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Merge commit '1ad74' into ide-1.5.x
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commit
710e4fb7b8
@ -83,7 +83,7 @@ void HardwareSerial::_tx_udr_empty_irq(void)
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// If interrupts are enabled, there must be more data in the output
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// buffer. Send the next byte
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unsigned char c = _tx_buffer[_tx_buffer_tail];
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_tx_buffer_tail = (_tx_buffer_tail + 1) % SERIAL_BUFFER_SIZE;
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_tx_buffer_tail = (_tx_buffer_tail + 1) % SERIAL_TX_BUFFER_SIZE;
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*_udr = c;
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@ -152,7 +152,7 @@ void HardwareSerial::end()
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int HardwareSerial::available(void)
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{
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return (unsigned int)(SERIAL_BUFFER_SIZE + _rx_buffer_head - _rx_buffer_tail) % SERIAL_BUFFER_SIZE;
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return (unsigned int)(SERIAL_RX_BUFFER_SIZE + _rx_buffer_head - _rx_buffer_tail) % SERIAL_RX_BUFFER_SIZE;
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}
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int HardwareSerial::peek(void)
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@ -171,7 +171,7 @@ int HardwareSerial::read(void)
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return -1;
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} else {
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unsigned char c = _rx_buffer[_rx_buffer_tail];
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_rx_buffer_tail = (uint8_t)(_rx_buffer_tail + 1) % SERIAL_BUFFER_SIZE;
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_rx_buffer_tail = (rx_buffer_index_t)(_rx_buffer_tail + 1) % SERIAL_RX_BUFFER_SIZE;
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return c;
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}
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}
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@ -207,7 +207,7 @@ size_t HardwareSerial::write(uint8_t c)
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sbi(*_ucsra, TXC0);
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return 1;
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}
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uint8_t i = (_tx_buffer_head + 1) % SERIAL_BUFFER_SIZE;
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tx_buffer_index_t i = (_tx_buffer_head + 1) % SERIAL_TX_BUFFER_SIZE;
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// If the output buffer is full, there's nothing for it other than to
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// wait for the interrupt handler to empty it a bit
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@ -32,10 +32,24 @@
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// using a ring buffer (I think), in which head is the index of the location
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// to which to write the next incoming character and tail is the index of the
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// location from which to read.
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#if !(defined(SERIAL_TX_BUFFER_SIZE) && defined(SERIAL_RX_BUFFER_SIZE))
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#if (RAMEND < 1000)
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#define SERIAL_BUFFER_SIZE 16
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#define SERIAL_TX_BUFFER_SIZE 16
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#define SERIAL_RX_BUFFER_SIZE 16
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#else
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#define SERIAL_BUFFER_SIZE 64
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#define SERIAL_TX_BUFFER_SIZE 64
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#define SERIAL_RX_BUFFER_SIZE 64
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#endif
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#endif
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#if (SERIAL_TX_BUFFER_SIZE>256)
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typedef uint16_t tx_buffer_index_t;
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#else
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typedef uint8_t tx_buffer_index_t;
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#endif
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#if (SERIAL_RX_BUFFER_SIZE>256)
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typedef uint16_t rx_buffer_index_t;
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#else
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typedef uint8_t rx_buffer_index_t;
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#endif
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// Define config for Serial.begin(baud, config);
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@ -76,16 +90,16 @@ class HardwareSerial : public Stream
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// Has any byte been written to the UART since begin()
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bool _written;
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volatile uint8_t _rx_buffer_head;
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volatile uint8_t _rx_buffer_tail;
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volatile uint8_t _tx_buffer_head;
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volatile uint8_t _tx_buffer_tail;
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volatile rx_buffer_index_t _rx_buffer_head;
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volatile rx_buffer_index_t _rx_buffer_tail;
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volatile tx_buffer_index_t _tx_buffer_head;
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volatile tx_buffer_index_t _tx_buffer_tail;
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// Don't put any members after these buffers, since only the first
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// 32 bytes of this struct can be accessed quickly using the ldd
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// instruction.
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unsigned char _rx_buffer[SERIAL_BUFFER_SIZE];
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unsigned char _tx_buffer[SERIAL_BUFFER_SIZE];
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unsigned char _rx_buffer[SERIAL_RX_BUFFER_SIZE];
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unsigned char _tx_buffer[SERIAL_TX_BUFFER_SIZE];
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public:
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inline HardwareSerial(
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@ -99,7 +99,7 @@ void HardwareSerial::_rx_complete_irq(void)
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// No Parity error, read byte and store it in the buffer if there is
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// room
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unsigned char c = *_udr;
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uint8_t i = (unsigned int)(_rx_buffer_head + 1) % SERIAL_BUFFER_SIZE;
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rx_buffer_index_t i = (unsigned int)(_rx_buffer_head + 1) % SERIAL_RX_BUFFER_SIZE;
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// if we should be storing the received character into the location
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// just before the tail (meaning that the head would advance to the
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