blob: 7cb1d177bff1fca254c720c5372e92be819b8a0c [file] [log] [blame]
Andreas Eversberga23c7ee2012-12-18 10:47:28 +01001
2#include <string.h>
3#include <errno.h>
4
5#include <sysmocom/femtobts/superfemto.h>
6#include <sysmocom/femtobts/gsml1prim.h>
7#include <sysmocom/femtobts/gsml1const.h>
8#include <sysmocom/femtobts/gsml1types.h>
9
10#include <osmocom/core/gsmtap.h>
11#include <osmocom/core/talloc.h>
12#include <osmocom/core/timer.h>
13#include <sysmo_l1_if.h>
14#include <gprs_debug.h>
15#include <pcu_l1_if.h>
16
17uint32_t l1if_ts_to_hLayer2(uint8_t trx, uint8_t ts)
18{
19 return (ts << 16) | (trx << 24);
20}
21
22/* allocate a msgb containing a GsmL1_Prim_t */
23struct msgb *l1p_msgb_alloc(void)
24{
25 struct msgb *msg = msgb_alloc(sizeof(GsmL1_Prim_t), "l1_prim");
26
27 if (msg)
28 msg->l1h = msgb_put(msg, sizeof(GsmL1_Prim_t));
29
30 return msg;
31}
32
33static int l1if_req_pdch(struct femtol1_hdl *fl1h, struct msgb *msg)
34{
35 struct osmo_wqueue *wqueue = &fl1h->write_q[MQ_PDTCH_WRITE];
36
37 osmo_wqueue_enqueue(wqueue, msg);
38
39 return 0;
40}
41
42static void *prim_init(GsmL1_Prim_t *prim, GsmL1_PrimId_t id, struct femtol1_hdl *gl1)
43{
44 prim->id = id;
45
46 /* for some reason the hLayer1 field is not always at the same position
47 * in the GsmL1_Prim_t, so we have to have this ugly case statement here... */
48 switch (id) {
49 case GsmL1_PrimId_MphInitReq:
50 //prim->u.mphInitReq.hLayer1 = gl1->hLayer1;
51 break;
52 case GsmL1_PrimId_MphCloseReq:
53 prim->u.mphCloseReq.hLayer1 = gl1->hLayer1;
54 break;
55 case GsmL1_PrimId_MphConnectReq:
56 prim->u.mphConnectReq.hLayer1 = gl1->hLayer1;
57 break;
58 case GsmL1_PrimId_MphDisconnectReq:
59 prim->u.mphDisconnectReq.hLayer1 = gl1->hLayer1;
60 break;
61 case GsmL1_PrimId_MphActivateReq:
62 prim->u.mphActivateReq.hLayer1 = gl1->hLayer1;
63 break;
64 case GsmL1_PrimId_MphDeactivateReq:
65 prim->u.mphDeactivateReq.hLayer1 = gl1->hLayer1;
66 break;
67 case GsmL1_PrimId_MphConfigReq:
68 prim->u.mphConfigReq.hLayer1 = gl1->hLayer1;
69 break;
70 case GsmL1_PrimId_MphMeasureReq:
71 prim->u.mphMeasureReq.hLayer1 = gl1->hLayer1;
72 break;
73 case GsmL1_PrimId_MphInitCnf:
74 case GsmL1_PrimId_MphCloseCnf:
75 case GsmL1_PrimId_MphConnectCnf:
76 case GsmL1_PrimId_MphDisconnectCnf:
77 case GsmL1_PrimId_MphActivateCnf:
78 case GsmL1_PrimId_MphDeactivateCnf:
79 case GsmL1_PrimId_MphConfigCnf:
80 case GsmL1_PrimId_MphMeasureCnf:
81 break;
82 case GsmL1_PrimId_MphTimeInd:
83 break;
84 case GsmL1_PrimId_MphSyncInd:
85 break;
86 case GsmL1_PrimId_PhEmptyFrameReq:
87 prim->u.phEmptyFrameReq.hLayer1 = gl1->hLayer1;
88 break;
89 case GsmL1_PrimId_PhDataReq:
90 prim->u.phDataReq.hLayer1 = gl1->hLayer1;
91 break;
92 case GsmL1_PrimId_PhConnectInd:
93 break;
94 case GsmL1_PrimId_PhReadyToSendInd:
95 break;
96 case GsmL1_PrimId_PhDataInd:
97 break;
98 case GsmL1_PrimId_PhRaInd:
99 break;
100 default:
101 LOGP(DL1IF, LOGL_ERROR, "unknown L1 primitive %u\n", id);
102 break;
103 }
104 return &prim->u;
105}
106
107struct sapi_dir {
108 GsmL1_Sapi_t sapi;
109 GsmL1_Dir_t dir;
110};
111
112static const struct sapi_dir pdtch_sapis[] = {
113 { GsmL1_Sapi_Pdtch, GsmL1_Dir_TxDownlink },
114 { GsmL1_Sapi_Pdtch, GsmL1_Dir_RxUplink },
115 { GsmL1_Sapi_Ptcch, GsmL1_Dir_TxDownlink },
116 { GsmL1_Sapi_Prach, GsmL1_Dir_RxUplink },
117#if 0
118 { GsmL1_Sapi_Ptcch, GsmL1_Dir_RxUplink },
119 { GsmL1_Sapi_Pacch, GsmL1_Dir_TxDownlink },
120#endif
121};
122
123
124/* connect PDTCH */
125int l1if_connect_pdch(void *obj, uint8_t ts)
126{
127 struct femtol1_hdl *fl1h = obj;
128 struct msgb *msg = l1p_msgb_alloc();
129 GsmL1_MphConnectReq_t *cr;
130
131 cr = prim_init(msgb_l1prim(msg), GsmL1_PrimId_MphConnectReq, fl1h);
132 cr->u8Tn = ts;
133 cr->logChComb = GsmL1_LogChComb_XIII;
134
135 return l1if_req_pdch(fl1h, msg);
136}
137
138static int handle_ph_readytosend_ind(struct femtol1_hdl *fl1h,
139 GsmL1_PhReadyToSendInd_t *rts_ind)
140{
141 struct gsm_time g_time;
142 int rc = 0;
143
144 gsm_fn2gsmtime(&g_time, rts_ind->u32Fn);
145
146 DEBUGP(DL1IF, "Rx PH-RTS.ind %02u/%02u/%02u SAPI=%s\n",
147 g_time.t1, g_time.t2, g_time.t3,
148 get_value_string(femtobts_l1sapi_names, rts_ind->sapi));
149
150 switch (rts_ind->sapi) {
151 case GsmL1_Sapi_Pdtch:
152 case GsmL1_Sapi_Pacch:
153 rc = pcu_rx_rts_req_pdtch((long)fl1h->priv, rts_ind->u8Tn,
154 rts_ind->u16Arfcn, rts_ind->u32Fn, rts_ind->u8BlockNbr);
155 case GsmL1_Sapi_Ptcch:
156 // FIXME
157 default:
158 break;
159 }
160
161 return rc;
162}
163
164static int handle_ph_data_ind(struct femtol1_hdl *fl1h,
165 GsmL1_PhDataInd_t *data_ind, struct msgb *l1p_msg)
166{
167 int rc = 0;
168
169 gsmtap_send(fl1h->gsmtap, data_ind->u16Arfcn | GSMTAP_ARFCN_F_UPLINK,
170 data_ind->u8Tn, GSMTAP_CHANNEL_PACCH, 0,
171 data_ind->u32Fn, 0, 0, data_ind->msgUnitParam.u8Buffer,
172 data_ind->msgUnitParam.u8Size);
173
174 DEBUGP(DL1IF, "Rx PH-DATA.ind %s (hL2 %08x): %s",
175 get_value_string(femtobts_l1sapi_names, data_ind->sapi),
176 data_ind->hLayer2,
177 osmo_hexdump(data_ind->msgUnitParam.u8Buffer,
178 data_ind->msgUnitParam.u8Size));
179
180 switch (data_ind->sapi) {
181 case GsmL1_Sapi_Pdtch:
182 case GsmL1_Sapi_Pacch:
183 /* drop incomplete UL block */
184 if (data_ind->msgUnitParam.u8Buffer[0]
185 != GsmL1_PdtchPlType_Full)
186 break;
187 /* PDTCH / PACCH frame handling */
188 pcu_rx_data_ind_pdtch((long)fl1h->priv, data_ind->u8Tn,
189 data_ind->msgUnitParam.u8Buffer + 1,
190 data_ind->msgUnitParam.u8Size - 1,
191 data_ind->u32Fn);
192 break;
193 case GsmL1_Sapi_Ptcch:
194 // FIXME
195 break;
196 default:
197 LOGP(DL1IF, LOGL_NOTICE, "Rx PH-DATA.ind for unknown L1 SAPI %s\n",
198 get_value_string(femtobts_l1sapi_names, data_ind->sapi));
199 break;
200 }
201
202 return rc;
203}
204
205#define MIN_QUAL_RACH 5.0f
206
207static int handle_ph_ra_ind(struct femtol1_hdl *fl1h, GsmL1_PhRaInd_t *ra_ind)
208{
209 uint8_t acc_delay;
210
211 if (ra_ind->measParam.fLinkQuality < MIN_QUAL_RACH)
212 return 0;
213
214 DEBUGP(DL1IF, "Rx PH-RA.ind");
215
216 /* check for under/overflow / sign */
217 if (ra_ind->measParam.i16BurstTiming < 0)
218 acc_delay = 0;
219 else
220 acc_delay = ra_ind->measParam.i16BurstTiming >> 2;
221#if 0
222 if (acc_delay > bts->max_ta) {
223 LOGP(DL1C, LOGL_INFO, "ignoring RACH request %u > max_ta(%u)\n",
224 acc_delay, btsb->max_ta);
225 return 0;
226 }
227#endif
228
229 return 0;
230}
231
232
233/* handle any random indication from the L1 */
234int l1if_handle_l1prim(int wq, struct femtol1_hdl *fl1h, struct msgb *msg)
235{
236 GsmL1_Prim_t *l1p = msgb_l1prim(msg);
237 int rc = 0;
238
239 LOGP(DL1IF, LOGL_DEBUG, "Rx L1 prim %s on queue %d\n",
240 get_value_string(femtobts_l1prim_names, l1p->id), wq);
241
242 switch (l1p->id) {
243#if 0
244 case GsmL1_PrimId_MphTimeInd:
245 rc = handle_mph_time_ind(fl1h, &l1p->u.mphTimeInd);
246 break;
247 case GsmL1_PrimId_MphSyncInd:
248 break;
249 case GsmL1_PrimId_PhConnectInd:
250 break;
251#endif
252 case GsmL1_PrimId_PhReadyToSendInd:
253 rc = handle_ph_readytosend_ind(fl1h, &l1p->u.phReadyToSendInd);
254 break;
255 case GsmL1_PrimId_PhDataInd:
256 rc = handle_ph_data_ind(fl1h, &l1p->u.phDataInd, msg);
257 break;
258 case GsmL1_PrimId_PhRaInd:
259 rc = handle_ph_ra_ind(fl1h, &l1p->u.phRaInd);
260 break;
261 default:
262 break;
263 }
264
265 msgb_free(msg);
266
267 return rc;
268}
269
270int l1if_handle_sysprim(struct femtol1_hdl *fl1h, struct msgb *msg)
271{
272 return -ENOTSUP;
273}
274
275/* send packet data request to L1 */
276int l1if_pdch_req(void *obj, uint8_t ts, int is_ptcch, uint32_t fn,
277 uint16_t arfcn, uint8_t block_nr, uint8_t *data, uint8_t len)
278{
279 struct femtol1_hdl *fl1h = obj;
280 struct msgb *msg;
281 GsmL1_Prim_t *l1p;
282 GsmL1_PhDataReq_t *data_req;
283 GsmL1_MsgUnitParam_t *msu_param;
284 struct gsm_time g_time;
285
286 gsm_fn2gsmtime(&g_time, fn);
287
288 DEBUGP(DL1IF, "TX packet data %02u/%02u/%02u is_ptcch=%d ts=%d "
289 "block_nr=%d, arfcn=%d, len=%d\n", g_time.t1, g_time.t2,
290 g_time.t3, is_ptcch, ts, block_nr, arfcn, len);
291
292 msg = l1p_msgb_alloc();
293 l1p = msgb_l1prim(msg);
294 l1p->id = GsmL1_PrimId_PhDataReq;
295 data_req = &l1p->u.phDataReq;
296 data_req->hLayer1 = fl1h->hLayer1;
297 data_req->sapi = (is_ptcch) ? GsmL1_Sapi_Ptcch : GsmL1_Sapi_Pdtch;
298 data_req->subCh = GsmL1_SubCh_NA;
299 data_req->u8BlockNbr = block_nr;
300 data_req->u8Tn = ts;
301 data_req->u32Fn = fn;
302 msu_param = &data_req->msgUnitParam;
303 msu_param->u8Size = len;
304 memcpy(msu_param->u8Buffer, data, len);
305
306 gsmtap_send(fl1h->gsmtap, arfcn, data_req->u8Tn, GSMTAP_CHANNEL_PACCH,
307 0, data_req->u32Fn, 0, 0,
308 data_req->msgUnitParam.u8Buffer,
309 data_req->msgUnitParam.u8Size);
310
311
312 /* transmit */
313 osmo_wqueue_enqueue(&fl1h->write_q[MQ_PDTCH_WRITE], msg);
314
315 return 0;
316}
317
318void *l1if_open_pdch(void *priv, uint32_t hlayer1)
319{
320 struct femtol1_hdl *fl1h;
321 int rc;
322
323 fl1h = talloc_zero(priv, struct femtol1_hdl);
324 if (!fl1h)
325 return NULL;
326
327 fl1h->hLayer1 = hlayer1;
328 fl1h->priv = priv;
329 fl1h->clk_cal = 0;
330 /* default clock source: OCXO */
331 fl1h->clk_src = SuperFemto_ClkSrcId_Ocxo;
332
333 rc = l1if_transport_open(MQ_PDTCH_WRITE, fl1h);
334 if (rc < 0) {
335 talloc_free(fl1h);
336 return NULL;
337 }
338
339 fl1h->gsmtap = gsmtap_source_init("localhost", GSMTAP_UDP_PORT, 1);
340 if (fl1h->gsmtap)
341 gsmtap_source_add_sink(fl1h->gsmtap);
342
343 return fl1h;
344}
345
346static int l1if_close_pdch(void *obj)
347{
348 struct femtol1_hdl *fl1h = obj;
349 if (fl1h)
350 l1if_transport_close(MQ_PDTCH_WRITE, fl1h);
351 return 0;
352}
353