continue flash loader
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@ -1,14 +1,19 @@
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#!/usr/bin/env python3
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from dataclasses import dataclass
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from spacepackets.ecss.defs import PusService
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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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from typing import List
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import time
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from tmtccmd.com.serial_base import SerialCfg
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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 spacepackets.ecss.tc import PusTc
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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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BAUD_RATE = 115200
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@ -27,10 +32,24 @@ APP_B_SIZE_ADDR = 0x3FFF8
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APP_B_CRC_ADDR = 0x3FFFC
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APP_IMG_SZ = 0x1E000
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CHUNK_SIZE = 896
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MEMORY_SERVICE = 6
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RAW_MEMORY_WRITE_SUBSERVICE = 2
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BOOT_NVM_MEMORY_ID = 1
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_LOGGER = logging.getLogger(__name__)
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def main():
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@dataclasses.dataclass
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class LoadableSegment:
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name: str
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offset: int
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size: int
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data: bytes
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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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format="[%(asctime)s] [%(levelname)s] %(message)s", level=logging.DEBUG
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@ -65,13 +84,78 @@ def main():
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)
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com_if = SerialCobsComIF(serial_cfg)
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com_if.open()
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if args.flash and not args.path:
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file_path = None
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if args.flash:
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if not args.path:
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_LOGGER.error("App Path needs to be specified for the flash process")
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return -1
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file_path = Path(args.path)
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if not file_path.exists():
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_LOGGER.error("File does not exist")
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return -1
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ping_tc = PusTc(apid=0x00, service=PusService.S17_TEST, subservice=1)
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if args.ping:
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_LOGGER.info("Sending ping command")
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com_if.send(ping_tc.pack())
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if args.flash:
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assert file_path is not None
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loadable_segments = []
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_LOGGER.info("Parsing ELF file for loadable sections")
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with open(file_path, "rb") as app_file:
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elf_file = ELFFile(app_file)
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for segment in elf_file.iter_segments("PT_LOAD"):
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if segment.header.p_filesz == 0:
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continue
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name = None
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for section in elf_file.iter_sections():
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if (
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section.header.sh_offset == segment.header.p_offset
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and section.header.sh_size > 0
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):
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name = section.name
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if name is None:
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_LOGGER.warning("no fitting section found for segment")
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continue
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# print(f"Segment Addr: {segment.header.p_paddr}")
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# print(f"Segment Offset: {segment.header.p_offset}")
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# print(f"Segment Filesize: {segment.header.p_filesz}")
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loadable_segments.append(
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LoadableSegment(
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name=name,
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offset=segment.header.p_paddr,
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size=segment.header.p_filesz,
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data=segment.data(),
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)
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)
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for idx, segment in enumerate(loadable_segments):
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_LOGGER.info(
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f"Loadable section {idx} {segment.name} with offset {segment.offset} and size {segment.size}"
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)
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for segment in loadable_segments:
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current_addr = segment.offset
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while current_addr < segment.offset + segment.size:
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next_chunk_size = segment.offset + segment.size - current_addr
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if next_chunk_size > CHUNK_SIZE:
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next_chunk_size = CHUNK_SIZE
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app_data = bytearray()
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app_data.append(BOOT_NVM_MEMORY_ID)
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# N parameter is always 1 here.
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app_data.append(1)
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app_data.extend(struct.pack("!I", current_addr))
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app_data.extend(struct.pack("!I", next_chunk_size))
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app_data.extend(
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segment.data[current_addr : current_addr + next_chunk_size]
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)
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current_addr += next_chunk_size
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next_packet = 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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app_data=app_data,
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)
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com_if.send(next_packet.pack())
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time.sleep(0.5)
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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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@ -80,6 +164,7 @@ def main():
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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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if __name__ == "__main__":
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@ -1,3 +1,4 @@
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spacepackets == 0.24
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tmtccmd == 8.0.1
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toml == 0.10
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pyelftools == 0.31
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24
scripts/memory_app_a.x
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24
scripts/memory_app_a.x
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/* Special linker script for application slot A with an offset at address 0x4000 */
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MEMORY
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{
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FLASH : ORIGIN = 0x00004000, LENGTH = 256K
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/* RAM is a mandatory region. This RAM refers to the SRAM_0 */
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RAM : ORIGIN = 0x1FFF8000, LENGTH = 32K
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SRAM_1 : ORIGIN = 0x20000000, LENGTH = 32K
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}
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/* This is where the call stack will be allocated. */
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/* The stack is of the full descending type. */
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/* NOTE Do NOT modify `_stack_start` unless you know what you are doing */
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/* SRAM_0 can be used for all busses: Instruction, Data and System */
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/* SRAM_1 only supports the system bus */
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_stack_start = ORIGIN(RAM) + LENGTH(RAM);
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/* Define sections for placing symbols into the extra memory regions above. */
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/* This makes them accessible from code. */
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SECTIONS {
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.sram1 (NOLOAD) : ALIGN(8) {
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*(.sram1 .sram1.*);
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. = ALIGN(4);
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} > SRAM_1
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};
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scripts/memory_app_b.x
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24
scripts/memory_app_b.x
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/* Special linker script for application slot B with an offset at address 0x22000 */
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MEMORY
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{
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FLASH : ORIGIN = 0x00022000, LENGTH = 256K
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/* RAM is a mandatory region. This RAM refers to the SRAM_0 */
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RAM : ORIGIN = 0x1FFF8000, LENGTH = 32K
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SRAM_1 : ORIGIN = 0x20000000, LENGTH = 32K
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}
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/* This is where the call stack will be allocated. */
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/* The stack is of the full descending type. */
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/* NOTE Do NOT modify `_stack_start` unless you know what you are doing */
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/* SRAM_0 can be used for all busses: Instruction, Data and System */
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/* SRAM_1 only supports the system bus */
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_stack_start = ORIGIN(RAM) + LENGTH(RAM);
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/* Define sections for placing symbols into the extra memory regions above. */
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/* This makes them accessible from code. */
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SECTIONS {
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.sram1 (NOLOAD) : ALIGN(8) {
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*(.sram1 .sram1.*);
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. = ALIGN(4);
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} > SRAM_1
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};
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