 field_t *f;
3583026d 597
598 if(inType == NULL) {
599 t = (type_descriptor_t *) memAlloc(sizeof(type_descriptor_t));
600 t->type_name = NULL;
601 t->type = NONE;
602 t->fmt = NULL;
603 sequence_push(unnamed_types,t);
604 }
605 else t = inType;
606
607 token = getName(in);
608
609 if(strcmp(token,"struct") == 0) {
610 t->type = STRUCT;
be97b953 611 getTypeAttributes(in, t, unnamed_types, named_types);
3583026d 612 getRAnglebracket(in); //<struct>
613 getLAnglebracket(in); //<field name=..>
614 token = getToken(in);
615 sequence_init(&(t->fields));
616 while(strcmp("field",token) == 0){
47299663 617 f = (field_t *)memAlloc(sizeof(field_t));
618 sequence_push(&(t->fields),f);
619
a67cd958 620 parseFields(in, f, unnamed_types, named_types, 1);
3583026d 621
622 //next field
623 getLAnglebracket(in);
624 token = getToken(in);
625 }
626 if(strcmp("/",token))in->error(in,"not a valid structure definition");
627 token = getName(in);
628 if(strcmp("struct",token)!=0)
629 in->error(in,"not a valid structure definition");
630 getRAnglebracket(in); //</struct>
631 }
632 else if(strcmp(token,"union") == 0) {
633 t->type = UNION;
be97b953 634 getTypeAttributes(in, t, unnamed_types, named_types);
2d2d14a7 635 getRAnglebracket(in); //<union>
3583026d 636
637 getLAnglebracket(in); //<field name=..>
638 token = getToken(in);
639 sequence_init(&(t->fields));
640 while(strcmp("field",token) == 0){
47299663 641 f = (field_t *)memAlloc(sizeof(field_t));
642 sequence_push(&(t->fields),f);
a67cd958 643 parseFields(in, f, unnamed_types, named_types, 1);
3583026d 644
645 //next field
646 getLAnglebracket(in);
647 token = getToken(in);
648 }
649 if(strcmp("/",token))in->error(in,"not a valid union definition");
650 token = getName(in);
651 if(strcmp("union",token)!=0)
652 in->error(in,"not a valid union definition");
653 getRAnglebracket(in); //</union>
654 }
655 else if(strcmp(token,"array") == 0) {
656 t->type = ARRAY;
a67cd958 657 sequence_init(&(t->fields));
be97b953 658 getTypeAttributes(in, t, unnamed_types, named_types);
2d2d14a7 659 if(t->size == 0) in->error(in, "Array has empty size");
660 getForwardslash(in);
3583026d 661 getRAnglebracket(in); //<array size=n>
662
2e415130 663 //getLAnglebracket(in); //<subtype>
a67cd958 664 /* subfield */
665 f = (field_t *)memAlloc(sizeof(field_t));
666 sequence_push(&(t->fields),f);
667 parseFields(in, f, unnamed_types, named_types, 0);
668
669 //getLAnglebracket(in); //<type struct>
670 //t->nested_type = parseType(in, NULL, unnamed_types, named_types);
3583026d 671
672 getLAnglebracket(in); //</array>
673 getForwardslash(in);
674 token = getName(in);
675 if(strcmp("array",token))in->error(in,"not a valid array definition");
676 getRAnglebracket(in); //</array>
677 }
678 else if(strcmp(token,"sequence") == 0) {
679 t->type = SEQUENCE;
a67cd958 680 sequence_init(&(t->fields));
be97b953 681 //getTypeAttributes(in, t, unnamed_types, named_types);
682 //getForwardslash(in);
683 getRAnglebracket(in); //<sequence>
3583026d 684
2e415130 685 //getLAnglebracket(in); //<sequence size type>
a67cd958 686 /* subfield */
687 f = (field_t *)memAlloc(sizeof(field_t));
688 sequence_push(&(t->fields),f);
689 parseFields(in, f, unnamed_types, named_types, 0);
690
2e415130 691 //getLAnglebracket(in); //<subtype>
a67cd958 692 /* subfield */
693 f = (field_t *)memAlloc(sizeof(field_t));
694 sequence_push(&(t->fields),f);
695 parseFields(in, f, unnamed_types, named_types, 0);
3583026d 696
a67cd958 697 //getLAnglebracket(in); //<type sequence>
698 //t->length_type = parseType(in, NULL, unnamed_types, named_types);
be97b953 699
a67cd958 700 //getLAnglebracket(in); //<type sequence>
be97b953 701
a67cd958 702 //t->nested_type = parseType(in, NULL, unnamed_types, named_types);
703
704 if(t->fields.position < 1) in->error(in, "Sequence has no length type");
705 if(t->fields.position < 2) in->error(in, "Sequence has no subtype");
706 switch(((field_t*)t->fields.array[0])->type->type) {
be97b953 707 case UINT_FIXED :
708 case UCHAR :
709 case USHORT :
710 case UINT :
711 case ULONG :
712 case SIZE_T :
713 case OFF_T :
714 break;
715 default:
716 in->error(in, "Wrong length type for sequence");
717 }
718
3583026d 719 getLAnglebracket(in); //</sequence>
720 getForwardslash(in);
721 token = getName(in);
722 if(strcmp("sequence",token))in->error(in,"not a valid sequence definition");
723 getRAnglebracket(in); //</sequence>
724 }
725 else if(strcmp(token,"enum") == 0) {
726 char * str, *str1;
727 t->type = ENUM;
728 sequence_init(&(t->labels));
729 sequence_init(&(t->labels_description));
730 t->already_printed = 0;
be97b953 731 getTypeAttributes(in, t, unnamed_types, named_types);
2d2d14a7 732 //if(t->size == 0) in->error(in, "Sequence has empty size");
733 //Mathieu : we fix enum size to 4 bytes. GCC is always like this.
734 //fox copy optimisation.
735 if(t->size != 0) in->error(in, "Enum has fixed size of 4.");
736 t->size = 4;
3583026d 737 getRAnglebracket(in);
738
739 //<label name=label1 value=n/>
740 getLAnglebracket(in);
741 token = getToken(in); //"label" or "/"
742 while(strcmp("label",token) == 0){
743 str = allocAndCopy(getNameAttribute(in));
744 token = getValueStrAttribute(in);
745 if(token){
746 str1 = appendString(str,"=");
747 free(str);
748 str = appendString(str1,token);
749 free(str1);
750 sequence_push(&(t->labels),str);
751 }
752 else
753 sequence_push(&(t->labels),str);
754
755 getForwardslash(in);
756 getRAnglebracket(in);
757
758 //read description if any. May be NULL.
759 str = allocAndCopy(getDescription(in));
760 sequence_push(&(t->labels_description),str);
761
762 //next label definition
763 getLAnglebracket(in);
764 token = getToken(in); //"label" or "/"
765 }
766 if(strcmp("/",token))in->error(in, "not a valid enum definition");
767 token = getName(in);
768 if(strcmp("enum",token))in->error(in, "not a valid enum definition");
769 getRAnglebracket(in); //</label>
770 }
2d2d14a7 771 else if(strcmp(token,"int_fixed") == 0) {
772 t->type = INT_FIXED;
be97b953 773 getTypeAttributes(in, t, unnamed_types, named_types);
2d2d14a7 774 if(t->size == 0) in->error(in, "int has empty size");
775 getForwardslash(in);
776 getRAnglebracket(in);
777 }
778 else if(strcmp(token,"uint_fixed") == 0) {
779 t->type = UINT_FIXED;
be97b953 780 getTypeAttributes(in, t, unnamed_types, named_types);
2d2d14a7 781 if(t->size == 0) in->error(in, "uint has empty size");
782 getForwardslash(in);
783 getRAnglebracket(in);
784 }
785 else if(strcmp(token,"char") == 0) {
786 t->type = CHAR;
a67cd958 787 t->size = 1;
be97b953 788 getTypeAttributes(in, t, unnamed_types, named_types);
2d2d14a7 789 getForwardslash(in);
790 getRAnglebracket(in);
791 }
792 else if(strcmp(token,"uchar") == 0) {
793 t->type = UCHAR;
a67cd958 794 t->size = 1;
be97b953 795 getTypeAttributes(in, t, unnamed_types, named_types);
2d2d14a7 796 getForwardslash(in);
797 getRAnglebracket(in);
798 }
799 else if(strcmp(token,"short") == 0) {
800 t->type = SHORT;
a67cd958 801 t->size = 2;
be97b953 802 getTypeAttributes(in, t, unnamed_types, named_types);
2d2d14a7 803 getForwardslash(in);
804 getRAnglebracket(in);
805 }
806 else if(strcmp(token,"ushort") == 0) {
807 t->type = USHORT;
a67cd958 808 t->size = 2;
be97b953 809 getTypeAttributes(in, t, unnamed_types, named_types);
2d2d14a7 810 getForwardslash(in);
811 getRAnglebracket(in);
812 }
3583026d 813 else if(strcmp(token,"int") == 0) {
814 t->type = INT;
be97b953 815 getTypeAttributes(in, t, unnamed_types, named_types);
3583026d 816 getForwardslash(in);
817 getRAnglebracket(in);
818 }
819 else if(strcmp(token,"uint") == 0) {
820 t->type = UINT;
be97b953 821 getTypeAttributes(in, t, unnamed_types, named_types);
3583026d 822 getForwardslash(in);
823 getRAnglebracket(in);
824 }
2d2d14a7 825
3583026d 826 else if(strcmp(token,"pointer") == 0) {
827 t->type = POINTER;
be97b953 828 getTypeAttributes(in, t, unnamed_types, named_types);
3583026d 829 getForwardslash(in);
830 getRAnglebracket(in);
831 }
832 else if(strcmp(token,"long") == 0) {
833 t->type = LONG;
be97b953 834 getTypeAttributes(in, t, unnamed_types, named_types);
3583026d 835 getForwardslash(in);
836 getRAnglebracket(in);
837 }
838 else if(strcmp(token,"ulong") == 0) {
839 t->type = ULONG;
be97b953 840 getTypeAttributes(in, t, unnamed_types, named_types);
3583026d 841 getForwardslash(in);
842 getRAnglebracket(in);
843 }
844 else if(strcmp(token,"size_t") == 0) {
845 t->type = SIZE_T;
be97b953 846 getTypeAttributes(in, t, unnamed_types, named_types);
3583026d 847 getForwardslash(in);
848 getRAnglebracket(in);
849 }
850 else if(strcmp(token,"ssize_t") == 0) {
851 t->type = SSIZE_T;
be97b953 852 getTypeAttributes(in, t, unnamed_types, named_types);
3583026d 853 getForwardslash(in);
854 getRAnglebracket(in);
855 }
856 else if(strcmp(token,"off_t") == 0) {
857 t->type = OFF_T;
be97b953 858 getTypeAttributes(in, t, unnamed_types, named_types);
3583026d 859 getForwardslash(in);
860 getRAnglebracket(in);
861 }
862 else if(strcmp(token,"float") == 0) {
863 t->type = FLOAT;
be97b953 864 getTypeAttributes(in, t, unnamed_types, named_types);
3583026d 865 getForwardslash(in);
866 getRAnglebracket(in);
867 }
868 else if(strcmp(token,"string") == 0) {
869 t->type = STRING;
be97b953 870 getTypeAttributes(in, t, unnamed_types, named_types);
3583026d 871 getForwardslash(in);
872 getRAnglebracket(in);
873 }
874 else if(strcmp(token,"typeref") == 0){
875 // Must be a named type
a67cd958 876 free(t);
877 sequence_pop(unnamed_types);
878 token = getNameAttribute(in);
879 t = find_named_type(token, named_types);
880 if(t == NULL) in->error(in,"Named referred to must be pre-declared.");
881 getForwardslash(in); //<typeref name=type_name/>
882 getRAnglebracket(in);
883 return t;
3583026d 884 }else in->error(in,"not a valid type");
885
886 return t;
887}
888
889/*****************************************************************************
890 *Function name
891 * find_named_type : find a named type from hash table
892 *Input params
893 * name : type name
894 * named_types : array of named types
895 *Return values
896 * type_descriptor * : a type descriptor
897 *****************************************************************************/
898
899type_descriptor_t * find_named_type(char *name, table_t * named_types)
900{
901 type_descriptor_t *t;
902
903 t = table_find(named_types,name);
34c1d1b5 904
3583026d 905 return t;
34c1d1b5 906}
907
908type_descriptor_t * create_named_type(char *name, table_t * named_types)
909{
910 type_descriptor_t *t;
911
912 t = (type_descriptor_t *)memAlloc(sizeof(type_descriptor_t));
913 t->type_name = allocAndCopy(name);
914 t->type = NONE;
915 t->fmt = NULL;
916 table_insert(named_types,t->type_name,t);
917 // table_insert(named_types,allocAndCopy(name),t);
918 return t;
919}
3583026d 920
921/*****************************************************************************
922 *Function name
923 * parseTypeDefinition : get type information from type definition
924 *Input params
925 * in : input file handle
926 * unnamed_types : array of unamed types
927 * named_types : array of named types
928 *****************************************************************************/
929
930void parseTypeDefinition(parse_file_t * in, sequence_t * unnamed_types,
931 table_t * named_types)
932{
933 char *token;
934 type_descriptor_t *t;
935
936 token = getNameAttribute(in);
937 if(token == NULL) in->error(in, "Type has empty name");
34c1d1b5 938 t = create_named_type(token, named_types);
3583026d 939
940 if(t->type != NONE) in->error(in,"redefinition of named type");
941 getRAnglebracket(in); //<type name=type_name>
942 getLAnglebracket(in); //<
943 token = getName(in);
944 //MD ??if(strcmp("struct",token))in->error(in,"not a valid type definition");
945 ungetToken(in);
946 parseType(in,t, unnamed_types, named_types);
947
948 //</type>
949 getLAnglebracket(in);
950 getForwardslash(in);
951 token = getName(in);
952 if(strcmp("type",token))in->error(in,"not a valid type definition");
953 getRAnglebracket(in); //</type>
954}
955
956/**************************************************************************
957 * Function :
958 * getComa, getName, getNumber, getEqual
959 * Description :
960 * Read a token from the input file, check its type, return it scontent.
961 *
962 * Parameters :
963 * in , input file handle.
964 *
965 * Return values :
966 * address of token content.
967 *
968 **************************************************************************/
969
970char *getName(parse_file_t * in)
971{
972 char *token;
973
974 token = getToken(in);
975 if(in->type != NAME) in->error(in,"Name token was expected");
976 return token;
977}
978
979int getNumber(parse_file_t * in)
980{
981 char *token;
982
983 token = getToken(in);
984 if(in->type != NUMBER) in->error(in, "Number token was expected");
985 return atoi(token);
986}
987
988char *getForwardslash(parse_file_t * in)
989{
990 char *token;
991
992 token = getToken(in);
2d2d14a7 993 //if(in->type != FORWARDSLASH) in->error(in, "forward slash token was expected");
994 /* Mathieu : final / is optional now. */
995 if(in->type != FORWARDSLASH) ungetToken(in);
996
3583026d 997 return token;
998}
999
1000char *getLAnglebracket(parse_file_t * in)
1001{
1002 char *token;
1003
1004 token = getToken(in);
1005 if(in->type != LANGLEBRACKET) in->error(in, "Left angle bracket was expected");
1006 return token;
1007}
1008
1009char *getRAnglebracket(parse_file_t * in)
1010{
1011 char *token;
1012
1013 token = getToken(in);
1014 if(in->type != RANGLEBRACKET) in->error(in, "Right angle bracket was expected");
1015 return token;
1016}
1017
1018char *getQuotedString(parse_file_t * in)
1019{
1020 char *token;
1021
1022 token = getToken(in);
1023 if(in->type != QUOTEDSTRING) in->error(in, "quoted string was expected");
1024 return token;
1025}
1026
1027char * getEqual(parse_file_t *in)
1028{
1029 char *token;
1030
1031 token = getToken(in);
1032 if(in->type != EQUAL) in->error(in, "equal was expected");
1033 return token;
1034}
1035
1036char seekNextChar(parse_file_t *in)
1037{
1038 char car;
1039 while((car = getc(in->fp)) != EOF) {
1040 if(!isspace(car)){
1041 ungetc(car,in->fp);
1042 return car;
1043 }
1044 }
1045 return EOF;
1046}
1047
1048/******************************************************************
1049 * Function :
1050 * getToken, ungetToken
1051 * Description :
1052 * Read a token from the input file and return its type and content.
1053 * Line numbers are accounted for and whitespace/comments are skipped.
1054 *
1055 * Parameters :
1056 * in, input file handle.
1057 *
1058 * Return values :
1059 * address of token content.
1060 *
1061 ******************************************************************/
1062
1063void ungetToken(parse_file_t * in)
1064{
1065 in->unget = 1;
1066}
1067
1068char *getToken(parse_file_t * in)
1069{
1070 FILE *fp = in->fp;
1071 char car, car1;
1072 int pos = 0, escaped;
1073
1074 if(in->unget == 1) {
1075 in->unget = 0;
1076 return in->buffer;
1077 }
1078
1079 /* skip whitespace and comments */
1080
1081 while((car = getc(fp)) != EOF) {
1082 if(car == '/') {
1083 car1 = getc(fp);
1084 if(car1 == '*') skipComment(in);
1085 else if(car1 == '/') skipEOL(in);
1086 else {
1087 car1 = ungetc(car1,fp);
1088 break;
1089 }
1090 }
1091 else if(car == '\n') in->lineno++;
1092 else if(!isspace(car)) break;
1093 }
1094
1095 switch(car) {
1096 case EOF:
1097 in->type = ENDFILE;
1098 break;
1099 case '/':
1100 in->type = FORWARDSLASH;
1101 in->buffer[pos] = car;
1102 pos++;
1103 break;
1104 case '<':
1105 in->type = LANGLEBRACKET;
1106 in->buffer[pos] = car;
1107 pos++;
1108 break;
1109 case '>':
1110 in->type = RANGLEBRACKET;
1111 in->buffer[pos] = car;
1112 pos++;
1113 break;
1114 case '=':
1115 in->type = EQUAL;
1116 in->buffer[pos] = car;
1117 pos++;
1118 break;
1119 case '"':
1120 escaped = 0;
1121 while((car = getc(fp)) != EOF && pos < BUFFER_SIZE) {
1122 if(car == '\\' && escaped == 0) {
1123 in->buffer[pos] = car;
1124 pos++;
1125 escaped = 1;
1126 continue;
1127 }
1128 if(car == '"' && escaped == 0) break;
1129 if(car == '\n' && escaped == 0) {
1130 in->error(in, "non escaped newline inside quoted string");
1131 }
1132 if(car == '\n') in->lineno++;
1133 in->buffer[pos] = car;
1134 pos++;
1135 escaped = 0;
1136 }
1137 if(car == EOF) in->error(in,"no ending quotemark");
1138 if(pos == BUFFER_SIZE) in->error(in, "quoted string token too large");
1139 in->type = QUOTEDSTRING;
1140 break;
1141 default:
1142 if(isdigit(car)) {
1143 in->buffer[pos] = car;
1144 pos++;
1145 while((car = getc(fp)) != EOF && pos < BUFFER_SIZE) {
1146 if(!isdigit(car)) {
1147 ungetc(car,fp);
1148 break;
1149 }
1150 in->buffer[pos] = car;
1151 pos++;
1152 }
1153 if(car == EOF) ungetc(car,fp);
1154 if(pos == BUFFER_SIZE) in->error(in, "number token too large");
1155 in->type = NUMBER;
1156 }
1157 else if(isalpha(car)) {
1158 in->buffer[0] = car;
1159 pos = 1;
1160 while((car = getc(fp)) != EOF && pos < BUFFER_SIZE) {
1161 if(!(isalnum(car) || car == '_')) {
1162 ungetc(car,fp);
1163 break;
1164 }
1165 in->buffer[pos] = car;
1166 pos++;
1167 }
1168 if(car == EOF) ungetc(car,fp);
1169 if(pos == BUFFER_SIZE) in->error(in, "name token too large");
1170 in->type = NAME;
1171 }
1172 else in->error(in, "invalid character, unrecognized token");
1173 }
1174 in->buffer[pos] = 0;
1175 return in->buffer;
1176}
1177
1178void skipComment(parse_file_t * in)
1179{
1180 char car;
1181 while((car = getc(in->fp)) != EOF) {
1182 if(car == '\n') in->lineno++;
1183 else if(car == '*') {
1184 car = getc(in->fp);
1185 if(car ==EOF) break;
1186 if(car == '/') return;
1187 ungetc(car,in->fp);
1188 }
1189 }
1190 if(car == EOF) in->error(in,"comment begining with '/*' has no ending '*/'");
1191}
1192
1193void skipEOL(parse_file_t * in)
1194{
1195 char car;
1196 while((car = getc(in->fp)) != EOF) {
1197 if(car == '\n') {
1198 ungetc(car,in->fp);
1199 break;
1200 }
1201 }
1202 if(car == EOF)ungetc(car, in->fp);
1203}
1204
1205/*****************************************************************************
1206 *Function name
1207 * checkNamedTypesImplemented : check if all named types have definition
1208 ****************************************************************************/
1209
1210void checkNamedTypesImplemented(table_t * named_types)
1211{
1212 type_descriptor_t *t;
1213 int pos;
1214 char str[256];
1215
1216 for(pos = 0 ; pos < named_types->values.position; pos++) {
1217 t = (type_descriptor_t *) named_types->values.array[pos];
1218 if(t->type == NONE){
1219 sprintf(str,"named type '%s' has no definition",
1220 (char*)named_types->keys.array[pos]);
1221 error_callback(NULL,str);
1222 }
1223 }
1224}
1225
1226
1227/*****************************************************************************
1228 *Function name
1229 * generateChecksum : generate checksum for the facility
1230 *Input Params
1231 * facName : name of facility
1232 *Output Params
1233 * checksum : checksum for the facility
1234 ****************************************************************************/
1235
1236void generateChecksum(char* facName,
30d72138 1237 unsigned int * checksum, sequence_t * events)
3583026d 1238{
1239 unsigned long crc ;
1240 int pos;
1241 event_t * ev;
3583026d 1242
1243 crc = crc32(facName);
1244 for(pos = 0; pos < events->position; pos++){
1245 ev = (event_t *)(events->array[pos]);
47299663 1246 crc = partial_crc32(ev->name, crc);
1247 for(unsigned int i = 0; i < ev->fields.position; i++) {
1248 field_t *f = (field_t*)ev->fields.array[i];
1249 crc = partial_crc32(f->name, crc);
1250 crc = getTypeChecksum(crc, f->type);
1251 }
3583026d 1252 }
1253 *checksum = crc;
1254}
1255
1256/*****************************************************************************
1257 *Function name
1258 * getTypeChecksum : generate checksum by type info
1259 *Input Params
1260 * crc : checksum generated so far
1261 * type : type descriptor containing type info
1262 *Return value
1263 * unsigned long : checksum
1264 *****************************************************************************/
1265
1266unsigned long getTypeChecksum(unsigned long aCrc, type_descriptor_t * type)
1267{
1268 unsigned long crc = aCrc;
1269 char * str = NULL, buf[16];
1270 int flag = 0, pos;
1271 field_t * fld;
1272
1273 switch(type->type){
2d2d14a7 1274 case INT_FIXED:
1275 str = intOutputTypes[getSizeindex(type->size)];
3583026d 1276 break;
2d2d14a7 1277 case UINT_FIXED:
1278 str = uintOutputTypes[getSizeindex(type->size)];
3583026d 1279 break;
1280 case POINTER:
1281 str = allocAndCopy("void *");
1282 flag = 1;
1283 break;
2d2d14a7 1284 case CHAR:
1285 str = allocAndCopy("signed char");
1286 flag = 1;
1287 break;
1288 case UCHAR:
1289 str = allocAndCopy("unsigned char");
1290 flag = 1;
1291 break;
1292 case SHORT:
1293 str = allocAndCopy("short");
1294 flag = 1;
1295 break;
1296 case USHORT:
1297 str = allocAndCopy("unsigned short");
1298 flag = 1;
1299 break;
1300 case INT:
1301 str = allocAndCopy("int");
1302 flag = 1;
1303 break;
1304 case UINT:
1305 str = allocAndCopy("uint");
1306 flag = 1;
1307 break;
3583026d 1308 case LONG:
1309 str = allocAndCopy("long");
1310 flag = 1;
1311 break;
1312 case ULONG:
1313 str = allocAndCopy("unsigned long");
1314 flag = 1;
1315 break;
1316 case SIZE_T:
1317 str = allocAndCopy("size_t");
1318 flag = 1;
1319 break;
1320 case SSIZE_T:
1321 str = allocAndCopy("ssize_t");
1322 flag = 1;
1323 break;
1324 case OFF_T:
1325 str = allocAndCopy("off_t");
1326 flag = 1;
1327 break;
1328 case FLOAT:
2d2d14a7 1329 str = floatOutputTypes[getSizeindex(type->size)];
3583026d 1330 break;
1331 case STRING:
1332 str = allocAndCopy("string");
1333 flag = 1;
1334 break;
1335 case ENUM:
2d2d14a7 1336 //str = appendString("enum ", uintOutputTypes[getSizeindex(type->size)]);
1337 str = allocAndCopy("enum");
3583026d 1338 flag = 1;
1339 break;
1340 case ARRAY:
2e415130 1341 sprintf(buf,"%zu", type->size);
3583026d 1342 str = appendString("array ",buf);
1343 flag = 1;
1344 break;
1345 case SEQUENCE:
2e415130 1346 sprintf(buf,"%zu", type->size);
3583026d 1347 str = appendString("sequence ",buf);
1348 flag = 1;
1349 break;
1350 case STRUCT:
1351 str = allocAndCopy("struct");
1352 flag = 1;
1353 break;
1354 case UNION:
1355 str = allocAndCopy("union");
1356 flag = 1;
1357 break;
1358 default:
1359 error_callback(NULL, "named type has no definition");
1360 break;
1361 }
1362
1363 crc = partial_crc32(str,crc);
1364 if(flag) free(str);
1365
1366 if(type->fmt) crc = partial_crc32(type->fmt,crc);
1367
2e415130 1368 if(type->type == ARRAY){
1369 crc = getTypeChecksum(crc,((field_t*)type->fields.array[0])->type);
1370 } else if(type->type ==SEQUENCE) {
1371 crc = getTypeChecksum(crc,((field_t*)type->fields.array[0])->type);
1372 crc = getTypeChecksum(crc,((field_t*)type->fields.array[1])->type);
1373 } else if(type->type == STRUCT || type->type == UNION){
3583026d 1374 for(pos =0; pos < type->fields.position; pos++){
1375 fld = (field_t *) type->fields.array[pos];
1376 crc = partial_crc32(fld->name,crc);
1377 crc = getTypeChecksum(crc, fld->type);
1378 }
1379 }else if(type->type == ENUM){
1380 for(pos = 0; pos < type->labels.position; pos++)
1381 crc = partial_crc32((char*)type->labels.array[pos],crc);
1382 }
1383
1384 return crc;
1385}
1386
1387
1388/* Event type descriptors */
1389void freeType(type_descriptor_t * tp)
1390{
1391 int pos2;
1392 field_t *f;
1393
1394 if(tp->fmt != NULL) free(tp->fmt);
1395 if(tp->type == ENUM) {
1396 for(pos2 = 0; pos2 < tp->labels.position; pos2++) {
1397 free(tp->labels.array[pos2]);
1398 }
1399 sequence_dispose(&(tp->labels));
1400 }
1401 if(tp->type == STRUCT) {
1402 for(pos2 = 0; pos2 < tp->fields.position; pos2++) {
1403 f = (field_t *) tp->fields.array[pos2];
1404 free(f->name);
1405 free(f->description);
1406 free(f);
1407 }
1408 sequence_dispose(&(tp->fields));
1409 }
1410}
1411
1412void freeNamedType(table_t * t)
1413{
1414 int pos;
1415 type_descriptor_t * td;
1416
1417 for(pos = 0 ; pos < t->keys.position; pos++) {
1418 free((char *)t->keys.array[pos]);
1419 td = (type_descriptor_t*)t->values.array[pos];
1420 freeType(td);
1421 free(td);
1422 }
1423}
1424
1425void freeTypes(sequence_t *t)
1426{
1427 int pos;
1428 type_descriptor_t *tp;
1429
1430 for(pos = 0 ; pos < t->position; pos++) {
1431 tp = (type_descriptor_t *)t->array[pos];
1432 freeType(tp);
1433 free(tp);
1434 }
1435}
1436
1437void freeEvents(sequence_t *t)
1438{
1439 int pos;
1440 event_t *ev;
1441
1442 for(pos = 0 ; pos < t->position; pos++) {
1443 ev = (event_t *) t->array[pos];
1444 free(ev->name);
1445 free(ev->description);
47299663 1446 sequence_dispose(&ev->fields);
3583026d 1447 free(ev);
1448 }
1449
1450}
1451
1452
1453/* Extensible array */
1454
1455void sequence_init(sequence_t *t)
1456{
1457 t->size = 10;
1458 t->position = 0;
1459 t->array = (void **)memAlloc(t->size * sizeof(void *));
1460}
1461
1462void sequence_dispose(sequence_t *t)
1463{
1464 t->size = 0;
1465 free(t->array);
1466 t->array = NULL;
1467}
1468
1469void sequence_push(sequence_t *t, void *elem)
1470{
1471 void **tmp;
1472
1473 if(t->position >= t->size) {
1474 tmp = t->array;
1475 t->array = (void **)memAlloc(t->size * 2 * sizeof(void *));
1476 memcpy(t->array, tmp, t->size * sizeof(void *));
1477 t->size = t->size * 2;
1478 free(tmp);
1479 }
1480 t->array[t->position] = elem;
1481 t->position++;
1482}
1483
1484void *sequence_pop(sequence_t *t)
1485{
1486 return t->array[t->position--];
1487}
1488
1489
1490/* Hash table API, implementation is just linear search for now */
1491
1492void table_init(table_t *t)
1493{
1494 sequence_init(&(t->keys));
1495 sequence_init(&(t->values));
1496}
1497
1498void table_dispose(table_t *t)
1499{
1500 sequence_dispose(&(t->keys));
1501 sequence_dispose(&(t->values));
1502}
1503
1504void table_insert(table_t *t, char *key, void *value)
1505{
1506 sequence_push(&(t->keys),key);
1507 sequence_push(&(t->values),value);
1508}
1509
1510void *table_find(table_t *t, char *key)
1511{
1512 int pos;
1513 for(pos = 0 ; pos < t->keys.position; pos++) {
1514 if(strcmp((char *)key,(char *)t->keys.array[pos]) == 0)
1515 return(t->values.array[pos]);
1516 }
1517 return NULL;
1518}
1519
1520void table_insert_int(table_t *t, int *key, void *value)
1521{
1522 sequence_push(&(t->keys),key);
1523 sequence_push(&(t->values),value);
1524}
1525
1526void *table_find_int(table_t *t, int *key)
1527{
1528 int pos;
1529 for(pos = 0 ; pos < t->keys.position; pos++) {
1530 if(*key == *(int *)t->keys.array[pos])
1531 return(t->values.array[pos]);
1532 }
1533 return NULL;
1534}
1535
1536
1537/* Concatenate strings */
1538
1539char *appendString(char *s, char *suffix)
1540{
1541 char *tmp;
1542 if(suffix == NULL) return s;
1543
1544 tmp = (char *)memAlloc(strlen(s) + strlen(suffix) + 1);
1545 strcpy(tmp,s);
1546 strcat(tmp,suffix);
1547 return tmp;
1548}
1549
1550
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