@@ -68,6 +68,6 @@ extern uint8_t gsmtap_sapi_acch;
#define msgb_l1sap_prim(msg) ((struct osmo_phsap_prim *)(msg)->l1h)
-void bts_check_for_first_ciphrd(struct gsm_lchan *lchan,
- uint8_t *data, int len, uint8_t chan_nr);
+int bts_check_for_first_ciphrd(struct gsm_lchan *lchan,
+ uint8_t *data, int len);
#endif /* L1SAP_H */
@@ -155,6 +155,35 @@ static int l1sap_info_time_ind(struct gsm_bts_trx *trx,
return 0;
}
+/* measurement information received from bts model */
+static int l1sap_info_meas_ind(struct gsm_bts_trx *trx,
+ struct osmo_phsap_prim *l1sap,
+ struct info_meas_ind_param *info_meas_ind)
+{
+ struct bts_ul_meas ulm;
+ struct gsm_lchan *lchan;
+
+ DEBUGP(DL1P, "MPH_INFO meas ind chan_nr=%02x\n",
+ info_meas_ind->chan_nr);
+
+ lchan = &trx->ts[L1SAP_CHAN2TS(info_meas_ind->chan_nr)]
+ .lchan[l1sap_chan2ss(info_meas_ind->chan_nr)];
+
+ /* in the GPRS case we are not interested in measurement
+ * processing. The PCU will take care of it */
+ if (lchan->type == GSM_LCHAN_PDTCH)
+ return 0;
+
+ memset(&ulm, 0, sizeof(ulm));
+ ulm.ta_offs_qbits = info_meas_ind->ta_offs_qbits;
+ ulm.ber10k = info_meas_ind->ber10k;
+ ulm.inv_rssi = info_meas_ind->inv_rssi;
+
+ lchan_new_ul_meas(lchan, &ulm);
+
+ return 0;
+}
+
/* any L1 MPH_INFO indication prim recevied from bts model */
static int l1sap_mph_info_ind(struct gsm_bts_trx *trx,
struct osmo_phsap_prim *l1sap, struct mph_info_param *info)
@@ -165,6 +194,9 @@ static int l1sap_mph_info_ind(struct gsm_bts_trx *trx,
case PRIM_INFO_TIME:
rc = l1sap_info_time_ind(trx, l1sap, &info->u.time_ind);
break;
+ case PRIM_INFO_MEAS:
+ rc = l1sap_info_meas_ind(trx, l1sap, &info->u.meas_ind);
+ break;
default:
LOGP(DL1P, LOGL_NOTICE, "unknown MPH_INFO ind type %d\n",
info->type);
@@ -481,44 +513,37 @@ static void radio_link_timeout(struct gsm_lchan *lchan, int bad_frame)
}
}
-static inline void check_for_first_ciphrd(struct gsm_lchan *lchan,
- uint8_t *data, int len,
- uint8_t chan_nr)
+static inline int check_for_first_ciphrd(struct gsm_lchan *lchan,
+ uint8_t *data, int len)
{
uint8_t n_s;
/* if this is the first valid message after enabling Rx
* decryption, we have to enable Tx encryption */
- if (lchan->ciph_state != LCHAN_CIPH_RX_CONF) {
- printf("ciph_State\n");
- return;
- }
+ if (lchan->ciph_state != LCHAN_CIPH_RX_CONF)
+ return 0;
/* HACK: check if it's an I frame, in order to
* ignore some still buffered/queued UI frames received
* before decryption was enabled */
if (data[0] != 0x01)
- return;
+ return 0;
if ((data[1] & 0x01) != 0)
- return;
+ return 0;
n_s = data[1] >> 5;
if (lchan->ciph_ns != n_s)
- return;
-
- lchan->ciph_state = LCHAN_CIPH_TXRX_REQ;
+ return 0;
- /* this check is only introduced to make the test work :/ */
- if (lchan->ts && lchan->ts->trx)
- l1sap_tx_ciph_req(lchan->ts->trx, chan_nr, 1, 0);
+ return 1;
}
/* public helper for the test */
-void bts_check_for_first_ciphrd(struct gsm_lchan *lchan,
- uint8_t *data, int len, uint8_t chan_nr)
+int bts_check_for_first_ciphrd(struct gsm_lchan *lchan,
+ uint8_t *data, int len)
{
- return check_for_first_ciphrd(lchan, data, len, chan_nr);
+ return check_for_first_ciphrd(lchan, data, len);
}
/* DATA received from bts model */
@@ -597,7 +622,8 @@ static int l1sap_ph_data_ind(struct gsm_bts_trx *trx,
} else
le = &lchan->lapdm_ch.lapdm_dcch;
- check_for_first_ciphrd(lchan, data, len, chan_nr);
+ if (check_for_first_ciphrd(lchan, data, len))
+ l1sap_tx_ciph_req(lchan->ts->trx, chan_nr, 0, 1);
/* SDCCH, SACCH and FACCH all go to LAPDm */
msgb_pull(msg, (msg->l2h - msg->data));
@@ -891,20 +891,20 @@ static void dump_meas_res(int ll, GsmL1_MeasParam_t *m)
m->fBer, m->i16BurstTiming);
}
-static int process_meas_res(struct gsm_lchan *lchan, GsmL1_MeasParam_t *m)
+static int process_meas_res(struct gsm_bts_trx *trx, uint8_t chan_nr,
+ GsmL1_MeasParam_t *m)
{
- struct bts_ul_meas ulm;
-
- /* in the GPRS case we are not interested in measurement
- * processing. The PCU will take care of it */
- if (lchan->type == GSM_LCHAN_PDTCH)
- return 0;
-
- ulm.ta_offs_qbits = m->i16BurstTiming;
- ulm.ber10k = (unsigned int) (m->fBer * 100);
- ulm.inv_rssi = (uint8_t) (m->fRssi * -1);
+ struct osmo_phsap_prim l1sap;
+ memset(&l1sap, 0, sizeof(l1sap));
+ osmo_prim_init(&l1sap.oph, SAP_GSM_PH, PRIM_MPH_INFO,
+ PRIM_OP_INDICATION, NULL);
+ l1sap.u.info.type = PRIM_INFO_MEAS;
+ l1sap.u.info.u.meas_ind.chan_nr = chan_nr;
+ l1sap.u.info.u.meas_ind.ta_offs_qbits = m->i16BurstTiming;
+ l1sap.u.info.u.meas_ind.ber10k = (unsigned int) (m->fBer * 100);
+ l1sap.u.info.u.meas_ind.inv_rssi = (uint8_t) (m->fRssi * -1);
- return lchan_new_ul_meas(lchan, &ulm);
+ return l1sap_up(trx, &l1sap);
}
static int handle_ph_data_ind(struct femtol1_hdl *fl1, GsmL1_PhDataInd_t *data_ind,
@@ -940,7 +940,7 @@ static int handle_ph_data_ind(struct femtol1_hdl *fl1, GsmL1_PhDataInd_t *data_i
fn = data_ind->u32Fn;
link_id = (data_ind->sapi == GsmL1_Sapi_Sacch) ? 0x40 : 0x00;
- process_meas_res(lchan, &data_ind->measParam);
+ process_meas_res(trx, chan_nr, &data_ind->measParam);
if (data_ind->measParam.fLinkQuality < fl1->min_qual_norm
&& data_ind->msgUnitParam.u8Size != 0) {
@@ -170,14 +170,17 @@ static void test_sysmobts_cipher(void)
/* Handle message sent before ciphering was received */
memcpy(&unit.u8Buffer[0], too_early_classmark, ARRAY_SIZE(too_early_classmark));
unit.u8Size = ARRAY_SIZE(too_early_classmark);
- bts_check_for_first_ciphrd(&lchan, unit.u8Buffer, unit.u8Size, 0);
+ rc = bts_check_for_first_ciphrd(&lchan, unit.u8Buffer, unit.u8Size);
+ OSMO_ASSERT(rc == 0);
OSMO_ASSERT(lchan.ciph_state == LCHAN_CIPH_RX_CONF);
/* Now send the first ciphered message */
memcpy(&unit.u8Buffer[0], first_ciphered_cipher_cmpl, ARRAY_SIZE(first_ciphered_cipher_cmpl));
unit.u8Size = ARRAY_SIZE(first_ciphered_cipher_cmpl);
- bts_check_for_first_ciphrd(&lchan, unit.u8Buffer, unit.u8Size, 0);
- OSMO_ASSERT(lchan.ciph_state == LCHAN_CIPH_TXRX_REQ);
+ rc = bts_check_for_first_ciphrd(&lchan, unit.u8Buffer, unit.u8Size);
+ OSMO_ASSERT(rc == 1);
+ /* we cannot test for lchan.ciph_state == LCHAN_CIPH_RX_CONF_TX_REQ, as
+ * this happens asynchronously on the other side of the l1sap queue */
}
int main(int argc, char **argv)
From: Andreas Eversberg <jolly@eversberg.eu> This part moves processing of measurement infos from osmo-bts-sysmo to common part. --- include/osmo-bts/l1sap.h | 4 +-- src/common/l1sap.c | 64 +++++++++++++++++++++++++++++------------- src/osmo-bts-sysmo/l1_if.c | 26 ++++++++--------- tests/sysmobts/sysmobts_test.c | 9 ++++-- 4 files changed, 66 insertions(+), 37 deletions(-)