* Move DMA channels into Peripherals * Initialize DMA in the critical section needed for clock management * Update esp-hal/MIGRATING-0.22.md Co-authored-by: Jesse Braham <jessebraham@users.noreply.github.com> --------- Co-authored-by: Jesse Braham <jessebraham@users.noreply.github.com>
177 lines
5.0 KiB
Rust
177 lines
5.0 KiB
Rust
//! AES DMA Test
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//% CHIPS: esp32c3 esp32c6 esp32h2 esp32s3
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#![no_std]
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#![no_main]
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use esp_hal::{
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aes::{dma::CipherMode, Aes, Mode},
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dma_buffers,
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peripherals::Peripherals,
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};
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use hil_test as _;
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const DMA_BUFFER_SIZE: usize = 16;
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#[cfg(test)]
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#[embedded_test::tests]
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mod tests {
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use super::*;
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#[init]
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fn init() -> Peripherals {
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esp_hal::init(esp_hal::Config::default())
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}
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#[test]
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fn test_aes_128_dma_encryption(peripherals: Peripherals) {
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let dma_channel = peripherals.DMA_CH0;
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let (mut output, rx_descriptors, input, tx_descriptors) = dma_buffers!(DMA_BUFFER_SIZE);
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let mut aes =
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Aes::new(peripherals.AES).with_dma(dma_channel, rx_descriptors, tx_descriptors);
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let keytext = b"SUp4SeCp@sSw0rd";
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let mut keybuf = [0_u8; 16];
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keybuf[..keytext.len()].copy_from_slice(keytext);
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let plaintext = b"message";
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input[..plaintext.len()].copy_from_slice(plaintext);
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let encrypted_message = [
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0xb3, 0xc8, 0xd2, 0x3b, 0xa7, 0x36, 0x5f, 0x18, 0x61, 0x70, 0x0, 0x3e, 0xd9, 0x3a,
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0x31, 0x96,
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];
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let transfer = aes
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.process(
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&input,
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&mut output,
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Mode::Encryption128,
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CipherMode::Ecb,
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keybuf,
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)
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.unwrap();
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transfer.wait().unwrap();
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let mut encrypted_output = [0u8; 16];
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(&mut encrypted_output[..]).copy_from_slice(output);
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assert_eq!(encrypted_output, encrypted_message);
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}
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#[test]
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fn test_aes_128_dma_decryption(peripherals: Peripherals) {
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let dma_channel = peripherals.DMA_CH0;
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let (mut output, rx_descriptors, input, tx_descriptors) = dma_buffers!(DMA_BUFFER_SIZE);
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let mut aes =
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Aes::new(peripherals.AES).with_dma(dma_channel, rx_descriptors, tx_descriptors);
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let keytext = b"SUp4SeCp@sSw0rd";
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let mut keybuf = [0_u8; 16];
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keybuf[..keytext.len()].copy_from_slice(keytext);
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let plaintext = b"message";
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let encrypted_message = [
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0xb3, 0xc8, 0xd2, 0x3b, 0xa7, 0x36, 0x5f, 0x18, 0x61, 0x70, 0x0, 0x3e, 0xd9, 0x3a,
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0x31, 0x96,
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];
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input.copy_from_slice(&encrypted_message);
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let transfer = aes
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.process(
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&input,
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&mut output,
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Mode::Decryption128,
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CipherMode::Ecb,
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keybuf,
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)
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.unwrap();
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transfer.wait().unwrap();
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let mut decrypted_output = [0u8; 16];
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(&mut decrypted_output[..]).copy_from_slice(output);
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assert_eq!(&decrypted_output[..plaintext.len()], plaintext);
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}
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#[test]
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fn test_aes_256_dma_encryption(peripherals: Peripherals) {
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let dma_channel = peripherals.DMA_CH0;
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let (mut output, rx_descriptors, input, tx_descriptors) = dma_buffers!(DMA_BUFFER_SIZE);
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let mut aes =
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Aes::new(peripherals.AES).with_dma(dma_channel, rx_descriptors, tx_descriptors);
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let keytext = b"SUp4SeCp@sSw0rd";
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let mut keybuf = [0_u8; 16];
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keybuf[..keytext.len()].copy_from_slice(keytext);
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let plaintext = b"message";
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input[..plaintext.len()].copy_from_slice(plaintext);
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let encrypted_message = [
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0x0, 0x63, 0x3f, 0x2, 0xa4, 0x53, 0x9, 0x72, 0x20, 0x6d, 0xc9, 0x8, 0x7c, 0xe5, 0xfd,
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0xc,
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];
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let transfer = aes
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.process(
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&input,
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&mut output,
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Mode::Encryption256,
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CipherMode::Ecb,
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keybuf,
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)
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.unwrap();
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transfer.wait().unwrap();
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let mut encrypted_output = [0u8; 16];
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(&mut encrypted_output[..]).copy_from_slice(output);
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assert_eq!(encrypted_output, encrypted_message);
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}
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#[test]
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fn test_aes_256_dma_decryption(peripherals: Peripherals) {
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let dma_channel = peripherals.DMA_CH0;
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let (mut output, rx_descriptors, input, tx_descriptors) = dma_buffers!(DMA_BUFFER_SIZE);
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let mut aes =
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Aes::new(peripherals.AES).with_dma(dma_channel, rx_descriptors, tx_descriptors);
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let keytext = b"SUp4SeCp@sSw0rd";
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let mut keybuf = [0_u8; 16];
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keybuf[..keytext.len()].copy_from_slice(keytext);
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let plaintext = b"message";
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let encrypted_message = [
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0x0, 0x63, 0x3f, 0x2, 0xa4, 0x53, 0x9, 0x72, 0x20, 0x6d, 0xc9, 0x8, 0x7c, 0xe5, 0xfd,
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0xc,
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];
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input.copy_from_slice(&encrypted_message);
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let transfer = aes
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.process(
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&input,
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&mut output,
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Mode::Decryption256,
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CipherMode::Ecb,
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keybuf,
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)
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.unwrap();
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transfer.wait().unwrap();
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let mut decrypted_output = [0u8; 16];
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(&mut decrypted_output[..]).copy_from_slice(output);
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assert_eq!(&decrypted_output[..plaintext.len()], plaintext);
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}
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}
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