add reply handling
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610a0b8bbe
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@ -16,6 +16,14 @@ log = "0.4"
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crc = "3"
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rtic-sync = "1"
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[dependencies.satrs]
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version = "0.2"
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default-features = false
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[dependencies.ringbuf]
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version = "0.4"
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default-features = false
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[dependencies.once_cell]
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version = "1"
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default-features = false
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@ -32,6 +40,7 @@ default-features = false
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[dependencies.va416xx-hal]
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path = "../va416xx-hal"
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features = ["va41630"]
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[dependencies.rtic]
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version = "2"
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@ -1,9 +1,12 @@
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#!/usr/bin/env python3
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from spacepackets.ecss import RequestId
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from spacepackets.ecss.defs import PusService
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from spacepackets.ecss.tm import PusTm
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import toml
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import struct
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import logging
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import argparse
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import threading
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import time
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import enum
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from tmtccmd.com.serial_base import SerialCfg
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@ -11,6 +14,9 @@ from tmtccmd.com.serial_cobs import SerialCobsComIF
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from tmtccmd.com.ser_utils import prompt_com_port
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from crcmod.predefined import PredefinedCrc
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from spacepackets.ecss.tc import PusTc
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from spacepackets.ecss.pus_verificator import PusVerificator, StatusField
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from spacepackets.ecss.pus_1_verification import Service1Tm, UnpackParams
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from spacepackets.seqcount import SeqCountProvider
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from pathlib import Path
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import dataclasses
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from elftools.elf.elffile import ELFFile
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@ -57,6 +63,9 @@ class LoadableSegment:
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data: bytes
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SEQ_PROVIDER = SeqCountProvider(bit_width=14)
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def main() -> int:
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print("Python VA416XX Image Loader Application")
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logging.basicConfig(
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@ -91,6 +100,7 @@ def main() -> int:
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baud_rate=BAUD_RATE,
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serial_timeout=0.1,
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)
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verificator = PusVerificator()
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com_if = SerialCobsComIF(serial_cfg)
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com_if.open()
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file_path = None
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@ -105,7 +115,12 @@ def main() -> int:
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return -1
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if args.ping:
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_LOGGER.info("Sending ping command")
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ping_tc = PusTc(apid=0x00, service=PusService.S17_TEST, subservice=1)
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ping_tc = PusTc(
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apid=0x00,
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service=PusService.S17_TEST,
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subservice=1,
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seq_count=SEQ_PROVIDER.get_and_increment(),
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)
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com_if.send(ping_tc.pack())
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if args.corrupt:
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if not args.target:
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@ -148,12 +163,18 @@ def main() -> int:
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f"detected possibly invalid start address {segment.header.p_paddr:#08x} for "
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f"bootloader, expected {BOOTLOADER_START_ADDR}"
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)
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if args.target == "a" and segment.header.p_paddr != APP_A_START_ADDR:
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if (
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args.target == "a"
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and segment.header.p_paddr != APP_A_START_ADDR
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):
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raise ValueError(
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f"detected possibly invalid start address {segment.header.p_paddr:#08x} for "
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f"App A, expected {APP_A_START_ADDR}"
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)
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if args.target == "b" and segment.header.p_paddr != APP_B_START_ADDR:
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if (
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args.target == "b"
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and segment.header.p_paddr != APP_B_START_ADDR
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):
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raise ValueError(
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f"detected possibly invalid start address {segment.header.p_paddr:#08x} for "
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f"App B, expected {APP_B_START_ADDR}"
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@ -203,15 +224,40 @@ def main() -> int:
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data = segment.data[
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pos_in_segment : pos_in_segment + next_chunk_size
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]
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next_packet = pack_memory_write_command(current_addr, data)
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_LOGGER.info(
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f"Sending memory write command for address {current_addr:#08x} and data with "
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f"length {len(data)}"
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)
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next_packet = pack_memory_write_command(current_addr, data)
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verificator.add_tc(next_packet)
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com_if.send(next_packet.pack())
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current_addr += next_chunk_size
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pos_in_segment += next_chunk_size
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time.sleep(0.2)
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while True:
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data_available = com_if.data_available(0.1)
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done = False
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if not data_available:
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continue
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replies = com_if.receive()
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for reply in replies:
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tm = PusTm.unpack(reply, 0)
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if tm.service != 1:
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continue
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service_1_tm = Service1Tm.from_tm(tm, UnpackParams(0))
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check_result = verificator.add_tm(service_1_tm)
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# We could send after we have received the step reply, but that can
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# somehow lead to overrun errors. I think it's okay to do it like
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# this as long as the flash loader only uses polling..
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if (
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check_result is not None
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and check_result.status.completed == StatusField.SUCCESS
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):
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done = True
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# Still keep a small delay
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time.sleep(0.01)
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verificator.remove_completed_entries()
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if done:
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break
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if args.target == "bl":
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_LOGGER.info("Blanking the bootloader checksum")
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# Blank the checksum. For the bootloader, the bootloader will calculate the
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@ -232,7 +278,7 @@ def main() -> int:
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assert crc_addr is not None
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assert size_addr is not None
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_LOGGER.info(
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f"Writing app size {total_size } at address {size_addr:#08x}"
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f"Writing app size {total_size} at address {size_addr:#08x}"
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)
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size_write_packet = pack_memory_write_command(
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size_addr, struct.pack("!I", total_size)
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@ -248,13 +294,6 @@ def main() -> int:
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)
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checksum_write_packet = pack_memory_write_command(crc_addr, checksum)
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com_if.send(checksum_write_packet.pack())
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while True:
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data_available = com_if.data_available(0.4)
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if data_available:
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reply = com_if.receive()
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# TODO: Parse replies
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print("Received replies: {}", reply)
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break
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com_if.close()
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return 0
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@ -271,6 +310,7 @@ def pack_memory_write_command(addr: int, data: bytes) -> PusTc:
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apid=0,
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service=MEMORY_SERVICE,
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subservice=RAW_MEMORY_WRITE_SUBSERVICE,
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seq_count=SEQ_PROVIDER.get_and_increment(),
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app_data=app_data,
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)
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@ -25,8 +25,13 @@ use va416xx_hal::{clock::Clocks, edac, pac, time::Hertz, wdt::Wdt};
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const EXTCLK_FREQ: u32 = 40_000_000;
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const COBS_FRAME_SEPARATOR: u8 = 0x0;
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const MAX_PACKET_SIZE: usize = 1024;
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const MAX_FRAME_SIZE: usize = cobs::max_encoding_length(MAX_PACKET_SIZE);
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const MAX_TC_SIZE: usize = 1024;
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const MAX_TC_FRAME_SIZE: usize = cobs::max_encoding_length(MAX_TC_SIZE);
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const MAX_TM_SIZE: usize = 128;
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const MAX_TM_FRAME_SIZE: usize = cobs::max_encoding_length(MAX_TM_SIZE);
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const UART_BAUDRATE: u32 = 115200;
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const SERIAL_RX_WIRETAPPING: bool = false;
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const COBS_RX_DEBUGGING: bool = false;
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@ -51,6 +56,30 @@ impl WdtInterface for OptWdt {
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}
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}
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use once_cell::sync::Lazy;
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use ringbuf::{
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traits::{Consumer, Observer, Producer, SplitRef},
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CachingCons, StaticProd, StaticRb,
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};
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const BUF_RB_SIZE_TX: usize = 1024;
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const SIZES_RB_SIZE_TX: usize = 16;
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static mut BUF_RB_TX: Lazy<StaticRb<u8, BUF_RB_SIZE_TX>> =
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Lazy::new(StaticRb::<u8, BUF_RB_SIZE_TX>::default);
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static mut SIZES_RB_TX: Lazy<StaticRb<usize, SIZES_RB_SIZE_TX>> =
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Lazy::new(StaticRb::<usize, SIZES_RB_SIZE_TX>::default);
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pub struct DataProducer<const BUF_SIZE: usize, const SIZES_LEN: usize> {
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pub buf_prod: StaticProd<'static, u8, BUF_SIZE>,
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pub sizes_prod: StaticProd<'static, usize, SIZES_LEN>,
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}
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pub struct DataConsumer<const BUF_SIZE: usize, const SIZES_LEN: usize> {
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pub buf_cons: CachingCons<&'static StaticRb<u8, BUF_SIZE>>,
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pub sizes_cons: CachingCons<&'static StaticRb<usize, SIZES_LEN>>,
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}
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static CLOCKS: OnceCell<Clocks> = OnceCell::new();
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pub const APP_A_START_ADDR: u32 = 0x4000;
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@ -72,8 +101,11 @@ mod app {
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make_channel,
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};
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use rtt_target::rprintln;
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use satrs::pus::verification::VerificationReportCreator;
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use spacepackets::ecss::PusServiceId;
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use spacepackets::ecss::{tc::PusTcReader, PusPacket};
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use spacepackets::ecss::{
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tc::PusTcReader, tm::PusTmCreator, EcssEnumU8, PusPacket, WritablePusPacket,
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};
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use va416xx_hal::{
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clock::ClkgenExt,
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edac,
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@ -101,12 +133,15 @@ mod app {
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tc_tx: TcTx,
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tc_rx: TcRx,
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rom_spi: Option<pac::Spi3>,
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tx_cons: DataConsumer<BUF_RB_SIZE_TX, SIZES_RB_SIZE_TX>,
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verif_reporter: VerificationReportCreator,
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}
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#[shared]
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struct Shared {
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decode_buffer_busy: bool,
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decode_buf: [u8; MAX_PACKET_SIZE],
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decode_buf: [u8; MAX_TC_SIZE],
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tx_prod: DataProducer<BUF_RB_SIZE_TX, SIZES_RB_SIZE_TX>,
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}
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pub type TcTx = Sender<'static, usize, 2>;
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@ -144,6 +179,11 @@ mod app {
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let (tx, rx) = uart0.split();
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let (tc_tx, tc_rx) = make_channel!(usize, 2);
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let verif_reporter = VerificationReportCreator::new(0).unwrap();
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let (buf_prod, buf_cons) = unsafe { BUF_RB_TX.split_ref() };
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let (sizes_prod, sizes_cons) = unsafe { SIZES_RB_TX.split_ref() };
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Mono::start(cx.core.SYST, clocks.sysclk().raw());
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CLOCKS.set(clocks).unwrap();
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pus_tc_handler::spawn().unwrap();
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@ -152,7 +192,11 @@ mod app {
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(
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Shared {
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decode_buffer_busy: false,
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decode_buf: [0; MAX_PACKET_SIZE],
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decode_buf: [0; MAX_TC_SIZE],
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tx_prod: DataProducer {
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buf_prod,
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sizes_prod,
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},
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},
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Local {
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uart_rx: rx,
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@ -161,6 +205,11 @@ mod app {
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tc_tx,
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tc_rx,
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rom_spi: Some(cx.device.spi3),
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tx_cons: DataConsumer {
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buf_cons,
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sizes_cons,
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},
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verif_reporter,
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},
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)
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}
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@ -174,9 +223,9 @@ mod app {
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}
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#[task(
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priority = 3,
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priority = 4,
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local=[
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read_buf: [u8;MAX_FRAME_SIZE] = [0; MAX_FRAME_SIZE],
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read_buf: [u8;MAX_TC_FRAME_SIZE] = [0; MAX_TC_FRAME_SIZE],
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uart_rx,
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cobs_reader_state,
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tc_tx
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@ -295,11 +344,14 @@ mod app {
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#[task(
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priority = 2,
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local=[
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read_buf: [u8;MAX_FRAME_SIZE] = [0; MAX_FRAME_SIZE],
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read_buf: [u8;MAX_TC_FRAME_SIZE] = [0; MAX_TC_FRAME_SIZE],
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src_data_buf: [u8; 16] = [0; 16],
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verif_buf: [u8; 32] = [0; 32],
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tc_rx,
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rom_spi
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rom_spi,
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verif_reporter
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],
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shared=[decode_buffer_busy, decode_buf]
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shared=[decode_buffer_busy, decode_buf, tx_prod]
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)]
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async fn pus_tc_handler(mut cx: pus_tc_handler::Context) {
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loop {
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@ -313,6 +365,29 @@ mod app {
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cx.shared.decode_buffer_busy.lock(|busy| *busy = false);
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match PusTcReader::new(cx.local.read_buf) {
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Ok((pus_tc, _)) => {
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let mut write_and_send = |tm: &PusTmCreator| {
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let written_size = tm.write_to_bytes(cx.local.verif_buf).unwrap();
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cx.shared.tx_prod.lock(|prod| {
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prod.sizes_prod.try_push(tm.len_written()).unwrap();
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prod.buf_prod
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.push_slice(&cx.local.verif_buf[0..written_size]);
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});
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};
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let token = cx.local.verif_reporter.add_tc(&pus_tc);
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let (tm, accepted_token) = cx
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.local
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.verif_reporter
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.acceptance_success(cx.local.src_data_buf, token, 0, 0, &[])
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.expect("acceptance success failed");
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write_and_send(&tm);
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let (tm, started_token) = cx
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.local
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.verif_reporter
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.start_success(cx.local.src_data_buf, accepted_token, 0, 0, &[])
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.expect("acceptance success failed");
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write_and_send(&tm);
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if pus_tc.service() == PusServiceId::Action as u8 {
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let mut corrupt_image = |base_addr: u32| {
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// Safety: We only use this for NVM handling and we only do NVM
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@ -328,6 +403,12 @@ mod app {
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buf[0] += 1;
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nvm.write_data(base_addr + 32, &buf);
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*cx.local.rom_spi = Some(nvm.release(&mut sys_cfg));
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let tm = cx
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.local
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.verif_reporter
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.completion_success(cx.local.src_data_buf, started_token, 0, 0, &[])
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.expect("completion success failed");
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write_and_send(&tm);
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};
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if pus_tc.subservice() == ActionId::CorruptImageA as u8 {
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rprintln!("corrupting App Image A");
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@ -341,6 +422,19 @@ mod app {
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if pus_tc.service() == PusServiceId::Test as u8 && pus_tc.subservice() == 1 {
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log::info!(target: "TC Handler", "received ping TC");
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} else if pus_tc.service() == PusServiceId::MemoryManagement as u8 {
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let tm = cx
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.local
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.verif_reporter
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.step_success(
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cx.local.src_data_buf,
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&started_token,
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0,
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0,
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&[],
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EcssEnumU8::new(0),
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)
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.expect("step success failed");
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write_and_send(&tm);
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// Raw memory write TC
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if pus_tc.subservice() == 2 {
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let app_data = pus_tc.app_data();
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@ -380,6 +474,12 @@ mod app {
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);
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nvm.write_data(offset, data);
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*cx.local.rom_spi = Some(nvm.release(&mut sys_cfg));
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let tm = cx
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.local
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.verif_reporter
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.completion_success(cx.local.src_data_buf, started_token, 0, 0, &[])
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.expect("completion success failed");
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write_and_send(&tm);
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log::info!("NVM operation done");
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}
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}
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@ -394,14 +494,34 @@ mod app {
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#[task(
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priority = 1,
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local=[
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read_buf: [u8;MAX_TM_SIZE] = [0; MAX_TM_SIZE],
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encoded_buf: [u8;MAX_TM_FRAME_SIZE] = [0; MAX_TM_FRAME_SIZE],
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uart_tx,
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tx_cons,
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],
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shared=[]
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)]
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async fn pus_tm_tx_handler(cx: pus_tm_tx_handler::Context) {
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loop {
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// cx.local.uart_tx.write_all();
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Mono::delay(500.millis()).await;
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while cx.local.tx_cons.sizes_cons.occupied_len() > 0 {
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let next_size = cx.local.tx_cons.sizes_cons.try_pop().unwrap();
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cx.local
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.tx_cons
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.buf_cons
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.pop_slice(&mut cx.local.read_buf[0..next_size]);
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cx.local.encoded_buf[0] = 0;
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let send_size = cobs::encode(
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&cx.local.read_buf[0..next_size],
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&mut cx.local.encoded_buf[1..],
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);
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cx.local.encoded_buf[send_size + 1] = 0;
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cx.local
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.uart_tx
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.write(&cx.local.encoded_buf[0..send_size + 2])
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.unwrap();
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Mono::delay(2.millis()).await;
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}
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Mono::delay(30.millis()).await;
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}
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}
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