defs.h 55.1 KB
Newer Older
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20
/*
 * Licensed to the OpenAirInterface (OAI) Software Alliance under one or more
 * contributor license agreements.  See the NOTICE file distributed with
 * this work for additional information regarding copyright ownership.
 * The OpenAirInterface Software Alliance licenses this file to You under
 * the OAI Public License, Version 1.0  (the "License"); you may not use this file
 * except in compliance with the License.
 * You may obtain a copy of the License at
 *
 *      http://www.openairinterface.org/?page_id=698
 *
 * Unless required by applicable law or agreed to in writing, software
 * distributed under the License is distributed on an "AS IS" BASIS,
 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
 * See the License for the specific language governing permissions and
 * limitations under the License.
 *-------------------------------------------------------------------------------
 * For more information about the OpenAirInterface (OAI) Software Alliance:
 *      contact@openairinterface.org
 */
21 22 23 24 25 26 27 28 29 30 31 32 33 34

/*! \file PHY/defs.h
 \brief Top-level defines and structure definitions
 \author R. Knopp, F. Kaltenberger
 \date 2011
 \version 0.1
 \company Eurecom
 \email: knopp@eurecom.fr,florian.kaltenberger@eurecom.fr
 \note
 \warning
*/
#ifndef __PHY_DEFS__H__
#define __PHY_DEFS__H__

35

36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51
#define _GNU_SOURCE
#include <sched.h>
#include <stdio.h>
#include <stdlib.h>
#include <unistd.h>
#include <string.h>
#include <sys/ioctl.h>
#include <sys/types.h>
#include <sys/mman.h>
#include <linux/sched.h>
#include <signal.h>
#include <execinfo.h>
#include <getopt.h>
#include <sys/sysinfo.h>


52 53 54 55 56
#include <stdio.h>
#include <stdlib.h>
#include <malloc.h>
#include <string.h>
#include <math.h>
57
#include "common_lib.h"
58
#include "msc.h"
59

60 61
#include "openair2/PHY_INTERFACE/IF_Module.h"

62
//#include <complex.h>
63
#include "assertions.h"
64
#ifdef MEX
65
# define msg mexPrintf
66 67
#endif
//use msg in the real-time thread context
68
#define msg_nrt printf
69
//use msg_nrt in the non real-time context (for initialization, ...)
Cedric Roux's avatar
Cedric Roux committed
70 71 72 73 74 75
#ifndef malloc16
#  ifdef __AVX2__
#    define malloc16(x) memalign(32,x)
#  else
#    define malloc16(x) memalign(16,x)
#  endif
76
#endif
77 78 79 80 81 82
#define free16(y,x) free(y)
#define bigmalloc malloc
#define bigmalloc16 malloc16
#define openair_free(y,x) free((y))
#define PAGE_SIZE 4096

83 84
#define RX_NB_TH_MAX 2
#define RX_NB_TH 2
85

86

87 88 89 90
//! \brief Allocate \c size bytes of memory on the heap with alignment 16 and zero it afterwards.
//! If no more memory is available, this function will terminate the program with an assertion error.
static inline void* malloc16_clear( size_t size )
{
91 92 93
#ifdef __AVX2__
  void* ptr = memalign(32, size);
#else
94
  void* ptr = memalign(16, size);
95
#endif
96 97 98 99
  DevAssert(ptr);
  memset( ptr, 0, size );
  return ptr;
}
100

101 102


103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119
#define PAGE_MASK 0xfffff000
#define virt_to_phys(x) (x)

#define openair_sched_exit() exit(-1)


#define max(a,b)  ((a)>(b) ? (a) : (b))
#define min(a,b)  ((a)<(b) ? (a) : (b))


#define bzero(s,n) (memset((s),0,(n)))

#define cmax(a,b)  ((a>b) ? (a) : (b))
#define cmin(a,b)  ((a<b) ? (a) : (b))

#define cmax3(a,b,c) ((cmax(a,b)>c) ? (cmax(a,b)) : (c))

120 121 122
/// suppress compiler warning for unused arguments
#define UNUSED(x) (void)x;

123 124 125 126 127 128 129

#include "impl_defs_top.h"
#include "impl_defs_lte.h"

#include "PHY/TOOLS/time_meas.h"
#include "PHY/CODING/defs.h"
#include "PHY/TOOLS/defs.h"
130
#include "platform_types.h"
131
#define MAX_NUM_RU_PER_eNB 64 
Laurent's avatar
Laurent committed
132

133
#include "PHY/LTE_TRANSPORT/defs.h"
Raymond Knopp's avatar
 
Raymond Knopp committed
134
#include <pthread.h>
135

136
#include "targets/ARCH/COMMON/common_lib.h"
137
#include "targets/COMMON/openairinterface5g_limits.h"
138

139
#if defined(EXMIMO) || defined(OAI_USRP)
140 141 142 143
//#define NUMBER_OF_eNB_MAX 1
//#define NUMBER_OF_UE_MAX 16

//#define NUMBER_OF_CONNECTED_eNB_MAX 3
144 145
#else
#ifdef LARGE_SCALE
146 147 148
//#define NUMBER_OF_eNB_MAX 2
//#define NUMBER_OF_UE_MAX 120
//#define NUMBER_OF_CONNECTED_eNB_MAX 1 // to save some memory
149
#else
150 151 152 153
//#define NUMBER_OF_eNB_MAX 3
//#define NUMBER_OF_UE_MAX 16
//#define NUMBER_OF_RU_MAX 64
//#define NUMBER_OF_CONNECTED_eNB_MAX 1
154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171
#endif
#endif
#define NUMBER_OF_SUBBANDS_MAX 13
#define NUMBER_OF_HARQ_PID_MAX 8

#define MAX_FRAME_NUMBER 0x400



#define NUMBER_OF_RN_MAX 3
typedef enum {no_relay=1,unicast_relay_type1,unicast_relay_type2, multicast_relay} relaying_type_t;



#define MCS_COUNT 28
#define MCS_TABLE_LENGTH_MAX 64


172 173 174 175
#define NUM_DCI_MAX 32

#define NUMBER_OF_eNB_SECTORS_MAX 3

176 177
#define NB_BANDS_MAX 8

178 179 180
#define MAX_BANDS_PER_RRU 4


Laurent's avatar
Laurent committed
181 182 183
#ifdef OCP_FRAMEWORK
#include <enums.h>
#else
184
typedef enum {normal_txrx=0,rx_calib_ue=1,rx_calib_ue_med=2,rx_calib_ue_byp=3,debug_prach=4,no_L2_connect=5,calib_prach_tx=6,rx_dump_frame=7,loop_through_memory=8} runmode_t;
185

186 187 188 189 190 191 192 193
/*! \brief Extension Type */
typedef enum {
  CYCLIC_PREFIX,
  CYCLIC_SUFFIX,
  ZEROS,
  NONE
} Extension_t;
	
194
enum transmission_access_mode {
195 196 197 198 199
  NO_ACCESS=0,
  POSTPONED_ACCESS,
  CANCELED_ACCESS,
  UNKNOWN_ACCESS,
  SCHEDULED_ACCESS,
200 201
  CBA_ACCESS};

202
typedef enum  {
203
  eNodeB_3GPP=0,   // classical eNodeB function
204 205
  NGFI_RAU_IF5,    // RAU with NGFI IF5
  NGFI_RAU_IF4p5,  // RAU with NFGI IF4p5
Raymond Knopp's avatar
Raymond Knopp committed
206
  NGFI_RRU_IF5,    // NGFI_RRU (NGFI remote radio-unit,IF5)
207 208 209
  NGFI_RRU_IF4p5,  // NGFI_RRU (NGFI remote radio-unit,IF4p5)
  MBP_RRU_IF5      // Mobipass RRU
} node_function_t;
210

211
typedef enum {
212

213
  synch_to_ext_device=0,  // synch to RF or Ethernet device
214
  synch_to_other,          // synch to another source_(timer, other RU)
Cedric Roux's avatar
Cedric Roux committed
215
  synch_to_mobipass_standalone  // special case for mobipass in standalone mode
216 217
} node_timing_t;
#endif
218

219 220
typedef struct UE_SCAN_INFO_s {
  /// 10 best amplitudes (linear) for each pss signals
221
  int32_t amp[3][10];
222
  /// 10 frequency offsets (kHz) corresponding to best amplitudes, with respect do minimum DL frequency in the band
223
  int32_t freq_offset_Hz[3][10];
224 225
} UE_SCAN_INFO_t;

226 227 228 229 230 231 232 233 234 235 236 237 238 239
/// Top-level PHY Data Structure for RN
typedef struct {
  /// Module ID indicator for this instance
  uint8_t Mod_id;
  uint32_t frame;
  // phy_vars_eNB
  // phy_vars ue
  // cuurently only used to store and forward the PMCH
  uint8_t mch_avtive[10];
  uint8_t sync_area[10]; // num SF
  LTE_UE_DLSCH_t   *dlsch_rn_MCH[10];

} PHY_VARS_RN;

240 241 242 243 244 245 246 247 248 249 250 251 252 253 254 255 256 257 258 259 260 261 262 263 264 265 266 267
/// Context data structure for RX/TX portion of subframe processing
typedef struct {
  /// Component Carrier index
  uint8_t              CC_id;
  /// timestamp transmitted to HW
  openair0_timestamp timestamp_tx;
  /// subframe to act upon for transmission
  int subframe_tx;
  /// subframe to act upon for reception
  int subframe_rx;
  /// frame to act upon for transmission
  int frame_tx;
  /// frame to act upon for reception
  int frame_rx;
  /// \brief Instance count for RXn-TXnp4 processing thread.
  /// \internal This variable is protected by \ref mutex_rxtx.
  int instance_cnt_rxtx;
  /// pthread structure for RXn-TXnp4 processing thread
  pthread_t pthread_rxtx;
  /// pthread attributes for RXn-TXnp4 processing thread
  pthread_attr_t attr_rxtx;
  /// condition variable for tx processing thread
  pthread_cond_t cond_rxtx;
  /// mutex for RXn-TXnp4 processing thread
  pthread_mutex_t mutex_rxtx;
  /// scheduling parameters for RXn-TXnp4 thread
  struct sched_param sched_param_rxtx;
} eNB_rxtx_proc_t;
268 269 270 271 272 273 274 275 276 277 278 279 280

typedef struct {
  struct PHY_VARS_eNB_s *eNB;
  int UE_id;
  int harq_pid;
  int llr8_flag;
  int ret;
} td_params;

typedef struct {
  struct PHY_VARS_eNB_s *eNB;
  LTE_eNB_DLSCH_t *dlsch;
  int G;
281
  int harq_pid;
282 283
} te_params;

284 285 286
typedef struct RU_proc_t_s {
  /// Pointer to associated RU descriptor
  struct RU_t_s *ru;
287 288 289 290 291 292
  /// timestamp received from HW
  openair0_timestamp timestamp_rx;
  /// timestamp to send to "slave rru"
  openair0_timestamp timestamp_tx;
  /// subframe to act upon for reception
  int subframe_rx;
293 294 295 296
  /// subframe to act upon for transmission
  int subframe_tx;
  /// subframe to act upon for reception of prach
  int subframe_prach;
297 298 299 300
#ifdef Rel14
  /// subframe to act upon for reception of prach BL/CE UEs
  int subframe_prach_br;
#endif
301 302
  /// frame to act upon for reception
  int frame_rx;
303 304
  /// frame to act upon for transmission
  int frame_tx;
305 306
  /// unwrapped frame count
  int frame_tx_unwrap;
307 308
  /// frame to act upon for reception of prach
  int frame_prach;
309 310 311 312
#ifdef Rel14
  /// frame to act upon for reception of prach
  int frame_prach_br;
#endif
313 314
  /// frame offset for slave RUs (to correct for frame asynchronism at startup)
  int frame_offset;
315 316 317
  /// \brief Instance count for FH processing thread.
  /// \internal This variable is protected by \ref mutex_FH.
  int instance_cnt_FH;
318 319
  /// \internal This variable is protected by \ref mutex_prach.
  int instance_cnt_prach;
320 321 322 323
#ifdef Rel14
  /// \internal This variable is protected by \ref mutex_prach.
  int instance_cnt_prach_br;
#endif
324 325 326 327
  /// \internal This variable is protected by \ref mutex_synch.
  int instance_cnt_synch;
  /// \internal This variable is protected by \ref mutex_eNBs.
  int instance_cnt_eNBs;
328 329 330
  /// \brief Instance count for rx processing thread.
  /// \internal This variable is protected by \ref mutex_asynch_rxtx.
  int instance_cnt_asynch_rxtx;
331 332 333
  /// \internal This variable is protected by \ref mutex_fep
  int instance_cnt_fep;
  /// pthread structure for RU FH processing thread
334
  pthread_t pthread_FH;
335 336
  /// pthread structure for RU prach processing thread
  pthread_t pthread_prach;
337 338 339 340
#ifdef Rel14
  /// pthread structure for RU prach processing thread BL/CE UEs
  pthread_t pthread_prach_br;
#endif
341 342 343 344
  /// pthread struct for RU synch thread
  pthread_t pthread_synch;
  /// pthread struct for RU RX FEP thread
  pthread_t pthread_fep;
345 346 347 348 349 350
  /// pthread structure for asychronous RX/TX processing thread
  pthread_t pthread_asynch_rxtx;
  /// flag to indicate first RX acquisition
  int first_rx;
  /// flag to indicate first TX transmission
  int first_tx;
351
  /// pthread attributes for RU FH processing thread
352
  pthread_attr_t attr_FH;
353 354
  /// pthread attributes for RU prach
  pthread_attr_t attr_prach;
355 356 357 358
#ifdef Rel14
  /// pthread attributes for RU prach BL/CE UEs
  pthread_attr_t attr_prach_br;
#endif
359 360
  /// pthread attributes for RU synch thread
  pthread_attr_t attr_synch;
361 362
  /// pthread attributes for asynchronous RX thread
  pthread_attr_t attr_asynch_rxtx;
363 364 365
  /// pthread attributes for parallel fep thread
  pthread_attr_t attr_fep;
  /// scheduling parameters for RU FH thread
366
  struct sched_param sched_param_FH;
367 368
  /// scheduling parameters for RU prach thread
  struct sched_param sched_param_prach;
369 370 371 372
#ifdef Rel14
  /// scheduling parameters for RU prach thread BL/CE UEs
  struct sched_param sched_param_prach_br;
#endif
373 374
  /// scheduling parameters for RU synch thread
  struct sched_param sched_param_synch;
375 376
  /// scheduling parameters for asynch_rxtx thread
  struct sched_param sched_param_asynch_rxtx;
377
  /// condition variable for RU FH thread
378
  pthread_cond_t cond_FH;
379 380
  /// condition variable for RU prach thread
  pthread_cond_t cond_prach;
381 382 383 384
#ifdef Rel14
  /// condition variable for RU prach thread BL/CE UEs
  pthread_cond_t cond_prach_br;
#endif
385 386
  /// condition variable for RU synch thread
  pthread_cond_t cond_synch;
387 388
  /// condition variable for asynch RX/TX thread
  pthread_cond_t cond_asynch_rxtx;
389 390 391 392 393
  /// condition varaible for RU RX FEP thread
  pthread_cond_t cond_fep;
  /// condition variable for eNB signal
  pthread_cond_t cond_eNBs;
  /// mutex for RU FH
394
  pthread_mutex_t mutex_FH;
395 396
  /// mutex for RU prach
  pthread_mutex_t mutex_prach;
397 398 399 400
#ifdef Rel14
  /// mutex for RU prach BL/CE UEs
  pthread_mutex_t mutex_prach_br;
#endif
401 402 403 404
  /// mutex for RU synch
  pthread_mutex_t mutex_synch;
  /// mutex for eNB signal
  pthread_mutex_t mutex_eNBs;
405 406
  /// mutex for asynch RX/TX thread
  pthread_mutex_t mutex_asynch_rxtx;
407 408 409 410
  /// mutex for fep RX
  pthread_mutex_t mutex_fep;
  /// symbol mask for IF4p5 reception per subframe
  uint32_t symbol_mask[10];
411 412 413
  /// number of slave threads
  int                  num_slaves;
  /// array of pointers to slaves
414 415
  struct RU_proc_t_s           **slave_proc;
} RU_proc_t;
416

Raymond Knopp's avatar
 
Raymond Knopp committed
417
/// Context data structure for eNB subframe processing
418
typedef struct eNB_proc_t_s {
419
  /// Component Carrier index
420
  uint8_t              CC_id;
421 422 423 424
  /// thread index
  int thread_index;
  /// timestamp received from HW
  openair0_timestamp timestamp_rx;
425 426
  /// timestamp to send to "slave rru"
  openair0_timestamp timestamp_tx;
427
  /// subframe to act upon for reception
Raymond Knopp's avatar
 
Raymond Knopp committed
428
  int subframe_rx;
429 430
  /// subframe to act upon for PRACH
  int subframe_prach;
431 432 433 434
#ifdef Rel14
  /// subframe to act upon for reception of prach BL/CE UEs
  int subframe_prach_br;
#endif
435
  /// frame to act upon for reception
Raymond Knopp's avatar
 
Raymond Knopp committed
436
  int frame_rx;
437 438
  /// frame to act upon for transmission
  int frame_tx;
439 440
  /// frame to act upon for PRACH
  int frame_prach;
441 442 443 444
#ifdef Rel14
  /// frame to act upon for PRACH BL/CE UEs
  int frame_prach_br;
#endif
445 446 447 448
  /// \internal This variable is protected by \ref mutex_td.
  int instance_cnt_td;
  /// \internal This variable is protected by \ref mutex_te.
  int instance_cnt_te;
449 450
  /// \internal This variable is protected by \ref mutex_prach.
  int instance_cnt_prach;
451 452 453 454
#ifdef Rel14
  /// \internal This variable is protected by \ref mutex_prach for BL/CE UEs.
  int instance_cnt_prach_br;
#endif
455 456
  // instance count for over-the-air eNB synchronization
  int instance_cnt_synch;
457 458
  /// \internal This variable is protected by \ref mutex_asynch_rxtx.
  int instance_cnt_asynch_rxtx;
Raymond Knopp's avatar
Raymond Knopp committed
459 460
  /// pthread structure for eNB single processing thread
  pthread_t pthread_single;
461 462
  /// pthread structure for asychronous RX/TX processing thread
  pthread_t pthread_asynch_rxtx;
463 464
  /// flag to indicate first RX acquisition
  int first_rx;
Raymond Knopp's avatar
Raymond Knopp committed
465 466
  /// flag to indicate first TX transmission
  int first_tx;
467 468 469 470
  /// pthread attributes for parallel turbo-decoder thread
  pthread_attr_t attr_td;
  /// pthread attributes for parallel turbo-encoder thread
  pthread_attr_t attr_te;
Raymond Knopp's avatar
Raymond Knopp committed
471 472
  /// pthread attributes for single eNB processing thread
  pthread_attr_t attr_single;
473 474
  /// pthread attributes for prach processing thread
  pthread_attr_t attr_prach;
475 476 477 478
#ifdef Rel14
  /// pthread attributes for prach processing thread BL/CE UEs
  pthread_attr_t attr_prach_br;
#endif
479
  /// pthread attributes for asynchronous RX thread
480
  pthread_attr_t attr_asynch_rxtx;
481 482 483 484
  /// scheduling parameters for parallel turbo-decoder thread
  struct sched_param sched_param_td;
  /// scheduling parameters for parallel turbo-encoder thread
  struct sched_param sched_param_te;
Raymond Knopp's avatar
Raymond Knopp committed
485 486
  /// scheduling parameters for single eNB thread
  struct sched_param sched_param_single;
487 488
  /// scheduling parameters for prach thread
  struct sched_param sched_param_prach;
489 490 491 492
#ifdef Rel14
  /// scheduling parameters for prach thread
  struct sched_param sched_param_prach_br;
#endif
493 494
  /// scheduling parameters for asynch_rxtx thread
  struct sched_param sched_param_asynch_rxtx;
495 496 497 498
  /// pthread structure for parallel turbo-decoder thread
  pthread_t pthread_td;
  /// pthread structure for parallel turbo-encoder thread
  pthread_t pthread_te;
499
  /// pthread structure for PRACH thread
500
  pthread_t pthread_prach;
501 502 503 504
#ifdef Rel14
  /// pthread structure for PRACH thread BL/CE UEs
  pthread_t pthread_prach_br;
#endif
505 506 507 508
  /// condition variable for parallel turbo-decoder thread
  pthread_cond_t cond_td;
  /// condition variable for parallel turbo-encoder thread
  pthread_cond_t cond_te;
509
  /// condition variable for PRACH processing thread;
510
  pthread_cond_t cond_prach;
511 512 513 514
#ifdef Rel14
  /// condition variable for PRACH processing thread BL/CE UEs;
  pthread_cond_t cond_prach_br;
#endif
515 516
  /// condition variable for asynch RX/TX thread
  pthread_cond_t cond_asynch_rxtx;
517 518 519 520
  /// mutex for parallel turbo-decoder thread
  pthread_mutex_t mutex_td;
  /// mutex for parallel turbo-encoder thread
  pthread_mutex_t mutex_te;
521
  /// mutex for PRACH thread
522
  pthread_mutex_t mutex_prach;
523 524 525 526
#ifdef Rel14
  /// mutex for PRACH thread for BL/CE UEs
  pthread_mutex_t mutex_prach_br;
#endif
527 528
  /// mutex for asynch RX/TX thread
  pthread_mutex_t mutex_asynch_rxtx;
529 530 531 532
  /// mutex for RU access to eNB processing (PDSCH/PUSCH)
  pthread_mutex_t mutex_RU;
  /// mutex for RU access to eNB processing (PRACH)
  pthread_mutex_t mutex_RU_PRACH;
533 534
  /// mutex for RU access to eNB processing (PRACH BR)
  pthread_mutex_t mutex_RU_PRACH_br;
535 536 537 538
  /// mask for RUs serving eNB (PDSCH/PUSCH)
  int RU_mask;
  /// mask for RUs serving eNB (PRACH)
  int RU_mask_prach;
539 540 541 542
#ifdef Rel14
  /// mask for RUs serving eNB (PRACH)
  int RU_mask_prach_br;
#endif
543 544 545 546
  /// parameters for turbo-decoding worker thread
  td_params tdp;
  /// parameters for turbo-encoding worker thread
  te_params tep;
547 548
  /// set of scheduling variables RXn-TXnp4 threads
  eNB_rxtx_proc_t proc_rxtx[2];
Raymond Knopp's avatar
 
Raymond Knopp committed
549 550
} eNB_proc_t;

551 552 553

/// Context data structure for RX/TX portion of subframe processing
typedef struct {
554 555
  /// index of the current UE RX/TX proc
  int                  proc_id;
556 557 558 559 560 561 562 563 564 565 566 567 568 569 570 571 572 573 574 575 576 577 578 579 580
  /// Component Carrier index
  uint8_t              CC_id;
  /// timestamp transmitted to HW
  openair0_timestamp timestamp_tx;
  /// subframe to act upon for transmission
  int subframe_tx;
  /// subframe to act upon for reception
  int subframe_rx;
  /// frame to act upon for transmission
  int frame_tx;
  /// frame to act upon for reception
  int frame_rx;
  /// \brief Instance count for RXn-TXnp4 processing thread.
  /// \internal This variable is protected by \ref mutex_rxtx.
  int instance_cnt_rxtx;
  /// pthread structure for RXn-TXnp4 processing thread
  pthread_t pthread_rxtx;
  /// pthread attributes for RXn-TXnp4 processing thread
  pthread_attr_t attr_rxtx;
  /// condition variable for tx processing thread
  pthread_cond_t cond_rxtx;
  /// mutex for RXn-TXnp4 processing thread
  pthread_mutex_t mutex_rxtx;
  /// scheduling parameters for RXn-TXnp4 thread
  struct sched_param sched_param_rxtx;
581 582

  /// internal This variable is protected by ref mutex_fep_slot1.
583 584
  //int instance_cnt_slot0_dl_processing;
  int instance_cnt_slot1_dl_processing;
585
  /// pthread descriptor fep_slot1 thread
586 587
  //pthread_t pthread_slot0_dl_processing;
  pthread_t pthread_slot1_dl_processing;
588
  /// pthread attributes for fep_slot1 processing thread
589 590
 // pthread_attr_t attr_slot0_dl_processing;
  pthread_attr_t attr_slot1_dl_processing;
591
  /// condition variable for UE fep_slot1 thread;
592 593
  //pthread_cond_t cond_slot0_dl_processing;
  pthread_cond_t cond_slot1_dl_processing;
594
  /// mutex for UE synch thread
595 596
  //pthread_mutex_t mutex_slot0_dl_processing;
  pthread_mutex_t mutex_slot1_dl_processing;
597 598
  //
  uint8_t chan_est_pilot0_slot1_available;
599
  uint8_t chan_est_slot1_available;
600 601 602
  uint8_t llr_slot1_available;
  uint8_t dci_slot0_available;
  uint8_t first_symbol_available;
tct-labo4's avatar
tct-labo4 committed
603
  //uint8_t channel_level;
604 605 606
  /// scheduling parameters for fep_slot1 thread
  struct sched_param sched_param_fep_slot1;

laurent's avatar
laurent committed
607 608 609
  int sub_frame_start;
  int sub_frame_step;
  unsigned long long gotIQs;
610 611 612 613 614 615 616 617
} UE_rxtx_proc_t;

/// Context data structure for eNB subframe processing
typedef struct {
  /// Component Carrier index
  uint8_t              CC_id;
  /// Last RX timestamp
  openair0_timestamp timestamp_rx;
Raymond Knopp's avatar
Raymond Knopp committed
618 619 620 621 622 623
  /// pthread attributes for main UE thread
  pthread_attr_t attr_ue;
  /// scheduling parameters for main UE thread
  struct sched_param sched_param_ue;
  /// pthread descriptor main UE thread
  pthread_t pthread_ue;
624 625 626
  /// \brief Instance count for synch thread.
  /// \internal This variable is protected by \ref mutex_synch.
  int instance_cnt_synch;
Raymond Knopp's avatar
Raymond Knopp committed
627
  /// pthread attributes for synch processing thread
628 629 630 631 632 633 634 635 636
  pthread_attr_t attr_synch;
  /// scheduling parameters for synch thread
  struct sched_param sched_param_synch;
  /// pthread descriptor synch thread
  pthread_t pthread_synch;
  /// condition variable for UE synch thread;
  pthread_cond_t cond_synch;
  /// mutex for UE synch thread
  pthread_mutex_t mutex_synch;
637 638
  /// instance count for eNBs
  int instance_cnt_eNBs;
639
  /// set of scheduling variables RXn-TXnp4 threads
640
  UE_rxtx_proc_t proc_rxtx[RX_NB_TH];
641
} UE_proc_t;
642

643 644 645 646 647
typedef enum {
  LOCAL_RF        =0,
  REMOTE_IF5      =1,
  REMOTE_MBP_IF5  =2,
  REMOTE_IF4p5    =3,
oai's avatar
oai committed
648 649
  REMOTE_IF1pp    =4,
  MAX_RU_IF_TYPES =5
650 651 652 653 654
} RU_if_south_t;

typedef struct RU_t_s{
  /// index of this ru
  uint32_t idx;
655 656
 /// Pointer to configuration file
  char *rf_config_file;
657 658 659 660 661 662 663 664 665 666 667 668 669 670 671 672 673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733
  /// southbound interface
  RU_if_south_t if_south;
  /// timing
  node_timing_t if_timing;
  /// function
  node_function_t function;
  /// Ethernet parameters for fronthaul interface
  eth_params_t eth_params;
  /// flag to indicate the RU is in synch with a master reference
  int in_synch;
  /// timing offset
  int rx_offset;        
  /// flag to indicate the RU is a slave to another source
  int is_slave;
  /// Total gain of receive chain
  uint32_t             rx_total_gain_dB;
  /// number of bands that this device can support
  int num_bands;
  /// band list
  int band[MAX_BANDS_PER_RRU];
  /// number of RX paths on device
  int nb_rx;
  /// number of TX paths on device
  int nb_tx;
  /// maximum PDSCH RS EPRE
  int max_pdschReferenceSignalPower;
  /// maximum RX gain
  int max_rxgain;
  /// Attenuation of RX paths on device
  int att_rx;
  /// Attenuation of TX paths on device
  int att_tx;
  /// flag to indicate precoding operation in RU
  int do_precoding;
  /// Frame parameters
  LTE_DL_FRAME_PARMS frame_parms;
  ///timing offset used in TDD
  int              N_TA_offset; 
  /// RF device descriptor
  openair0_device rfdevice;
  /// HW configuration
  openair0_config_t openair0_cfg;
  /// Number of eNBs using this RU
  int num_eNB;
  /// list of eNBs using this RU
  struct PHY_VARS_eNB_s *eNB_list[NUMBER_OF_eNB_MAX];
  /// Mapping of antenna ports to RF chain index
  openair0_rf_map      rf_map;
  /// IF device descriptor
  openair0_device ifdevice;
  /// Pointer for ifdevice buffer struct
  if_buffer_t ifbuffer;
  /// if prach processing is to be performed in RU
  int                  do_prach;
  /// function pointer to synchronous RX fronthaul function (RRU,3GPP_eNB)
  void                 (*fh_south_in)(struct RU_t_s *ru,int *frame, int *subframe);
  /// function pointer to synchronous TX fronthaul function
  void                 (*fh_south_out)(struct RU_t_s *ru);
  /// function pointer to synchronous RX fronthaul function (RRU)
  void                 (*fh_north_in)(struct RU_t_s *ru,int *frame, int *subframe);
  /// function pointer to synchronous RX fronthaul function (RRU)
  void                 (*fh_north_out)(struct RU_t_s *ru);
  /// function pointer to asynchronous fronthaul interface
  void                 (*fh_north_asynch_in)(struct RU_t_s *ru,int *frame, int *subframe);
  /// function pointer to asynchronous fronthaul interface
  void                 (*fh_south_asynch_in)(struct RU_t_s *ru,int *frame, int *subframe);
  /// function pointer to initialization function for radio interface
  int                  (*start_rf)(struct RU_t_s *ru);
  /// function pointer to initialization function for radio interface
  int                  (*start_if)(struct RU_t_s *ru,struct PHY_VARS_eNB_s *eNB);
  /// function pointer to RX front-end processing routine (DFTs/prefix removal or NULL)
  void                 (*feprx)(struct RU_t_s *ru);
  /// function pointer to TX front-end processing routine (IDFTs and prefix removal or NULL)
  void                 (*feptx_ofdm)(struct RU_t_s *ru);
  /// function pointer to TX front-end processing routine (PRECODING)
  void                 (*feptx_prec)(struct RU_t_s *ru);
  /// function pointer to wakeup routine in lte-enb.
Raymond Knopp's avatar
Raymond Knopp committed
734
  int (*wakeup_rxtx)(struct PHY_VARS_eNB_s *eNB, struct RU_t_s *ru);
735
  /// function pointer to wakeup routine in lte-enb.
Raymond Knopp's avatar
Raymond Knopp committed
736
  void (*wakeup_prach_eNB)(struct PHY_VARS_eNB_s *eNB,struct RU_t_s *ru,int frame,int subframe);
737
  /// function pointer to wakeup routine in lte-enb.
Raymond Knopp's avatar
Raymond Knopp committed
738
  void (*wakeup_prach_eNB_br)(struct PHY_VARS_eNB_s *eNB,struct RU_t_s *ru,int frame,int subframe);
739 740 741 742 743 744 745
  /// function pointer to eNB entry routine
  void (*eNB_top)(struct PHY_VARS_eNB_s *eNB, int frame_rx, int subframe_rx, char *string);
  /// Timing statistics
  time_stats_t ofdm_demod_stats;
  /// RX and TX buffers for precoder output
  RU_COMMON            common;
  /// beamforming weight vectors per eNB
Raymond Knopp's avatar
Raymond Knopp committed
746
  int32_t **beam_weights[NUMBER_OF_eNB_MAX+1][15];
747 748 749

  /// received frequency-domain signal for PRACH (IF4p5 RRU) 
  int16_t              **prach_rxsigF;
750 751
  /// received frequency-domain signal for PRACH BR (IF4p5 RRU) 
  int16_t              **prach_rxsigF_br[4];
752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853 854 855 856 857 858 859 860 861 862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907
  /// sequence number for IF5
  uint8_t seqno;
  /// initial timestamp used as an offset make first real timestamp 0
  openair0_timestamp   ts_offset;
  /// process scheduling variables
  RU_proc_t            proc;
} RU_t;


typedef struct {
  //unsigned int   rx_power[NUMBER_OF_CONNECTED_eNB_MAX][NB_ANTENNAS_RX];     //! estimated received signal power (linear)
  //unsigned short rx_power_dB[NUMBER_OF_CONNECTED_eNB_MAX][NB_ANTENNAS_RX];  //! estimated received signal power (dB)
  //unsigned short rx_avg_power_dB[NUMBER_OF_CONNECTED_eNB_MAX];              //! estimated avg received signal power (dB)

  // RRC measurements
  uint32_t rssi;
  int n_adj_cells;
  unsigned int adj_cell_id[6];
  uint32_t rsrq[7];
  uint32_t rsrp[7];
  float rsrp_filtered[7]; // after layer 3 filtering
  float rsrq_filtered[7];
  // common measurements
  //! estimated noise power (linear)
  unsigned int   n0_power[NB_ANTENNAS_RX];
  //! estimated noise power (dB)
  unsigned short n0_power_dB[NB_ANTENNAS_RX];
  //! total estimated noise power (linear)
  unsigned int   n0_power_tot;
  //! total estimated noise power (dB)
  unsigned short n0_power_tot_dB;
  //! average estimated noise power (linear)
  unsigned int   n0_power_avg;
  //! average estimated noise power (dB)
  unsigned short n0_power_avg_dB;
  //! total estimated noise power (dBm)
  short n0_power_tot_dBm;

  // UE measurements
  //! estimated received spatial signal power (linear)
  int            rx_spatial_power[NUMBER_OF_CONNECTED_eNB_MAX][2][2];
  //! estimated received spatial signal power (dB)
  unsigned short rx_spatial_power_dB[NUMBER_OF_CONNECTED_eNB_MAX][2][2];

  /// estimated received signal power (sum over all TX antennas)
  //int            wideband_cqi[NUMBER_OF_CONNECTED_eNB_MAX][NB_ANTENNAS_RX];
  int            rx_power[NUMBER_OF_CONNECTED_eNB_MAX][NB_ANTENNAS_RX];
  /// estimated received signal power (sum over all TX antennas)
  //int            wideband_cqi_dB[NUMBER_OF_CONNECTED_eNB_MAX][NB_ANTENNAS_RX];
  unsigned short rx_power_dB[NUMBER_OF_CONNECTED_eNB_MAX][NB_ANTENNAS_RX];

  /// estimated received signal power (sum over all TX/RX antennas)
  int            rx_power_tot[NUMBER_OF_CONNECTED_eNB_MAX]; //NEW
  /// estimated received signal power (sum over all TX/RX antennas)
  unsigned short rx_power_tot_dB[NUMBER_OF_CONNECTED_eNB_MAX]; //NEW

  //! estimated received signal power (sum of all TX/RX antennas, time average)
  int            rx_power_avg[NUMBER_OF_CONNECTED_eNB_MAX];
  //! estimated received signal power (sum of all TX/RX antennas, time average, in dB)
  unsigned short rx_power_avg_dB[NUMBER_OF_CONNECTED_eNB_MAX];

  /// SINR (sum of all TX/RX antennas, in dB)
  int            wideband_cqi_tot[NUMBER_OF_CONNECTED_eNB_MAX];
  /// SINR (sum of all TX/RX antennas, time average, in dB)
  int            wideband_cqi_avg[NUMBER_OF_CONNECTED_eNB_MAX];

  //! estimated rssi (dBm)
  short          rx_rssi_dBm[NUMBER_OF_CONNECTED_eNB_MAX];
  //! estimated correlation (wideband linear) between spatial channels (computed in dlsch_demodulation)
  int            rx_correlation[NUMBER_OF_CONNECTED_eNB_MAX][2];
  //! estimated correlation (wideband dB) between spatial channels (computed in dlsch_demodulation)
  int            rx_correlation_dB[NUMBER_OF_CONNECTED_eNB_MAX][2];

  /// Wideband CQI (sum of all RX antennas, in dB, for precoded transmission modes (3,4,5,6), up to 4 spatial streams)
  int            precoded_cqi_dB[NUMBER_OF_CONNECTED_eNB_MAX+1][4];
  /// Subband CQI per RX antenna (= SINR)
  int            subband_cqi[NUMBER_OF_CONNECTED_eNB_MAX][NB_ANTENNAS_RX][NUMBER_OF_SUBBANDS_MAX];
  /// Total Subband CQI  (= SINR)
  int            subband_cqi_tot[NUMBER_OF_CONNECTED_eNB_MAX][NUMBER_OF_SUBBANDS_MAX];
  /// Subband CQI in dB (= SINR dB)
  int            subband_cqi_dB[NUMBER_OF_CONNECTED_eNB_MAX][NB_ANTENNAS_RX][NUMBER_OF_SUBBANDS_MAX];
  /// Total Subband CQI
  int            subband_cqi_tot_dB[NUMBER_OF_CONNECTED_eNB_MAX][NUMBER_OF_SUBBANDS_MAX];
  /// Wideband PMI for each RX antenna
  int            wideband_pmi_re[NUMBER_OF_CONNECTED_eNB_MAX][NB_ANTENNAS_RX];
  /// Wideband PMI for each RX antenna
  int            wideband_pmi_im[NUMBER_OF_CONNECTED_eNB_MAX][NB_ANTENNAS_RX];
  ///Subband PMI for each RX antenna
  int            subband_pmi_re[NUMBER_OF_CONNECTED_eNB_MAX][NUMBER_OF_SUBBANDS_MAX][NB_ANTENNAS_RX];
  ///Subband PMI for each RX antenna
  int            subband_pmi_im[NUMBER_OF_CONNECTED_eNB_MAX][NUMBER_OF_SUBBANDS_MAX][NB_ANTENNAS_RX];
  /// chosen RX antennas (1=Rx antenna 1, 2=Rx antenna 2, 3=both Rx antennas)
  unsigned char           selected_rx_antennas[NUMBER_OF_CONNECTED_eNB_MAX][NUMBER_OF_SUBBANDS_MAX];
  /// Wideband Rank indication
  unsigned char  rank[NUMBER_OF_CONNECTED_eNB_MAX];
  /// Number of RX Antennas
  unsigned char  nb_antennas_rx;
  /// DLSCH error counter
  // short          dlsch_errors;

} PHY_MEASUREMENTS;

typedef struct {
  //unsigned int   rx_power[NUMBER_OF_CONNECTED_eNB_MAX][NB_ANTENNAS_RX];     //! estimated received signal power (linear)
  //unsigned short rx_power_dB[NUMBER_OF_CONNECTED_eNB_MAX][NB_ANTENNAS_RX];  //! estimated received signal power (dB)
  //unsigned short rx_avg_power_dB[NUMBER_OF_CONNECTED_eNB_MAX];              //! estimated avg received signal power (dB)

  // common measurements
  //! estimated noise power (linear)
  unsigned int   n0_power[MAX_NUM_RU_PER_eNB];
  //! estimated noise power (dB)
  unsigned short n0_power_dB[MAX_NUM_RU_PER_eNB];
  //! total estimated noise power (linear)
  unsigned int   n0_power_tot;
  //! estimated avg noise power (dB)
  unsigned short n0_power_tot_dB;
  //! estimated avg noise power (dB)
  short n0_power_tot_dBm;
  //! estimated avg noise power per RB per RX ant (lin)
  unsigned short n0_subband_power[MAX_NUM_RU_PER_eNB][100];
  //! estimated avg noise power per RB per RX ant (dB)
  unsigned short n0_subband_power_dB[MAX_NUM_RU_PER_eNB][100];
  //! estimated avg noise power per RB (dB)
  short n0_subband_power_tot_dB[100];
  //! estimated avg noise power per RB (dBm)
  short n0_subband_power_tot_dBm[100];
  // eNB measurements (per user)
  //! estimated received spatial signal power (linear)
  unsigned int   rx_spatial_power[NUMBER_OF_UE_MAX][2][2];
  //! estimated received spatial signal power (dB)
  unsigned short rx_spatial_power_dB[NUMBER_OF_UE_MAX][2][2];
  //! estimated rssi (dBm)
  short          rx_rssi_dBm[NUMBER_OF_UE_MAX];
  //! estimated correlation (wideband linear) between spatial channels (computed in dlsch_demodulation)
  int            rx_correlation[NUMBER_OF_UE_MAX][2];
  //! estimated correlation (wideband dB) between spatial channels (computed in dlsch_demodulation)
  int            rx_correlation_dB[NUMBER_OF_UE_MAX][2];

  /// Wideband CQI (= SINR)
  int            wideband_cqi[NUMBER_OF_UE_MAX][MAX_NUM_RU_PER_eNB];
  /// Wideband CQI in dB (= SINR dB)
  int            wideband_cqi_dB[NUMBER_OF_UE_MAX][MAX_NUM_RU_PER_eNB];
  /// Wideband CQI (sum of all RX antennas, in dB)
  char           wideband_cqi_tot[NUMBER_OF_UE_MAX];
  /// Subband CQI per RX antenna and RB (= SINR)
  int            subband_cqi[NUMBER_OF_UE_MAX][MAX_NUM_RU_PER_eNB][100];
  /// Total Subband CQI and RB (= SINR)
  int            subband_cqi_tot[NUMBER_OF_UE_MAX][100];
  /// Subband CQI in dB and RB (= SINR dB)
  int            subband_cqi_dB[NUMBER_OF_UE_MAX][MAX_NUM_RU_PER_eNB][100];
  /// Total Subband CQI and RB
  int            subband_cqi_tot_dB[NUMBER_OF_UE_MAX][100];

} PHY_MEASUREMENTS_eNB;


908
/// Top-level PHY Data Structure for eNB
909
typedef struct PHY_VARS_eNB_s {
910
  /// Module ID indicator for this instance
Raymond Knopp's avatar
 
Raymond Knopp committed
911 912
  module_id_t          Mod_id;
  uint8_t              CC_id;
913
  uint8_t              configured;
914
  eNB_proc_t           proc;
Raymond Knopp's avatar
Raymond Knopp committed
915
  int                  single_thread_flag;
916
  int                  abstraction_flag;
917 918
  int                  num_RU;
  RU_t                 *RU_list[MAX_NUM_RU_PER_eNB];
919 920 921 922
  /// Ethernet parameters for northbound midhaul interface
  eth_params_t         eth_params_n;
  /// Ethernet parameters for fronthaul interface
  eth_params_t         eth_params;
923
  int                  rx_total_gain_dB;
924 925
  int                  (*td)(struct PHY_VARS_eNB_s *eNB,int UE_id,int harq_pid,int llr8_flag);
  int                  (*te)(struct PHY_VARS_eNB_s *,uint8_t *,uint8_t,LTE_eNB_DLSCH_t *,int,uint8_t,time_stats_t *,time_stats_t *,time_stats_t *);
926
  int                  (*start_if)(struct RU_t_s *ru,struct PHY_VARS_eNB_s *eNB);
Raymond Knopp's avatar
 
Raymond Knopp committed
927
  uint8_t              local_flag;
928
  LTE_DL_FRAME_PARMS   frame_parms;
929 930 931
  PHY_MEASUREMENTS_eNB measurements;
  IF_Module_t          *if_inst;
  UL_IND_t             UL_INFO;
932
  pthread_mutex_t      UL_INFO_mutex;
933
  /// NFAPI RX ULSCH information
934
  nfapi_rx_indication_pdu_t  rx_pdu_list[NFAPI_RX_IND_MAX_PDU];
935
  /// NFAPI RX ULSCH CRC information
936
  nfapi_crc_indication_pdu_t crc_pdu_list[NFAPI_CRC_IND_MAX_PDU];
937 938 939 940 941 942 943 944
  /// NFAPI HARQ information
  nfapi_harq_indication_pdu_t harq_pdu_list[NFAPI_HARQ_IND_MAX_PDU];
  /// NFAPI SR information
  nfapi_sr_indication_pdu_t sr_pdu_list[NFAPI_SR_IND_MAX_PDU];
  /// NFAPI CQI information
  nfapi_cqi_indication_pdu_t cqi_pdu_list[NFAPI_CQI_IND_MAX_PDU];
  /// NFAPI CQI information (raw component)
  nfapi_cqi_indication_raw_pdu_t cqi_raw_pdu_list[NFAPI_CQI_IND_MAX_PDU];
945 946 947 948 949 950
  /// NFAPI PRACH information
  nfapi_preamble_pdu_t preamble_list[MAX_NUM_RX_PRACH_PREAMBLES];
#ifdef Rel14
  /// NFAPI PRACH information BL/CE UEs
  nfapi_preamble_pdu_t preamble_list_br[MAX_NUM_RX_PRACH_PREAMBLES];
#endif
951 952
  Sched_Rsp_t          Sched_INFO;
  LTE_eNB_PDCCH        pdcch_vars[2];
953
  LTE_eNB_PHICH        phich_vars[2];
954
#ifdef Rel14
955 956
  LTE_eNB_EPDCCH       epdcch_vars[2];
  LTE_eNB_MPDCCH       mpdcch_vars[2];
957 958
  LTE_eNB_PRACH        prach_vars_br;
#endif
959
  LTE_eNB_COMMON       common_vars;
960
  LTE_eNB_UCI          uci_vars[NUMBER_OF_UE_MAX];
961 962 963 964 965 966
  LTE_eNB_SRS          srs_vars[NUMBER_OF_UE_MAX];
  LTE_eNB_PBCH         pbch;
  LTE_eNB_PUSCH       *pusch_vars[NUMBER_OF_UE_MAX];
  LTE_eNB_PRACH        prach_vars;
  LTE_eNB_DLSCH_t     *dlsch[NUMBER_OF_UE_MAX][2];   // Nusers times two spatial streams
  LTE_eNB_ULSCH_t     *ulsch[NUMBER_OF_UE_MAX+1];      // Nusers + number of RA
967
  LTE_eNB_DLSCH_t     *dlsch_SI,*dlsch_ra,*dlsch_p;
968 969 970
  LTE_eNB_DLSCH_t     *dlsch_MCH;
  LTE_eNB_UE_stats     UE_stats[NUMBER_OF_UE_MAX];
  LTE_eNB_UE_stats    *UE_stats_ptr[NUMBER_OF_UE_MAX];
971 972

  /// cell-specific reference symbols
Raymond Knopp's avatar
 
Raymond Knopp committed
973 974
  uint32_t         lte_gold_table[20][2][14];

975
  /// UE-specific reference symbols (p=5), TM 7
976
  uint32_t         lte_gold_uespec_port5_table[NUMBER_OF_UE_MAX][20][38];
977

Raymond Knopp's avatar
 
Raymond Knopp committed
978 979
  /// UE-specific reference symbols (p=7...14), TM 8/9/10
  uint32_t         lte_gold_uespec_table[2][20][2][21];
980

981
  /// mbsfn reference symbols
Raymond Knopp's avatar
 
Raymond Knopp committed
982
  uint32_t         lte_gold_mbsfn_table[10][3][42];
983

984
  uint32_t X_u[64][839];
985 986 987
#ifdef Rel14
  uint32_t X_u_br[4][64][839];
#endif
988
  uint8_t pbch_configured;
989
  uint8_t pbch_pdu[4]; //PBCH_PDU_SIZE
990 991 992
  char eNB_generate_rar;

  /// Indicator set to 0 after first SR
993
  uint8_t first_sr[NUMBER_OF_UE_MAX];
994

995
  uint32_t max_peak_val;
996 997
  int max_eNB_id, max_sync_pos;

998 999
  /// \brief sinr for all subcarriers of the current link (used only for abstraction).
  /// first index: ? [0..N_RB_DL*12[
1000 1001
  double *sinr_dB;

1002
  /// N0 (used for abstraction)
1003 1004 1005 1006 1007
  double N0;

  unsigned char first_run_timing_advance[NUMBER_OF_UE_MAX];
  unsigned char first_run_I0_measurements;

1008
  
1009 1010 1011 1012 1013 1014 1015 1016 1017
  unsigned char    is_secondary_eNB; // primary by default
  unsigned char    is_init_sync;     /// Flag to tell if initial synchronization is performed. This affects how often the secondary eNB will listen to the PSS from the primary system.
  unsigned char    has_valid_precoder; /// Flag to tell if secondary eNB has channel estimates to create NULL-beams from, and this B/F vector is created.
  unsigned char    PeNB_id;          /// id of Primary eNB

  /// hold the precoder for NULL beam to the primary user
  int              **dl_precoder_SeNB[3];
  char             log2_maxp; /// holds the maximum channel/precoder coefficient

1018
  /// if ==0 enables phy only test mode
1019 1020
  int mac_enabled;

1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043


  // PDSCH Varaibles
  PDSCH_CONFIG_DEDICATED pdsch_config_dedicated[NUMBER_OF_UE_MAX];

  // PUSCH Varaibles
  PUSCH_CONFIG_DEDICATED pusch_config_dedicated[NUMBER_OF_UE_MAX];

  // PUCCH variables
  PUCCH_CONFIG_DEDICATED pucch_config_dedicated[NUMBER_OF_UE_MAX];

  // UL-POWER-Control
  UL_POWER_CONTROL_DEDICATED ul_power_control_dedicated[NUMBER_OF_UE_MAX];

  // TPC
  TPC_PDCCH_CONFIG tpc_pdcch_config_pucch[NUMBER_OF_UE_MAX];
  TPC_PDCCH_CONFIG tpc_pdcch_config_pusch[NUMBER_OF_UE_MAX];

  // CQI reporting
  CQI_REPORT_CONFIG cqi_report_config[NUMBER_OF_UE_MAX];

  // SRS Variables
  SOUNDINGRS_UL_CONFIG_DEDICATED soundingrs_ul_config_dedicated[NUMBER_OF_UE_MAX];
1044
  uint8_t ncs_cell[20][7];
1045 1046 1047 1048 1049

  // Scheduling Request Config
  SCHEDULING_REQUEST_CONFIG scheduling_request_config[NUMBER_OF_UE_MAX];

  // Transmission mode per UE
1050
  uint8_t transmission_mode[NUMBER_OF_UE_MAX];
1051 1052 1053

  /// cba_last successful reception for each group, used for collision detection
  uint8_t cba_last_reception[4];
1054

1055 1056 1057
  // Pointers for active physicalConfigDedicated to be applied in current subframe
  struct PhysicalConfigDedicated *physicalConfigDedicated[NUMBER_OF_UE_MAX];

1058

1059 1060
  uint32_t rb_mask_ul[4];

1061 1062 1063 1064
  /// Information regarding TM5
  MU_MIMO_mode mu_mimo_mode[NUMBER_OF_UE_MAX];


1065 1066 1067 1068 1069 1070 1071 1072 1073
  /// target_ue_dl_mcs : only for debug purposes
  uint32_t target_ue_dl_mcs;
  /// target_ue_ul_mcs : only for debug purposes
  uint32_t target_ue_ul_mcs;
  /// target_ue_dl_rballoc : only for debug purposes
  uint32_t ue_dl_rb_alloc;
  /// target ul PRBs : only for debug
  uint32_t ue_ul_nb_rb;

1074
  ///check for Total Transmissions
Raymond Knopp's avatar
 
Raymond Knopp committed
1075
  uint32_t check_for_total_transmissions;
1076 1077

  ///check for MU-MIMO Transmissions
Raymond Knopp's avatar
 
Raymond Knopp committed
1078
  uint32_t check_for_MUMIMO_transmissions;
1079 1080

  ///check for SU-MIMO Transmissions
Raymond Knopp's avatar
 
Raymond Knopp committed
1081
  uint32_t check_for_SUMIMO_transmissions;
1082 1083

  ///check for FULL MU-MIMO Transmissions
Raymond Knopp's avatar
 
Raymond Knopp committed
1084
  uint32_t  FULL_MUMIMO_transmissions;
1085 1086

  /// Counter for total bitrate, bits and throughput in downlink
Raymond Knopp's avatar
 
Raymond Knopp committed
1087 1088 1089
  uint32_t total_dlsch_bitrate;
  uint32_t total_transmitted_bits;
  uint32_t total_system_throughput;
1090

1091
  int hw_timing_advance;
1092

1093 1094 1095 1096
  time_stats_t phy_proc;
  time_stats_t phy_proc_tx;
  time_stats_t phy_proc_rx;
  time_stats_t rx_prach;
1097

1098 1099 1100
  time_stats_t ofdm_mod_stats;
  time_stats_t dlsch_encoding_stats;
  time_stats_t dlsch_modulation_stats;
1101
  time_stats_t dlsch_scrambling_stats;
1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122
  time_stats_t dlsch_rate_matching_stats;
  time_stats_t dlsch_turbo_encoding_stats;
  time_stats_t dlsch_interleaving_stats;

  time_stats_t rx_dft_stats;
  time_stats_t ulsch_channel_estimation_stats;
  time_stats_t ulsch_freq_offset_estimation_stats;
  time_stats_t ulsch_decoding_stats;
  time_stats_t ulsch_demodulation_stats;
  time_stats_t ulsch_rate_unmatching_stats;
  time_stats_t ulsch_turbo_decoding_stats;
  time_stats_t ulsch_deinterleaving_stats;
  time_stats_t ulsch_demultiplexing_stats;
  time_stats_t ulsch_llr_stats;
  time_stats_t ulsch_tc_init_stats;
  time_stats_t ulsch_tc_alpha_stats;
  time_stats_t ulsch_tc_beta_stats;
  time_stats_t ulsch_tc_gamma_stats;
  time_stats_t ulsch_tc_ext_stats;
  time_stats_t ulsch_tc_intl1_stats;
  time_stats_t ulsch_tc_intl2_stats;
1123

1124 1125 1126
#ifdef LOCALIZATION
  /// time state for localization
  time_stats_t localization_stats;
1127
#endif
1128

1129 1130
  int32_t pucch1_stats_cnt[NUMBER_OF_UE_MAX][10];
  int32_t pucch1_stats[NUMBER_OF_UE_MAX][10*1024];
1131
  int32_t pucch1_stats_thres[NUMBER_OF_UE_MAX][10*1024];
1132
  int32_t pucch1ab_stats_cnt[NUMBER_OF_UE_MAX][10];
1133
  int32_t pucch1ab_stats[NUMBER_OF_UE_MAX][2*10*1024];
1134 1135 1136 1137 1138
  int32_t pusch_stats_rb[NUMBER_OF_UE_MAX][10240];
  int32_t pusch_stats_round[NUMBER_OF_UE_MAX][10240];
  int32_t pusch_stats_mcs[NUMBER_OF_UE_MAX][10240];
  int32_t pusch_stats_bsr[NUMBER_OF_UE_MAX][10240];
  int32_t pusch_stats_BO[NUMBER_OF_UE_MAX][10240];
1139 1140 1141
} PHY_VARS_eNB;

#define debug_msg if (((mac_xface->frame%100) == 0) || (mac_xface->frame < 50)) msg
1142

1143 1144
/// Top-level PHY Data Structure for UE
typedef struct {
Raymond Knopp's avatar
 
Raymond Knopp committed
1145
  /// \brief Module ID indicator for this instance
1146
  uint8_t Mod_id;
Raymond Knopp's avatar
 
Raymond Knopp committed
1147
  /// \brief Component carrier ID for this PHY instance
Raymond Knopp's avatar
 
Raymond Knopp committed
1148
  uint8_t CC_id;
1149 1150
  /// \brief Mapping of CC_id antennas to cards
  openair0_rf_map      rf_map;
Raymond Knopp's avatar
 
Raymond Knopp committed
1151 1152 1153 1154 1155
  //uint8_t local_flag;
  /// \brief Indicator of current run mode of UE (normal_txrx, rx_calib_ue, no_L2_connect, debug_prach)
  runmode_t mode;
  /// \brief Indicator that UE should perform band scanning
  int UE_scan;
1156 1157
  /// \brief Indicator that UE should perform coarse scanning around carrier
  int UE_scan_carrier;
Raymond Knopp's avatar
 
Raymond Knopp committed
1158
  /// \brief Indicator that UE is synchronized to an eNB
1159
  int is_synchronized;
1160 1161
  /// Data structure for UE process scheduling
  UE_proc_t proc;
1162 1163
  /// Flag to indicate the UE shouldn't do timing correction at all
  int no_timing_correction;
Raymond Knopp's avatar
 
Raymond Knopp committed
1164
  /// \brief Total gain of the TX chain (16-bit baseband I/Q to antenna)
Raymond Knopp's avatar
 
Raymond Knopp committed
1165
  uint32_t tx_total_gain_dB;
Raymond Knopp's avatar
 
Raymond Knopp committed
1166
  /// \brief Total gain of the RX chain (antenna to baseband I/Q) This is a function of rx_gain_mode (and the corresponding gain) and the rx_gain of the card.
1167
  uint32_t rx_total_gain_dB;
Raymond Knopp's avatar
 
Raymond Knopp committed
1168
  /// \brief Total gains with maximum RF gain stage (ExpressMIMO2/Lime)
Raymond Knopp's avatar
 
Raymond Knopp committed
1169
  uint32_t rx_gain_max[4];
Raymond Knopp's avatar
 
Raymond Knopp committed
1170
  /// \brief Total gains with medium RF gain stage (ExpressMIMO2/Lime)
Raymond Knopp's avatar
 
Raymond Knopp committed
1171
  uint32_t rx_gain_med[4];
Raymond Knopp's avatar
 
Raymond Knopp committed
1172
  /// \brief Total gains with bypassed RF gain stage (ExpressMIMO2/Lime)
Raymond Knopp's avatar
 
Raymond Knopp committed
1173
  uint32_t rx_gain_byp[4];
Raymond Knopp's avatar
 
Raymond Knopp committed
1174
  /// \brief Current transmit power
1175
  int16_t tx_power_dBm[10];
Raymond Knopp's avatar
 
Raymond Knopp committed
1176
  /// \brief Total number of REs in current transmission
1177
  int tx_total_RE[10];
Raymond Knopp's avatar
 
Raymond Knopp committed
1178
  /// \brief Maximum transmit power
1179
  int8_t tx_power_max_dBm;
Raymond Knopp's avatar
 
Raymond Knopp committed
1180
  /// \brief Number of eNB seen by UE
1181
  uint8_t n_connected_eNB;
Raymond Knopp's avatar
 
Raymond Knopp committed
1182
  /// \brief indicator that Handover procedure has been initiated
1183
  uint8_t ho_initiated;
Raymond Knopp's avatar
 
Raymond Knopp committed
1184
  /// \brief indicator that Handover procedure has been triggered
1185
  uint8_t ho_triggered;
1186
  /// \brief Measurement variables.
1187 1188
  PHY_MEASUREMENTS measurements;
  LTE_DL_FRAME_PARMS  frame_parms;
1189
  /// \brief Frame parame before ho used to recover if ho fails.
1190 1191 1192
  LTE_DL_FRAME_PARMS  frame_parms_before_ho;
  LTE_UE_COMMON    common_vars;

1193 1194 1195
  // point to the current rxTx thread index
  uint8_t current_thread_id[10];

1196
  LTE_UE_PDSCH     *pdsch_vars[RX_NB_TH_MAX][NUMBER_OF_CONNECTED_eNB_MAX+1]; // two RxTx Threads
1197 1198 1199
  LTE_UE_PDSCH_FLP *pdsch_vars_flp[NUMBER_OF_CONNECTED_eNB_MAX+1];
  LTE_UE_PDSCH     *pdsch_vars_SI[NUMBER_OF_CONNECTED_eNB_MAX+1];
  LTE_UE_PDSCH     *pdsch_vars_ra[NUMBER_OF_CONNECTED_eNB_MAX+1];
1200
  LTE_UE_PDSCH     *pdsch_vars_p[NUMBER_OF_CONNECTED_eNB_MAX+1];
1201 1202
  LTE_UE_PDSCH     *pdsch_vars_MCH[NUMBER_OF_CONNECTED_eNB_MAX];
  LTE_UE_PBCH      *pbch_vars[NUMBER_OF_CONNECTED_eNB_MAX];
1203
  LTE_UE_PDCCH     *pdcch_vars[RX_NB_TH_MAX][NUMBER_OF_CONNECTED_eNB_MAX];
1204
  LTE_UE_PRACH     *prach_vars[NUMBER_OF_CONNECTED_eNB_MAX];
1205
  LTE_UE_DLSCH_t   *dlsch[RX_NB_TH_MAX][NUMBER_OF_CONNECTED_eNB_MAX][2]; // two RxTx Threads
1206
  LTE_UE_ULSCH_t   *ulsch[NUMBER_OF_CONNECTED_eNB_MAX];
1207 1208 1209
  LTE_UE_DLSCH_t   *dlsch_SI[NUMBER_OF_CONNECTED_eNB_MAX];
  LTE_UE_DLSCH_t   *dlsch_ra[NUMBER_OF_CONNECTED_eNB_MAX];
  LTE_UE_DLSCH_t   *dlsch_p[NUMBER_OF_CONNECTED_eNB_MAX];
1210
  LTE_UE_DLSCH_t   *dlsch_MCH[NUMBER_OF_CONNECTED_eNB_MAX];
Raymond Knopp's avatar
Raymond Knopp committed
1211 1212 1213
  // This is for SIC in the UE, to store the reencoded data
  LTE_eNB_DLSCH_t  *dlsch_eNB[NUMBER_OF_CONNECTED_eNB_MAX];

1214 1215 1216 1217 1218
  //Paging parameters
  uint32_t              IMSImod1024;
  uint32_t              PF;
  uint32_t              PO;

1219
  // For abstraction-purposes only
1220 1221 1222
  uint8_t               sr[10];
  uint8_t               pucch_sel[10];
  uint8_t               pucch_payload[22];
1223 1224 1225

  UE_MODE_t        UE_mode[NUMBER_OF_CONNECTED_eNB_MAX];
  /// cell-specific reference symbols
Raymond Knopp's avatar
 
Raymond Knopp committed
1226 1227
  uint32_t lte_gold_table[7][20][2][14];

1228
  /// UE-specific reference symbols (p=5), TM 7
1229
  uint32_t lte_gold_uespec_port5_table[20][38];
1230

Raymond Knopp's avatar
 
Raymond Knopp committed
1231
  /// ue-specific reference symbols
1232
  uint32_t lte_gold_uespec_table[2][20][2][21];
1233

Raymond Knopp's avatar
 
Raymond Knopp committed
1234 1235
  /// mbsfn reference symbols
  uint32_t lte_gold_mbsfn_table[10][3][42];
1236

1237
  uint32_t X_u[64][839];
1238

1239
  uint32_t high_speed_flag;
Raymond Knopp's avatar
 
Raymond Knopp committed
1240
  uint32_t perfect_ce;
1241
  int16_t ch_est_alpha;
1242 1243
  int generate_ul_signal[NUMBER_OF_CONNECTED_eNB_MAX];

1244
  UE_SCAN_INFO_t scan_info[NB_BANDS_MAX];
1245

1246 1247
  char ulsch_no_allocation_counter[NUMBER_OF_CONNECTED_eNB_MAX];

1248 1249


1250 1251 1252
  unsigned char ulsch_Msg3_active[NUMBER_OF_CONNECTED_eNB_MAX];
  uint32_t  ulsch_Msg3_frame[NUMBER_OF_CONNECTED_eNB_MAX];
  unsigned char ulsch_Msg3_subframe[NUMBER_OF_CONNECTED_eNB_MAX];
1253 1254
  PRACH_RESOURCES_t *prach_resources[NUMBER_OF_CONNECTED_eNB_MAX];
  int turbo_iterations, turbo_cntl_iterations;
1255 1256
  /// \brief ?.
  /// - first index: eNB [0..NUMBER_OF_CONNECTED_eNB_MAX[ (hard coded)
Raymond Knopp's avatar
 
Raymond Knopp committed
1257
  uint32_t total_TBS[NUMBER_OF_CONNECTED_eNB_MAX];
1258 1259
  /// \brief ?.
  /// - first index: eNB [0..NUMBER_OF_CONNECTED_eNB_MAX[ (hard coded)
Raymond Knopp's avatar
 
Raymond Knopp committed
1260
  uint32_t total_TBS_last[NUMBER_OF_CONNECTED_eNB_MAX];
1261 1262
  /// \brief ?.
  /// - first index: eNB [0..NUMBER_OF_CONNECTED_eNB_MAX[ (hard coded)
Raymond Knopp's avatar
 
Raymond Knopp committed
1263
  uint32_t bitrate[NUMBER_OF_CONNECTED_eNB_MAX];
1264 1265
  /// \brief ?.
  /// - first index: eNB [0..NUMBER_OF_CONNECTED_eNB_MAX[ (hard coded)
Raymond Knopp's avatar
 
Raymond Knopp committed
1266
  uint32_t total_received_bits[NUMBER_OF_CONNECTED_eNB_MAX];
1267 1268 1269 1270 1271 1272 1273 1274 1275
  int dlsch_errors[NUMBER_OF_CONNECTED_eNB_MAX];
  int dlsch_errors_last[NUMBER_OF_CONNECTED_eNB_MAX];
  int dlsch_received[NUMBER_OF_CONNECTED_eNB_MAX];
  int dlsch_received_last[NUMBER_OF_CONNECTED_eNB_MAX];
  int dlsch_fer[NUMBER_OF_CONNECTED_eNB_MAX];
  int dlsch_SI_received[NUMBER_OF_CONNECTED_eNB_MAX];
  int dlsch_SI_errors[NUMBER_OF_CONNECTED_eNB_MAX];
  int dlsch_ra_received[NUMBER_OF_CONNECTED_eNB_MAX];
  int dlsch_ra_errors[NUMBER_OF_CONNECTED_eNB_MAX];
1276 1277
  int dlsch_p_received[NUMBER_OF_CONNECTED_eNB_MAX];
  int dlsch_p_errors[NUMBER_OF_CONNECTED_eNB_MAX];
1278 1279 1280 1281 1282 1283 1284 1285
  int dlsch_mch_received_sf[MAX_MBSFN_AREA][NUMBER_OF_CONNECTED_eNB_MAX];
  int dlsch_mch_received[NUMBER_OF_CONNECTED_eNB_MAX];
  int dlsch_mcch_received[MAX_MBSFN_AREA][NUMBER_OF_CONNECTED_eNB_MAX];
  int dlsch_mtch_received[MAX_MBSFN_AREA][NUMBER_OF_CONNECTED_eNB_MAX];
  int dlsch_mcch_errors[MAX_MBSFN_AREA][NUMBER_OF_CONNECTED_eNB_MAX];
  int dlsch_mtch_errors[MAX_MBSFN_AREA][NUMBER_OF_CONNECTED_eNB_MAX];
  int dlsch_mcch_trials[MAX_MBSFN_AREA][NUMBER_OF_CONNECTED_eNB_MAX];
  int dlsch_mtch_trials[MAX_MBSFN_AREA][NUMBER_OF_CONNECTED_eNB_MAX];
1286 1287
  int current_dlsch_cqi[NUMBER_OF_CONNECTED_eNB_MAX];
  unsigned char first_run_timing_advance[NUMBER_OF_CONNECTED_eNB_MAX];
1288 1289 1290 1291
  uint8_t               generate_prach;
  uint8_t               prach_cnt;
  uint8_t               prach_PreambleIndex;
  //  uint8_t               prach_timer;
1292 1293
  uint8_t               decode_SIB;
  uint8_t               decode_MIB;
1294
  int              rx_offset; /// Timing offset
1295
  int              rx_offset_diff; /// Timing adjustment for ofdm symbol0 on HW USRP
1296
  int              time_sync_cell;
1297
  int              timing_advance; ///timing advance signalled from eNB
1298
  int              hw_timing_advance;
1299
  int              N_TA_offset; ///timing offset used in TDD
1300
  /// Flag to tell if UE is secondary user (cognitive mode)
1301
  unsigned char    is_secondary_ue;
1302
  /// Flag to tell if secondary eNB has channel estimates to create NULL-beams from.
1303
  unsigned char    has_valid_precoder;
1304 1305 1306
  /// hold the precoder for NULL beam to the primary eNB
  int              **ul_precoder_S_UE;
  /// holds the maximum channel/precoder coefficient
1307
  char             log2_maxp;
1308

1309 1310 1311
  /// if ==0 enables phy only test mode
  int mac_enabled;

1312
  /// Flag to initialize averaging of PHY measurements
1313
  int init_averaging;
1314

1315 1316
  /// \brief sinr for all subcarriers of the current link (used only for abstraction).
  /// - first index: ? [0..12*N_RB_DL[
1317
  double *sinr_dB;
1318

1319 1320
  /// \brief sinr for all subcarriers of first symbol for the CQI Calculation.
  /// - first index: ? [0..12*N_RB_DL[
1321 1322
  double *sinr_CQI_dB;

1323 1324 1325
  /// sinr_effective used for CQI calulcation
  double sinr_eff;

1326 1327
  /// N0 (used for abstraction)
  double N0;
1328

1329 1330 1331 1332 1333
  /// PDSCH Varaibles
  PDSCH_CONFIG_DEDICATED pdsch_config_dedicated[NUMBER_OF_CONNECTED_eNB_MAX];

  /// PUSCH Varaibles
  PUSCH_CONFIG_DEDICATED pusch_config_dedicated[NUMBER_OF_CONNECTED_eNB_MAX];
1334

1335 1336 1337 1338 1339 1340 1341
  /// PUSCH contention-based access vars
  PUSCH_CA_CONFIG_DEDICATED  pusch_ca_config_dedicated[NUMBER_OF_eNB_MAX]; // lola

  /// PUCCH variables

  PUCCH_CONFIG_DEDICATED pucch_config_dedicated[NUMBER_OF_CONNECTED_eNB_MAX];

1342
  uint8_t ncs_cell[20][7];
1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360

  /// UL-POWER-Control
  UL_POWER_CONTROL_DEDICATED ul_power_control_dedicated[NUMBER_OF_CONNECTED_eNB_MAX];

  /// TPC
  TPC_PDCCH_CONFIG tpc_pdcch_config_pucch[NUMBER_OF_CONNECTED_eNB_MAX];
  TPC_PDCCH_CONFIG tpc_pdcch_config_pusch[NUMBER_OF_CONNECTED_eNB_MAX];

  /// CQI reporting
  CQI_REPORT_CONFIG cqi_report_config[NUMBER_OF_CONNECTED_eNB_MAX];

  /// SRS Variables
  SOUNDINGRS_UL_CONFIG_DEDICATED soundingrs_ul_config_dedicated[NUMBER_OF_CONNECTED_eNB_MAX];

  /// Scheduling Request Config
  SCHEDULING_REQUEST_CONFIG scheduling_request_config[NUMBER_OF_CONNECTED_eNB_MAX];

  /// Transmission mode per eNB
1361
  uint8_t transmission_mode[NUMBER_OF_CONNECTED_eNB_MAX];
1362

1363
  time_stats_t phy_proc[RX_NB_TH];
1364
  time_stats_t phy_proc_tx;
1365
  time_stats_t phy_proc_rx[RX_NB_TH];
1366

1367 1368
  uint32_t use_ia_receiver;

1369 1370 1371 1372 1373 1374 1375 1376 1377
  time_stats_t ofdm_mod_stats;
  time_stats_t ulsch_encoding_stats;
  time_stats_t ulsch_modulation_stats;
  time_stats_t ulsch_segmentation_stats;
  time_stats_t ulsch_rate_matching_stats;
  time_stats_t ulsch_turbo_encoding_stats;
  time_stats_t ulsch_interleaving_stats;
  time_stats_t ulsch_multiplexing_stats;

hbilel's avatar
hbilel committed
1378
  time_stats_t generic_stat;
1379
  time_stats_t generic_stat_bis[RX_NB_TH][LTE_SLOTS_PER_SUBFRAME];
1380 1381 1382 1383 1384 1385
  time_stats_t ue_front_end_stat[RX_NB_TH];
  time_stats_t ue_front_end_per_slot_stat[RX_NB_TH][LTE_SLOTS_PER_SUBFRAME];
  time_stats_t pdcch_procedures_stat[RX_NB_TH];
  time_stats_t pdsch_procedures_stat[RX_NB_TH];
  time_stats_t pdsch_procedures_per_slot_stat[RX_NB_TH][LTE_SLOTS_PER_SUBFRAME];
  time_stats_t dlsch_procedures_stat[RX_NB_TH];
hbilel's avatar
hbilel committed
1386

1387
  time_stats_t ofdm_demod_stats;
1388
  time_stats_t dlsch_rx_pdcch_stats;
1389 1390 1391
  time_stats_t rx_dft_stats;
  time_stats_t dlsch_channel_estimation_stats;
  time_stats_t dlsch_freq_offset_estimation_stats;
1392
  time_stats_t dlsch_decoding_stats[2];
1393 1394 1395 1396 1397
  time_stats_t dlsch_demodulation_stats;
  time_stats_t dlsch_rate_unmatching_stats;
  time_stats_t dlsch_turbo_decoding_stats;
  time_stats_t dlsch_deinterleaving_stats;
  time_stats_t dlsch_llr_stats;
tct-labo4's avatar
tct-labo4 committed
1398
  time_stats_t dlsch_llr_stats_parallelization[RX_NB_TH][LTE_SLOTS_PER_SUBFRAME];
1399
  time_stats_t dlsch_unscrambling_stats;
Raymond Knopp's avatar
Raymond Knopp committed
1400 1401 1402
  time_stats_t dlsch_rate_matching_stats;
  time_stats_t dlsch_turbo_encoding_stats;
  time_stats_t dlsch_interleaving_stats;
1403 1404 1405 1406 1407 1408 1409
  time_stats_t dlsch_tc_init_stats;
  time_stats_t dlsch_tc_alpha_stats;
  time_stats_t dlsch_tc_beta_stats;
  time_stats_t dlsch_tc_gamma_stats;
  time_stats_t dlsch_tc_ext_stats;
  time_stats_t dlsch_tc_intl1_stats;
  time_stats_t dlsch_tc_intl2_stats;
1410
  time_stats_t tx_prach;
1411

Raymond Knopp's avatar
Raymond Knopp committed
1412 1413 1414
  /// RF and Interface devices per CC

  openair0_device rfdevice; 
1415 1416
} PHY_VARS_UE;

1417 1418 1419 1420 1421 1422 1423
/* this structure is used to pass both UE phy vars and
 * proc to the function UE_thread_rxn_txnp4
 */
struct rx_tx_thread_data {
  PHY_VARS_UE    *UE;
  UE_rxtx_proc_t *proc;
};
1424

1425 1426
void exit_fun(const char* s);

1427 1428 1429 1430 1431
#include "UTIL/LOG/log_extern.h"
extern pthread_cond_t sync_cond;
extern pthread_mutex_t sync_mutex;
extern int sync_var;

1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479
#define MAX_RRU_CONFIG_SIZE 1024
typedef enum {
  RAU_tick=0,
  RRU_capabilities=1,
  RRU_config=2,
  RRU_MSG_max_num=3
} rru_config_msg_type_t;

typedef struct RRU_CONFIG_msg_s {
  rru_config_msg_type_t type;
  ssize_t len;
  uint8_t msg[MAX_RRU_CONFIG_SIZE];
} RRU_CONFIG_msg_t;

typedef enum {
  OAI_IF5_only      =0,
  OAI_IF4p5_only    =1,
  OAI_IF5_and_IF4p5 =2,
  MBP_IF5           =3,
  MAX_FH_FMTs       =4
} FH_fmt_options_t;

#define MAX_BANDS_PER_RRU 4

typedef struct RRU_capabilities_s {
  /// Fronthaul format
  FH_fmt_options_t FH_fmt;
  /// number of EUTRA bands (<=4) supported by RRU
  uint8_t          num_bands;
  /// EUTRA band list supported by RRU
  uint8_t          band_list[MAX_BANDS_PER_RRU];
  /// Number of concurrent bands (component carriers)
  uint8_t          num_concurrent_bands;
  /// Maximum TX EPRE of each band
  int8_t           max_pdschReferenceSignalPower[MAX_BANDS_PER_RRU];
  /// Maximum RX gain of each band
  uint8_t          max_rxgain[MAX_BANDS_PER_RRU];
  /// Number of RX ports of each band
  uint8_t          nb_rx[MAX_BANDS_PER_RRU];
  /// Number of TX ports of each band
  uint8_t          nb_tx[MAX_BANDS_PER_RRU]; 
  /// max DL bandwidth (1,6,15,25,50,75,100)
  uint8_t          N_RB_DL[MAX_BANDS_PER_RRU];
  /// max UL bandwidth (1,6,15,25,50,75,100)
  uint8_t          N_RB_UL[MAX_BANDS_PER_RRU];
} RRU_capabilities_t;

typedef struct RRU_config_s {
1480

1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504
  /// Fronthaul format
  RU_if_south_t FH_fmt;
  /// number of EUTRA bands (<=4) configured in RRU
  uint8_t num_bands;
  /// EUTRA band list configured in RRU
  uint8_t band_list[MAX_BANDS_PER_RRU];
  /// TX frequency
  uint32_t tx_freq[MAX_BANDS_PER_RRU];
  /// RX frequency
  uint32_t rx_freq[MAX_BANDS_PER_RRU];
  /// TX attenation w.r.t. max
  uint8_t att_tx[MAX_BANDS_PER_RRU];
  /// RX attenuation w.r.t. max
  uint8_t att_rx[MAX_BANDS_PER_RRU];
  /// DL bandwidth
  uint8_t N_RB_DL[MAX_BANDS_PER_RRU];
  /// UL bandwidth
  uint8_t N_RB_UL[MAX_BANDS_PER_RRU];
  /// 3/4 sampling rate
  uint8_t threequarter_fs[MAX_BANDS_PER_RRU];
  /// prach_FreqOffset for IF4p5
  int prach_FreqOffset[MAX_BANDS_PER_RRU];
  /// prach_ConfigIndex for IF4p5
  int prach_ConfigIndex[MAX_BANDS_PER_RRU];
1505 1506 1507 1508 1509 1510 1511
#ifdef Rel14
  int emtc_prach_CElevel_enable[MAX_BANDS_PER_RRU][4];
  /// emtc_prach_FreqOffset for IF4p5 per CE Level
  int emtc_prach_FreqOffset[MAX_BANDS_PER_RRU][4];
  /// emtc_prach_ConfigIndex for IF4p5 per CE Level
  int emtc_prach_ConfigIndex[MAX_BANDS_PER_RRU][4];
#endif
1512
} RRU_config_t;
1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528


static inline void wait_sync(char *thread_name) {

  printf( "waiting for sync (%s)\n",thread_name);
  pthread_mutex_lock( &sync_mutex );
  
  while (sync_var<0)
    pthread_cond_wait( &sync_cond, &sync_mutex );
  
  pthread_mutex_unlock(&sync_mutex);
  
  printf( "got sync (%s)\n", thread_name);

}

1529
static inline int wait_on_condition(pthread_mutex_t *mutex,pthread_cond_t *cond,int *instance_cnt,char *name) {
1530 1531 1532 1533 1534
  if (pthread_mutex_lock(mutex) != 0) {
    LOG_E( PHY, "[SCHED][eNB] error locking mutex for %s\n",name);
    exit_fun("nothing to add");
    return(-1);
  }
1535

1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549
  while (*instance_cnt < 0) {
    // most of the time the thread is waiting here
    // proc->instance_cnt_rxtx is -1
    pthread_cond_wait(cond,mutex); // this unlocks mutex_rxtx while waiting and then locks it again
  }

  if (pthread_mutex_unlock(mutex) != 0) {
    LOG_E(PHY,"[SCHED][eNB] error unlocking mutex for %s\n",name);
    exit_fun("nothing to add");
    return(-1);
  }
  return(0);
}

1550
static inline int wait_on_busy_condition(pthread_mutex_t *mutex,pthread_cond_t *cond,int *instance_cnt,char *name) {
1551 1552 1553 1554 1555 1556

  if (pthread_mutex_lock(mutex) != 0) {
    LOG_E( PHY, "[SCHED][eNB] error locking mutex for %s\n",name);
    exit_fun("nothing to add");
    return(-1);
  }
1557

1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571
  while (*instance_cnt == 0) {
    // most of the time the thread will skip this
    // waits only if proc->instance_cnt_rxtx is 0
    pthread_cond_wait(cond,mutex); // this unlocks mutex_rxtx while waiting and then locks it again
  }

  if (pthread_mutex_unlock(mutex) != 0) {
    LOG_E(PHY,"[SCHED][eNB] error unlocking mutex for %s\n",name);
    exit_fun("nothing to add");
    return(-1);
  }
  return(0);
}

1572
static inline int release_thread(pthread_mutex_t *mutex,int *instance_cnt,char *name) {
1573 1574 1575 1576 1577 1578

  if (pthread_mutex_lock(mutex) != 0) {
    LOG_E( PHY, "[SCHED][eNB] error locking mutex for %s\n",name);
    exit_fun("nothing to add");
    return(-1);
  }
1579

1580 1581
  LOG_D(PHY, "%s() name:%s instance_cnt:%u - about to decrement\n", __FUNCTION__, name, *instance_cnt);

1582
  *instance_cnt=*instance_cnt-1;
1583

1584 1585 1586 1587 1588 1589 1590
  if (pthread_mutex_unlock(mutex) != 0) {
    LOG_E( PHY, "[SCHED][eNB] error unlocking mutex for %s\n",name);
    exit_fun("nothing to add");
    return(-1);
  }
  return(0);
}
1591

1592 1593 1594 1595 1596 1597 1598 1599 1600

#include "PHY/INIT/defs.h"
#include "PHY/LTE_REFSIG/defs.h"
#include "PHY/MODULATION/defs.h"
#include "PHY/LTE_TRANSPORT/proto.h"
#include "PHY/LTE_ESTIMATION/defs.h"

#include "SIMULATION/ETH_TRANSPORT/defs.h"
#endif //  __PHY_DEFS__H__