mirror of
https://github.com/hyperledger/fabric-samples.git
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These samples target Fabric v2.2 but contained references to the latest version of the Fabric documentation, many of which were broken links since the structure and content of the Fabric documentation has changed. This change updates links to the Fabric documentation so that they refer to release-2.2. Signed-off-by: Mark S. Lewis <Mark.S.Lewis@outlook.com>
522 lines
18 KiB
Bash
Executable file
522 lines
18 KiB
Bash
Executable file
#!/bin/bash
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#
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# Copyright IBM Corp All Rights Reserved
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#
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# SPDX-License-Identifier: Apache-2.0
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#
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# This script brings up a Hyperledger Fabric network for testing smart contracts
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# and applications. The test network consists of two organizations with one
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# peer each, and a single node Raft ordering service. Users can also use this
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# script to create a channel deploy a chaincode on the channel
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#
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# prepending $PWD/../bin to PATH to ensure we are picking up the correct binaries
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# this may be commented out to resolve installed version of tools if desired
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export PATH=${PWD}/../bin:$PATH
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export FABRIC_CFG_PATH=${PWD}/configtx
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export VERBOSE=false
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. scripts/utils.sh
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# Obtain CONTAINER_IDS and remove them
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# TODO Might want to make this optional - could clear other containers
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# This function is called when you bring a network down
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function clearContainers() {
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CONTAINER_IDS=$(docker ps -a | awk '($2 ~ /dev-peer.*/) {print $1}')
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if [ -z "$CONTAINER_IDS" -o "$CONTAINER_IDS" == " " ]; then
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infoln "No containers available for deletion"
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else
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docker rm -f $CONTAINER_IDS
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fi
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}
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# Delete any images that were generated as a part of this setup
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# specifically the following images are often left behind:
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# This function is called when you bring the network down
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function removeUnwantedImages() {
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DOCKER_IMAGE_IDS=$(docker images | awk '($1 ~ /dev-peer.*/) {print $3}')
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if [ -z "$DOCKER_IMAGE_IDS" -o "$DOCKER_IMAGE_IDS" == " " ]; then
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infoln "No images available for deletion"
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else
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docker rmi -f $DOCKER_IMAGE_IDS
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fi
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}
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# Versions of fabric known not to work with the test network
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NONWORKING_VERSIONS="^1\.0\. ^1\.1\. ^1\.2\. ^1\.3\. ^1\.4\."
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# Do some basic sanity checking to make sure that the appropriate versions of fabric
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# binaries/images are available. In the future, additional checking for the presence
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# of go or other items could be added.
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function checkPrereqs() {
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## Check if your have cloned the peer binaries and configuration files.
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peer version > /dev/null 2>&1
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if [[ $? -ne 0 || ! -d "../config" ]]; then
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errorln "Peer binary and configuration files not found.."
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errorln
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errorln "Follow the instructions in the Fabric docs to install the Fabric Binaries:"
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errorln "https://hyperledger-fabric.readthedocs.io/en/release-2.2/install.html"
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exit 1
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fi
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# use the fabric tools container to see if the samples and binaries match your
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# docker images
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LOCAL_VERSION=$(peer version | sed -ne 's/^ Version: //p')
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DOCKER_IMAGE_VERSION=$(docker run --rm hyperledger/fabric-tools:$IMAGETAG peer version | sed -ne 's/^ Version: //p')
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infoln "LOCAL_VERSION=$LOCAL_VERSION"
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infoln "DOCKER_IMAGE_VERSION=$DOCKER_IMAGE_VERSION"
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if [ "$LOCAL_VERSION" != "$DOCKER_IMAGE_VERSION" ]; then
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warnln "Local fabric binaries and docker images are out of sync. This may cause problems."
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fi
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for UNSUPPORTED_VERSION in $NONWORKING_VERSIONS; do
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infoln "$LOCAL_VERSION" | grep -q $UNSUPPORTED_VERSION
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if [ $? -eq 0 ]; then
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fatalln "Local Fabric binary version of $LOCAL_VERSION does not match the versions supported by the test network."
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fi
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infoln "$DOCKER_IMAGE_VERSION" | grep -q $UNSUPPORTED_VERSION
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if [ $? -eq 0 ]; then
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fatalln "Fabric Docker image version of $DOCKER_IMAGE_VERSION does not match the versions supported by the test network."
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fi
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done
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## Check for fabric-ca
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if [ "$CRYPTO" == "Certificate Authorities" ]; then
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fabric-ca-client version > /dev/null 2>&1
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if [[ $? -ne 0 ]]; then
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errorln "fabric-ca-client binary not found.."
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errorln
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errorln "Follow the instructions in the Fabric docs to install the Fabric Binaries:"
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errorln "https://hyperledger-fabric.readthedocs.io/en/release-2.2/install.html"
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exit 1
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fi
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CA_LOCAL_VERSION=$(fabric-ca-client version | sed -ne 's/ Version: //p')
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CA_DOCKER_IMAGE_VERSION=$(docker run --rm hyperledger/fabric-ca:$CA_IMAGETAG fabric-ca-client version | sed -ne 's/ Version: //p' | head -1)
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infoln "CA_LOCAL_VERSION=$CA_LOCAL_VERSION"
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infoln "CA_DOCKER_IMAGE_VERSION=$CA_DOCKER_IMAGE_VERSION"
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if [ "$CA_LOCAL_VERSION" != "$CA_DOCKER_IMAGE_VERSION" ]; then
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warnln "Local fabric-ca binaries and docker images are out of sync. This may cause problems."
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fi
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fi
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}
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# Before you can bring up a network, each organization needs to generate the crypto
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# material that will define that organization on the network. Because Hyperledger
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# Fabric is a permissioned blockchain, each node and user on the network needs to
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# use certificates and keys to sign and verify its actions. In addition, each user
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# needs to belong to an organization that is recognized as a member of the network.
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# You can use the Cryptogen tool or Fabric CAs to generate the organization crypto
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# material.
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# By default, the sample network uses cryptogen. Cryptogen is a tool that is
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# meant for development and testing that can quickly create the certificates and keys
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# that can be consumed by a Fabric network. The cryptogen tool consumes a series
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# of configuration files for each organization in the "organizations/cryptogen"
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# directory. Cryptogen uses the files to generate the crypto material for each
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# org in the "organizations" directory.
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# You can also Fabric CAs to generate the crypto material. CAs sign the certificates
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# and keys that they generate to create a valid root of trust for each organization.
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# The script uses Docker Compose to bring up three CAs, one for each peer organization
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# and the ordering organization. The configuration file for creating the Fabric CA
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# servers are in the "organizations/fabric-ca" directory. Within the same directory,
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# the "registerEnroll.sh" script uses the Fabric CA client to create the identities,
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# certificates, and MSP folders that are needed to create the test network in the
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# "organizations/ordererOrganizations" directory.
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# Create Organization crypto material using cryptogen or CAs
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function createOrgs() {
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if [ -d "organizations/peerOrganizations" ]; then
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rm -Rf organizations/peerOrganizations && rm -Rf organizations/ordererOrganizations
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fi
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# Create crypto material using cryptogen
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if [ "$CRYPTO" == "cryptogen" ]; then
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which cryptogen
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if [ "$?" -ne 0 ]; then
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fatalln "cryptogen tool not found. exiting"
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fi
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infoln "Generating certificates using cryptogen tool"
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infoln "Creating Org1 Identities"
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set -x
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cryptogen generate --config=./organizations/cryptogen/crypto-config-org1.yaml --output="organizations"
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res=$?
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{ set +x; } 2>/dev/null
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if [ $res -ne 0 ]; then
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fatalln "Failed to generate certificates..."
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fi
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infoln "Creating Org2 Identities"
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set -x
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cryptogen generate --config=./organizations/cryptogen/crypto-config-org2.yaml --output="organizations"
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res=$?
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{ set +x; } 2>/dev/null
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if [ $res -ne 0 ]; then
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fatalln "Failed to generate certificates..."
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fi
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infoln "Creating Orderer Org Identities"
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set -x
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cryptogen generate --config=./organizations/cryptogen/crypto-config-orderer.yaml --output="organizations"
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res=$?
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{ set +x; } 2>/dev/null
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if [ $res -ne 0 ]; then
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fatalln "Failed to generate certificates..."
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fi
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fi
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# Create crypto material using Fabric CA
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if [ "$CRYPTO" == "Certificate Authorities" ]; then
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infoln "Generating certificates using Fabric CA"
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IMAGE_TAG=${CA_IMAGETAG} docker-compose -f $COMPOSE_FILE_CA up -d 2>&1
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. organizations/fabric-ca/registerEnroll.sh
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while :
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do
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if [ ! -f "organizations/fabric-ca/org1/tls-cert.pem" ]; then
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sleep 1
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else
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break
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fi
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done
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infoln "Creating Org1 Identities"
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createOrg1
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infoln "Creating Org2 Identities"
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createOrg2
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infoln "Creating Orderer Org Identities"
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createOrderer
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fi
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infoln "Generating CCP files for Org1 and Org2"
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./organizations/ccp-generate.sh
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}
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# Once you create the organization crypto material, you need to create the
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# genesis block of the orderer system channel. This block is required to bring
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# up any orderer nodes and create any application channels.
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# The configtxgen tool is used to create the genesis block. Configtxgen consumes a
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# "configtx.yaml" file that contains the definitions for the sample network. The
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# genesis block is defined using the "TwoOrgsOrdererGenesis" profile at the bottom
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# of the file. This profile defines a sample consortium, "SampleConsortium",
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# consisting of our two Peer Orgs. This consortium defines which organizations are
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# recognized as members of the network. The peer and ordering organizations are defined
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# in the "Profiles" section at the top of the file. As part of each organization
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# profile, the file points to a the location of the MSP directory for each member.
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# This MSP is used to create the channel MSP that defines the root of trust for
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# each organization. In essence, the channel MSP allows the nodes and users to be
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# recognized as network members. The file also specifies the anchor peers for each
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# peer org. In future steps, this same file is used to create the channel creation
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# transaction and the anchor peer updates.
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#
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#
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# If you receive the following warning, it can be safely ignored:
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#
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# [bccsp] GetDefault -> WARN 001 Before using BCCSP, please call InitFactories(). Falling back to bootBCCSP.
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#
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# You can ignore the logs regarding intermediate certs, we are not using them in
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# this crypto implementation.
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# Generate orderer system channel genesis block.
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function createConsortium() {
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which configtxgen
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if [ "$?" -ne 0 ]; then
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fatalln "configtxgen tool not found."
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fi
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infoln "Generating Orderer Genesis block"
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# Note: For some unknown reason (at least for now) the block file can't be
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# named orderer.genesis.block or the orderer will fail to launch!
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set -x
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configtxgen -profile TwoOrgsOrdererGenesis -channelID system-channel -outputBlock ./system-genesis-block/genesis.block
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res=$?
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{ set +x; } 2>/dev/null
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if [ $res -ne 0 ]; then
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fatalln "Failed to generate orderer genesis block..."
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fi
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}
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# After we create the org crypto material and the system channel genesis block,
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# we can now bring up the peers and ordering service. By default, the base
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# file for creating the network is "docker-compose-test-net.yaml" in the ``docker``
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# folder. This file defines the environment variables and file mounts that
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# point the crypto material and genesis block that were created in earlier.
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# Bring up the peer and orderer nodes using docker compose.
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function networkUp() {
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checkPrereqs
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# generate artifacts if they don't exist
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if [ ! -d "organizations/peerOrganizations" ]; then
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createOrgs
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createConsortium
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fi
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COMPOSE_FILES="-f ${COMPOSE_FILE_BASE}"
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if [ "${DATABASE}" == "couchdb" ]; then
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COMPOSE_FILES="${COMPOSE_FILES} -f ${COMPOSE_FILE_COUCH}"
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fi
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IMAGE_TAG=$IMAGETAG docker-compose ${COMPOSE_FILES} up -d 2>&1
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docker ps -a
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if [ $? -ne 0 ]; then
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fatalln "Unable to start network"
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fi
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}
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# call the script to create the channel, join the peers of org1 and org2,
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# and then update the anchor peers for each organization
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function createChannel() {
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# Bring up the network if it is not already up.
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if [ ! -d "organizations/peerOrganizations" ]; then
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infoln "Bringing up network"
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networkUp
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fi
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# now run the script that creates a channel. This script uses configtxgen once
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# more to create the channel creation transaction and the anchor peer updates.
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# configtx.yaml is mounted in the cli container, which allows us to use it to
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# create the channel artifacts
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scripts/createChannel.sh $CHANNEL_NAME $CLI_DELAY $MAX_RETRY $VERBOSE
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}
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## Call the script to deploy a chaincode to the channel
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function deployCC() {
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scripts/deployCC.sh $CHANNEL_NAME $CC_NAME $CC_SRC_PATH $CC_SRC_LANGUAGE $CC_VERSION $CC_SEQUENCE $CC_INIT_FCN $CC_END_POLICY $CC_COLL_CONFIG $CLI_DELAY $MAX_RETRY $VERBOSE
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if [ $? -ne 0 ]; then
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fatalln "Deploying chaincode failed"
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fi
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}
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# Tear down running network
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function networkDown() {
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# stop org3 containers also in addition to org1 and org2, in case we were running sample to add org3
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docker-compose -f $COMPOSE_FILE_BASE -f $COMPOSE_FILE_COUCH -f $COMPOSE_FILE_CA down --volumes --remove-orphans
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docker-compose -f $COMPOSE_FILE_COUCH_ORG3 -f $COMPOSE_FILE_ORG3 down --volumes --remove-orphans
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# Don't remove the generated artifacts -- note, the ledgers are always removed
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if [ "$MODE" != "restart" ]; then
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# Bring down the network, deleting the volumes
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#Cleanup the chaincode containers
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clearContainers
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#Cleanup images
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removeUnwantedImages
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# remove orderer block and other channel configuration transactions and certs
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docker run --rm -v $(pwd):/data busybox sh -c 'cd /data && rm -rf system-genesis-block/*.block organizations/peerOrganizations organizations/ordererOrganizations'
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## remove fabric ca artifacts
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docker run --rm -v $(pwd):/data busybox sh -c 'cd /data && rm -rf organizations/fabric-ca/org1/msp organizations/fabric-ca/org1/tls-cert.pem organizations/fabric-ca/org1/ca-cert.pem organizations/fabric-ca/org1/IssuerPublicKey organizations/fabric-ca/org1/IssuerRevocationPublicKey organizations/fabric-ca/org1/fabric-ca-server.db'
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docker run --rm -v $(pwd):/data busybox sh -c 'cd /data && rm -rf organizations/fabric-ca/org2/msp organizations/fabric-ca/org2/tls-cert.pem organizations/fabric-ca/org2/ca-cert.pem organizations/fabric-ca/org2/IssuerPublicKey organizations/fabric-ca/org2/IssuerRevocationPublicKey organizations/fabric-ca/org2/fabric-ca-server.db'
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docker run --rm -v $(pwd):/data busybox sh -c 'cd /data && rm -rf organizations/fabric-ca/ordererOrg/msp organizations/fabric-ca/ordererOrg/tls-cert.pem organizations/fabric-ca/ordererOrg/ca-cert.pem organizations/fabric-ca/ordererOrg/IssuerPublicKey organizations/fabric-ca/ordererOrg/IssuerRevocationPublicKey organizations/fabric-ca/ordererOrg/fabric-ca-server.db'
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docker run --rm -v $(pwd):/data busybox sh -c 'cd /data && rm -rf addOrg3/fabric-ca/org3/msp addOrg3/fabric-ca/org3/tls-cert.pem addOrg3/fabric-ca/org3/ca-cert.pem addOrg3/fabric-ca/org3/IssuerPublicKey addOrg3/fabric-ca/org3/IssuerRevocationPublicKey addOrg3/fabric-ca/org3/fabric-ca-server.db'
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# remove channel and script artifacts
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docker run --rm -v $(pwd):/data busybox sh -c 'cd /data && rm -rf channel-artifacts log.txt *.tar.gz'
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fi
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}
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# Obtain the OS and Architecture string that will be used to select the correct
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# native binaries for your platform, e.g., darwin-amd64 or linux-amd64
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OS_ARCH=$(echo "$(uname -s | tr '[:upper:]' '[:lower:]' | sed 's/mingw64_nt.*/windows/')-$(uname -m | sed 's/x86_64/amd64/g')" | awk '{print tolower($0)}')
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# Using crpto vs CA. default is cryptogen
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CRYPTO="cryptogen"
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# timeout duration - the duration the CLI should wait for a response from
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# another container before giving up
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MAX_RETRY=5
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# default for delay between commands
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CLI_DELAY=3
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# channel name defaults to "mychannel"
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CHANNEL_NAME="mychannel"
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# chaincode name defaults to "NA"
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CC_NAME="NA"
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# chaincode path defaults to "NA"
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CC_SRC_PATH="NA"
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# endorsement policy defaults to "NA". This would allow chaincodes to use the majority default policy.
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CC_END_POLICY="NA"
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# collection configuration defaults to "NA"
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CC_COLL_CONFIG="NA"
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# chaincode init function defaults to "NA"
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CC_INIT_FCN="NA"
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# use this as the default docker-compose yaml definition
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COMPOSE_FILE_BASE=docker/docker-compose-test-net.yaml
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# docker-compose.yaml file if you are using couchdb
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COMPOSE_FILE_COUCH=docker/docker-compose-couch.yaml
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# certificate authorities compose file
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COMPOSE_FILE_CA=docker/docker-compose-ca.yaml
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# use this as the docker compose couch file for org3
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COMPOSE_FILE_COUCH_ORG3=addOrg3/docker/docker-compose-couch-org3.yaml
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# use this as the default docker-compose yaml definition for org3
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COMPOSE_FILE_ORG3=addOrg3/docker/docker-compose-org3.yaml
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#
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# chaincode language defaults to "NA"
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CC_SRC_LANGUAGE="NA"
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# Chaincode version
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CC_VERSION="1.0"
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# Chaincode definition sequence
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CC_SEQUENCE=1
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# default image tag
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IMAGETAG="latest"
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# default ca image tag
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CA_IMAGETAG="latest"
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# default database
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DATABASE="leveldb"
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# Parse commandline args
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## Parse mode
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if [[ $# -lt 1 ]] ; then
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printHelp
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exit 0
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else
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MODE=$1
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shift
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fi
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# parse a createChannel subcommand if used
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if [[ $# -ge 1 ]] ; then
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key="$1"
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if [[ "$key" == "createChannel" ]]; then
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export MODE="createChannel"
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shift
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fi
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fi
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# parse flags
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while [[ $# -ge 1 ]] ; do
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key="$1"
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case $key in
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-h )
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printHelp $MODE
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exit 0
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;;
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-c )
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CHANNEL_NAME="$2"
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shift
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;;
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-ca )
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CRYPTO="Certificate Authorities"
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;;
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-r )
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MAX_RETRY="$2"
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shift
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;;
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-d )
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CLI_DELAY="$2"
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shift
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;;
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-s )
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DATABASE="$2"
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shift
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;;
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-ccl )
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CC_SRC_LANGUAGE="$2"
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shift
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;;
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-ccn )
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CC_NAME="$2"
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shift
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;;
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-ccv )
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CC_VERSION="$2"
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shift
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;;
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-ccs )
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CC_SEQUENCE="$2"
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shift
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;;
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-ccp )
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CC_SRC_PATH="$2"
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shift
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;;
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-ccep )
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CC_END_POLICY="$2"
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shift
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;;
|
|
-cccg )
|
|
CC_COLL_CONFIG="$2"
|
|
shift
|
|
;;
|
|
-cci )
|
|
CC_INIT_FCN="$2"
|
|
shift
|
|
;;
|
|
-i )
|
|
IMAGETAG="$2"
|
|
shift
|
|
;;
|
|
-cai )
|
|
CA_IMAGETAG="$2"
|
|
shift
|
|
;;
|
|
-verbose )
|
|
VERBOSE=true
|
|
shift
|
|
;;
|
|
* )
|
|
errorln "Unknown flag: $key"
|
|
printHelp
|
|
exit 1
|
|
;;
|
|
esac
|
|
shift
|
|
done
|
|
|
|
# Are we generating crypto material with this command?
|
|
if [ ! -d "organizations/peerOrganizations" ]; then
|
|
CRYPTO_MODE="with crypto from '${CRYPTO}'"
|
|
else
|
|
CRYPTO_MODE=""
|
|
fi
|
|
|
|
# Determine mode of operation and printing out what we asked for
|
|
if [ "$MODE" == "up" ]; then
|
|
infoln "Starting nodes with CLI timeout of '${MAX_RETRY}' tries and CLI delay of '${CLI_DELAY}' seconds and using database '${DATABASE}' ${CRYPTO_MODE}"
|
|
elif [ "$MODE" == "createChannel" ]; then
|
|
infoln "Creating channel '${CHANNEL_NAME}'."
|
|
infoln "If network is not up, starting nodes with CLI timeout of '${MAX_RETRY}' tries and CLI delay of '${CLI_DELAY}' seconds and using database '${DATABASE} ${CRYPTO_MODE}"
|
|
elif [ "$MODE" == "down" ]; then
|
|
infoln "Stopping network"
|
|
elif [ "$MODE" == "restart" ]; then
|
|
infoln "Restarting network"
|
|
elif [ "$MODE" == "deployCC" ]; then
|
|
infoln "deploying chaincode on channel '${CHANNEL_NAME}'"
|
|
else
|
|
printHelp
|
|
exit 1
|
|
fi
|
|
|
|
if [ "${MODE}" == "up" ]; then
|
|
networkUp
|
|
elif [ "${MODE}" == "createChannel" ]; then
|
|
createChannel
|
|
elif [ "${MODE}" == "deployCC" ]; then
|
|
deployCC
|
|
elif [ "${MODE}" == "down" ]; then
|
|
networkDown
|
|
else
|
|
printHelp
|
|
exit 1
|
|
fi
|