xref: /btstack/src/mesh/mesh_generic_on_off_server.c (revision 649d4025aa6076589e63a89836444f2216cd5d9b)
1 /*
2  * Copyright (C) 2019 BlueKitchen GmbH
3  *
4  * Redistribution and use in source and binary forms, with or without
5  * modification, are permitted provided that the following conditions
6  * are met:
7  *
8  * 1. Redistributions of source code must retain the above copyright
9  *    notice, this list of conditions and the following disclaimer.
10  * 2. Redistributions in binary form must reproduce the above copyright
11  *    notice, this list of conditions and the following disclaimer in the
12  *    documentation and/or other materials provided with the distribution.
13  * 3. Neither the name of the copyright holders nor the names of
14  *    contributors may be used to endorse or promote products derived
15  *    from this software without specific prior written permission.
16  * 4. Any redistribution, use, or modification is done solely for
17  *    personal benefit and not for any commercial purpose or for
18  *    monetary gain.
19  *
20  * THIS SOFTWARE IS PROVIDED BY BLUEKITCHEN GMBH AND CONTRIBUTORS
21  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
22  * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
23  * FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL MATTHIAS
24  * RINGWALD OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
25  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
26  * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
27  * OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
28  * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
29  * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF
30  * THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
31  * SUCH DAMAGE.
32  *
33  * Please inquire about commercial licensing options at
34  * [email protected]
35  *
36  */
37 
38 #define BTSTACK_FILE__ "mesh_generic_on_off_server.c"
39 
40 #include "mesh/mesh_generic_on_off_server.h"
41 
42 #include <string.h>
43 #include <stdio.h>
44 
45 #include "bluetooth_company_id.h"
46 #include "btstack_debug.h"
47 #include "btstack_memory.h"
48 #include "btstack_util.h"
49 
50 #include "mesh/mesh_access.h"
51 #include "mesh/mesh_foundation.h"
52 #include "mesh/mesh_generic_model.h"
53 #include "mesh/mesh_keys.h"
54 #include "mesh/mesh_network.h"
55 #include "mesh/mesh_upper_transport.h"
56 
57 static void mesh_server_transition_step_bool(mesh_transition_t * transition, transition_event_t event, uint32_t current_timestamp);
58 
59 static void generic_server_send_message(uint16_t src, uint16_t dest, uint16_t netkey_index, uint16_t appkey_index, mesh_pdu_t *pdu){
60     uint8_t  ttl  = mesh_foundation_default_ttl_get();
61     mesh_upper_transport_setup_access_pdu_header(pdu, netkey_index, appkey_index, ttl, src, dest, 0);
62     mesh_access_send_unacknowledged_pdu(pdu);
63 }
64 
65 // Transaction management
66 
67 static mesh_transition_t * generic_on_off_server_get_base_transition(mesh_model_t * mesh_model) {
68     mesh_generic_on_off_state_t * generic_on_off_server_state = (mesh_generic_on_off_state_t *)mesh_model->model_data;
69     return &generic_on_off_server_state->transition_data.base_transition;
70 }
71 
72 static void mesh_server_transition_state_emit_change(mesh_transition_bool_t * transition, uint32_t current_timestamp_ms, model_state_update_reason_t reason){
73     mesh_model_t * generic_on_off_server_model = transition->base_transition.mesh_model;
74     mesh_access_emit_state_update_bool(generic_on_off_server_model->model_packet_handler,
75         mesh_access_get_element_index(generic_on_off_server_model),
76         generic_on_off_server_model->model_identifier,
77         MODEL_STATE_ID_GENERIC_ON_OFF,
78         reason,
79         transition->current_value);
80 }
81 
82 static void mesh_server_transition_state_delayed(mesh_transition_bool_t * transition, uint32_t current_timestamp_ms){
83     transition->base_transition.state = MESH_TRANSITION_STATE_DELAYED;
84     transition->base_transition.phase_start_ms = current_timestamp_ms;
85 }
86 
87 static void mesh_server_transition_state_started(mesh_transition_bool_t * transition, uint32_t current_timestamp_ms){
88     transition->base_transition.state = MESH_TRANSITION_STATE_ACTIVE;
89     transition->base_transition.remaining_delay_time_ms = 0;
90     transition->base_transition.phase_start_ms = current_timestamp_ms;
91     if (transition->target_value == 1){
92         transition->current_value = 1;
93 
94         // publish new value
95         mesh_access_state_changed(transition->base_transition.mesh_model);
96 
97         // notify app
98         mesh_server_transition_state_emit_change(transition, current_timestamp_ms, MODEL_STATE_UPDATE_REASON_TRANSITION_START);
99     }
100 }
101 
102 static void mesh_server_transition_state_done(mesh_transition_bool_t * transition, uint32_t current_timestamp_ms){
103     transition->base_transition.state = MESH_TRANSITION_STATE_IDLE;
104     transition->base_transition.remaining_transition_time_ms = 0;
105     transition->current_value = transition->target_value;
106 
107     // publish new value
108     mesh_access_state_changed(transition->base_transition.mesh_model);
109 
110     // notify transition completed
111     mesh_server_transition_state_emit_change(transition, current_timestamp_ms, MODEL_STATE_UPDATE_REASON_TRANSITION_END);
112 
113     // done, stop transition
114     mesh_access_transitions_remove((mesh_transition_t *)transition);
115 }
116 
117 static void mesh_server_transition_step_bool(mesh_transition_t * base_transition, transition_event_t event, uint32_t current_timestamp_ms){
118     uint32_t time_step_ms;
119     mesh_transition_bool_t * transition = (mesh_transition_bool_t*) base_transition;
120     log_info("Transition: state %x, current timestamp %u, remaining delay %u ms, remaining transition %u ms",
121            transition->base_transition.state, current_timestamp_ms, transition->base_transition.remaining_delay_time_ms, transition->base_transition.remaining_transition_time_ms);
122     switch (transition->base_transition.state){
123         case MESH_TRANSITION_STATE_IDLE:
124             if (event != TRANSITION_START) break;
125             mesh_server_transition_state_delayed(transition, current_timestamp_ms);
126             if (transition->base_transition.remaining_delay_time_ms != 0) break;
127             mesh_server_transition_state_started(transition, current_timestamp_ms);
128             if (transition->base_transition.remaining_transition_time_ms != 0) break;
129             mesh_server_transition_state_done(transition, current_timestamp_ms);
130             break;
131         case MESH_TRANSITION_STATE_DELAYED:
132             if (event != TRANSITION_UPDATE) break;
133             time_step_ms = current_timestamp_ms - transition->base_transition.phase_start_ms;
134             if (transition->base_transition.remaining_delay_time_ms > time_step_ms){
135                 transition->base_transition.remaining_delay_time_ms -= time_step_ms;
136                 transition->base_transition.phase_start_ms += time_step_ms;
137                 break;
138             }
139             mesh_server_transition_state_started(transition, current_timestamp_ms);
140             if (transition->base_transition.remaining_transition_time_ms != 0) break;
141             mesh_server_transition_state_done(transition, current_timestamp_ms);
142             break;
143         case MESH_TRANSITION_STATE_ACTIVE:
144             if (event != TRANSITION_UPDATE) break;
145             time_step_ms = current_timestamp_ms - transition->base_transition.phase_start_ms;
146             if (transition->base_transition.remaining_transition_time_ms > time_step_ms){
147                 transition->base_transition.remaining_transition_time_ms -= time_step_ms;
148                 transition->base_transition.phase_start_ms += time_step_ms;
149                 break;
150             }
151             mesh_server_transition_state_done(transition, current_timestamp_ms);
152             break;
153         default:
154             break;
155     }
156 }
157 
158 static void mesh_server_transition_setup_transition_or_instantaneous_update(mesh_model_t *mesh_model, uint8_t transition_time_gdtt, uint8_t delay_time_gdtt, model_state_update_reason_t reason){
159     mesh_generic_on_off_state_t * generic_on_off_server_state = (mesh_generic_on_off_state_t *)mesh_model->model_data;
160     mesh_transition_t * transition = &generic_on_off_server_state->transition_data.base_transition;
161 
162     // instanteneous update
163     if ((transition_time_gdtt == 0) && (delay_time_gdtt == 0)){
164         generic_on_off_server_state->transition_data.current_value = generic_on_off_server_state->transition_data.target_value;
165         transition->phase_start_ms = 0;
166         transition->remaining_delay_time_ms = 0;
167         transition->remaining_transition_time_ms = 0;
168         transition->state = MESH_TRANSITION_STATE_IDLE;
169 
170         mesh_access_emit_state_update_bool(mesh_model->model_packet_handler,
171             mesh_access_get_element_index(mesh_model),
172             mesh_model->model_identifier,
173             MODEL_STATE_ID_GENERIC_ON_OFF,
174             reason,
175             generic_on_off_server_state->transition_data.current_value);
176         return;
177     }
178 
179     // transaction
180     mesh_access_transitions_setup(transition, (mesh_model_t *) mesh_model,
181         transition_time_gdtt, delay_time_gdtt, &mesh_server_transition_step_bool);
182     mesh_access_transitions_add(transition);
183 }
184 
185 
186 // Generic On Off State
187 
188 void mesh_generic_on_off_server_register_packet_handler(mesh_model_t *generic_on_off_server_model, btstack_packet_handler_t transition_events_packet_handler){
189     btstack_assert(generic_on_off_server_model != NULL);
190     btstack_assert(transition_events_packet_handler != NULL);
191     generic_on_off_server_model->model_packet_handler = transition_events_packet_handler;
192 }
193 
194 const mesh_access_message_t mesh_generic_on_off_status_transition = {
195         MESH_GENERIC_ON_OFF_STATUS, "111"
196 };
197 
198 const mesh_access_message_t mesh_generic_on_off_status_instantaneous = {
199         MESH_GENERIC_ON_OFF_STATUS, "1"
200 };
201 
202 static mesh_pdu_t * mesh_generic_on_off_status_message(mesh_model_t *generic_on_off_server_model){
203     btstack_assert(generic_on_off_server_model->model_data != NULL);
204 
205     mesh_generic_on_off_state_t * state = (mesh_generic_on_off_state_t *) generic_on_off_server_model->model_data;
206     // setup message
207     mesh_transport_pdu_t * transport_pdu = NULL;
208     if (state->transition_data.base_transition.remaining_transition_time_ms != 0) {
209         log_info("On/Off Status: value %u, remaining time %u ms", state->transition_data.current_value, state->transition_data.base_transition.remaining_transition_time_ms);
210         uint8_t remaining_time = mesh_access_time_as_gdtt(state->transition_data.base_transition.step_duration_ms, state->transition_data.base_transition.remaining_transition_time_ms);
211         transport_pdu = mesh_access_setup_segmented_message(&mesh_generic_on_off_status_transition, state->transition_data.current_value,
212             state->transition_data.target_value, remaining_time);
213     } else {
214         log_info("On/Off Status: value %u, no transition active", state->transition_data.current_value);
215         transport_pdu = mesh_access_setup_segmented_message(&mesh_generic_on_off_status_instantaneous, state->transition_data.current_value);
216     }
217     return (mesh_pdu_t *) transport_pdu;
218 }
219 
220 static void generic_on_off_get_handler(mesh_model_t *generic_on_off_server_model, mesh_pdu_t * pdu){
221     mesh_transport_pdu_t * transport_pdu = (mesh_transport_pdu_t *) mesh_generic_on_off_status_message(generic_on_off_server_model);
222     if (!transport_pdu) return;
223     generic_server_send_message(mesh_access_get_element_address(generic_on_off_server_model), mesh_pdu_src(pdu), mesh_pdu_netkey_index(pdu), mesh_pdu_appkey_index(pdu),(mesh_pdu_t *) transport_pdu);
224     mesh_access_message_processed(pdu);
225 }
226 
227 // returns if set message was valid
228 static bool generic_on_off_handle_set_message(mesh_model_t *mesh_model, mesh_pdu_t * pdu){
229     btstack_assert(mesh_model != NULL);
230     btstack_assert(mesh_model->model_data != NULL);
231 
232     mesh_access_parser_state_t parser;
233     mesh_access_parser_init(&parser, (mesh_pdu_t*) pdu);
234     uint8_t on_off_value = mesh_access_parser_get_u8(&parser);
235 
236     // check for valid value
237     if (on_off_value > 1) return false;
238 
239     // The TID field is a transaction identifier indicating whether the message is
240     // a new message or a retransmission of a previously sent message
241     mesh_generic_on_off_state_t * generic_on_off_server_state = (mesh_generic_on_off_state_t *)mesh_model->model_data;
242     uint8_t tid = mesh_access_parser_get_u8(&parser);
243     uint8_t transition_time_gdtt = 0;
244     uint8_t delay_time_gdtt = 0;
245 
246     mesh_transition_t * base_transition = generic_on_off_server_get_base_transition(mesh_model);
247     switch (mesh_access_transitions_transaction_status(base_transition, tid, mesh_pdu_src(pdu), mesh_pdu_dst(pdu))){
248         case MESH_TRANSACTION_STATUS_RETRANSMISSION:
249             // ignore on retransmission
250             break;
251         default:
252             mesh_access_transitions_setup_transaction(base_transition, tid, mesh_pdu_src(pdu), mesh_pdu_dst(pdu));
253             generic_on_off_server_state->transition_data.target_value = on_off_value;
254 
255             if (mesh_access_parser_available(&parser) == 2){
256                 //  Generic Default Transition Time format - num_steps (higher 6 bits), step_resolution (lower 2 bits)
257                 transition_time_gdtt = mesh_access_parser_get_u8(&parser);
258                 delay_time_gdtt = mesh_access_parser_get_u8(&parser);
259             }
260             mesh_server_transition_setup_transition_or_instantaneous_update(mesh_model, transition_time_gdtt, delay_time_gdtt, MODEL_STATE_UPDATE_REASON_SET);
261             mesh_access_state_changed(mesh_model);
262             break;
263     }
264     return true;
265 }
266 
267 static void generic_on_off_set_handler(mesh_model_t *generic_on_off_server_model, mesh_pdu_t * pdu){
268     bool send_status = generic_on_off_handle_set_message(generic_on_off_server_model, pdu);
269     if (send_status){
270         mesh_transport_pdu_t * transport_pdu = (mesh_transport_pdu_t *) mesh_generic_on_off_status_message(generic_on_off_server_model);
271         if (transport_pdu) {
272             generic_server_send_message(mesh_access_get_element_address(generic_on_off_server_model), mesh_pdu_src(pdu), mesh_pdu_netkey_index(pdu), mesh_pdu_appkey_index(pdu),(mesh_pdu_t *) transport_pdu);
273         }
274     }
275     mesh_access_message_processed(pdu);
276 }
277 
278 static void generic_on_off_set_unacknowledged_handler(mesh_model_t *generic_on_off_server_model, mesh_pdu_t * pdu){
279     generic_on_off_handle_set_message(generic_on_off_server_model, pdu);
280     mesh_access_message_processed(pdu);
281 }
282 
283 // Generic On Off Message
284 const static mesh_operation_t mesh_generic_on_off_model_operations[] = {
285     { MESH_GENERIC_ON_OFF_GET,                                   0, generic_on_off_get_handler },
286     { MESH_GENERIC_ON_OFF_SET,                                   2, generic_on_off_set_handler },
287     { MESH_GENERIC_ON_OFF_SET_UNACKNOWLEDGED,                    2, generic_on_off_set_unacknowledged_handler },
288     { 0, 0, NULL }
289 };
290 
291 const mesh_operation_t * mesh_generic_on_off_server_get_operations(void){
292     return mesh_generic_on_off_model_operations;
293 }
294 
295 void mesh_generic_on_off_server_set(mesh_model_t * mesh_model, uint8_t on_off_value, uint8_t transition_time_gdtt, uint8_t delay_time_gdtt){
296     mesh_generic_on_off_state_t * generic_on_off_server_state = (mesh_generic_on_off_state_t *)mesh_model->model_data;
297     generic_on_off_server_state->transition_data.target_value = on_off_value;
298 
299     mesh_server_transition_setup_transition_or_instantaneous_update(mesh_model, transition_time_gdtt, delay_time_gdtt, MODEL_STATE_UPDATE_REASON_APPLICATION_CHANGE);
300     mesh_access_state_changed(mesh_model);
301 }
302 
303 uint8_t mesh_generic_on_off_server_get(mesh_model_t *generic_on_off_server_model){
304     mesh_generic_on_off_state_t * generic_on_off_server_state = (mesh_generic_on_off_state_t *)generic_on_off_server_model->model_data;
305     return generic_on_off_server_state->transition_data.current_value;
306 }
307 
308 void mesh_generic_on_off_server_set_publication_model(mesh_model_t *generic_on_off_server_model, mesh_publication_model_t * publication_model){
309     if (generic_on_off_server_model == NULL) return;
310     if (publication_model == NULL) return;
311     publication_model->publish_state_fn = &mesh_generic_on_off_status_message;
312     generic_on_off_server_model->publication_model = publication_model;
313 }
314 
315