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esphome/esphome/components/serial_proxy/serial_proxy.cpp
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#include "serial_proxy.h"
#ifdef USE_SERIAL_PROXY
#include "esphome/core/log.h"
#include <cinttypes>
#include "esphome/core/util.h"
#ifdef USE_API
#include "esphome/components/api/api_connection.h"
#include "esphome/components/api/api_server.h"
#endif
namespace esphome::serial_proxy {
static const char *const TAG = "serial_proxy";
void SerialProxy::setup() {
// Set up modem control pins if configured
if (this->rts_pin_ != nullptr) {
this->rts_pin_->setup();
this->rts_pin_->digital_write(this->rts_state_);
}
if (this->dtr_pin_ != nullptr) {
this->dtr_pin_->setup();
this->dtr_pin_->digital_write(this->dtr_state_);
}
#ifdef USE_API
// instance_index_ is fixed at registration time; pre-set it so loop() only needs to update data
this->outgoing_msg_.instance = this->instance_index_;
#endif
#ifdef USE_SERIAL_PROXY_TAP
// A tap sets itself up before this runs (its setup priority is higher), so it may
// already be waiting on the port -- a boot-time handshake with the device, say. Leaving
// the loop enabled is what lets that finish; without it the tap would stall until a
// client happened to subscribe.
if (this->tap_ != nullptr && this->tap_->tap_needs_port()) {
return;
}
#endif
// No subscriber at startup; disable loop until a client subscribes
this->disable_loop();
}
#ifdef USE_SERIAL_PROXY_TAP
void SerialProxy::reset_mode_() {
// The mode belongs to a session, not to the port. Carrying a departed client's choice
// over to the next one would inject protocol bytes into a stream that never asked for
// them -- a firmware upload, or any client built before this request existed and so
// unable to turn it off. Guessing RAW is the safe direction: a client that wanted
// protocol handling and did not ask for it merely sends its own acknowledgements.
if (this->mode_ == api::enums::SERIAL_PROXY_MODE_RAW) {
return;
}
ESP_LOGD(TAG, "Session ended, returning serial proxy [%" PRIu32 "] to RAW mode", this->instance_index_);
this->mode_ = api::enums::SERIAL_PROXY_MODE_RAW;
}
#endif
void SerialProxy::loop() {
#ifdef USE_API
// Detect subscriber disconnect
if (this->api_connection_ != nullptr && (this->api_connection_->is_marked_for_removal() ||
!this->api_connection_->is_connection_setup() || !api_is_connected())) {
ESP_LOGW(TAG, "Subscriber disconnected");
this->api_connection_ = nullptr;
this->reset_mode_();
}
// With no subscriber there is normally nothing to do, but a tap may still need the port
// read -- it does its protocol work precisely while nobody else is listening.
if (this->api_connection_ == nullptr) [[unlikely]] {
#ifdef USE_SERIAL_PROXY_TAP
if (this->tap_ == nullptr || !this->tap_->tap_needs_port()) {
this->disable_loop();
return;
}
#else
this->disable_loop();
return;
#endif
}
// Read available data from UART and forward to subscribed client
size_t available = this->available();
if (available == 0)
return;
this->read_and_send_(available);
#endif
}
#ifdef USE_API
void __attribute__((noinline)) SerialProxy::read_and_send_(size_t available) {
// Read in chunks up to SERIAL_PROXY_MAX_READ_SIZE
uint8_t buffer[SERIAL_PROXY_MAX_READ_SIZE];
size_t to_read = std::min(available, sizeof(buffer));
if (!this->read_array(buffer, to_read))
return;
#ifdef USE_SERIAL_PROXY_TAP
// Before forwarding, so a tap that answers the device (an acknowledgement, say) is not
// waiting on the network round trip to a subscriber that may not even exist.
if (this->tap_observing_()) {
this->tap_->on_device_rx(buffer, to_read);
}
#endif
if (this->api_connection_ == nullptr) {
return;
}
this->outgoing_msg_.set_data(buffer, to_read);
this->api_connection_->send_serial_proxy_data(this->outgoing_msg_);
}
#endif
#ifdef USE_SERIAL_PROXY_TAP
bool SerialProxy::tap_observing_() const {
if (this->tap_ == nullptr) {
return false;
}
// With no subscriber, a tap doing its own protocol work (the boot-time handshake with
// the device, say) is served regardless of mode -- nobody has chosen one yet. Once a
// subscriber holds the port, the mode alone decides, so RAW stays inert.
if (this->api_connection_ == nullptr && this->tap_->tap_needs_port()) {
return true;
}
// Otherwise the mode decides. RAW must be inert: a client that flips to RAW before
// flashing firmware is entitled to a byte pipe with nothing injecting protocol bytes
// into it, and "the tap turned out not to recognise the stream" is not good enough.
return this->mode_ == api::enums::SERIAL_PROXY_MODE_PROTOCOL;
}
void SerialProxy::tap_pump() {
#ifdef USE_API
// Nothing would consume the bytes; leave them in the FIFO
if (!this->tap_observing_() && this->api_connection_ == nullptr) {
return;
}
const size_t available = this->available();
if (available > 0) {
this->read_and_send_(available);
}
#endif
}
#endif
void SerialProxy::dump_config() {
ESP_LOGCONFIG(TAG,
"Serial Proxy [%" PRIu32 "]:\n"
" Name: %s\n"
" Port Type: %s\n"
" RTS Pin: %s\n"
" DTR Pin: %s",
this->instance_index_, this->name_ != nullptr ? this->name_ : "",
this->port_type_ == api::enums::SERIAL_PROXY_PORT_TYPE_RS485 ? LOG_STR_LITERAL("RS485")
: this->port_type_ == api::enums::SERIAL_PROXY_PORT_TYPE_RS232 ? LOG_STR_LITERAL("RS232")
: LOG_STR_LITERAL("TTL"),
this->rts_pin_ != nullptr ? LOG_STR_LITERAL("configured") : LOG_STR_LITERAL("not configured"),
this->dtr_pin_ != nullptr ? LOG_STR_LITERAL("configured") : LOG_STR_LITERAL("not configured"));
}
SerialProxyResult SerialProxy::configure(api::APIConnection *api_connection, uint32_t baudrate, bool flow_control,
uint8_t parity, uint8_t stop_bits, uint8_t data_size) {
#ifdef USE_API
if (!this->is_subscriber_(api_connection)) {
ESP_LOGW(TAG, "Ignoring configure request from client without port subscription [%" PRIu32 "]",
this->instance_index_);
return SerialProxyResult::SERIAL_PROXY_RESULT_PORT_IN_USE;
}
#endif
ESP_LOGD(TAG,
"Configuring serial proxy [%" PRIu32 "]: baud=%" PRIu32 ", flow_ctrl=%s, parity=%" PRIu8 ", stop=%" PRIu8
", data=%" PRIu8,
this->instance_index_, baudrate, YESNO(flow_control), parity, stop_bits, data_size);
auto *uart_comp = this->parent_;
if (uart_comp == nullptr) {
ESP_LOGE(TAG, "UART component not available");
return SerialProxyResult::SERIAL_PROXY_RESULT_ERROR;
}
// Validate all parameters before applying any (values come from a remote client)
if (baudrate == 0) {
ESP_LOGW(TAG, "Invalid baud rate: 0");
return SerialProxyResult::SERIAL_PROXY_RESULT_INVALID_ARGUMENT;
}
if (stop_bits < 1 || stop_bits > 2) {
ESP_LOGW(TAG, "Invalid stop bits: %u (must be 1 or 2)", stop_bits);
return SerialProxyResult::SERIAL_PROXY_RESULT_INVALID_ARGUMENT;
}
if (data_size < 5 || data_size > 8) {
ESP_LOGW(TAG, "Invalid data bits: %u (must be 5-8)", data_size);
return SerialProxyResult::SERIAL_PROXY_RESULT_INVALID_ARGUMENT;
}
if (parity > 2) {
ESP_LOGW(TAG, "Invalid parity: %u (must be 0-2)", parity);
return SerialProxyResult::SERIAL_PROXY_RESULT_INVALID_ARGUMENT;
}
if (flow_control) {
ESP_LOGW(TAG, "Hardware flow control requested but is not yet supported");
return SerialProxyResult::SERIAL_PROXY_RESULT_NOT_SUPPORTED;
}
// Skip a no-op reconfigure. Clients routinely re-send identical settings on every
// port open, and on a USB UART each apply is a CDC SET_LINE_CODING control transfer.
// Some bridges watch line-coding changes as a signalling channel (a magic baud
// sequence to enter a bootloader, say), so redundant applies are not harmless.
static const uart::UARTParityOptions PARITY_MAP[] = {
uart::UART_CONFIG_PARITY_NONE,
uart::UART_CONFIG_PARITY_EVEN,
uart::UART_CONFIG_PARITY_ODD,
};
if (uart_comp->get_baud_rate() == baudrate && uart_comp->get_stop_bits() == stop_bits &&
uart_comp->get_data_bits() == data_size && uart_comp->get_parity() == PARITY_MAP[parity]) {
ESP_LOGV(TAG, "Settings unchanged, skipping reconfigure [%" PRIu32 "]", this->instance_index_);
return SerialProxyResult::SERIAL_PROXY_RESULT_OK;
}
// Apply validated parameters
uart_comp->set_baud_rate(baudrate);
uart_comp->set_stop_bits(stop_bits);
uart_comp->set_data_bits(data_size);
uart_comp->set_parity(PARITY_MAP[parity]);
// load_settings() is available on ESP8266 and ESP32 platforms
#if defined(USE_ESP8266) || defined(USE_ESP32)
uart_comp->load_settings(true);
#endif
return SerialProxyResult::SERIAL_PROXY_RESULT_OK;
}
SerialProxyResult SerialProxy::set_mode_from_client(api::APIConnection *api_connection,
api::enums::SerialProxyMode mode) {
#ifdef USE_API
// Only the live subscriber may change the mode, so the mode cannot outlive a session
if (!this->is_subscriber_(api_connection)) {
ESP_LOGW(TAG, "Ignoring mode request from client without port subscription [%" PRIu32 "]", this->instance_index_);
return SerialProxyResult::SERIAL_PROXY_RESULT_PORT_IN_USE;
}
#endif
// Values come from a remote client
if (mode != api::enums::SERIAL_PROXY_MODE_RAW && mode != api::enums::SERIAL_PROXY_MODE_PROTOCOL) {
ESP_LOGW(TAG, "Invalid mode: %" PRIu32, static_cast<uint32_t>(mode));
return SerialProxyResult::SERIAL_PROXY_RESULT_INVALID_ARGUMENT;
}
// PROTOCOL on a port with no tap would be a silent no-op; refuse so the client knows
#ifdef USE_SERIAL_PROXY_TAP
const bool has_tap = this->tap_ != nullptr;
#else
const bool has_tap = false;
#endif
if (mode == api::enums::SERIAL_PROXY_MODE_PROTOCOL && !has_tap) {
ESP_LOGW(TAG, "No tap on serial proxy [%" PRIu32 "]; PROTOCOL mode unavailable", this->instance_index_);
return SerialProxyResult::SERIAL_PROXY_RESULT_NOT_SUPPORTED;
}
ESP_LOGD(TAG, "Serial proxy [%" PRIu32 "] mode set to %s", this->instance_index_,
mode == api::enums::SERIAL_PROXY_MODE_PROTOCOL ? LOG_STR_LITERAL("PROTOCOL") : LOG_STR_LITERAL("RAW"));
#ifdef USE_SERIAL_PROXY_TAP
const bool leaving_protocol_mode =
this->mode_ != api::enums::SERIAL_PROXY_MODE_RAW && mode == api::enums::SERIAL_PROXY_MODE_RAW;
this->mode_ = mode;
// Only for an explicit client request, not for reset_mode_() at the end of a session:
// an ordinary disconnect says nothing about the device, whereas a client deliberately
// asking for raw bytes usually precedes changing what the device is.
if (leaving_protocol_mode && this->tap_ != nullptr) {
this->tap_->on_protocol_disabled();
}
#endif
return SerialProxyResult::SERIAL_PROXY_RESULT_OK;
}
void SerialProxy::write_from_client(api::APIConnection *api_connection, const uint8_t *data, size_t len) {
#ifdef USE_API
// Bytes from anyone but the live subscriber would interleave with the subscriber's
// traffic -- or with an active tap's -- on the wire
if (!this->is_subscriber_(api_connection)) {
if (this->api_connection_ != nullptr) {
ESP_LOGW(TAG, "Ignoring write from client that does not hold serial proxy [%" PRIu32 "]", this->instance_index_);
} else {
// A legacy client streaming writes without subscribing would flood WARN, one per
// request; writes are the only high-rate, unacknowledged operation, so keep this
// visible without drowning the log
ESP_LOGV(TAG, "Ignoring write from client without port subscription [%" PRIu32 "]", this->instance_index_);
}
return;
}
#endif
if (data == nullptr || len == 0)
return;
this->write_array(data, len);
#ifdef USE_SERIAL_PROXY_TAP
// After the write, so the tap observes the same ordering the device does
if (this->tap_observing_()) {
this->tap_->on_client_tx(data, len);
}
#endif
}
SerialProxyResult SerialProxy::set_modem_pins(api::APIConnection *api_connection, uint32_t line_states) {
#ifdef USE_API
if (!this->is_subscriber_(api_connection)) {
ESP_LOGW(TAG, "Ignoring modem pin request from client without port subscription [%" PRIu32 "]",
this->instance_index_);
return SerialProxyResult::SERIAL_PROXY_RESULT_PORT_IN_USE;
}
#endif
// Asserting a pin that is not configured must fail so the client learns the signal never
// reached the wire; deasserting an absent pin is harmless and stays allowed. Clients can
// avoid this by masking against SerialProxyInfo.configured_line_states.
if ((line_states & ~this->get_configured_modem_pins()) != 0) {
ESP_LOGW(TAG, "Requested modem pin not configured on serial proxy [%" PRIu32 "]", this->instance_index_);
return SerialProxyResult::SERIAL_PROXY_RESULT_NOT_SUPPORTED;
}
const bool rts = (line_states & SERIAL_PROXY_LINE_STATE_FLAG_RTS) != 0;
const bool dtr = (line_states & SERIAL_PROXY_LINE_STATE_FLAG_DTR) != 0;
ESP_LOGV(TAG, "Setting modem pins [%" PRIu32 "]: RTS=%s, DTR=%s", this->instance_index_, ONOFF(rts), ONOFF(dtr));
if (this->rts_pin_ != nullptr) {
this->rts_state_ = rts;
this->rts_pin_->digital_write(rts);
}
if (this->dtr_pin_ != nullptr) {
this->dtr_state_ = dtr;
this->dtr_pin_->digital_write(dtr);
}
return SerialProxyResult::SERIAL_PROXY_RESULT_OK;
}
uint32_t SerialProxy::get_modem_pins() const {
return (this->rts_state_ ? static_cast<uint32_t>(SERIAL_PROXY_LINE_STATE_FLAG_RTS) : 0u) |
(this->dtr_state_ ? static_cast<uint32_t>(SERIAL_PROXY_LINE_STATE_FLAG_DTR) : 0u);
}
SerialProxyResult SerialProxy::flush_port(api::APIConnection *api_connection) {
#ifdef USE_API
// Flushing stalls the port, so it gets the same ownership check as writes
if (!this->is_subscriber_(api_connection)) {
ESP_LOGW(TAG, "Ignoring flush from client without port subscription [%" PRIu32 "]", this->instance_index_);
return SerialProxyResult::SERIAL_PROXY_RESULT_PORT_IN_USE;
}
#endif
ESP_LOGV(TAG, "Flushing serial proxy [%" PRIu32 "]", this->instance_index_);
switch (this->flush()) {
case uart::UARTFlushResult::UART_FLUSH_RESULT_SUCCESS:
return SerialProxyResult::SERIAL_PROXY_RESULT_OK;
case uart::UARTFlushResult::UART_FLUSH_RESULT_ASSUMED_SUCCESS:
return SerialProxyResult::SERIAL_PROXY_RESULT_ASSUMED_SUCCESS;
case uart::UARTFlushResult::UART_FLUSH_RESULT_TIMEOUT:
return SerialProxyResult::SERIAL_PROXY_RESULT_TIMEOUT;
case uart::UARTFlushResult::UART_FLUSH_RESULT_FAILED:
return SerialProxyResult::SERIAL_PROXY_RESULT_ERROR;
}
return SerialProxyResult::SERIAL_PROXY_RESULT_ERROR; // Unreachable; all enum values handled above
}
#ifdef USE_API
SerialProxyResult SerialProxy::serial_proxy_request(api::APIConnection *api_connection,
api::enums::SerialProxyRequestType type) {
switch (type) {
case api::enums::SERIAL_PROXY_REQUEST_TYPE_SUBSCRIBE:
if (this->api_connection_ == api_connection) {
ESP_LOGV(TAG, "API connection is already subscribed to serial proxy [%" PRIu32 "]", this->instance_index_);
return SerialProxyResult::SERIAL_PROXY_RESULT_OK;
}
if (this->api_connection_ != nullptr) {
// A living subscriber keeps exclusive access. Its connection may be dead without
// loop() having noticed yet (e.g. the client crashed and reconnected quickly);
// in that case let the new client take over instead of locking it out.
if (this->api_connection_->is_connection_setup()) {
ESP_LOGE(TAG, "Only one API subscription is allowed at a time");
return SerialProxyResult::SERIAL_PROXY_RESULT_PORT_IN_USE;
}
ESP_LOGW(TAG, "Previous subscriber disconnected; taking over subscription");
// End the dead client's session before starting the new one, so its mode
// cannot leak into a session that never asked for it
this->api_connection_ = nullptr;
this->reset_mode_();
}
this->api_connection_ = api_connection;
this->enable_loop();
ESP_LOGV(TAG, "API connection subscribed to serial proxy [%" PRIu32 "]", this->instance_index_);
return SerialProxyResult::SERIAL_PROXY_RESULT_OK;
case api::enums::SERIAL_PROXY_REQUEST_TYPE_UNSUBSCRIBE:
// Unsubscribe is idempotent: not being subscribed is not an error
if (this->api_connection_ != api_connection) {
ESP_LOGV(TAG, "API connection is not subscribed to serial proxy [%" PRIu32 "]", this->instance_index_);
return SerialProxyResult::SERIAL_PROXY_RESULT_OK;
}
this->api_connection_ = nullptr;
this->reset_mode_();
#ifdef USE_SERIAL_PROXY_TAP
// Keep the loop alive for a tap that still needs the port (mirrors loop())
if (this->tap_ == nullptr || !this->tap_->tap_needs_port()) {
this->disable_loop();
}
#else
this->disable_loop();
#endif
ESP_LOGV(TAG, "API connection unsubscribed from serial proxy [%" PRIu32 "]", this->instance_index_);
return SerialProxyResult::SERIAL_PROXY_RESULT_OK;
default:
ESP_LOGW(TAG, "Unknown serial proxy request type: %" PRIu32, static_cast<uint32_t>(type));
return SerialProxyResult::SERIAL_PROXY_RESULT_NOT_SUPPORTED;
}
}
#endif
} // namespace esphome::serial_proxy
#endif // USE_SERIAL_PROXY