3 * Author Karsten Keil <kkeil@novell.com>
5 * Copyright 2008 by Karsten Keil <kkeil@novell.com>
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License version 2 as
9 * published by the Free Software Foundation.
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
19 #include <linux/module.h>
20 #include <linux/mISDNhw.h>
30 struct FsmTimer timer;
33 dchannel_l1callback *dcb;
36 #define TIMER3_VALUE 7000
39 struct Fsm l1fsm_s = {NULL, 0, 0, NULL, NULL};
51 #define L1S_STATE_COUNT (ST_L1_F8+1)
53 static char *strL1SState[] =
79 #define L1_EVENT_COUNT (EV_TIMER3 + 1)
81 static char *strL1Event[] =
98 l1m_debug(struct FsmInst *fi, char *fmt, ...)
100 struct layer1 *l1 = fi->userdata;
104 printk(KERN_DEBUG "%s: ", dev_name(&l1->dch->dev.dev));
111 l1_reset(struct FsmInst *fi, int event, void *arg)
113 mISDN_FsmChangeState(fi, ST_L1_F3);
117 l1_deact_cnf(struct FsmInst *fi, int event, void *arg)
119 struct layer1 *l1 = fi->userdata;
121 mISDN_FsmChangeState(fi, ST_L1_F3);
122 if (test_bit(FLG_L1_ACTIVATING, &l1->Flags))
123 l1->dcb(l1->dch, HW_POWERUP_REQ);
127 l1_deact_req_s(struct FsmInst *fi, int event, void *arg)
129 struct layer1 *l1 = fi->userdata;
131 mISDN_FsmChangeState(fi, ST_L1_F3);
132 mISDN_FsmRestartTimer(&l1->timer, 550, EV_TIMER_DEACT, NULL, 2);
133 test_and_set_bit(FLG_L1_DEACTTIMER, &l1->Flags);
137 l1_power_up_s(struct FsmInst *fi, int event, void *arg)
139 struct layer1 *l1 = fi->userdata;
141 if (test_bit(FLG_L1_ACTIVATING, &l1->Flags)) {
142 mISDN_FsmChangeState(fi, ST_L1_F4);
143 l1->dcb(l1->dch, INFO3_P8);
145 mISDN_FsmChangeState(fi, ST_L1_F3);
149 l1_go_F5(struct FsmInst *fi, int event, void *arg)
151 mISDN_FsmChangeState(fi, ST_L1_F5);
155 l1_go_F8(struct FsmInst *fi, int event, void *arg)
157 mISDN_FsmChangeState(fi, ST_L1_F8);
161 l1_info2_ind(struct FsmInst *fi, int event, void *arg)
163 struct layer1 *l1 = fi->userdata;
165 mISDN_FsmChangeState(fi, ST_L1_F6);
166 l1->dcb(l1->dch, INFO3_P8);
170 l1_info4_ind(struct FsmInst *fi, int event, void *arg)
172 struct layer1 *l1 = fi->userdata;
174 mISDN_FsmChangeState(fi, ST_L1_F7);
175 l1->dcb(l1->dch, INFO3_P8);
176 if (test_and_clear_bit(FLG_L1_DEACTTIMER, &l1->Flags))
177 mISDN_FsmDelTimer(&l1->timer, 4);
178 if (!test_bit(FLG_L1_ACTIVATED, &l1->Flags)) {
179 if (test_and_clear_bit(FLG_L1_T3RUN, &l1->Flags))
180 mISDN_FsmDelTimer(&l1->timer, 3);
181 mISDN_FsmRestartTimer(&l1->timer, 110, EV_TIMER_ACT, NULL, 2);
182 test_and_set_bit(FLG_L1_ACTTIMER, &l1->Flags);
187 l1_timer3(struct FsmInst *fi, int event, void *arg)
189 struct layer1 *l1 = fi->userdata;
191 test_and_clear_bit(FLG_L1_T3RUN, &l1->Flags);
192 if (test_and_clear_bit(FLG_L1_ACTIVATING, &l1->Flags)) {
193 if (test_and_clear_bit(FLG_L1_DBLOCKED, &l1->Flags))
194 l1->dcb(l1->dch, HW_D_NOBLOCKED);
195 l1->dcb(l1->dch, PH_DEACTIVATE_IND);
197 if (l1->l1m.state != ST_L1_F6) {
198 mISDN_FsmChangeState(fi, ST_L1_F3);
199 l1->dcb(l1->dch, HW_POWERUP_REQ);
204 l1_timer_act(struct FsmInst *fi, int event, void *arg)
206 struct layer1 *l1 = fi->userdata;
208 test_and_clear_bit(FLG_L1_ACTTIMER, &l1->Flags);
209 test_and_set_bit(FLG_L1_ACTIVATED, &l1->Flags);
210 l1->dcb(l1->dch, PH_ACTIVATE_IND);
214 l1_timer_deact(struct FsmInst *fi, int event, void *arg)
216 struct layer1 *l1 = fi->userdata;
218 test_and_clear_bit(FLG_L1_DEACTTIMER, &l1->Flags);
219 test_and_clear_bit(FLG_L1_ACTIVATED, &l1->Flags);
220 if (test_and_clear_bit(FLG_L1_DBLOCKED, &l1->Flags))
221 l1->dcb(l1->dch, HW_D_NOBLOCKED);
222 l1->dcb(l1->dch, PH_DEACTIVATE_IND);
223 l1->dcb(l1->dch, HW_DEACT_REQ);
227 l1_activate_s(struct FsmInst *fi, int event, void *arg)
229 struct layer1 *l1 = fi->userdata;
231 mISDN_FsmRestartTimer(&l1->timer, TIMER3_VALUE, EV_TIMER3, NULL, 2);
232 test_and_set_bit(FLG_L1_T3RUN, &l1->Flags);
233 l1->dcb(l1->dch, HW_RESET_REQ);
237 l1_activate_no(struct FsmInst *fi, int event, void *arg)
239 struct layer1 *l1 = fi->userdata;
241 if ((!test_bit(FLG_L1_DEACTTIMER, &l1->Flags)) &&
242 (!test_bit(FLG_L1_T3RUN, &l1->Flags))) {
243 test_and_clear_bit(FLG_L1_ACTIVATING, &l1->Flags);
244 if (test_and_clear_bit(FLG_L1_DBLOCKED, &l1->Flags))
245 l1->dcb(l1->dch, HW_D_NOBLOCKED);
246 l1->dcb(l1->dch, PH_DEACTIVATE_IND);
250 static struct FsmNode L1SFnList[] =
252 {ST_L1_F3, EV_PH_ACTIVATE, l1_activate_s},
253 {ST_L1_F6, EV_PH_ACTIVATE, l1_activate_no},
254 {ST_L1_F8, EV_PH_ACTIVATE, l1_activate_no},
255 {ST_L1_F3, EV_RESET_IND, l1_reset},
256 {ST_L1_F4, EV_RESET_IND, l1_reset},
257 {ST_L1_F5, EV_RESET_IND, l1_reset},
258 {ST_L1_F6, EV_RESET_IND, l1_reset},
259 {ST_L1_F7, EV_RESET_IND, l1_reset},
260 {ST_L1_F8, EV_RESET_IND, l1_reset},
261 {ST_L1_F3, EV_DEACT_CNF, l1_deact_cnf},
262 {ST_L1_F4, EV_DEACT_CNF, l1_deact_cnf},
263 {ST_L1_F5, EV_DEACT_CNF, l1_deact_cnf},
264 {ST_L1_F6, EV_DEACT_CNF, l1_deact_cnf},
265 {ST_L1_F7, EV_DEACT_CNF, l1_deact_cnf},
266 {ST_L1_F8, EV_DEACT_CNF, l1_deact_cnf},
267 {ST_L1_F6, EV_DEACT_IND, l1_deact_req_s},
268 {ST_L1_F7, EV_DEACT_IND, l1_deact_req_s},
269 {ST_L1_F8, EV_DEACT_IND, l1_deact_req_s},
270 {ST_L1_F3, EV_POWER_UP, l1_power_up_s},
271 {ST_L1_F4, EV_ANYSIG_IND, l1_go_F5},
272 {ST_L1_F6, EV_ANYSIG_IND, l1_go_F8},
273 {ST_L1_F7, EV_ANYSIG_IND, l1_go_F8},
274 {ST_L1_F3, EV_INFO2_IND, l1_info2_ind},
275 {ST_L1_F4, EV_INFO2_IND, l1_info2_ind},
276 {ST_L1_F5, EV_INFO2_IND, l1_info2_ind},
277 {ST_L1_F7, EV_INFO2_IND, l1_info2_ind},
278 {ST_L1_F8, EV_INFO2_IND, l1_info2_ind},
279 {ST_L1_F3, EV_INFO4_IND, l1_info4_ind},
280 {ST_L1_F4, EV_INFO4_IND, l1_info4_ind},
281 {ST_L1_F5, EV_INFO4_IND, l1_info4_ind},
282 {ST_L1_F6, EV_INFO4_IND, l1_info4_ind},
283 {ST_L1_F8, EV_INFO4_IND, l1_info4_ind},
284 {ST_L1_F3, EV_TIMER3, l1_timer3},
285 {ST_L1_F4, EV_TIMER3, l1_timer3},
286 {ST_L1_F5, EV_TIMER3, l1_timer3},
287 {ST_L1_F6, EV_TIMER3, l1_timer3},
288 {ST_L1_F8, EV_TIMER3, l1_timer3},
289 {ST_L1_F7, EV_TIMER_ACT, l1_timer_act},
290 {ST_L1_F3, EV_TIMER_DEACT, l1_timer_deact},
291 {ST_L1_F4, EV_TIMER_DEACT, l1_timer_deact},
292 {ST_L1_F5, EV_TIMER_DEACT, l1_timer_deact},
293 {ST_L1_F6, EV_TIMER_DEACT, l1_timer_deact},
294 {ST_L1_F7, EV_TIMER_DEACT, l1_timer_deact},
295 {ST_L1_F8, EV_TIMER_DEACT, l1_timer_deact},
299 release_l1(struct layer1 *l1) {
300 mISDN_FsmDelTimer(&l1->timer, 0);
303 module_put(THIS_MODULE);
308 l1_event(struct layer1 *l1, u_int event)
316 mISDN_FsmEvent(&l1->l1m, EV_RESET_IND, NULL);
319 mISDN_FsmEvent(&l1->l1m, EV_DEACT_IND, NULL);
322 mISDN_FsmEvent(&l1->l1m, EV_POWER_UP, NULL);
325 mISDN_FsmEvent(&l1->l1m, EV_DEACT_CNF, NULL);
328 mISDN_FsmEvent(&l1->l1m, EV_ANYSIG_IND, NULL);
331 mISDN_FsmEvent(&l1->l1m, EV_ANYSIG_IND, NULL);
334 mISDN_FsmEvent(&l1->l1m, EV_INFO2_IND, NULL);
337 mISDN_FsmEvent(&l1->l1m, EV_INFO4_IND, NULL);
340 mISDN_FsmEvent(&l1->l1m, EV_INFO4_IND, NULL);
342 case PH_ACTIVATE_REQ:
343 if (test_bit(FLG_L1_ACTIVATED, &l1->Flags))
344 l1->dcb(l1->dch, PH_ACTIVATE_IND);
346 test_and_set_bit(FLG_L1_ACTIVATING, &l1->Flags);
347 mISDN_FsmEvent(&l1->l1m, EV_PH_ACTIVATE, NULL);
354 if (*debug & DEBUG_L1)
355 printk(KERN_DEBUG "%s %x unhandled\n",
361 EXPORT_SYMBOL(l1_event);
364 create_l1(struct dchannel *dch, dchannel_l1callback *dcb) {
367 nl1 = kzalloc(sizeof(struct layer1), GFP_ATOMIC);
369 printk(KERN_ERR "kmalloc struct layer1 failed\n");
372 nl1->l1m.fsm = &l1fsm_s;
373 nl1->l1m.state = ST_L1_F3;
375 nl1->l1m.debug = *debug & DEBUG_L1_FSM;
376 nl1->l1m.userdata = nl1;
377 nl1->l1m.userint = 0;
378 nl1->l1m.printdebug = l1m_debug;
381 mISDN_FsmInitTimer(&nl1->l1m, &nl1->timer);
382 __module_get(THIS_MODULE);
386 EXPORT_SYMBOL(create_l1);
392 l1fsm_s.state_count = L1S_STATE_COUNT;
393 l1fsm_s.event_count = L1_EVENT_COUNT;
394 l1fsm_s.strEvent = strL1Event;
395 l1fsm_s.strState = strL1SState;
396 mISDN_FsmNew(&l1fsm_s, L1SFnList, ARRAY_SIZE(L1SFnList));
403 mISDN_FsmFree(&l1fsm_s);