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Vadim Yanitskiy89fc14b2017-06-16 21:00:29 +07001/* -*- c++ -*- */
2/* @file
3 * @author Vadim Yanitskiy <axilirator@gmail.com>
4 * @section LICENSE
5 *
6 * Gr-gsm is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 3, or (at your option)
9 * any later version.
10 *
11 * Gr-gsm 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.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with gr-gsm; see the file COPYING. If not, write to
18 * the Free Software Foundation, Inc., 51 Franklin Street,
19 * Boston, MA 02110-1301, USA.
20 *
21 */
22
23#ifdef HAVE_CONFIG_H
24#include "config.h"
25#endif
26
27#include <gnuradio/io_signature.h>
28#include <boost/lexical_cast.hpp>
29
30#include "udp_socket.h"
Vadim Yanitskiye601c362017-10-17 08:24:25 +070031#include "trx_burst_if_impl.h"
Vadim Yanitskiy89fc14b2017-06-16 21:00:29 +070032
Vadim Yanitskiyac3a5272017-07-19 03:05:07 +070033#define BURST_SIZE 148
34#define DATA_IF_MTU 160
35
Vadim Yanitskiy1d6b6282017-07-19 14:23:21 +070036/**
37 * 41-bit RACH synchronization sequence
38 * GSM 05.02 Chapter 5.2.7 Access burst (AB)
39 */
40static uint8_t rach_synch_seq[] = {
41 0, 1, 0, 0, 1, 0, 1, 1, 0, 1, 1, 1, 1, 1,
42 1, 1, 1, 0, 0, 1, 1, 0, 0, 1, 1, 0, 1, 0,
43 1, 0, 1, 0, 0, 0, 1, 1, 1, 1, 0, 0, 0,
44};
45
Vadim Yanitskiy89fc14b2017-06-16 21:00:29 +070046namespace gr {
Piotr Krysik264fbf62017-11-05 12:25:51 +010047 namespace gsm {
Vadim Yanitskiy89fc14b2017-06-16 21:00:29 +070048
Vadim Yanitskiye601c362017-10-17 08:24:25 +070049 trx_burst_if::sptr
50 trx_burst_if::make(
Vadim Yanitskiy89fc14b2017-06-16 21:00:29 +070051 const std::string &remote_addr,
52 const std::string &base_port)
53 {
54 int base_port_int = boost::lexical_cast<int> (base_port);
55
56 return gnuradio::get_initial_sptr
Vadim Yanitskiye601c362017-10-17 08:24:25 +070057 (new trx_burst_if_impl(remote_addr, base_port_int));
Vadim Yanitskiy89fc14b2017-06-16 21:00:29 +070058 }
59
60 /*
61 * The private constructor
62 */
Vadim Yanitskiye601c362017-10-17 08:24:25 +070063 trx_burst_if_impl::trx_burst_if_impl(
64 const std::string &remote_addr,
65 int base_port
66 ) : gr::block("trx_burst_if",
Vadim Yanitskiy89fc14b2017-06-16 21:00:29 +070067 gr::io_signature::make(0, 0, 0),
68 gr::io_signature::make(0, 0, 0))
69 {
70 message_port_register_in(pmt::mp("bursts"));
Vadim Yanitskiyac3a5272017-07-19 03:05:07 +070071 message_port_register_out(pmt::mp("bursts"));
72
73 // Bind a port handler
Vadim Yanitskiy89fc14b2017-06-16 21:00:29 +070074 set_msg_handler(pmt::mp("bursts"),
Vadim Yanitskiye601c362017-10-17 08:24:25 +070075 boost::bind(&trx_burst_if_impl::handle_dl_burst, this, _1));
Vadim Yanitskiy89fc14b2017-06-16 21:00:29 +070076
77 // Prepare port numbers
Vadim Yanitskiy89fc14b2017-06-16 21:00:29 +070078 std::string data_src_port = boost::lexical_cast<std::string> (base_port + 2);
79 std::string data_dst_port = boost::lexical_cast<std::string> (base_port + 102);
80
Vadim Yanitskiy6bac5742017-10-17 08:52:27 +070081 // Init DATA interface
Vadim Yanitskiyac3a5272017-07-19 03:05:07 +070082 d_data_sock = new udp_socket(remote_addr,
83 data_src_port, data_dst_port, DATA_IF_MTU);
Vadim Yanitskiyac3a5272017-07-19 03:05:07 +070084
85 // Bind DATA interface handler
86 d_data_sock->udp_rx_handler = boost::bind(
Vadim Yanitskiye601c362017-10-17 08:24:25 +070087 &trx_burst_if_impl::handle_ul_burst, this, _1, _2);
Vadim Yanitskiy5b7c60a2017-07-19 17:30:44 +070088
89 // Init timeslot filter
90 d_ts_filter_tn = -1;
Vadim Yanitskiy89fc14b2017-06-16 21:00:29 +070091 }
92
93 /*
94 * Our virtual destructor.
95 */
Vadim Yanitskiye601c362017-10-17 08:24:25 +070096 trx_burst_if_impl::~trx_burst_if_impl()
Vadim Yanitskiy89fc14b2017-06-16 21:00:29 +070097 {
98 // Release all UDP sockets and free memory
99 delete d_data_sock;
Vadim Yanitskiy89fc14b2017-06-16 21:00:29 +0700100 }
101
102 /*
Vadim Yanitskiy5b7c60a2017-07-19 17:30:44 +0700103 * Timeslot filter API (getter and setter)
104 */
105 void
Vadim Yanitskiye601c362017-10-17 08:24:25 +0700106 trx_burst_if_impl::ts_filter_set_tn(int tn)
Vadim Yanitskiy5b7c60a2017-07-19 17:30:44 +0700107 {
108 d_ts_filter_tn = (tn >= 0 && tn <= 7) ? tn : -1;
109 }
110
111 int
Vadim Yanitskiye601c362017-10-17 08:24:25 +0700112 trx_burst_if_impl::ts_filter_get_tn(void)
Vadim Yanitskiy5b7c60a2017-07-19 17:30:44 +0700113 {
114 return d_ts_filter_tn;
115 }
116
117 /*
Vadim Yanitskiy1d6b6282017-07-19 14:23:21 +0700118 * Check if burst is a RACH burst
119 */
Vadim Yanitskiye601c362017-10-17 08:24:25 +0700120 bool trx_burst_if_impl::detect_rach(uint8_t *burst)
Vadim Yanitskiy1d6b6282017-07-19 14:23:21 +0700121 {
122 // Compare synchronization sequence
123 for (int i = 0; i < 41; i++)
124 if (burst[i + 8] != rach_synch_seq[i])
125 return false;
126
127 // Make sure TB and GP are filled by 0x00
128 for (int i = 0; i < 63; i++)
129 if (burst[i + 85] != 0x00)
130 return false;
131
132 return true;
133 }
134
135 /*
Vadim Yanitskiy89fc14b2017-06-16 21:00:29 +0700136 * Create an UDP payload with burst bits
137 * and some channel data.
138 */
139 void
Vadim Yanitskiye601c362017-10-17 08:24:25 +0700140 trx_burst_if_impl::burst_pack(pmt::pmt_t msg, uint8_t *buf)
Vadim Yanitskiy89fc14b2017-06-16 21:00:29 +0700141 {
142 pmt::pmt_t header_plus_burst = pmt::cdr(msg);
143
144 // Extract GSMTAP header from message
145 gsmtap_hdr *header = (gsmtap_hdr *)
146 pmt::blob_data(header_plus_burst);
147
148 // Pack timeslot index
149 buf[0] = header->timeslot;
150
151 // Extract frame number
152 uint32_t frame_nr = be32toh(header->frame_number);
153
Vadim Yanitskiy89fc14b2017-06-16 21:00:29 +0700154 // Pack frame number
155 buf[1] = (frame_nr >> 24) & 0xff;
156 buf[2] = (frame_nr >> 16) & 0xff;
157 buf[3] = (frame_nr >> 8) & 0xff;
158 buf[4] = (frame_nr >> 0) & 0xff;
159
160 // Pack RSSI (-dBm)
161 buf[5] = -(uint8_t) header->signal_dbm;
162
163 // Pack correlator timing offset (TOA)
164 // FIXME: where to find this value?
165 buf[6] = 0;
166 buf[7] = 0;
167
168 // Extract bits {0..1} from message
169 // Despite GR-GSM uses int8_t, they are not real sbits {-127..127}
170 uint8_t *burst = (uint8_t *)
171 (pmt::blob_data(header_plus_burst)) + sizeof(gsmtap_hdr);
172
173 // Convert to transceiver interface specific bits {255..0}
174 for (int i = 0; i < 148; i++)
175 buf[8 + i] = burst[i] ? 255 : 0;
Vadim Yanitskiyc36c4982017-07-16 23:16:54 +0700176
177 // Fill two unused bytes
178 buf[156] = 0x00;
179 buf[157] = 0x00;
Vadim Yanitskiy89fc14b2017-06-16 21:00:29 +0700180 }
181
182 void
Vadim Yanitskiye601c362017-10-17 08:24:25 +0700183 trx_burst_if_impl::handle_dl_burst(pmt::pmt_t msg)
Vadim Yanitskiy89fc14b2017-06-16 21:00:29 +0700184 {
185 // 8 bytes of header + 148 bytes of burst
Vadim Yanitskiyc36c4982017-07-16 23:16:54 +0700186 // + two unused, but required bytes
187 // otherwise bursts would be rejected
188 uint8_t buf[158];
Vadim Yanitskiy89fc14b2017-06-16 21:00:29 +0700189
190 // Compose a new UDP payload with burst
191 burst_pack(msg, buf);
192
Vadim Yanitskiy5b7c60a2017-07-19 17:30:44 +0700193 // Timeslot filter
194 if (d_ts_filter_tn != -1 && buf[0] != d_ts_filter_tn)
195 return;
196
Vadim Yanitskiy89fc14b2017-06-16 21:00:29 +0700197 // Send a burst
Vadim Yanitskiyc36c4982017-07-16 23:16:54 +0700198 d_data_sock->udp_send(buf, 158);
Vadim Yanitskiy89fc14b2017-06-16 21:00:29 +0700199 }
200
Vadim Yanitskiyac3a5272017-07-19 03:05:07 +0700201 void
Vadim Yanitskiye601c362017-10-17 08:24:25 +0700202 trx_burst_if_impl::handle_ul_burst(uint8_t *payload, size_t len)
Vadim Yanitskiyac3a5272017-07-19 03:05:07 +0700203 {
204 // Check length according to the protocol
205 if (len != 154)
206 return;
207
208 /* Make sure TS index is correct */
209 if (payload[0] >= 8)
210 return;
211
212 /* Unpack and check frame number */
213 uint32_t fn = (payload[1] << 24)
214 | (payload[2] << 16)
215 | (payload[3] << 8)
216 | payload[4];
217
218 if (fn >= 2715648)
219 return;
220
221 // Prepare a buffer for GSMTAP header and burst
222 uint8_t buf[sizeof(gsmtap_hdr) + BURST_SIZE];
223
224 // Set up pointer to GSMTAP header structure
225 struct gsmtap_hdr *header = (struct gsmtap_hdr *) buf;
226 memset(header, 0x00, sizeof(struct gsmtap_hdr));
227
228 // Fill in basic info
229 header->version = GSMTAP_VERSION;
230 header->hdr_len = sizeof(gsmtap_hdr) / 4;
231 header->type = GSMTAP_TYPE_UM_BURST;
232
233 // Set timeslot index and frame number
234 header->timeslot = payload[0];
235 header->frame_number = htobe32(fn);
236
Vadim Yanitskiy1d6b6282017-07-19 14:23:21 +0700237 // Check if one is a RACH burst
238 header->sub_type = detect_rach(payload + 6) ?
239 GSMTAP_BURST_ACCESS : GSMTAP_BURST_NORMAL;
Vadim Yanitskiyac3a5272017-07-19 03:05:07 +0700240
241 // Copy burst bits (0 & 1) for source message
242 memcpy(buf + sizeof(gsmtap_hdr), payload + 6, BURST_SIZE);
243
244 // Create a pmt blob
245 pmt::pmt_t blob = pmt::make_blob(buf, sizeof(gsmtap_hdr) + BURST_SIZE);
246 pmt::pmt_t msg = pmt::cons(pmt::PMT_NIL, blob);
247
248 /* Send a message to the output */
249 message_port_pub(pmt::mp("bursts"), msg);
250 }
251
Piotr Krysik264fbf62017-11-05 12:25:51 +0100252 } /* namespace gsm */
Vadim Yanitskiy89fc14b2017-06-16 21:00:29 +0700253} /* namespace gr */