/* GSM Mobile Radio Interface Layer 3 messages on the A-bis interface * 3GPP TS 04.08 version 7.21.0 Release 1998 / ETSI TS 100 940 V7.21.0 */ /* (C) 2008 by Harald Welte * All Rights Reserved * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation; either version 2 of the License, or * (at your option) any later version. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License along * with this program; if not, write to the Free Software Foundation, Inc., * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. * */ #include #include #include #include #include "msgb.h" #include "debug.h" #include "gsm_data.h" #include "gsm_subscriber.h" #include "gsm_04_08.h" #define GSM0408_ALLOC_SIZE 1024 struct gsm_lai { u_int16_t mcc; u_int16_t mnc; u_int16_t lac; }; static void parse_lai(struct gsm_lai *lai, const struct gsm48_loc_area_id *lai48) { u_int8_t dig[4]; /* MCC */ dig[1] = lai48->digits[0] & 0x0f; dig[2] = lai48->digits[0] >> 4; dig[3] = lai48->digits[1] & 0x0f; lai->mcc = dig[3] * 100 + dig[2]; /* MNC */ dig[1] = lai48->digits[1] >> 4; dig[2] = lai48->digits[2] & 0x0f; dig[3] = lai48->digits[2] >> 4; lai->mnc = dig[3] * 100 + dig[2]; lai->lac = lai48->lac; } static void to_bcd(u_int8_t *bcd, u_int16_t val) { bcd[0] = val % 10; val = val / 10; bcd[1] = val % 10; val = val / 10; bcd[2] = val % 10; val = val / 10; } static void generate_lai(struct gsm48_loc_area_id *lai48, u_int16_t mcc, u_int16_t mnc, u_int16_t lac) { u_int8_t bcd[3]; to_bcd(bcd, mcc); lai48->digits[0] = bcd[0] | (bcd[1] << 4); lai48->digits[1] = bcd[2]; to_bcd(bcd, mnc); lai48->digits[2] |= bcd[2] << 4; lai48->digits[3] = bcd[0] | (bcd[1] << 4); lai48->lac = lac; } #define TMSI_LEN 4 #define MID_TMSI_LEN (TMSI_LEN + 2) static void generate_mid_from_tmsi(u_int8_t *buf, u_int8_t *tmsi_bcd) { buf[0] = MID_TMSI_LEN; buf[1] = 0xf0 | GSM_MI_TYPE_TMSI; buf[2] = tmsi_bcd[0]; buf[3] = tmsi_bcd[1]; buf[4] = tmsi_bcd[2]; buf[5] = tmsi_bcd[3]; } static int gsm0408_sendmsg(struct msgb *msg) { /* FIXME: set data pointer to beginning of L3 data object */ return rsl_data_request(msg); } static int gsm0408_rcv_cc(struct msgb *msg) { struct gsm48_hdr *gh = msgb_l3(msg); switch (gh->msg_type & 0xbf) { case GSM48_MT_CC_CALL_CONF: /* Response to SETUP */ DEBUGP(DCC, "CALL CONFIRM\n"); break; case GSM48_MT_CC_RELEASE_COMPL: DEBUGP(DCC, "RELEASE COMPLETE\n"); break; case GSM48_MT_CC_ALERTING: DEBUGP(DCC, "ALERTING\n"); break; case GSM48_MT_CC_CONNECT: DEBUGP(DCC, "CONNECT\n"); /* need to respond with CONNECT_ACK */ break; case GSM48_MT_CC_RELEASE: DEBUGP(DCC, "RELEASE\n"); /* need to respond with RELEASE_COMPLETE */ break; case GSM48_MT_CC_EMERG_SETUP: //DEBUGP(DCC, "EMERGENCY SETUP\n"); case GSM48_MT_CC_SETUP: //DEBUGP(DCC, "SETUP\n"); /* FIXME: continue with CALL_PROCEEDING, ALERTING, CONNECT, RELEASE_COMPLETE */ default: fprintf(stderr, "Unimplemented GSM 04.08 msg type 0x%02x\n", gh->msg_type); break; } } /* Chapter 9.2.14 : Send LOCATION UPDATE REJECT */ int gsm0408_loc_upd_rej(struct gsm_bts_link *bts_link, u_int8_t cause) { struct msgb *msg = msgb_alloc(GSM0408_ALLOC_SIZE); struct gsm48_hdr *gh; msg->bts_link = bts_link; gh = (struct gsm48_hdr *) msgb_put(msg, sizeof(*gh) + 1); gh->proto_discr = GSM48_PDISC_MM; gh->msg_type = GSM48_MT_MM_LOC_UPD_ACCEPT; gh->data[0] = cause; DEBUGP(DMM, "-> LOCATION UPDATE REJECT\n"); return gsm0408_sendmsg(msg); } /* Chapter 9.2.13 : Send LOCATION UPDATE ACCEPT */ int gsm0408_loc_upd_acc(struct gsm_bts_link *bts_link, u_int8_t *tmsi) { struct gsm_bts *bts = bts_link->bts; struct msgb *msg = msgb_alloc(GSM0408_ALLOC_SIZE); struct gsm48_hdr *gh; struct gsm48_loc_area_id *lai; u_int8_t *mid; msg->bts_link = bts_link; gh = (struct gsm48_hdr *) msgb_put(msg, sizeof(*gh)); gh->proto_discr = GSM48_PDISC_MM; gh->msg_type = GSM48_MT_MM_LOC_UPD_ACCEPT; lai = (struct gsm48_loc_area_id *) msgb_put(msg, sizeof(*lai)); generate_lai(lai, bts->network->country_code, bts->network->network_code, bts->location_area_code); mid = msgb_put(msg, MID_TMSI_LEN); generate_mid_from_tmsi(mid, tmsi); DEBUGP(DMM, "-> LOCATION UPDATE ACCEPT\n"); return gsm0408_sendmsg(msg); } /* Chapter 9.2.15 */ static int mm_loc_upd_req(struct msgb *msg) { struct gsm_bts *bts = msg->bts_link->bts; struct gsm48_loc_upd_req *lu; struct gsm_subscriber *subscr; u_int8_t mi_type = lu->mi[0] & GSM_MI_TYPE_MASK; switch (mi_type) { case GSM_MI_TYPE_IMSI: /* look up subscriber based on IMSI */ subscr = subscr_get_by_imsi(&lu->mi[1]); break; case GSM_MI_TYPE_TMSI: /* look up the subscriber based on TMSI, request IMSI if it fails */ subscr = subscr_get_by_tmsi(&lu->mi[1]); if (!subscr) { /* FIXME: send IDENTITY REQUEST message to get IMSI */ //gsm0408_identity_request(...GSM_MI_TYPE_IMSI); } break; case GSM_MI_TYPE_IMEI: case GSM_MI_TYPE_IMEISV: /* no sim card... FIXME: what to do ? */ fprintf(stderr, "Unimplemented mobile identity type\n"); break; default: fprintf(stderr, "Unknown mobile identity type\n"); break; } if (!subscr) { /* 0x16 is congestion */ gsm0408_loc_upd_rej(msg->bts_link, 0x16); return -EINVAL; } subscr_update(subscr, bts); return gsm0408_loc_upd_acc(msg->bts_link, subscr->tmsi); } static int gsm0408_rcv_mm(struct msgb *msg) { struct gsm48_hdr *gh = msgb_l3(msg); int rc; switch (gh->msg_type & 0xbf) { case GSM48_MT_MM_LOC_UPD_REQUEST: DEBUGP(DMM, "LOCATION UPDATE REQUEST\n"); rc = mm_loc_upd_req(msg); break; case GSM48_MT_MM_ID_RESP: case GSM48_MT_MM_TMSI_REALL_COMPL: case GSM48_MT_MM_AUTH_RESP: case GSM48_MT_MM_IMSI_DETACH_IND: case GSM48_MT_MM_CM_SERV_REQ: case GSM48_MT_MM_CM_REEST_REQ: fprintf(stderr, "Unimplemented GSM 04.08 MM msg type 0x%02x\n", gh->msg_type); break; default: fprintf(stderr, "Unknown GSM 04.08 MM msg type 0x%02x\n", gh->msg_type); break; } return rc; } static int gsm0408_rcv_rr(struct msgb *msg) { struct gsm48_hdr *gh = msgb_l3(msg); switch (gh->msg_type) { case GSM48_MT_RR_CLSM_CHG: DEBUGP(DRR, "CLASSMARK CHANGE\n"); /* FIXME: what to do ?!? */ break; case GSM48_MT_RR_PAG_RESP: default: fprintf(stderr, "Unimplemented GSM 04.08 msg type 0x%02x\n", gh->msg_type); break; } return 0; } /* here we pass in a msgb from the RSL->RLL. We expect the l3 pointer to be set */ int gsm0408_rcvmsg(struct msgb *msg) { struct gsm48_hdr *gh = msgb_l3(msg); u_int8_t pdisc = gh->proto_discr & 0x0f; int rc; switch (pdisc) { case GSM48_PDISC_CC: rc = gsm0408_rcv_cc(msg); break; case GSM48_PDISC_MM: rc = gsm0408_rcv_mm(msg); break; case GSM48_PDISC_RR: rc = gsm0408_rcv_rr(msg); break; case GSM48_PDISC_MM_GPRS: case GSM48_PDISC_SM: fprintf(stderr, "Unimplemented GSM 04.08 discriminator 0x%02d\n", pdisc); break; default: fprintf(stderr, "Unknown GSM 04.08 discriminator 0x%02d\n", pdisc); break; } return rc; }