mirror of
https://github.com/MCKero6423/uv-k5-v3-emulator.git
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flash controller: store ACR/OPTKEYR instead of swallowing them, which is what stopped the factory bootloader from starting slots over the firmware's own serial protocol (0x0720 family); uvk5_socket/uvk5_testenv so a fresh checkout skips instead of failing; web UI slot table and Multiboot button; quick start, CONTRIBUTING, and stop tracking firmware images and radio dumps
142 lines
4.7 KiB
Python
Executable File
142 lines
4.7 KiB
Python
Executable File
#!/usr/bin/env python3
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"""A scan must keep stepping, even though the receiver always reports a signal.
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This guards a regression the BK4819 model could easily cause. bk4819_eval_receiver
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reports RSSI comfortably above any sane squelch threshold, and a scan halts when it
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finds a busy channel -- so a band that is permanently busy could stop the scan dead on
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its first step. It does not, and this keeps it that way.
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The check deliberately does not count distinct frames. RSSI varies on every poll, so
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the meter and its dBm readout change constantly and would give a perfect "all frames
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differ" score on a completely stationary radio. Instead it compares the framebuffer
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rows holding the large frequency digits: those only change if the radio retunes.
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The framebuffer is 128x64 as 8 pages of 128 bytes, page p covering rows 8p..8p+7. The
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frequency digits for the upper VFO occupy pages 1-2.
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"""
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import gzip
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import json
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import os
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import pathlib
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import socket
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import subprocess
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import sys
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import tempfile
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import time
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import uvk5_socket
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import uvk5_testenv
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SIM = pathlib.Path(__file__).resolve().parent.parent
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QEMU = uvk5_testenv.qemu()
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ELF = uvk5_testenv.firmware()
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PRISTINE = SIM / "assets/pristine/flash-pristine.img.gz"
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FRAME_ADDR = 0x200013DC
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FRAME_BYTES = 1024
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PAGE = 128
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FREQ_PAGES = slice(PAGE * 1, PAGE * 3)
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BOOT_SECONDS = 24
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SAMPLES = 6
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SAMPLE_GAP = 1.5
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class Qmp:
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def __init__(self, path):
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self.s = uvk5_socket.connect(path, timeout=25)
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self.buf = b""
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self._read()
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self.cmd("qmp_capabilities")
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def _read(self):
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while b"\n" not in self.buf:
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chunk = self.s.recv(65536)
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if not chunk:
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raise RuntimeError("QMP closed")
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self.buf += chunk
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line, self.buf = self.buf.split(b"\n", 1)
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return json.loads(line)
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def cmd(self, name, **args):
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msg = {"execute": name}
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if args:
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msg["arguments"] = args
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self.s.sendall(json.dumps(msg).encode() + b"\n")
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while True:
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reply = self._read()
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if "return" in reply or "error" in reply:
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return reply
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def frame(self, tmp):
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"""memsave, not pmemsave: the latter takes a physical address and silently
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returns zeros here, which looks like a blank screen with no error."""
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out = pathlib.Path(tmp) / "f.bin"
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self.cmd("memsave", val=FRAME_ADDR, size=FRAME_BYTES, filename=str(out))
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return out.read_bytes()
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def key(self, name, hold=0.12):
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self.cmd("qom-set", path="/machine/keypad", property="press", value=name)
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time.sleep(hold)
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self.cmd("qom-set", path="/machine/keypad", property="press", value="")
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def main():
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for tool, what in ((QEMU, "QEMU"), (ELF, "firmware"), (PRISTINE, "pristine flash image")):
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if tool is None or not tool.exists():
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return uvk5_testenv.skip("%s is missing (%s); see the README Quick start"
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% (what, tool or "not found"))
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with tempfile.TemporaryDirectory() as tmp:
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img = pathlib.Path(tmp) / "flash.img"
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img.write_bytes(gzip.decompress(PRISTINE.read_bytes()))
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sock = uvk5_socket.server_endpoint("qmp", directory=str(tmp))
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proc = subprocess.Popen(
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[str(QEMU), "-M", f"uv-k5-v3,flash-image={img}",
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"-nographic", "-monitor", "none",
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"-qmp", sock,
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"-kernel", str(ELF)],
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stdout=subprocess.DEVNULL, stderr=subprocess.DEVNULL)
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try:
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# Qmp() below connects, and uvk5_socket retries until QEMU's QMP answers, so
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# there is no socket path to wait for -- on Windows there would not be one.
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time.sleep(BOOT_SECONDS)
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time.sleep(BOOT_SECONDS)
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qmp = Qmp(str(sock))
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# Long-press STAR starts a scan.
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qmp.key("STAR", hold=0.8)
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time.sleep(1.5)
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frames = []
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for _ in range(SAMPLES):
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frames.append(qmp.frame(tmp))
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time.sleep(SAMPLE_GAP)
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tunings = {f[FREQ_PAGES] for f in frames}
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print(f"frequency display: {len(tunings)} distinct over "
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f"{SAMPLES} samples")
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qmp.key("EXIT")
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if len(tunings) > 1:
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print("PASS the scan steps through frequencies")
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print("\na busy band does not stall the scan")
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return 0
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print("FAIL the frequency never changed; the scan is stuck, which is "
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"what an always-busy receiver would cause")
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return 1
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finally:
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proc.terminate()
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try:
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proc.wait(timeout=10)
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except subprocess.TimeoutExpired:
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proc.kill()
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if __name__ == "__main__":
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sys.exit(main())
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