Commit Graph

708 Commits

Author SHA1 Message Date
David Rupprecht 848496bb0f Moved get_earfcn to srslte get_carrier_freq func 2020-12-12 15:59:27 +01:00
David Rupprecht d4fb2dfb16 Added handling of inter rat measurement config function
Make report config more agonistic
2020-12-12 15:59:27 +01:00
David Rupprecht f4b0042c10 Added minimal interrat and nr measurement testcase
Added the handling of nr_r15 meas config
Added seperate handling of reportConfig for eutra
2020-12-12 15:59:27 +01:00
Andre Puschmann ab598dae3b gw: calculate GW throughput based on TTI timing
similiar like the RLC patch, MAC TTIs are passed to GW so the
rx/tx rate can be calculated based on the LTE timing
2020-12-12 15:59:27 +01:00
Xavier Arteaga d5d3594f49 Removed unused attribute 2020-12-12 15:59:26 +01:00
Xavier Arteaga f9643843a0 SRSENB/UE Fixed NR workers 2020-12-12 15:59:26 +01:00
Xavier Arteaga ac930003be SRSUE: Integrated NR workers 2020-12-12 15:59:26 +01:00
Xavier Arteaga a908fb6c5b Fix NR srsue/srsenb. Initial PHY NR in SRSENB. 2020-12-12 15:59:26 +01:00
Xavier Arteaga 2b2db90933 SRSUE: initial NR workers 2020-12-12 15:59:26 +01:00
Xavier Arteaga eed9405e40 Moved NR MAX MIMO layers to carrier 2020-12-12 15:59:26 +01:00
Xavier Arteaga c6798653be SRSUE: created initial PHY LTE worker pool 2020-12-12 15:59:26 +01:00
Andre Puschmann 07d2bc4fe8 change license header to agnostic version with hint to root LICENSE file 2020-12-12 15:59:25 +01:00
Xavier Arteaga 53d8319d2b SRSUE: protect secondary serving cell synch from concurrent access 2020-12-12 15:59:25 +01:00
Xavier Arteaga 287e651ef1 SRSUE: Protect nullptr buffer in secondary serving cell synch 2020-12-12 15:59:25 +01:00
Xavier Arteaga 959f37ae81 SRSUE: Renamed PHY scell_state to cell_state 2020-12-12 15:58:33 +01:00
Xavier Arteaga 4b8cd7ce92 SRSUE: protect scell state 2020-12-12 15:58:33 +01:00
Xavier Arteaga c5cb4d9984 SRSUE: Added time accurate SCell activation 2020-12-12 15:58:33 +01:00
Xavier Arteaga f64c268a69 SRSUE: Refactored MAC/RRC SCell Activation/Deactivation 2020-12-12 15:58:33 +01:00
Pedro Alvarez 454162cea7 Deleted nas_interface_stack. 2020-12-12 15:58:33 +01:00
Pedro Alvarez 604e79214d Changed NAS is_attached interface to is_registered. 2020-12-12 15:58:33 +01:00
Pedro Alvarez 5649ecaab0 Renamed nas_common.h to nas_config.h. Moved emm_state_t into nas_emm_state.h and nas_emm_state.cc. 2020-12-12 15:58:33 +01:00
Pedro Alvarez 96f39da5d7 Fixes for airplane simulator. 2020-12-12 15:58:33 +01:00
Pedro Alvarez 14844a168a Created new class to hold all NAS states for the NAS state machine. Added EMM-DEREGISTERED substates and EMM-REGISTERED substates.
Decoupled PLMN selection, attach request and service request. Removed RRC connect procedure from NAS.
2020-12-12 15:58:33 +01:00
Andre Puschmann 2be85217fd mac,ue: reset demux when restting MAC
this potentially fixes the issue we see during HO and RLF
under high DL load.

The issue happens because buffered DL PDUs are delivered to
RLC after reestablishing RLC that confuse the receiving
RLC entity bc the sequence numbers are very high, as opposed
to begin with zero again after reestablishment.
2020-12-12 15:58:33 +01:00
Andre Puschmann 7cf919e2af Fix MAC PDU packing after sending Truncated BSR (#2004)
* mac_test: add extended TBSR unit test

unit test to MAC UL packing after sending a TBSR

this fixes the MAC issues described in issue #2002

* mux: fix updating of LCG buffer state after packing PDU

we've previously lowered the buffer state of the LCG according
to the bytes that have been scheduled, but not according to
those that have been actually included in the PDU.

* proc_bsr: fix LCG buffer state updating for TBSR

when sending a TBSR do not update the internal buffer
state of the BSR proc.

This caused issues because the buffer state for all LCG that
are not included in the TBSR are set to zero, although at least
one LCG does have data to transmit.

* rlc_am: include LCID when logging retx of SN
2020-12-12 15:58:32 +01:00
Francisco Paisana 510959b50f update nr asn1 files, and asn1 tests 2020-12-12 15:58:32 +01:00
Andre Puschmann 082e002b67 nas: fix airplane mode simulation
the current implementation was somehow broken after a
NAS refactor. It was undetected because we didn't really
use it.

this fixes the simulation by using a single timer to simulate
airplane mode transitions.
the timer is rearmed in the timer_expire() function
if the correspondig event is set.

Has been tested to work well with, e.g.:

--sim.airplane_t_on_ms 5000 --sim.airplane_t_off_ms 10000
2020-11-06 09:33:36 +01:00
Xavier Arteaga 32ea840a30 INTRA: better ring-buffer protection 2020-11-02 16:31:37 +01:00
Xavier Arteaga 369cffec00 More deterministic SCell search test 2020-11-02 16:31:37 +01:00
Andre Puschmann fd5cde525c proc_bsr: fix race condition in BSR reporting
fix for #1934

This fixes a race condition between Stack thread and DL
PDU processing that lead to updates of the RLC buffer that
are undetected by the BSR routine.

What happens is that in a UL SCH PDU all outstanding data is transmitted
and and a LBSR with all zero buffers is sent.

14:39:47.327301 [MAC ] [D] [ 3793] BSR:   LCID=3 old_buffer=59
14:39:47.330600 [MAC ] [I] [ 3793] UL LCID=3 len=58 LBSR: b=0 0 0 0

Note that "old_buffer" isn't set to zero here.

At the same time (same TTI), the MAC PDU processing thread handles DL-SCH PDUs
that may generate new UL PDUs:

14:39:47.330749 [RLC ] [I] DRB1 Tx SDU (54 B, tx_sdu_queue_len=1)
14:39:47.330762 [RLC ] [I] DRB1 Tx SDU (54 B, tx_sdu_queue_len=2)
14:39:47.330775 [RLC ] [I] DRB1 Tx SDU (54 B, tx_sdu_queue_len=3)
..

Those PDUs are "new data" since the previous buffer state was zero.

Here is the race now between the threads, at the end of the bsr::step() function
old_buffer of each LCG is updated with the previous new_buffer, so
the buffer state of LCG=2 is now 59.

Now MAC starts the next TTI:

14:39:47.331910 [MAC ] [D] [ 3794] Running MAC tti=3794
14:39:47.331928 [MAC ] [D] [ 3794] Update Bj: lcid=0, Bj=0
14:39:47.331934 [MAC ] [D] [ 3794] Update Bj: lcid=1, Bj=0
14:39:47.331938 [MAC ] [D] [ 3794] Update Bj: lcid=2, Bj=0
14:39:47.331941 [MAC ] [D] [ 3794] Update Bj: lcid=3, Bj=-1752
14:39:47.331951 [MAC ] [D] [ 3794] BSR:   LCID=0 update new buffer=0
14:39:47.331960 [MAC ] [D] [ 3794] BSR:   LCID=1 update new buffer=0
14:39:47.331964 [MAC ] [D] [ 3794] BSR:   LCID=2 update new buffer=0
14:39:47.331971 [MAC ] [D] [ 3794] BSR:   LCID=3 update new buffer=335
14:39:47.331976 [MAC ] [D] [ 3794] BSR:    check_new_data() -> get_buffer_state_lcg(0)=0
14:39:47.331980 [MAC ] [D] [ 3794] BSR:    check_new_data() -> get_buffer_state_lcg(1)=0
14:39:47.331984 [MAC ] [D] [ 3794] BSR:    check_new_data() -> get_buffer_state_lcg(2)=59
14:39:47.331988 [MAC ] [D] [ 3794] BSR:    check_new_data() -> get_buffer_state_lcg(3)=0
14:39:47.331993 [MAC ] [D] [ 3794] BSR:   LCID=0 old_buffer=0
14:39:47.332000 [MAC ] [D] [ 3794] BSR:   LCID=1 old_buffer=0
14:39:47.332003 [MAC ] [D] [ 3794] BSR:   LCID=2 old_buffer=0
14:39:47.332007 [MAC ] [D] [ 3794] BSR:   LCID=3 old_buffer=335

And since the buffer state of LCG=2 isn't zero, the new data for LCID=3 of that LCG is considered.
So effectivly, the BSR missed the "empty" buffer state for a fraction of time and doesn't
consider the outgoing data generated in the same TTI as new. It therefore
doesn't transmit a BSR.

in which a BSR wasn't
2020-10-28 12:05:53 +01:00
Andre Puschmann d5286e70aa proc_bsr: refactor and add extra print_state() method
allows to call the print_state() routine from other places in the BSR
2020-10-28 12:05:53 +01:00
Francisco Paisana 514deaf25b fix resetting of phy and mac during reestablishment 2020-10-22 19:55:46 +02:00
Andre Puschmann a366500a78 rrc_proc: init cs_result to none
detected by Coverity CID 363053
2020-10-18 15:56:16 +02:00
Francisco Paisana 665b3996bb now the phy controller handles the scenario where the phy cell selection failed to be initialized 2020-10-16 15:54:42 +01:00
Andre Puschmann 937067a205 proc_phr: rename start_periodic_timer() and make sure its only started if a valid config is present 2020-10-13 17:38:45 +02:00
Andre Puschmann fab86382c1 mac,rrc: add interface to set SR config explicitly without touching any other MAC function
when releasing PUCCH/SRS (see 5.3.13 in 36.331) we need to reset the SR config as well.
In our case, SR is handled by MAC so we need to (re-)configure MAC, not all of
MAC though, just SR.
2020-10-13 17:38:45 +02:00
Francisco Paisana e7239163e9 silence noisy unhandled in_sync_ev logs 2020-10-12 18:24:14 +01:00
Francisco Paisana f185272367 added comments explaining the meaning of the cell reselection procedures 2020-10-12 13:42:46 +01:00
Francisco Paisana 49e7b8e36e - Change periodicity of cell reselection after a new serving cell has been selected
- Enable PHY intra measurements during RRC_IDLE
2020-10-12 13:42:46 +01:00
Francisco Paisana 585d7c923a refactor and simplification of cell selection procedure. Using now a SIB3 threshold to decide whether to select neighbor cell while in RRC_IDLE 2020-10-12 13:42:46 +01:00
Pedro Alvarez 5a4e71a6e4 Created k_enb_context structure that holds k_enb, NCC and NH to make it easier to restore context from failed handover. 2020-10-08 09:46:34 +01:00
Pedro Alvarez bcb422736c Save and restore NH on handover and handover failure. 2020-10-08 09:46:34 +01:00
Pedro Alvarez 3eb525563a Fix issue reading MNC length in USIM. 2020-10-07 10:04:50 +01:00
Xavier Arteaga 6ae47b6510 SRSUE: Deafult PUCCH/SRS does not imply full PHY dedicated defaults 2020-10-07 09:58:23 +02:00
Pedro Alvarez 22a6dc305f Moved common variables and functions from the usim and pcsc_usim classes into usim_base class. 2020-10-05 12:14:46 +01:00
Francisco Paisana 4ebe92f6a3 refactor phy configuration in the rrc to keep track of activated scells, and cells configurations 2020-10-02 18:50:29 +01:00
Francisco Paisana d910c910a4 rrc::meas_cell now uses stack timers instead of system timers. 2020-10-02 17:53:02 +01:00
Francisco Paisana 023d32975a avoid use of pointers to meas_cells in ho_proc as they may become dangling 2020-10-02 17:53:02 +01:00
Francisco Paisana 072b7be582 renamed rrc::cell_t to rrc::meas_cell 2020-10-02 17:53:02 +01:00
Andre Puschmann 0ef8e1fdac rrc: include pci when logging serving cell measurement
this should facilitate easier log parsing and plotting
if the cell measurements _always_ include the PCI, even
in the case of the serving cell

15:49:11.357447 [RRC ] [I] MEAS:  New measurement serving cell: earfcn=0, pci=1, rsrp=-11.52 dBm, cfo=+0.1 Hz
15:49:11.391610 [RRC ] [I] MEAS:  New measurement serving cell: earfcn=0, pci=1, rsrp=-11.52 dBm, cfo=-0.4 Hz
15:49:11.427325 [RRC ] [I] MEAS:  New measurement serving cell: earfcn=0, pci=1, rsrp=-11.52 dBm, cfo=-0.6 Hz
15:49:11.463101 [RRC ] [I] MEAS:  New measurement serving cell: earfcn=0, pci=1, rsrp=-11.52 dBm, cfo=-0.7 Hz
15:49:11.499817 [RRC ] [I] MEAS:  New measurement serving cell: earfcn=0, pci=1, rsrp=-11.51 dBm, cfo=+0.1 Hz
15:49:11.499828 [RRC ] [I] MEAS:  New measurement neighbour cell: earfcn=2850, pci=0, rsrp=-12.16 dBm, cfo=-0.8 Hz
15:49:11.535027 [RRC ] [I] MEAS:  New measurement serving cell: earfcn=0, pci=1, rsrp=-11.46 dBm, cfo=-0.8 Hz
15:49:11.571707 [RRC ] [I] MEAS:  New measurement serving cell: earfcn=0, pci=1, rsrp=-11.46 dBm, cfo=-0.9 Hz
15:49:11.607932 [RRC ] [I] MEAS:  New measurement serving cell: earfcn=0, pci=1, rsrp=-11.52 dBm, cfo=-0.8 Hz
2020-10-01 20:15:41 +02:00