Files
HaloKeymind/test/test_trace_retry/test_trace_retry.cpp
T

170 lines
5.7 KiB
C++

#include <gtest/gtest.h>
#include <Ed25519.h>
#include <Mesh.h>
#include <helpers/StaticPoolPacketManager.h>
class TraceTestClock : public mesh::MillisecondClock {
public:
unsigned long now = 0;
unsigned long getMillis() override { return now; }
};
class TraceTestRTC : public mesh::RTCClock {
public:
uint32_t now = 0;
uint32_t getCurrentTime() override { return now; }
void setCurrentTime(uint32_t time) override { now = time; }
};
class TraceTestRNG : public mesh::RNG {
public:
void random(uint8_t* dest, size_t sz) override { memset(dest, 0, sz); }
};
class TraceTestRadio : public mesh::Radio {
public:
bool sending = false;
bool complete = false;
int recvRaw(uint8_t*, int) override { return 0; }
uint32_t getEstAirtimeFor(int) override { return 10; }
float packetScore(float, int) override { return 0; }
bool startSendRaw(const uint8_t*, int) override {
sending = true;
return true;
}
bool isSendComplete() override { return complete; }
void onSendFinished() override {
sending = false;
complete = false;
}
bool isInRecvMode() const override { return !sending; }
};
class TraceTestTables : public mesh::MeshTables {
public:
bool wasSeen(const mesh::Packet*) override { return false; }
void markSeen(const mesh::Packet*) override { }
void markSent(const mesh::Packet*) override { }
void clear(const mesh::Packet*) override { }
};
class TraceTestMesh : public mesh::Mesh {
public:
TraceTestMesh(mesh::Radio& radio, mesh::MillisecondClock& ms, mesh::RNG& rng,
mesh::RTCClock& rtc, mesh::PacketManager& mgr, mesh::MeshTables& tables)
: mesh::Mesh(radio, ms, rng, rtc, mgr, tables) { }
uint8_t airtimeFactor(const mesh::Packet* packet) const {
return getDirectRetryPacketAirtimeFactor(packet);
}
uint8_t floodPathGate(const mesh::Packet* packet, uint8_t general_gate,
uint8_t group_data_gate) const {
return applyGroupDataFloodRetryPathGate(packet, general_gate, group_data_gate);
}
};
static mesh::Packet* makeTrace(TraceTestMesh& node, uint32_t tag, uint32_t auth,
const uint8_t* route, uint8_t route_len) {
mesh::Packet* packet = node.createTrace(tag, auth, 0);
EXPECT_NE(packet, nullptr);
if (packet == nullptr) return nullptr;
EXPECT_TRUE(node.sendDirect(packet, route, route_len));
return packet;
}
TEST(TraceRetry, TraceAndAnonymousRequestsUseThreeAirtimes) {
TraceTestClock clock;
TraceTestRTC rtc;
TraceTestRNG rng;
TraceTestRadio radio;
TraceTestTables tables;
StaticPoolPacketManager manager(12);
TraceTestMesh node(radio, clock, rng, rtc, manager, tables);
mesh::Packet trace;
trace.header = ROUTE_TYPE_DIRECT | (PAYLOAD_TYPE_TRACE << PH_TYPE_SHIFT);
mesh::Packet anon;
anon.header = ROUTE_TYPE_DIRECT | (PAYLOAD_TYPE_ANON_REQ << PH_TYPE_SHIFT);
mesh::Packet text;
text.header = ROUTE_TYPE_DIRECT | (PAYLOAD_TYPE_TXT_MSG << PH_TYPE_SHIFT);
mesh::Packet other;
other.header = ROUTE_TYPE_DIRECT | (PAYLOAD_TYPE_REQ << PH_TYPE_SHIFT);
EXPECT_EQ(3, node.airtimeFactor(&trace));
EXPECT_EQ(3, node.airtimeFactor(&anon));
EXPECT_EQ(7, node.airtimeFactor(&text));
EXPECT_EQ(6, node.airtimeFactor(&other));
}
TEST(FloodRetry, GroupDataUsesTheStricterPathGate) {
TraceTestClock clock;
TraceTestRTC rtc;
TraceTestRNG rng;
TraceTestRadio radio;
TraceTestTables tables;
StaticPoolPacketManager manager(12);
TraceTestMesh node(radio, clock, rng, rtc, manager, tables);
mesh::Packet group_data;
group_data.header = ROUTE_TYPE_FLOOD | (PAYLOAD_TYPE_GRP_DATA << PH_TYPE_SHIFT);
mesh::Packet group_text;
group_text.header = ROUTE_TYPE_FLOOD | (PAYLOAD_TYPE_GRP_TXT << PH_TYPE_SHIFT);
EXPECT_EQ(1, node.floodPathGate(&group_data, 2, 1));
EXPECT_EQ(1, node.floodPathGate(&group_data, FLOOD_RETRY_PATH_GATE_DISABLED, 1));
EXPECT_EQ(1, node.floodPathGate(&group_data, 1, 3));
EXPECT_EQ(2, node.floodPathGate(&group_data, 2, FLOOD_RETRY_PATH_GATE_DISABLED));
EXPECT_EQ(0, node.floodPathGate(&group_data, 0, FLOOD_RETRY_PATH_GATE_DISABLED));
EXPECT_EQ(2, node.floodPathGate(&group_text, 2, 1));
}
TEST(TraceRetry, NewTraceReplacesQueuedRetryButAdvancedOldTraceStillQueues) {
TraceTestClock clock;
TraceTestRTC rtc;
TraceTestRNG rng;
TraceTestRadio radio;
TraceTestTables tables;
StaticPoolPacketManager manager(12);
TraceTestMesh node(radio, clock, rng, rtc, manager, tables);
node.begin();
const uint8_t route[] = {0x11, 0x22, 0x33};
mesh::Packet* old_trace = makeTrace(node, 0x11111111, 0xAAAAAAAA, route, sizeof(route));
ASSERT_NE(old_trace, nullptr);
ASSERT_EQ(1, manager.getOutboundTotal());
clock.now = 1;
node.loop();
ASSERT_TRUE(radio.sending);
radio.complete = true;
clock.now = 2;
node.loop();
ASSERT_EQ(1, manager.getOutboundTotal()); // old TRACE retry
mesh::Packet* new_trace = makeTrace(node, 0x22222222, 0xBBBBBBBB, route, sizeof(route));
ASSERT_NE(new_trace, nullptr);
ASSERT_EQ(1, manager.getOutboundTotal());
EXPECT_EQ(new_trace, manager.getOutboundByIdx(0));
// A packet from the older run that has already advanced is a different
// retry stage. It must remain queueable instead of being treated as the
// stale same-hop retry that the newer run replaced.
mesh::Packet* returning_old = node.createTrace(0x11111111, 0xAAAAAAAA, 0);
ASSERT_NE(returning_old, nullptr);
memcpy(&returning_old->payload[returning_old->payload_len], route, sizeof(route));
returning_old->payload_len += sizeof(route);
returning_old->header |= ROUTE_TYPE_DIRECT;
returning_old->path_len = 1;
returning_old->path[0] = 4;
ASSERT_TRUE(node.sendPacket(returning_old, 1));
EXPECT_EQ(2, manager.getOutboundTotal());
}
int main(int argc, char** argv) {
::testing::InitGoogleTest(&argc, argv);
return RUN_ALL_TESTS();
}