parent
31267858a6
commit
80d42433d8
@ -25,7 +25,7 @@ func TestReadConfig(t *testing.T) {
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assert.Contains(config.Respondd.Sites["ffhb"].Domains, "city")
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// Test output plugins
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assert.Len(config.Nodes.Output, 3)
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assert.Len(config.Nodes.Output, 4)
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outputs := config.Nodes.Output["meshviewer"].([]interface{})
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assert.Len(outputs, 1)
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meshviewer := outputs[0]
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@ -93,6 +93,11 @@ offline_after = "10m"
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#longitude_max = 39.72
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# outputs all nodes as points into nodes.geojson
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[[nodes.output.geojson]]
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enable = true
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path = "/var/www/html/meshviewer/data/nodes.geojson"
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# definition for the new more compressed meshviewer.json
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[[nodes.output.meshviewer-ffrgb]]
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enable = true
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@ -387,6 +387,31 @@ longitude_max = 39.72
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## [[nodes.output.geojson]]
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{% method %}
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The geojson output produces a geojson file which contains the location data of all monitored nodes to be used to visualize the location of the nodes.
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It is optimized to be used with [UMap](https://github.com/umap-project/umap) but should work with other tools as well.
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Here is a public demo provided by Freifunk Muenchen: http://u.osmfr.org/m/328494/
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{% sample lang="toml" %}
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```toml
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[[nodes.output.geojson]]
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enable = true
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path = "/var/www/html/meshviewer/data/nodes.geojson"
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```
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{% endmethod %}
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### path
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{% method %}
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The path, where to store nodes.geojson
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{% sample lang="toml" %}
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```toml
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path = "/var/www/html/meshviewer/data/nodes.geojson"
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```
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{% endmethod %}
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## [[nodes.output.meshviewer-ffrgb]]
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{% method %}
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The new json file format for the [meshviewer](https://github.com/ffrgb/meshviewer) developed in Regensburg.
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@ -1,6 +1,7 @@
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package all
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import (
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_ "github.com/FreifunkBremen/yanic/output/geojson"
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_ "github.com/FreifunkBremen/yanic/output/meshviewer"
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_ "github.com/FreifunkBremen/yanic/output/meshviewer-ffrgb"
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_ "github.com/FreifunkBremen/yanic/output/nodelist"
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89
output/geojson/geojson.go
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89
output/geojson/geojson.go
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@ -0,0 +1,89 @@
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package geojson
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import (
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"strconv"
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"strings"
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"github.com/FreifunkBremen/yanic/runtime"
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"github.com/paulmach/go.geojson"
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)
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const (
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POINT_UMAP_CLASS = "Circle"
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POINT_UMAP_ONLINE_COLOR = "Green"
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POINT_UMAP_OFFLINE_COLOR = "Red"
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)
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func newNodePoint(n *runtime.Node) (point *geojson.Feature) {
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nodeinfo := n.Nodeinfo
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location := nodeinfo.Location
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point = geojson.NewPointFeature([]float64{
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location.Longitude,
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location.Latitude,
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})
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point.Properties["id"] = nodeinfo.NodeID
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point.Properties["name"] = nodeinfo.Hostname
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point.Properties["online"] = n.Online
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var description strings.Builder
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if n.Online {
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description.WriteString("Online\n")
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if statistics := n.Statistics; statistics != nil {
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point.Properties["clients"] = statistics.Clients.Total
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description.WriteString("Clients: " + strconv.Itoa(int(statistics.Clients.Total)) + "\n")
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}
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} else {
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description.WriteString("Offline\n")
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}
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if nodeinfo.Hardware.Model != "" {
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point.Properties["model"] = nodeinfo.Hardware.Model
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description.WriteString("Model: " + nodeinfo.Hardware.Model + "\n")
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}
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if fw := nodeinfo.Software.Firmware; fw.Release != "" {
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point.Properties["firmware"] = fw.Release
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description.WriteString("Firmware: " + fw.Release + "\n")
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}
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if nodeinfo.System.SiteCode != "" {
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point.Properties["site"] = nodeinfo.System.SiteCode
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description.WriteString("Site: " + nodeinfo.System.SiteCode + "\n")
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}
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if nodeinfo.System.DomainCode != "" {
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point.Properties["domain"] = nodeinfo.System.DomainCode
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description.WriteString("Domain: " + nodeinfo.System.DomainCode + "\n")
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}
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if owner := nodeinfo.Owner; owner != nil && owner.Contact != "" {
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point.Properties["contact"] = owner.Contact
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description.WriteString("Contact: " + owner.Contact + "\n")
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}
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point.Properties["description"] = description.String()
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point.Properties["_umap_options"] = getUMapOptions(n)
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return
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}
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func getUMapOptions(n *runtime.Node) map[string]string {
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result := map[string]string{
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"iconClass": POINT_UMAP_CLASS,
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}
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if n.Online {
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result["color"] = POINT_UMAP_ONLINE_COLOR
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} else {
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result["color"] = POINT_UMAP_OFFLINE_COLOR
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}
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return result
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}
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func transform(nodes *runtime.Nodes) *geojson.FeatureCollection {
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nodelist := geojson.NewFeatureCollection()
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for _, n := range nodes.List {
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if n.Nodeinfo == nil || n.Nodeinfo.Location == nil {
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continue
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}
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point := newNodePoint(n)
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if point != nil {
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nodelist.Features = append(nodelist.Features, point)
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}
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}
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return nodelist
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}
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129
output/geojson/geojson_test.go
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129
output/geojson/geojson_test.go
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@ -0,0 +1,129 @@
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package geojson
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import (
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"testing"
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"github.com/stretchr/testify/assert"
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"github.com/FreifunkBremen/yanic/data"
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"github.com/FreifunkBremen/yanic/runtime"
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)
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const (
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testNodeDescription string = "Online\nClients: 42\nModel: TP-Link 841\n" +
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"Site: mysite\nDomain: domain_42\n"
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)
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func TestTransform(t *testing.T) {
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testNodes := createTestNodes()
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nodes := transform(testNodes)
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assert := assert.New(t)
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assert.Len(testNodes.List, 4)
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assert.Len(nodes.Features, 3)
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node := testNodes.List["abcdef012425"]
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umap := getUMapOptions(node)
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assert.Len(umap, 2)
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nodePoint := newNodePoint(node)
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assert.Equal(
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"abcdef012425",
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nodePoint.Properties["id"],
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)
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assert.Equal(
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"TP-Link 841",
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nodePoint.Properties["model"],
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)
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assert.Equal(
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uint32(42),
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nodePoint.Properties["clients"],
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)
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assert.Equal(
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testNodeDescription,
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nodePoint.Properties["description"],
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)
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}
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func createTestNodes() *runtime.Nodes {
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nodes := runtime.NewNodes(&runtime.NodesConfig{})
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nodes.AddNode(&runtime.Node{
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Online: true,
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Statistics: &data.Statistics{
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Clients: data.Clients{
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Total: 42,
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},
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},
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Nodeinfo: &data.Nodeinfo{
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NodeID: "abcdef012425",
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Hardware: data.Hardware{
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Model: "TP-Link 841",
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},
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Location: &data.Location{
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Latitude: 24,
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Longitude: 2,
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},
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System: data.System{
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SiteCode: "mysite",
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DomainCode: "domain_42",
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},
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},
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})
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nodeData := &runtime.Node{
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Online: true,
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Statistics: &data.Statistics{
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Clients: data.Clients{
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Total: 23,
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},
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},
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Nodeinfo: &data.Nodeinfo{
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NodeID: "abcdef012345",
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Hardware: data.Hardware{
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Model: "TP-Link 842",
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},
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System: data.System{
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SiteCode: "mysite",
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DomainCode: "domain_42",
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},
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},
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}
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nodeData.Nodeinfo.Software.Firmware.Release = "2019.1~exp42"
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nodes.AddNode(nodeData)
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nodes.AddNode(&runtime.Node{
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Statistics: &data.Statistics{
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Clients: data.Clients{
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Total: 2,
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},
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},
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Nodeinfo: &data.Nodeinfo{
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NodeID: "112233445566",
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Hardware: data.Hardware{
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Model: "TP-Link 843",
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},
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Location: &data.Location{
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Latitude: 23,
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Longitude: 2,
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},
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},
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})
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nodes.AddNode(&runtime.Node{
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Nodeinfo: &data.Nodeinfo{
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NodeID: "0xdeadbeef0x",
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VPN: true,
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Hardware: data.Hardware{
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Model: "Xeon Multi-Core",
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},
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Location: &data.Location{
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Latitude: 23,
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Longitude: 22,
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},
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},
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})
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return nodes
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}
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46
output/geojson/output.go
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46
output/geojson/output.go
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@ -0,0 +1,46 @@
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package geojson
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import (
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"errors"
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"github.com/FreifunkBremen/yanic/output"
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"github.com/FreifunkBremen/yanic/runtime"
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)
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type Output struct {
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output.Output
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path string
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}
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type Config map[string]interface{}
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func (c Config) Path() string {
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if path, ok := c["path"]; ok {
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return path.(string)
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}
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return ""
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}
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func init() {
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output.RegisterAdapter("geojson", Register)
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}
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func Register(configuration map[string]interface{}) (output.Output, error) {
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var config Config
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config = configuration
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if path := config.Path(); path != "" {
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return &Output{
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path: path,
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}, nil
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}
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return nil, errors.New("no path given")
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}
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func (o *Output) Save(nodes *runtime.Nodes) {
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nodes.RLock()
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defer nodes.RUnlock()
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runtime.SaveJSON(transform(nodes), o.path)
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}
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28
output/geojson/output_test.go
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28
output/geojson/output_test.go
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package geojson
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import (
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"os"
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"testing"
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"github.com/FreifunkBremen/yanic/runtime"
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"github.com/stretchr/testify/assert"
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)
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func TestOutput(t *testing.T) {
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assert := assert.New(t)
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out, err := Register(map[string]interface{}{})
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assert.Error(err)
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assert.Nil(out)
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out, err = Register(map[string]interface{}{
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"path": "/tmp/nodes.geojson",
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})
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os.Remove("/tmp/nodes.geojson")
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assert.NoError(err)
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assert.NotNil(out)
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out.Save(&runtime.Nodes{})
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_, err = os.Stat("/tmp/nodes.geojson")
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assert.NoError(err)
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}
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Loading…
Reference in New Issue
Block a user