211 lines
5.9 KiB
C++
211 lines
5.9 KiB
C++
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#include <time.h>
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#include <assert.h>
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#include <stdlib.h>
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#include <string>
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#include <mutex>
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#include "cereal/services.h"
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#include "cereal/messaging/messaging.h"
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const bool SIMULATION = (getenv("SIMULATION") != nullptr) && (std::string(getenv("SIMULATION")) == "1");
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static inline uint64_t nanos_since_boot() {
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struct timespec t;
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clock_gettime(CLOCK_BOOTTIME, &t);
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return t.tv_sec * 1000000000ULL + t.tv_nsec;
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}
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static inline bool inList(const std::vector<const char *> &list, const char *value) {
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for (auto &v : list) {
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if (strcmp(value, v) == 0) return true;
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}
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return false;
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}
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class MessageContext {
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public:
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MessageContext() : ctx_(nullptr) {}
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~MessageContext() { delete ctx_; }
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inline Context *context() {
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std::call_once(init_flag, [=]() { ctx_ = Context::create(); });
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return ctx_;
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}
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private:
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Context *ctx_;
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std::once_flag init_flag;
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};
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MessageContext message_context;
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struct SubMaster::SubMessage {
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std::string name;
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SubSocket *socket = nullptr;
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int freq = 0;
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bool updated = false, alive = false, valid = true, ignore_alive;
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uint64_t rcv_time = 0, rcv_frame = 0;
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void *allocated_msg_reader = nullptr;
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bool is_polled = false;
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capnp::FlatArrayMessageReader *msg_reader = nullptr;
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AlignedBuffer aligned_buf;
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cereal::Event::Reader event;
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};
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SubMaster::SubMaster(const std::vector<const char *> &service_list, const std::vector<const char *> &poll,
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const char *address, const std::vector<const char *> &ignore_alive) {
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poller_ = Poller::create();
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for (auto name : service_list) {
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assert(services.count(std::string(name)) > 0);
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service serv = services.at(std::string(name));
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SubSocket *socket = SubSocket::create(message_context.context(), name, address ? address : "127.0.0.1", true);
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assert(socket != 0);
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bool is_polled = inList(poll, name) || poll.empty();
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if (is_polled) poller_->registerSocket(socket);
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SubMessage *m = new SubMessage{
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.name = name,
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.socket = socket,
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.freq = serv.frequency,
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.ignore_alive = inList(ignore_alive, name),
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.allocated_msg_reader = malloc(sizeof(capnp::FlatArrayMessageReader)),
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.is_polled = is_polled};
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m->msg_reader = new (m->allocated_msg_reader) capnp::FlatArrayMessageReader({});
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messages_[socket] = m;
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services_[name] = m;
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}
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}
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void SubMaster::update(int timeout) {
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for (auto &kv : messages_) kv.second->updated = false;
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auto sockets = poller_->poll(timeout);
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// add non-polled sockets for non-blocking receive
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for (auto &kv : messages_) {
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SubMessage *m = kv.second;
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SubSocket *s = kv.first;
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if (!m->is_polled) sockets.push_back(s);
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}
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uint64_t current_time = nanos_since_boot();
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std::vector<std::pair<std::string, cereal::Event::Reader>> messages;
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for (auto s : sockets) {
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Message *msg = s->receive(true);
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if (msg == nullptr) continue;
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SubMessage *m = messages_.at(s);
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m->msg_reader->~FlatArrayMessageReader();
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capnp::ReaderOptions options;
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options.traversalLimitInWords = kj::maxValue; // Don't limit
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m->msg_reader = new (m->allocated_msg_reader) capnp::FlatArrayMessageReader(m->aligned_buf.align(msg), options);
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delete msg;
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messages.push_back({m->name, m->msg_reader->getRoot<cereal::Event>()});
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}
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update_msgs(current_time, messages);
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}
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void SubMaster::update_msgs(uint64_t current_time, const std::vector<std::pair<std::string, cereal::Event::Reader>> &messages){
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if (++frame == UINT64_MAX) frame = 1;
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for (auto &kv : messages) {
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auto m_find = services_.find(kv.first);
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if (m_find == services_.end()){
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continue;
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}
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SubMessage *m = m_find->second;
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m->event = kv.second;
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m->updated = true;
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m->rcv_time = current_time;
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m->rcv_frame = frame;
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m->valid = m->event.getValid();
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if (SIMULATION) m->alive = true;
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}
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if (!SIMULATION) {
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for (auto &kv : messages_) {
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SubMessage *m = kv.second;
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m->alive = (m->freq <= (1e-5) || ((current_time - m->rcv_time) * (1e-9)) < (10.0 / m->freq));
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}
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}
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}
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bool SubMaster::all_(const std::vector<const char *> &service_list, bool valid, bool alive) {
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int found = 0;
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for (auto &kv : messages_) {
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SubMessage *m = kv.second;
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if (service_list.size() == 0 || inList(service_list, m->name.c_str())) {
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found += (!valid || m->valid) && (!alive || (m->alive || m->ignore_alive));
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}
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}
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return service_list.size() == 0 ? found == messages_.size() : found == service_list.size();
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}
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void SubMaster::drain() {
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while (true) {
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auto polls = poller_->poll(0);
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if (polls.size() == 0)
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break;
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for (auto sock : polls) {
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Message *msg = sock->receive(true);
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delete msg;
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}
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}
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}
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bool SubMaster::updated(const char *name) const {
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return services_.at(name)->updated;
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}
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bool SubMaster::alive(const char *name) const {
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return services_.at(name)->alive;
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}
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bool SubMaster::valid(const char *name) const {
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return services_.at(name)->valid;
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}
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uint64_t SubMaster::rcv_frame(const char *name) const {
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return services_.at(name)->rcv_frame;
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}
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uint64_t SubMaster::rcv_time(const char *name) const {
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return services_.at(name)->rcv_time;
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}
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cereal::Event::Reader &SubMaster::operator[](const char *name) const {
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return services_.at(name)->event;
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}
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SubMaster::~SubMaster() {
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delete poller_;
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for (auto &kv : messages_) {
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SubMessage *m = kv.second;
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m->msg_reader->~FlatArrayMessageReader();
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free(m->allocated_msg_reader);
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delete m->socket;
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delete m;
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}
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}
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PubMaster::PubMaster(const std::vector<const char *> &service_list) {
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for (auto name : service_list) {
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assert(services.count(name) > 0);
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PubSocket *socket = PubSocket::create(message_context.context(), name);
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assert(socket);
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sockets_[name] = socket;
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}
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}
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int PubMaster::send(const char *name, MessageBuilder &msg) {
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auto bytes = msg.toBytes();
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return send(name, bytes.begin(), bytes.size());
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}
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PubMaster::~PubMaster() {
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for (auto s : sockets_) delete s.second;
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}
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