mirror of
https://github.com/oxen-io/lokinet.git
synced 2024-11-17 15:25:35 +00:00
276 lines
7.2 KiB
C++
276 lines
7.2 KiB
C++
#include <llarp/nodedb.hpp>
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#include <llarp/path.hpp>
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#include <llarp/pathbuilder.hpp>
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#include "buffer.hpp"
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#include "router.hpp"
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namespace llarp
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{
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template < typename User >
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struct AsyncPathKeyExchangeContext
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{
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typedef llarp::path::Path Path_t;
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typedef llarp::path::PathSet PathSet_t;
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PathSet_t* pathset = nullptr;
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Path_t* path = nullptr;
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typedef void (*Handler)(AsyncPathKeyExchangeContext< User >*);
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User* user = nullptr;
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Handler result = nullptr;
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size_t idx = 0;
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llarp_threadpool* worker = nullptr;
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llarp_logic* logic = nullptr;
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llarp_crypto* crypto = nullptr;
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LR_CommitMessage LRCM;
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static void
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HandleDone(void* u)
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{
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AsyncPathKeyExchangeContext< User >* ctx =
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static_cast< AsyncPathKeyExchangeContext< User >* >(u);
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ctx->result(ctx);
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}
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static void
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GenerateNextKey(void* u)
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{
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AsyncPathKeyExchangeContext< User >* ctx =
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static_cast< AsyncPathKeyExchangeContext< User >* >(u);
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// current hop
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auto& hop = ctx->path->hops[ctx->idx];
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auto& frame = ctx->LRCM.frames[ctx->idx];
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// generate key
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ctx->crypto->encryption_keygen(hop.commkey);
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hop.nonce.Randomize();
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// do key exchange
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if(!ctx->crypto->dh_client(hop.shared, hop.rc.enckey, hop.commkey,
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hop.nonce))
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{
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llarp::LogError("Failed to generate shared key for path build");
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delete ctx;
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return;
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}
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// generate nonceXOR valueself->hop->pathKey
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ctx->crypto->shorthash(hop.nonceXOR, llarp::Buffer(hop.shared));
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++ctx->idx;
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bool isFarthestHop = ctx->idx == ctx->path->hops.size();
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if(isFarthestHop)
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{
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hop.upstream = hop.rc.pubkey;
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}
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else
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{
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hop.upstream = ctx->path->hops[ctx->idx].rc.pubkey;
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}
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// build record
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LR_CommitRecord record;
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record.version = LLARP_PROTO_VERSION;
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record.txid = hop.txID;
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record.rxid = hop.rxID;
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record.tunnelNonce = hop.nonce;
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record.nextHop = hop.upstream;
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record.commkey = llarp::seckey_topublic(hop.commkey);
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auto buf = frame.Buffer();
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buf->cur = buf->base + EncryptedFrame::OverheadSize;
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// encode record
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if(!record.BEncode(buf))
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{
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// failed to encode?
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llarp::LogError("Failed to generate Commit Record");
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delete ctx;
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return;
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}
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// use ephameral keypair for frame
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SecretKey framekey;
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ctx->crypto->encryption_keygen(framekey);
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if(!frame.EncryptInPlace(framekey, hop.rc.enckey, ctx->crypto))
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{
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llarp::LogError("Failed to encrypt LRCR");
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delete ctx;
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return;
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}
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if(isFarthestHop)
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{
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// farthest hop
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llarp_logic_queue_job(ctx->logic, {ctx, &HandleDone});
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}
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else
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{
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// next hop
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llarp_threadpool_queue_job(ctx->worker, {ctx, &GenerateNextKey});
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}
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}
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AsyncPathKeyExchangeContext(llarp_crypto* c) : crypto(c)
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{
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}
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/// Generate all keys asynchronously and call hadler when done
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void
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AsyncGenerateKeys(Path_t* p, llarp_logic* l, llarp_threadpool* pool,
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User* u, Handler func)
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{
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path = p;
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logic = l;
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user = u;
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result = func;
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worker = pool;
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for(size_t idx = 0; idx < MAXHOPS; ++idx)
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{
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LRCM.frames[idx].Randomize();
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}
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llarp_threadpool_queue_job(pool, {this, &GenerateNextKey});
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}
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};
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void
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pathbuilder_generated_keys(AsyncPathKeyExchangeContext< path::Builder >* ctx)
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{
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auto remote = ctx->path->Upstream();
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auto router = ctx->user->router;
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if(!router->SendToOrQueue(remote, &ctx->LRCM))
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{
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llarp::LogError("failed to send LRCM");
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delete ctx;
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return;
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}
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// persist session with router until this path is done
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router->PersistSessionUntil(remote, ctx->path->ExpireTime());
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// add own path
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router->paths.AddOwnPath(ctx->pathset, ctx->path);
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delete ctx;
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}
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namespace path
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{
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Builder::Builder(llarp_router* p_router, struct llarp_dht_context* p_dht,
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size_t pathNum, size_t hops)
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: llarp::path::PathSet(pathNum)
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, router(p_router)
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, dht(p_dht)
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, numHops(hops)
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{
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p_router->paths.AddPathBuilder(this);
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p_router->crypto.encryption_keygen(enckey);
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}
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Builder::~Builder()
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{
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router->paths.RemovePathBuilder(this);
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}
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bool
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Builder::SelectHop(llarp_nodedb* db, const RouterContact& prev,
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RouterContact& cur, size_t hop)
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{
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if(hop == 0)
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{
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if(router->NumberOfConnectedRouters())
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return router->GetRandomConnectedRouter(cur);
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else
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return llarp_nodedb_select_random_hop(db, prev, cur, 0);
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}
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return llarp_nodedb_select_random_hop(db, prev, cur, hop);
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}
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const byte_t*
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Builder::GetTunnelEncryptionSecretKey() const
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{
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return enckey;
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}
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bool
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Builder::ShouldBuildMore() const
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{
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auto now = llarp_time_now_ms();
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return llarp::path::PathSet::ShouldBuildMore() && now > lastBuild
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&& now - lastBuild > buildIntervalLimit;
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}
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void
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Builder::BuildOne()
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{
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std::vector< RouterContact > hops;
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if(SelectHops(router->nodedb, hops))
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Build(hops);
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}
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bool
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Builder::SelectHops(llarp_nodedb* nodedb,
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std::vector< RouterContact >& hops)
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{
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hops.resize(numHops);
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size_t idx = 0;
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while(idx < numHops)
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{
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if(idx == 0)
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{
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if(!SelectHop(nodedb, hops[0], hops[0], 0))
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{
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llarp::LogError("failed to select first hop");
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return false;
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}
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}
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else
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{
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if(!SelectHop(nodedb, hops[idx - 1], hops[idx], idx))
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{
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/// TODO: handle this failure properly
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llarp::LogWarn("Failed to select hop ", idx);
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return false;
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}
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}
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++idx;
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}
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return true;
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}
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void
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Builder::Build(const std::vector< RouterContact >& hops)
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{
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lastBuild = llarp_time_now_ms();
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// async generate keys
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AsyncPathKeyExchangeContext< Builder >* ctx =
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new AsyncPathKeyExchangeContext< Builder >(&router->crypto);
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ctx->pathset = this;
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auto path = new llarp::path::Path(hops, this);
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path->SetBuildResultHook(std::bind(&llarp::path::Builder::HandlePathBuilt,
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this, std::placeholders::_1));
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ctx->AsyncGenerateKeys(path, router->logic, router->tp, this,
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&pathbuilder_generated_keys);
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}
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void
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Builder::HandlePathBuilt(Path* p)
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{
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buildIntervalLimit = MIN_PATH_BUILD_INTERVAL;
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PathSet::HandlePathBuilt(p);
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}
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void
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Builder::HandlePathBuildTimeout(Path* p)
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{
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// linear backoff
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buildIntervalLimit += 1000;
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PathSet::HandlePathBuildTimeout(p);
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}
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void
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Builder::ManualRebuild(size_t num)
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{
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llarp::LogDebug("manual rebuild ", num);
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while(num--)
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BuildOne();
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}
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} // namespace path
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} // namespace llarp
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