forked from M-Labs/zynq-rs
uart: add more channel_sts flags, wait for tx_fifo_empty() before sending
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673d585d2f
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@ -146,10 +146,16 @@ impl Uart {
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pub fn tx_fifo_full(&self) -> bool {
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pub fn tx_fifo_full(&self) -> bool {
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self.regs.channel_sts.read().txfull()
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self.regs.channel_sts.read().txfull()
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}
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}
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pub fn tx_fifo_empty(&self) -> bool {
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self.regs.channel_sts.read().txempty()
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}
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}
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}
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impl fmt::Write for Uart {
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impl fmt::Write for Uart {
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fn write_str(&mut self, s: &str) -> Result<(), fmt::Error> {
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fn write_str(&mut self, s: &str) -> Result<(), fmt::Error> {
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while !self.tx_fifo_empty() {}
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for b in s.bytes() {
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for b in s.bytes() {
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self.write_byte(b);
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self.write_byte(b);
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}
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}
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@ -74,7 +74,26 @@ register!(baud_rate_gen, BaudRateGen, RW, u32);
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register_bits!(baud_rate_gen, cd, u16, 0, 15);
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register_bits!(baud_rate_gen, cd, u16, 0, 15);
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register!(channel_sts, ChannelSts, RO, u32);
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register!(channel_sts, ChannelSts, RO, u32);
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/// Transmitter FIFO Nearly Full
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register_bit!(channel_sts, tnful, 14);
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/// Tx FIFO fill level is greater than or equal to TTRIG?
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register_bit!(channel_sts, ttrig, 13);
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/// Rx FIFO fill level is greater than or equal to FDEL?
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register_bit!(channel_sts, flowdel, 12);
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/// Transmitter state machine active?
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register_bit!(channel_sts, tactive, 11);
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/// Receiver state machine active?
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register_bit!(channel_sts, ractive, 10);
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/// Tx FIFO is full?
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register_bit!(channel_sts, txfull, 4);
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register_bit!(channel_sts, txfull, 4);
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/// Tx FIFO is empty?
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register_bit!(channel_sts, txempty, 3);
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/// Rx FIFO is full?
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register_bit!(channel_sts, rxfull, 2);
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/// Rx FIFO is empty?
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register_bit!(channel_sts, rxempty, 1);
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/// Rx FIFO fill level is greater than or equal to RTRIG?
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register_bit!(channel_sts, rxovr, 0);
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register!(tx_rx_fifo, TxRxFifo, RW, u32);
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register!(tx_rx_fifo, TxRxFifo, RW, u32);
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register_bits!(tx_rx_fifo, data, u32, 0, 31);
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register_bits!(tx_rx_fifo, data, u32, 0, 31);
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