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android_usb_serial/drivers/
ch34x.rs

1//! WCH CH34x driver.
2
3use super::{Driver, EndpointPair, ModemStatus, WRITE_TIMEOUT_MS};
4use crate::config::{DataBits, FlowControl, LineConfig, Parity, PurgeKind, StopBits};
5use crate::error::{Result, UsbSerialError};
6use crate::reader::SerialReader;
7use crate::transport::{ControlRequest, SharedTransport};
8
9const LCR_ENABLE_RX: u16 = 0x80;
10const LCR_ENABLE_TX: u16 = 0x40;
11const LCR_MARK_SPACE: u16 = 0x20;
12const LCR_PAR_EVEN: u16 = 0x10;
13const LCR_ENABLE_PAR: u16 = 0x08;
14const LCR_STOP_BITS_2: u16 = 0x04;
15const LCR_CS8: u16 = 0x03;
16const LCR_CS7: u16 = 0x02;
17const LCR_CS6: u16 = 0x01;
18const LCR_CS5: u16 = 0x00;
19
20const GCL_CTS: u8 = 0x01;
21const GCL_DSR: u8 = 0x02;
22const GCL_RI: u8 = 0x04;
23const GCL_CD: u8 = 0x08;
24const SCL_DTR: u16 = 0x20;
25const SCL_RTS: u16 = 0x40;
26
27const DEFAULT_BAUD_RATE: u32 = 9600;
28
29pub struct Ch34xDriver {
30    #[allow(dead_code)]
31    port_index: usize,
32    iface: u8,
33    dtr: bool,
34    rts: bool,
35    endpoints: Option<EndpointPair>,
36    transport: Option<SharedTransport>,
37    reader: Option<SerialReader>,
38}
39
40impl Ch34xDriver {
41    pub fn new(port_index: usize) -> Self {
42        Self {
43            port_index,
44            iface: 0,
45            dtr: false,
46            rts: false,
47            endpoints: None,
48            transport: None,
49            reader: None,
50        }
51    }
52
53    fn vendor_out(&self, request: u8, value: u16, index: u16) -> Result<()> {
54        self.transport
55            .as_ref()
56            .unwrap()
57            .control_out(&ControlRequest {
58                request_type: 0x40,
59                request,
60                value,
61                index,
62                data: vec![],
63                timeout_ms: WRITE_TIMEOUT_MS,
64            })
65            .map(|_| ())
66    }
67
68    fn vendor_in(&self, request: u8, value: u16, index: u16, len: usize) -> Result<Vec<u8>> {
69        self.transport
70            .as_ref()
71            .unwrap()
72            .control_in(&ControlRequest::vendor_in(request, value, index, len))
73    }
74
75    fn check_state(&self, request: u8, value: u16, expected: &[Option<u8>]) -> Result<()> {
76        let buf = self.vendor_in(request, value, 0, expected.len())?;
77        if buf.len() != expected.len() {
78            return Err(UsbSerialError::Io(format!(
79                "checkState: expected {} bytes, got {}",
80                expected.len(),
81                buf.len()
82            )));
83        }
84        for (i, exp) in expected.iter().enumerate() {
85            if let Some(want) = exp {
86                if buf[i] != *want {
87                    return Err(UsbSerialError::Io(format!(
88                        "checkState byte[{i}]: expected 0x{want:02x}, got 0x{:02x}",
89                        buf[i]
90                    )));
91                }
92            }
93        }
94        Ok(())
95    }
96
97    fn get_status(&self) -> Result<u8> {
98        let buf = self.vendor_in(0x95, 0x0706, 0, 2)?;
99        Ok(buf[0])
100    }
101}
102
103impl Driver for Ch34xDriver {
104    fn open(&mut self, transport: &SharedTransport) -> Result<()> {
105        self.transport = Some(transport.clone());
106        for iface in transport.interfaces() {
107            transport.claim_interface(iface.id)?;
108        }
109        self.iface = transport.interfaces().last().map(|i| i.id).unwrap_or(0);
110        self.endpoints = Some(EndpointPair::open(transport, self.iface)?);
111        self.initialize()?;
112        self.set_baud(DEFAULT_BAUD_RATE)?;
113        Ok(())
114    }
115
116    fn close(&mut self) -> Result<()> {
117        if let Some(mut r) = self.reader.take() {
118            r.stop();
119        }
120        if let Some(t) = &self.transport {
121            for iface in t.interfaces() {
122                let _ = t.release_interface(iface.id);
123            }
124        }
125        self.endpoints = None;
126        Ok(())
127    }
128
129    fn write(&mut self, data: &[u8]) -> Result<usize> {
130        let t = self.transport.as_ref().unwrap();
131        self.endpoints.as_mut().unwrap().write(t, data)
132    }
133
134    fn read(&mut self, buf: &mut [u8]) -> Result<usize> {
135        if let Some(reader) = &mut self.reader {
136            return reader.try_read(buf);
137        }
138        Ok(0)
139    }
140
141    fn set_line_config(&mut self, cfg: LineConfig) -> Result<()> {
142        if cfg.baud_rate == 0 {
143            return Err(UsbSerialError::Unsupported("invalid baud rate".into()));
144        }
145        self.set_baud(cfg.baud_rate)?;
146
147        let mut lcr = LCR_ENABLE_RX | LCR_ENABLE_TX;
148        lcr |= match cfg.data_bits {
149            DataBits::Five => LCR_CS5,
150            DataBits::Six => LCR_CS6,
151            DataBits::Seven => LCR_CS7,
152            DataBits::Eight => LCR_CS8,
153        };
154        if cfg.stop_bits == StopBits::Two {
155            lcr |= LCR_STOP_BITS_2;
156        } else if cfg.stop_bits == StopBits::OnePointFive {
157            return Err(UsbSerialError::Unsupported("stop bits 1.5".into()));
158        }
159        lcr |= match cfg.parity {
160            Parity::None => 0,
161            Parity::Odd => LCR_ENABLE_PAR,
162            Parity::Even => LCR_ENABLE_PAR | LCR_PAR_EVEN,
163            Parity::Mark => LCR_ENABLE_PAR | LCR_MARK_SPACE,
164            Parity::Space => LCR_ENABLE_PAR | LCR_MARK_SPACE | LCR_PAR_EVEN,
165        };
166        self.vendor_out(0x9A, 0x2518, lcr)
167    }
168
169    fn set_flow_control(&mut self, flow: FlowControl) -> Result<()> {
170        if flow == FlowControl::None {
171            Ok(())
172        } else {
173            Err(UsbSerialError::Unsupported("flow control".into()))
174        }
175    }
176
177    fn set_dtr(&mut self, value: bool) -> Result<()> {
178        self.dtr = value;
179        self.set_control_lines()
180    }
181
182    fn set_rts(&mut self, value: bool) -> Result<()> {
183        self.rts = value;
184        self.set_control_lines()
185    }
186
187    fn set_break(&mut self, enabled: bool) -> Result<()> {
188        let mut req = self.vendor_in(0x95, 0x1805, 0, 2)?;
189        if enabled {
190            req[0] &= !1;
191            req[1] &= !0x40;
192        } else {
193            req[0] |= 1;
194            req[1] |= 0x40;
195        }
196        let val = ((req[1] as u16) << 8) | (req[0] as u16);
197        self.vendor_out(0x9A, 0x1805, val)
198    }
199
200    fn purge(&mut self, _kind: PurgeKind) -> Result<()> {
201        Ok(())
202    }
203
204    fn modem_status(&mut self) -> Result<ModemStatus> {
205        let status = self.get_status()?;
206        Ok(ModemStatus {
207            cts: (status & GCL_CTS) == 0,
208            dsr: (status & GCL_DSR) == 0,
209            ri: (status & GCL_RI) == 0,
210            cd: (status & GCL_CD) == 0,
211        })
212    }
213
214    fn bulk_in_mps(&self) -> u16 {
215        self.endpoints.as_ref().map(|e| e.mps).unwrap_or(64)
216    }
217
218    fn take_bulk_in(&mut self) -> Option<Box<dyn crate::transport::BulkIn>> {
219        let transport = self.transport.as_ref()?;
220        self.endpoints.as_mut()?.take_in(transport)
221    }
222}
223
224impl Ch34xDriver {
225    fn initialize(&self) -> Result<()> {
226        self.check_state(0x5F, 0, &[None, Some(0x00)])?;
227        self.vendor_out(0xA1, 0, 0)?;
228        self.set_baud(DEFAULT_BAUD_RATE)?;
229        self.check_state(0x95, 0x2518, &[None, Some(0x00)])?;
230        self.vendor_out(0x9A, 0x2518, LCR_ENABLE_RX | LCR_ENABLE_TX | LCR_CS8)?;
231        self.check_state(0x95, 0x0706, &[None, None])?;
232        self.vendor_out(0xA1, 0x501F, 0xD90A)?;
233        self.set_baud(DEFAULT_BAUD_RATE)?;
234        self.set_control_lines()?;
235        self.check_state(0x95, 0x0706, &[None, None])?;
236        Ok(())
237    }
238
239    fn set_baud(&self, baud: u32) -> Result<()> {
240        let (val1, val2) = if baud == 921_600 {
241            let divisor = 7u16 | 0x0080;
242            let factor = 0xF300u16;
243            let val1 = (factor & 0xFF00) | divisor;
244            let val2 = factor & 0xFF;
245            (val1, val2)
246        } else {
247            const BAUDBASE_FACTOR: u64 = 1_532_620_800;
248            const BAUDBASE_DIVMAX: u32 = 3;
249
250            let mut factor = BAUDBASE_FACTOR / baud as u64;
251            let mut divisor = BAUDBASE_DIVMAX;
252            while factor > 0xfff0 && divisor > 0 {
253                factor >>= 3;
254                divisor -= 1;
255            }
256            if factor > 0xfff0 {
257                return Err(UsbSerialError::Unsupported(format!(
258                    "unsupported baud rate: {baud}"
259                )));
260            }
261            factor = 0x10000 - factor;
262            let divisor = divisor | 0x0080;
263            let val1 = ((factor & 0xff00) as u16) | divisor as u16;
264            let val2 = (factor & 0xff) as u16;
265            (val1, val2)
266        };
267        self.vendor_out(0x9A, 0x1312, val1)?;
268        self.vendor_out(0x9A, 0x0F2C, val2)
269    }
270
271    fn set_control_lines(&self) -> Result<()> {
272        let mut value = 0u16;
273        if self.dtr {
274            value |= SCL_DTR;
275        }
276        if self.rts {
277            value |= SCL_RTS;
278        }
279        self.vendor_out(0xA4, !value, 0)
280    }
281}