Add request, capture, flush to TWIBus
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132322e4d9
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@ -5285,8 +5285,8 @@ inline void gcode_M121() { endstops.enable_globally(false); }
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uint8_t bytes = code_seen('B') ? code_value_byte() : 1;
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if (i2c.addr > 0 && bytes > 0 && bytes <= 32) {
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i2c.reqbytes(bytes);
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if (i2c.addr && bytes && bytes <= TWIBUS_BUFFER_SIZE) {
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i2c.relay(bytes);
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}
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else {
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SERIAL_ERROR_START;
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@ -86,32 +86,72 @@ void TWIBus::send() {
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this->reset();
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}
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void TWIBus::echodata(uint8_t bytes, const char prefix[], uint8_t adr) {
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// static
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void TWIBus::echoprefix(uint8_t bytes, const char prefix[], uint8_t adr) {
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SERIAL_ECHO_START;
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serialprintPGM(prefix);
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SERIAL_ECHOPAIR(": from:", adr);
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SERIAL_ECHOPAIR(" bytes:", bytes);
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SERIAL_ECHOPGM (" data:");
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}
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// static
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void TWIBus::echodata(uint8_t bytes, const char prefix[], uint8_t adr) {
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echoprefix(bytes, prefix, adr);
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while (bytes-- && Wire.available()) SERIAL_CHAR(Wire.read());
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SERIAL_EOL;
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}
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void TWIBus::reqbytes(const uint8_t bytes) {
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if (!this->addr) return;
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void TWIBus::echobuffer(const char prefix[], uint8_t adr) {
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echoprefix(this->buffer_s, prefix, adr);
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for (uint8_t i = 0; i < this->buffer_s; i++) SERIAL_CHAR(this->buffer[i]);
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SERIAL_EOL;
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}
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bool TWIBus::request(const uint8_t bytes) {
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if (!this->addr) return false;
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#if ENABLED(DEBUG_TWIBUS)
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debug(PSTR("reqbytes"), bytes);
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debug(PSTR("request"), bytes);
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#endif
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// requestFrom() is a blocking function
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Wire.requestFrom(this->addr, bytes);
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// Wait until all bytes arrive, or timeout
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// Wait for all bytes to arrive
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millis_t t = millis() + this->timeout;
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while (Wire.available() < bytes && PENDING(millis(), t)) { /*nada*/ }
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while (Wire.available() < bytes)
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if (ELAPSED(millis(), t)) {
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#if ENABLED(DEBUG_TWIBUS)
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SERIAL_ECHO_START;
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SERIAL_ECHOLNPGM("i2c timeout");
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#endif
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return false;
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}
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// Simply echo the data to the bus
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this->echodata(bytes, PSTR("i2c-reply"), this->addr);
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return true;
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}
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void TWIBus::relay(const uint8_t bytes) {
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#if ENABLED(DEBUG_TWIBUS)
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debug(PSTR("relay"), bytes);
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#endif
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if (this->request(bytes))
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echodata(bytes, PSTR("i2c-reply"), this->addr);
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}
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uint8_t TWIBus::capture(char *dst, const uint8_t bytes) {
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this->reset();
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uint8_t count = 0;
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while (count < bytes && Wire.available())
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dst[count++] = Wire.read();
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return count;
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}
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// static
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void TWIBus::flush() {
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while (Wire.available()) Wire.read();
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}
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#if I2C_SLAVE_ADDRESS > 0
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@ -120,7 +160,7 @@ void TWIBus::reqbytes(const uint8_t bytes) {
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#if ENABLED(DEBUG_TWIBUS)
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debug(PSTR("receive"), bytes);
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#endif
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this->echodata(bytes, PSTR("i2c-receive"), 0);
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echodata(bytes, PSTR("i2c-receive"), 0);
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}
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void TWIBus::reply(char str[]/*=NULL*/) {
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@ -142,6 +182,7 @@ void TWIBus::reqbytes(const uint8_t bytes) {
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#if ENABLED(DEBUG_TWIBUS)
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// static
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void TWIBus::prefix(const char func[]) {
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SERIAL_ECHOPGM("TWIBus::");
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serialprintPGM(func);
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@ -33,6 +33,8 @@
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typedef void (*twiReceiveFunc_t)(int bytes);
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typedef void (*twiRequestFunc_t)();
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#define TWIBUS_BUFFER_SIZE 32
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/**
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* TWIBUS class
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*
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@ -70,7 +72,7 @@ class TWIBus {
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* @brief Internal buffer
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* @details A fixed buffer. TWI commands can be no longer than this.
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*/
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char buffer[32];
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char buffer[TWIBUS_BUFFER_SIZE];
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public:
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@ -134,6 +136,14 @@ class TWIBus {
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*/
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void address(const uint8_t adr);
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/**
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* @brief Prefix for echo to serial
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* @details Echo a label, length, address, and "data:"
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*
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* @param bytes the number of bytes to request
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*/
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static void echoprefix(uint8_t bytes, const char prefix[], uint8_t adr);
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/**
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* @brief Echo data on the bus to serial
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* @details Echo some number of bytes from the bus
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@ -144,14 +154,48 @@ class TWIBus {
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static void echodata(uint8_t bytes, const char prefix[], uint8_t adr);
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/**
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* @brief Request data from the slave device
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* @details Request a number of bytes from a slave device.
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* This implementation simply sends the data to serial
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* in a parser-friendly format.
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* @brief Echo data in the buffer to serial
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* @details Echo the entire buffer to serial
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* to serial in a parser-friendly format.
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*
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* @param bytes the number of bytes to request
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*/
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void reqbytes(const uint8_t bytes);
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void echobuffer(const char prefix[], uint8_t adr);
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/**
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* @brief Request data from the slave device and wait.
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* @details Request a number of bytes from a slave device.
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* Wait for the data to arrive until the timeout
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* interval expires. Return true on success.
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*
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* @param bytes the number of bytes to request
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* @return status of the request: true=success, false=timeout
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*/
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bool request(const uint8_t bytes);
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/**
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* @brief Capture data from the bus into the buffer.
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* @details Capture data after a request has succeeded.
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*
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* @param bytes the number of bytes to request
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* @return the number of bytes captured to the buffer
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*/
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uint8_t capture(char *dst, const uint8_t bytes);
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/**
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* @brief Flush the i2c bus.
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* @details Get all bytes on the bus and throw them away.
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*/
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static void flush();
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/**
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* @brief Request data from the slave device, echo to serial.
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* @details Request a number of bytes from a slave device and output
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* the returned data to serial in a parser-friendly format.
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*
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* @param bytes the number of bytes to request
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*/
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void relay(const uint8_t bytes);
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#if I2C_SLAVE_ADDRESS > 0
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@ -181,6 +225,7 @@ class TWIBus {
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/**
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* @brief Send a reply to the bus
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* @details Send the buffer and clear it.
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* If a string is passed, write it into the buffer first.
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*/
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void reply(char str[]=NULL);
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inline void reply(const char str[]) { this->reply((char*)str); }
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