1cbe5a9868
* Handle the different ioctl format.
320 lines
8.1 KiB
C
320 lines
8.1 KiB
C
/*
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* CDDL HEADER START
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*
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* The contents of this file are subject to the terms of the
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* Common Development and Distribution License, Version 1.0 only
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* (the "License"). You may not use this file except in compliance
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* with the License.
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*
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* You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
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* or http://www.opensolaris.org/os/licensing.
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* See the License for the specific language governing permissions
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* and limitations under the License.
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*
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* When distributing Covered Code, include this CDDL HEADER in each
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* file and include the License file at usr/src/OPENSOLARIS.LICENSE.
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* If applicable, add the following below this CDDL HEADER, with the
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* fields enclosed by brackets "[]" replaced with your own identifying
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* information: Portions Copyright [yyyy] [name of copyright owner]
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*
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* CDDL HEADER END
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*/
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/*
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* Copyright 2006 Sun Microsystems, Inc. All rights reserved.
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* Use is subject to license terms.
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*/
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#pragma ident "%Z%%M% %I% %E% SMI"
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#include <dt_impl.h>
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#include <stddef.h>
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#include <errno.h>
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#include <assert.h>
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#include <time.h>
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static const struct {
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int dtslt_option;
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size_t dtslt_offs;
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} _dtrace_sleeptab[] = {
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{ DTRACEOPT_STATUSRATE, offsetof(dtrace_hdl_t, dt_laststatus) },
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{ DTRACEOPT_AGGRATE, offsetof(dtrace_hdl_t, dt_lastagg) },
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{ DTRACEOPT_SWITCHRATE, offsetof(dtrace_hdl_t, dt_lastswitch) },
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{ DTRACEOPT_MAX, 0 }
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};
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void
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dtrace_sleep(dtrace_hdl_t *dtp)
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{
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dt_proc_hash_t *dph = dtp->dt_procs;
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dtrace_optval_t policy = dtp->dt_options[DTRACEOPT_BUFPOLICY];
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dt_proc_notify_t *dprn;
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hrtime_t earliest = INT64_MAX;
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struct timespec tv;
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hrtime_t now;
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int i;
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for (i = 0; _dtrace_sleeptab[i].dtslt_option < DTRACEOPT_MAX; i++) {
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uintptr_t a = (uintptr_t)dtp + _dtrace_sleeptab[i].dtslt_offs;
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int opt = _dtrace_sleeptab[i].dtslt_option;
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dtrace_optval_t interval = dtp->dt_options[opt];
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/*
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* If the buffering policy is set to anything other than
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* "switch", we ignore the aggrate and switchrate -- they're
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* meaningless.
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*/
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if (policy != DTRACEOPT_BUFPOLICY_SWITCH &&
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_dtrace_sleeptab[i].dtslt_option != DTRACEOPT_STATUSRATE)
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continue;
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if (*((hrtime_t *)a) + interval < earliest)
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earliest = *((hrtime_t *)a) + interval;
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}
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(void) pthread_mutex_lock(&dph->dph_lock);
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now = gethrtime();
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if (earliest < now) {
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(void) pthread_mutex_unlock(&dph->dph_lock);
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return; /* sleep duration has already past */
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}
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#if defined(sun)
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tv.tv_sec = (earliest - now) / NANOSEC;
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tv.tv_nsec = (earliest - now) % NANOSEC;
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/*
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* Wait for either 'tv' nanoseconds to pass or to receive notification
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* that a process is in an interesting state. Regardless of why we
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* awaken, iterate over any pending notifications and process them.
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*/
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(void) pthread_cond_reltimedwait_np(&dph->dph_cv, &dph->dph_lock, &tv);
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#else
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earliest -= now;
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clock_gettime(CLOCK_REALTIME,&tv);
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tv.tv_sec += earliest / NANOSEC;
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tv.tv_nsec += earliest % NANOSEC;
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while (tv.tv_nsec > NANOSEC) {
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tv.tv_sec += 1;
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tv.tv_nsec -= NANOSEC;
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}
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/*
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* Wait for either 'tv' nanoseconds to pass or to receive notification
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* that a process is in an interesting state. Regardless of why we
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* awaken, iterate over any pending notifications and process them.
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*/
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(void) pthread_cond_timedwait(&dph->dph_cv, &dph->dph_lock, &tv);
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#endif
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while ((dprn = dph->dph_notify) != NULL) {
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if (dtp->dt_prochdlr != NULL) {
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char *err = dprn->dprn_errmsg;
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if (*err == '\0')
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err = NULL;
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dtp->dt_prochdlr(dprn->dprn_dpr->dpr_proc, err,
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dtp->dt_procarg);
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}
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dph->dph_notify = dprn->dprn_next;
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dt_free(dtp, dprn);
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}
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(void) pthread_mutex_unlock(&dph->dph_lock);
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}
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int
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dtrace_status(dtrace_hdl_t *dtp)
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{
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int gen = dtp->dt_statusgen;
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dtrace_optval_t interval = dtp->dt_options[DTRACEOPT_STATUSRATE];
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hrtime_t now = gethrtime();
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if (!dtp->dt_active)
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return (DTRACE_STATUS_NONE);
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if (dtp->dt_stopped)
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return (DTRACE_STATUS_STOPPED);
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if (dtp->dt_laststatus != 0) {
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if (now - dtp->dt_laststatus < interval)
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return (DTRACE_STATUS_NONE);
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dtp->dt_laststatus += interval;
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} else {
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dtp->dt_laststatus = now;
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}
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if (dt_ioctl(dtp, DTRACEIOC_STATUS, &dtp->dt_status[gen]) == -1)
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return (dt_set_errno(dtp, errno));
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dtp->dt_statusgen ^= 1;
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if (dt_handle_status(dtp, &dtp->dt_status[dtp->dt_statusgen],
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&dtp->dt_status[gen]) == -1)
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return (-1);
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if (dtp->dt_status[gen].dtst_exiting) {
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if (!dtp->dt_stopped)
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(void) dtrace_stop(dtp);
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return (DTRACE_STATUS_EXITED);
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}
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if (dtp->dt_status[gen].dtst_filled == 0)
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return (DTRACE_STATUS_OKAY);
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if (dtp->dt_options[DTRACEOPT_BUFPOLICY] != DTRACEOPT_BUFPOLICY_FILL)
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return (DTRACE_STATUS_OKAY);
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if (!dtp->dt_stopped) {
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if (dtrace_stop(dtp) == -1)
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return (-1);
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}
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return (DTRACE_STATUS_FILLED);
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}
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int
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dtrace_go(dtrace_hdl_t *dtp)
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{
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dtrace_enable_io_t args;
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void *dof;
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int err;
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if (dtp->dt_active)
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return (dt_set_errno(dtp, EINVAL));
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/*
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* If a dtrace:::ERROR program and callback are registered, enable the
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* program before we start tracing. If this fails for a vector open
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* with ENOTTY, we permit dtrace_go() to succeed so that vector clients
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* such as mdb's dtrace module can execute the rest of dtrace_go() even
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* though they do not provide support for the DTRACEIOC_ENABLE ioctl.
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*/
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if (dtp->dt_errprog != NULL &&
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dtrace_program_exec(dtp, dtp->dt_errprog, NULL) == -1 && (
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dtp->dt_errno != ENOTTY || dtp->dt_vector == NULL))
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return (-1); /* dt_errno has been set for us */
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if ((dof = dtrace_getopt_dof(dtp)) == NULL)
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return (-1); /* dt_errno has been set for us */
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args.dof = dof;
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args.n_matched = 0;
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err = dt_ioctl(dtp, DTRACEIOC_ENABLE, &args);
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dtrace_dof_destroy(dtp, dof);
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if (err == -1 && (errno != ENOTTY || dtp->dt_vector == NULL))
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return (dt_set_errno(dtp, errno));
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if (dt_ioctl(dtp, DTRACEIOC_GO, &dtp->dt_beganon) == -1) {
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if (errno == EACCES)
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return (dt_set_errno(dtp, EDT_DESTRUCTIVE));
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if (errno == EALREADY)
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return (dt_set_errno(dtp, EDT_ISANON));
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if (errno == ENOENT)
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return (dt_set_errno(dtp, EDT_NOANON));
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if (errno == E2BIG)
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return (dt_set_errno(dtp, EDT_ENDTOOBIG));
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if (errno == ENOSPC)
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return (dt_set_errno(dtp, EDT_BUFTOOSMALL));
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return (dt_set_errno(dtp, errno));
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}
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dtp->dt_active = 1;
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if (dt_options_load(dtp) == -1)
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return (dt_set_errno(dtp, errno));
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return (dt_aggregate_go(dtp));
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}
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int
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dtrace_stop(dtrace_hdl_t *dtp)
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{
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int gen = dtp->dt_statusgen;
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if (dtp->dt_stopped)
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return (0);
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if (dt_ioctl(dtp, DTRACEIOC_STOP, &dtp->dt_endedon) == -1)
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return (dt_set_errno(dtp, errno));
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dtp->dt_stopped = 1;
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/*
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* Now that we're stopped, we're going to get status one final time.
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*/
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if (dt_ioctl(dtp, DTRACEIOC_STATUS, &dtp->dt_status[gen]) == -1)
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return (dt_set_errno(dtp, errno));
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if (dt_handle_status(dtp, &dtp->dt_status[gen ^ 1],
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&dtp->dt_status[gen]) == -1)
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return (-1);
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return (0);
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}
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dtrace_workstatus_t
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dtrace_work(dtrace_hdl_t *dtp, FILE *fp,
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dtrace_consume_probe_f *pfunc, dtrace_consume_rec_f *rfunc, void *arg)
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{
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int status = dtrace_status(dtp);
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dtrace_optval_t policy = dtp->dt_options[DTRACEOPT_BUFPOLICY];
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dtrace_workstatus_t rval;
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switch (status) {
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case DTRACE_STATUS_EXITED:
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case DTRACE_STATUS_FILLED:
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case DTRACE_STATUS_STOPPED:
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/*
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* Tracing is stopped. We now want to force dtrace_consume()
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* and dtrace_aggregate_snap() to proceed, regardless of
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* switchrate and aggrate. We do this by clearing the times.
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*/
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dtp->dt_lastswitch = 0;
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dtp->dt_lastagg = 0;
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rval = DTRACE_WORKSTATUS_DONE;
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break;
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case DTRACE_STATUS_NONE:
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case DTRACE_STATUS_OKAY:
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rval = DTRACE_WORKSTATUS_OKAY;
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break;
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case -1:
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return (DTRACE_WORKSTATUS_ERROR);
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}
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if ((status == DTRACE_STATUS_NONE || status == DTRACE_STATUS_OKAY) &&
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policy != DTRACEOPT_BUFPOLICY_SWITCH) {
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/*
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* There either isn't any status or things are fine -- and
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* this is a "ring" or "fill" buffer. We don't want to consume
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* any of the trace data or snapshot the aggregations; we just
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* return.
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*/
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assert(rval == DTRACE_WORKSTATUS_OKAY);
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return (rval);
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}
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if (dtrace_aggregate_snap(dtp) == -1)
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return (DTRACE_WORKSTATUS_ERROR);
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if (dtrace_consume(dtp, fp, pfunc, rfunc, arg) == -1)
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return (DTRACE_WORKSTATUS_ERROR);
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return (rval);
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}
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