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rpc: Implement possibility to stop and resume all the RPC communication
Implemented stop function that immedtaietly releases all threads waiting for RPC response and automatically fails all new calls. Implemented resume function that restores normal RPC communication. This is intended to be used for recovery process when the other side needs to be reset but there are calls waiting for the response. Additionally it is possible to provide callback handler that could be used to do the custom cleanup, for example clear the callback table. Signed-off-by: Marek Porwisz <[email protected]>
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2 files changed

+150
-20
lines changed

2 files changed

+150
-20
lines changed

nrf_rpc/include/nrf_rpc.h

Lines changed: 49 additions & 0 deletions
Original file line numberDiff line numberDiff line change
@@ -171,6 +171,20 @@ struct nrf_rpc_err_report {
171171
enum nrf_rpc_packet_type packet_type;
172172
};
173173

174+
/** @brief Cleanup procedure list element.
175+
*/
176+
struct nrf_rpc_cleanup_handler
177+
{
178+
/** @brief Handler to the cleanup function invoked on the call to @ref nrf_rpc_stop. */
179+
void (*handler)(void *context);
180+
181+
/** @brief Custom context passed as the function parameter */
182+
void *context;
183+
184+
/** @brief Pointer to the next element in the list. Managed automatically by the nrf_rpc */
185+
struct nrf_rpc_cleanup_handler *next;
186+
};
187+
174188
/** @brief Internal macro for parametrizing nrf_rpc groups.
175189
*
176190
* @param _name Symbol name of the group.
@@ -357,6 +371,41 @@ void nrf_rpc_set_bound_handler(nrf_rpc_group_bound_handler_t bound_handler);
357371
*/
358372
int nrf_rpc_init(nrf_rpc_err_handler_t err_handler);
359373

374+
375+
/** @brief Registers the cleanup handler.
376+
*
377+
* Calling this adds the handler to the list. The handler will be called automatically during @ref nrf_rpc_stop
378+
* if the cleanup parameter is set to true.
379+
* This API is used to clean up any custom states set during RPC operations, for example clean up callbacks set.
380+
*
381+
* @param handler Pointer to the structure storing the cleanup handler. This handlers need to stay valid even
382+
* after the function has finished.
383+
*
384+
*/
385+
void nrf_rpc_register_cleanup_handler(struct nrf_rpc_cleanup_handler * handler);
386+
387+
388+
/** @brief Temporarily suspend all RPC communication
389+
*
390+
* Calling this function automatically fails all communication until @ref nrf_rpc_resume is called.
391+
* It also causes all pending commands to fail immediately.
392+
*
393+
* @param cleanup set to true to also invoke all the custom cleanup handlers.
394+
*
395+
* @note If the cleanup parameter is set to true it may be needed to reset the peer before invoking
396+
* @ref nrf_rpc_resume.
397+
*
398+
*/
399+
void nrf_rpc_stop(bool cleanup);
400+
401+
/** @brief resumes RPC communication
402+
*
403+
* Calling this function reverts the effects of @ref nrf_rpc_stop.
404+
*
405+
*/
406+
void nrf_rpc_resume(void);
407+
408+
360409
/** @brief Send a command and provide callback to handle response.
361410
*
362411
* @param group Group that command belongs to.

nrf_rpc/nrf_rpc.c

Lines changed: 101 additions & 20 deletions
Original file line numberDiff line numberDiff line change
@@ -125,6 +125,7 @@ static uint8_t initialized_group_count;
125125

126126
/* nRF RPC initialization status. */
127127
static bool is_initialized;
128+
static bool is_stopped;
128129

129130
/* Error handler provided to the init function. */
130131
static nrf_rpc_err_handler_t global_err_handler;
@@ -135,6 +136,9 @@ static nrf_rpc_group_bound_handler_t global_bound_handler;
135136
static struct internal_task internal_task;
136137
static struct nrf_rpc_os_event internal_task_consumed;
137138

139+
static struct nrf_rpc_os_mutex cleanup_mutex;
140+
static struct nrf_rpc_cleanup_handler *cleanup_handlers;
141+
138142
/* Array with all defiend groups */
139143
NRF_RPC_AUTO_ARR(nrf_rpc_groups_array, "grp");
140144

@@ -726,6 +730,19 @@ static int init_packet_handle(struct header *hdr, const struct nrf_rpc_group **g
726730
return 0;
727731
}
728732

733+
static void abort_all_ops(void)
734+
{
735+
NRF_RPC_INF("Canceling all tasks.");
736+
for (int i = 0; i < CONFIG_NRF_RPC_CMD_CTX_POOL_SIZE; i++) {
737+
struct nrf_rpc_cmd_ctx *ctx = &cmd_ctx_pool[i];
738+
nrf_rpc_os_mutex_lock(&ctx->mutex);
739+
if (ctx->use_count > 0) {
740+
nrf_rpc_os_msg_set(&ctx->recv_msg, NULL, 0);
741+
}
742+
nrf_rpc_os_mutex_unlock(&ctx->mutex);
743+
}
744+
}
745+
729746
/* Callback from transport layer that handles incoming. */
730747
static void receive_handler(const struct nrf_rpc_tr *transport, const uint8_t *packet, size_t len,
731748
void *context)
@@ -742,6 +759,18 @@ static void receive_handler(const struct nrf_rpc_tr *transport, const uint8_t *p
742759
goto cleanup_and_exit;
743760
}
744761

762+
if (is_stopped &&
763+
(hdr.type == NRF_RPC_PACKET_TYPE_CMD ||
764+
hdr.type == NRF_RPC_PACKET_TYPE_EVT ||
765+
hdr.type == NRF_RPC_PACKET_TYPE_ACK ||
766+
hdr.type == NRF_RPC_PACKET_TYPE_RSP)) {
767+
// drop only selected types of packets
768+
// do not drop INITs and ERRORS
769+
770+
NRF_RPC_WRN("Dropping the packet.");
771+
goto cleanup_and_exit;
772+
}
773+
745774
if (hdr.type == NRF_RPC_PACKET_TYPE_CMD ||
746775
hdr.type == NRF_RPC_PACKET_TYPE_EVT ||
747776
hdr.type == NRF_RPC_PACKET_TYPE_ACK ||
@@ -974,33 +1003,41 @@ int nrf_rpc_cmd_common(const struct nrf_rpc_group *group, uint32_t cmd,
9741003
handler_data = ptr2;
9751004
}
9761005

977-
cmd_ctx = cmd_ctx_reserve();
1006+
nrf_rpc_os_mutex_lock(&cleanup_mutex);
1007+
if (is_stopped) {
1008+
err = -NRF_EPERM;
1009+
nrf_rpc_os_mutex_unlock(&cleanup_mutex);
1010+
} else {
9781011

979-
hdr.dst = cmd_ctx->remote_id;
980-
hdr.src = cmd_ctx->id;
981-
hdr.id = cmd & 0xFF;
982-
hdr.src_group_id = group->data->src_group_id;
983-
hdr.dst_group_id = group->data->dst_group_id;
984-
header_cmd_encode(full_packet, &hdr);
1012+
cmd_ctx = cmd_ctx_reserve();
1013+
nrf_rpc_os_mutex_unlock(&cleanup_mutex); /* release the mutex as the context specific one has been acquired */
9851014

986-
old_handler = cmd_ctx->handler;
987-
old_handler_data = cmd_ctx->handler_data;
988-
cmd_ctx->handler = handler;
989-
cmd_ctx->handler_data = handler_data;
1015+
hdr.dst = cmd_ctx->remote_id;
1016+
hdr.src = cmd_ctx->id;
1017+
hdr.id = cmd & 0xFF;
1018+
hdr.src_group_id = group->data->src_group_id;
1019+
hdr.dst_group_id = group->data->dst_group_id;
1020+
header_cmd_encode(full_packet, &hdr);
9901021

991-
NRF_RPC_DBG("Sending command 0x%02X from group 0x%02X", cmd,
992-
group->data->src_group_id);
1022+
old_handler = cmd_ctx->handler;
1023+
old_handler_data = cmd_ctx->handler_data;
1024+
cmd_ctx->handler = handler;
1025+
cmd_ctx->handler_data = handler_data;
9931026

994-
err = send(group, full_packet, len + NRF_RPC_HEADER_SIZE);
1027+
NRF_RPC_DBG("Sending command 0x%02X from group 0x%02X", cmd,
1028+
group->data->src_group_id);
9951029

996-
if (err >= 0) {
997-
err = wait_for_response(group, cmd_ctx, rsp_packet, rsp_len);
998-
}
1030+
err = send(group, full_packet, len + NRF_RPC_HEADER_SIZE);
9991031

1000-
cmd_ctx->handler = old_handler;
1001-
cmd_ctx->handler_data = old_handler_data;
1032+
if (err >= 0) {
1033+
err = wait_for_response(group, cmd_ctx, rsp_packet, rsp_len);
1034+
}
10021035

1003-
cmd_ctx_release(cmd_ctx);
1036+
cmd_ctx->handler = old_handler;
1037+
cmd_ctx->handler_data = old_handler_data;
1038+
1039+
cmd_ctx_release(cmd_ctx);
1040+
}
10041041

10051042
return err;
10061043
}
@@ -1121,6 +1158,8 @@ int nrf_rpc_init(nrf_rpc_err_handler_t err_handler)
11211158
return 0;
11221159
}
11231160

1161+
nrf_rpc_os_mutex_init(&cleanup_mutex);
1162+
11241163
global_err_handler = err_handler;
11251164

11261165
for (NRF_RPC_AUTO_ARR_FOR(iter, group, &nrf_rpc_groups_array,
@@ -1195,6 +1234,48 @@ int nrf_rpc_init(nrf_rpc_err_handler_t err_handler)
11951234
return err;
11961235
}
11971236

1237+
void nrf_rpc_register_cleanup_handler(struct nrf_rpc_cleanup_handler *handler)
1238+
{
1239+
nrf_rpc_os_mutex_lock(&cleanup_mutex);
1240+
1241+
struct nrf_rpc_cleanup_handler *current;
1242+
1243+
// make sure not added twice
1244+
for (current = cleanup_handlers; current != NULL; current = current->next) {
1245+
if (current == handler) {
1246+
break;
1247+
}
1248+
}
1249+
1250+
if (current == NULL) {
1251+
handler->next = cleanup_handlers;
1252+
cleanup_handlers = handler;
1253+
}
1254+
1255+
nrf_rpc_os_mutex_unlock(&cleanup_mutex);
1256+
}
1257+
1258+
void nrf_rpc_stop(bool cleanup)
1259+
{
1260+
nrf_rpc_os_mutex_lock(&cleanup_mutex);
1261+
1262+
is_stopped = true;
1263+
abort_all_ops();
1264+
if (cleanup) {
1265+
struct nrf_rpc_cleanup_handler *current;
1266+
for (current = cleanup_handlers; current != NULL; current = current->next) {
1267+
current->handler(current->context);
1268+
}
1269+
}
1270+
1271+
nrf_rpc_os_mutex_unlock(&cleanup_mutex);
1272+
}
1273+
1274+
void nrf_rpc_resume(void)
1275+
{
1276+
is_stopped = false;
1277+
}
1278+
11981279
int nrf_rpc_cmd(const struct nrf_rpc_group *group, uint8_t cmd, uint8_t *packet,
11991280
size_t len, nrf_rpc_handler_t handler, void *handler_data)
12001281
{

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