Moving to glide
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7
vendor/github.com/mattermost/rsc/rosetta/graph/Makefile
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7
vendor/github.com/mattermost/rsc/rosetta/graph/Makefile
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include $(GOROOT)/src/Make.inc
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TARG=rsc.googlecode.com/hg/rosetta/graph
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GOFILES=\
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graph.go\
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include $(GOROOT)/src/Make.pkg
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133
vendor/github.com/mattermost/rsc/rosetta/graph/graph.go
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133
vendor/github.com/mattermost/rsc/rosetta/graph/graph.go
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// Copyright 2011 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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// Simple demonstration of a graph interface and
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// Dijkstra's algorithm built on top of that interface,
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// without using inheritance.
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package graph
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import "container/heap"
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// A Graph is the interface implemented by graphs that
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// this package can run algorithms on.
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type Graph interface {
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// NumVertex returns the number of vertices in the graph.
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NumVertex() int
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// VertexID returns a vertex ID, 0 <= ID < NumVertex(), for v.
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VertexID(v Vertex) int
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// Neighbors returns a slice of vertices that are adjacent
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// to v in the graph.
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Neighbors(v Vertex) []Vertex
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}
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type Vertex interface {
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String() string
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}
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// ShortestPath uses Dijkstra's algorithm to find the shortest
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// path from start to end in g. It returns the path as a slice of
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// vertices, with start first and end last. If there is no path,
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// ShortestPath returns nil.
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func ShortestPath(g Graph, start, end Vertex) []Vertex {
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d := newDijkstra(g)
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d.visit(start, 1, nil)
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for !d.empty() {
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p := d.next()
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if g.VertexID(p.v) == g.VertexID(end) {
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break
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}
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for _, v := range g.Neighbors(p.v) {
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d.visit(v, p.depth+1, p)
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}
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}
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p := d.pos(end)
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if p.depth == 0 {
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// unvisited - no path
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return nil
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}
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path := make([]Vertex, p.depth)
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for ; p != nil; p = p.parent {
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path[p.depth-1] = p.v
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}
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return path
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}
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// A dpos is a position in the Dijkstra traversal.
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type dpos struct {
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depth int
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heapIndex int
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v Vertex
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parent *dpos
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}
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// A dijkstra is the Dijkstra traversal's work state.
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// It contains the heap queue and per-vertex information.
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type dijkstra struct {
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g Graph
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q []*dpos
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byID []dpos
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}
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func newDijkstra(g Graph) *dijkstra {
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d := &dijkstra{g: g}
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d.byID = make([]dpos, g.NumVertex())
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return d
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}
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func (d *dijkstra) pos(v Vertex) *dpos {
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p := &d.byID[d.g.VertexID(v)]
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p.v = v // in case this is the first time we've seen it
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return p
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}
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func (d *dijkstra) visit(v Vertex, depth int, parent *dpos) {
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p := d.pos(v)
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if p.depth == 0 {
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p.parent = parent
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p.depth = depth
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heap.Push(d, p)
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}
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}
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func (d *dijkstra) empty() bool {
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return len(d.q) == 0
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}
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func (d *dijkstra) next() *dpos {
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return heap.Pop(d).(*dpos)
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}
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// Implementation of heap.Interface
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func (d *dijkstra) Len() int {
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return len(d.q)
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}
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func (d *dijkstra) Less(i, j int) bool {
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return d.q[i].depth < d.q[j].depth
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}
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func (d *dijkstra) Swap(i, j int) {
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d.q[i], d.q[j] = d.q[j], d.q[i]
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d.q[i].heapIndex = i
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d.q[j].heapIndex = j
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}
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func (d *dijkstra) Push(x interface{}) {
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p := x.(*dpos)
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p.heapIndex = len(d.q)
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d.q = append(d.q, p)
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}
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func (d *dijkstra) Pop() interface{} {
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n := len(d.q)
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x := d.q[n-1]
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d.q = d.q[:n-1]
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x.heapIndex = -1
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return x
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}
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