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* Create the `esp32c6-hal` package * Teach `esp-hal-common` about the ESP32-C6 * Get a number of peripheral drivers building for the ESP32-C6 bckup initial clocks_ii * Create the `esp32c6-hal` package C6: update * Simplify and fix the linker script update * C6: add I2S * Create the `esp32c6-hal` package * Teach `esp-hal-common` about the ESP32-C6 * Get a number of peripheral drivers building for the ESP32-C6 bckup initial clocks_ii * Create the `esp32c6-hal` package * C6: update * Simplify and fix the linker script * update * C6: add I2S * update * C6 Interrupts * C6: Update build.rs, linker scripts and initial examples * C6: RMT * Fix interrupt handling * Fix `ClockControl::configure` * C6: revert to I2S0 instead of just I2S * C6: rebase and update * RTC not buildable * Implement RWDT and SWD disable * C6: working LEDC * C6: working RMT * C6: add aes * C6: add mcpwm * C6: add rtc_cntln - not finished * C6: update and formatting * C6: add pcnt * C6: add examples and format * Remove inline assembly, fix interrupts and linker scripts * Remove unused features, update cargo config for atomic emu, misc cleanup * Get ADC building and example "working" (as much as it ever does) * Remove a bunch of unused constants which were copied from ESP-IDF * The `mcpwm` example now works correctly * Get `TWAI` peripheral driver building for C6 * Clean up the `rtc_cntl` module and get all the other HALs building again * Add the C6 to our CI workflow * Fix various things that have been missed when rebasing Still missing a few examples (`clock_monitor`, `embassy_spi`, `ram`) * C6: Small updates in wdt (#1) * C6: Update WDT * C6: Update examples with WDT update * Update `esp-println` dependency to fix build errors * Fix formatting issues causing pre-commit hook to fail * Get some more examples working * Working `ram` example * Sync with changes in `main` after rebasing * Working `embassy_spi` example * Use a git dependency for the PAC until we publish a release * Fix I2S for ESP32-C6 * Fix esp32c6 direct boot (#4) * Add direct boot support for C6 * Fix direct boot for c6 - Actually copy into rtc ram - remove dummy section that is no longer needed (was just a waste of flash space) - Move RTC stuff before the no load sections * Update RWDT and refactor RTC (#3) * C6: Update RWDT and add example, refactor RTC and add not-really-good example * Update based on review comments, resolve bunch of warnings and run cargo fmt * Update C6 esp-pacs rev commit * Fix clocks_ll/esp32c6.rs * Fix riscv interrupts * Remove clock_monitor example for now * RAM example works in direct-boot mode * Add a TODO for &mut TIMG0 and cargo fmt * Fix linker script after a bad rebase * Update CI and Cargo.toml embassy required features * use riscv32imac-unknown-none-elf target for C6 in CI * change default target to riscv32imac-unknown-none-elf * add riscv32imac-unknown-none-elf target to MSRV job * another cleanup --------- Co-authored-by: bjoernQ <bjoern.quentin@mobile-j.de> Co-authored-by: Jesse Braham <jesse@beta7.io> * Make required changes to include new `RADIO` peripheral * Use published versions of PAC and `esp-println` * Use the correct target extensions (`imac`) * Fix the super watchdog timer, plus a few more examples * Fix UART clock configuration * Make sure to sync UART registers when configuring AT cmd detection * Disable APM in direct-boot mode * Address a number of review comments * Fix `SPI` clocks and `rtc_watchdog` example (#6) * fix SPI clocks * run cargo fmt * Add comment about used default clk src * Fix rtc_watchdog example in BL mode * run cargo fmt * Update rtc_watchdog example that it works in DB mode * README and example fixes/cleanup * Add I2C peripheral enable and reset * Fix `ApbSarAdc` configuration in `system.rs` --------- Co-authored-by: bjoernQ <bjoern.quentin@mobile-j.de> Co-authored-by: Juraj Sadel <juraj.sadel@espressif.com> Co-authored-by: Juraj Sadel <jurajsadel@gmail.com> Co-authored-by: Scott Mabin <scott@mabez.dev>
134 lines
3.4 KiB
Rust
134 lines
3.4 KiB
Rust
//! I2C Display example
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//!
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//! This example prints some text on an SSD1306-based
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//! display (via I2C)
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//!
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//! The following wiring is assumed:
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//! - SDA => GPIO1
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//! - SCL => GPIO2
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#![no_std]
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#![no_main]
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use embedded_graphics::{
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mono_font::{
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ascii::{FONT_6X10, FONT_9X18_BOLD},
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MonoTextStyleBuilder,
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},
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pixelcolor::BinaryColor,
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prelude::*,
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text::{Alignment, Text},
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};
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use esp32c6_hal::{
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clock::ClockControl,
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gpio::IO,
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i2c::I2C,
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peripherals::Peripherals,
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prelude::*,
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timer::TimerGroup,
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Rtc,
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};
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use esp_backtrace as _;
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use nb::block;
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use ssd1306::{prelude::*, I2CDisplayInterface, Ssd1306};
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#[entry]
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fn main() -> ! {
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let peripherals = Peripherals::take();
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let mut system = peripherals.PCR.split();
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let clocks = ClockControl::boot_defaults(system.clock_control).freeze();
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let mut rtc = Rtc::new(peripherals.LP_CLKRST);
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let timer_group0 = TimerGroup::new(peripherals.TIMG0, &clocks);
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let mut timer0 = timer_group0.timer0;
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let mut wdt0 = timer_group0.wdt;
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let timer_group1 = TimerGroup::new(peripherals.TIMG1, &clocks);
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let mut wdt1 = timer_group1.wdt;
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// Disable watchdog timers
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rtc.swd.disable();
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rtc.rwdt.disable();
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wdt0.disable();
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wdt1.disable();
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let io = IO::new(peripherals.GPIO, peripherals.IO_MUX);
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// Create a new peripheral object with the described wiring
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// and standard I2C clock speed
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let i2c = I2C::new(
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peripherals.I2C0,
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io.pins.gpio1,
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io.pins.gpio2,
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100u32.kHz(),
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&mut system.peripheral_clock_control,
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&clocks,
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);
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// Start timer (5 second interval)
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timer0.start(5u64.secs());
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// Initialize display
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let interface = I2CDisplayInterface::new(i2c);
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let mut display = Ssd1306::new(interface, DisplaySize128x64, DisplayRotation::Rotate0)
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.into_buffered_graphics_mode();
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display.init().unwrap();
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// Specify different text styles
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let text_style = MonoTextStyleBuilder::new()
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.font(&FONT_6X10)
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.text_color(BinaryColor::On)
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.build();
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let text_style_big = MonoTextStyleBuilder::new()
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.font(&FONT_9X18_BOLD)
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.text_color(BinaryColor::On)
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.build();
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loop {
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// Fill display bufffer with a centered text with two lines (and two text
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// styles)
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Text::with_alignment(
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"esp-hal",
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display.bounding_box().center() + Point::new(0, 0),
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text_style_big,
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Alignment::Center,
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)
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.draw(&mut display)
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.unwrap();
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Text::with_alignment(
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"Chip: ESP32-C6",
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display.bounding_box().center() + Point::new(0, 14),
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text_style,
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Alignment::Center,
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)
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.draw(&mut display)
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.unwrap();
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// Write buffer to display
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display.flush().unwrap();
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// Clear display buffer
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display.clear();
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// Wait 5 seconds
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block!(timer0.wait()).unwrap();
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// Write single-line centered text "Hello World" to buffer
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Text::with_alignment(
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"Hello World!",
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display.bounding_box().center(),
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text_style_big,
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Alignment::Center,
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)
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.draw(&mut display)
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.unwrap();
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// Write buffer to display
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display.flush().unwrap();
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// Clear display buffer
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display.clear();
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// Wait 5 seconds
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block!(timer0.wait()).unwrap();
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}
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}
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