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Begins trying to receive ACIA data.
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@ -30,8 +30,8 @@ uint8_t ACIA::read(int address) {
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} else {
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LOG("Read status");
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return
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((received_data_ == NoValue) ? 0x00 : 0x01) |
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((next_transmission_ == NoValue) ? 0x02 : 0x00) |
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((received_data_ & NoValueMask) ? 0x00 : 0x01) |
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((next_transmission_ == NoValueMask) ? 0x02 : 0x00) |
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(data_carrier_detect.read() ? 0x04 : 0x00) |
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(clear_to_send.read() ? 0x08 : 0x00) |
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(interrupt_request_ ? 0x80 : 0x00)
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@ -106,7 +106,7 @@ void ACIA::run_for(HalfCycles length) {
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// rather than a 'while' is correct here. It's the responsibilit of the caller
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// to ensure run_for lengths are appropriate for longer sequences.
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if(transmit_advance >= write_data_time_remaining) {
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if(next_transmission_ != NoValue) {
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if(next_transmission_ != NoValueMask) {
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transmit.advance_writer(write_data_time_remaining);
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consider_transmission();
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transmit.advance_writer(transmit_advance - write_data_time_remaining);
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@ -124,7 +124,7 @@ void ACIA::run_for(HalfCycles length) {
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}
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void ACIA::consider_transmission() {
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if(next_transmission_ != NoValue && !transmit.write_data_time_remaining()) {
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if(next_transmission_ != NoValueMask && !transmit.write_data_time_remaining()) {
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// Establish start bit and [7 or 8] data bits.
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if(data_bits_ == 7) next_transmission_ &= 0x7f;
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int transmission = next_transmission_ << 1;
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@ -132,13 +132,7 @@ void ACIA::consider_transmission() {
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// Add a parity bit, if any.
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int mask = 0x2 << data_bits_;
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if(parity_ != Parity::None) {
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next_transmission_ ^= next_transmission_ >> 4;
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next_transmission_ ^= next_transmission_ >> 2;
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next_transmission_ ^= next_transmission_ >> 1;
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if((next_transmission_&1) != (parity_ == Parity::Even)) {
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transmission |= mask;
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}
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transmission |= parity(uint8_t(next_transmission_)) ? mask : 0;
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mask <<= 1;
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}
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@ -149,7 +143,7 @@ void ACIA::consider_transmission() {
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}
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// Output all that.
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const int total_bits = 1 + data_bits_ + stop_bits_ + (parity_ != Parity::None);
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const int total_bits = expected_bits();
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if(!next_transmission_) {
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printf("");
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}
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@ -157,7 +151,7 @@ void ACIA::consider_transmission() {
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printf("Transmitted %02x [%03x]\n", next_transmission_, transmission);
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// Mark the transmit register as empty again.
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next_transmission_ = NoValue;
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next_transmission_ = NoValueMask;
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}
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}
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@ -176,7 +170,31 @@ bool ACIA::get_interrupt_line() const {
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return interrupt_request_;
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}
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bool ACIA::serial_line_did_produce_bit(Serial::Line *line, int bit) {
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// TODO: how does this affect signalling?
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return false;
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int ACIA::expected_bits() {
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return 1 + data_bits_ + stop_bits_ + (parity_ != Parity::None);
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}
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uint8_t ACIA::parity(uint8_t value) {
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value ^= value >> 4;
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value ^= value >> 2;
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value ^= value >> 1;
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return value ^ (parity_ == Parity::Even);
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}
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bool ACIA::serial_line_did_produce_bit(Serial::Line *line, int bit) {
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// Shift this bit into the 11-bit input register; this is big enough to hold
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// the largest transmission symbol.
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++bits_received_;
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bits_incoming_ = (bits_incoming_ >> 1) | (bit << 11);
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printf("i: %d\n", bit);
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// If that's the now-expected number of bits, update.
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const int bit_target = expected_bits();
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if(bits_received_ == bit_target) {
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received_data_ = uint8_t(bits_incoming_ >> (12 - bit_target));
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printf("r: %02x\n", received_data_);
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return false;
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}
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return true;
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}
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@ -72,11 +72,16 @@ class ACIA: public ClockingHint::Source, private Serial::Line::ReadDelegate {
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} parity_ = Parity::None;
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int data_bits_ = 7, stop_bits_ = 2;
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static const int NoValue = 0x100;
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int next_transmission_ = NoValue;
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int received_data_ = NoValue;
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static const int NoValueMask = 0x100;
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int next_transmission_ = NoValueMask;
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int received_data_ = NoValueMask;
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int bits_received_ = 0;
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int bits_incoming_ = 0;
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void consider_transmission();
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int expected_bits();
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uint8_t parity(uint8_t value);
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bool receive_interrupt_enabled_ = false;
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bool transmit_interrupt_enabled_ = false;
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