587 lines
17 KiB
Bash
587 lines
17 KiB
Bash
#!/usr/bin/env bash
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echo_r () {
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[ $# -ne 1 ] && return 0
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echo -e "\033[31m$1\033[0m"
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}
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echo_g () {
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[ $# -ne 1 ] && return 0
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echo -e "\033[32m$1\033[0m"
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}
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echo_y () {
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[ $# -ne 1 ] && return 0
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echo -e "\033[33m$1\033[0m"
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}
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echo_b () {
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[ $# -ne 1 ] && return 0
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echo -e "\033[34m$1\033[0m"
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}
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# Define those global variables
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if [ -f ./variables.sh ]; then
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source ./variables.sh
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elif [ -f scripts/variables.sh ]; then
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source scripts/variables.sh
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else
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echo_r "Cannot find the variables.sh files, pls check"
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exit 1
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fi
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# Verify $1 is not 0, then output error msg $2 and exit
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verifyResult () {
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if [ $1 -ne 0 ] ; then
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echo "$2"
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echo_r "=== ERROR !!! FAILED to execute End-2-End Scenario ==="
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exit 1
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fi
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}
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# set env to use orderOrg's identity
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setOrdererEnvs () {
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export CORE_PEER_LOCALMSPID="OrdererMSP"
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export CORE_PEER_MSPCONFIGPATH=${ORDERER_ADMIN_MSP}
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export CORE_PEER_TLS_ROOTCERT_FILE=${ORDERER_TLS_ROOTCERT}
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#t="\${ORG${org}_PEER${peer}_URL}" && CORE_PEER_ADDRESS=`eval echo $t`
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}
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# Set global env variables for fabric cli, after setting:
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# client is the admin as given org
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# TLS root cert is configured to given peer's
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# remote peer address is configured to given peer's
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# CORE_PEER_LOCALMSPID=Org1MSP
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# CORE_PEER_ADDRESS=peer0.org1.example.com:7051
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# CORE_PEER_MSPCONFIGPATH=/etc/hyperledger/fabric/crypto-config/peerOrganizations/org1.example.com/users/Admin@org1.example.com/msp
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# CORE_PEER_TLS_ROOTCERT_FILE=/etc/hyperledger/fabric/crypto-config/peerOrganizations/org1.example.com/peers/peer0.org1.example.com/tls/ca.crt
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# Usage: setEnvs org peer
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setEnvs () {
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local org=$1 # 1 or 2
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local peer=$2 # 0 or 1
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[ -z $org ] && [ -z $peer ] && echo_r "input param invalid" && exit -1
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# a means a mirror peer
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if [ $peer = "a" ]; then
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export CORE_PEER_LOCALMSPID=Org1MSP
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export CORE_PEER_ADDRESS=peer0.org1.example.com:7051
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export CORE_PEER_MSPCONFIGPATH=/etc/hyperledger/fabric/crypto-config/peerOrganizations/org1.example.com/users/Admin@org1.example.com/msp
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export CORE_PEER_TLS_ROOTCERT_FILE=/etc/hyperledger/fabric/crypto-config/peerOrganizations/org1.example.com/peers/peer0.org1.example.com/tls/ca.crt
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return
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fi
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local t=""
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export CORE_PEER_LOCALMSPID="Org${org}MSP"
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#CORE_PEER_MSPCONFIGPATH=\$${ORG${org}_ADMIN_MSP}
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t="\${ORG${org}_PEER${peer}_URL}" && export CORE_PEER_ADDRESS=`eval echo $t`
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t="\${ORG${org}_ADMIN_MSP}" && export CORE_PEER_MSPCONFIGPATH=`eval echo $t`
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t="\${ORG${org}_PEER${peer}_TLS_ROOTCERT}" && export CORE_PEER_TLS_ROOTCERT_FILE=`eval echo $t`
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#env |grep CORE
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}
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checkOSNAvailability() {
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#Use orderer's MSP for fetching system channel config block
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export CORE_PEER_LOCALMSPID="OrdererMSP"
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export CORE_PEER_TLS_ROOTCERT_FILE=${ORDERER_TLS_CA}
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export CORE_PEER_MSPCONFIGPATH=${ORDERER_MSP}
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local rc=1
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local starttime=$(date +%s)
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# continue to poll
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# we either get a successful response, or reach TIMEOUT
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while test "$(($(date +%s)-starttime))" -lt "$TIMEOUT" -a $rc -ne 0
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do
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sleep 3
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echo "Attempting to fetch system channel ...$(($(date +%s)-starttime)) secs"
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if [ -z "$CORE_PEER_TLS_ENABLED" -o "$CORE_PEER_TLS_ENABLED" = "false" ]; then
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peer channel fetch 0 -o ${ORDERER_URL} -c "testchainid" >&log.txt
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else
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peer channel fetch 0 -o ${ORDERER_URL} -c "testchainid" --tls $CORE_PEER_TLS_ENABLED --cafile ${ORDERER_TLS_CA} >&log.txt
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fi
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test $? -eq 0 && VALUE=$(cat log.txt | awk '/Received block/ {print $NF}')
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test "$VALUE" = "0" && let rc=0
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done
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[ $rc -ne 0 ] && cat log.txt
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verifyResult $rc "Ordering Service is not available, Please try again ..."
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echo "=== Ordering Service is up and running === "
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echo
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}
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# Internal func called by channelCreate
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channelCreateAction(){
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local channel=$1
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local channel_tx=$2
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if [ -z "$CORE_PEER_TLS_ENABLED" ] || [ "$CORE_PEER_TLS_ENABLED" = "false" ]; then
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peer channel create \
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-o ${ORDERER_URL} \
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-c ${channel} \
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-f ${CHANNEL_ARTIFACTS}/${channel_tx} \
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--timeout $TIMEOUT \
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>&log.txt
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else
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peer channel create \
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-o ${ORDERER_URL} \
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-c ${channel} \
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-f ${CHANNEL_ARTIFACTS}/${channel_tx} \
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--timeout $TIMEOUT \
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--tls $CORE_PEER_TLS_ENABLED \
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--cafile ${ORDERER_TLS_CA} \
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>&log.txt
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fi
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return $?
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}
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# Use peer0/org1 to create a channel
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# channelCreate APP_CHANNEL APP_CHANNEL.tx org peer
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channelCreate() {
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local channel=$1
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local tx=$2
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local org=$3
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local peer=$4
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[ -z $channel ] && [ -z $tx ] && [ -z $org ] && [ -z $peer ] && echo_r "input param invalid" && exit -1
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echo "=== Create Channel ${channel} by org $org/peer $peer === "
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setEnvs $org $peer
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local rc=1
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local counter=0
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while [ ${counter} -lt ${MAX_RETRY} -a ${rc} -ne 0 ]; do
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channelCreateAction "${channel}" "${tx}"
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rc=$?
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let counter=${counter}+1
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#COUNTER=` expr $COUNTER + 1`
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[ $rc -ne 0 ] && echo "Failed to create channel $channel, retry after 3s" && sleep 3
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done
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[ $rc -ne 0 ] && cat log.txt
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verifyResult ${rc} "Channel ${channel} creation failed"
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echo "=== Channel ${channel} is created. === "
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}
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# called by channelJoinWithRetry
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channelJoinAction () {
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local channel=$1
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peer channel join \
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-b ${channel}.block \
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>&log.txt
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}
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## Sometimes Join takes time hence RETRY atleast for 5 times
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channelJoinWithRetry () {
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local channel=$1
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local peer=$2
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local counter=0
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channelJoinAction ${channel}
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local rc=$?
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while [ ${counter} -lt ${MAX_RETRY} -a ${rc} -ne 0 ]; do
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echo "peer${peer} failed to join channel ${channel}, retry after 2s"
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sleep 2
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channelJoinAction ${channel}
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rc=$?
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let counter=${counter}+1
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done
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[ $rc -ne 0 ] && cat log.txt
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verifyResult ${rc} "After $MAX_RETRY attempts, peer${peer} failed to Join the Channel"
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}
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# Join given (by default all) peers into the channel
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# channelJoin channel org peer
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channelJoin () {
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local channel=$1
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local org=$2
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local peer=$3
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[ -z $channel ] && [ -z $org ] && [ -z $peer ] && echo_r "input param invalid" && exit -1
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echo "=== Join org $org/peer $peer into channel ${channel} === "
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setEnvs $org $peer
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channelJoinWithRetry ${channel} $peer
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echo "=== org $org/peer $peer joined into channel ${channel} === "
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}
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getShasum () {
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[ ! $# -eq 1 ] && exit 1
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shasum ${1} | awk '{print $1}'
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}
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# Fetch all blocks for a channel
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# Usage: channelFetchAll channel org peer
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channelFetchAll () {
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local channel=$1
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local org=$2
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local peer=$3
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echo "=== Fetch all block for channel $channel === "
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local block_file=/tmp/${channel}_newest.block
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channelFetch ${channel} $org $peer "newest" ${block_file}
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[ $? -ne 0 ] && exit 1
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newest_block_shasum=$(getShasum ${block_file})
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echo "fetch newest block ${block_file} with shasum=${newest_block_shasum}"
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block_file=${CHANNEL_ARTIFACTS}/${channel}_config.block
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channelFetch ${channel} $org $peer "config" ${block_file}
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[ $? -ne 0 ] && exit 1
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echo "fetch config block ${block_file}"
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for i in $(seq 0 16); do # we at most fetch 16 blocks
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block_file=${CHANNEL_ARTIFACTS}/${channel}_${i}.block
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channelFetch ${channel} $org $peer $i ${block_file}
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[ $? -ne 0 ] && exit 1
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[ -f $block_file ] || break
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echo "fetch block $i and saved into ${block_file}"
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block_shasum=$(getShasum ${block_file})
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[ ${block_shasum} = ${newest_block_shasum} ] && { echo "Block $i is the last one for channel $channel"; break; }
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done
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}
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# Fetch some block from a given channel: channel, peer, blockNum
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channelFetch () {
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local channel=$1
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local org=$2
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local peer=$3
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local num=$4
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local block_file=$5
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echo "=== Fetch block $num of channel $channel === "
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#setEnvs $org $peer
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setOrdererEnvs # system channel required id from ordererOrg
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# while 'peer chaincode' command can get the orderer endpoint from the peer (if join was successful),
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# lets supply it directly as we know it using the "-o" option
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if [ -z "${CORE_PEER_TLS_ENABLED}" ] || [ "${CORE_PEER_TLS_ENABLED}" = "false" ]; then
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peer channel fetch $num ${block_file} \
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-o ${ORDERER_URL} \
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-c ${channel} \
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>&log.txt
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else
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peer channel fetch $num ${block_file} \
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-o ${ORDERER_URL} \
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-c ${channel} \
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--tls \
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--cafile ${ORDERER_TLS_CA} \
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>&log.txt
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fi
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if [ $? -ne 0 ]; then
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cat log.txt
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echo_r "Fetch block $num of channel $channel failed"
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return 1
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else
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echo "=== Fetch block $num of channel $channel OK === "
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return 0
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fi
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}
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# Sign a channel config tx
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# Usage: channelSignConfigTx channel org peer transaction
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channelSignConfigTx () {
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local channel=$1
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local org=$2
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local peer=$3
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local tx=$4
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[ -z $channel ] && [ -z $tx ] && [ -z $org ] && [ -z $peer ] && echo_r "input param invalid" && exit -1
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echo "=== Sign channel config tx $tx for channel $channel by org $org/peer $peer === "
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[ -f ${CHANNEL_ARTIFACTS}/${tx} ] || { echo_r "${tx} not exist"; exit 1; }
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setEnvs $org $peer
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peer channel signconfigtx -f ${CHANNEL_ARTIFACTS}/${tx} >&log.txt
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rc=$?
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[ $rc -ne 0 ] && cat log.txt
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if [ $rc -ne 0 ]; then
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echo_r "Sign channel config tx for channel $channel by org $org/peer $peer failed"
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else
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echo "=== Sign channel config tx channel $channel by org $org/peer $peer is successful === "
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fi
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}
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# Update a channel config
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# Usage: channelUpdate channel org peer transaction_file
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channelUpdate() {
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local channel=$1
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local org=$2
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local peer=$3
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local tx=$4
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[ -z $channel ] && [ -z $tx ] && [ -z $org ] && [ -z $peer ] && echo_r "input param invalid" && exit -1
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setEnvs $org $peer
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echo "=== Update config on channel ${channel} === "
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[ -f ${CHANNEL_ARTIFACTS}/${tx} ] || { echo_r "${tx} not exist"; exit 1; }
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if [ -z "$CORE_PEER_TLS_ENABLED" -o "$CORE_PEER_TLS_ENABLED" = "false" ]; then
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peer channel update \
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-o ${ORDERER_URL} \
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-c ${channel} \
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-f ${CHANNEL_ARTIFACTS}/${tx} \
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>&log.txt
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else
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peer channel update \
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-o ${ORDERER_URL} \
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-c ${channel} \
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-f ${CHANNEL_ARTIFACTS}/${tx} \
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--tls $CORE_PEER_TLS_ENABLED \
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--cafile ${ORDERER_TLS_CA} \
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>&log.txt
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fi
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rc=$?
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[ $rc -ne 0 ] && cat log.txt
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verifyResult $rc "peer channel update failed"
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echo "=== Channel ${channel} is updated. === "
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sleep 2
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}
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# Install chaincode on specified peer node
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# chaincodeInstall peer cc_name version path
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chaincodeInstall () {
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local org=$1
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local peer=$2
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local name=$3
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local version=$4
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local path=$5
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[ -z $org ] && [ -z $peer ] && [ -z $name ] && [ -z $version ] && [ -z $path ] && echo_r "input param invalid" && exit -1
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echo "=== Install Chaincode $name:$version ($path) on org ${org}/peer $peer === "
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setEnvs $org $peer
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peer chaincode install \
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-n ${name} \
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-v $version \
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-p ${path} \
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>&log.txt
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rc=$?
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[ $rc -ne 0 ] && cat log.txt
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verifyResult $rc "Chaincode installation on remote org ${org}/peer$peer has Failed"
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echo "=== Chaincode is installed on remote peer$peer === "
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}
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# Instantiate chaincode on specifized peer node
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# chaincodeInstantiate channel org peer name version args
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chaincodeInstantiate () {
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local channel=$1
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local org=$2
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local peer=$3
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local name=$4
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local version=$5
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local args=$6
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[ -z $channel ] && [ -z $org ] && [ -z $peer ] && [ -z $name ] && [ -z $version ] && [ -z $args ] && echo_r "input param invalid" && exit -1
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setEnvs $org $peer
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echo "=== chaincodeInstantiate for channel ${channel} on org $org/peer $peer ===="
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# while 'peer chaincode' command can get the orderer endpoint from the peer (if join was successful),
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# lets supply it directly as we know it using the "-o" option
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if [ -z "$CORE_PEER_TLS_ENABLED" -o "$CORE_PEER_TLS_ENABLED" = "false" ]; then
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peer chaincode instantiate \
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-o ${ORDERER_URL} \
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-C ${channel} \
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-n ${name} \
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-v ${version} \
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-c ${args} \
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-P "OR ('Org1MSP.member','Org2MSP.member')" \
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>&log.txt
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else
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peer chaincode instantiate \
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-o ${ORDERER_URL} \
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-C ${channel} \
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-n ${name} \
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-v ${version} \
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-c ${args} \
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-P "OR ('Org1MSP.member','Org2MSP.member')" \
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--tls $CORE_PEER_TLS_ENABLED \
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--cafile ${ORDERER_TLS_CA} \
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>&log.txt
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fi
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rc=$?
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[ $rc -ne 0 ] && cat log.txt
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verifyResult $rc "ChaincodeInstantiation on org $org/peer$peer in channel ${channel} failed"
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echo "=== Chaincode Instantiated in channel ${channel} by peer$peer ==="
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}
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# Usage: chaincodeInvoke channel org peer name args
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chaincodeInvoke () {
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local channel=$1
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local org=$2
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local peer=$3
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local name=$4
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local args=$5
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[ -z $channel ] && [ -z $org ] && [ -z $peer ] && [ -z $name ] && [ -z $args ] && echo_r "input param invalid" && exit -1
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echo "=== Invoke transaction on peer$peer in channel ${channel} === "
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setEnvs $org $peer
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# while 'peer chaincode' command can get the orderer endpoint from the peer (if join was successful),
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# lets supply it directly as we know it using the "-o" option
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if [ -z "$CORE_PEER_TLS_ENABLED" -o "$CORE_PEER_TLS_ENABLED" = "false" ]; then
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peer chaincode invoke \
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-o ${ORDERER_URL} \
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-C ${channel} \
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-n ${name} \
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-c ${args} \
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>&log.txt
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else
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peer chaincode invoke \
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-o ${ORDERER_URL} \
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-C ${channel} \
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-n ${name} \
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-c ${args} \
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--tls $CORE_PEER_TLS_ENABLED \
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--cafile ${ORDERER_TLS_CA} \
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>&log.txt
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fi
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rc=$?
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[ $rc -ne 0 ] && cat log.txt
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verifyResult $rc "Invoke execution on peer$peer failed "
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echo "=== Invoke transaction on peer$peer in channel ${channel} is successful === "
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}
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# query channel peer name args expected_result
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chaincodeQuery () {
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local channel=$1
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local org=$2
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local peer=$3
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local name=$4
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local args=$5
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[ -z $channel ] && [ -z $org ] && [ -z $peer ] && [ -z $name ] && [ -z $args ] && echo_r "input param invalid" && exit -1
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[ $# -gt 5 ] && local expected_result=$6
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echo "=== Querying on org $org/peer $peer in channel ${channel}... === "
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local rc=1
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local starttime=$(date +%s)
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setEnvs $org $peer
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# we either get a successful response, or reach TIMEOUT
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while [ "$(($(date +%s)-starttime))" -lt "$TIMEOUT" -a $rc -ne 0 ]; do
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echo "Attempting to Query org ${org}/peer ${peer} ...$(($(date +%s)-starttime)) secs"
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peer chaincode query \
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-C "${channel}" \
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-n "${name}" \
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-c "${args}" \
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>&log.txt
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rc=$?
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if [ $# -gt 5 ]; then # need to check the result
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test $? -eq 0 && VALUE=$(cat log.txt | awk '/Query Result/ {print $NF}')
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test "$VALUE" = "${expected_result}" && let rc=0
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fi
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if [ $rc -ne 0 ]; then
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cat log.txt
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sleep 2
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fi
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done
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# rc==0, or timeout
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if [ $rc -eq 0 ]; then
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echo "=== Query on peer$peer in channel ${channel} is successful === "
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else
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echo_r "=== Query result on peer$peer is INVALID, run `make stop clean` to clean ==="
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exit 1
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fi
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}
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# Start chaincode with dev mode
|
|
# TODO: use variables instead of hard-coded value
|
|
chaincodeStartDev () {
|
|
local peer=$1
|
|
local version=$2
|
|
[ -z $peer ] && [ -z $version ] && echo_r "input param invalid" && exit -1
|
|
setEnvs 1 0
|
|
CORE_CHAINCODE_LOGLEVEL=debug \
|
|
CORE_PEER_ADDRESS=peer${peer}.org1.example.com:7052 \
|
|
CORE_CHAINCODE_ID_NAME=${CC_02_NAME}:${version} \
|
|
nohup ./scripts/chaincode_example02 > chaincode_dev.log &
|
|
rc=$?
|
|
[ $rc -ne 0 ] && cat log.txt
|
|
verifyResult $rc "Chaincode start in dev mode has Failed"
|
|
echo "=== Chaincode started in dev mode === "
|
|
}
|
|
|
|
# chaincodeUpgrade channel peer name version args
|
|
chaincodeUpgrade () {
|
|
local channel=$1
|
|
local org=$2
|
|
local peer=$3
|
|
local name=$4
|
|
local version=$5
|
|
local args=$6
|
|
[ -z $channel ] && [ -z $org ] && [ -z $peer ] && [ -z $name ] && [ -z $version ] && [ -z $args ] && echo_r "input param invalid" && exit -1
|
|
echo "=== Upgrade chaincode to version $version on org ${org}/peer $peer in channel ${channel} === "
|
|
|
|
setEnvs $org $peer
|
|
# while 'peer chaincode' command can get the orderer endpoint from the peer (if join was successful),
|
|
# lets supply it directly as we know it using the "-o" option
|
|
if [ -z "$CORE_PEER_TLS_ENABLED" -o "$CORE_PEER_TLS_ENABLED" = "false" ]; then
|
|
peer chaincode upgrade \
|
|
-o ${ORDERER_URL} \
|
|
-C ${channel} \
|
|
-n ${name} \
|
|
-v ${version} \
|
|
-c ${args} \
|
|
>&log.txt
|
|
else
|
|
peer chaincode upgrade \
|
|
-o ${ORDERER_URL} \
|
|
-C ${channel} \
|
|
-n ${name} \
|
|
-v ${version} \
|
|
-c ${args} \
|
|
--tls $CORE_PEER_TLS_ENABLED \
|
|
--cafile ${ORDERER_TLS_CA} \
|
|
>&log.txt
|
|
fi
|
|
rc=$?
|
|
[ $rc -ne 0 ] && cat log.txt
|
|
verifyResult $rc "Upgrade execution on peer$peer failed "
|
|
echo "=== Upgrade transaction on peer$peer in channel ${channel} is successful === "
|
|
}
|
|
|
|
# configtxlator encode json to pb
|
|
# Usage: configtxlatorEncode msgType input output
|
|
configtxlatorEncode() {
|
|
local msgType=$1
|
|
local input=$2
|
|
local output=$3
|
|
|
|
echo "Encode $input --> $output using type $msgType"
|
|
curl -sX POST \
|
|
--data-binary @${input} \
|
|
${CTL_ENCODE_URL}/${msgType} \
|
|
>${output}
|
|
}
|
|
|
|
# configtxlator decode pb to json
|
|
# Usage: configtxlatorEncode msgType input output
|
|
configtxlatorDecode() {
|
|
local msgType=$1
|
|
local input=$2
|
|
local output=$3
|
|
|
|
echo "Config Decode $input --> $output using type $msgType"
|
|
if [ ! -f $input ]; then
|
|
echo_r "input file not found"
|
|
exit 1
|
|
fi
|
|
|
|
curl -sX POST \
|
|
--data-binary @"${input}" \
|
|
"${CTL_DECODE_URL}/${msgType}" \
|
|
> "${output}"
|
|
}
|
|
|
|
# compute diff between two pb
|
|
# Usage: configtxlatorCompare channel origin updated output
|
|
configtxlatorCompare() {
|
|
local channel=$1
|
|
local origin=$2
|
|
local updated=$3
|
|
local output=$4
|
|
|
|
echo "Config Compare $origin vs $updated > ${output} in channel $channel"
|
|
if [ ! -f $origin ] || [ ! -f $updated ]; then
|
|
echo_r "input file not found"
|
|
exit 1
|
|
fi
|
|
|
|
curl -sX POST \
|
|
-F channel="${channel}" \
|
|
-F "original=@${origin}" \
|
|
-F "updated=@${updated}" \
|
|
"${CTL_COMPARE_URL}" \
|
|
> "${output}"
|
|
|
|
[ $? -eq 0 ] || echo_r "Failed to compute config update"
|
|
}
|
|
|
|
# Run cmd inside the config generator container
|
|
gen_con_exec() {
|
|
docker exec -it $GEN_CONTAINER "$@"
|
|
} |