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@ -307,6 +307,7 @@ function doNetconfRequest(message)
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DB.hmset(memberKey,{
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DB.hmset(memberKey,{
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'lastSeen': Date.now(),
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'lastSeen': Date.now(),
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'lastAt': fromIpAndPort,
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'lastAt': fromIpAndPort,
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'authorized': authorized ? '1' : '0', // reset authorized to unhide in UI, since UI uses -1 to hide
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'clientVersion': (message.data['clientVersion']) ? message.data['clientVersion'] : '?.?.?',
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'clientVersion': (message.data['clientVersion']) ? message.data['clientVersion'] : '?.?.?',
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'clientOs': (message.data['clientOs']) ? message.data['clientOs'] : '?'
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'clientOs': (message.data['clientOs']) ? message.data['clientOs'] : '?'
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},next);
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},next);
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@ -362,19 +363,19 @@ function doNetconfRequest(message)
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var peerAddress = peerId.address();
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var peerAddress = peerId.address();
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var network = 0;
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var ipnetwork = 0;
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var netmask = 0;
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var netmask = 0;
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var netmaskBits = 0;
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var netmaskBits = 0;
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var v4pool = network['v4AssignPool']; // technically csv but only one netblock currently supported
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var v4pool = network['v4AssignPool']; // technically csv but only one netblock currently supported
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if (v4pool) {
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if (v4pool) {
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var v4poolSplit = v4Pool.split('/');
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var v4poolSplit = v4pool.split('/');
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if (v4poolSplit.length === 2) {
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if (v4poolSplit.length === 2) {
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var networkSplit = v4poolSplit[0].split('.');
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var networkSplit = v4poolSplit[0].split('.');
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if (networkSplit.length === 4) {
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if (networkSplit.length === 4) {
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network |= (parseInt(networkSplit[0],10) << 24) & 0xff000000;
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ipnetwork |= (parseInt(networkSplit[0],10) << 24) & 0xff000000;
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network |= (parseInt(networkSplit[1],10) << 16) & 0x00ff0000;
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ipnetwork |= (parseInt(networkSplit[1],10) << 16) & 0x00ff0000;
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network |= (parseInt(networkSplit[2],10) << 8) & 0x0000ff00;
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ipnetwork |= (parseInt(networkSplit[2],10) << 8) & 0x0000ff00;
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network |= parseInt(networkSplit[3],10) & 0x000000ff;
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ipnetwork |= parseInt(networkSplit[3],10) & 0x000000ff;
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netmaskBits = parseInt(v4poolSplit[1],10);
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netmaskBits = parseInt(v4poolSplit[1],10);
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if (netmaskBits > 32)
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if (netmaskBits > 32)
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netmaskBits = 32; // sanity check
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netmaskBits = 32; // sanity check
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@ -384,7 +385,7 @@ function doNetconfRequest(message)
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}
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}
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}
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}
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}
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}
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if ((network === 0)||(netmask === 0xffffffff))
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if ((ipnetwork === 0)||(netmask === 0xffffffff))
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return next(null);
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return next(null);
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var invmask = netmask ^ 0xffffffff;
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var invmask = netmask ^ 0xffffffff;
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@ -409,7 +410,7 @@ function doNetconfRequest(message)
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abcd &= 0xffffffff;
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abcd &= 0xffffffff;
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// Derive an IP to test and generate assignment ip/bits string
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// Derive an IP to test and generate assignment ip/bits string
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var ip = (abcd & invmask) | (network & netmask);
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var ip = (abcd & invmask) | (ipnetwork & netmask);
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var assignment = ((ip >> 24) & 0xff).toString(10) + '.' + ((ip >> 16) & 0xff).toString(10) + '.' + ((ip >> 8) & 0xff).toString(10) + '.' + (ip & 0xff).toString(10) + '/' + netmaskBits.toString(10);
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var assignment = ((ip >> 24) & 0xff).toString(10) + '.' + ((ip >> 16) & 0xff).toString(10) + '.' + ((ip >> 8) & 0xff).toString(10) + '.' + (ip & 0xff).toString(10) + '/' + netmaskBits.toString(10);
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// Check :ipAssignments to see if this IP is already taken
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// Check :ipAssignments to see if this IP is already taken
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@ -5,7 +5,7 @@ export PATH=/bin:/usr/bin:/usr/local/bin
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# We will start in ZT_HOME
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# We will start in ZT_HOME
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if [ ! -d ./services.d/netconf-service ]; then
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if [ ! -d ./services.d/netconf-service ]; then
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echo 'cannot find netconf-service subfolder to launch subprocess' >>&2
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echo 'cannot find netconf-service subfolder to launch subprocess' >&2
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exit 1
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exit 1
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fi
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fi
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@ -101,6 +101,6 @@ The ipAssignments field is re-generated whenever the zt1:network:\<nwid\>:ipAssi
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### zt1:network:\<nwid\>:ipAssignments
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### zt1:network:\<nwid\>:ipAssignments
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This is a hash mapping IP/netmask bits fields to 10-digit ZeroTier addresses of network members. IPv4 fields contain dots, e.g. "10.2.3.4/24" or "29.1.1.1/7". IPv6 fields contain colons. Note that IPv6 IP abbreviations should *not* be used; use \:0000\: instead of \:\: for zero parts of addresses. This is to simplify parser code and canonicalize for rapid search. All hex digits must be lower-case.
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This is a hash mapping IP/netmask bits fields to 10-digit ZeroTier addresses of network members. IPv4 fields contain dots, e.g. "10.2.3.4/24" or "29.1.1.1/7". IPv6 fields contain colons. Note that IPv6 IP abbreviations must *not* be used; use \:0000\: instead of \:\: for zero parts of addresses. This is to simplify parser code and canonicalize for rapid search. All hex digits must be lower-case.
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This is only used if the network's IPv4 and/or IPv6 auto-assign mode is 'zt' for ZeroTier assignment. The netconf-master will auto-populate by choosing unused IPs, and it can be edited via the API as well.
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This is only used if the network's IPv4 and/or IPv6 auto-assign mode is 'zt' for ZeroTier assignment. The netconf-master will auto-populate by choosing unused IPs, and it can be edited via the API as well.
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