Commit 34b61a1a authored by Rohit Gupta's avatar Rohit Gupta

updated test case architecture for parallel/faster execution

parent d897ea3e
......@@ -6,41 +6,50 @@ Obj.# Case# Test# Description
01 pre-commit test case
01 01 Build OAI
01 01 01 Build oaisim.Rel8
01 01 02 Build oaisim.Rel8 + network device driver(nasmesh_fix)
01 01 03 Build (lte-softmodem.Rel8.EXMIMO + lte-softmodem.Rel10.EXMIMO + lte-softmodem.Rel10.USRP)
01 01 04 Build (dlsim.Rel10 + ulsim.Rel10 + pucchsim.Rel10 + prachsim.Rel10 + pdcchsim.Rel10 + pbchsim.Rel10 + mbmssim.Rel10
01 01 02 Build oaisim.Rel10
01 01 03 Build oaisim_noS1.Rel10
01 01 10 Build lte-softmodem_noS1.USRP.Rel10
01 01 11 Build lte-softmodem_noS1.EXMIMO.Rel10
01 01 12 Build lte-softmodem_noS1.BLADERF.Rel10
01 01 13 Build lte-softmodem_noS1.ETHERNET.Rel10
01 01 20 Build lte-softmodem.USRP.Rel10
01 01 21 Build lte-softmodem.EXMIMO.Rel10
01 01 22 Build lte-softmodem.BLADERF.Rel10
01 01 23 Build lte-softmodem.ETHERNET.Rel10
01 01 30 Build (dlsim.Rel10 + ulsim.Rel10 + pucchsim.Rel10 + prachsim.Rel10 + pdcchsim.Rel10 + pbchsim.Rel10 + mbmssim.Rel10
secu_knas_encrypt_eia1.Rel10 secu_kenb.Rel10 aes128_ctr_encrypt.Rel10 aes128_ctr_decrypt.Rel10 secu_knas_encrypt_eea2.Rel10
secu_knas.Rel10 secu_knas_encrypt_eea1.Rel10 kdf.Rel10 aes128_cmac_encrypt.Rel10 secu_knas_encrypt_eia2.Rel10)
01 01 06 Build oaisim.Rel8 + ITTI
01 01 07 Build oaisim.Rel10
01 01 08 Build oaisim.Rel10 + ITTI
01 01 20 Build Nasmesh
01 01 30 Build RRH Gateway
01 02 Run OAISIM Rel10 (TDD + 5MHz/10MHz/20MHz + TM 1,2,5,6), and check the operation
01 02 00 Run OAISIM Rel10 TDD, 1 eNB + 1 UE (5 MHz/10MHz/20MHz), (TM 1,2,5,6) and search for errors, segmentation fault or exit
01 02 01 Run OAISIM Rel10 TDD, 1 eNB + 1 UE (5 MHz/10MHz/20MHz), (TM 1,2,5,6) in PHY_ABSTRACTION mode and search for errors
01 02 02 Run OAISIM Rel10 TDD, 1 eNB + 3 UEs (5 MHz/10MHz/20MHz), (TM 1,2,5,6) and search for errors, segmentation fault or exit
01 02 03 Run OAISIM Rel10 TDD, 1 eNB + 3 UEs (5 MHz/10MHz/20MHz), (TM 1,2,5,6) in PHY_ABSTRACTION mode and search for errors
01 02 04 Run OAI Rel10 TDD, 1 eNB + 1 UE (5 MHz/10MHz/20MHz), (TM 1,2,5,6) without PHY_ABSTRACTION mode, ping from from eNB to UE,
01 01 40 Build RRH Gateway for USRP (Rel 10)
01 01 41 Build RRH Gateway for EXMIMO (Rel 10)
01 01 42 Build RRH Gateway for BLADERF (Rel 10)
01 02 Run OAISIM-NOS1 Rel10 (TDD + 5MHz/10MHz/20MHz + TM 1,2,5,6), and check the operation
01 02 00 Run OAISIM-NOS1 Rel10 TDD, 1 eNB + 1 UE (5 MHz/10MHz/20MHz), (TM 1,2,5,6) and search for errors, segmentation fault or exit
01 02 01 Run OAISIM-NOS1 Rel10 TDD, 1 eNB + 1 UE (5 MHz/10MHz/20MHz), (TM 1,2,5,6) in PHY_ABSTRACTION mode and search for errors
01 02 02 Run OAISIM-NOS1 Rel10 TDD, 1 eNB + 3 UEs (5 MHz/10MHz/20MHz), (TM 1,2,5,6) and search for errors, segmentation fault or exit
01 02 03 Run OAISIM-NOS1 Rel10 TDD, 1 eNB + 3 UEs (5 MHz/10MHz/20MHz), (TM 1,2,5,6) in PHY_ABSTRACTION mode and search for errors
01 02 04 Run OAISIM-NOS1 Rel10 TDD, 1 eNB + 1 UE (5 MHz/10MHz/20MHz), (TM 1,2,5,6) without PHY_ABSTRACTION mode, ping from from eNB to UE,
and for check for no packet losses
01 02 05 Run OAI Rel10 TDD, 1 eNB + 1 UE (5 MHz/10MHz/20MHz), (TM 1,2,5,6) in PHY_ABSTRACTION mode, send ping from from eNB to UE,
01 02 05 Run OAISIM-NOS1 Rel10 TDD, 1 eNB + 1 UE (5 MHz/10MHz/20MHz), (TM 1,2,5,6) in PHY_ABSTRACTION mode, send ping from from eNB to UE,
and check for no packet losses
01 03 Run OAISIM Rel10 (FDD + 5MHz/10MHz/20MHz + TM 1,2,5,6), and check the operation
01 03 00 Run OAISIM Rel10 FDD, 1 eNB + 1 UE 1 eNB (5 MHz/10MHz/20MHz), (TM 1,2,5,6) and search for errors, segmentation fault or exit
01 03 01 Run OAISIM Rel10 FDD, 1 eNB + 1 UE (5 MHz/10MHz/20MHz), (TM 1,2,5,6) in PHY_ABSTRACTION mode and search for errors
01 03 02 Run OAISIM Rel10 FDD, 1 eNB + 3 UEs (5 MHz/10MHz/20MHz), (TM 1,2,5,6) and search for errors, segmentation fault or exit
01 03 03 Run OAISIM Rel10 FDD, 1 eNB + 3 UEs (5 MHz/10MHz/20MHz), (TM 1,2,5,6) in PHY_ABSTRACTION mode and search for errors
01 03 04 Run OAI Rel10 FDD, 1 eNB + 1 UE (5 MHz/10MHz/20MHz), (TM 1,2,5,6) without PHY_ABSTRACTION mode, ping from from eNB to UE,
01 03 Run OAISIM-NOS1 Rel10 (FDD + 5MHz/10MHz/20MHz + TM 1,2,5,6), and check the operation
01 03 00 Run OAISIM-NOS1 Rel10 FDD, 1 eNB + 1 UE 1 eNB (5 MHz/10MHz/20MHz), (TM 1,2,5,6) and search for errors, segmentation fault or exit
01 03 01 Run OAISIM-NOS1 Rel10 FDD, 1 eNB + 1 UE (5 MHz/10MHz/20MHz), (TM 1,2,5,6) in PHY_ABSTRACTION mode and search for errors
01 03 02 Run OAISIM-NOS1 Rel10 FDD, 1 eNB + 3 UEs (5 MHz/10MHz/20MHz), (TM 1,2,5,6) and search for errors, segmentation fault or exit
01 03 03 Run OAISIM-NOS1 Rel10 FDD, 1 eNB + 3 UEs (5 MHz/10MHz/20MHz), (TM 1,2,5,6) in PHY_ABSTRACTION mode and search for errors
01 03 04 Run OAISIM-NOS1 Rel10 FDD, 1 eNB + 1 UE (5 MHz/10MHz/20MHz), (TM 1,2,5,6) without PHY_ABSTRACTION mode, ping from from eNB to UE,
and for check for no packet losses
01 03 05 Run OAI Rel10 FDD, 1 eNB + 1 UE (5 MHz/10MHz/20MHz), (TM 1,2,5,6) in PHY_ABSTRACTION mode, send ping from from eNB to UE,
01 03 05 Run OAISIM-NOS1 Rel10 FDD, 1 eNB + 1 UE (5 MHz/10MHz/20MHz), (TM 1,2,5,6) in PHY_ABSTRACTION mode, send ping from from eNB to UE,
and check for no packet losses
01 04 MBSFN Tests
01 04 OAISIM-NOS1 MBSFN Tests
01 04 00 Check if eMBMS procedure is not finished completely, make sure that the SIB13/MCCH have been correclty received by UEs
01 04 01 Check if eMBMS multicast/broadcast data is received, make sure that the SIB13/MCCH/MTCH have been correclty received by UEs
01 04 02 Check for eMBMS multicast/broadcast data received in fdd mode, make sure that the SIB13/MCCH/MTCH have been correctly
......
This diff is collapsed.
......@@ -24,15 +24,18 @@ xUnit_start() {
# \param $1 classname
# \param $2 testcase name
# \param $3 testcase result
# \param $4 run index
# \param $4 run result
# \param $5 XML file local to test case for storing its own results
xUnit_fail() {
class=$1
test_case=$2
result=$3
run_index=$4
run_result=$4
xmlfile_testcase=$5
currtime=$(date +%s.%N)
time=$(echo "$currtime - $XUNIT_START" | bc -l)
xml="<testcase classname='$class' name='$test_case' run='$run_index' time='$time' RESULT='$result'></testcase>"
xml="<testcase classname='$class' name='$test_case' Run_result='$run_result' time='$time' RESULT='$result'></testcase>"
echo -e $xml > $xmlfile_testcase
XUNIT_TESTCASES_XML="$XUNIT_TESTCASES_XML \n$xml"
XUNIT_FAILED=$((XUNIT_FAILED+1))
}
......@@ -43,15 +46,18 @@ xUnit_fail() {
# \param $1 classname
# \param $2 testcase name
# \param $3 testcase result
# \param $4 run index
# \param $4 run result
# \param $5 XML file local to test case for storing its own results
xUnit_success() {
class=$1
test_case=$2
result=$3
run_index=$4
run_result=$4
xmlfile_testcase=$5
currtime=$(date +%s.%N)
time=$(echo "$currtime - $XUNIT_START" | bc -l)
xml="<testcase classname='$class' name='$test_case' run='$run_index' time='$time' RESULT='$result'></testcase>"
xml="<testcase classname='$class' name='$test_case' Run_result='$run_result' time='$time' RESULT='$result'></testcase>"
echo -e $xml > $xmlfile_testcase
XUNIT_TESTCASES_XML="$XUNIT_TESTCASES_XML \n$xml"
XUNIT_SUCCESS=$((XUNIT_SUCCESS+1))
}
......
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