1use core::fmt::Write;
6use core::panic::PanicInfo;
7use core::str;
8use kernel::debug;
9use kernel::debug::IoWrite;
10use kernel::hil::led;
11use kernel::hil::uart::{self, Configure};
12
13use crate::CHIP;
14use crate::PROCESSES;
15use crate::PROCESS_PRINTER;
16
17struct Writer {
18 initialized: bool,
19}
20
21static mut WRITER: Writer = Writer { initialized: false };
22
23impl Write for Writer {
24 fn write_str(&mut self, s: &str) -> ::core::fmt::Result {
25 self.write(s.as_bytes());
26 Ok(())
27 }
28}
29
30impl IoWrite for Writer {
31 fn write(&mut self, buf: &[u8]) -> usize {
32 let uart = unsafe { sam4l::usart::USART::new_usart0(CHIP.unwrap().pm) };
36 let regs_manager = &sam4l::usart::USARTRegManager::panic_new(&uart);
37 if !self.initialized {
38 self.initialized = true;
39 let _ = uart.configure(uart::Parameters {
40 baud_rate: 115200,
41 width: uart::Width::Eight,
42 stop_bits: uart::StopBits::One,
43 parity: uart::Parity::None,
44 hw_flow_control: false,
45 });
46 uart.enable_tx(regs_manager);
47 }
48 for &c in buf {
50 uart.send_byte(regs_manager, c);
51 while !uart.tx_ready(regs_manager) {}
52 }
53 buf.len()
54 }
55}
56
57#[cfg(not(test))]
59#[panic_handler]
60pub unsafe fn panic_fmt(pi: &PanicInfo) -> ! {
61 use core::ptr::{addr_of, addr_of_mut};
64 let led_green = sam4l::gpio::GPIOPin::new(sam4l::gpio::Pin::PA14);
65 led_green.enable_output();
66 led_green.set();
67 let led_blue = sam4l::gpio::GPIOPin::new(sam4l::gpio::Pin::PA15);
68 led_blue.enable_output();
69 led_blue.set();
70
71 let red_pin = sam4l::gpio::GPIOPin::new(sam4l::gpio::Pin::PA13);
72 let led_red = &mut led::LedLow::new(&red_pin);
73 let writer = &mut *addr_of_mut!(WRITER);
74 debug::panic(
75 &mut [led_red],
76 writer,
77 pi,
78 &cortexm4::support::nop,
79 &*addr_of!(PROCESSES),
80 &*addr_of!(CHIP),
81 &*addr_of!(PROCESS_PRINTER),
82 )
83}