yggdrasil-go/src/yggdrasil/search.go

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package yggdrasil
// This thing manages search packets
// The basic idea is as follows:
// We may know a NodeID (with a mask) and want to connect
// We begin a search by initializing a list of all nodes in our DHT, sorted by closest to the destination
// We then iteratively ping nodes from the search, marking each pinged node as visited
// We add any unvisited nodes from ping responses to the search, truncating to some maximum search size
// This stops when we either run out of nodes to ping (we hit a dead end where we can't make progress without going back), or we reach the destination
// A new search packet is sent immediately after receiving a response
// A new search packet is sent periodically, once per second, in case a packet was dropped (this slowly causes the search to become parallel if the search doesn't timeout but also doesn't finish within 1 second for whatever reason)
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import "sort"
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import "time"
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//import "fmt"
const search_MAX_SEARCH_SIZE = 16
const search_RETRY_TIME = time.Second
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type searchInfo struct {
dest NodeID
mask NodeID
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time time.Time
packet []byte
toVisit []*dhtInfo
visited map[NodeID]bool
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}
type searches struct {
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core *Core
searches map[NodeID]*searchInfo
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}
func (s *searches) init(core *Core) {
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s.core = core
s.searches = make(map[NodeID]*searchInfo)
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}
func (s *searches) createSearch(dest *NodeID, mask *NodeID) *searchInfo {
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now := time.Now()
for dest, sinfo := range s.searches {
if now.Sub(sinfo.time) > time.Minute {
delete(s.searches, dest)
}
}
info := searchInfo{
dest: *dest,
mask: *mask,
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time: now.Add(-time.Second),
}
s.searches[*dest] = &info
return &info
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}
////////////////////////////////////////////////////////////////////////////////
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func (s *searches) handleDHTRes(res *dhtRes) {
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sinfo, isIn := s.searches[res.Dest]
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if !isIn || s.checkDHTRes(sinfo, res) {
// Either we don't recognize this search, or we just finished it
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return
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} else {
// Add to the search and continue
s.addToSearch(sinfo, res)
s.doSearchStep(sinfo)
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}
}
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func (s *searches) addToSearch(sinfo *searchInfo, res *dhtRes) {
// Add responses to toVisit if closer to dest than the res node
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from := dhtInfo{key: res.Key, coords: res.Coords}
for _, info := range res.Infos {
if sinfo.visited[*info.getNodeID()] {
continue
}
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if dht_firstCloserThanThird(info.getNodeID(), &res.Dest, from.getNodeID()) {
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sinfo.toVisit = append(sinfo.toVisit, info)
}
}
// Deduplicate
vMap := make(map[NodeID]*dhtInfo)
for _, info := range sinfo.toVisit {
vMap[*info.getNodeID()] = info
}
sinfo.toVisit = sinfo.toVisit[:0]
for _, info := range vMap {
sinfo.toVisit = append(sinfo.toVisit, info)
}
// Sort
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sort.SliceStable(sinfo.toVisit, func(i, j int) bool {
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return dht_firstCloserThanThird(sinfo.toVisit[i].getNodeID(), &res.Dest, sinfo.toVisit[j].getNodeID())
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})
// Truncate to some maximum size
if len(sinfo.toVisit) > search_MAX_SEARCH_SIZE {
sinfo.toVisit = sinfo.toVisit[:search_MAX_SEARCH_SIZE]
}
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}
func (s *searches) doSearchStep(sinfo *searchInfo) {
if len(sinfo.toVisit) == 0 {
// Dead end, do cleanup
delete(s.searches, sinfo.dest)
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return
} else {
// Send to the next search target
var next *dhtInfo
next, sinfo.toVisit = sinfo.toVisit[0], sinfo.toVisit[1:]
s.core.dht.ping(next, &sinfo.dest)
sinfo.visited[*next.getNodeID()] = true
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}
}
func (s *searches) continueSearch(sinfo *searchInfo) {
if time.Since(sinfo.time) < search_RETRY_TIME {
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return
}
sinfo.time = time.Now()
s.doSearchStep(sinfo)
// In case the search dies, try to spawn another thread later
// Note that this will spawn multiple parallel searches as time passes
// Any that die aren't restarted, but a new one will start later
retryLater := func() {
newSearchInfo := s.searches[sinfo.dest]
if newSearchInfo != sinfo {
return
}
s.continueSearch(sinfo)
}
go func() {
time.Sleep(search_RETRY_TIME)
s.core.router.admin <- retryLater
}()
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}
func (s *searches) newIterSearch(dest *NodeID, mask *NodeID) *searchInfo {
sinfo := s.createSearch(dest, mask)
sinfo.toVisit = s.core.dht.lookup(dest, true)
sinfo.visited = make(map[NodeID]bool)
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return sinfo
}
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func (s *searches) checkDHTRes(info *searchInfo, res *dhtRes) bool {
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them := getNodeID(&res.Key)
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var destMasked NodeID
var themMasked NodeID
for idx := 0; idx < NodeIDLen; idx++ {
destMasked[idx] = info.dest[idx] & info.mask[idx]
themMasked[idx] = them[idx] & info.mask[idx]
}
if themMasked != destMasked {
return false
}
// They match, so create a session and send a sessionRequest
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sinfo, isIn := s.core.sessions.getByTheirPerm(&res.Key)
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if !isIn {
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sinfo = s.core.sessions.createSession(&res.Key)
_, isIn := s.core.sessions.getByTheirPerm(&res.Key)
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if !isIn {
panic("This should never happen")
}
}
// FIXME (!) replay attacks could mess with coords? Give it a handle (tstamp)?
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sinfo.coords = res.Coords
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sinfo.packet = info.packet
s.core.sessions.ping(sinfo)
// Cleanup
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delete(s.searches, res.Dest)
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return true
}