* 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
*/
-#define _GNU_SOURCE
+#define _LGPL_SOURCE
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <unistd.h>
+#include <lttng/event.h>
+#include <lttng/lttng-error.h>
+#include <lttng/userspace-probe.h>
+#include <lttng/userspace-probe-internal.h>
+
#include <common/common.h>
#include <common/defaults.h>
+#include <common/trace-chunk.h>
#include "consumer.h"
#include "trace-kernel.h"
+#include "lttng-sessiond.h"
+#include "notification-thread-commands.h"
/*
* Find the channel name for the given kernel session.
return NULL;
}
+/*
+ * Find the event for the given channel.
+ */
+struct ltt_kernel_event *trace_kernel_find_event(
+ char *name, struct ltt_kernel_channel *channel,
+ enum lttng_event_type type,
+ struct lttng_filter_bytecode *filter)
+{
+ struct ltt_kernel_event *ev;
+ int found = 0;
+
+ assert(name);
+ assert(channel);
+
+ cds_list_for_each_entry(ev, &channel->events_list.head, list) {
+ if (type != LTTNG_EVENT_ALL && ev->type != type) {
+ continue;
+ }
+ if (strcmp(name, ev->event->name)) {
+ continue;
+ }
+ if ((ev->filter && !filter) || (!ev->filter && filter)) {
+ continue;
+ }
+ if (ev->filter && filter) {
+ if (ev->filter->len != filter->len ||
+ memcmp(ev->filter->data, filter->data,
+ filter->len) != 0) {
+ continue;
+ }
+ }
+ found = 1;
+ break;
+ }
+ if (found) {
+ DBG("Found event %s for channel %s", name,
+ channel->channel->name);
+ return ev;
+ } else {
+ return NULL;
+ }
+}
+
/*
* Find the event name for the given channel.
*/
struct ltt_kernel_event *trace_kernel_get_event_by_name(
- char *name, struct ltt_kernel_channel *channel)
+ char *name, struct ltt_kernel_channel *channel,
+ enum lttng_event_type type)
{
struct ltt_kernel_event *ev;
+ int found = 0;
assert(name);
assert(channel);
cds_list_for_each_entry(ev, &channel->events_list.head, list) {
- if (strcmp(name, ev->event->name) == 0) {
- DBG("Found event by name %s for channel %s", name,
- channel->channel->name);
- return ev;
+ if (type != LTTNG_EVENT_ALL && ev->type != type) {
+ continue;
}
+ if (strcmp(name, ev->event->name)) {
+ continue;
+ }
+ found = 1;
+ break;
+ }
+ if (found) {
+ DBG("Found event %s for channel %s", name,
+ channel->channel->name);
+ return ev;
+ } else {
+ return NULL;
}
-
- return NULL;
}
/*
goto error;
}
- /*
- * The tmp_consumer stays NULL until a set_consumer_uri command is
- * executed. At this point, the consumer should be nullify until an
- * enable_consumer command. This assignment is symbolic since we've zmalloc
- * the struct.
- */
- lks->tmp_consumer = NULL;
-
return lks;
error:
struct lttng_channel *chan)
{
struct ltt_kernel_channel *lkc;
+ struct lttng_channel_extended *extended = NULL;
assert(chan);
lkc->channel = zmalloc(sizeof(struct lttng_channel));
if (lkc->channel == NULL) {
PERROR("lttng_channel zmalloc");
- free(lkc);
+ goto error;
+ }
+
+ extended = zmalloc(sizeof(struct lttng_channel_extended));
+ if (!extended) {
+ PERROR("lttng_channel_channel zmalloc");
goto error;
}
memcpy(lkc->channel, chan, sizeof(struct lttng_channel));
+ memcpy(extended, chan->attr.extended.ptr, sizeof(struct lttng_channel_extended));
+ lkc->channel->attr.extended.ptr = extended;
+ extended = NULL;
/*
* If we receive an empty string for channel name, it means the
lkc->stream_count = 0;
lkc->event_count = 0;
lkc->enabled = 1;
+ lkc->published_to_notification_thread = false;
/* Init linked list */
CDS_INIT_LIST_HEAD(&lkc->events_list.head);
CDS_INIT_LIST_HEAD(&lkc->stream_list.head);
return lkc;
error:
+ if (lkc) {
+ free(lkc->channel);
+ }
+ free(extended);
+ free(lkc);
return NULL;
}
if (ctx) {
memcpy(&kctx->ctx, ctx, sizeof(kctx->ctx));
}
-
error:
return kctx;
}
+/*
+ * Allocate and init a kernel context object from an existing kernel context
+ * object.
+ *
+ * Return the allocated object or NULL on error.
+ */
+struct ltt_kernel_context *trace_kernel_copy_context(
+ struct ltt_kernel_context *kctx)
+{
+ struct ltt_kernel_context *kctx_copy;
+
+ assert(kctx);
+ kctx_copy = zmalloc(sizeof(*kctx_copy));
+ if (!kctx_copy) {
+ PERROR("zmalloc ltt_kernel_context");
+ goto error;
+ }
+
+ memcpy(kctx_copy, kctx, sizeof(*kctx_copy));
+ memset(&kctx_copy->list, 0, sizeof(kctx_copy->list));
+
+error:
+ return kctx_copy;
+}
+
/*
* Allocate and initialize a kernel event. Set name and event type.
+ * We own filter_expression, and filter.
*
* Return pointer to structure or NULL.
*/
-struct ltt_kernel_event *trace_kernel_create_event(struct lttng_event *ev)
+enum lttng_error_code trace_kernel_create_event(
+ struct lttng_event *ev, char *filter_expression,
+ struct lttng_filter_bytecode *filter,
+ struct ltt_kernel_event **kernel_event)
{
- struct ltt_kernel_event *lke;
+ enum lttng_error_code ret;
struct lttng_kernel_event *attr;
+ struct ltt_kernel_event *local_kernel_event;
+ struct lttng_userspace_probe_location *userspace_probe_location = NULL;
assert(ev);
- lke = zmalloc(sizeof(struct ltt_kernel_event));
+ local_kernel_event = zmalloc(sizeof(struct ltt_kernel_event));
attr = zmalloc(sizeof(struct lttng_kernel_event));
- if (lke == NULL || attr == NULL) {
+ if (local_kernel_event == NULL || attr == NULL) {
PERROR("kernel event zmalloc");
+ ret = LTTNG_ERR_NOMEM;
goto error;
}
ev->attr.probe.symbol_name, LTTNG_KERNEL_SYM_NAME_LEN);
attr->u.kprobe.symbol_name[LTTNG_KERNEL_SYM_NAME_LEN - 1] = '\0';
break;
+ case LTTNG_EVENT_USERSPACE_PROBE:
+ {
+ const struct lttng_userspace_probe_location* location = NULL;
+ const struct lttng_userspace_probe_location_lookup_method *lookup = NULL;
+
+ location = lttng_event_get_userspace_probe_location(ev);
+ if (!location) {
+ ret = LTTNG_ERR_PROBE_LOCATION_INVAL;
+ goto error;
+ }
+
+ /*
+ * From this point on, the specific term 'uprobe' is used
+ * instead of the generic 'userspace probe' because it's the
+ * technology used at the moment for this instrumentation.
+ * LTTng currently implements userspace probes using uprobes.
+ * In the interactions with the kernel tracer, we use the
+ * uprobe term.
+ */
+ attr->instrumentation = LTTNG_KERNEL_UPROBE;
+
+ /*
+ * Only the elf lookup method is supported at the moment.
+ */
+ lookup = lttng_userspace_probe_location_get_lookup_method(
+ location);
+ if (!lookup) {
+ ret = LTTNG_ERR_PROBE_LOCATION_INVAL;
+ goto error;
+ }
+
+ /*
+ * From the kernel tracer's perspective, all userspace probe
+ * event types are all the same: a file and an offset.
+ */
+ switch (lttng_userspace_probe_location_lookup_method_get_type(lookup)) {
+ case LTTNG_USERSPACE_PROBE_LOCATION_LOOKUP_METHOD_TYPE_FUNCTION_ELF:
+ /* Get the file descriptor on the target binary. */
+ attr->u.uprobe.fd =
+ lttng_userspace_probe_location_function_get_binary_fd(location);
+
+ /*
+ * Save a reference to the probe location used during
+ * the listing of events. Close its FD since it won't
+ * be needed for listing.
+ */
+ userspace_probe_location =
+ lttng_userspace_probe_location_copy(location);
+ ret = lttng_userspace_probe_location_function_set_binary_fd(
+ userspace_probe_location, -1);
+ if (ret) {
+ goto error;
+ }
+ break;
+ case LTTNG_USERSPACE_PROBE_LOCATION_LOOKUP_METHOD_TYPE_TRACEPOINT_SDT:
+ /* Get the file descriptor on the target binary. */
+ attr->u.uprobe.fd =
+ lttng_userspace_probe_location_tracepoint_get_binary_fd(location);
+
+ /*
+ * Save a reference to the probe location used during the listing of
+ * events. Close its FD since it won't be needed for listing.
+ */
+ userspace_probe_location =
+ lttng_userspace_probe_location_copy(location);
+ ret = lttng_userspace_probe_location_tracepoint_set_binary_fd(
+ userspace_probe_location, -1);
+ if (ret) {
+ goto error;
+ }
+ break;
+ default:
+ DBG("Unsupported lookup method type");
+ ret = LTTNG_ERR_PROBE_LOCATION_INVAL;
+ goto error;
+ }
+ break;
+ }
case LTTNG_EVENT_FUNCTION:
attr->instrumentation = LTTNG_KERNEL_KRETPROBE;
attr->u.kretprobe.addr = ev->attr.probe.addr;
break;
default:
ERR("Unknown kernel instrumentation type (%d)", ev->type);
+ ret = LTTNG_ERR_INVALID;
goto error;
}
attr->name[LTTNG_KERNEL_SYM_NAME_LEN - 1] = '\0';
/* Setting up a kernel event */
- lke->fd = -1;
- lke->event = attr;
- lke->enabled = 1;
+ local_kernel_event->fd = -1;
+ local_kernel_event->event = attr;
+ local_kernel_event->enabled = 1;
+ local_kernel_event->filter_expression = filter_expression;
+ local_kernel_event->filter = filter;
+ local_kernel_event->userspace_probe_location = userspace_probe_location;
- return lke;
+ *kernel_event = local_kernel_event;
+
+ return LTTNG_OK;
error:
- free(lke);
+ free(filter_expression);
+ free(filter);
+ free(local_kernel_event);
free(attr);
- return NULL;
+ return ret;
}
/*
/* Remove from event list */
cds_list_del(&event->list);
+ free(event->filter_expression);
+ free(event->filter);
+
free(event->event);
free(event);
}
{
assert(ctx);
- cds_list_del(&ctx->list);
+ if (ctx->in_list) {
+ cds_list_del(&ctx->list);
+ }
free(ctx);
}
struct ltt_kernel_event *event, *etmp;
struct ltt_kernel_context *ctx, *ctmp;
int ret;
+ enum lttng_error_code status;
assert(channel);
/* Remove from channel list */
cds_list_del(&channel->list);
+ if (notification_thread_handle
+ && channel->published_to_notification_thread) {
+ status = notification_thread_command_remove_channel(
+ notification_thread_handle,
+ channel->key, LTTNG_DOMAIN_KERNEL);
+ assert(status == LTTNG_OK);
+ }
+ free(channel->channel->attr.extended.ptr);
free(channel->channel);
free(channel);
}
cds_list_for_each_entry_safe(channel, ctmp, &session->channel_list.head, list) {
trace_kernel_destroy_channel(channel);
}
+}
+/* Free elements needed by destroy notifiers. */
+void trace_kernel_free_session(struct ltt_kernel_session *session)
+{
/* Wipe consumer output object */
- consumer_destroy_output(session->consumer);
- consumer_destroy_output(session->tmp_consumer);
+ consumer_output_put(session->consumer);
free(session);
}