#include <poll.h>
#include <regex.h>
-#include <urcu.h>
+#include <urcu-bp.h>
-#include "marker.h"
+#include <ust/marker.h>
#include "tracer.h"
-#include "localerr.h"
+#include "usterr.h"
#include "ustcomm.h"
#include "relay.h" /* FIXME: remove */
#include "marker-control.h"
char consumer_stack[10000];
+/* This should only be accessed by the constructor, before the creation
+ * of the listener, and then only by the listener.
+ */
+s64 pidunique = -1LL;
+
struct list_head blocked_consumers = LIST_HEAD_INIT(blocked_consumers);
static struct ustcomm_app ustcomm_app;
/* volatile because shared between the listener and the main thread */
volatile sig_atomic_t buffers_to_export = 0;
-//struct listener_arg {
-// int pipe_fd;
-//};
-
struct trctl_msg {
/* size: the size of all the fields except size itself */
uint32_t size;
struct list_head list;
};
+static long long make_pidunique(void)
+{
+ s64 retval;
+ struct timeval tv;
+
+ gettimeofday(&tv, NULL);
+
+ retval = tv.tv_sec;
+ retval <<= 32;
+ retval |= tv.tv_usec;
+
+ return retval;
+}
+
static void print_markers(FILE *fp)
{
struct marker_iter iter;
marker_iter_start(&iter);
while(iter.marker) {
- fprintf(fp, "marker: %s_%s %d \"%s\"\n", iter.marker->channel, iter.marker->name, (int)imv_read(iter.marker->state), iter.marker->format);
+ fprintf(fp, "marker: %s/%s %d \"%s\" %p\n", iter.marker->channel, iter.marker->name, (int)imv_read(iter.marker->state), iter.marker->format, iter.marker->location);
marker_iter_next(&iter);
}
unlock_markers();
WARN("could not disable marker; channel=%s, name=%s", channel_name, marker_name);
}
}
+ else if(nth_token_is(recvbuf, "get_pidunique", 0) == 1) {
+ char *reply;
+
+ asprintf(&reply, "%lld", pidunique);
+
+ result = ustcomm_send_reply(&ustcomm_app.server, reply, &src);
+ if(result) {
+ ERR("listener: get_pidunique: ustcomm_send_reply failed");
+ goto next_cmd;
+ }
+
+ free(reply);
+ }
// else if(nth_token_is(recvbuf, "get_notifications", 0) == 1) {
// struct ltt_trace_struct *trace;
// char trace_name[] = "auto";
}
}
-int have_listener = 0;
+volatile sig_atomic_t have_listener = 0;
void create_listener(void)
{
#ifdef USE_CLONE
static char listener_stack[16384];
+ int result;
#else
pthread_t thread;
#endif
- if(have_listener)
+ if(have_listener) {
+ WARN("not creating listener because we already had one");
return;
+ }
#ifdef USE_CLONE
- result = clone(listener_main, listener_stack+sizeof(listener_stack)-1, CLONE_FS | CLONE_FILES | CLONE_VM | CLONE_SIGHAND | CLONE_THREAD, NULL);
+ result = clone((int (*)(void *)) listener_main, listener_stack+sizeof(listener_stack)-1, CLONE_FS | CLONE_FILES | CLONE_VM | CLONE_SIGHAND | CLONE_THREAD, NULL);
if(result == -1) {
perror("clone");
return;
have_listener = 1;
}
-/* The signal handler itself. Signals must be setup so there cannot be
- nested signals. */
-
-void sighandler(int sig)
-{
- static char have_listener = 0;
- DBG("sighandler");
-
- if(!have_listener) {
- create_listener();
- have_listener = 1;
- }
-}
-
-/* Called by the app signal handler to chain it to us. */
-
-void chain_signal(void)
-{
- sighandler(USTSIGNAL);
-}
-
static int init_socket(void)
{
return ustcomm_init_app(getpid(), &ustcomm_app);
}
-/* FIXME: reenable this to delete socket file. */
-
-#if 0
-static void destroy_socket(void)
-{
- int result;
-
- if(mysocketfile[0] == '\0')
- return;
-
- result = unlink(mysocketfile);
- if(result == -1) {
- PERROR("unlink");
- }
-}
-#endif
-
-static int init_signal_handler(void)
-{
- /* Attempt to handler SIGIO. If the main program wants to
- * handle it, fine, it'll override us. They it'll have to
- * use the chaining function.
- */
-
- int result;
- struct sigaction act;
-
- result = sigemptyset(&act.sa_mask);
- if(result == -1) {
- PERROR("sigemptyset");
- return -1;
- }
-
- act.sa_handler = sighandler;
- act.sa_flags = SA_RESTART;
-
- /* Only defer ourselves. Also, try to restart interrupted
- * syscalls to disturb the traced program as little as possible.
- */
- result = sigaction(SIGIO, &act, NULL);
- if(result == -1) {
- PERROR("sigaction");
- return -1;
- }
-
- return 0;
-}
-
#define AUTOPROBE_DISABLED 0
#define AUTOPROBE_ENABLE_ALL 1
#define AUTOPROBE_ENABLE_REGEX 2
if(result && result != -EEXIST)
ERR("ltt_marker_connect (marker = %s/%s, errno = %d)", m->channel, m->name, -result);
- DBG("auto connected marker %s %s to probe default", m->channel, m->name);
+ DBG("auto connected marker %s (addr: %p) %s to probe default", m->channel, m, m->name);
}
-static void __attribute__((constructor(1000))) init()
+static void __attribute__((constructor)) init()
{
int result;
char* autoprobe_val = NULL;
+ /* Assign the pidunique, to be able to differentiate the processes with same
+ * pid, (before and after an exec).
+ */
+ pidunique = make_pidunique();
+
/* Initialize RCU in case the constructor order is not good. */
urcu_init();
ERR("init_socket error");
return;
}
- result = init_signal_handler();
- if(result == -1) {
- ERR("init_signal_handler error");
- return;
- }
+
+ create_listener();
autoprobe_val = getenv("UST_AUTOPROBE");
if(autoprobe_val) {
return;
}
- inform_consumer_daemon(trace_name);
-
result = ltt_trace_start(trace_name);
if(result < 0) {
ERR("ltt_trace_start failed");
return;
}
+
+ /* Do this after the trace is started in order to avoid creating confusion
+ * if the trace fails to start. */
+ inform_consumer_daemon(trace_name);
}
}
/* This is only called if we terminate normally, not with an unhandled signal,
- * so we cannot rely on it. */
+ * so we cannot rely on it. However, for now, LTTV requires that the header of
+ * the last sub-buffer contain a valid end time for the trace. This is done
+ * automatically only when the trace is properly stopped.
+ *
+ * If the traced program crashed, it is always possible to manually add the
+ * right value in the header, or to open the trace in text mode.
+ *
+ * FIXME: Fix LTTV so it doesn't need this.
+ */
-/* This destructor probably isn't needed, because ustd can do crash recovery. */
-#if 0
-static void __attribute__((destructor)) fini()
+static void destroy_traces(void)
{
-// int result;
+ int result;
/* if trace running, finish it */
-// DBG("destructor stopping traces");
+ DBG("destructor stopping traces");
-// result = ltt_trace_stop("auto");
-// if(result == -1) {
-// ERR("ltt_trace_stop error");
-// }
-//
-// result = ltt_trace_destroy("auto");
-// if(result == -1) {
-// ERR("ltt_trace_destroy error");
-// }
-//
-// destroy_socket();
+ result = ltt_trace_stop("auto");
+ if(result == -1) {
+ ERR("ltt_trace_stop error");
+ }
+
+ result = ltt_trace_destroy("auto");
+ if(result == -1) {
+ ERR("ltt_trace_destroy error");
+ }
}
-#endif
static int trace_recording(void)
{
}
DBG("Finally dying...");
}
+
+ destroy_traces();
+
+ ustcomm_fini_app(&ustcomm_app);
+}
+
+void ust_potential_exec(void)
+{
+ trace_mark(ust, potential_exec, MARK_NOARGS);
+
+ DBG("test");
+
+ keepalive();
}
/* Notify ust that there was a fork. This needs to be called inside
void ust_fork(void)
{
+ struct blocked_consumer *bc;
+ struct blocked_consumer *deletable_bc = NULL;
+ int result;
+
DBG("ust: forking");
ltt_trace_stop("auto");
ltt_trace_destroy("auto");
- ltt_trace_alloc("auto");
- ltt_trace_start("auto");
- init_socket();
+ /* Delete all active connections */
+ ustcomm_close_all_connections(&ustcomm_app.server);
+
+ /* Delete all blocked consumers */
+ list_for_each_entry(bc, &blocked_consumers, list) {
+ close(bc->fd_producer);
+ close(bc->fd_consumer);
+ free(deletable_bc);
+ deletable_bc = bc;
+ list_del(&bc->list);
+ }
+
have_listener = 0;
create_listener();
+ init_socket();
+ ltt_trace_setup("auto");
+ result = ltt_trace_set_type("auto", "ustrelay");
+ if(result < 0) {
+ ERR("ltt_trace_set_type failed");
+ return;
+ }
+
+ ltt_trace_alloc("auto");
+ ltt_trace_start("auto");
inform_consumer_daemon("auto");
}