static void remote_async (struct target_ops *ops, int enable);
+static void remote_thread_events (struct target_ops *ops, int enable);
+
static void sync_remote_interrupt_twice (int signo);
static void interrupt_query (void);
int use_threadinfo_query;
int use_threadextra_query;
- /* This is set to the data address of the access causing the target
- to stop for a watchpoint. */
- CORE_ADDR remote_watch_data_address;
-
- /* Whether the target stopped for a breakpoint/watchpoint. */
- enum target_stop_reason stop_reason;
-
threadref echo_nextthread;
threadref nextthread;
threadref resultthreadlist[MAXTHREADLISTRESULTS];
struct private_thread_info
{
char *extra;
+ char *name;
int core;
+
+ /* Whether the target stopped for a breakpoint/watchpoint. */
+ enum target_stop_reason stop_reason;
+
+ /* This is set to the data address of the access causing the target
+ to stop for a watchpoint. */
+ CORE_ADDR watch_data_address;
};
static void
free_private_thread_info (struct private_thread_info *info)
{
xfree (info->extra);
+ xfree (info->name);
xfree (info);
}
get_remote_arch_state (void)
{
gdb_assert (target_gdbarch () != NULL);
- return gdbarch_data (target_gdbarch (), remote_gdbarch_data_handle);
+ return ((struct remote_arch_state *)
+ gdbarch_data (target_gdbarch (), remote_gdbarch_data_handle));
}
/* Fetch the global remote target state. */
static void
remote_pspace_data_cleanup (struct program_space *pspace, void *arg)
{
- char *remote_exec_file = arg;
+ char *remote_exec_file = (char *) arg;
xfree (remote_exec_file);
}
{
char *remote_exec_file;
- remote_exec_file = program_space_data (current_program_space,
- remote_pspace_data);
+ remote_exec_file
+ = (char *) program_space_data (current_program_space,
+ remote_pspace_data);
if (remote_exec_file == NULL)
return "";
set_pspace_remote_exec_file (struct program_space *pspace,
char *remote_exec_file)
{
- char *old_file = program_space_data (pspace, remote_pspace_data);
+ char *old_file = (char *) program_space_data (pspace, remote_pspace_data);
xfree (old_file);
set_program_space_data (pspace, remote_pspace_data,
static int
compare_pnums (const void *lhs_, const void *rhs_)
{
- const struct packet_reg * const *lhs = lhs_;
- const struct packet_reg * const *rhs = rhs_;
+ const struct packet_reg * const *lhs
+ = (const struct packet_reg * const *) lhs_;
+ const struct packet_reg * const *rhs
+ = (const struct packet_reg * const *) rhs_;
if ((*lhs)->pnum < (*rhs)->pnum)
return -1;
/* Support for the QNonStop packet. */
PACKET_QNonStop,
+ /* Support for the QThreadEvents packet. */
+ PACKET_QThreadEvents,
+
/* Support for multi-process extensions. */
PACKET_multiprocess_feature,
/* Support for query supported vCont actions. */
PACKET_vContSupported,
+ /* Support remote CTRL-C. */
+ PACKET_vCtrlC,
+
+ /* Support TARGET_WAITKIND_NO_RESUMED. */
+ PACKET_no_resumed,
+
PACKET_MAX
};
{
struct remote_state *rs = get_remote_state ();
- if (non_stop || !rs->starting_up)
+ if (!rs->starting_up)
notice_new_inferior (currthread, running, 0);
}
}
return (rs->buf[0] == 'O' && rs->buf[1] == 'K');
}
+/* Return a pointer to a thread name if we know it and NULL otherwise.
+ The thread_info object owns the memory for the name. */
+
+static const char *
+remote_thread_name (struct target_ops *ops, struct thread_info *info)
+{
+ if (info->priv != NULL)
+ return info->priv->name;
+
+ return NULL;
+}
+
/* About these extended threadlist and threadinfo packets. They are
variable length packets but, the fields within them are often fixed
length. They are redundent enough to send over UDP as is the
/* The thread's extra info. May be NULL. */
char *extra;
+ /* The thread's name. May be NULL. */
+ char *name;
+
/* The core the thread was running on. -1 if not known. */
int core;
} thread_item_t;
static void
clear_threads_listing_context (void *p)
{
- struct threads_listing_context *context = p;
+ struct threads_listing_context *context
+ = (struct threads_listing_context *) p;
int i;
struct thread_item *item;
for (i = 0; VEC_iterate (thread_item_t, context->items, i, item); ++i)
- xfree (item->extra);
+ {
+ xfree (item->extra);
+ xfree (item->name);
+ }
VEC_free (thread_item_t, context->items);
}
static int
remote_newthread_step (threadref *ref, void *data)
{
- struct threads_listing_context *context = data;
+ struct threads_listing_context *context
+ = (struct threads_listing_context *) data;
struct thread_item item;
int pid = ptid_get_pid (inferior_ptid);
item.ptid = ptid_build (pid, threadref_to_int (ref), 0);
item.core = -1;
+ item.name = NULL;
item.extra = NULL;
VEC_safe_push (thread_item_t, context->items, &item);
const struct gdb_xml_element *element,
void *user_data, VEC(gdb_xml_value_s) *attributes)
{
- struct threads_listing_context *data = user_data;
+ struct threads_listing_context *data
+ = (struct threads_listing_context *) user_data;
struct thread_item item;
char *id;
struct gdb_xml_value *attr;
- id = xml_find_attribute (attributes, "id")->value;
+ id = (char *) xml_find_attribute (attributes, "id")->value;
item.ptid = read_ptid (id, NULL);
attr = xml_find_attribute (attributes, "core");
else
item.core = -1;
+ attr = xml_find_attribute (attributes, "name");
+ item.name = attr != NULL ? xstrdup ((const char *) attr->value) : NULL;
+
item.extra = 0;
VEC_safe_push (thread_item_t, data->items, &item);
const struct gdb_xml_element *element,
void *user_data, const char *body_text)
{
- struct threads_listing_context *data = user_data;
+ struct threads_listing_context *data
+ = (struct threads_listing_context *) user_data;
if (body_text && *body_text)
VEC_last (thread_item_t, data->items)->extra = xstrdup (body_text);
const struct gdb_xml_attribute thread_attributes[] = {
{ "id", GDB_XML_AF_NONE, NULL, NULL },
{ "core", GDB_XML_AF_OPTIONAL, gdb_xml_parse_attr_ulongest, NULL },
+ { "name", GDB_XML_AF_OPTIONAL, NULL, NULL },
{ NULL, GDB_XML_AF_NONE, NULL, NULL }
};
item.ptid = read_ptid (bufp, &bufp);
item.core = -1;
+ item.name = NULL;
item.extra = NULL;
VEC_safe_push (thread_item_t, context->items, &item);
running until proven otherwise with a stop reply. In
all-stop, we can only get here if all threads are
stopped. */
- int running = non_stop ? 1 : 0;
+ int running = target_is_non_stop_p () ? 1 : 0;
remote_notice_new_inferior (item->ptid, running);
info->core = item->core;
info->extra = item->extra;
item->extra = NULL;
+ info->name = item->name;
+ item->name = NULL;
}
}
}
add_thread_silent (inferior_ptid);
}
+/* Print info about a thread that was found already stopped on
+ connection. */
+
+static void
+print_one_stopped_thread (struct thread_info *thread)
+{
+ struct target_waitstatus *ws = &thread->suspend.waitstatus;
+
+ switch_to_thread (thread->ptid);
+ stop_pc = get_frame_pc (get_current_frame ());
+ set_current_sal_from_frame (get_current_frame ());
+
+ thread->suspend.waitstatus_pending_p = 0;
+
+ if (ws->kind == TARGET_WAITKIND_STOPPED)
+ {
+ enum gdb_signal sig = ws->value.sig;
+
+ if (signal_print_state (sig))
+ observer_notify_signal_received (sig);
+ }
+ observer_notify_normal_stop (NULL, 1);
+}
+
/* Process all initial stop replies the remote side sent in response
to the ? packet. These indicate threads that were already stopped
on initial connection. We mark these threads as stopped and print
their current frame before giving the user the prompt. */
static void
-process_initial_stop_replies (void)
+process_initial_stop_replies (int from_tty)
{
int pending_stop_replies = stop_reply_queue_length ();
+ struct inferior *inf;
+ struct thread_info *thread;
+ struct thread_info *selected = NULL;
+ struct thread_info *lowest_stopped = NULL;
+ struct thread_info *first = NULL;
/* Consume the initial pending events. */
while (pending_stop_replies-- > 0)
ptid_t event_ptid;
struct target_waitstatus ws;
int ignore_event = 0;
+ struct thread_info *thread;
memset (&ws, 0, sizeof (ws));
event_ptid = target_wait (waiton_ptid, &ws, TARGET_WNOHANG);
if (ignore_event)
continue;
- switch_to_thread (event_ptid);
- set_executing (event_ptid, 0);
- set_running (event_ptid, 0);
-
- stop_pc = get_frame_pc (get_current_frame ());
- set_current_sal_from_frame (get_current_frame ());
+ thread = find_thread_ptid (event_ptid);
if (ws.kind == TARGET_WAITKIND_STOPPED)
{
instead of signal 0. Suppress it. */
if (sig == GDB_SIGNAL_TRAP)
sig = GDB_SIGNAL_0;
- inferior_thread ()->suspend.stop_signal = sig;
+ thread->suspend.stop_signal = sig;
+ ws.value.sig = sig;
+ }
- if (signal_print_state (sig))
- observer_notify_signal_received (sig);
- }
+ thread->suspend.waitstatus = ws;
+
+ if (ws.kind != TARGET_WAITKIND_STOPPED
+ || ws.value.sig != GDB_SIGNAL_0)
+ thread->suspend.waitstatus_pending_p = 1;
- print_stack_frame (get_selected_frame (NULL), 1, SRC_AND_LOC, 1);
- observer_notify_normal_stop (NULL, 1);
+ set_executing (event_ptid, 0);
+ set_running (event_ptid, 0);
}
+
+ /* "Notice" the new inferiors before anything related to
+ registers/memory. */
+ ALL_INFERIORS (inf)
+ {
+ if (inf->pid == 0)
+ continue;
+
+ inf->needs_setup = 1;
+
+ if (non_stop)
+ {
+ thread = any_live_thread_of_process (inf->pid);
+ notice_new_inferior (thread->ptid,
+ thread->state == THREAD_RUNNING,
+ from_tty);
+ }
+ }
+
+ /* If all-stop on top of non-stop, pause all threads. Note this
+ records the threads' stop pc, so must be done after "noticing"
+ the inferiors. */
+ if (!non_stop)
+ {
+ stop_all_threads ();
+
+ /* If all threads of an inferior were already stopped, we
+ haven't setup the inferior yet. */
+ ALL_INFERIORS (inf)
+ {
+ if (inf->pid == 0)
+ continue;
+
+ if (inf->needs_setup)
+ {
+ thread = any_live_thread_of_process (inf->pid);
+ switch_to_thread_no_regs (thread);
+ setup_inferior (0);
+ }
+ }
+ }
+
+ /* Now go over all threads that are stopped, and print their current
+ frame. If all-stop, then if there's a signalled thread, pick
+ that as current. */
+ ALL_NON_EXITED_THREADS (thread)
+ {
+ struct target_waitstatus *ws;
+
+ if (first == NULL)
+ first = thread;
+
+ if (!non_stop)
+ set_running (thread->ptid, 0);
+ else if (thread->state != THREAD_STOPPED)
+ continue;
+
+ ws = &thread->suspend.waitstatus;
+
+ if (selected == NULL
+ && thread->suspend.waitstatus_pending_p)
+ selected = thread;
+
+ if (lowest_stopped == NULL || thread->num < lowest_stopped->num)
+ lowest_stopped = thread;
+
+ if (non_stop)
+ print_one_stopped_thread (thread);
+ }
+
+ /* In all-stop, we only print the status of one thread, and leave
+ others with their status pending. */
+ if (!non_stop)
+ {
+ thread = selected;
+ if (thread == NULL)
+ thread = lowest_stopped;
+ if (thread == NULL)
+ thread = first;
+
+ print_one_stopped_thread (thread);
+ }
+
+ /* For "info program". */
+ thread = inferior_thread ();
+ if (thread->state == THREAD_STOPPED)
+ set_last_target_status (inferior_ptid, thread->suspend.waitstatus);
}
static void
if (gdbarch_has_global_solist (target_gdbarch ()))
solib_add (NULL, from_tty, target, auto_solib_add);
- if (non_stop)
+ if (target_is_non_stop_p ())
{
if (packet_support (PACKET_QNonStop) != PACKET_ENABLE)
error (_("Non-stop mode requested, but remote "
putpkt ("?");
getpkt (&rs->buf, &rs->buf_size, 0);
- if (!non_stop)
+ if (!target_is_non_stop_p ())
{
ptid_t ptid;
int fake_pid_p = 0;
}
else
{
- ptid_t current_ptid;
-
/* Clear WFI global state. Do this before finding about new
threads and inferiors, and setting the current inferior.
Otherwise we would clear the proceed status of the current
return;
}
- /* Let the stub know that we want it to return the thread. */
-
- /* Force the stub to choose a thread. */
- set_general_thread (null_ptid);
-
- /* Query it. */
- current_ptid = remote_current_thread (minus_one_ptid);
- if (ptid_equal (inferior_ptid, minus_one_ptid))
- error (_("remote didn't report the current thread in non-stop mode"));
-
- inferior_ptid = current_ptid;
- get_offsets (); /* Get text, data & bss offsets. */
-
/* In non-stop mode, any cached wait status will be stored in
the stop reply queue. */
gdb_assert (wait_status == NULL);
/* If there are already stopped threads, mark them stopped and
report their stops before giving the prompt to the user. */
- process_initial_stop_replies ();
-
- switch_to_thread (current_ptid);
+ process_initial_stop_replies (from_tty);
if (target_can_async_p ())
target_async (1);
PACKET_exec_event_feature },
{ "Qbtrace-conf:pt:size", PACKET_DISABLE, remote_supported_packet,
PACKET_Qbtrace_conf_pt_size },
- { "vContSupported", PACKET_DISABLE, remote_supported_packet, PACKET_vContSupported }
+ { "vContSupported", PACKET_DISABLE, remote_supported_packet, PACKET_vContSupported },
+ { "QThreadEvents", PACKET_DISABLE, remote_supported_packet, PACKET_QThreadEvents },
+ { "no-resumed", PACKET_DISABLE, remote_supported_packet, PACKET_no_resumed },
};
static char *remote_support_xml;
if (packet_set_cmd_state (PACKET_hwbreak_feature) != AUTO_BOOLEAN_FALSE)
q = remote_query_supported_append (q, "hwbreak+");
- if (remote_support_xml)
- q = remote_query_supported_append (q, remote_support_xml);
-
q = remote_query_supported_append (q, "qRelocInsn+");
if (rs->extended)
if (packet_set_cmd_state (PACKET_vContSupported) != AUTO_BOOLEAN_FALSE)
q = remote_query_supported_append (q, "vContSupported+");
+ if (packet_set_cmd_state (PACKET_QThreadEvents) != AUTO_BOOLEAN_FALSE)
+ q = remote_query_supported_append (q, "QThreadEvents+");
+
+ if (packet_set_cmd_state (PACKET_no_resumed) != AUTO_BOOLEAN_FALSE)
+ q = remote_query_supported_append (q, "no-resumed+");
+
+ /* Keep this one last to work around a gdbserver <= 7.10 bug in
+ the qSupported:xmlRegisters=i386 handling. */
+ if (remote_support_xml != NULL)
+ q = remote_query_supported_append (q, remote_support_xml);
+
q = reconcat (q, "qSupported:", q, (char *) NULL);
putpkt (q);
static void
remote_unpush_target (void)
{
- pop_all_targets_above (process_stratum - 1);
+ pop_all_targets_at_and_above (process_stratum);
}
static void
&remote_protocol_packets[PACKET_vAttach]))
{
case PACKET_OK:
- if (!non_stop)
+ if (!target_is_non_stop_p ())
{
/* Save the reply for later. */
wait_status = (char *) alloca (strlen (rs->buf) + 1);
inferior_ptid = pid_to_ptid (pid);
- if (non_stop)
+ if (target_is_non_stop_p ())
{
struct thread_info *thread;
this before anything involving memory or registers. */
target_find_description ();
- if (!non_stop)
+ if (!target_is_non_stop_p ())
{
/* Use the previously fetched status. */
gdb_assert (wait_status != NULL);
static void
extended_remote_post_attach (struct target_ops *ops, int pid)
{
+ /* Get text, data & bss offsets. */
+ get_offsets ();
+
/* In certain cases GDB might not have had the chance to start
symbol lookup up until now. This could happen if the debugged
binary is not using shared libraries, the vsyscall page is not
return p;
}
+/* Clear the thread's private info on resume. */
+
+static void
+resume_clear_thread_private_info (struct thread_info *thread)
+{
+ if (thread->priv != NULL)
+ {
+ thread->priv->stop_reason = TARGET_STOPPED_BY_NO_REASON;
+ thread->priv->watch_data_address = 0;
+ }
+}
+
/* Append a vCont continue-with-signal action for threads that have a
non-zero stop signal. */
p = append_resumption (p, endp, thread->ptid,
0, thread->suspend.stop_signal);
thread->suspend.stop_signal = GDB_SIGNAL_0;
+ resume_clear_thread_private_info (thread);
}
return p;
gdb_assert (strlen (rs->buf) < get_remote_packet_size ());
putpkt (rs->buf);
- if (non_stop)
+ if (target_is_non_stop_p ())
{
/* In non-stop, the stub replies to vCont with "OK". The stop
reply will be reported asynchronously by means of a `%Stop'
{
struct remote_state *rs = get_remote_state ();
char *buf;
+ struct thread_info *thread;
/* In all-stop, we can't mark REMOTE_ASYNC_GET_PENDING_EVENTS_TOKEN
(explained in remote-notif.c:handle_notification) so
it is safe to start a 'vNotif' sequence. It is good to do it
before resuming inferior, because inferior was stopped and no RSP
traffic at that moment. */
- if (!non_stop)
+ if (!target_is_non_stop_p ())
remote_notif_process (rs->notif_state, ¬if_client_stop);
rs->last_sent_signal = siggnal;
else
set_continue_thread (ptid);
+ ALL_NON_EXITED_THREADS (thread)
+ resume_clear_thread_private_info (thread);
+
buf = rs->buf;
if (execution_direction == EXEC_REVERSE)
{
only to the base all-stop protocol, however. In non-stop (which
only supports vCont), the stub replies with an "OK", and is
immediate able to process further serial input. */
- if (!non_stop)
+ if (!target_is_non_stop_p ())
rs->waiting_for_stop_reply = 1;
}
\f
if (remote_debug)
fprintf_unfiltered (gdb_stdlog, "async_remote_interrupt called\n");
- target_stop (inferior_ptid);
+ target_interrupt (inferior_ptid);
}
/* Perform interrupt, if the first attempt did not succeed. Just give
process reports the interrupt. */
static void
-remote_interrupt_as (ptid_t ptid)
+remote_interrupt_as (void)
{
struct remote_state *rs = get_remote_state ();
send_interrupt_sequence ();
}
+/* Non-stop version of target_interrupt. Uses `vCtrlC' to interrupt
+ the remote target. It is undefined which thread of which process
+ reports the interrupt. Returns true if the packet is supported by
+ the server, false otherwise. */
+
+static int
+remote_interrupt_ns (void)
+{
+ struct remote_state *rs = get_remote_state ();
+ char *p = rs->buf;
+ char *endp = rs->buf + get_remote_packet_size ();
+
+ xsnprintf (p, endp - p, "vCtrlC");
+
+ /* In non-stop, we get an immediate OK reply. The stop reply will
+ come in asynchronously by notification. */
+ putpkt (rs->buf);
+ getpkt (&rs->buf, &rs->buf_size, 0);
+
+ switch (packet_ok (rs->buf, &remote_protocol_packets[PACKET_vCtrlC]))
+ {
+ case PACKET_OK:
+ break;
+ case PACKET_UNKNOWN:
+ return 0;
+ case PACKET_ERROR:
+ error (_("Interrupting target failed: %s"), rs->buf);
+ }
+
+ return 1;
+}
+
/* Implement the to_stop function for the remote targets. */
static void
if (remote_debug)
fprintf_unfiltered (gdb_stdlog, "remote_stop called\n");
- if (non_stop)
+ if (target_is_non_stop_p ())
remote_stop_ns (ptid);
else
{
/* We don't currently have a way to transparently pause the
remote target in all-stop mode. Interrupt it instead. */
- remote_interrupt_as (ptid);
+ remote_interrupt_as ();
}
}
if (non_stop)
{
- /* We don't currently have a way to ^C the remote target in
- non-stop mode. Stop it (with no signal) instead. */
+ /* In non-stop mode, we always stop with no signal instead. */
remote_stop_ns (ptid);
}
else
- remote_interrupt_as (ptid);
+ {
+ /* In all-stop, we emulate ^C-ing the remote target's
+ terminal. */
+ if (target_is_non_stop_p ())
+ {
+ if (!remote_interrupt_ns ())
+ {
+ /* No support for ^C-ing the remote target. Stop it
+ (with no signal) instead. */
+ remote_stop_ns (ptid);
+ }
+ }
+ else
+ remote_interrupt_as ();
+ }
}
/* Ask the user what to do when an interrupt is received. */
stop_reply_p event,
void *data)
{
- struct queue_iter_param *param = data;
- struct threads_listing_context *context = param->input;
+ struct queue_iter_param *param = (struct queue_iter_param *) data;
+ struct threads_listing_context *context
+ = (struct threads_listing_context *) param->input;
if (event->ws.kind == TARGET_WAITKIND_FORKED
- || event->ws.kind == TARGET_WAITKIND_VFORKED)
- {
- threads_listing_context_remove (&event->ws, context);
- }
+ || event->ws.kind == TARGET_WAITKIND_VFORKED
+ || event->ws.kind == TARGET_WAITKIND_THREAD_EXITED)
+ threads_listing_context_remove (&event->ws, context);
return 1;
}
stop_reply_p event,
void *data)
{
- struct queue_iter_param *param = data;
- struct inferior *inf = param->input;
+ struct queue_iter_param *param = (struct queue_iter_param *) data;
+ struct inferior *inf = (struct inferior *) param->input;
if (ptid_get_pid (event->ptid) == inf->pid)
{
stop_reply_p event,
void *data)
{
- struct queue_iter_param *param = data;
- struct remote_state *rs = param->input;
+ struct queue_iter_param *param = (struct queue_iter_param *) data;
+ struct remote_state *rs = (struct remote_state *) param->input;
if (event->rs == rs)
{
stop_reply_p event,
void *data)
{
- struct queue_iter_param *param = data;
- ptid_t *ptid = param->input;
+ struct queue_iter_param *param = (struct queue_iter_param *) data;
+ ptid_t *ptid = (ptid_t *) param->input;
if (ptid_match (event->ptid, *ptid))
{
struct stop_reply *event,
void *data)
{
- ptid_t *ptid = data;
+ ptid_t *ptid = (ptid_t *) data;
return !(ptid_equal (*ptid, event->ptid)
&& event->ws.kind == TARGET_WAITKIND_STOPPED);
event->ws.kind = TARGET_WAITKIND_VFORK_DONE;
p = skip_to_semicolon (p1 + 1);
}
- else if (strncmp (p, "exec", p1 - p) == 0)
+ else if (strprefix (p, p1, "exec"))
{
ULONGEST ignored;
char pathname[PATH_MAX];
one used by the original program. */
skipregs = 1;
}
+ else if (strprefix (p, p1, "create"))
+ {
+ event->ws.kind = TARGET_WAITKIND_THREAD_CREATED;
+ p = skip_to_semicolon (p1 + 1);
+ }
else
{
ULONGEST pnum;
event->ws.value.sig = GDB_SIGNAL_UNKNOWN;
}
break;
+ case 'w': /* Thread exited. */
+ {
+ char *p;
+ ULONGEST value;
+
+ event->ws.kind = TARGET_WAITKIND_THREAD_EXITED;
+ p = unpack_varlen_hex (&buf[1], &value);
+ event->ws.value.integer = value;
+ if (*p != ';')
+ error (_("stop reply packet badly formatted: %s"), buf);
+ event->ptid = read_ptid (++p, NULL);
+ break;
+ }
case 'W': /* Target exited. */
case 'X':
{
event->ptid = pid_to_ptid (pid);
}
break;
+ case 'N':
+ event->ws.kind = TARGET_WAITKIND_NO_RESUMED;
+ event->ptid = minus_one_ptid;
+ break;
}
- if (non_stop && ptid_equal (event->ptid, null_ptid))
+ if (target_is_non_stop_p () && ptid_equal (event->ptid, null_ptid))
error (_("No process or thread specified in stop reply: %s"), buf);
}
ptid = inferior_ptid;
if (status->kind != TARGET_WAITKIND_EXITED
- && status->kind != TARGET_WAITKIND_SIGNALLED)
+ && status->kind != TARGET_WAITKIND_SIGNALLED
+ && status->kind != TARGET_WAITKIND_NO_RESUMED)
{
struct remote_state *rs = get_remote_state ();
+ struct private_thread_info *remote_thr;
/* Expedited registers. */
if (stop_reply->regcache)
VEC_free (cached_reg_t, stop_reply->regcache);
}
- rs->stop_reason = stop_reply->stop_reason;
- rs->remote_watch_data_address = stop_reply->watch_data_address;
-
remote_notice_new_inferior (ptid, 0);
- demand_private_info (ptid)->core = stop_reply->core;
+ remote_thr = demand_private_info (ptid);
+ remote_thr->core = stop_reply->core;
+ remote_thr->stop_reason = stop_reply->stop_reason;
+ remote_thr->watch_data_address = stop_reply->watch_data_address;
}
stop_reply_xfree (stop_reply);
buf = rs->buf;
- rs->stop_reason = TARGET_STOPPED_BY_NO_REASON;
-
- /* We got something. */
- rs->waiting_for_stop_reply = 0;
-
/* Assume that the target has acknowledged Ctrl-C unless we receive
an 'F' or 'O' packet. */
if (buf[0] != 'F' && buf[0] != 'O')
case 'E': /* Error of some sort. */
/* We're out of sync with the target now. Did it continue or
not? Not is more likely, so report a stop. */
+ rs->waiting_for_stop_reply = 0;
+
warning (_("Remote failure reply: %s"), buf);
status->kind = TARGET_WAITKIND_STOPPED;
status->value.sig = GDB_SIGNAL_0;
remote_fileio_request (buf, rs->ctrlc_pending_p);
rs->ctrlc_pending_p = 0;
break;
- case 'T': case 'S': case 'X': case 'W':
+ case 'N': case 'T': case 'S': case 'X': case 'W':
{
- struct stop_reply *stop_reply
+ struct stop_reply *stop_reply;
+
+ /* There is a stop reply to handle. */
+ rs->waiting_for_stop_reply = 0;
+
+ stop_reply
= (struct stop_reply *) remote_notif_parse (¬if_client_stop,
rs->buf);
}
case 'O': /* Console output. */
remote_console_output (buf + 1);
-
- /* The target didn't really stop; keep waiting. */
- rs->waiting_for_stop_reply = 1;
-
break;
case '\0':
if (rs->last_sent_signal != GDB_SIGNAL_0)
strcpy ((char *) buf, rs->last_sent_step ? "s" : "c");
putpkt ((char *) buf);
-
- /* We just told the target to resume, so a stop reply is in
- order. */
- rs->waiting_for_stop_reply = 1;
break;
}
/* else fallthrough */
default:
warning (_("Invalid remote reply: %s"), buf);
- /* Keep waiting. */
- rs->waiting_for_stop_reply = 1;
break;
}
- if (status->kind == TARGET_WAITKIND_IGNORE)
+ if (status->kind == TARGET_WAITKIND_NO_RESUMED)
+ return minus_one_ptid;
+ else if (status->kind == TARGET_WAITKIND_IGNORE)
{
/* Nothing interesting happened. If we're doing a non-blocking
poll, we're done. Otherwise, go back to waiting. */
{
ptid_t event_ptid;
- if (non_stop)
+ if (target_is_non_stop_p ())
event_ptid = remote_wait_ns (ptid, status, options);
else
event_ptid = remote_wait_as (ptid, status, options);
case it's not possible to issue a command while the target is
running. This is not a problem in non-stop mode, because in that
case, the stub is always ready to process serial input. */
- if (!non_stop && target_is_async_p () && rs->waiting_for_stop_reply)
+ if (!target_is_non_stop_p ()
+ && target_is_async_p ()
+ && rs->waiting_for_stop_reply)
{
error (_("Cannot execute this command while the target is running.\n"
"Use the \"interrupt\" command to stop the target\n"
stop_reply_p event,
void *data)
{
- struct queue_iter_param *param = data;
+ struct queue_iter_param *param = (struct queue_iter_param *) data;
int parent_pid = *(int *) param->input;
if (is_pending_fork_parent (&event->ws, parent_pid, event->ptid))
static int
remote_stopped_by_sw_breakpoint (struct target_ops *ops)
{
- struct remote_state *rs = get_remote_state ();
+ struct thread_info *thread = inferior_thread ();
- return rs->stop_reason == TARGET_STOPPED_BY_SW_BREAKPOINT;
+ return (thread->priv != NULL
+ && thread->priv->stop_reason == TARGET_STOPPED_BY_SW_BREAKPOINT);
}
/* The to_supports_stopped_by_sw_breakpoint method of target
static int
remote_stopped_by_hw_breakpoint (struct target_ops *ops)
{
- struct remote_state *rs = get_remote_state ();
+ struct thread_info *thread = inferior_thread ();
- return rs->stop_reason == TARGET_STOPPED_BY_HW_BREAKPOINT;
+ return (thread->priv != NULL
+ && thread->priv->stop_reason == TARGET_STOPPED_BY_HW_BREAKPOINT);
}
/* The to_supports_stopped_by_hw_breakpoint method of target
static int
remote_stopped_by_watchpoint (struct target_ops *ops)
{
- struct remote_state *rs = get_remote_state ();
+ struct thread_info *thread = inferior_thread ();
- return rs->stop_reason == TARGET_STOPPED_BY_WATCHPOINT;
+ return (thread->priv != NULL
+ && thread->priv->stop_reason == TARGET_STOPPED_BY_WATCHPOINT);
}
static int
remote_stopped_data_address (struct target_ops *target, CORE_ADDR *addr_p)
{
- struct remote_state *rs = get_remote_state ();
- int rc = 0;
+ struct thread_info *thread = inferior_thread ();
- if (remote_stopped_by_watchpoint (target))
+ if (thread->priv != NULL
+ && thread->priv->stop_reason == TARGET_STOPPED_BY_WATCHPOINT)
{
- *addr_p = rs->remote_watch_data_address;
- rc = 1;
+ *addr_p = thread->priv->watch_data_address;
+ return 1;
}
- return rc;
+ return 0;
}
const struct target_desc *tdesc)
{
struct remote_g_packet_data *data
- = gdbarch_data (gdbarch, remote_g_packet_data_handle);
+ = ((struct remote_g_packet_data *)
+ gdbarch_data (gdbarch, remote_g_packet_data_handle));
struct remote_g_packet_guess new_guess, *guess;
int ix;
remote_read_description_p (struct target_ops *target)
{
struct remote_g_packet_data *data
- = gdbarch_data (target_gdbarch (), remote_g_packet_data_handle);
+ = ((struct remote_g_packet_data *)
+ gdbarch_data (target_gdbarch (), remote_g_packet_data_handle));
if (!VEC_empty (remote_g_packet_guess_s, data->guesses))
return 1;
remote_read_description (struct target_ops *target)
{
struct remote_g_packet_data *data
- = gdbarch_data (target_gdbarch (), remote_g_packet_data_handle);
+ = ((struct remote_g_packet_data *)
+ gdbarch_data (target_gdbarch (), remote_g_packet_data_handle));
/* Do not try this during initial connection, when we do not know
whether there is a running but stopped thread. */
static void
free_actions_list_cleanup_wrapper (void *al)
{
- free_actions_list (al);
+ free_actions_list ((char **) al);
}
static void
remote_ops.to_pass_signals = remote_pass_signals;
remote_ops.to_program_signals = remote_program_signals;
remote_ops.to_thread_alive = remote_thread_alive;
+ remote_ops.to_thread_name = remote_thread_name;
remote_ops.to_update_thread_list = remote_update_thread_list;
remote_ops.to_pid_to_str = remote_pid_to_str;
remote_ops.to_extra_thread_info = remote_threads_extra_info;
remote_ops.to_can_async_p = remote_can_async_p;
remote_ops.to_is_async_p = remote_is_async_p;
remote_ops.to_async = remote_async;
+ remote_ops.to_thread_events = remote_thread_events;
remote_ops.to_can_do_single_step = remote_can_do_single_step;
remote_ops.to_terminal_inferior = remote_terminal_inferior;
remote_ops.to_terminal_ours = remote_terminal_ours;
static void
remote_async_serial_handler (struct serial *scb, void *context)
{
- struct remote_state *rs = context;
+ struct remote_state *rs = (struct remote_state *) context;
/* Don't propogate error information up to the client. Instead let
the client find out about the error by querying the target. */
event loop to process them. */
if (!QUEUE_is_empty (stop_reply_p, stop_reply_queue))
mark_async_event_handler (remote_async_inferior_event_token);
+ /* For simplicity, below we clear the pending events token
+ without remembering whether it is marked, so here we always
+ mark it. If there's actually no pending notification to
+ process, this ends up being a no-op (other than a spurious
+ event-loop wakeup). */
+ if (target_is_non_stop_p ())
+ mark_async_event_handler (rs->notif_state->get_pending_events_token);
}
else
{
serial_async (rs->remote_desc, NULL, NULL);
+ /* If the core is disabling async, it doesn't want to be
+ disturbed with target events. Clear all async event sources
+ too. */
clear_async_event_handler (remote_async_inferior_event_token);
+ if (target_is_non_stop_p ())
+ clear_async_event_handler (rs->notif_state->get_pending_events_token);
+ }
+}
+
+/* Implementation of the to_thread_events method. */
+
+static void
+remote_thread_events (struct target_ops *ops, int enable)
+{
+ struct remote_state *rs = get_remote_state ();
+ size_t size = get_remote_packet_size ();
+ char *p = rs->buf;
+
+ if (packet_support (PACKET_QThreadEvents) == PACKET_DISABLE)
+ return;
+
+ xsnprintf (rs->buf, size, "QThreadEvents:%x", enable ? 1 : 0);
+ putpkt (rs->buf);
+ getpkt (&rs->buf, &rs->buf_size, 0);
+
+ switch (packet_ok (rs->buf,
+ &remote_protocol_packets[PACKET_QThreadEvents]))
+ {
+ case PACKET_OK:
+ if (strcmp (rs->buf, "OK") != 0)
+ error (_("Remote refused setting thread events: %s"), rs->buf);
+ break;
+ case PACKET_ERROR:
+ warning (_("Remote failure reply: %s"), rs->buf);
+ break;
+ case PACKET_UNKNOWN:
+ break;
}
}
add_packet_config_cmd (&remote_protocol_packets[PACKET_exec_event_feature],
"exec-event-feature", "exec-event-feature", 0);
+ add_packet_config_cmd (&remote_protocol_packets[PACKET_vCtrlC],
+ "vCtrlC", "ctrl-c", 0);
+
+ add_packet_config_cmd (&remote_protocol_packets[PACKET_QThreadEvents],
+ "QThreadEvents", "thread-events", 0);
+
+ add_packet_config_cmd (&remote_protocol_packets[PACKET_no_resumed],
+ "N stop reply", "no-resumed-stop-reply", 0);
+
/* Assert that we've registered "set remote foo-packet" commands
for all packet configs. */
{