blob: 844ff3d0d065968245dbeb484fb1d66c31000586 [file] [log] [blame]
Tom Rini10e47792018-05-06 17:58:06 -04001// SPDX-License-Identifier: GPL-2.0+
Simon Glass9c628922013-06-11 11:14:43 -07002/*
Simon Glassdd8f19a2023-01-15 14:15:53 -07003 * Copyright 2023 Google LLC
4 * Written by Simon Glass <sjg@chromium.org>
Simon Glass9c628922013-06-11 11:14:43 -07005 */
6
Simon Glassdd8f19a2023-01-15 14:15:53 -07007/*
8 * Decode and dump U-Boot trace information into formats that can be used
Simon Glassd854ce42023-01-15 14:15:57 -07009 * by trace-cmd, kernelshark or flamegraph.pl
Simon Glassdd8f19a2023-01-15 14:15:53 -070010 *
11 * See doc/develop/trace.rst for more information
12 */
Simon Glass9c628922013-06-11 11:14:43 -070013
14#include <assert.h>
15#include <ctype.h>
16#include <limits.h>
17#include <regex.h>
18#include <stdarg.h>
19#include <stdio.h>
20#include <stdlib.h>
21#include <string.h>
22#include <unistd.h>
23#include <sys/param.h>
Jörg Krause983487f2015-04-22 21:36:22 +020024#include <sys/types.h>
Simon Glass9c628922013-06-11 11:14:43 -070025
26#include <compiler.h>
27#include <trace.h>
Simon Glassdd8f19a2023-01-15 14:15:53 -070028#include <abuf.h>
Simon Glass9c628922013-06-11 11:14:43 -070029
Simon Glassd854ce42023-01-15 14:15:57 -070030#include <linux/list.h>
31
Simon Glassdd8f19a2023-01-15 14:15:53 -070032/* Set to 1 to emit version 7 file (currently this doesn't work) */
33#define VERSION7 0
34
35/* enable some debug features */
36#define _DEBUG 0
37
38/* from linux/kernel.h */
39#define __ALIGN_MASK(x, mask) (((x) + (mask)) & ~(mask))
40#define ALIGN(x, a) __ALIGN_MASK((x), (typeof(x))(a) - 1)
Simon Glass9c628922013-06-11 11:14:43 -070041
Simon Glassd854ce42023-01-15 14:15:57 -070042/**
43 * container_of - cast a member of a structure out to the containing structure
44 * @ptr: the pointer to the member.
45 * @type: the type of the container struct this is embedded in.
46 * @member: the name of the member within the struct.
47 *
48 * (this is needed by list.h)
49 */
50#define container_of(ptr, type, member) ({ \
51 const typeof( ((type *)0)->member ) *__mptr = (ptr); \
52 (type *)( (char *)__mptr - offsetof(type,member) );})
53
Simon Glass9c628922013-06-11 11:14:43 -070054enum {
55 FUNCF_TRACE = 1 << 0, /* Include this function in trace */
Simon Glassdd8f19a2023-01-15 14:15:53 -070056 TRACE_PAGE_SIZE = 4096, /* Assumed page size for trace */
57 TRACE_PID = 1, /* PID to use for U-Boot */
58 LEN_STACK_SIZE = 4, /* number of nested length fix-ups */
59 TRACE_PAGE_MASK = TRACE_PAGE_SIZE - 1,
60 MAX_STACK_DEPTH = 50, /* Max nested function calls */
61 MAX_LINE_LEN = 500, /* Max characters per line */
62};
63
Simon Glass31fb49a2023-01-15 14:15:56 -070064/**
65 * enum out_format_t - supported output formats
66 *
67 * @OUT_FMT_DEFAULT: Use the default for the output file
68 * @OUT_FMT_FUNCTION: Write ftrace 'function' records
69 * @OUT_FMT_FUNCGRAPH: Write ftrace funcgraph_entry and funcgraph_exit records
70 */
71enum out_format_t {
72 OUT_FMT_DEFAULT,
73 OUT_FMT_FUNCTION,
74 OUT_FMT_FUNCGRAPH,
75};
76
Simon Glassdd8f19a2023-01-15 14:15:53 -070077/* Section types for v7 format (trace-cmd format) */
78enum {
79 SECTION_OPTIONS,
80};
81
82/* Option types (trace-cmd format) */
83enum {
84 OPTION_DONE,
85 OPTION_DATE,
86 OPTION_CPUSTAT,
87 OPTION_BUFFER,
88 OPTION_TRACECLOCK,
89 OPTION_UNAME,
90 OPTION_HOOK,
91 OPTION_OFFSET,
92 OPTION_CPUCOUNT,
93 OPTION_VERSION,
94 OPTION_PROCMAPS,
95 OPTION_TRACEID,
96 OPTION_TIME_SHIFT,
97 OPTION_GUEST,
98 OPTION_TSC2NSEC,
99};
100
101/* types of trace records (trace-cmd format) */
102enum trace_type {
103 __TRACE_FIRST_TYPE = 0,
104
105 TRACE_FN,
106 TRACE_CTX,
107 TRACE_WAKE,
108 TRACE_STACK,
109 TRACE_PRINT,
110 TRACE_BPRINT,
111 TRACE_MMIO_RW,
112 TRACE_MMIO_MAP,
113 TRACE_BRANCH,
114 TRACE_GRAPH_RET,
115 TRACE_GRAPH_ENT,
Simon Glass9c628922013-06-11 11:14:43 -0700116};
117
Simon Glass9e2afae2023-01-15 14:15:52 -0700118/**
Simon Glassd854ce42023-01-15 14:15:57 -0700119 * struct flame_node - a node in the call-stack tree
120 *
121 * Each stack frame detected in the trace is given a node corresponding to a
122 * function call in the call stack. Functions can appear multiple times when
123 * they are called by a different set of parent functions.
124 *
125 * @parent: Parent node (the call stack for the function that called this one)
126 * @child_head: List of children of this node (functions called from here)
127 * @sibling: Next node in the list of children
128 * @func: Function this node refers to (NULL for root node)
129 * @count: Number of times this call-stack occurred
130 */
131struct flame_node {
132 struct flame_node *parent;
133 struct list_head child_head;
134 struct list_head sibling_node;
135 struct func_info *func;
136 int count;
137};
138
139/**
140 * struct flame_state - state information for building the flame graph
141 *
142 * @node: Current node being processed (corresponds to a function call)
143 * @nodes: Number of nodes created (running count)
144 */
145struct flame_state {
146 struct flame_node *node;
147 int nodes;
148};
149
150/**
Simon Glass9e2afae2023-01-15 14:15:52 -0700151 * struct func_info - information recorded for each function
152 *
153 * @offset: Function offset in the image, measured from the text_base
154 * @name: Function name
155 * @code_size: Total code size of the function
156 * @flags: Either 0 or FUNCF_TRACE
Simon Glass9e2afae2023-01-15 14:15:52 -0700157 */
Simon Glass9c628922013-06-11 11:14:43 -0700158struct func_info {
159 unsigned long offset;
160 const char *name;
161 unsigned long code_size;
Simon Glass9c628922013-06-11 11:14:43 -0700162 unsigned flags;
Simon Glass9c628922013-06-11 11:14:43 -0700163};
164
Simon Glass9e2afae2023-01-15 14:15:52 -0700165/**
166 * enum trace_line_type - whether to include or exclude a function
167 *
168 * @TRACE_LINE_INCLUDE: Include the function
169 * @TRACE_LINE_EXCLUDE: Exclude the function
170 */
Simon Glass9c628922013-06-11 11:14:43 -0700171enum trace_line_type {
172 TRACE_LINE_INCLUDE,
173 TRACE_LINE_EXCLUDE,
174};
175
Simon Glass9e2afae2023-01-15 14:15:52 -0700176/**
177 * struct trace_configline_info - information about a config-file line
178 *
179 * @next: Next line
180 * @type: Line type
181 * @name: identifier name / wildcard
182 * @regex: Regex to use if name starts with '/'
183 */
Simon Glass9c628922013-06-11 11:14:43 -0700184struct trace_configline_info {
185 struct trace_configline_info *next;
186 enum trace_line_type type;
Simon Glass9e2afae2023-01-15 14:15:52 -0700187 const char *name;
188 regex_t regex;
Simon Glass9c628922013-06-11 11:14:43 -0700189};
190
Simon Glassdd8f19a2023-01-15 14:15:53 -0700191/**
192 * struct tw_len - holds information about a length value that need fix-ups
193 *
194 * This is used to record a placeholder for a u32 or u64 length which is written
195 * to the output file but needs to be updated once the length is actually known
196 *
197 * This allows us to write tw->ptr - @len_base to position @ptr in the file
198 *
199 * @ptr: Position of the length value in the file
200 * @base: Base position for the calculation
201 * @size: Size of the length value, in bytes (4 or 8)
202 */
203struct tw_len {
204 int ptr;
205 int base;
206 int size;
207};
208
209/**
210 * struct twriter - Writer for trace records
211 *
212 * Maintains state used when writing the output file in trace-cmd format
213 *
214 * @ptr: Current file position
215 * @len_stack: Stack of length values that need fixing up
216 * @len: Number of items on @len_stack
217 * @str_buf: Buffer of strings (for v7 format)
218 * @str_ptr: Current write-position in the buffer for strings
219 * @fout: Output file
220 */
221struct twriter {
222 int ptr;
223 struct tw_len len_stack[LEN_STACK_SIZE];
224 int len_count;
225 struct abuf str_buf;
226 int str_ptr;
227 FILE *fout;
228};
229
Simon Glass9c628922013-06-11 11:14:43 -0700230/* The contents of the trace config file */
231struct trace_configline_info *trace_config_head;
232
Simon Glass9e2afae2023-01-15 14:15:52 -0700233/* list of all functions in System.map file, sorted by offset in the image */
Simon Glass9c628922013-06-11 11:14:43 -0700234struct func_info *func_list;
Simon Glass9e2afae2023-01-15 14:15:52 -0700235
236int func_count; /* number of functions */
237struct trace_call *call_list; /* list of all calls in the input trace file */
238int call_count; /* number of calls */
Simon Glass9c628922013-06-11 11:14:43 -0700239int verbose; /* Verbosity level 0=none, 1=warn, 2=notice, 3=info, 4=debug */
Simon Glass9e2afae2023-01-15 14:15:52 -0700240ulong text_offset; /* text address of first function */
Simon Glass7ac0a502023-01-15 14:15:55 -0700241ulong text_base; /* CONFIG_TEXT_BASE from trace file */
Simon Glass9c628922013-06-11 11:14:43 -0700242
Simon Glass9e2afae2023-01-15 14:15:52 -0700243/* debugging helpers */
Simon Glass9c628922013-06-11 11:14:43 -0700244static void outf(int level, const char *fmt, ...)
245 __attribute__ ((format (__printf__, 2, 3)));
246#define error(fmt, b...) outf(0, fmt, ##b)
247#define warn(fmt, b...) outf(1, fmt, ##b)
248#define notice(fmt, b...) outf(2, fmt, ##b)
249#define info(fmt, b...) outf(3, fmt, ##b)
250#define debug(fmt, b...) outf(4, fmt, ##b)
251
Simon Glass9c628922013-06-11 11:14:43 -0700252static void outf(int level, const char *fmt, ...)
253{
254 if (verbose >= level) {
255 va_list args;
256
257 va_start(args, fmt);
258 vfprintf(stderr, fmt, args);
259 va_end(args);
260 }
261}
262
263static void usage(void)
264{
265 fprintf(stderr,
Simon Glassec86a632022-12-21 16:08:24 -0700266 "Usage: proftool [-cmtv] <cmd> <profdata>\n"
Simon Glass9c628922013-06-11 11:14:43 -0700267 "\n"
268 "Commands\n"
Simon Glass9e2afae2023-01-15 14:15:52 -0700269 " dump-ftrace\t\tDump out records in ftrace format for use by trace-cmd\n"
Simon Glassd854ce42023-01-15 14:15:57 -0700270 " dump-flamegraph\tWrite a file for use with flamegraph.pl\n"
Simon Glass9c628922013-06-11 11:14:43 -0700271 "\n"
272 "Options:\n"
Simon Glass9e2afae2023-01-15 14:15:52 -0700273 " -c <cfg>\tSpecify config file\n"
Simon Glass31fb49a2023-01-15 14:15:56 -0700274 " -f <subtype>\tSpecify output subtype\n"
Simon Glass9c628922013-06-11 11:14:43 -0700275 " -m <map>\tSpecify Systen.map file\n"
Simon Glass9e2afae2023-01-15 14:15:52 -0700276 " -o <fname>\tSpecify output file\n"
Simon Glassec86a632022-12-21 16:08:24 -0700277 " -t <fname>\tSpecify trace data file (from U-Boot 'trace calls')\n"
Simon Glass31fb49a2023-01-15 14:15:56 -0700278 " -v <0-4>\tSpecify verbosity\n"
279 "\n"
280 "Subtypes for dump-ftrace:\n"
281 " function - write function-call records (caller/callee)\n"
282 " funcgraph - write function entry/exit records (graph)\n");
Simon Glass9c628922013-06-11 11:14:43 -0700283 exit(EXIT_FAILURE);
284}
285
Simon Glass9e2afae2023-01-15 14:15:52 -0700286/**
287 * h_cmp_offset - bsearch() function to compare two functions bny their offset
288 *
289 * @v1: Pointer to first function (struct func_info)
290 * @v2: Pointer to second function (struct func_info)
291 * Returns: < 0 if v1 offset < v2 offset, 0 if equal, > 0 otherwise
292 */
Simon Glass9c628922013-06-11 11:14:43 -0700293static int h_cmp_offset(const void *v1, const void *v2)
294{
295 const struct func_info *f1 = v1, *f2 = v2;
296
297 return (f1->offset / FUNC_SITE_SIZE) - (f2->offset / FUNC_SITE_SIZE);
298}
299
Simon Glass9e2afae2023-01-15 14:15:52 -0700300/**
301 * read_system_map() - read the System.map file to create a list of functions
302 *
303 * This also reads the text_offset value, since we assume that the first text
304 * symbol is at that address
305 *
306 * @fin: File to read
307 * Returns: 0 if OK, non-zero on error
308 */
Simon Glass9c628922013-06-11 11:14:43 -0700309static int read_system_map(FILE *fin)
310{
311 unsigned long offset, start = 0;
312 struct func_info *func;
313 char buff[MAX_LINE_LEN];
314 char symtype;
315 char symname[MAX_LINE_LEN + 1];
316 int linenum;
317 int alloced;
318
319 for (linenum = 1, alloced = func_count = 0;; linenum++) {
320 int fields = 0;
321
322 if (fgets(buff, sizeof(buff), fin))
323 fields = sscanf(buff, "%lx %c %100s\n", &offset,
324 &symtype, symname);
325 if (fields == 2) {
326 continue;
327 } else if (feof(fin)) {
328 break;
329 } else if (fields < 2) {
330 error("Map file line %d: invalid format\n", linenum);
331 return 1;
332 }
333
334 /* Must be a text symbol */
335 symtype = tolower(symtype);
336 if (symtype != 't' && symtype != 'w')
337 continue;
338
339 if (func_count == alloced) {
340 alloced += 256;
341 func_list = realloc(func_list,
342 sizeof(struct func_info) * alloced);
343 assert(func_list);
344 }
345 if (!func_count)
346 start = offset;
347
348 func = &func_list[func_count++];
349 memset(func, '\0', sizeof(*func));
350 func->offset = offset - start;
351 func->name = strdup(symname);
352 func->flags = FUNCF_TRACE; /* trace by default */
353
354 /* Update previous function's code size */
355 if (func_count > 1)
356 func[-1].code_size = func->offset - func[-1].offset;
357 }
Simon Glass7ac0a502023-01-15 14:15:55 -0700358 notice("%d functions found in map file, start addr %lx\n", func_count,
359 start);
Simon Glass9c628922013-06-11 11:14:43 -0700360 text_offset = start;
Simon Glass9e2afae2023-01-15 14:15:52 -0700361
Simon Glass9c628922013-06-11 11:14:43 -0700362 return 0;
363}
364
365static int read_data(FILE *fin, void *buff, int size)
366{
367 int err;
368
369 err = fread(buff, 1, size, fin);
370 if (!err)
371 return 1;
372 if (err != size) {
Simon Glass9e2afae2023-01-15 14:15:52 -0700373 error("Cannot read trace file at pos %lx\n", ftell(fin));
Simon Glass9c628922013-06-11 11:14:43 -0700374 return -1;
375 }
376 return 0;
377}
378
Simon Glass9e2afae2023-01-15 14:15:52 -0700379/**
380 * find_func_by_offset() - Look up a function by its offset
381 *
382 * @offset: Offset to search for, from text_base
383 * Returns: function, if found, else NULL
384 *
385 * This does a fast search for a function given its offset from text_base
386 *
387 */
388static struct func_info *find_func_by_offset(uint offset)
Simon Glass9c628922013-06-11 11:14:43 -0700389{
390 struct func_info key, *found;
391
392 key.offset = offset;
393 found = bsearch(&key, func_list, func_count, sizeof(struct func_info),
394 h_cmp_offset);
395
396 return found;
397}
398
Simon Glass9e2afae2023-01-15 14:15:52 -0700399/**
400 * find_caller_by_offset() - finds the function which contains the given offset
401 *
402 * @offset: Offset to search for, from text_base
403 * Returns: function, if found, else NULL
404 *
405 * If the offset falls between two functions, then it is assumed to belong to
406 * the first function (with the lowest offset). This is a way of figuring out
407 * which function owns code at a particular offset
408 */
409static struct func_info *find_caller_by_offset(uint offset)
Simon Glass9c628922013-06-11 11:14:43 -0700410{
411 int low; /* least function that could be a match */
412 int high; /* greated function that could be a match */
413 struct func_info key;
414
415 low = 0;
416 high = func_count - 1;
417 key.offset = offset;
418 while (high > low + 1) {
419 int mid = (low + high) / 2;
420 int result;
421
422 result = h_cmp_offset(&key, &func_list[mid]);
423 if (result > 0)
424 low = mid;
425 else if (result < 0)
426 high = mid;
427 else
428 return &func_list[mid];
429 }
430
431 return low >= 0 ? &func_list[low] : NULL;
432}
433
Simon Glass9e2afae2023-01-15 14:15:52 -0700434/**
435 * read_calls() - Read the list of calls from the trace data
436 *
437 * The calls are stored consecutively in the trace output produced by U-Boot
438 *
439 * @fin: File to read from
440 * @count: Number of calls to read
441 * Returns: 0 if OK, -1 on error
442 */
Heinrich Schuchardt14690902019-06-14 21:50:55 +0200443static int read_calls(FILE *fin, size_t count)
Simon Glass9c628922013-06-11 11:14:43 -0700444{
445 struct trace_call *call_data;
446 int i;
447
Heinrich Schuchardt14690902019-06-14 21:50:55 +0200448 notice("call count: %zu\n", count);
Simon Glass9c628922013-06-11 11:14:43 -0700449 call_list = (struct trace_call *)calloc(count, sizeof(*call_data));
450 if (!call_list) {
451 error("Cannot allocate call_list\n");
452 return -1;
453 }
454 call_count = count;
455
456 call_data = call_list;
457 for (i = 0; i < count; i++, call_data++) {
458 if (read_data(fin, call_data, sizeof(*call_data)))
Simon Glass9e2afae2023-01-15 14:15:52 -0700459 return -1;
Simon Glass9c628922013-06-11 11:14:43 -0700460 }
461 return 0;
462}
463
Simon Glass9e2afae2023-01-15 14:15:52 -0700464/**
465 * read_trace() - Read the U-Boot trace file
466 *
467 * Read in the calls from the trace file. The function list is ignored at
468 * present
469 *
470 * @fin: File to read
471 * Returns 0 if OK, non-zero on error
472 */
473static int read_trace(FILE *fin)
Simon Glass9c628922013-06-11 11:14:43 -0700474{
475 struct trace_output_hdr hdr;
476
Simon Glass9c628922013-06-11 11:14:43 -0700477 while (!feof(fin)) {
478 int err;
479
480 err = read_data(fin, &hdr, sizeof(hdr));
481 if (err == 1)
482 break; /* EOF */
483 else if (err)
484 return 1;
Simon Glass7ac0a502023-01-15 14:15:55 -0700485 text_base = hdr.text_base;
Simon Glass9c628922013-06-11 11:14:43 -0700486
487 switch (hdr.type) {
488 case TRACE_CHUNK_FUNCS:
489 /* Ignored at present */
490 break;
491
492 case TRACE_CHUNK_CALLS:
493 if (read_calls(fin, hdr.rec_count))
494 return 1;
495 break;
496 }
497 }
498 return 0;
499}
500
Simon Glass9e2afae2023-01-15 14:15:52 -0700501/**
502 * read_map_file() - Read the System.map file
503 *
504 * This reads the file into the func_list array
505 *
506 * @fname: Filename to read
507 * Returns 0 if OK, non-zero on error
508 */
Simon Glass9c628922013-06-11 11:14:43 -0700509static int read_map_file(const char *fname)
510{
511 FILE *fmap;
512 int err = 0;
513
514 fmap = fopen(fname, "r");
515 if (!fmap) {
516 error("Cannot open map file '%s'\n", fname);
517 return 1;
518 }
519 if (fmap) {
520 err = read_system_map(fmap);
521 fclose(fmap);
522 }
523 return err;
524}
525
Simon Glass9e2afae2023-01-15 14:15:52 -0700526/**
527 * read_trace_file() - Open and read the U-Boot trace file
528 *
529 * Read in the calls from the trace file. The function list is ignored at
530 * present
531 *
532 * @fin: File to read
533 * Returns 0 if OK, non-zero on error
534 */
535static int read_trace_file(const char *fname)
Simon Glass9c628922013-06-11 11:14:43 -0700536{
Simon Glass9c628922013-06-11 11:14:43 -0700537 FILE *fprof;
538 int err;
539
540 fprof = fopen(fname, "rb");
541 if (!fprof) {
Simon Glass9e2afae2023-01-15 14:15:52 -0700542 error("Cannot open trace data file '%s'\n",
Simon Glass9c628922013-06-11 11:14:43 -0700543 fname);
544 return 1;
545 } else {
Simon Glass9e2afae2023-01-15 14:15:52 -0700546 err = read_trace(fprof);
Simon Glass9c628922013-06-11 11:14:43 -0700547 fclose(fprof);
548 if (err)
549 return err;
Simon Glass9c628922013-06-11 11:14:43 -0700550 }
551 return 0;
552}
553
554static int regex_report_error(regex_t *regex, int err, const char *op,
555 const char *name)
556{
557 char buf[200];
558
559 regerror(err, regex, buf, sizeof(buf));
560 error("Regex error '%s' in %s '%s'\n", buf, op, name);
561 return -1;
562}
563
564static void check_trace_config_line(struct trace_configline_info *item)
565{
566 struct func_info *func, *end;
567 int err;
568
569 debug("Checking trace config line '%s'\n", item->name);
570 for (func = func_list, end = func + func_count; func < end; func++) {
571 err = regexec(&item->regex, func->name, 0, NULL, 0);
572 debug(" - regex '%s', string '%s': %d\n", item->name,
573 func->name, err);
574 if (err == REG_NOMATCH)
575 continue;
576
Andreas Bießmann8a0103f2013-07-02 08:37:36 +0200577 if (err) {
Simon Glass9c628922013-06-11 11:14:43 -0700578 regex_report_error(&item->regex, err, "match",
579 item->name);
580 break;
581 }
582
583 /* It matches, so perform the action */
584 switch (item->type) {
585 case TRACE_LINE_INCLUDE:
586 info(" include %s at %lx\n", func->name,
587 text_offset + func->offset);
588 func->flags |= FUNCF_TRACE;
589 break;
590
591 case TRACE_LINE_EXCLUDE:
592 info(" exclude %s at %lx\n", func->name,
593 text_offset + func->offset);
594 func->flags &= ~FUNCF_TRACE;
595 break;
596 }
597 }
598}
599
Simon Glass9e2afae2023-01-15 14:15:52 -0700600/** check_trace_config() - Check trace-config file, reporting any problems */
Simon Glass9c628922013-06-11 11:14:43 -0700601static void check_trace_config(void)
602{
603 struct trace_configline_info *line;
604
605 for (line = trace_config_head; line; line = line->next)
606 check_trace_config_line(line);
607}
608
609/**
Simon Glass9e2afae2023-01-15 14:15:52 -0700610 * read_trace_config() - read the trace-config file
611 *
612 * This file consists of lines like:
613 *
614 * include-func <regex>
615 * exclude-func <regex>
616 *
617 * where <regex> is a regular expression matched against function names. It
618 * allows some functions to be dropped from the trace when producing ftrace
619 * records
620 *
621 * @fin: File to process
622 * Returns: 0 if OK, -1 on error
623 */
Simon Glass9c628922013-06-11 11:14:43 -0700624static int read_trace_config(FILE *fin)
625{
626 char buff[200];
627 int linenum = 0;
628 struct trace_configline_info **tailp = &trace_config_head;
629
630 while (fgets(buff, sizeof(buff), fin)) {
631 int len = strlen(buff);
632 struct trace_configline_info *line;
633 char *saveptr;
634 char *s, *tok;
635 int err;
636
637 linenum++;
638 if (len && buff[len - 1] == '\n')
639 buff[len - 1] = '\0';
640
641 /* skip blank lines and comments */
642 for (s = buff; *s == ' ' || *s == '\t'; s++)
643 ;
644 if (!*s || *s == '#')
645 continue;
646
Simon Glass9e2afae2023-01-15 14:15:52 -0700647 line = (struct trace_configline_info *)calloc(1, sizeof(*line));
Simon Glass9c628922013-06-11 11:14:43 -0700648 if (!line) {
649 error("Cannot allocate config line\n");
650 return -1;
651 }
652
653 tok = strtok_r(s, " \t", &saveptr);
654 if (!tok) {
655 error("Invalid trace config data on line %d\n",
656 linenum);
657 return -1;
658 }
659 if (0 == strcmp(tok, "include-func")) {
660 line->type = TRACE_LINE_INCLUDE;
661 } else if (0 == strcmp(tok, "exclude-func")) {
662 line->type = TRACE_LINE_EXCLUDE;
663 } else {
664 error("Unknown command in trace config data line %d\n",
665 linenum);
666 return -1;
667 }
668
669 tok = strtok_r(NULL, " \t", &saveptr);
670 if (!tok) {
671 error("Missing pattern in trace config data line %d\n",
672 linenum);
673 return -1;
674 }
675
676 err = regcomp(&line->regex, tok, REG_NOSUB);
677 if (err) {
Vincent Stehlé451b1fc2015-10-07 15:48:48 +0200678 int r = regex_report_error(&line->regex, err,
679 "compile", tok);
Simon Glass9c628922013-06-11 11:14:43 -0700680 free(line);
Vincent Stehlé451b1fc2015-10-07 15:48:48 +0200681 return r;
Simon Glass9c628922013-06-11 11:14:43 -0700682 }
683
684 /* link this new one to the end of the list */
685 line->name = strdup(tok);
686 line->next = NULL;
687 *tailp = line;
688 tailp = &line->next;
689 }
690
691 if (!feof(fin)) {
692 error("Cannot read from trace config file at position %ld\n",
693 ftell(fin));
694 return -1;
695 }
696 return 0;
697}
698
699static int read_trace_config_file(const char *fname)
700{
701 FILE *fin;
702 int err;
703
704 fin = fopen(fname, "r");
705 if (!fin) {
706 error("Cannot open trace_config file '%s'\n", fname);
707 return -1;
708 }
709 err = read_trace_config(fin);
710 fclose(fin);
711 return err;
712}
713
Simon Glassdd8f19a2023-01-15 14:15:53 -0700714/**
715 * tputh() - Write a 16-bit little-endian value to a file
716 *
717 * @fout: File to write to
718 * @val: Value to write
719 * Returns: number of bytes written (2)
720 */
721static int tputh(FILE *fout, unsigned int val)
Simon Glass9c628922013-06-11 11:14:43 -0700722{
Simon Glassdd8f19a2023-01-15 14:15:53 -0700723 fputc(val, fout);
724 fputc(val >> 8, fout);
Simon Glass9c628922013-06-11 11:14:43 -0700725
Simon Glassdd8f19a2023-01-15 14:15:53 -0700726 return 2;
727}
Simon Glass9c628922013-06-11 11:14:43 -0700728
Simon Glassdd8f19a2023-01-15 14:15:53 -0700729/**
730 * tputl() - Write a 32-bit little-endian value to a file
731 *
732 * @fout: File to write to
733 * @val: Value to write
734 * Returns: number of bytes written (4)
735 */
736static int tputl(FILE *fout, ulong val)
737{
738 fputc(val, fout);
739 fputc(val >> 8, fout);
740 fputc(val >> 16, fout);
741 fputc(val >> 24, fout);
742
743 return 4;
Simon Glass9c628922013-06-11 11:14:43 -0700744}
745
Simon Glassdd8f19a2023-01-15 14:15:53 -0700746/**
747 * tputh() - Write a 64-bit little-endian value to a file
748 *
749 * @fout: File to write to
750 * @val: Value to write
751 * Returns: number of bytes written (8)
Simon Glass9c628922013-06-11 11:14:43 -0700752 */
Simon Glassdd8f19a2023-01-15 14:15:53 -0700753static int tputq(FILE *fout, unsigned long long val)
Simon Glass9c628922013-06-11 11:14:43 -0700754{
Simon Glassdd8f19a2023-01-15 14:15:53 -0700755 tputl(fout, val);
756 tputl(fout, val >> 32U);
757
758 return 8;
759}
760
761/**
762 * tputh() - Write a string to a file
763 *
764 * The string is written without its terminator
765 *
766 * @fout: File to write to
767 * @val: Value to write
768 * Returns: number of bytes written
769 */
770static int tputs(FILE *fout, const char *str)
771{
772 fputs(str, fout);
773
774 return strlen(str);
775}
776
777/**
778 * add_str() - add a name string to the string table
779 *
780 * This is used by the v7 format
781 *
782 * @tw: Writer context
783 * @name: String to write
784 * Returns: Updated value of string pointer, or -1 if out of memory
785 */
786static int add_str(struct twriter *tw, const char *name)
787{
788 int str_ptr;
789 int len;
790
791 len = strlen(name) + 1;
792 str_ptr = tw->str_ptr;
793 tw->str_ptr += len;
794
795 if (tw->str_ptr > abuf_size(&tw->str_buf)) {
796 int new_size;
797
798 new_size = ALIGN(tw->str_ptr, 4096);
799 if (!abuf_realloc(&tw->str_buf, new_size))
800 return -1;
801 }
802
803 return str_ptr;
804}
805
806/**
807 * push_len() - Push a new length request onto the stack
808 *
809 * @tw: Writer context
810 * @base: Base position of the length calculation
811 * @msg: Indicates the type of caller, for debugging
812 * @size: Size of the length value, either 4 bytes or 8
813 * Returns number of bytes written to the file (=@size on success), -ve on error
814 *
815 * This marks a place where a length must be written, covering data that is
816 * about to be written. It writes a placeholder value.
817 *
818 * Once the data is written, calling pop_len() will update the placeholder with
819 * the correct length based on how many bytes have been written
820 */
821static int push_len(struct twriter *tw, int base, const char *msg, int size)
822{
823 struct tw_len *lp;
824
825 if (tw->len_count >= LEN_STACK_SIZE) {
826 fprintf(stderr, "Length-stack overflow: %s\n", msg);
827 return -1;
828 }
829 if (size != 4 && size != 8) {
830 fprintf(stderr, "Length-stack invalid size %d: %s\n", size,
831 msg);
832 return -1;
833 }
834
835 lp = &tw->len_stack[tw->len_count++];
836 lp->base = base;
837 lp->ptr = tw->ptr;
838 lp->size = size;
839
840 return size == 8 ? tputq(tw->fout, 0) : tputl(tw->fout, 0);
841}
842
843/**
844 * pop_len() - Update a length value once the length is known
845 *
846 * Pops a value of the length stack and updates the file at that position with
847 * the number of bytes written between now and then. Once done, the file is
848 * seeked to the current (tw->ptr) position again, so writing can continue as
849 * normal.
850 *
851 * @tw: Writer context
852 * @msg: Indicates the type of caller, for debugging
853 * Returns 0 if OK, -1 on error
854 */
855static int pop_len(struct twriter *tw, const char *msg)
856{
857 struct tw_len *lp;
858 int len, ret;
859
860 if (!tw->len_count) {
861 fprintf(stderr, "Length-stack underflow: %s\n", msg);
862 return -1;
863 }
864
865 lp = &tw->len_stack[--tw->len_count];
866 if (fseek(tw->fout, lp->ptr, SEEK_SET))
867 return -1;
868 len = tw->ptr - lp->base;
869 ret = lp->size == 8 ? tputq(tw->fout, len) : tputl(tw->fout, len);
870 if (ret < 0)
871 return -1;
872 if (fseek(tw->fout, tw->ptr, SEEK_SET))
873 return -1;
874
875 return 0;
876}
877
878/**
879 * start_header() - Start a v7 section
880 *
881 * Writes a header in v7 format
882 *
883 * @tw: Writer context
884 * @id: ID of header to write (SECTION_...)
885 * @flags: Flags value to write
886 * @name: Name of section
887 * Returns: number of bytes written
888 */
889static int start_header(struct twriter *tw, int id, uint flags,
890 const char *name)
891{
892 int str_id;
893 int lptr;
894 int base;
895 int ret;
896
897 base = tw->ptr + 16;
898 lptr = 0;
899 lptr += tputh(tw->fout, id);
900 lptr += tputh(tw->fout, flags);
901 str_id = add_str(tw, name);
902 if (str_id < 0)
903 return -1;
904 lptr += tputl(tw->fout, str_id);
905
906 /* placeholder for size */
907 ret = push_len(tw, base, "v7 header", 8);
908 if (ret < 0)
909 return -1;
910 lptr += ret;
911
912 return lptr;
913}
914
915/**
916 * start_page() - Start a new page of output data
917 *
918 * The output is arranged in 4KB pages with a base timestamp at the start of
919 * each. This starts a new page, making sure it is aligned to 4KB in the output
920 * file.
921 *
922 * @tw: Writer context
923 * @timestamp: Base timestamp for the page
924 */
925static int start_page(struct twriter *tw, ulong timestamp)
926{
927 int start;
928 int ret;
929
930 /* move to start of next page */
931 start = ALIGN(tw->ptr, TRACE_PAGE_SIZE);
932 ret = fseek(tw->fout, start, SEEK_SET);
933 if (ret < 0) {
934 fprintf(stderr, "Cannot seek to page start\n");
935 return -1;
936 }
937 tw->ptr = start;
938
939 /* page header */
940 tw->ptr += tputq(tw->fout, timestamp);
941 ret = push_len(tw, start + 16, "page", 8);
942 if (ret < 0)
943 return ret;
944 tw->ptr += ret;
945
946 return 0;
947}
948
949/**
950 * finish_page() - finish a page
951 *
952 * Sets the lengths correctly and moves to the start of the next page
953 *
954 * @tw: Writer context
955 * Returns: 0 on success, -1 on error
956 */
957static int finish_page(struct twriter *tw)
958{
959 int ret, end;
960
961 ret = pop_len(tw, "page");
962 if (ret < 0)
963 return ret;
964 end = ALIGN(tw->ptr, TRACE_PAGE_SIZE);
965
966 /*
967 * Write a byte so that the data actually makes to the file, in the case
968 * that we never write any more pages
969 */
970 if (tw->ptr != end) {
971 if (fseek(tw->fout, end - 1, SEEK_SET)) {
972 fprintf(stderr, "cannot seek to start of next page\n");
973 return -1;
974 }
975 fputc(0, tw->fout);
976 tw->ptr = end;
977 }
978
979 return 0;
980}
981
982/**
983 * output_headers() - Output v6 headers to the file
984 *
985 * Writes out the various formats so that trace-cmd and kernelshark can make
986 * sense of the data
987 *
988 * This updates tw->ptr as it goes
989 *
990 * @tw: Writer context
991 * Returns: 0 on success, -ve on error
992 */
993static int output_headers(struct twriter *tw)
994{
995 FILE *fout = tw->fout;
996 char str[800];
997 int len, ret;
998
999 tw->ptr += fprintf(fout, "%c%c%ctracing6%c%c%c", 0x17, 0x08, 0x44,
1000 0 /* terminator */, 0 /* little endian */,
1001 4 /* 32-bit long values */);
1002
1003 /* host-machine page size 4KB */
1004 tw->ptr += tputl(fout, 4 << 10);
1005
1006 tw->ptr += fprintf(fout, "header_page%c", 0);
1007
1008 snprintf(str, sizeof(str),
1009 "\tfield: u64 timestamp;\toffset:0;\tsize:8;\tsigned:0;\n"
1010 "\tfield: local_t commit;\toffset:8;\tsize:8;\tsigned:1;\n"
1011 "\tfield: int overwrite;\toffset:8;\tsize:1;\tsigned:1;\n"
1012 "\tfield: char data;\toffset:16;\tsize:4080;\tsigned:1;\n");
1013 len = strlen(str);
1014 tw->ptr += tputq(fout, len);
1015 tw->ptr += tputs(fout, str);
1016
1017 if (VERSION7) {
1018 /* no compression */
1019 tw->ptr += fprintf(fout, "none%cversion%c\n", 0, 0);
1020
1021 ret = start_header(tw, SECTION_OPTIONS, 0, "options");
1022 if (ret < 0) {
1023 fprintf(stderr, "Cannot start option header\n");
1024 return -1;
1025 }
1026 tw->ptr += ret;
1027 tw->ptr += tputh(fout, OPTION_DONE);
1028 tw->ptr += tputl(fout, 8);
1029 tw->ptr += tputl(fout, 0);
1030 ret = pop_len(tw, "t7 header");
1031 if (ret < 0) {
1032 fprintf(stderr, "Cannot finish option header\n");
1033 return -1;
1034 }
1035 }
1036
1037 tw->ptr += fprintf(fout, "header_event%c", 0);
1038 snprintf(str, sizeof(str),
1039 "# compressed entry header\n"
1040 "\ttype_len : 5 bits\n"
1041 "\ttime_delta : 27 bits\n"
1042 "\tarray : 32 bits\n"
1043 "\n"
1044 "\tpadding : type == 29\n"
1045 "\ttime_extend : type == 30\n"
1046 "\ttime_stamp : type == 31\n"
1047 "\tdata max type_len == 28\n");
1048 len = strlen(str);
1049 tw->ptr += tputq(fout, len);
1050 tw->ptr += tputs(fout, str);
1051
1052 /* number of ftrace-event-format files */
1053 tw->ptr += tputl(fout, 3);
1054
1055 snprintf(str, sizeof(str),
1056 "name: function\n"
1057 "ID: 1\n"
1058 "format:\n"
1059 "\tfield:unsigned short common_type;\toffset:0;\tsize:2;\tsigned:0;\n"
1060 "\tfield:unsigned char common_flags;\toffset:2;\tsize:1;\tsigned:0;\n"
1061 "\tfield:unsigned char common_preempt_count;\toffset:3;\tsize:1;signed:0;\n"
1062 "\tfield:int common_pid;\toffset:4;\tsize:4;\tsigned:1;\n"
1063 "\n"
1064 "\tfield:unsigned long ip;\toffset:8;\tsize:8;\tsigned:0;\n"
1065 "\tfield:unsigned long parent_ip;\toffset:16;\tsize:8;\tsigned:0;\n"
1066 "\n"
1067 "print fmt: \" %%ps <-- %%ps\", (void *)REC->ip, (void *)REC->parent_ip\n");
1068 len = strlen(str);
1069 tw->ptr += tputq(fout, len);
1070 tw->ptr += tputs(fout, str);
1071
1072 snprintf(str, sizeof(str),
1073 "name: funcgraph_entry\n"
1074 "ID: 11\n"
1075 "format:\n"
1076 "\tfield:unsigned short common_type;\toffset:0;\tsize:2;\tsigned:0;\n"
1077 "\tfield:unsigned char common_flags;\toffset:2;\tsize:1;\tsigned:0;\n"
1078 "\tfield:unsigned char common_preempt_count;\toffset:3;\tsize:1;signed:0;\n"
1079 "\tfield:int common_pid;\toffset:4;\tsize:4;\tsigned:1;\n"
1080 "\n"
1081 "\tfield:unsigned long func;\toffset:8;\tsize:8;\tsigned:0;\n"
1082 "\tfield:int depth;\toffset:16;\tsize:4;\tsigned:1;\n"
1083 "\n"
1084 "print fmt: \"--> %%ps (%%d)\", (void *)REC->func, REC->depth\n");
1085 len = strlen(str);
1086 tw->ptr += tputq(fout, len);
1087 tw->ptr += tputs(fout, str);
1088
1089 snprintf(str, sizeof(str),
1090 "name: funcgraph_exit\n"
1091 "ID: 10\n"
1092 "format:\n"
1093 "\tfield:unsigned short common_type;\toffset:0;\tsize:2;\tsigned:0;\n"
1094 "\tfield:unsigned char common_flags;\toffset:2;\tsize:1;\tsigned:0;\n"
1095 "\tfield:unsigned char common_preempt_count;\toffset:3;\tsize:1;signed:0;\n"
1096 "\tfield:int common_pid;\toffset:4;\tsize:4;\tsigned:1;\n"
1097 "\n"
1098 "\tfield:unsigned long func;\toffset:8;\tsize:8;\tsigned:0;\n"
1099 "\tfield:int depth;\toffset:16;\tsize:4;\tsigned:1;\n"
1100 "\tfield:unsigned int overrun;\toffset:20;\tsize:4;\tsigned:0;\n"
1101 "\tfield:unsigned long long calltime;\toffset:24;\tsize:8;\tsigned:0;\n"
1102 "\tfield:unsigned long long rettime;\toffset:32;\tsize:8;\tsigned:0;\n"
1103 "\n"
1104 "print fmt: \"<-- %%ps (%%d) (start: %%llx end: %%llx) over: %%d\", (void *)REC->func, REC->depth, REC->calltime, REC->rettime, REC->depth\n");
1105 len = strlen(str);
1106 tw->ptr += tputq(fout, len);
1107 tw->ptr += tputs(fout, str);
1108
1109 return 0;
1110}
1111
1112/**
1113 * write_symbols() - Write the symbols out
1114 *
1115 * Writes the symbol information in the following format to mimic the Linux
1116 * /proc/kallsyms file:
1117 *
1118 * <address> T <name>
1119 *
1120 * This updates tw->ptr as it goes
1121 *
1122 * @tw: Writer context
1123 * Returns: 0 on success, -ve on error
1124 */
1125static int write_symbols(struct twriter *tw)
1126{
1127 char str[200];
1128 int ret, i;
1129
1130 /* write symbols */
1131 ret = push_len(tw, tw->ptr + 4, "syms", 4);
1132 if (ret < 0)
1133 return -1;
1134 tw->ptr += ret;
1135 for (i = 0; i < func_count; i++) {
1136 struct func_info *func = &func_list[i];
1137
1138 snprintf(str, sizeof(str), "%016lx T %s\n",
1139 text_offset + func->offset, func->name);
1140 tw->ptr += tputs(tw->fout, str);
1141 }
1142 ret = pop_len(tw, "syms");
1143 if (ret < 0)
1144 return -1;
1145 tw->ptr += ret;
1146
1147 return 0;
1148}
1149
1150/**
1151 * write_options() - Write the options out
1152 *
1153 * Writes various options which are needed or useful. We use OPTION_TSC2NSEC
1154 * to indicates that values in the output need to be multiplied by 1000 since
1155 * U-Boot's trace values are in microseconds.
1156 *
1157 * This updates tw->ptr as it goes
1158 *
1159 * @tw: Writer context
1160 * Returns: 0 on success, -ve on error
1161 */
1162static int write_options(struct twriter *tw)
1163{
1164 FILE *fout = tw->fout;
1165 char str[200];
1166 int len;
1167
1168 /* trace_printk, 0 for now */
1169 tw->ptr += tputl(fout, 0);
1170
1171 /* processes */
1172 snprintf(str, sizeof(str), "%d u-boot\n", TRACE_PID);
1173 len = strlen(str);
1174 tw->ptr += tputq(fout, len);
1175 tw->ptr += tputs(fout, str);
1176
1177 /* number of CPUs */
1178 tw->ptr += tputl(fout, 1);
1179
1180 tw->ptr += fprintf(fout, "options %c", 0);
1181
1182 /* traceclock */
1183 tw->ptr += tputh(fout, OPTION_TRACECLOCK);
1184 tw->ptr += tputl(fout, 0);
1185
1186 /* uname */
1187 tw->ptr += tputh(fout, OPTION_UNAME);
1188 snprintf(str, sizeof(str), "U-Boot");
1189 len = strlen(str);
1190 tw->ptr += tputl(fout, len);
1191 tw->ptr += tputs(fout, str);
1192
1193 /* version */
1194 tw->ptr += tputh(fout, OPTION_VERSION);
1195 snprintf(str, sizeof(str), "unknown");
1196 len = strlen(str);
1197 tw->ptr += tputl(fout, len);
1198 tw->ptr += tputs(fout, str);
1199
1200 /* trace ID */
1201 tw->ptr += tputh(fout, OPTION_TRACEID);
1202 tw->ptr += tputl(fout, 8);
1203 tw->ptr += tputq(fout, 0x123456780abcdef0);
1204
1205 /* time conversion */
1206 tw->ptr += tputh(fout, OPTION_TSC2NSEC);
1207 tw->ptr += tputl(fout, 16);
1208 tw->ptr += tputl(fout, 1000); /* multiplier */
1209 tw->ptr += tputl(fout, 0); /* shift */
1210 tw->ptr += tputq(fout, 0); /* offset */
1211
1212 /* cpustat - bogus data for now, but at least it mentions the CPU */
1213 tw->ptr += tputh(fout, OPTION_CPUSTAT);
1214 snprintf(str, sizeof(str),
1215 "CPU: 0\n"
1216 "entries: 100\n"
1217 "overrun: 43565\n"
1218 "commit overrun: 0\n"
1219 "bytes: 3360\n"
1220 "oldest event ts: 963732.447752\n"
1221 "now ts: 963832.146824\n"
1222 "dropped events: 0\n"
1223 "read events: 42379\n");
1224 len = strlen(str);
1225 tw->ptr += tputl(fout, len);
1226 tw->ptr += tputs(fout, str);
1227
1228 tw->ptr += tputh(fout, OPTION_DONE);
1229
1230 return 0;
1231}
1232
1233/**
Simon Glass31fb49a2023-01-15 14:15:56 -07001234 * calc_min_depth() - Calculate the minimum call depth from the call list
1235 *
1236 * Starting with a depth of 0, this works through the call list, adding 1 for
1237 * each function call and subtracting 1 for each function return. Most likely
1238 * the value ends up being negative, since the trace does not start at the
1239 * very top of the call stack, e.g. main(), but some function called by that.
1240 *
1241 * This value can be used to calculate the depth value for the first call,
1242 * such that it never goes negative for subsequent returns.
1243 *
1244 * Returns: minimum call depth (e.g. -2)
1245 */
1246static int calc_min_depth(void)
1247{
1248 struct trace_call *call;
1249 int depth, min_depth, i;
1250
1251 /* Calculate minimum depth */
1252 depth = 0;
1253 min_depth = 0;
1254 for (i = 0, call = call_list; i < call_count; i++, call++) {
1255 switch (TRACE_CALL_TYPE(call)) {
1256 case FUNCF_ENTRY:
1257 depth++;
1258 break;
1259 case FUNCF_EXIT:
1260 depth--;
1261 if (depth < min_depth)
1262 min_depth = depth;
1263 break;
1264 }
1265 }
1266
1267 return min_depth;
1268}
1269
1270/**
Simon Glassdd8f19a2023-01-15 14:15:53 -07001271 * write_pages() - Write the pages of trace data
1272 *
1273 * This works through all the calls, writing out as many pages of data as are
1274 * needed.
1275 *
1276 * @tw: Writer context
Simon Glass31fb49a2023-01-15 14:15:56 -07001277 * @out_format: Output format to use
Simon Glassdd8f19a2023-01-15 14:15:53 -07001278 * @missing_countp: Returns number of missing functions (not found in function
1279 * list)
1280 * @skip_countp: Returns number of skipped functions (excluded from trace)
1281 *
1282 * Returns: 0 on success, -ve on error
1283 */
Simon Glass31fb49a2023-01-15 14:15:56 -07001284static int write_pages(struct twriter *tw, enum out_format_t out_format,
1285 int *missing_countp, int *skip_countp)
Simon Glassdd8f19a2023-01-15 14:15:53 -07001286{
Simon Glass31fb49a2023-01-15 14:15:56 -07001287 ulong func_stack[MAX_STACK_DEPTH];
Simon Glassdd8f19a2023-01-15 14:15:53 -07001288 int stack_ptr; /* next free position in stack */
Simon Glass31fb49a2023-01-15 14:15:56 -07001289 int upto, depth, page_upto, i;
Simon Glass9c628922013-06-11 11:14:43 -07001290 int missing_count = 0, skip_count = 0;
Simon Glassdd8f19a2023-01-15 14:15:53 -07001291 struct trace_call *call;
1292 ulong last_timestamp;
1293 FILE *fout = tw->fout;
1294 int last_delta = 0;
1295 int err_count;
1296 bool in_page;
Simon Glass9c628922013-06-11 11:14:43 -07001297
Simon Glassdd8f19a2023-01-15 14:15:53 -07001298 in_page = false;
1299 last_timestamp = 0;
1300 upto = 0;
1301 page_upto = 0;
1302 err_count = 0;
1303
1304 /* maintain a stack of start times for calling functions */
1305 stack_ptr = 0;
1306
Simon Glass31fb49a2023-01-15 14:15:56 -07001307 /*
1308 * The first thing in the trace may not be the top-level function, so
1309 * set the initial depth so that no function goes below depth 0
1310 */
1311 depth = -calc_min_depth();
Simon Glass9c628922013-06-11 11:14:43 -07001312 for (i = 0, call = call_list; i < call_count; i++, call++) {
Simon Glass31fb49a2023-01-15 14:15:56 -07001313 bool entry = TRACE_CALL_TYPE(call) == FUNCF_ENTRY;
Simon Glassdd8f19a2023-01-15 14:15:53 -07001314 struct func_info *func;
1315 ulong timestamp;
1316 uint rec_words;
1317 int delta;
Simon Glass9c628922013-06-11 11:14:43 -07001318
Simon Glassdd8f19a2023-01-15 14:15:53 -07001319 func = find_func_by_offset(call->func);
Simon Glass9c628922013-06-11 11:14:43 -07001320 if (!func) {
1321 warn("Cannot find function at %lx\n",
1322 text_offset + call->func);
1323 missing_count++;
Simon Glassdd8f19a2023-01-15 14:15:53 -07001324 if (missing_count > 20) {
1325 /* perhaps trace does not match System.map */
1326 fprintf(stderr, "Too many missing functions\n");
1327 return -1;
1328 }
Simon Glass9c628922013-06-11 11:14:43 -07001329 continue;
1330 }
1331
1332 if (!(func->flags & FUNCF_TRACE)) {
1333 debug("Funcion '%s' is excluded from trace\n",
1334 func->name);
1335 skip_count++;
1336 continue;
1337 }
1338
Simon Glass31fb49a2023-01-15 14:15:56 -07001339 if (out_format == OUT_FMT_FUNCTION)
1340 rec_words = 6;
1341 else /* 2 header words and then 3 or 8 others */
1342 rec_words = 2 + (entry ? 3 : 8);
Simon Glassdd8f19a2023-01-15 14:15:53 -07001343
1344 /* convert timestamp from us to ns */
1345 timestamp = call->flags & FUNCF_TIMESTAMP_MASK;
1346 if (in_page) {
1347 if (page_upto + rec_words * 4 > TRACE_PAGE_SIZE) {
1348 if (finish_page(tw))
1349 return -1;
1350 in_page = false;
1351 }
1352 }
1353 if (!in_page) {
1354 if (start_page(tw, timestamp))
1355 return -1;
1356 in_page = true;
1357 last_timestamp = timestamp;
1358 last_delta = 0;
1359 page_upto = tw->ptr & TRACE_PAGE_MASK;
1360 if (_DEBUG) {
1361 fprintf(stderr,
1362 "new page, last_timestamp=%ld, upto=%d\n",
1363 last_timestamp, upto);
1364 }
1365 }
1366
1367 delta = timestamp - last_timestamp;
1368 if (delta < 0) {
1369 fprintf(stderr, "Time went backwards\n");
1370 err_count++;
1371 }
1372
1373 if (err_count > 20) {
1374 fprintf(stderr, "Too many errors, giving up\n");
1375 return -1;
1376 }
1377
1378 if (delta > 0x07fffff) {
1379 /*
1380 * hard to imagine how this could happen since it means
1381 * that no function calls were made for a long time
1382 */
1383 fprintf(stderr, "cannot represent time delta %x\n",
1384 delta);
1385 return -1;
1386 }
1387
Simon Glass31fb49a2023-01-15 14:15:56 -07001388 if (out_format == OUT_FMT_FUNCTION) {
1389 struct func_info *caller_func;
1390
1391 if (_DEBUG) {
1392 fprintf(stderr, "%d: delta=%d, stamp=%ld\n",
1393 upto, delta, timestamp);
1394 fprintf(stderr,
1395 " last_delta %x to %x: last_timestamp=%lx, "
1396 "timestamp=%lx, call->flags=%x, upto=%d\n",
1397 last_delta, delta, last_timestamp,
1398 timestamp, call->flags, upto);
1399 }
1400
1401 /* type_len is 6, meaning 4 * 6 = 24 bytes */
1402 tw->ptr += tputl(fout, rec_words | (uint)delta << 5);
1403 tw->ptr += tputh(fout, TRACE_FN);
1404 tw->ptr += tputh(fout, 0); /* flags */
1405 tw->ptr += tputl(fout, TRACE_PID); /* PID */
1406 /* function */
1407 tw->ptr += tputq(fout, text_offset + func->offset);
1408 caller_func = find_caller_by_offset(call->caller);
1409 /* caller */
1410 tw->ptr += tputq(fout,
1411 text_offset + caller_func->offset);
1412 } else {
1413 tw->ptr += tputl(fout, rec_words | delta << 5);
1414 tw->ptr += tputh(fout, entry ? TRACE_GRAPH_ENT
1415 : TRACE_GRAPH_RET);
1416 tw->ptr += tputh(fout, 0); /* flags */
1417 tw->ptr += tputl(fout, TRACE_PID); /* PID */
1418 /* function */
1419 tw->ptr += tputq(fout, text_offset + func->offset);
1420 tw->ptr += tputl(fout, depth); /* depth */
1421 if (entry) {
1422 depth++;
1423 if (stack_ptr < MAX_STACK_DEPTH)
1424 func_stack[stack_ptr] = timestamp;
1425 stack_ptr++;
1426 } else {
1427 ulong func_duration = 0;
Simon Glassdd8f19a2023-01-15 14:15:53 -07001428
Simon Glass31fb49a2023-01-15 14:15:56 -07001429 depth--;
1430 if (stack_ptr && stack_ptr <= MAX_STACK_DEPTH) {
1431 ulong start = func_stack[--stack_ptr];
1432
1433 func_duration = timestamp - start;
1434 }
1435 tw->ptr += tputl(fout, 0); /* overrun */
1436 tw->ptr += tputq(fout, 0); /* calltime */
1437 /* rettime */
1438 tw->ptr += tputq(fout, func_duration);
1439 }
1440 }
Simon Glassdd8f19a2023-01-15 14:15:53 -07001441
1442 last_delta = delta;
1443 last_timestamp = timestamp;
1444 page_upto += 4 + rec_words * 4;
1445 upto++;
1446 if (stack_ptr == MAX_STACK_DEPTH)
1447 break;
1448 }
1449 if (in_page && finish_page(tw))
1450 return -1;
1451 *missing_countp = missing_count;
1452 *skip_countp = skip_count;
1453
1454 return 0;
1455}
1456
1457/**
1458 * write_flyrecord() - Write the flyrecord information
1459 *
1460 * Writes the header and pages of data for the "flyrecord" section. It also
1461 * writes out the counter-type info, selecting "[local]"
1462 *
1463 * @tw: Writer context
Simon Glass31fb49a2023-01-15 14:15:56 -07001464 * @out_format: Output format to use
Simon Glassdd8f19a2023-01-15 14:15:53 -07001465 * @missing_countp: Returns number of missing functions (not found in function
1466 * list)
1467 * @skip_countp: Returns number of skipped functions (excluded from trace)
1468 *
1469 * Returns: 0 on success, -ve on error
1470 */
Simon Glass31fb49a2023-01-15 14:15:56 -07001471static int write_flyrecord(struct twriter *tw, enum out_format_t out_format,
1472 int *missing_countp, int *skip_countp)
Simon Glassdd8f19a2023-01-15 14:15:53 -07001473{
1474 int start, ret, len;
1475 FILE *fout = tw->fout;
1476 char str[200];
1477
1478 tw->ptr += fprintf(fout, "flyrecord%c", 0);
1479
1480 /* trace data */
1481 start = ALIGN(tw->ptr + 16, TRACE_PAGE_SIZE);
1482 tw->ptr += tputq(fout, start);
1483
1484 /* use a placeholder for the size */
1485 ret = push_len(tw, start, "flyrecord", 8);
1486 if (ret < 0)
1487 return -1;
1488 tw->ptr += ret;
1489
1490 snprintf(str, sizeof(str),
1491 "[local] global counter uptime perf mono mono_raw boot x86-tsc\n");
1492 len = strlen(str);
1493 tw->ptr += tputq(fout, len);
1494 tw->ptr += tputs(fout, str);
1495
Simon Glass7ac0a502023-01-15 14:15:55 -07001496 debug("trace text base %lx, map file %lx\n", text_base, text_offset);
1497
Simon Glass31fb49a2023-01-15 14:15:56 -07001498 ret = write_pages(tw, out_format, missing_countp, skip_countp);
Simon Glassdd8f19a2023-01-15 14:15:53 -07001499 if (ret < 0) {
1500 fprintf(stderr, "Cannot output pages\n");
1501 return -1;
1502 }
1503
1504 ret = pop_len(tw, "flyrecord");
1505 if (ret < 0) {
1506 fprintf(stderr, "Cannot finish flyrecord header\n");
1507 return -1;
1508 }
1509
1510 return 0;
1511}
1512
1513/**
1514 * make_ftrace() - Write out an ftrace file
1515 *
1516 * See here for format:
1517 *
1518 * https://github.com/rostedt/trace-cmd/blob/master/Documentation/trace-cmd/trace-cmd.dat.v7.5.txt
1519 *
1520 * @fout: Output file
Simon Glass31fb49a2023-01-15 14:15:56 -07001521 * @out_format: Output format to use
Simon Glassdd8f19a2023-01-15 14:15:53 -07001522 * Returns: 0 on success, -ve on error
1523 */
Simon Glass31fb49a2023-01-15 14:15:56 -07001524static int make_ftrace(FILE *fout, enum out_format_t out_format)
Simon Glassdd8f19a2023-01-15 14:15:53 -07001525{
1526 int missing_count, skip_count;
1527 struct twriter tws, *tw = &tws;
1528 int ret;
1529
1530 memset(tw, '\0', sizeof(*tw));
1531 abuf_init(&tw->str_buf);
1532 tw->fout = fout;
1533
1534 tw->ptr = 0;
1535 ret = output_headers(tw);
1536 if (ret < 0) {
1537 fprintf(stderr, "Cannot output headers\n");
1538 return -1;
1539 }
1540 /* number of event systems files */
1541 tw->ptr += tputl(fout, 0);
Simon Glass9c628922013-06-11 11:14:43 -07001542
Simon Glassdd8f19a2023-01-15 14:15:53 -07001543 ret = write_symbols(tw);
1544 if (ret < 0) {
1545 fprintf(stderr, "Cannot write symbols\n");
1546 return -1;
1547 }
1548
1549 ret = write_options(tw);
1550 if (ret < 0) {
1551 fprintf(stderr, "Cannot write options\n");
1552 return -1;
Simon Glass9c628922013-06-11 11:14:43 -07001553 }
Simon Glassdd8f19a2023-01-15 14:15:53 -07001554
Simon Glass31fb49a2023-01-15 14:15:56 -07001555 ret = write_flyrecord(tw, out_format, &missing_count, &skip_count);
Simon Glassdd8f19a2023-01-15 14:15:53 -07001556 if (ret < 0) {
1557 fprintf(stderr, "Cannot write flyrecord\n");
1558 return -1;
1559 }
1560
Simon Glass9c628922013-06-11 11:14:43 -07001561 info("ftrace: %d functions not found, %d excluded\n", missing_count,
1562 skip_count);
1563
1564 return 0;
1565}
1566
Simon Glass9e2afae2023-01-15 14:15:52 -07001567/**
Simon Glassd854ce42023-01-15 14:15:57 -07001568 * create_node() - Create a new node in the flamegraph tree
1569 *
1570 * @msg: Message to use for debugging if something goes wrong
1571 * Returns: Pointer to newly created node, or NULL on error
1572 */
1573static struct flame_node *create_node(const char *msg)
1574{
1575 struct flame_node *node;
1576
1577 node = calloc(1, sizeof(*node));
1578 if (!node) {
1579 fprintf(stderr, "Out of memory for %s\n", msg);
1580 return NULL;
1581 }
1582 INIT_LIST_HEAD(&node->child_head);
1583
1584 return node;
1585}
1586
1587/**
1588 * process_call(): Add a call to the flamegraph info
1589 *
1590 * For function calls, if this call stack has been seen before, this increments
1591 * the call count, creating a new node if needed.
1592 *
1593 * For function returns, it adds up the time spent in this call stack,
1594 * subtracting the time spent by child functions.
1595 *
1596 * @state: Current flamegraph state
1597 * @entry: true if this is a function entry, false if a function exit
1598 * @timestamp: Timestamp from the trace file (in microseconds)
1599 * @func: Function that was called/returned from
1600 *
1601 * Returns: 0 on success, -ve on error
1602 */
1603static int process_call(struct flame_state *state, bool entry, ulong timestamp,
1604 struct func_info *func)
1605{
1606 struct flame_node *node = state->node;
1607
1608 if (entry) {
1609 struct flame_node *child, *chd;
1610
1611 /* see if we have this as a child node already */
1612 child = NULL;
1613 list_for_each_entry(chd, &node->child_head, sibling_node) {
1614 if (chd->func == func) {
1615 child = chd;
1616 break;
1617 }
1618 }
1619 if (!child) {
1620 /* create a new node */
1621 child = create_node("child");
1622 if (!child)
1623 return -1;
1624 list_add_tail(&child->sibling_node, &node->child_head);
1625 child->func = func;
1626 child->parent = node;
1627 state->nodes++;
1628 }
1629 debug("entry %s: move from %s to %s\n", func->name,
1630 node->func ? node->func->name : "(root)",
1631 child->func->name);
1632 child->count++;
1633 node = child;
1634 } else if (node->parent) {
1635 debug("exit %s: move from %s to %s\n", func->name,
1636 node->func->name, node->parent->func ?
1637 node->parent->func->name : "(root)");
1638 node = node->parent;
1639 }
1640
1641 state->node = node;
1642
1643 return 0;
1644}
1645
1646/**
1647 * make_flame_tree() - Create a tree of stack traces
1648 *
1649 * Set up a tree, with the root node having the top-level functions as children
1650 * and the leaf nodes being leaf functions. Each node has a count of how many
1651 * times this function appears in the trace
1652 *
1653 * @treep: Returns the resulting flamegraph tree
1654 * Returns: 0 on success, -ve on error
1655 */
1656static int make_flame_tree(struct flame_node **treep)
1657{
1658 struct flame_state state;
1659 struct flame_node *tree;
1660 struct trace_call *call;
1661 int missing_count = 0;
1662 int i, depth;
1663
1664 /*
1665 * The first thing in the trace may not be the top-level function, so
1666 * set the initial depth so that no function goes below depth 0
1667 */
1668 depth = -calc_min_depth();
1669
1670 tree = create_node("tree");
1671 if (!tree)
1672 return -1;
1673 state.node = tree;
1674 state.nodes = 0;
1675
1676 for (i = 0, call = call_list; i < call_count; i++, call++) {
1677 bool entry = TRACE_CALL_TYPE(call) == FUNCF_ENTRY;
1678 ulong timestamp = call->flags & FUNCF_TIMESTAMP_MASK;
1679 struct func_info *func;
1680
1681 if (entry)
1682 depth++;
1683 else
1684 depth--;
1685
1686 func = find_func_by_offset(call->func);
1687 if (!func) {
1688 warn("Cannot find function at %lx\n",
1689 text_offset + call->func);
1690 missing_count++;
1691 continue;
1692 }
1693
1694 if (process_call(&state, entry, timestamp, func))
1695 return -1;
1696 }
1697 fprintf(stderr, "%d nodes\n", state.nodes);
1698 *treep = tree;
1699
1700 return 0;
1701}
1702
1703/**
1704 * output_tree() - Output a flamegraph tree
1705 *
1706 * Writes the tree out to a file in a format suitable for flamegraph.pl
1707 *
1708 * This works by maintaining a string shared across all recursive calls. The
1709 * function name for this node is added to the existing string, to make up the
1710 * full call-stack description. For example, on entry, @str might contain:
1711 *
1712 * "initf_bootstage;bootstage_mark_name"
1713 * ^ @base
1714 *
1715 * with @base pointing to the \0 at the end of the string. This function adds
1716 * a ';' following by the name of the current function, e.g. "timer_get_boot_us"
1717 * as well as the output value, to get the full line:
1718 *
1719 * initf_bootstage;bootstage_mark_name;timer_get_boot_us 123
1720 *
1721 * @fout: Output file
1722 * @node: Node to output (pass the whole tree at first)
1723 * @str: String to use to build the output line (e.g. 500 charas long)
1724 * @maxlen: Maximum length of string
1725 * @base: Current base position in the string
1726 * @treep: Returns the resulting flamegraph tree
1727 * Returns 0 if OK, -1 on error
1728 */
1729static int output_tree(FILE *fout, const struct flame_node *node,
1730 char *str, int maxlen, int base)
1731{
1732 const struct flame_node *child;
1733 int pos;
1734
1735 if (node->count)
1736 fprintf(fout, "%s %d\n", str, node->count);
1737
1738 pos = base;
1739 if (pos)
1740 str[pos++] = ';';
1741 list_for_each_entry(child, &node->child_head, sibling_node) {
1742 int len;
1743
1744 len = strlen(child->func->name);
1745 if (pos + len + 1 >= maxlen) {
1746 fprintf(stderr, "String too short (%d chars)\n",
1747 maxlen);
1748 return -1;
1749 }
1750 strcpy(str + pos, child->func->name);
1751 if (output_tree(fout, child, str, maxlen, pos + len))
1752 return -1;
1753 }
1754
1755 return 0;
1756}
1757
1758/**
1759 * make_flamegraph() - Write out a flame graph
1760 *
1761 * @fout: Output file
1762 * Returns 0 if OK, -1 on error
1763 */
1764static int make_flamegraph(FILE *fout)
1765{
1766 struct flame_node *tree;
1767 char str[500];
1768
1769 if (make_flame_tree(&tree))
1770 return -1;
1771
1772 *str = '\0';
1773 if (output_tree(fout, tree, str, sizeof(str), 0))
1774 return -1;
1775
1776 return 0;
1777}
1778
1779/**
Simon Glass9e2afae2023-01-15 14:15:52 -07001780 * prof_tool() - Performs requested action
1781 *
1782 * @argc: Number of arguments (used to obtain the command
1783 * @argv: List of arguments
1784 * @trace_fname: Filename of input file (trace data from U-Boot)
1785 * @map_fname: Filename of map file (System.map from U-Boot)
1786 * @trace_config_fname: Trace-configuration file, or NULL if none
1787 * @out_fname: Output filename
1788 */
Simon Glassed38aef2020-05-10 11:40:03 -06001789static int prof_tool(int argc, char *const argv[],
Simon Glass9e2afae2023-01-15 14:15:52 -07001790 const char *trace_fname, const char *map_fname,
Simon Glass31fb49a2023-01-15 14:15:56 -07001791 const char *trace_config_fname, const char *out_fname,
1792 enum out_format_t out_format)
Simon Glass9c628922013-06-11 11:14:43 -07001793{
1794 int err = 0;
1795
1796 if (read_map_file(map_fname))
1797 return -1;
Simon Glass9e2afae2023-01-15 14:15:52 -07001798 if (trace_fname && read_trace_file(trace_fname))
Simon Glass9c628922013-06-11 11:14:43 -07001799 return -1;
1800 if (trace_config_fname && read_trace_config_file(trace_config_fname))
1801 return -1;
1802
Simon Glass0974d002023-01-15 14:15:54 -07001803 check_trace_config();
Simon Glass9c628922013-06-11 11:14:43 -07001804
1805 for (; argc; argc--, argv++) {
1806 const char *cmd = *argv;
1807
Simon Glassdd8f19a2023-01-15 14:15:53 -07001808 if (!strcmp(cmd, "dump-ftrace")) {
1809 FILE *fout;
1810
Simon Glass31fb49a2023-01-15 14:15:56 -07001811 if (out_format != OUT_FMT_FUNCTION &&
1812 out_format != OUT_FMT_FUNCGRAPH)
1813 out_format = OUT_FMT_FUNCTION;
Simon Glassdd8f19a2023-01-15 14:15:53 -07001814 fout = fopen(out_fname, "w");
1815 if (!fout) {
1816 fprintf(stderr, "Cannot write file '%s'\n",
1817 out_fname);
1818 return -1;
1819 }
Simon Glass31fb49a2023-01-15 14:15:56 -07001820 err = make_ftrace(fout, out_format);
Simon Glassdd8f19a2023-01-15 14:15:53 -07001821 fclose(fout);
Simon Glassd854ce42023-01-15 14:15:57 -07001822 } else if (!strcmp(cmd, "dump-flamegraph")) {
1823 FILE *fout;
1824
1825 fout = fopen(out_fname, "w");
1826 if (!fout) {
1827 fprintf(stderr, "Cannot write file '%s'\n",
1828 out_fname);
1829 return -1;
1830 }
1831 err = make_flamegraph(fout);
1832 fclose(fout);
Simon Glassdd8f19a2023-01-15 14:15:53 -07001833 } else {
Simon Glass9c628922013-06-11 11:14:43 -07001834 warn("Unknown command '%s'\n", cmd);
Simon Glassdd8f19a2023-01-15 14:15:53 -07001835 }
Simon Glass9c628922013-06-11 11:14:43 -07001836 }
1837
1838 return err;
1839}
1840
1841int main(int argc, char *argv[])
1842{
Simon Glass31fb49a2023-01-15 14:15:56 -07001843 enum out_format_t out_format = OUT_FMT_DEFAULT;
Simon Glass9c628922013-06-11 11:14:43 -07001844 const char *map_fname = "System.map";
Simon Glassec86a632022-12-21 16:08:24 -07001845 const char *trace_fname = NULL;
1846 const char *config_fname = NULL;
Simon Glass9e2afae2023-01-15 14:15:52 -07001847 const char *out_fname = NULL;
Simon Glass9c628922013-06-11 11:14:43 -07001848 int opt;
1849
1850 verbose = 2;
Simon Glass31fb49a2023-01-15 14:15:56 -07001851 while ((opt = getopt(argc, argv, "c:f:m:o:t:v:")) != -1) {
Simon Glass9c628922013-06-11 11:14:43 -07001852 switch (opt) {
Simon Glassec86a632022-12-21 16:08:24 -07001853 case 'c':
1854 config_fname = optarg;
Simon Glass9c628922013-06-11 11:14:43 -07001855 break;
Simon Glass31fb49a2023-01-15 14:15:56 -07001856 case 'f':
1857 if (!strcmp("function", optarg)) {
1858 out_format = OUT_FMT_FUNCTION;
1859 } else if (!strcmp("funcgraph", optarg)) {
1860 out_format = OUT_FMT_FUNCGRAPH;
1861 } else {
1862 fprintf(stderr,
1863 "Invalid format: use function, funcgraph, calls, timing\n");
1864 exit(1);
1865 }
1866 break;
Simon Glassec86a632022-12-21 16:08:24 -07001867 case 'm':
1868 map_fname = optarg;
Simon Glass9c628922013-06-11 11:14:43 -07001869 break;
Simon Glass9e2afae2023-01-15 14:15:52 -07001870 case 'o':
1871 out_fname = optarg;
1872 break;
Simon Glass9c628922013-06-11 11:14:43 -07001873 case 't':
Simon Glassec86a632022-12-21 16:08:24 -07001874 trace_fname = optarg;
Simon Glass9c628922013-06-11 11:14:43 -07001875 break;
Simon Glass9c628922013-06-11 11:14:43 -07001876 case 'v':
1877 verbose = atoi(optarg);
1878 break;
Simon Glass9c628922013-06-11 11:14:43 -07001879 default:
1880 usage();
1881 }
1882 }
1883 argc -= optind; argv += optind;
1884 if (argc < 1)
1885 usage();
1886
Simon Glass9e2afae2023-01-15 14:15:52 -07001887 if (!out_fname || !map_fname || !trace_fname) {
1888 fprintf(stderr,
1889 "Must provide trace data, System.map file and output file\n");
1890 usage();
1891 }
1892
Simon Glass9c628922013-06-11 11:14:43 -07001893 debug("Debug enabled\n");
Simon Glass9e2afae2023-01-15 14:15:52 -07001894 return prof_tool(argc, argv, trace_fname, map_fname, config_fname,
Simon Glass31fb49a2023-01-15 14:15:56 -07001895 out_fname, out_format);
Simon Glass9c628922013-06-11 11:14:43 -07001896}