Fix typos
[libside.git] / src / tracer.c
1 // SPDX-License-Identifier: MIT
2 /*
3 * Copyright 2022 Mathieu Desnoyers <mathieu.desnoyers@efficios.com>
4 */
5
6 #include <stdint.h>
7 #include <inttypes.h>
8 #include <stdlib.h>
9 #include <stdio.h>
10 #include <stdbool.h>
11 #include <string.h>
12 #include <iconv.h>
13
14 #include <side/trace.h>
15
16 enum tracer_display_base {
17 TRACER_DISPLAY_BASE_2,
18 TRACER_DISPLAY_BASE_8,
19 TRACER_DISPLAY_BASE_10,
20 TRACER_DISPLAY_BASE_16,
21 };
22
23 union int64_value {
24 uint64_t u;
25 int64_t s;
26 };
27
28 static struct side_tracer_handle *tracer_handle;
29
30 static
31 void tracer_print_struct(const struct side_type *type_desc, const struct side_arg_vec *side_arg_vec);
32 static
33 void tracer_print_variant(const struct side_type *type_desc, const struct side_arg_variant *side_arg_variant);
34 static
35 void tracer_print_array(const struct side_type *type_desc, const struct side_arg_vec *side_arg_vec);
36 static
37 void tracer_print_vla(const struct side_type *type_desc, const struct side_arg_vec *side_arg_vec);
38 static
39 void tracer_print_vla_visitor(const struct side_type *type_desc, void *app_ctx);
40 static
41 void tracer_print_dynamic(const struct side_arg *dynamic_item);
42 static
43 uint32_t tracer_print_gather_bool_type(const struct side_type_gather *type_gather, const void *_ptr);
44 static
45 uint32_t tracer_print_gather_byte_type(const struct side_type_gather *type_gather, const void *_ptr);
46 static
47 uint32_t tracer_print_gather_integer_type(const struct side_type_gather *type_gather, const void *_ptr,
48 enum tracer_display_base default_base);
49 static
50 uint32_t tracer_print_gather_float_type(const struct side_type_gather *type_gather, const void *_ptr);
51 static
52 uint32_t tracer_print_gather_string_type(const struct side_type_gather *type_gather, const void *_ptr);
53 static
54 uint32_t tracer_print_gather_enum_type(const struct side_type_gather *type_gather, const void *_ptr);
55 static
56 uint32_t tracer_print_gather_struct(const struct side_type_gather *type_gather, const void *_ptr);
57 static
58 uint32_t tracer_print_gather_array(const struct side_type_gather *type_gather, const void *_ptr);
59 static
60 uint32_t tracer_print_gather_vla(const struct side_type_gather *type_gather, const void *_ptr,
61 const void *_length_ptr);
62 static
63 void tracer_print_type(const struct side_type *type_desc, const struct side_arg *item);
64
65 static
66 void tracer_convert_string_to_utf8(const void *p, uint8_t unit_size, enum side_type_label_byte_order byte_order,
67 size_t *strlen_with_null,
68 char **output_str)
69 {
70 size_t ret, inbytesleft = 0, outbytesleft, bufsize;
71 const char *str = p, *fromcode;
72 char *inbuf = (char *) p, *outbuf, *buf;
73 iconv_t cd;
74
75 switch (unit_size) {
76 case 1:
77 if (strlen_with_null)
78 *strlen_with_null = strlen(str) + 1;
79 *output_str = (char *) str;
80 return;
81 case 2:
82 {
83 const uint16_t *p16 = p;
84
85 switch (byte_order) {
86 case SIDE_TYPE_BYTE_ORDER_LE:
87 {
88 fromcode = "UTF-16LE";
89 break;
90 }
91 case SIDE_TYPE_BYTE_ORDER_BE:
92 {
93 fromcode = "UTF-16BE";
94 break;
95 }
96 default:
97 fprintf(stderr, "Unknown byte order\n");
98 abort();
99 }
100 for (; *p16; p16++)
101 inbytesleft += 2;
102 /*
103 * Worse case is U+FFFF UTF-16 (2 bytes) converting to
104 * { ef, bf, bf } UTF-8 (3 bytes).
105 */
106 bufsize = inbytesleft / 2 * 3 + 1;
107 break;
108 }
109 case 4:
110 {
111 const uint32_t *p32 = p;
112
113 switch (byte_order) {
114 case SIDE_TYPE_BYTE_ORDER_LE:
115 {
116 fromcode = "UTF-32LE";
117 break;
118 }
119 case SIDE_TYPE_BYTE_ORDER_BE:
120 {
121 fromcode = "UTF-32BE";
122 break;
123 }
124 default:
125 fprintf(stderr, "Unknown byte order\n");
126 abort();
127 }
128 for (; *p32; p32++)
129 inbytesleft += 4;
130 /*
131 * Each 4-byte UTF-32 character converts to at most a
132 * 4-byte UTF-8 character.
133 */
134 bufsize = inbytesleft + 1;
135 break;
136 }
137 default:
138 fprintf(stderr, "Unknown string unit size %" PRIu8 "\n", unit_size);
139 abort();
140 }
141
142 cd = iconv_open("UTF8", fromcode);
143 if (cd == (iconv_t) -1) {
144 perror("iconv_open");
145 abort();
146 }
147 buf = malloc(bufsize);
148 if (!buf) {
149 abort();
150 }
151 outbuf = (char *) buf;
152 outbytesleft = bufsize;
153 ret = iconv(cd, &inbuf, &inbytesleft, &outbuf, &outbytesleft);
154 if (ret == (size_t) -1) {
155 perror("iconv");
156 abort();
157 }
158 if (inbytesleft) {
159 fprintf(stderr, "Buffer too small to convert string input\n");
160 abort();
161 }
162 (*outbuf++) = '\0';
163 if (iconv_close(cd) == -1) {
164 perror("iconv_close");
165 abort();
166 }
167 if (strlen_with_null)
168 *strlen_with_null = outbuf - buf;
169 *output_str = buf;
170 }
171
172 static
173 void tracer_print_string(const void *p, uint8_t unit_size, enum side_type_label_byte_order byte_order,
174 size_t *strlen_with_null)
175 {
176 char *output_str = NULL;
177
178 tracer_convert_string_to_utf8(p, unit_size, byte_order, strlen_with_null, &output_str);
179 printf("\"%s\"", output_str);
180 if (output_str != p)
181 free(output_str);
182 }
183
184 static
185 int64_t get_attr_integer_value(const struct side_attr *attr)
186 {
187 int64_t val;
188
189 switch (attr->value.type) {
190 case SIDE_ATTR_TYPE_U8:
191 val = attr->value.u.integer_value.side_u8;
192 break;
193 case SIDE_ATTR_TYPE_U16:
194 val = attr->value.u.integer_value.side_u16;
195 break;
196 case SIDE_ATTR_TYPE_U32:
197 val = attr->value.u.integer_value.side_u32;
198 break;
199 case SIDE_ATTR_TYPE_U64:
200 val = attr->value.u.integer_value.side_u64;
201 break;
202 case SIDE_ATTR_TYPE_S8:
203 val = attr->value.u.integer_value.side_s8;
204 break;
205 case SIDE_ATTR_TYPE_S16:
206 val = attr->value.u.integer_value.side_s16;
207 break;
208 case SIDE_ATTR_TYPE_S32:
209 val = attr->value.u.integer_value.side_s32;
210 break;
211 case SIDE_ATTR_TYPE_S64:
212 val = attr->value.u.integer_value.side_s64;
213 break;
214 default:
215 fprintf(stderr, "Unexpected attribute type\n");
216 abort();
217 }
218 return val;
219 }
220
221 static
222 enum tracer_display_base get_attr_display_base(const struct side_attr *_attr, uint32_t nr_attr,
223 enum tracer_display_base default_base)
224 {
225 uint32_t i;
226
227 for (i = 0; i < nr_attr; i++) {
228 const struct side_attr *attr = &_attr[i];
229 char *utf8_str = NULL;
230 bool cmp;
231
232 tracer_convert_string_to_utf8(attr->key.p, attr->key.unit_size,
233 attr->key.byte_order, NULL, &utf8_str);
234 cmp = strcmp(utf8_str, "std.integer.base");
235 if (utf8_str != attr->key.p)
236 free(utf8_str);
237 if (!cmp) {
238 int64_t val = get_attr_integer_value(attr);
239
240 switch (val) {
241 case 2:
242 return TRACER_DISPLAY_BASE_2;
243 case 8:
244 return TRACER_DISPLAY_BASE_8;
245 case 10:
246 return TRACER_DISPLAY_BASE_10;
247 case 16:
248 return TRACER_DISPLAY_BASE_16;
249 default:
250 fprintf(stderr, "Unexpected integer display base: %" PRId64 "\n", val);
251 abort();
252 }
253 }
254 }
255 return default_base; /* Default */
256 }
257
258 static
259 void tracer_print_attr_type(const char *separator, const struct side_attr *attr)
260 {
261 char *utf8_str = NULL;
262
263 tracer_convert_string_to_utf8(attr->key.p, attr->key.unit_size,
264 attr->key.byte_order, NULL, &utf8_str);
265 printf("{ key%s \"%s\", value%s ", separator, utf8_str, separator);
266 if (utf8_str != attr->key.p)
267 free(utf8_str);
268 switch (attr->value.type) {
269 case SIDE_ATTR_TYPE_BOOL:
270 printf("%s", attr->value.u.bool_value ? "true" : "false");
271 break;
272 case SIDE_ATTR_TYPE_U8:
273 printf("%" PRIu8, attr->value.u.integer_value.side_u8);
274 break;
275 case SIDE_ATTR_TYPE_U16:
276 printf("%" PRIu16, attr->value.u.integer_value.side_u16);
277 break;
278 case SIDE_ATTR_TYPE_U32:
279 printf("%" PRIu32, attr->value.u.integer_value.side_u32);
280 break;
281 case SIDE_ATTR_TYPE_U64:
282 printf("%" PRIu64, attr->value.u.integer_value.side_u64);
283 break;
284 case SIDE_ATTR_TYPE_S8:
285 printf("%" PRId8, attr->value.u.integer_value.side_s8);
286 break;
287 case SIDE_ATTR_TYPE_S16:
288 printf("%" PRId16, attr->value.u.integer_value.side_s16);
289 break;
290 case SIDE_ATTR_TYPE_S32:
291 printf("%" PRId32, attr->value.u.integer_value.side_s32);
292 break;
293 case SIDE_ATTR_TYPE_S64:
294 printf("%" PRId64, attr->value.u.integer_value.side_s64);
295 break;
296 case SIDE_ATTR_TYPE_FLOAT_BINARY16:
297 #if __HAVE_FLOAT16
298 printf("%g", (double) attr->value.u.float_value.side_float_binary16);
299 break;
300 #else
301 fprintf(stderr, "ERROR: Unsupported binary16 float type\n");
302 abort();
303 #endif
304 case SIDE_ATTR_TYPE_FLOAT_BINARY32:
305 #if __HAVE_FLOAT32
306 printf("%g", (double) attr->value.u.float_value.side_float_binary32);
307 break;
308 #else
309 fprintf(stderr, "ERROR: Unsupported binary32 float type\n");
310 abort();
311 #endif
312 case SIDE_ATTR_TYPE_FLOAT_BINARY64:
313 #if __HAVE_FLOAT64
314 printf("%g", (double) attr->value.u.float_value.side_float_binary64);
315 break;
316 #else
317 fprintf(stderr, "ERROR: Unsupported binary64 float type\n");
318 abort();
319 #endif
320 case SIDE_ATTR_TYPE_FLOAT_BINARY128:
321 #if __HAVE_FLOAT128
322 printf("%Lg", (long double) attr->value.u.float_value.side_float_binary128);
323 break;
324 #else
325 fprintf(stderr, "ERROR: Unsupported binary128 float type\n");
326 abort();
327 #endif
328 case SIDE_ATTR_TYPE_STRING:
329 tracer_print_string(attr->value.u.string_value.p,
330 attr->value.u.string_value.unit_size,
331 attr->value.u.string_value.byte_order, NULL);
332 break;
333 default:
334 fprintf(stderr, "ERROR: <UNKNOWN ATTRIBUTE TYPE>");
335 abort();
336 }
337 printf(" }");
338 }
339
340 static
341 void print_attributes(const char *prefix_str, const char *separator,
342 const struct side_attr *attr, uint32_t nr_attr)
343 {
344 uint32_t i;
345
346 if (!nr_attr)
347 return;
348 printf("%s%s [ ", prefix_str, separator);
349 for (i = 0; i < nr_attr; i++) {
350 printf("%s", i ? ", " : "");
351 tracer_print_attr_type(separator, &attr[i]);
352 }
353 printf(" ]");
354 }
355
356 static
357 union int64_value tracer_load_integer_value(const struct side_type_integer *type_integer,
358 const union side_integer_value *value,
359 uint16_t offset_bits, uint16_t *_len_bits)
360 {
361 union int64_value v64;
362 uint16_t len_bits;
363 bool reverse_bo;
364
365 if (!type_integer->len_bits)
366 len_bits = type_integer->integer_size * CHAR_BIT;
367 else
368 len_bits = type_integer->len_bits;
369 if (len_bits + offset_bits > type_integer->integer_size * CHAR_BIT)
370 abort();
371 reverse_bo = type_integer->byte_order != SIDE_TYPE_BYTE_ORDER_HOST;
372 switch (type_integer->integer_size) {
373 case 1:
374 if (type_integer->signedness)
375 v64.s = value->side_s8;
376 else
377 v64.u = value->side_u8;
378 break;
379 case 2:
380 if (type_integer->signedness) {
381 int16_t side_s16;
382
383 side_s16 = value->side_s16;
384 if (reverse_bo)
385 side_s16 = side_bswap_16(side_s16);
386 v64.s = side_s16;
387 } else {
388 uint16_t side_u16;
389
390 side_u16 = value->side_u16;
391 if (reverse_bo)
392 side_u16 = side_bswap_16(side_u16);
393 v64.u = side_u16;
394 }
395 break;
396 case 4:
397 if (type_integer->signedness) {
398 int32_t side_s32;
399
400 side_s32 = value->side_s32;
401 if (reverse_bo)
402 side_s32 = side_bswap_32(side_s32);
403 v64.s = side_s32;
404 } else {
405 uint32_t side_u32;
406
407 side_u32 = value->side_u32;
408 if (reverse_bo)
409 side_u32 = side_bswap_32(side_u32);
410 v64.u = side_u32;
411 }
412 break;
413 case 8:
414 if (type_integer->signedness) {
415 int64_t side_s64;
416
417 side_s64 = value->side_s64;
418 if (reverse_bo)
419 side_s64 = side_bswap_64(side_s64);
420 v64.s = side_s64;
421 } else {
422 uint64_t side_u64;
423
424 side_u64 = value->side_u64;
425 if (reverse_bo)
426 side_u64 = side_bswap_64(side_u64);
427 v64.u = side_u64;
428 }
429 break;
430 default:
431 abort();
432 }
433 v64.u >>= offset_bits;
434 if (len_bits < 64) {
435 v64.u &= (1ULL << len_bits) - 1;
436 if (type_integer->signedness) {
437 /* Sign-extend. */
438 if (v64.u & (1ULL << (len_bits - 1)))
439 v64.u |= ~((1ULL << len_bits) - 1);
440 }
441 }
442 if (_len_bits)
443 *_len_bits = len_bits;
444 return v64;
445 }
446
447 static
448 void print_enum_labels(const struct side_enum_mappings *mappings, union int64_value v64)
449 {
450 uint32_t i, print_count = 0;
451
452 printf(", labels: [ ");
453 for (i = 0; i < mappings->nr_mappings; i++) {
454 const struct side_enum_mapping *mapping = &mappings->mappings[i];
455
456 if (mapping->range_end < mapping->range_begin) {
457 fprintf(stderr, "ERROR: Unexpected enum range: %" PRIu64 "-%" PRIu64 "\n",
458 mapping->range_begin, mapping->range_end);
459 abort();
460 }
461 if (v64.s >= mapping->range_begin && v64.s <= mapping->range_end) {
462 printf("%s", print_count++ ? ", " : "");
463 tracer_print_string(mapping->label.p, mapping->label.unit_size, mapping->label.byte_order, NULL);
464 }
465 }
466 if (!print_count)
467 printf("<NO LABEL>");
468 printf(" ]");
469 }
470
471 static
472 void tracer_print_enum(const struct side_type *type_desc, const struct side_arg *item)
473 {
474 const struct side_enum_mappings *mappings = type_desc->u.side_enum.mappings;
475 const struct side_type *elem_type = type_desc->u.side_enum.elem_type;
476 union int64_value v64;
477
478 if (elem_type->type != item->type) {
479 fprintf(stderr, "ERROR: Unexpected enum element type\n");
480 abort();
481 }
482 v64 = tracer_load_integer_value(&elem_type->u.side_integer,
483 &item->u.side_static.integer_value, 0, NULL);
484 print_attributes("attr", ":", mappings->attr, mappings->nr_attr);
485 printf("%s", mappings->nr_attr ? ", " : "");
486 tracer_print_type(elem_type, item);
487 print_enum_labels(mappings, v64);
488 }
489
490 static
491 uint32_t elem_type_to_stride(const struct side_type *elem_type)
492 {
493 uint32_t stride_bit;
494
495 switch (elem_type->type) {
496 case SIDE_TYPE_BYTE:
497 stride_bit = 8;
498 break;
499
500 case SIDE_TYPE_U8:
501 case SIDE_TYPE_U16:
502 case SIDE_TYPE_U32:
503 case SIDE_TYPE_U64:
504 case SIDE_TYPE_S8:
505 case SIDE_TYPE_S16:
506 case SIDE_TYPE_S32:
507 case SIDE_TYPE_S64:
508 return elem_type->u.side_integer.integer_size * CHAR_BIT;
509 default:
510 fprintf(stderr, "ERROR: Unexpected enum bitmap element type\n");
511 abort();
512 }
513 return stride_bit;
514 }
515
516 static
517 void tracer_print_enum_bitmap(const struct side_type *type_desc,
518 const struct side_arg *item)
519 {
520 const struct side_enum_bitmap_mappings *side_enum_mappings = type_desc->u.side_enum_bitmap.mappings;
521 const struct side_type *enum_elem_type = type_desc->u.side_enum_bitmap.elem_type, *elem_type;
522 uint32_t i, print_count = 0, stride_bit, nr_items;
523 const struct side_arg *array_item;
524
525 switch (enum_elem_type->type) {
526 case SIDE_TYPE_U8: /* Fall-through */
527 case SIDE_TYPE_BYTE: /* Fall-through */
528 case SIDE_TYPE_U16: /* Fall-through */
529 case SIDE_TYPE_U32: /* Fall-through */
530 case SIDE_TYPE_U64: /* Fall-through */
531 case SIDE_TYPE_S8: /* Fall-through */
532 case SIDE_TYPE_S16: /* Fall-through */
533 case SIDE_TYPE_S32: /* Fall-through */
534 case SIDE_TYPE_S64:
535 elem_type = enum_elem_type;
536 array_item = item;
537 nr_items = 1;
538 break;
539 case SIDE_TYPE_ARRAY:
540 elem_type = enum_elem_type->u.side_array.elem_type;
541 array_item = item->u.side_static.side_array->sav;
542 nr_items = type_desc->u.side_array.length;
543 break;
544 case SIDE_TYPE_VLA:
545 elem_type = enum_elem_type->u.side_vla.elem_type;
546 array_item = item->u.side_static.side_vla->sav;
547 nr_items = item->u.side_static.side_vla->len;
548 break;
549 default:
550 fprintf(stderr, "ERROR: Unexpected enum element type\n");
551 abort();
552 }
553 stride_bit = elem_type_to_stride(elem_type);
554
555 print_attributes("attr", ":", side_enum_mappings->attr, side_enum_mappings->nr_attr);
556 printf("%s", side_enum_mappings->nr_attr ? ", " : "");
557 printf("labels: [ ");
558 for (i = 0; i < side_enum_mappings->nr_mappings; i++) {
559 const struct side_enum_bitmap_mapping *mapping = &side_enum_mappings->mappings[i];
560 bool match = false;
561 uint64_t bit;
562
563 if (mapping->range_end < mapping->range_begin) {
564 fprintf(stderr, "ERROR: Unexpected enum bitmap range: %" PRIu64 "-%" PRIu64 "\n",
565 mapping->range_begin, mapping->range_end);
566 abort();
567 }
568 for (bit = mapping->range_begin; bit <= mapping->range_end; bit++) {
569 if (bit > (nr_items * stride_bit) - 1)
570 break;
571 if (elem_type->type == SIDE_TYPE_BYTE) {
572 uint8_t v = array_item[bit / 8].u.side_static.byte_value;
573 if (v & (1ULL << (bit % 8))) {
574 match = true;
575 goto match;
576 }
577 } else {
578 union int64_value v64;
579
580 v64 = tracer_load_integer_value(&elem_type->u.side_integer,
581 &array_item[bit / stride_bit].u.side_static.integer_value,
582 0, NULL);
583 if (v64.u & (1ULL << (bit % stride_bit))) {
584 match = true;
585 goto match;
586 }
587 }
588 }
589 match:
590 if (match) {
591 printf("%s", print_count++ ? ", " : "");
592 tracer_print_string(mapping->label.p, mapping->label.unit_size, mapping->label.byte_order, NULL);
593 }
594 }
595 if (!print_count)
596 printf("<NO LABEL>");
597 printf(" ]");
598 }
599
600 static
601 void print_integer_binary(uint64_t v, int bits)
602 {
603 int i;
604
605 printf("0b");
606 v <<= 64 - bits;
607 for (i = 0; i < bits; i++) {
608 printf("%c", v & (1ULL << 63) ? '1' : '0');
609 v <<= 1;
610 }
611 }
612
613 static
614 void tracer_print_type_header(const char *separator,
615 const struct side_attr *attr, uint32_t nr_attr)
616 {
617 print_attributes("attr", separator, attr, nr_attr);
618 printf("%s", nr_attr ? ", " : "");
619 printf("value%s ", separator);
620 }
621
622 static
623 void tracer_print_type_bool(const char *separator,
624 const struct side_type_bool *type_bool,
625 const union side_bool_value *value,
626 uint16_t offset_bits)
627 {
628 uint32_t len_bits;
629 bool reverse_bo;
630 uint64_t v;
631
632 if (!type_bool->len_bits)
633 len_bits = type_bool->bool_size * CHAR_BIT;
634 else
635 len_bits = type_bool->len_bits;
636 if (len_bits + offset_bits > type_bool->bool_size * CHAR_BIT)
637 abort();
638 reverse_bo = type_bool->byte_order != SIDE_TYPE_BYTE_ORDER_HOST;
639 switch (type_bool->bool_size) {
640 case 1:
641 v = value->side_bool8;
642 break;
643 case 2:
644 {
645 uint16_t side_u16;
646
647 side_u16 = value->side_bool16;
648 if (reverse_bo)
649 side_u16 = side_bswap_16(side_u16);
650 v = side_u16;
651 break;
652 }
653 case 4:
654 {
655 uint32_t side_u32;
656
657 side_u32 = value->side_bool32;
658 if (reverse_bo)
659 side_u32 = side_bswap_32(side_u32);
660 v = side_u32;
661 break;
662 }
663 case 8:
664 {
665 uint64_t side_u64;
666
667 side_u64 = value->side_bool64;
668 if (reverse_bo)
669 side_u64 = side_bswap_64(side_u64);
670 v = side_u64;
671 break;
672 }
673 default:
674 abort();
675 }
676 v >>= offset_bits;
677 if (len_bits < 64)
678 v &= (1ULL << len_bits) - 1;
679 tracer_print_type_header(separator, type_bool->attr, type_bool->nr_attr);
680 printf("%s", v ? "true" : "false");
681 }
682
683 static
684 void tracer_print_type_integer(const char *separator,
685 const struct side_type_integer *type_integer,
686 const union side_integer_value *value,
687 uint16_t offset_bits,
688 enum tracer_display_base default_base)
689 {
690 enum tracer_display_base base;
691 union int64_value v64;
692 uint16_t len_bits;
693
694 v64 = tracer_load_integer_value(type_integer, value, offset_bits, &len_bits);
695 tracer_print_type_header(separator, type_integer->attr, type_integer->nr_attr);
696 base = get_attr_display_base(type_integer->attr, type_integer->nr_attr, default_base);
697 switch (base) {
698 case TRACER_DISPLAY_BASE_2:
699 print_integer_binary(v64.u, len_bits);
700 break;
701 case TRACER_DISPLAY_BASE_8:
702 /* Clear sign bits beyond len_bits */
703 if (len_bits < 64)
704 v64.u &= (1ULL << len_bits) - 1;
705 printf("0%" PRIo64, v64.u);
706 break;
707 case TRACER_DISPLAY_BASE_10:
708 if (type_integer->signedness)
709 printf("%" PRId64, v64.s);
710 else
711 printf("%" PRIu64, v64.u);
712 break;
713 case TRACER_DISPLAY_BASE_16:
714 /* Clear sign bits beyond len_bits */
715 if (len_bits < 64)
716 v64.u &= (1ULL << len_bits) - 1;
717 printf("0x%" PRIx64, v64.u);
718 break;
719 default:
720 abort();
721 }
722 }
723
724 static
725 void tracer_print_type_float(const char *separator,
726 const struct side_type_float *type_float,
727 const union side_float_value *value)
728 {
729 bool reverse_bo;
730
731 tracer_print_type_header(separator, type_float->attr, type_float->nr_attr);
732 reverse_bo = type_float->byte_order != SIDE_TYPE_FLOAT_WORD_ORDER_HOST;
733 switch (type_float->float_size) {
734 case 2:
735 {
736 #if __HAVE_FLOAT16
737 union {
738 _Float16 f;
739 uint16_t u;
740 } float16 = {
741 .f = value->side_float_binary16,
742 };
743
744 if (reverse_bo)
745 float16.u = side_bswap_16(float16.u);
746 printf("%g", (double) float16.f);
747 break;
748 #else
749 fprintf(stderr, "ERROR: Unsupported binary16 float type\n");
750 abort();
751 #endif
752 }
753 case 4:
754 {
755 #if __HAVE_FLOAT32
756 union {
757 _Float32 f;
758 uint32_t u;
759 } float32 = {
760 .f = value->side_float_binary32,
761 };
762
763 if (reverse_bo)
764 float32.u = side_bswap_32(float32.u);
765 printf("%g", (double) float32.f);
766 break;
767 #else
768 fprintf(stderr, "ERROR: Unsupported binary32 float type\n");
769 abort();
770 #endif
771 }
772 case 8:
773 {
774 #if __HAVE_FLOAT64
775 union {
776 _Float64 f;
777 uint64_t u;
778 } float64 = {
779 .f = value->side_float_binary64,
780 };
781
782 if (reverse_bo)
783 float64.u = side_bswap_64(float64.u);
784 printf("%g", (double) float64.f);
785 break;
786 #else
787 fprintf(stderr, "ERROR: Unsupported binary64 float type\n");
788 abort();
789 #endif
790 }
791 case 16:
792 {
793 #if __HAVE_FLOAT128
794 union {
795 _Float128 f;
796 char arr[16];
797 } float128 = {
798 .f = value->side_float_binary128,
799 };
800
801 if (reverse_bo)
802 side_bswap_128p(float128.arr);
803 printf("%Lg", (long double) float128.f);
804 break;
805 #else
806 fprintf(stderr, "ERROR: Unsupported binary128 float type\n");
807 abort();
808 #endif
809 }
810 default:
811 fprintf(stderr, "ERROR: Unknown float size\n");
812 abort();
813 }
814 }
815
816 static
817 void tracer_print_type(const struct side_type *type_desc, const struct side_arg *item)
818 {
819 enum side_type_label type;
820
821 switch (type_desc->type) {
822 case SIDE_TYPE_ENUM:
823 switch (item->type) {
824 case SIDE_TYPE_U8:
825 case SIDE_TYPE_U16:
826 case SIDE_TYPE_U32:
827 case SIDE_TYPE_U64:
828 case SIDE_TYPE_S8:
829 case SIDE_TYPE_S16:
830 case SIDE_TYPE_S32:
831 case SIDE_TYPE_S64:
832 break;
833 default:
834 fprintf(stderr, "ERROR: type mismatch between description and arguments\n");
835 abort();
836 break;
837 }
838 break;
839
840 case SIDE_TYPE_ENUM_BITMAP:
841 switch (item->type) {
842 case SIDE_TYPE_U8:
843 case SIDE_TYPE_BYTE:
844 case SIDE_TYPE_U16:
845 case SIDE_TYPE_U32:
846 case SIDE_TYPE_U64:
847 case SIDE_TYPE_ARRAY:
848 case SIDE_TYPE_VLA:
849 break;
850 default:
851 fprintf(stderr, "ERROR: type mismatch between description and arguments\n");
852 abort();
853 break;
854 }
855 break;
856
857 case SIDE_TYPE_GATHER_ENUM:
858 switch (item->type) {
859 case SIDE_TYPE_GATHER_INTEGER:
860 break;
861 default:
862 fprintf(stderr, "ERROR: type mismatch between description and arguments\n");
863 abort();
864 break;
865 }
866 break;
867
868 case SIDE_TYPE_DYNAMIC:
869 switch (item->type) {
870 case SIDE_TYPE_DYNAMIC_NULL:
871 case SIDE_TYPE_DYNAMIC_BOOL:
872 case SIDE_TYPE_DYNAMIC_INTEGER:
873 case SIDE_TYPE_DYNAMIC_BYTE:
874 case SIDE_TYPE_DYNAMIC_POINTER:
875 case SIDE_TYPE_DYNAMIC_FLOAT:
876 case SIDE_TYPE_DYNAMIC_STRING:
877 case SIDE_TYPE_DYNAMIC_STRUCT:
878 case SIDE_TYPE_DYNAMIC_STRUCT_VISITOR:
879 case SIDE_TYPE_DYNAMIC_VLA:
880 case SIDE_TYPE_DYNAMIC_VLA_VISITOR:
881 break;
882 default:
883 fprintf(stderr, "ERROR: Unexpected dynamic type\n");
884 abort();
885 break;
886 }
887 break;
888
889 default:
890 if (type_desc->type != item->type) {
891 fprintf(stderr, "ERROR: type mismatch between description and arguments\n");
892 abort();
893 }
894 break;
895 }
896
897 if (type_desc->type == SIDE_TYPE_ENUM || type_desc->type == SIDE_TYPE_ENUM_BITMAP ||
898 type_desc->type == SIDE_TYPE_GATHER_ENUM)
899 type = (enum side_type_label) type_desc->type;
900 else
901 type = (enum side_type_label) item->type;
902
903 printf("{ ");
904 switch (type) {
905 /* Stack-copy basic types */
906 case SIDE_TYPE_NULL:
907 tracer_print_type_header(":", type_desc->u.side_null.attr, type_desc->u.side_null.nr_attr);
908 printf("<NULL TYPE>");
909 break;
910
911 case SIDE_TYPE_BOOL:
912 tracer_print_type_bool(":", &type_desc->u.side_bool, &item->u.side_static.bool_value, 0);
913 break;
914
915 case SIDE_TYPE_U8:
916 case SIDE_TYPE_U16:
917 case SIDE_TYPE_U32:
918 case SIDE_TYPE_U64:
919 case SIDE_TYPE_S8:
920 case SIDE_TYPE_S16:
921 case SIDE_TYPE_S32:
922 case SIDE_TYPE_S64:
923 tracer_print_type_integer(":", &type_desc->u.side_integer, &item->u.side_static.integer_value, 0,
924 TRACER_DISPLAY_BASE_10);
925 break;
926
927 case SIDE_TYPE_BYTE:
928 tracer_print_type_header(":", type_desc->u.side_byte.attr, type_desc->u.side_byte.nr_attr);
929 printf("0x%" PRIx8, item->u.side_static.byte_value);
930 break;
931
932 case SIDE_TYPE_POINTER:
933 tracer_print_type_integer(":", &type_desc->u.side_integer, &item->u.side_static.integer_value, 0,
934 TRACER_DISPLAY_BASE_16);
935 break;
936
937 case SIDE_TYPE_FLOAT_BINARY16:
938 case SIDE_TYPE_FLOAT_BINARY32:
939 case SIDE_TYPE_FLOAT_BINARY64:
940 case SIDE_TYPE_FLOAT_BINARY128:
941 tracer_print_type_float(":", &type_desc->u.side_float, &item->u.side_static.float_value);
942 break;
943
944 case SIDE_TYPE_STRING_UTF8:
945 case SIDE_TYPE_STRING_UTF16:
946 case SIDE_TYPE_STRING_UTF32:
947 tracer_print_type_header(":", type_desc->u.side_string.attr, type_desc->u.side_string.nr_attr);
948 tracer_print_string((const void *)(uintptr_t) item->u.side_static.string_value,
949 type_desc->u.side_string.unit_size, type_desc->u.side_string.byte_order, NULL);
950 break;
951
952 /* Stack-copy compound types */
953 case SIDE_TYPE_STRUCT:
954 tracer_print_struct(type_desc, item->u.side_static.side_struct);
955 break;
956 case SIDE_TYPE_VARIANT:
957 tracer_print_variant(type_desc, item->u.side_static.side_variant);
958 break;
959 case SIDE_TYPE_ARRAY:
960 tracer_print_array(type_desc, item->u.side_static.side_array);
961 break;
962 case SIDE_TYPE_VLA:
963 tracer_print_vla(type_desc, item->u.side_static.side_vla);
964 break;
965 case SIDE_TYPE_VLA_VISITOR:
966 tracer_print_vla_visitor(type_desc, item->u.side_static.side_vla_app_visitor_ctx);
967 break;
968
969 /* Stack-copy enumeration types */
970 case SIDE_TYPE_ENUM:
971 tracer_print_enum(type_desc, item);
972 break;
973 case SIDE_TYPE_ENUM_BITMAP:
974 tracer_print_enum_bitmap(type_desc, item);
975 break;
976
977 /* Gather basic types */
978 case SIDE_TYPE_GATHER_BOOL:
979 (void) tracer_print_gather_bool_type(&type_desc->u.side_gather, item->u.side_static.side_bool_gather_ptr);
980 break;
981 case SIDE_TYPE_GATHER_INTEGER:
982 (void) tracer_print_gather_integer_type(&type_desc->u.side_gather, item->u.side_static.side_integer_gather_ptr,
983 TRACER_DISPLAY_BASE_10);
984 break;
985 case SIDE_TYPE_GATHER_BYTE:
986 (void) tracer_print_gather_byte_type(&type_desc->u.side_gather, item->u.side_static.side_byte_gather_ptr);
987 break;
988 case SIDE_TYPE_GATHER_POINTER:
989 (void) tracer_print_gather_integer_type(&type_desc->u.side_gather, item->u.side_static.side_integer_gather_ptr,
990 TRACER_DISPLAY_BASE_16);
991 break;
992 case SIDE_TYPE_GATHER_FLOAT:
993 (void) tracer_print_gather_float_type(&type_desc->u.side_gather, item->u.side_static.side_float_gather_ptr);
994 break;
995 case SIDE_TYPE_GATHER_STRING:
996 (void) tracer_print_gather_string_type(&type_desc->u.side_gather, item->u.side_static.side_string_gather_ptr);
997 break;
998
999 /* Gather compound type */
1000 case SIDE_TYPE_GATHER_STRUCT:
1001 (void) tracer_print_gather_struct(&type_desc->u.side_gather, item->u.side_static.side_struct_gather_ptr);
1002 break;
1003 case SIDE_TYPE_GATHER_ARRAY:
1004 (void) tracer_print_gather_array(&type_desc->u.side_gather, item->u.side_static.side_array_gather_ptr);
1005 break;
1006 case SIDE_TYPE_GATHER_VLA:
1007 (void) tracer_print_gather_vla(&type_desc->u.side_gather, item->u.side_static.side_vla_gather.ptr,
1008 item->u.side_static.side_vla_gather.length_ptr);
1009 break;
1010
1011 /* Gather enumeration types */
1012 case SIDE_TYPE_GATHER_ENUM:
1013 (void) tracer_print_gather_enum_type(&type_desc->u.side_gather, item->u.side_static.side_integer_gather_ptr);
1014 break;
1015
1016 /* Dynamic basic types */
1017 case SIDE_TYPE_DYNAMIC_NULL:
1018 case SIDE_TYPE_DYNAMIC_BOOL:
1019 case SIDE_TYPE_DYNAMIC_INTEGER:
1020 case SIDE_TYPE_DYNAMIC_BYTE:
1021 case SIDE_TYPE_DYNAMIC_POINTER:
1022 case SIDE_TYPE_DYNAMIC_FLOAT:
1023 case SIDE_TYPE_DYNAMIC_STRING:
1024
1025 /* Dynamic compound types */
1026 case SIDE_TYPE_DYNAMIC_STRUCT:
1027 case SIDE_TYPE_DYNAMIC_STRUCT_VISITOR:
1028 case SIDE_TYPE_DYNAMIC_VLA:
1029 case SIDE_TYPE_DYNAMIC_VLA_VISITOR:
1030 tracer_print_dynamic(item);
1031 break;
1032 default:
1033 fprintf(stderr, "<UNKNOWN TYPE>\n");
1034 abort();
1035 }
1036 printf(" }");
1037 }
1038
1039 static
1040 void tracer_print_field(const struct side_event_field *item_desc, const struct side_arg *item)
1041 {
1042 printf("%s: ", item_desc->field_name);
1043 tracer_print_type(&item_desc->side_type, item);
1044 }
1045
1046 static
1047 void tracer_print_struct(const struct side_type *type_desc, const struct side_arg_vec *side_arg_vec)
1048 {
1049 const struct side_arg *sav = side_arg_vec->sav;
1050 uint32_t i, side_sav_len = side_arg_vec->len;
1051
1052 if (type_desc->u.side_struct->nr_fields != side_sav_len) {
1053 fprintf(stderr, "ERROR: number of fields mismatch between description and arguments of structure\n");
1054 abort();
1055 }
1056 print_attributes("attr", ":", type_desc->u.side_struct->attr, type_desc->u.side_struct->nr_attr);
1057 printf("%s", type_desc->u.side_struct->nr_attr ? ", " : "");
1058 printf("fields: { ");
1059 for (i = 0; i < side_sav_len; i++) {
1060 printf("%s", i ? ", " : "");
1061 tracer_print_field(&type_desc->u.side_struct->fields[i], &sav[i]);
1062 }
1063 printf(" }");
1064 }
1065
1066 static
1067 void tracer_print_variant(const struct side_type *type_desc, const struct side_arg_variant *side_arg_variant)
1068 {
1069 const struct side_type_variant *side_type_variant = type_desc->u.side_variant;
1070 const struct side_type *selector_type = &side_type_variant->selector;
1071 union int64_value v64;
1072 uint32_t i;
1073
1074 if (selector_type->type != side_arg_variant->selector.type) {
1075 fprintf(stderr, "ERROR: Unexpected variant selector type\n");
1076 abort();
1077 }
1078 switch (selector_type->type) {
1079 case SIDE_TYPE_U8:
1080 case SIDE_TYPE_U16:
1081 case SIDE_TYPE_U32:
1082 case SIDE_TYPE_U64:
1083 case SIDE_TYPE_S8:
1084 case SIDE_TYPE_S16:
1085 case SIDE_TYPE_S32:
1086 case SIDE_TYPE_S64:
1087 break;
1088 default:
1089 fprintf(stderr, "ERROR: Expecting integer variant selector type\n");
1090 abort();
1091 }
1092 v64 = tracer_load_integer_value(&selector_type->u.side_integer,
1093 &side_arg_variant->selector.u.side_static.integer_value, 0, NULL);
1094 for (i = 0; i < side_type_variant->nr_options; i++) {
1095 const struct side_variant_option *option = &side_type_variant->options[i];
1096
1097 if (v64.s >= option->range_begin && v64.s <= option->range_end) {
1098 tracer_print_type(&option->side_type, &side_arg_variant->option);
1099 return;
1100 }
1101 }
1102 fprintf(stderr, "ERROR: Variant selector value unknown %" PRId64 "\n", v64.s);
1103 abort();
1104 }
1105
1106 static
1107 void tracer_print_array(const struct side_type *type_desc, const struct side_arg_vec *side_arg_vec)
1108 {
1109 const struct side_arg *sav = side_arg_vec->sav;
1110 uint32_t i, side_sav_len = side_arg_vec->len;
1111
1112 if (type_desc->u.side_array.length != side_sav_len) {
1113 fprintf(stderr, "ERROR: length mismatch between description and arguments of array\n");
1114 abort();
1115 }
1116 print_attributes("attr", ":", type_desc->u.side_array.attr, type_desc->u.side_array.nr_attr);
1117 printf("%s", type_desc->u.side_array.nr_attr ? ", " : "");
1118 printf("elements: ");
1119 printf("[ ");
1120 for (i = 0; i < side_sav_len; i++) {
1121 printf("%s", i ? ", " : "");
1122 tracer_print_type(type_desc->u.side_array.elem_type, &sav[i]);
1123 }
1124 printf(" ]");
1125 }
1126
1127 static
1128 void tracer_print_vla(const struct side_type *type_desc, const struct side_arg_vec *side_arg_vec)
1129 {
1130 const struct side_arg *sav = side_arg_vec->sav;
1131 uint32_t i, side_sav_len = side_arg_vec->len;
1132
1133 print_attributes("attr", ":", type_desc->u.side_vla.attr, type_desc->u.side_vla.nr_attr);
1134 printf("%s", type_desc->u.side_vla.nr_attr ? ", " : "");
1135 printf("elements: ");
1136 printf("[ ");
1137 for (i = 0; i < side_sav_len; i++) {
1138 printf("%s", i ? ", " : "");
1139 tracer_print_type(type_desc->u.side_vla.elem_type, &sav[i]);
1140 }
1141 printf(" ]");
1142 }
1143
1144 static
1145 const char *tracer_gather_access(enum side_type_gather_access_mode access_mode, const char *ptr)
1146 {
1147 switch (access_mode) {
1148 case SIDE_TYPE_GATHER_ACCESS_DIRECT:
1149 return ptr;
1150 case SIDE_TYPE_GATHER_ACCESS_POINTER:
1151 /* Dereference pointer */
1152 memcpy(&ptr, ptr, sizeof(ptr));
1153 return ptr;
1154 default:
1155 abort();
1156 }
1157 }
1158
1159 static
1160 uint32_t tracer_gather_size(enum side_type_gather_access_mode access_mode, uint32_t len)
1161 {
1162 switch (access_mode) {
1163 case SIDE_TYPE_GATHER_ACCESS_DIRECT:
1164 return len;
1165 case SIDE_TYPE_GATHER_ACCESS_POINTER:
1166 return sizeof(void *);
1167 default:
1168 abort();
1169 }
1170 }
1171
1172 static
1173 union int64_value tracer_load_gather_integer_value(const struct side_type_gather_integer *side_integer,
1174 const void *_ptr)
1175 {
1176 enum side_type_gather_access_mode access_mode =
1177 (enum side_type_gather_access_mode) side_integer->access_mode;
1178 uint32_t integer_size_bytes = side_integer->type.integer_size;
1179 const char *ptr = (const char *) _ptr;
1180 union side_integer_value value;
1181
1182 ptr = tracer_gather_access(access_mode, ptr + side_integer->offset);
1183 memcpy(&value, ptr, integer_size_bytes);
1184 return tracer_load_integer_value(&side_integer->type, &value,
1185 side_integer->offset_bits, NULL);
1186 }
1187
1188 static
1189 uint32_t tracer_print_gather_bool_type(const struct side_type_gather *type_gather, const void *_ptr)
1190 {
1191 enum side_type_gather_access_mode access_mode =
1192 (enum side_type_gather_access_mode) type_gather->u.side_bool.access_mode;
1193 uint32_t bool_size_bytes = type_gather->u.side_bool.type.bool_size;
1194 const char *ptr = (const char *) _ptr;
1195 union side_bool_value value;
1196
1197 switch (bool_size_bytes) {
1198 case 1:
1199 case 2:
1200 case 4:
1201 case 8:
1202 break;
1203 default:
1204 abort();
1205 }
1206 ptr = tracer_gather_access(access_mode, ptr + type_gather->u.side_bool.offset);
1207 memcpy(&value, ptr, bool_size_bytes);
1208 tracer_print_type_bool(":", &type_gather->u.side_bool.type, &value,
1209 type_gather->u.side_bool.offset_bits);
1210 return tracer_gather_size(access_mode, bool_size_bytes);
1211 }
1212
1213 static
1214 uint32_t tracer_print_gather_byte_type(const struct side_type_gather *type_gather, const void *_ptr)
1215 {
1216 enum side_type_gather_access_mode access_mode =
1217 (enum side_type_gather_access_mode) type_gather->u.side_byte.access_mode;
1218 const char *ptr = (const char *) _ptr;
1219 uint8_t value;
1220
1221 ptr = tracer_gather_access(access_mode, ptr + type_gather->u.side_byte.offset);
1222 memcpy(&value, ptr, 1);
1223 tracer_print_type_header(":", type_gather->u.side_byte.type.attr,
1224 type_gather->u.side_byte.type.nr_attr);
1225 printf("0x%" PRIx8, value);
1226 return tracer_gather_size(access_mode, 1);
1227 }
1228
1229 static
1230 uint32_t tracer_print_gather_integer_type(const struct side_type_gather *type_gather, const void *_ptr,
1231 enum tracer_display_base default_base)
1232 {
1233 enum side_type_gather_access_mode access_mode =
1234 (enum side_type_gather_access_mode) type_gather->u.side_integer.access_mode;
1235 uint32_t integer_size_bytes = type_gather->u.side_integer.type.integer_size;
1236 const char *ptr = (const char *) _ptr;
1237 union side_integer_value value;
1238
1239 switch (integer_size_bytes) {
1240 case 1:
1241 case 2:
1242 case 4:
1243 case 8:
1244 break;
1245 default:
1246 abort();
1247 }
1248 ptr = tracer_gather_access(access_mode, ptr + type_gather->u.side_integer.offset);
1249 memcpy(&value, ptr, integer_size_bytes);
1250 tracer_print_type_integer(":", &type_gather->u.side_integer.type, &value,
1251 type_gather->u.side_integer.offset_bits, default_base);
1252 return tracer_gather_size(access_mode, integer_size_bytes);
1253 }
1254
1255 static
1256 uint32_t tracer_print_gather_float_type(const struct side_type_gather *type_gather, const void *_ptr)
1257 {
1258 enum side_type_gather_access_mode access_mode =
1259 (enum side_type_gather_access_mode) type_gather->u.side_float.access_mode;
1260 uint32_t float_size_bytes = type_gather->u.side_float.type.float_size;
1261 const char *ptr = (const char *) _ptr;
1262 union side_float_value value;
1263
1264 switch (float_size_bytes) {
1265 case 2:
1266 case 4:
1267 case 8:
1268 case 16:
1269 break;
1270 default:
1271 abort();
1272 }
1273 ptr = tracer_gather_access(access_mode, ptr + type_gather->u.side_float.offset);
1274 memcpy(&value, ptr, float_size_bytes);
1275 tracer_print_type_float(":", &type_gather->u.side_float.type, &value);
1276 return tracer_gather_size(access_mode, float_size_bytes);
1277 }
1278
1279 static
1280 uint32_t tracer_print_gather_string_type(const struct side_type_gather *type_gather, const void *_ptr)
1281 {
1282 enum side_type_gather_access_mode access_mode =
1283 (enum side_type_gather_access_mode) type_gather->u.side_string.access_mode;
1284 const char *ptr = (const char *) _ptr;
1285 size_t string_len;
1286
1287 ptr = tracer_gather_access(access_mode, ptr + type_gather->u.side_string.offset);
1288 tracer_print_type_header(":", type_gather->u.side_string.type.attr,
1289 type_gather->u.side_string.type.nr_attr);
1290 if (ptr) {
1291 tracer_print_string(ptr, type_gather->u.side_string.type.unit_size,
1292 type_gather->u.side_string.type.byte_order, &string_len);
1293 } else {
1294 printf("<NULL>");
1295 string_len = type_gather->u.side_string.type.unit_size;
1296 }
1297 return tracer_gather_size(access_mode, string_len);
1298 }
1299
1300 static
1301 uint32_t tracer_print_gather_type(const struct side_type *type_desc, const void *ptr)
1302 {
1303 uint32_t len;
1304
1305 printf("{ ");
1306 switch (type_desc->type) {
1307 /* Gather basic types */
1308 case SIDE_TYPE_GATHER_BOOL:
1309 len = tracer_print_gather_bool_type(&type_desc->u.side_gather, ptr);
1310 break;
1311 case SIDE_TYPE_GATHER_INTEGER:
1312 len = tracer_print_gather_integer_type(&type_desc->u.side_gather, ptr,
1313 TRACER_DISPLAY_BASE_10);
1314 break;
1315 case SIDE_TYPE_GATHER_BYTE:
1316 len = tracer_print_gather_byte_type(&type_desc->u.side_gather, ptr);
1317 break;
1318 case SIDE_TYPE_GATHER_POINTER:
1319 len = tracer_print_gather_integer_type(&type_desc->u.side_gather, ptr,
1320 TRACER_DISPLAY_BASE_16);
1321 break;
1322 case SIDE_TYPE_GATHER_FLOAT:
1323 len = tracer_print_gather_float_type(&type_desc->u.side_gather, ptr);
1324 break;
1325 case SIDE_TYPE_GATHER_STRING:
1326 len = tracer_print_gather_string_type(&type_desc->u.side_gather, ptr);
1327 break;
1328
1329 /* Gather enum types */
1330 case SIDE_TYPE_GATHER_ENUM:
1331 len = tracer_print_gather_enum_type(&type_desc->u.side_gather, ptr);
1332 break;
1333
1334 /* Gather compound types */
1335 case SIDE_TYPE_GATHER_STRUCT:
1336 len = tracer_print_gather_struct(&type_desc->u.side_gather, ptr);
1337 break;
1338 case SIDE_TYPE_GATHER_ARRAY:
1339 len = tracer_print_gather_array(&type_desc->u.side_gather, ptr);
1340 break;
1341 case SIDE_TYPE_GATHER_VLA:
1342 len = tracer_print_gather_vla(&type_desc->u.side_gather, ptr, ptr);
1343 break;
1344 default:
1345 fprintf(stderr, "<UNKNOWN GATHER TYPE>");
1346 abort();
1347 }
1348 printf(" }");
1349 return len;
1350 }
1351
1352 static
1353 uint32_t tracer_print_gather_enum_type(const struct side_type_gather *type_gather, const void *_ptr)
1354 {
1355 const struct side_enum_mappings *mappings = type_gather->u.side_enum.mappings;
1356 const struct side_type *enum_elem_type = type_gather->u.side_enum.elem_type;
1357 const struct side_type_gather_integer *side_integer = &enum_elem_type->u.side_gather.u.side_integer;
1358 enum side_type_gather_access_mode access_mode =
1359 (enum side_type_gather_access_mode) side_integer->access_mode;
1360 uint32_t integer_size_bytes = side_integer->type.integer_size;
1361 const char *ptr = (const char *) _ptr;
1362 union side_integer_value value;
1363 union int64_value v64;
1364
1365 switch (integer_size_bytes) {
1366 case 1:
1367 case 2:
1368 case 4:
1369 case 8:
1370 break;
1371 default:
1372 abort();
1373 }
1374 ptr = tracer_gather_access(access_mode, ptr + side_integer->offset);
1375 memcpy(&value, ptr, integer_size_bytes);
1376 v64 = tracer_load_gather_integer_value(side_integer, &value);
1377 print_attributes("attr", ":", mappings->attr, mappings->nr_attr);
1378 printf("%s", mappings->nr_attr ? ", " : "");
1379 tracer_print_gather_type(enum_elem_type, ptr);
1380 print_enum_labels(mappings, v64);
1381 return tracer_gather_size(access_mode, integer_size_bytes);
1382 }
1383
1384 static
1385 void tracer_print_gather_field(const struct side_event_field *field, const void *ptr)
1386 {
1387 printf("%s: ", field->field_name);
1388 (void) tracer_print_gather_type(&field->side_type, ptr);
1389 }
1390
1391 static
1392 uint32_t tracer_print_gather_struct(const struct side_type_gather *type_gather, const void *_ptr)
1393 {
1394 enum side_type_gather_access_mode access_mode =
1395 (enum side_type_gather_access_mode) type_gather->u.side_struct.access_mode;
1396 const char *ptr = (const char *) _ptr;
1397 uint32_t i;
1398
1399 ptr = tracer_gather_access(access_mode, ptr + type_gather->u.side_struct.offset);
1400 print_attributes("attr", ":", type_gather->u.side_struct.type->attr, type_gather->u.side_struct.type->nr_attr);
1401 printf("%s", type_gather->u.side_struct.type->nr_attr ? ", " : "");
1402 printf("fields: { ");
1403 for (i = 0; i < type_gather->u.side_struct.type->nr_fields; i++) {
1404 printf("%s", i ? ", " : "");
1405 tracer_print_gather_field(&type_gather->u.side_struct.type->fields[i], ptr);
1406 }
1407 printf(" }");
1408 return tracer_gather_size(access_mode, type_gather->u.side_struct.size);
1409 }
1410
1411 static
1412 uint32_t tracer_print_gather_array(const struct side_type_gather *type_gather, const void *_ptr)
1413 {
1414 enum side_type_gather_access_mode access_mode =
1415 (enum side_type_gather_access_mode) type_gather->u.side_array.access_mode;
1416 const char *ptr = (const char *) _ptr, *orig_ptr;
1417 uint32_t i;
1418
1419 ptr = tracer_gather_access(access_mode, ptr + type_gather->u.side_array.offset);
1420 orig_ptr = ptr;
1421 print_attributes("attr", ":", type_gather->u.side_array.type.attr, type_gather->u.side_array.type.nr_attr);
1422 printf("%s", type_gather->u.side_array.type.nr_attr ? ", " : "");
1423 printf("elements: ");
1424 printf("[ ");
1425 for (i = 0; i < type_gather->u.side_array.type.length; i++) {
1426 switch (type_gather->u.side_array.type.elem_type->type) {
1427 case SIDE_TYPE_GATHER_VLA:
1428 fprintf(stderr, "<gather VLA only supported within gather structures>\n");
1429 abort();
1430 default:
1431 break;
1432 }
1433 printf("%s", i ? ", " : "");
1434 ptr += tracer_print_gather_type(type_gather->u.side_array.type.elem_type, ptr);
1435 }
1436 printf(" ]");
1437 return tracer_gather_size(access_mode, ptr - orig_ptr);
1438 }
1439
1440 static
1441 uint32_t tracer_print_gather_vla(const struct side_type_gather *type_gather, const void *_ptr,
1442 const void *_length_ptr)
1443 {
1444 enum side_type_gather_access_mode access_mode =
1445 (enum side_type_gather_access_mode) type_gather->u.side_vla.access_mode;
1446 const char *ptr = (const char *) _ptr, *orig_ptr;
1447 const char *length_ptr = (const char *) _length_ptr;
1448 union int64_value v64;
1449 uint32_t i, length;
1450
1451 /* Access length */
1452 switch (type_gather->u.side_vla.length_type->type) {
1453 case SIDE_TYPE_GATHER_INTEGER:
1454 break;
1455 default:
1456 fprintf(stderr, "<gather VLA expects integer gather length type>\n");
1457 abort();
1458 }
1459 v64 = tracer_load_gather_integer_value(&type_gather->u.side_vla.length_type->u.side_gather.u.side_integer,
1460 length_ptr);
1461 length = (uint32_t) v64.u;
1462 ptr = tracer_gather_access(access_mode, ptr + type_gather->u.side_vla.offset);
1463 orig_ptr = ptr;
1464 print_attributes("attr", ":", type_gather->u.side_vla.type.attr, type_gather->u.side_vla.type.nr_attr);
1465 printf("%s", type_gather->u.side_vla.type.nr_attr ? ", " : "");
1466 printf("elements: ");
1467 printf("[ ");
1468 for (i = 0; i < length; i++) {
1469 switch (type_gather->u.side_vla.type.elem_type->type) {
1470 case SIDE_TYPE_GATHER_VLA:
1471 fprintf(stderr, "<gather VLA only supported within gather structures>\n");
1472 abort();
1473 default:
1474 break;
1475 }
1476 printf("%s", i ? ", " : "");
1477 ptr += tracer_print_gather_type(type_gather->u.side_vla.type.elem_type, ptr);
1478 }
1479 printf(" ]");
1480 return tracer_gather_size(access_mode, ptr - orig_ptr);
1481 }
1482
1483 struct tracer_visitor_priv {
1484 const struct side_type *elem_type;
1485 int i;
1486 };
1487
1488 static
1489 enum side_visitor_status tracer_write_elem_cb(const struct side_tracer_visitor_ctx *tracer_ctx,
1490 const struct side_arg *elem)
1491 {
1492 struct tracer_visitor_priv *tracer_priv = (struct tracer_visitor_priv *) tracer_ctx->priv;
1493
1494 printf("%s", tracer_priv->i++ ? ", " : "");
1495 tracer_print_type(tracer_priv->elem_type, elem);
1496 return SIDE_VISITOR_STATUS_OK;
1497 }
1498
1499 static
1500 void tracer_print_vla_visitor(const struct side_type *type_desc, void *app_ctx)
1501 {
1502 enum side_visitor_status status;
1503 struct tracer_visitor_priv tracer_priv = {
1504 .elem_type = type_desc->u.side_vla_visitor.elem_type,
1505 .i = 0,
1506 };
1507 const struct side_tracer_visitor_ctx tracer_ctx = {
1508 .write_elem = tracer_write_elem_cb,
1509 .priv = &tracer_priv,
1510 };
1511
1512 print_attributes("attr", ":", type_desc->u.side_vla_visitor.attr, type_desc->u.side_vla_visitor.nr_attr);
1513 printf("%s", type_desc->u.side_vla_visitor.nr_attr ? ", " : "");
1514 printf("elements: ");
1515 printf("[ ");
1516 status = type_desc->u.side_vla_visitor.visitor(&tracer_ctx, app_ctx);
1517 switch (status) {
1518 case SIDE_VISITOR_STATUS_OK:
1519 break;
1520 case SIDE_VISITOR_STATUS_ERROR:
1521 fprintf(stderr, "ERROR: Visitor error\n");
1522 abort();
1523 }
1524 printf(" ]");
1525 }
1526
1527 static
1528 void tracer_print_dynamic_struct(const struct side_arg_dynamic_struct *dynamic_struct)
1529 {
1530 const struct side_arg_dynamic_field *fields = dynamic_struct->fields;
1531 uint32_t i, len = dynamic_struct->len;
1532
1533 print_attributes("attr", "::", dynamic_struct->attr, dynamic_struct->nr_attr);
1534 printf("%s", dynamic_struct->nr_attr ? ", " : "");
1535 printf("fields:: ");
1536 printf("[ ");
1537 for (i = 0; i < len; i++) {
1538 printf("%s", i ? ", " : "");
1539 printf("%s:: ", fields[i].field_name);
1540 tracer_print_dynamic(&fields[i].elem);
1541 }
1542 printf(" ]");
1543 }
1544
1545 struct tracer_dynamic_struct_visitor_priv {
1546 int i;
1547 };
1548
1549 static
1550 enum side_visitor_status tracer_dynamic_struct_write_elem_cb(
1551 const struct side_tracer_dynamic_struct_visitor_ctx *tracer_ctx,
1552 const struct side_arg_dynamic_field *dynamic_field)
1553 {
1554 struct tracer_dynamic_struct_visitor_priv *tracer_priv =
1555 (struct tracer_dynamic_struct_visitor_priv *) tracer_ctx->priv;
1556
1557 printf("%s", tracer_priv->i++ ? ", " : "");
1558 printf("%s:: ", dynamic_field->field_name);
1559 tracer_print_dynamic(&dynamic_field->elem);
1560 return SIDE_VISITOR_STATUS_OK;
1561 }
1562
1563 static
1564 void tracer_print_dynamic_struct_visitor(const struct side_arg *item)
1565 {
1566 enum side_visitor_status status;
1567 struct tracer_dynamic_struct_visitor_priv tracer_priv = {
1568 .i = 0,
1569 };
1570 const struct side_tracer_dynamic_struct_visitor_ctx tracer_ctx = {
1571 .write_field = tracer_dynamic_struct_write_elem_cb,
1572 .priv = &tracer_priv,
1573 };
1574 void *app_ctx = item->u.side_dynamic.side_dynamic_struct_visitor.app_ctx;
1575
1576 print_attributes("attr", "::", item->u.side_dynamic.side_dynamic_struct_visitor.attr, item->u.side_dynamic.side_dynamic_struct_visitor.nr_attr);
1577 printf("%s", item->u.side_dynamic.side_dynamic_struct_visitor.nr_attr ? ", " : "");
1578 printf("fields:: ");
1579 printf("[ ");
1580 status = item->u.side_dynamic.side_dynamic_struct_visitor.visitor(&tracer_ctx, app_ctx);
1581 switch (status) {
1582 case SIDE_VISITOR_STATUS_OK:
1583 break;
1584 case SIDE_VISITOR_STATUS_ERROR:
1585 fprintf(stderr, "ERROR: Visitor error\n");
1586 abort();
1587 }
1588 printf(" ]");
1589 }
1590
1591 static
1592 void tracer_print_dynamic_vla(const struct side_arg_dynamic_vla *vla)
1593 {
1594 const struct side_arg *sav = vla->sav;
1595 uint32_t i, side_sav_len = vla->len;
1596
1597 print_attributes("attr", "::", vla->attr, vla->nr_attr);
1598 printf("%s", vla->nr_attr ? ", " : "");
1599 printf("elements:: ");
1600 printf("[ ");
1601 for (i = 0; i < side_sav_len; i++) {
1602 printf("%s", i ? ", " : "");
1603 tracer_print_dynamic(&sav[i]);
1604 }
1605 printf(" ]");
1606 }
1607
1608 struct tracer_dynamic_vla_visitor_priv {
1609 int i;
1610 };
1611
1612 static
1613 enum side_visitor_status tracer_dynamic_vla_write_elem_cb(
1614 const struct side_tracer_visitor_ctx *tracer_ctx,
1615 const struct side_arg *elem)
1616 {
1617 struct tracer_dynamic_vla_visitor_priv *tracer_priv =
1618 (struct tracer_dynamic_vla_visitor_priv *) tracer_ctx->priv;
1619
1620 printf("%s", tracer_priv->i++ ? ", " : "");
1621 tracer_print_dynamic(elem);
1622 return SIDE_VISITOR_STATUS_OK;
1623 }
1624
1625 static
1626 void tracer_print_dynamic_vla_visitor(const struct side_arg *item)
1627 {
1628 enum side_visitor_status status;
1629 struct tracer_dynamic_vla_visitor_priv tracer_priv = {
1630 .i = 0,
1631 };
1632 const struct side_tracer_visitor_ctx tracer_ctx = {
1633 .write_elem = tracer_dynamic_vla_write_elem_cb,
1634 .priv = &tracer_priv,
1635 };
1636 void *app_ctx = item->u.side_dynamic.side_dynamic_vla_visitor.app_ctx;
1637
1638 print_attributes("attr", "::", item->u.side_dynamic.side_dynamic_vla_visitor.attr, item->u.side_dynamic.side_dynamic_vla_visitor.nr_attr);
1639 printf("%s", item->u.side_dynamic.side_dynamic_vla_visitor.nr_attr ? ", " : "");
1640 printf("elements:: ");
1641 printf("[ ");
1642 status = item->u.side_dynamic.side_dynamic_vla_visitor.visitor(&tracer_ctx, app_ctx);
1643 switch (status) {
1644 case SIDE_VISITOR_STATUS_OK:
1645 break;
1646 case SIDE_VISITOR_STATUS_ERROR:
1647 fprintf(stderr, "ERROR: Visitor error\n");
1648 abort();
1649 }
1650 printf(" ]");
1651 }
1652
1653 static
1654 void tracer_print_dynamic(const struct side_arg *item)
1655 {
1656 printf("{ ");
1657 switch (item->type) {
1658 /* Dynamic basic types */
1659 case SIDE_TYPE_DYNAMIC_NULL:
1660 tracer_print_type_header("::", item->u.side_dynamic.side_null.attr, item->u.side_dynamic.side_null.nr_attr);
1661 printf("<NULL TYPE>");
1662 break;
1663 case SIDE_TYPE_DYNAMIC_BOOL:
1664 tracer_print_type_bool("::", &item->u.side_dynamic.side_bool.type, &item->u.side_dynamic.side_bool.value, 0);
1665 break;
1666 case SIDE_TYPE_DYNAMIC_INTEGER:
1667 tracer_print_type_integer("::", &item->u.side_dynamic.side_integer.type, &item->u.side_dynamic.side_integer.value, 0,
1668 TRACER_DISPLAY_BASE_10);
1669 break;
1670 case SIDE_TYPE_DYNAMIC_BYTE:
1671 tracer_print_type_header("::", item->u.side_dynamic.side_byte.type.attr, item->u.side_dynamic.side_byte.type.nr_attr);
1672 printf("0x%" PRIx8, item->u.side_dynamic.side_byte.value);
1673 break;
1674 case SIDE_TYPE_DYNAMIC_POINTER:
1675 tracer_print_type_integer("::", &item->u.side_dynamic.side_integer.type, &item->u.side_dynamic.side_integer.value, 0,
1676 TRACER_DISPLAY_BASE_16);
1677 break;
1678 case SIDE_TYPE_DYNAMIC_FLOAT:
1679 tracer_print_type_float("::", &item->u.side_dynamic.side_float.type,
1680 &item->u.side_dynamic.side_float.value);
1681 break;
1682 case SIDE_TYPE_DYNAMIC_STRING:
1683 tracer_print_type_header("::", item->u.side_dynamic.side_string.type.attr, item->u.side_dynamic.side_string.type.nr_attr);
1684 tracer_print_string((const char *)(uintptr_t) item->u.side_dynamic.side_string.value,
1685 item->u.side_dynamic.side_string.type.unit_size,
1686 item->u.side_dynamic.side_string.type.byte_order, NULL);
1687 break;
1688
1689 /* Dynamic compound types */
1690 case SIDE_TYPE_DYNAMIC_STRUCT:
1691 tracer_print_dynamic_struct(item->u.side_dynamic.side_dynamic_struct);
1692 break;
1693 case SIDE_TYPE_DYNAMIC_STRUCT_VISITOR:
1694 tracer_print_dynamic_struct_visitor(item);
1695 break;
1696 case SIDE_TYPE_DYNAMIC_VLA:
1697 tracer_print_dynamic_vla(item->u.side_dynamic.side_dynamic_vla);
1698 break;
1699 case SIDE_TYPE_DYNAMIC_VLA_VISITOR:
1700 tracer_print_dynamic_vla_visitor(item);
1701 break;
1702 default:
1703 fprintf(stderr, "<UNKNOWN TYPE>\n");
1704 abort();
1705 }
1706 printf(" }");
1707 }
1708
1709 static
1710 void tracer_print_static_fields(const struct side_event_description *desc,
1711 const struct side_arg_vec *side_arg_vec,
1712 uint32_t *nr_items)
1713 {
1714 const struct side_arg *sav = side_arg_vec->sav;
1715 uint32_t i, side_sav_len = side_arg_vec->len;
1716
1717 printf("provider: %s, event: %s", desc->provider_name, desc->event_name);
1718 if (desc->nr_fields != side_sav_len) {
1719 fprintf(stderr, "ERROR: number of fields mismatch between description and arguments\n");
1720 abort();
1721 }
1722 print_attributes(", attr", ":", desc->attr, desc->nr_attr);
1723 printf("%s", side_sav_len ? ", fields: [ " : "");
1724 for (i = 0; i < side_sav_len; i++) {
1725 printf("%s", i ? ", " : "");
1726 tracer_print_field(&desc->fields[i], &sav[i]);
1727 }
1728 if (nr_items)
1729 *nr_items = i;
1730 if (side_sav_len)
1731 printf(" ]");
1732 }
1733
1734 static
1735 void tracer_call(const struct side_event_description *desc,
1736 const struct side_arg_vec *side_arg_vec,
1737 void *priv __attribute__((unused)))
1738 {
1739 uint32_t nr_fields = 0;
1740
1741 tracer_print_static_fields(desc, side_arg_vec, &nr_fields);
1742 printf("\n");
1743 }
1744
1745 static
1746 void tracer_call_variadic(const struct side_event_description *desc,
1747 const struct side_arg_vec *side_arg_vec,
1748 const struct side_arg_dynamic_struct *var_struct,
1749 void *priv __attribute__((unused)))
1750 {
1751 uint32_t nr_fields = 0, i, var_struct_len = var_struct->len;
1752
1753 tracer_print_static_fields(desc, side_arg_vec, &nr_fields);
1754
1755 if (side_unlikely(!(desc->flags & SIDE_EVENT_FLAG_VARIADIC))) {
1756 fprintf(stderr, "ERROR: unexpected non-variadic event description\n");
1757 abort();
1758 }
1759 print_attributes(", attr ", "::", var_struct->attr, var_struct->nr_attr);
1760 printf("%s", var_struct_len ? ", fields:: [ " : "");
1761 for (i = 0; i < var_struct_len; i++, nr_fields++) {
1762 printf("%s", i ? ", " : "");
1763 printf("%s:: ", var_struct->fields[i].field_name);
1764 tracer_print_dynamic(&var_struct->fields[i].elem);
1765 }
1766 if (i)
1767 printf(" ]");
1768 printf("\n");
1769 }
1770
1771 static
1772 void tracer_event_notification(enum side_tracer_notification notif,
1773 struct side_event_description **events, uint32_t nr_events,
1774 void *priv __attribute__((unused)))
1775 {
1776 uint32_t i;
1777 int ret;
1778
1779 printf("----------------------------------------------------------\n");
1780 printf("Tracer notified of events %s\n",
1781 notif == SIDE_TRACER_NOTIFICATION_INSERT_EVENTS ? "inserted" : "removed");
1782 for (i = 0; i < nr_events; i++) {
1783 struct side_event_description *event = events[i];
1784
1785 /* Skip NULL pointers */
1786 if (!event)
1787 continue;
1788 printf("provider: %s, event: %s\n",
1789 event->provider_name, event->event_name);
1790 if (notif == SIDE_TRACER_NOTIFICATION_INSERT_EVENTS) {
1791 if (event->flags & SIDE_EVENT_FLAG_VARIADIC) {
1792 ret = side_tracer_callback_variadic_register(event, tracer_call_variadic, NULL);
1793 if (ret)
1794 abort();
1795 } else {
1796 ret = side_tracer_callback_register(event, tracer_call, NULL);
1797 if (ret)
1798 abort();
1799 }
1800 } else {
1801 if (event->flags & SIDE_EVENT_FLAG_VARIADIC) {
1802 ret = side_tracer_callback_variadic_unregister(event, tracer_call_variadic, NULL);
1803 if (ret)
1804 abort();
1805 } else {
1806 ret = side_tracer_callback_unregister(event, tracer_call, NULL);
1807 if (ret)
1808 abort();
1809 }
1810 }
1811 }
1812 printf("----------------------------------------------------------\n");
1813 }
1814
1815 static __attribute__((constructor))
1816 void tracer_init(void);
1817 static
1818 void tracer_init(void)
1819 {
1820 tracer_handle = side_tracer_event_notification_register(tracer_event_notification, NULL);
1821 if (!tracer_handle)
1822 abort();
1823 }
1824
1825 static __attribute__((destructor))
1826 void tracer_exit(void);
1827 static
1828 void tracer_exit(void)
1829 {
1830 side_tracer_event_notification_unregister(tracer_handle);
1831 }
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