32 #include <sys/cdefs.h>
35 #include <sys/param.h>
36 #include <sys/systm.h>
37 #include <sys/sysproto.h>
38 #include <sys/kernel.h>
40 #include <sys/mutex.h>
42 #include <sys/resourcevar.h>
43 #include <sys/sysctl.h>
45 #include <machine/cpu.h>
48 #include <sys/malloc.h>
52 static MALLOC_DEFINE(M_GPROF,
"gprof",
"kernel profiling buffer");
54 static void kmstartup(
void *);
55 SYSINIT(kmem, SI_SUB_KPROF, SI_ORDER_FIRST, kmstartup, NULL);
57 struct gmonparam _gmonparam = { GMON_PROF_OFF };
61 nullfunc_loop_profiled()
65 for (i = 0; i < CALIB_SCALE; i++)
69 #define nullfunc_loop_profiled_end nullfunc_profiled
84 kmupetext(uintfptr_t nhighpc)
87 struct gmonparam *p = &_gmonparam;
91 bcopy(p, &np,
sizeof(*p));
92 np.highpc = ROUNDUP(nhighpc, HISTFRACTION *
sizeof(HISTCOUNTER));
93 if (np.highpc <= p->highpc)
95 np.textsize = np.highpc - p->lowpc;
96 np.kcountsize = np.textsize / HISTFRACTION;
97 np.hashfraction = HASHFRACTION;
98 np.fromssize = np.textsize / HASHFRACTION;
99 np.tolimit = np.textsize * ARCDENSITY / 100;
100 if (np.tolimit < MINARCS)
101 np.tolimit = MINARCS;
102 else if (np.tolimit > MAXARCS)
103 np.tolimit = MAXARCS;
104 np.tossize = np.tolimit *
sizeof(
struct tostruct);
105 cp =
malloc(np.kcountsize + np.fromssize + np.tossize,
110 if (np.highpc <= p->highpc) {
114 np.tos = (
struct tostruct *)cp;
116 np.kcount = (HISTCOUNTER *)cp;
118 np.froms = (u_short *)cp;
121 np.cputime_count = &KCOUNT(&np, PC_TO_I(&np, cputime));
122 np.mcount_count = &KCOUNT(&np, PC_TO_I(&np, mcount));
123 np.mexitcount_count = &KCOUNT(&np, PC_TO_I(&np, mexitcount));
126 bcopy(p->tos, np.tos, p->tossize);
127 bzero((
char *)np.tos + p->tossize, np.tossize - p->tossize);
128 bcopy(p->kcount, np.kcount, p->kcountsize);
129 bzero((
char *)np.kcount + p->kcountsize, np.kcountsize -
131 bcopy(p->froms, np.froms, p->fromssize);
132 bzero((
char *)np.froms + p->fromssize, np.fromssize - p->fromssize);
134 bcopy(&np, p,
sizeof(*p));
144 struct gmonparam *p = &_gmonparam;
146 int cputime_overhead;
150 int mexitcount_overhead;
151 int nullfunc_loop_overhead;
152 int nullfunc_loop_profiled_time;
160 p->lowpc = ROUNDDOWN((u_long)btext, HISTFRACTION *
sizeof(HISTCOUNTER));
161 p->highpc = ROUNDUP((u_long)etext, HISTFRACTION *
sizeof(HISTCOUNTER));
162 p->textsize = p->highpc - p->lowpc;
163 printf(
"Profiling kernel, textsize=%lu [%jx..%jx]\n",
164 p->textsize, (uintmax_t)p->lowpc, (uintmax_t)p->highpc);
165 p->kcountsize = p->textsize / HISTFRACTION;
166 p->hashfraction = HASHFRACTION;
167 p->fromssize = p->textsize / HASHFRACTION;
168 p->tolimit = p->textsize * ARCDENSITY / 100;
169 if (p->tolimit < MINARCS)
170 p->tolimit = MINARCS;
171 else if (p->tolimit > MAXARCS)
172 p->tolimit = MAXARCS;
173 p->tossize = p->tolimit *
sizeof(
struct tostruct);
174 cp = (
char *)
malloc(p->kcountsize + p->fromssize + p->tossize,
175 M_GPROF, M_WAITOK | M_ZERO);
176 p->tos = (
struct tostruct *)cp;
178 p->kcount = (HISTCOUNTER *)cp;
180 p->froms = (u_short *)cp;
181 p->histcounter_type = FUNCTION_ALIGNMENT / HISTFRACTION * NBBY;
185 p->histcounter_type = -p->histcounter_type;
188 p->cputime_count = &KCOUNT(p, PC_TO_I(p, cputime));
189 p->mcount_count = &KCOUNT(p, PC_TO_I(p, mcount));
190 p->mexitcount_count = &KCOUNT(p, PC_TO_I(p, mexitcount));
202 cputime_overhead = 0;
204 for (i = 0; i < CALIB_SCALE; i++)
205 cputime_overhead += cputime();
210 empty_loop_time = cputime();
212 nullfunc_loop_profiled();
219 p->state = GMON_PROF_HIRES;
222 nullfunc_loop_profiled();
225 for (i = 0; i < CALIB_SCALE; i++)
227 mcount_overhead = KCOUNT(p, PC_TO_I(p,
sys_profil));
230 for (i = 0; i < CALIB_SCALE; i++)
231 MEXITCOUNT_OVERHEAD();
232 MEXITCOUNT_OVERHEAD_GETLABEL(tmp_addr);
233 mexitcount_overhead = KCOUNT(p, PC_TO_I(p, tmp_addr));
235 p->state = GMON_PROF_OFF;
240 nullfunc_loop_profiled_time = 0;
241 for (tmp_addr = (uintfptr_t)nullfunc_loop_profiled;
242 tmp_addr < (uintfptr_t)nullfunc_loop_profiled_end;
243 tmp_addr += HISTFRACTION *
sizeof(HISTCOUNTER))
244 nullfunc_loop_profiled_time += KCOUNT(p, PC_TO_I(p, tmp_addr));
245 #define CALIB_DOSCALE(count) (((count) + CALIB_SCALE / 3) / CALIB_SCALE)
246 #define c2n(count, freq) ((int)((count) * 1000000000LL / freq))
247 printf(
"cputime %d, empty_loop %d, nullfunc_loop_profiled %d, mcount %d, mexitcount %d\n",
248 CALIB_DOSCALE(c2n(cputime_overhead, p->profrate)),
249 CALIB_DOSCALE(c2n(empty_loop_time, p->profrate)),
250 CALIB_DOSCALE(c2n(nullfunc_loop_profiled_time, p->profrate)),
251 CALIB_DOSCALE(c2n(mcount_overhead, p->profrate)),
252 CALIB_DOSCALE(c2n(mexitcount_overhead, p->profrate)));
253 cputime_overhead -= empty_loop_time;
254 mcount_overhead -= empty_loop_time;
255 mexitcount_overhead -= empty_loop_time;
286 p->cputime_overhead = CALIB_DOSCALE(cputime_overhead);
287 p->mcount_overhead = CALIB_DOSCALE(mcount_overhead - cputime_overhead);
288 p->mexitcount_overhead = CALIB_DOSCALE(mexitcount_overhead
290 nullfunc_loop_overhead = nullfunc_loop_profiled_time - empty_loop_time;
291 p->mexitcount_post_overhead = CALIB_DOSCALE((mcount_overhead
292 - nullfunc_loop_overhead)
294 p->mexitcount_pre_overhead = p->mexitcount_overhead
295 + p->cputime_overhead
296 - p->mexitcount_post_overhead;
297 p->mcount_pre_overhead = CALIB_DOSCALE(nullfunc_loop_overhead)
298 - p->mexitcount_post_overhead;
299 p->mcount_post_overhead = p->mcount_overhead
300 + p->cputime_overhead
301 - p->mcount_pre_overhead;
303 "Profiling overheads: mcount: %d+%d, %d+%d; mexitcount: %d+%d, %d+%d nsec\n",
304 c2n(p->cputime_overhead, p->profrate),
305 c2n(p->mcount_overhead, p->profrate),
306 c2n(p->mcount_pre_overhead, p->profrate),
307 c2n(p->mcount_post_overhead, p->profrate),
308 c2n(p->cputime_overhead, p->profrate),
309 c2n(p->mexitcount_overhead, p->profrate),
310 c2n(p->mexitcount_pre_overhead, p->profrate),
311 c2n(p->mexitcount_post_overhead, p->profrate));
313 "Profiling overheads: mcount: %d+%d, %d+%d; mexitcount: %d+%d, %d+%d cycles\n",
314 p->cputime_overhead, p->mcount_overhead,
315 p->mcount_pre_overhead, p->mcount_post_overhead,
316 p->cputime_overhead, p->mexitcount_overhead,
317 p->mexitcount_pre_overhead, p->mexitcount_post_overhead);
325 sysctl_kern_prof(SYSCTL_HANDLER_ARGS)
327 int *
name = (
int *) arg1;
328 u_int namelen = arg2;
329 struct gmonparam *gp = &_gmonparam;
345 if (state == GMON_PROF_OFF) {
351 }
else if (state == GMON_PROF_ON) {
352 gp->state = GMON_PROF_OFF;
360 }
else if (state == GMON_PROF_HIRES) {
361 gp->state = GMON_PROF_OFF;
368 }
else if (state != gp->state)
373 gp->kcount, gp->kcountsize, req));
376 gp->froms, gp->fromssize, req));
379 gp->tos, gp->tossize, req));
380 case GPROF_GMONPARAM:
388 static SYSCTL_NODE(_kern, KERN_PROF, prof, CTLFLAG_RW, sysctl_kern_prof,
"");
397 #ifndef _SYS_SYSPROTO_H_
412 if (uap->
scale > (1 << 16))
416 if (uap->
scale == 0) {
423 upp = &td->td_proc->p_stats->p_prof;
425 upp->pr_off = uap->
offset;
426 upp->pr_scale = uap->
scale;
428 upp->pr_size = uap->
size;
441 #define PC_TO_INDEX(pc, prof) \
442 ((int)(((u_quad_t)((pc) - (prof)->pr_off) * \
443 (u_quad_t)((prof)->pr_scale)) >> 16) & ~1)
468 prof = &td->td_proc->p_stats->p_prof;
469 PROC_SLOCK(td->td_proc);
470 if (pc < prof->pr_off ||
472 PROC_SUNLOCK(td->td_proc);
476 addr = prof->pr_base + i;
477 PROC_SUNLOCK(td->td_proc);
478 if ((v = fuswintr(addr)) == -1 || suswintr(addr, v + ticks) == -1) {
479 td->td_profil_addr = pc;
480 td->td_profil_ticks =
ticks;
481 td->td_pflags |= TDP_OWEUPC;
483 td->td_flags |= TDF_ASTPENDING;
495 struct proc *p = td->td_proc;
506 if (!(p->p_flag & P_PROFIL)) {
511 prof = &p->p_stats->p_prof;
513 if (pc < prof->pr_off ||
519 addr = prof->pr_base + i;
522 if (copyin(addr, &v,
sizeof(v)) == 0) {
524 if (copyout(&v, addr,
sizeof(v)) == 0) {
533 if (--p->p_profthreads == 0) {
534 if (p->p_flag & P_STOPPROF) {
535 wakeup(&p->p_profthreads);
544 #if (defined(__amd64__) || defined(__i386__)) && \
545 defined(__GNUCLIKE_CTOR_SECTION_HANDLING)
561 typedef void (*ctor_t)(void);
562 extern ctor_t _start_ctors, _stop_ctors;
565 tcov_init(
void *foo __unused)
569 for (p = &_start_ctors; p < &_stop_ctors; p++) {
575 SYSINIT(tcov_init, SI_SUB_KPROF, SI_ORDER_SECOND, tcov_init, NULL);
582 void __bb_fork_func(
void);
static SYSCTL_NODE(_debug, OID_AUTO, cpufreq, CTLFLAG_RD, NULL,"cpufreq debugging")
void * malloc(unsigned long size, struct malloc_type *mtp, int flags)
SYSINIT(placeholder, SI_SUB_DUMMY, SI_ORDER_ANY, NULL, NULL)
void startprofclock(struct proc *p)
static MALLOC_DEFINE(M_GZIP,"gzip_trees","Gzip trees")
#define PC_TO_INDEX(pc, prof)
int sysctl_handle_opaque(SYSCTL_HANDLER_ARGS)
void addupc_intr(struct thread *td, uintfptr_t pc, u_int ticks)
void stopprofclock(struct proc *p)
int sysctl_handle_int(SYSCTL_HANDLER_ARGS)
int sys_profil(struct thread *td, struct profil_args *uap)
void free(void *addr, struct malloc_type *mtp)
int printf(const char *fmt,...)
void addupc_task(struct thread *td, uintfptr_t pc, u_int ticks)
void critical_enter(void)