The update flow's first step wrote the staging content over whatever the staging slot held; with a loader running right there (programmed by hand onto erased flash), that write met the copy's own running-slot guard on the composed through-word and the tool stopped at its verify — although the copy is exactly an installed staging copy, able to stream the new resident like any other. The install is now skipped when the slot holds a complete loader: its info block where every image carries it, matching the device's byte for byte, and the slot unchanged since the update began (the state file's snapshot) — so a resumed half-written install still differs from its snapshot and takes the install path, which completes it. pbrehome gains the staging-slot position (an older build at stage streaming a newer resident in); the README's wrong "cannot re-home from the staging slot" claim is corrected. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
103 lines
4.4 KiB
Python
103 lines
4.4 KiB
Python
#!/usr/bin/env python3
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"""Re-homing acceptance test: a pureboot image programmed somewhere other
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than its canonical top slot must still be a working loader —
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position-independent, guarding its accidental slot — and the ordinary
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--update-loader flow must put a build into the top slot from there.
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Two positions are exercised. Address 0 (a raw .bin handed to a programmer,
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which defaults to offset 0): the staging install and the word-0 redirect
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both run from copies whose slots are not page 0's, so the running-slot
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guard never blocks the flow. The staging slot itself: a loader already
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sitting there IS the installed staging copy — the tool recognizes it by
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its embedded info block and leaves it in place instead of tripping the
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copy's own guard on the composed through-word — and that (older) copy
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streams the new resident like any staged copy. In both cases flashing an
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application through the healed resident overwrites the stale copy, vector
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surgery included, and the banner proves the launch.
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Usage: pbrehome.py <device_bin> <pureboot_elf> <update_bin> <mcu> <hz>
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<base_hex> <page> <baud> <app_bin> <tool_py> <workdir>
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"""
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import os
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import sys
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def fail(message):
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print(f"FAIL: {message}")
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sys.exit(1)
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def rehome_from(pbsim, pb, device_bin, elf, place_hex, guard_probe, update_bin, base, page, baud, app_bin, workdir,
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mcu, hz):
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"""Place the loader at `place_hex`, heal through --update-loader, flash
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the application, expect the banner."""
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dump = os.path.join(workdir, f"dump-{place_hex}.bin")
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state = os.path.join(workdir, f"rehome-{place_hex}.pbstate")
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if os.path.exists(state):
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os.unlink(state)
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device = pbsim.Device(device_bin, elf, mcu, hz, place_hex, page, baud, dump, reset_hex="0")
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try:
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port = pb.Port(device.pty, baud)
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loader = pb.Loader(port)
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info = loader.connect(25)
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if info.base != base:
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fail(f"the misplaced copy reports base {info.base:#06x} — the info block must stay canonical")
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# The accidental slot still guards itself; re-homing rides on the
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# canonical slots being writable from it.
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probe = int(guard_probe, 0)
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before = loader.read_flash(probe, info.page)
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loader.write_page(probe, bytes(info.page))
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if loader.read_flash(probe, info.page) != before:
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fail("the misplaced copy's guard let its own slot change")
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# The ordinary update flow puts the build into the top slot.
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pb.op_update_loader(loader, 25, update_bin, state, None)
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update = open(update_bin, "rb").read()
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if loader.read_flash(base, len(update)) != update:
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fail("the canonical slot does not hold the update image")
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# An application flashed through the healed resident overwrites the
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# stale copy (surgery included) and launches.
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pages = pb.plan_flash(open(app_bin, "rb").read(), loader.info)
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for address in pb.covered(pages, loader.info, skip_blank=False):
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loader.write_page(address, pages[address])
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pb.verify_pages(loader, pages)
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loader.run_application()
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if port.read_exact(3, 5.0) != b"APP":
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fail(f"application does not banner after the re-home from {place_hex}")
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port.close()
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finally:
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device.stop()
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def main():
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(device_bin, elf, update_bin, mcu, hz, base_hex, page, baud, app_bin, tool, workdir) = sys.argv[1:]
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base, page, baud = int(base_hex, 0), int(page), int(baud)
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sys.path.insert(0, os.path.dirname(os.path.abspath(tool)))
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sys.path.insert(0, os.path.dirname(os.path.abspath(__file__)))
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import pbsim
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import pureboot as pb
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os.makedirs(workdir, exist_ok=True)
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# Address 0: the raw-.bin-to-a-programmer accident. The guard probe is
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# the copy's own page 0.
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rehome_from(pbsim, pb, device_bin, elf, "0x0", "0x0", update_bin, base, page, baud, app_bin, workdir, mcu, hz)
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print("re-home from address 0: converged")
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# The staging slot: erased flash with the loader sitting exactly where
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# a staging copy would — the tool must leave it in place and let it
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# stream the (different) update build into the resident slot.
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stage = base - 512
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rehome_from(pbsim, pb, device_bin, elf, hex(stage), hex(stage), update_bin, base, page, baud, app_bin, workdir,
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mcu, hz)
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print("re-home from the staging slot: converged")
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print("pbrehome: a misplaced loader re-homes through the ordinary update flow")
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if __name__ == "__main__":
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main()
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