464 lines
20 KiB
C++
464 lines
20 KiB
C++
/* encoding.cpp
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*
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* Copyright (C) 2012 Ivan Klyuchnikov
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* Copyright (C) 2012 Andreas Eversberg <jolly@eversberg.eu>
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* Copyright (C) 2013 by Holger Hans Peter Freyther
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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*/
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#include <encoding.h>
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#include <gprs_rlcmac.h>
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#include <bts.h>
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#include <tbf.h>
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#include <gprs_debug.h>
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// GSM 04.08 9.1.18 Immediate assignment
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int Encoding::write_immediate_assignment(
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struct gprs_rlcmac_bts *bts,
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bitvec * dest, uint8_t downlink, uint8_t ra,
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uint32_t ref_fn, uint8_t ta, uint16_t arfcn, uint8_t ts, uint8_t tsc,
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uint8_t tfi, uint8_t usf, uint32_t tlli,
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uint8_t polling, uint32_t fn, uint8_t single_block, uint8_t alpha,
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uint8_t gamma, int8_t ta_idx)
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{
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unsigned wp = 0;
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uint8_t plen;
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bitvec_write_field(dest, wp,0x0,4); // Skip Indicator
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bitvec_write_field(dest, wp,0x6,4); // Protocol Discriminator
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bitvec_write_field(dest, wp,0x3F,8); // Immediate Assignment Message Type
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// 10.5.2.25b Dedicated mode or TBF
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bitvec_write_field(dest, wp,0x0,1); // spare
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bitvec_write_field(dest, wp,0x0,1); // TMA : Two-message assignment: No meaning
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bitvec_write_field(dest, wp,downlink,1); // Downlink : Downlink assignment to mobile in packet idle mode
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bitvec_write_field(dest, wp,0x1,1); // T/D : TBF or dedicated mode: this message assigns a Temporary Block Flow (TBF).
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bitvec_write_field(dest, wp,0x0,4); // Page Mode
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// GSM 04.08 10.5.2.25a Packet Channel Description
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bitvec_write_field(dest, wp,0x1,5); // Channel type
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bitvec_write_field(dest, wp,ts,3); // TN
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bitvec_write_field(dest, wp,tsc,3); // TSC
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bitvec_write_field(dest, wp,0x0,3); // non-hopping RF channel configuraion
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bitvec_write_field(dest, wp,arfcn,10); // ARFCN
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//10.5.2.30 Request Reference
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bitvec_write_field(dest, wp,ra,8); // RA
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bitvec_write_field(dest, wp,(ref_fn / (26 * 51)) % 32,5); // T1'
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bitvec_write_field(dest, wp,ref_fn % 51,6); // T3
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bitvec_write_field(dest, wp,ref_fn % 26,5); // T2
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// 10.5.2.40 Timing Advance
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bitvec_write_field(dest, wp,0x0,2); // spare
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bitvec_write_field(dest, wp,ta,6); // Timing Advance value
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// No mobile allocation in non-hopping systems.
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// A zero-length LV. Just write L=0.
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bitvec_write_field(dest, wp,0,8);
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if ((wp % 8)) {
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LOGP(DRLCMACUL, LOGL_ERROR, "Length of IMM.ASS without rest "
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"octets is not multiple of 8 bits, PLEASE FIX!\n");
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exit (0);
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}
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plen = wp / 8;
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if (downlink)
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{
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// GSM 04.08 10.5.2.16 IA Rest Octets
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bitvec_write_field(dest, wp, 3, 2); // "HH"
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bitvec_write_field(dest, wp, 1, 2); // "01" Packet Downlink Assignment
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bitvec_write_field(dest, wp,tlli,32); // TLLI
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bitvec_write_field(dest, wp,0x1,1); // switch TFI : on
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bitvec_write_field(dest, wp,tfi,5); // TFI
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bitvec_write_field(dest, wp,0x0,1); // RLC acknowledged mode
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if (alpha) {
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bitvec_write_field(dest, wp,0x1,1); // ALPHA = present
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bitvec_write_field(dest, wp,alpha,4); // ALPHA
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} else {
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bitvec_write_field(dest, wp,0x0,1); // ALPHA = not present
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}
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bitvec_write_field(dest, wp,gamma,5); // GAMMA power control parameter
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bitvec_write_field(dest, wp,polling,1); // Polling Bit
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bitvec_write_field(dest, wp,!polling,1); // TA_VALID ???
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if (ta_idx < 0) {
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bitvec_write_field(dest, wp,0x0,1); // switch TIMING_ADVANCE_INDEX = off
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} else {
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bitvec_write_field(dest, wp,0x1,1); // switch TIMING_ADVANCE_INDEX = on
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bitvec_write_field(dest, wp,ta_idx,4); // TIMING_ADVANCE_INDEX
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}
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if (polling) {
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bitvec_write_field(dest, wp,0x1,1); // TBF Starting TIME present
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bitvec_write_field(dest, wp,(fn / (26 * 51)) % 32,5); // T1'
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bitvec_write_field(dest, wp,fn % 51,6); // T3
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bitvec_write_field(dest, wp,fn % 26,5); // T2
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} else {
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bitvec_write_field(dest, wp,0x0,1); // TBF Starting TIME present
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}
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bitvec_write_field(dest, wp,0x0,1); // P0 not present
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// bitvec_write_field(dest, wp,0x1,1); // P0 not present
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// bitvec_write_field(dest, wp,0xb,4);
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}
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else
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{
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// GMS 04.08 10.5.2.37b 10.5.2.16
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bitvec_write_field(dest, wp, 3, 2); // "HH"
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bitvec_write_field(dest, wp, 0, 2); // "0" Packet Uplink Assignment
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if (single_block) {
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bitvec_write_field(dest, wp, 0, 1); // Block Allocation : Single Block Allocation
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if (alpha) {
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bitvec_write_field(dest, wp,0x1,1); // ALPHA = present
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bitvec_write_field(dest, wp,alpha,4); // ALPHA = present
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} else
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bitvec_write_field(dest, wp,0x0,1); // ALPHA = not present
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bitvec_write_field(dest, wp,gamma,5); // GAMMA power control parameter
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if (ta_idx < 0) {
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bitvec_write_field(dest, wp,0x0,1); // switch TIMING_ADVANCE_INDEX = off
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} else {
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bitvec_write_field(dest, wp,0x1,1); // switch TIMING_ADVANCE_INDEX = on
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bitvec_write_field(dest, wp,ta_idx,4); // TIMING_ADVANCE_INDEX
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}
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bitvec_write_field(dest, wp, 1, 1); // TBF_STARTING_TIME_FLAG
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bitvec_write_field(dest, wp,(fn / (26 * 51)) % 32,5); // T1'
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bitvec_write_field(dest, wp,fn % 51,6); // T3
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bitvec_write_field(dest, wp,fn % 26,5); // T2
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} else {
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bitvec_write_field(dest, wp, 1, 1); // Block Allocation : Not Single Block Allocation
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bitvec_write_field(dest, wp, tfi, 5); // TFI_ASSIGNMENT Temporary Flow Identity
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bitvec_write_field(dest, wp, 0, 1); // POLLING
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bitvec_write_field(dest, wp, 0, 1); // ALLOCATION_TYPE: dynamic
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bitvec_write_field(dest, wp, usf, 3); // USF
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bitvec_write_field(dest, wp, 0, 1); // USF_GRANULARITY
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bitvec_write_field(dest, wp, 0, 1); // "0" power control: Not Present
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bitvec_write_field(dest, wp, bts->initial_cs_ul-1, 2); // CHANNEL_CODING_COMMAND
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bitvec_write_field(dest, wp, 1, 1); // TLLI_BLOCK_CHANNEL_CODING
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if (alpha) {
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bitvec_write_field(dest, wp,0x1,1); // ALPHA = present
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bitvec_write_field(dest, wp,alpha,4); // ALPHA
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} else
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bitvec_write_field(dest, wp,0x0,1); // ALPHA = not present
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bitvec_write_field(dest, wp,gamma,5); // GAMMA power control parameter
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/* note: there is no choise for TAI and no starting time */
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bitvec_write_field(dest, wp, 0, 1); // switch TIMING_ADVANCE_INDEX = off
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bitvec_write_field(dest, wp, 0, 1); // TBF_STARTING_TIME_FLAG
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}
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}
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return plen;
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}
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/* generate uplink assignment */
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void Encoding::write_packet_uplink_assignment(
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struct gprs_rlcmac_bts *bts,
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bitvec * dest, uint8_t old_tfi,
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uint8_t old_downlink, uint32_t tlli, uint8_t use_tlli,
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struct gprs_rlcmac_ul_tbf *tbf, uint8_t poll, uint8_t alpha,
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uint8_t gamma, int8_t ta_idx)
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{
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// TODO We should use our implementation of encode RLC/MAC Control messages.
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unsigned wp = 0;
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uint8_t ts;
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bitvec_write_field(dest, wp,0x1,2); // Payload Type
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bitvec_write_field(dest, wp,0x0,2); // Uplink block with TDMA framenumber (N+13)
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bitvec_write_field(dest, wp,poll,1); // Suppl/Polling Bit
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bitvec_write_field(dest, wp,0x0,3); // Uplink state flag
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bitvec_write_field(dest, wp,0xa,6); // MESSAGE TYPE
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bitvec_write_field(dest, wp,0x0,2); // Page Mode
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bitvec_write_field(dest, wp,0x0,1); // switch PERSIST_LEVEL: off
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if (use_tlli) {
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bitvec_write_field(dest, wp,0x2,2); // switch TLLI : on
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bitvec_write_field(dest, wp,tlli,32); // TLLI
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} else {
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bitvec_write_field(dest, wp,0x0,1); // switch TFI : on
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bitvec_write_field(dest, wp,old_downlink,1); // 0=UPLINK TFI, 1=DL TFI
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bitvec_write_field(dest, wp,old_tfi,5); // TFI
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}
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bitvec_write_field(dest, wp,0x0,1); // Message escape
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bitvec_write_field(dest, wp,tbf->current_cs()-1, 2); // CHANNEL_CODING_COMMAND
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bitvec_write_field(dest, wp,0x1,1); // TLLI_BLOCK_CHANNEL_CODING
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bitvec_write_field(dest, wp,0x1,1); // switch TIMING_ADVANCE_VALUE = on
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bitvec_write_field(dest, wp,tbf->ta(),6); // TIMING_ADVANCE_VALUE
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if (ta_idx < 0) {
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bitvec_write_field(dest, wp,0x0,1); // switch TIMING_ADVANCE_INDEX = off
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} else {
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bitvec_write_field(dest, wp,0x1,1); // switch TIMING_ADVANCE_INDEX = on
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bitvec_write_field(dest, wp,ta_idx,4); // TIMING_ADVANCE_INDEX
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}
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#if 1
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bitvec_write_field(dest, wp,0x1,1); // Frequency Parameters information elements = present
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bitvec_write_field(dest, wp,tbf->tsc(),3); // Training Sequence Code (TSC)
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bitvec_write_field(dest, wp,0x0,2); // ARFCN = present
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bitvec_write_field(dest, wp,tbf->trx->arfcn,10); // ARFCN
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#else
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bitvec_write_field(dest, wp,0x0,1); // Frequency Parameters = off
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#endif
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bitvec_write_field(dest, wp,0x1,2); // Dynamic Allocation
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bitvec_write_field(dest, wp,0x0,1); // Extended Dynamic Allocation = off
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bitvec_write_field(dest, wp,0x0,1); // P0 = off
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bitvec_write_field(dest, wp,0x0,1); // USF_GRANULARITY
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bitvec_write_field(dest, wp,0x1,1); // switch TFI : on
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bitvec_write_field(dest, wp,tbf->tfi(),5);// TFI
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bitvec_write_field(dest, wp,0x0,1); //
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bitvec_write_field(dest, wp,0x0,1); // TBF Starting Time = off
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if (alpha || gamma) {
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bitvec_write_field(dest, wp,0x1,1); // Timeslot Allocation with Power Control
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bitvec_write_field(dest, wp,alpha,4); // ALPHA
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} else
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bitvec_write_field(dest, wp,0x0,1); // Timeslot Allocation
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for (ts = 0; ts < 8; ts++) {
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if (tbf->pdch[ts]) {
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bitvec_write_field(dest, wp,0x1,1); // USF_TN(i): on
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bitvec_write_field(dest, wp,tbf->m_usf[ts],3); // USF_TN(i)
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if (alpha || gamma)
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bitvec_write_field(dest, wp,gamma,5); // GAMMA power control parameter
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} else
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bitvec_write_field(dest, wp,0x0,1); // USF_TN(i): off
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}
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// bitvec_write_field(dest, wp,0x0,1); // Measurement Mapping struct not present
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}
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/* generate downlink assignment */
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void Encoding::write_packet_downlink_assignment(RlcMacDownlink_t * block, uint8_t old_tfi,
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uint8_t old_downlink, struct gprs_rlcmac_tbf *tbf, uint8_t poll,
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uint8_t alpha, uint8_t gamma, int8_t ta_idx, uint8_t ta_ts)
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{
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// Packet downlink assignment TS 44.060 11.2.7
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uint8_t tn;
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block->PAYLOAD_TYPE = 0x1; // RLC/MAC control block that does not include the optional octets of the RLC/MAC control header
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block->RRBP = 0x0; // N+13
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block->SP = poll; // RRBP field is valid
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block->USF = 0x0; // Uplink state flag
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block->u.Packet_Downlink_Assignment.MESSAGE_TYPE = 0x2; // Packet Downlink Assignment
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block->u.Packet_Downlink_Assignment.PAGE_MODE = 0x0; // Normal Paging
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block->u.Packet_Downlink_Assignment.Exist_PERSISTENCE_LEVEL = 0x0; // PERSISTENCE_LEVEL: off
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block->u.Packet_Downlink_Assignment.ID.UnionType = 0x0; // TFI = on
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block->u.Packet_Downlink_Assignment.ID.u.Global_TFI.UnionType = old_downlink; // 0=UPLINK TFI, 1=DL TFI
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block->u.Packet_Downlink_Assignment.ID.u.Global_TFI.u.UPLINK_TFI = old_tfi; // TFI
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block->u.Packet_Downlink_Assignment.MAC_MODE = 0x0; // Dynamic Allocation
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block->u.Packet_Downlink_Assignment.RLC_MODE = 0x0; // RLC acknowledged mode
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block->u.Packet_Downlink_Assignment.CONTROL_ACK = tbf->was_releasing; // NW establishes no new DL TBF for the MS with running timer T3192
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block->u.Packet_Downlink_Assignment.TIMESLOT_ALLOCATION = 0; // timeslot(s)
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for (tn = 0; tn < 8; tn++) {
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if (tbf->pdch[tn])
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block->u.Packet_Downlink_Assignment.TIMESLOT_ALLOCATION |= 0x80 >> tn; // timeslot(s)
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}
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block->u.Packet_Downlink_Assignment.Packet_Timing_Advance.Exist_TIMING_ADVANCE_VALUE = 0x1; // TIMING_ADVANCE_VALUE = on
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block->u.Packet_Downlink_Assignment.Packet_Timing_Advance.TIMING_ADVANCE_VALUE = tbf->ta(); // TIMING_ADVANCE_VALUE
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if (ta_idx < 0) {
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block->u.Packet_Downlink_Assignment.Packet_Timing_Advance.Exist_IndexAndtimeSlot = 0x0; // TIMING_ADVANCE_INDEX = off
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} else {
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block->u.Packet_Downlink_Assignment.Packet_Timing_Advance.Exist_IndexAndtimeSlot = 0x1; // TIMING_ADVANCE_INDEX = on
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block->u.Packet_Downlink_Assignment.Packet_Timing_Advance.TIMING_ADVANCE_INDEX = ta_idx; // TIMING_ADVANCE_INDEX
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block->u.Packet_Downlink_Assignment.Packet_Timing_Advance.TIMING_ADVANCE_TIMESLOT_NUMBER = ta_ts; // TIMING_ADVANCE_TS
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}
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block->u.Packet_Downlink_Assignment.Exist_P0_and_BTS_PWR_CTRL_MODE = 0x0; // POWER CONTROL = off
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block->u.Packet_Downlink_Assignment.Exist_Frequency_Parameters = 0x1; // Frequency Parameters = on
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block->u.Packet_Downlink_Assignment.Frequency_Parameters.TSC = tbf->tsc(); // Training Sequence Code (TSC)
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block->u.Packet_Downlink_Assignment.Frequency_Parameters.UnionType = 0x0; // ARFCN = on
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block->u.Packet_Downlink_Assignment.Frequency_Parameters.u.ARFCN = tbf->trx->arfcn; // ARFCN
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block->u.Packet_Downlink_Assignment.Exist_DOWNLINK_TFI_ASSIGNMENT = 0x1; // DOWNLINK TFI ASSIGNMENT = on
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block->u.Packet_Downlink_Assignment.DOWNLINK_TFI_ASSIGNMENT = tbf->tfi(); // TFI
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block->u.Packet_Downlink_Assignment.Exist_Power_Control_Parameters = 0x1; // Power Control Parameters = on
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block->u.Packet_Downlink_Assignment.Power_Control_Parameters.ALPHA = alpha; // ALPHA
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for (tn = 0; tn < 8; tn++)
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{
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if (tbf->pdch[tn])
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{
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block->u.Packet_Downlink_Assignment.Power_Control_Parameters.Slot[tn].Exist = 0x1; // Slot[i] = on
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block->u.Packet_Downlink_Assignment.Power_Control_Parameters.Slot[tn].GAMMA_TN = gamma; // GAMMA_TN
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}
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else
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{
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block->u.Packet_Downlink_Assignment.Power_Control_Parameters.Slot[tn].Exist = 0x0; // Slot[i] = off
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}
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}
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block->u.Packet_Downlink_Assignment.Exist_TBF_Starting_Time = 0x0; // TBF Starting TIME = off
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block->u.Packet_Downlink_Assignment.Exist_Measurement_Mapping = 0x0; // Measurement_Mapping = off
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block->u.Packet_Downlink_Assignment.Exist_AdditionsR99 = 0x0; // AdditionsR99 = off
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}
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/* generate paging request */
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int Encoding::write_paging_request(bitvec * dest, uint8_t *ptmsi, uint16_t ptmsi_len)
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{
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unsigned wp = 0;
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int plen;
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bitvec_write_field(dest, wp,0x0,4); // Skip Indicator
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bitvec_write_field(dest, wp,0x6,4); // Protocol Discriminator
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bitvec_write_field(dest, wp,0x21,8); // Paging Request Message Type
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bitvec_write_field(dest, wp,0x0,4); // Page Mode
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bitvec_write_field(dest, wp,0x0,4); // Channel Needed
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// Mobile Identity
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bitvec_write_field(dest, wp,ptmsi_len+1,8); // Mobile Identity length
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bitvec_write_field(dest, wp,0xf,4); // unused
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bitvec_write_field(dest, wp,0x4,4); // PTMSI type
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for (int i = 0; i < ptmsi_len; i++)
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{
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bitvec_write_field(dest, wp,ptmsi[i],8); // PTMSI
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}
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if ((wp % 8)) {
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LOGP(DRLCMACUL, LOGL_ERROR, "Length of PAG.REQ without rest "
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"octets is not multiple of 8 bits, PLEASE FIX!\n");
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exit (0);
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}
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plen = wp / 8;
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bitvec_write_field(dest, wp,0x0,1); // "L" NLN(PCH) = off
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bitvec_write_field(dest, wp,0x0,1); // "L" Priority1 = off
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bitvec_write_field(dest, wp,0x1,1); // "L" Priority2 = off
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bitvec_write_field(dest, wp,0x0,1); // "L" Group Call information = off
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bitvec_write_field(dest, wp,0x0,1); // "H" Packet Page Indication 1 = packet paging procedure
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bitvec_write_field(dest, wp,0x1,1); // "H" Packet Page Indication 2 = packet paging procedure
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return plen;
|
|
}
|
|
|
|
/**
|
|
* The index of the array show_rbb is the bit position inside the rbb
|
|
* (show_rbb[63] relates to BSN ssn-1)
|
|
*/
|
|
void Encoding::encode_rbb(const char *show_rbb, uint8_t *rbb)
|
|
{
|
|
uint8_t rbb_byte = 0;
|
|
|
|
// RECEIVE_BLOCK_BITMAP
|
|
for (int i = 0; i < 64; i++) {
|
|
/* Set bit at the appropriate position (see 3GPP TS 04.60 9.1.8.1) */
|
|
if (show_rbb[i] == 'R')
|
|
rbb_byte |= 1<< (7-(i%8));
|
|
|
|
if((i%8) == 7) {
|
|
rbb[i/8] = rbb_byte;
|
|
rbb_byte = 0;
|
|
}
|
|
}
|
|
}
|
|
|
|
/* generate uplink ack */
|
|
void Encoding::write_packet_uplink_ack(struct gprs_rlcmac_bts *bts,
|
|
RlcMacDownlink_t * block, struct gprs_rlcmac_ul_tbf *tbf,
|
|
uint8_t final)
|
|
{
|
|
// Packet Uplink Ack/Nack TS 44.060 11.2.28
|
|
|
|
char rbb[65];
|
|
|
|
tbf->m_window.update_rbb(rbb);
|
|
|
|
LOGP(DRLCMACUL, LOGL_DEBUG, "Encoding Ack/Nack for %s "
|
|
"(final=%d)\n", tbf_name(tbf), final);
|
|
|
|
block->PAYLOAD_TYPE = 0x1; // RLC/MAC control block that does not include the optional octets of the RLC/MAC control header
|
|
block->RRBP = 0x0; // N+13
|
|
block->SP = final; // RRBP field is valid, if it is final ack
|
|
block->USF = 0x0; // Uplink state flag
|
|
|
|
block->u.Packet_Uplink_Ack_Nack.MESSAGE_TYPE = 0x9; // Packet Downlink Assignment
|
|
block->u.Packet_Uplink_Ack_Nack.PAGE_MODE = 0x0; // Normal Paging
|
|
block->u.Packet_Uplink_Ack_Nack.UPLINK_TFI = tbf->tfi(); // Uplink TFI
|
|
|
|
block->u.Packet_Uplink_Ack_Nack.UnionType = 0x0; // PU_AckNack_GPRS = on
|
|
block->u.Packet_Uplink_Ack_Nack.u.PU_AckNack_GPRS_Struct.CHANNEL_CODING_COMMAND = tbf->current_cs() - 1; // CS1
|
|
block->u.Packet_Uplink_Ack_Nack.u.PU_AckNack_GPRS_Struct.Ack_Nack_Description.FINAL_ACK_INDICATION = final; // FINAL ACK INDICATION
|
|
block->u.Packet_Uplink_Ack_Nack.u.PU_AckNack_GPRS_Struct.Ack_Nack_Description.STARTING_SEQUENCE_NUMBER = tbf->m_window.ssn(); // STARTING_SEQUENCE_NUMBER
|
|
|
|
encode_rbb(rbb, block->u.Packet_Uplink_Ack_Nack.u.PU_AckNack_GPRS_Struct.Ack_Nack_Description.RECEIVED_BLOCK_BITMAP);
|
|
|
|
/* rbb is not NULL terminated */
|
|
rbb[64] = 0;
|
|
LOGP(DRLCMACUL, LOGL_DEBUG, "- V(N): \"%s\" R=Received "
|
|
"I=Invalid\n", rbb);
|
|
|
|
block->u.Packet_Uplink_Ack_Nack.u.PU_AckNack_GPRS_Struct.UnionType = 0x0; // Fixed Allocation Dummy = on
|
|
block->u.Packet_Uplink_Ack_Nack.u.PU_AckNack_GPRS_Struct.u.FixedAllocationDummy = 0x0; // Fixed Allocation Dummy
|
|
block->u.Packet_Uplink_Ack_Nack.u.PU_AckNack_GPRS_Struct.Exist_AdditionsR99 = 0x0; // AdditionsR99 = off
|
|
|
|
block->u.Packet_Uplink_Ack_Nack.u.PU_AckNack_GPRS_Struct.Common_Uplink_Ack_Nack_Data.Exist_CONTENTION_RESOLUTION_TLLI = 0x1;
|
|
block->u.Packet_Uplink_Ack_Nack.u.PU_AckNack_GPRS_Struct.Common_Uplink_Ack_Nack_Data.CONTENTION_RESOLUTION_TLLI = tbf->tlli();
|
|
block->u.Packet_Uplink_Ack_Nack.u.PU_AckNack_GPRS_Struct.Common_Uplink_Ack_Nack_Data.Exist_Packet_Timing_Advance = 0x0;
|
|
block->u.Packet_Uplink_Ack_Nack.u.PU_AckNack_GPRS_Struct.Common_Uplink_Ack_Nack_Data.Exist_Extension_Bits = 0x0;
|
|
block->u.Packet_Uplink_Ack_Nack.u.PU_AckNack_GPRS_Struct.Common_Uplink_Ack_Nack_Data.Exist_Power_Control_Parameters = 0x0;
|
|
}
|
|
|
|
unsigned Encoding::write_packet_paging_request(bitvec * dest)
|
|
{
|
|
unsigned wp = 0;
|
|
|
|
bitvec_write_field(dest, wp,0x1,2); // Payload Type
|
|
bitvec_write_field(dest, wp,0x0,3); // No polling
|
|
bitvec_write_field(dest, wp,0x0,3); // Uplink state flag
|
|
bitvec_write_field(dest, wp,0x22,6); // MESSAGE TYPE
|
|
|
|
bitvec_write_field(dest, wp,0x0,2); // Page Mode
|
|
|
|
bitvec_write_field(dest, wp,0x0,1); // No PERSISTENCE_LEVEL
|
|
bitvec_write_field(dest, wp,0x0,1); // No NLN
|
|
|
|
return wp;
|
|
}
|
|
|
|
unsigned Encoding::write_repeated_page_info(bitvec * dest, unsigned& wp, uint8_t len,
|
|
uint8_t *identity, uint8_t chan_needed)
|
|
{
|
|
bitvec_write_field(dest, wp,0x1,1); // Repeated Page info exists
|
|
|
|
bitvec_write_field(dest, wp,0x1,1); // RR connection paging
|
|
|
|
if ((identity[0] & 0x07) == 4) {
|
|
bitvec_write_field(dest, wp,0x0,1); // TMSI
|
|
identity++;
|
|
len--;
|
|
} else {
|
|
bitvec_write_field(dest, wp,0x0,1); // MI
|
|
bitvec_write_field(dest, wp,len,4); // MI len
|
|
}
|
|
while (len) {
|
|
bitvec_write_field(dest, wp,*identity++,8); // MI data
|
|
len--;
|
|
}
|
|
bitvec_write_field(dest, wp,chan_needed,2); // CHANNEL_NEEDED
|
|
bitvec_write_field(dest, wp,0x0,1); // No eMLPP_PRIORITY
|
|
|
|
return wp;
|
|
}
|
|
|