Commit 45519c92 authored by ChenWeiTai's avatar ChenWeiTai

Merge feature-s1ap-r14-based-on-new-asn1c

parent 33d67f24
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#!/bin/bash
# in those arrays, each line is:
# <file> <sha1sum of file (without line 4 which changes depending on the location of the files)> <patch to apply to file>
RRC_Rel14=(
"SystemInformation-r8-IEs.h" 4df485c5ddf2540eca271876cdc512caa19b0890 "fix_asn1.data/RRC.rel14/SystemInformation-r8-IEs.h.diff"
"SystemInformation-NB-r13-IEs.h" 6d91332d5c39205819b06e5e36efe62ff8e5b33b "fix_asn1.data/RRC.rel14/SystemInformation-NB-r13-IEs.h.diff"
)
RRC_Rel10=(
"SystemInformation-r8-IEs.h" 603cd6615cff36ec7020692d72c0d6de7c4859cb "fix_asn1.data/RRC.rel10/SystemInformation-r8-IEs.h.diff"
)
X2AP_Rel11_2=(
"X2ap-CriticalityDiagnostics-IE-List.h" ae96308b37fcbcbf39da5012e42968135fc5f27b "fix_asn1.data/X2AP.rel11.2/X2ap-CriticalityDiagnostics-IE-List.h.diff"
)
red_color="$(tput setaf 1)"
green_color="$(tput setaf 2)"
reset_color="$(tput sgr0)"
function error()
{
echo -e "$red_color"ERROR: "$@""$reset_color"
exit 1
}
function check_sha1()
{
local file="$1"
local target_sha1="$2"
if [ ! -f "$file" ]
then
error "$file: no such file"
fi
# we don't use the line 4 of the file
# it contains the location of the ASN1 grammar
# and this location is not the same on every
# installation (this is for *.h files, for *.c
# files it's no big deal to skip that line)
local computed_sha1=$(sed 4d "$file" | sha1sum | cut -f 1 -d ' ')
if [ "$target_sha1" != "$computed_sha1" ]
then
error "$file: wrong SHA1"
fi
}
function patch_file()
{
local patch="$1"
local file="$2"
echo -e "$green_color""patch file $file with $OPENAIR_DIR/cmake_targets/tools/$patch""$reset_color"
patch "$file" "$OPENAIR_DIR/cmake_targets/tools/$patch"
if [ $? -ne 0 ]
then
error "patching of $file with $OPENAIR_DIR/cmake_targets/tools/$patch failed"
fi
}
function apply_patches()
{
local directory="$1"
local array=$2
local len=$3 # the length could be computed locally but the way to do it is not clear to me [CROUX]
local i
local file
local sha1
local patch
local item
for (( i = 0; i < $len; i += 3 ))
do
# special bash syntax to access the array
item=$array[$i]; file=${!item}
item=$array[$((i+1))]; sha1=${!item}
item=$array[$((i+2))]; patch=${!item}
check_sha1 "$directory/$file" "$sha1"
patch_file "$patch" "$directory/$file"
done
}
function patch_rrc()
{
local directory="$1"
local version="$2"
case "$version" in
Rel14 )
echo "patching RRC files release 14"
#apply_patches "$directory" RRC_Rel14 ${#RRC_Rel14[*]}
;;
Rel10 )
echo "patching RRC files release 10"
apply_patches "$directory" RRC_Rel10 ${#RRC_Rel10[*]}
;;
Rel8 )
echo "patching RRC files release 8 TODO?"
;;
* )
error unknwon/unhandled RRC version \'"$version"\'
;;
esac
}
function patch_nr_rrc()
{
local directory="$1"
local version="$2"
case "$version" in
NR_Rel15 )
echo "patching NR_RRC files release 15"
apply_patches "$directory" NR_RRC_Rel15 ${#NR_RRC_Rel15[*]}
;;
* )
error unknwon/unhandled NR_RRC version \'"$version"\'
;;
esac
}
function patch_x2ap()
{
local directory="$1"
local version="$2"
case "$version" in
R14 )
;;
R11 )
echo "patching X2AP files release 11.2"
apply_patches "$directory" X2AP_Rel11_2 ${#X2AP_Rel11_2[*]}
;;
* )
error unknwon/unhandled X2AP version \'"$version"\'
;;
esac
}
function patch_s1ap()
{
local directory="$1"
local version="$2"
case "$version" in
R14 )
;;
R10 )
#nothing to do anymore (fixes went to asn1c)
;;
* )
error unknwon/unhandled S1AP version \'"$version"\'
;;
esac
}
function main()
{
if [ $# -ne 3 ]
then
echo "ERROR: pass <output directory> <module> <version>"
exit 1
fi
if [ x"$OPENAIR_DIR" = x ]
then
error "the variable OPENAIR_DIR is not set"
fi
local directory="$1"
local module="$2"
local version="$3"
case "$module" in
RRC )
patch_rrc "$directory" "$version"
;;
NR_RRC )
patch_nr_rrc "$directory" "$version"
;;
X2AP )
patch_x2ap "$directory" "$version"
;;
S1AP )
patch_s1ap "$directory" "$version"
;;
* )
error unknown module "$module"
;;
esac
exit 0
}
main "$@"
#!/bin/bash
function main()
{
mkdir -p $1
cd $1
shift
local module="$2"
#if this script is called with only 2 arguments (so 1 here after the shift), it's for RRC
#(there may be a better way...)
if [ $# -eq 2 ]; then
#asn1c does not work well with extension groups, we need the following fix:
# replace [[ by '<name> SEQUENCE {'
# and ]] by '} OPTIONAL'
#<name> is ext<N> with N starting from 1 and incremented at each new [[ ]] just
#following another [[ ]]
#
#this is what the following C program does
echo generate asnfix.c
cat << EOF > asnfix.c
/* transforms:
* '[[' to 'name SEQUENCE {'
* ']]' to '} OPTIONAL'
* name is ext1, ext2, ..., for each [[ at the same level
* levels are delimited by { and }
* -- to end of line is a comment and unprocessed
* nested [[ ]] not handled
* { and } must be balanced
* [[ and ]] can be whatever, every combination is valid
*/
#include <stdio.h>
#include <stdlib.h>
void level(int toplevel)
{
int c;
int next_name = 1;
while (1) {
c = getchar();
next:
if (c == EOF) { if (toplevel) break; abort(); }
if (c == '-') {
c = getchar();
if (c != '-') { putchar('-'); goto next; }
putchar(c); putchar(c);
while (1) {
c = getchar(); if (c == EOF) abort();
putchar(c);
if (c == '\n') break;
}
continue;
}
if (c == '[') {
c = getchar();
if (c != '[') { putchar('['); goto next; }
printf("ext%d SEQUENCE {", next_name);
next_name++;
continue;
}
if (c == ']') {
c = getchar();
if (c != ']') { putchar(']'); goto next; }
printf("} OPTIONAL");
continue;
}
putchar(c);
if (c == '}') { if (toplevel) abort(); break; }
if (c == '{') level(0);
}
}
int main(void)
{
level(1);
fflush(stdout);
return 0;
}
EOF
echo compile asnfix.c
gcc -Wall -o asnfix asnfix.c
echo run asnfix on $1
./asnfix < $1 > fixed_grammar.asn
rm -f asnfix asnfix.c
echo done with asnfix
echo running asn1c
case "$module" in
RRC )
asn1c -gen-PER -fcompound-names -no-gen-example fixed_grammar.asn 2>&1 | grep -v -- '->' | grep -v '^Compiled' |grep -v sample
;;
NR_RRC )
export ASN1C_PREFIX=NR_
asn1c -gen-PER -fcompound-names -no-gen-example fixed_grammar.asn 2>&1 | grep -v -- '->' | grep -v '^Compiled' |grep -v sample
;;
S1AP )
export ASN1C_PREFIX=S1AP_
asn1c -gen-PER -fcompound-names -no-gen-example fixed_grammar.asn 2>&1 | grep -v -- '->' | grep -v '^Compiled' |grep -v sample
;;
esac
rm -f fixed_grammar.asn
echo asn1c done
else
case "$module" in
RRC )
asn1c -fcompound-names -fno-include-deps -gen-PER -no-gen-OER -no-gen-example $* 2>&1 | grep -v -- '->' | grep -v '^Compiled' |grep -v sample
;;
NR_RRC )
export ASN1C_PREFIX=NR_
asn1c -fcompound-names -fno-include-deps -gen-PER -no-gen-OER -no-gen-example $* 2>&1 | grep -v -- '->' | grep -v '^Compiled' |grep -v sample
;;
S1AP )
export ASN1C_PREFIX=S1AP_
asn1c -fcompound-names -fno-include-deps -gen-PER -no-gen-OER -no-gen-example $* 2>&1 | grep -v -- '->' | grep -v '^Compiled' |grep -v sample
;;
esac
fi
awk '
BEGIN {
print "#ifndef __ASN1_CONSTANTS_H__"
print "#define __ASN1_CONSTANTS_H__"
}
/INTEGER ::=/ {
gsub("INTEGER ::=","")
gsub("--","//")
gsub("-1","_minus_1")
gsub("-","_")
printf("#define %s\n",$0)
}
/::=.*INTEGER.*[(]/ {
nb_fields=split($0,val,"[:=().]+");
gsub("-","_",val[1]);
printf("#define min_val_%s %s\n",val[1],val[nb_fields-2]);
printf("#define max_val_%s %s\n",val[1],val[nb_fields-1]);
}
END {
print "#endif ";
} ' $1 > asn1_constants.h
}
main "$@"
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/*
* 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 1.1 (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
*/
/*! \file PHY/LTE_TRANSPORT/drs_modulation.c
* \brief Top-level routines for generating the Demodulation Reference Signals from 36-211, V8.6 2009-03
* \author R. Knopp, F. Kaltenberger, A. Bhamri
* \date 2011
* \version 0.1
* \company Eurecom
* \email: knopp@eurecom.fr,florian.kaltenberger@eurecom.fr,ankit.bhamri@eurecom.fr
* \note
* \warning
*/
#include "PHY/defs.h"
#include "PHY/extern.h"
#include "PHY/sse_intrin.h"
//#define DEBUG_DRS
int generate_drs_pusch(PHY_VARS_UE *ue,
UE_rxtx_proc_t *proc,
uint8_t eNB_id,
short amp,
unsigned int subframe,
unsigned int first_rb,
unsigned int nb_rb,
uint8_t ant)
{
uint16_t k,l,Msc_RS,Msc_RS_idx,rb,drs_offset;
uint16_t * Msc_idx_ptr;
int subframe_offset,re_offset,symbol_offset;
//uint32_t phase_shift; // phase shift for cyclic delay in DM RS
//uint8_t alpha_ind;
int16_t alpha_re[12] = {32767, 28377, 16383, 0,-16384, -28378,-32768,-28378,-16384, -1, 16383, 28377};
int16_t alpha_im[12] = {0, 16383, 28377, 32767, 28377, 16383, 0,-16384,-28378,-32768,-28378,-16384};
uint8_t cyclic_shift,cyclic_shift0,cyclic_shift1;
LTE_DL_FRAME_PARMS *frame_parms = &ue->frame_parms;
int32_t *txdataF = ue->common_vars.txdataF[ant];
uint32_t u,v,alpha_ind;
uint32_t u0=frame_parms->pusch_config_common.ul_ReferenceSignalsPUSCH.grouphop[subframe<<1];
uint32_t u1=frame_parms->pusch_config_common.ul_ReferenceSignalsPUSCH.grouphop[1+(subframe<<1)];
uint32_t v0=frame_parms->pusch_config_common.ul_ReferenceSignalsPUSCH.seqhop[subframe<<1];
uint32_t v1=frame_parms->pusch_config_common.ul_ReferenceSignalsPUSCH.seqhop[1+(subframe<<1)];
int32_t ref_re,ref_im;
uint8_t harq_pid = subframe2harq_pid(frame_parms,proc->frame_tx,subframe);
cyclic_shift0 = (frame_parms->pusch_config_common.ul_ReferenceSignalsPUSCH.cyclicShift +
ue->ulsch[eNB_id]->harq_processes[harq_pid]->n_DMRS2 +
frame_parms->pusch_config_common.ul_ReferenceSignalsPUSCH.nPRS[subframe<<1]+
((ue->ulsch[0]->cooperation_flag==2)?10:0)+
ant*6) % 12;
// printf("PUSCH.cyclicShift %d, n_DMRS2 %d, nPRS %d\n",frame_parms->pusch_config_common.ul_ReferenceSignalsPUSCH.cyclicShift,ue->ulsch[eNB_id]->n_DMRS2,ue->lte_frame_parms.pusch_config_common.ul_ReferenceSignalsPUSCH.nPRS[subframe<<1]);
cyclic_shift1 = (frame_parms->pusch_config_common.ul_ReferenceSignalsPUSCH.cyclicShift +
ue->ulsch[eNB_id]->harq_processes[harq_pid]->n_DMRS2 +
frame_parms->pusch_config_common.ul_ReferenceSignalsPUSCH.nPRS[(subframe<<1)+1]+
((ue->ulsch[0]->cooperation_flag==2)?10:0)+
ant*6) % 12;
// cyclic_shift0 = 0;
// cyclic_shift1 = 0;
Msc_RS = 12*nb_rb;
Msc_idx_ptr = (uint16_t*) bsearch(&Msc_RS, dftsizes, 33, sizeof(uint16_t), compareints);
if (Msc_idx_ptr)
Msc_RS_idx = Msc_idx_ptr - dftsizes;
else {
LOG_I(PHY,"generate_drs_pusch: index for Msc_RS=%d not found\n",Msc_RS);
return(-1);
}
for (l = (3 - frame_parms->Ncp),u=u0,v=v0,cyclic_shift=cyclic_shift0;
l<frame_parms->symbols_per_tti;
l += (7 - frame_parms->Ncp),u=u1,v=v1,cyclic_shift=cyclic_shift1) {
drs_offset = 0;
#ifdef DEBUG_DRS
printf("drs_modulation: Msc_RS = %d, Msc_RS_idx = %d, u=%d,v=%d\n",Msc_RS, Msc_RS_idx,u,v);
#endif
re_offset = frame_parms->first_carrier_offset;
subframe_offset = subframe*frame_parms->symbols_per_tti*frame_parms->ofdm_symbol_size;
symbol_offset = subframe_offset + frame_parms->ofdm_symbol_size*l;
#ifdef DEBUG_DRS
printf("generate_drs_pusch: symbol_offset %d, subframe offset %d, cyclic shift %d\n",symbol_offset,subframe_offset,cyclic_shift);
#endif
alpha_ind = 0;
for (rb=0; rb<frame_parms->N_RB_UL; rb++) {
if ((rb >= first_rb) && (rb<(first_rb+nb_rb))) {
#ifdef DEBUG_DRS
printf("generate_drs_pusch: doing RB %d, re_offset=%d, drs_offset=%d,cyclic shift %d\n",rb,re_offset,drs_offset,cyclic_shift);
#endif
for (k=0; k<12; k++) {
ref_re = (int32_t) ul_ref_sigs[u][v][Msc_RS_idx][drs_offset<<1];
ref_im = (int32_t) ul_ref_sigs[u][v][Msc_RS_idx][(drs_offset<<1)+1];
((int16_t*) txdataF)[2*(symbol_offset + re_offset)] = (int16_t) (((ref_re*alpha_re[alpha_ind]) -
(ref_im*alpha_im[alpha_ind]))>>15);
((int16_t*) txdataF)[2*(symbol_offset + re_offset)+1] = (int16_t) (((ref_re*alpha_im[alpha_ind]) +
(ref_im*alpha_re[alpha_ind]))>>15);
((short*) txdataF)[2*(symbol_offset + re_offset)] = (short) ((((short*) txdataF)[2*(symbol_offset + re_offset)]*(int32_t)amp)>>15);
((short*) txdataF)[2*(symbol_offset + re_offset)+1] = (short) ((((short*) txdataF)[2*(symbol_offset + re_offset)+1]*(int32_t)amp)>>15);
alpha_ind = (alpha_ind + cyclic_shift);
if (alpha_ind > 11)
alpha_ind-=12;
#ifdef DEBUG_DRS
printf("symbol_offset %d, alpha_ind %d , re_offset %d : (%d,%d)\n",
symbol_offset,
alpha_ind,
re_offset,
((short*) txdataF)[2*(symbol_offset + re_offset)],
((short*) txdataF)[2*(symbol_offset + re_offset)+1]);
#endif // DEBUG_DRS
re_offset++;
drs_offset++;
if (re_offset >= frame_parms->ofdm_symbol_size)
re_offset = 0;
}
} else {
re_offset+=12; // go to next RB
// check if we crossed the symbol boundary and skip DC
if (re_offset >= frame_parms->ofdm_symbol_size) {
if (frame_parms->N_RB_DL&1) // odd number of RBs
re_offset=6;
else // even number of RBs (doesn't straddle DC)
re_offset=0;
}
}
}
}
return(0);
}
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......@@ -1815,8 +1815,8 @@ rrc_ue_process_rrcConnectionReconfiguration(
rrc_ue_process_radioResourceConfigDedicated(ctxt_pP,eNB_index, rrcConnectionReconfiguration_r8->radioResourceConfigDedicated);
}
void *non_criticical_ext_iterator = rrcConnectionReconfiguration_r8;
/* void *non_criticical_ext_iterator = rrcConnectionReconfiguration_r8;
RCCConnectionReconfiguration_v1510_IEs_t *rrc_connection_reconfiguration_v1510_IEs = (RRCConnectionReconfiguration_v1510_IEs_t *)0;
// fetch EN-DC for NR_RRC here
// r8
......@@ -1869,7 +1869,7 @@ rrc_ue_process_rrcConnectionReconfiguration(
break;
}
}
}
}*/
#if defined(ENABLE_ITTI)
......
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