1191 lines
44 KiB
Python
1191 lines
44 KiB
Python
from __future__ import annotations
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import argparse
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import json
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import re
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from dataclasses import dataclass
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from pathlib import Path
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from typing import Any
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from .serial_semantics import analyze_serial_semantics
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JsonObject = dict[str, Any]
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@dataclass(frozen=True)
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class SerialPseudocodeOptions:
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include_tx: bool = True
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include_rx: bool = True
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include_evidence: bool = True
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include_manual: bool = True
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include_board: bool = True
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include_semantics: bool = True
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def generate_serial_pseudocode(
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payload: JsonObject,
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*,
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source_name: str = "",
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options: SerialPseudocodeOptions | None = None,
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) -> str:
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opts = options or SerialPseudocodeOptions()
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tx_candidate = _find_candidate(payload, "candidate_sci1_tx_frame")
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rx_candidate = _find_candidate(payload, "candidate_sci1_rx_frame")
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serial_semantics = analyze_serial_semantics(payload) if opts.include_semantics else None
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lines: list[str] = []
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lines.extend(_file_header(source_name, tx_candidate, rx_candidate))
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if opts.include_board:
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lines.extend(_board_comment_lines(payload))
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if opts.include_manual:
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lines.extend(_manual_reference_lines(payload))
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lines.extend(_sci_link_lines(payload))
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lines.extend(_declarations(tx_candidate, rx_candidate))
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if opts.include_semantics:
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lines.extend(_semantics_lines(serial_semantics, opts))
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emitted = False
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if opts.include_tx and tx_candidate:
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lines.extend(_tx_functions(tx_candidate, opts))
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emitted = True
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if opts.include_rx and rx_candidate:
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lines.extend(_rx_functions(rx_candidate, opts))
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emitted = True
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if not emitted:
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lines.append("/* No requested SCI serial reconstruction candidates were present in the JSON input. */")
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lines.append("")
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return "\n".join(lines).rstrip() + "\n"
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def load_serial_pseudocode_input(path: Path) -> JsonObject:
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with path.open("r", encoding="utf-8") as handle:
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payload = json.load(handle)
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if not isinstance(payload, dict) or "instructions" not in payload:
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raise ValueError(f"{path} does not look like h8536_decompiler JSON output")
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return payload
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def write_serial_pseudocode(
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input_path: Path,
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output_path: Path,
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options: SerialPseudocodeOptions,
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) -> None:
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payload = load_serial_pseudocode_input(input_path)
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output_path.parent.mkdir(parents=True, exist_ok=True)
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output_path.write_text(
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generate_serial_pseudocode(payload, source_name=str(input_path), options=options),
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encoding="utf-8",
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)
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def main(argv: list[str] | None = None) -> int:
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parser = argparse.ArgumentParser(
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description="Generate focused C-like SCI RX/TX pseudocode from h8536_decompiler JSON output.",
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)
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parser.add_argument(
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"input",
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nargs="?",
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type=Path,
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default=Path("build/rom_decompiled.json"),
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help="structured JSON emitted by h8536_decompiler.py",
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)
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parser.add_argument(
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"--out",
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type=Path,
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default=Path("build/rom_serial_pseudocode.c"),
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help="focused serial pseudocode output path",
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)
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mode = parser.add_mutually_exclusive_group()
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mode.add_argument("--tx-only", action="store_true", help="emit only the candidate TX path")
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mode.add_argument("--rx-only", action="store_true", help="emit only the candidate RX path")
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parser.add_argument("--no-evidence", action="store_true", help="omit evidence-address comments")
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parser.add_argument("--no-manual", action="store_true", help="omit manual-reference comments")
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parser.add_argument("--no-board", action="store_true", help="omit board/MAX202 comments")
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parser.add_argument("--no-semantics", action="store_true", help="omit candidate command/field semantics")
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args = parser.parse_args(argv)
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options = SerialPseudocodeOptions(
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include_tx=not args.rx_only,
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include_rx=not args.tx_only,
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include_evidence=not args.no_evidence,
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include_manual=not args.no_manual,
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include_board=not args.no_board,
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include_semantics=not args.no_semantics,
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)
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write_serial_pseudocode(args.input, args.out, options)
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print(f"wrote {args.out}")
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return 0
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def _file_header(
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source_name: str,
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tx_candidate: JsonObject | None,
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rx_candidate: JsonObject | None,
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) -> list[str]:
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source = f" from {source_name}" if source_name else ""
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lines = [
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"/*",
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f" * H8/536 focused SCI RX/TX pseudocode{source}",
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" *",
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" * This is a protocol-oriented reconstruction from decompiler JSON metadata.",
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" * It is intentionally phrased as candidate behavior: it summarizes evidence",
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" * from the ROM without claiming source-level intent or a proven packet format.",
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" */",
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"",
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]
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if tx_candidate or rx_candidate:
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lines.append("/* Candidate summary:")
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for candidate in (tx_candidate, rx_candidate):
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if not candidate:
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continue
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lines.append(
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" * - "
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+ _candidate_label(candidate)
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+ f": confidence {candidate.get('confidence', 'unknown')} "
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+ f"({candidate.get('confidence_score', 'n/a')})"
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)
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reason = str(candidate.get("confidence_reason") or "").strip()
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if reason:
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lines.append(f" * reason: {_comment_text(reason)}")
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caveat = str(candidate.get("caveat") or "").strip()
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if caveat:
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lines.append(f" * caveat: {_comment_text(caveat)}")
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lines.append(" */")
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lines.append("")
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return lines
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def _board_comment_lines(payload: JsonObject) -> list[str]:
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board = payload.get("board_profile")
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if not isinstance(board, dict):
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return []
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lines = ["/* Board path:"]
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summary = str(board.get("summary") or "").strip()
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if summary:
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lines.append(f" * {summary}")
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for trace in _mapping_items(board.get("traces")):
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signal = trace.get("signal", "?")
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h8_pin = trace.get("h8_pin", "?")
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h8_name = trace.get("h8_pin_name", "?")
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max202_pin = trace.get("max202_pin", "?")
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evidence = str(trace.get("evidence") or "").strip()
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lines.append(f" * - {signal}: H8 pin {h8_pin} {h8_name} <-> MAX202 pin {max202_pin}")
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if evidence:
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lines.append(f" * evidence: {_comment_text(evidence)}")
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lines.append(" */")
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lines.append("")
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return lines
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def _manual_reference_lines(payload: JsonObject) -> list[str]:
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refs: list[str] = []
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for section in ("sci_protocol", "board_profile"):
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data = payload.get(section)
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if isinstance(data, dict):
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refs.extend(str(ref) for ref in data.get("manual_references", []) if ref)
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refs = _dedupe(refs)
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if not refs:
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return []
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lines = ["/* Manual anchors used by the decompiler metadata:"]
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for ref in refs:
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lines.append(f" * - {_comment_text(ref)}")
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lines.append(" */")
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lines.append("")
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return lines
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def _sci_link_lines(payload: JsonObject) -> list[str]:
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config = _first_sci1_configuration(payload)
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dtc_note = _dtc_sci_note(payload)
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if not config and not dtc_note:
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return []
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lines = ["/* SCI1 link layer:"]
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if config:
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mode_summary = str(config.get("mode_summary") or config.get("mode") or "SCI mode")
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char_format = "8E1" if "8-bit even parity 1 stop" in mode_summary else mode_summary
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smr = config.get("smr_hex") or _optional_hex(config.get("smr"), width=2)
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brr = config.get("brr_hex") or _optional_hex(config.get("brr"), width=2)
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scr = config.get("scr_hex") or _optional_hex(config.get("scr"), width=2)
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clock_source = config.get("clock_source") or "clock source unknown"
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lines.append(
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" * - "
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+ _comment_text(
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f"{char_format} SCI characters carry the 6 protocol bytes; "
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f"{mode_summary}, clock {clock_source}, SMR={smr}, BRR={brr}, SCR={scr}",
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),
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)
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baud = config.get("baud_bps")
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if isinstance(baud, (int, float)):
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lines.append(f" * - candidate baud: {_comment_text(str(baud))} bps")
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else:
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lines.append(" * - baud is clock-dependent; pass --clock-hz on the decompiler for bps.")
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if dtc_note:
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lines.append(f" * - {_comment_text(dtc_note)}")
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lines.append(" */")
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lines.append("")
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return lines
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def _first_sci1_configuration(payload: JsonObject) -> JsonObject | None:
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sci = payload.get("sci")
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if not isinstance(sci, dict):
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return None
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channels = sci.get("channels")
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if not isinstance(channels, dict):
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return None
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sci1 = channels.get("SCI1")
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if not isinstance(sci1, dict):
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return None
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configurations = sci1.get("configurations")
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if not isinstance(configurations, list):
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return None
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for item in configurations:
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if isinstance(item, dict):
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return item
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return None
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def _dtc_sci_note(payload: JsonObject) -> str:
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vectors = payload.get("dtc_vectors")
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if not isinstance(vectors, list):
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return ""
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sources = {
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str(item.get("source", "")).lower()
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for item in vectors
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if isinstance(item, dict)
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}
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if "sci1_rxi" in sources or "sci1_txi" in sources:
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return "SCI1 DTC vector entries are present; review DTC metadata before treating RX/TX as CPU-only."
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return "No SCI1 RXI/TXI DTC vector entries are present in JSON; RX/TX are modeled as CPU ISR paths."
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def _declarations(tx_candidate: JsonObject | None, rx_candidate: JsonObject | None) -> list[str]:
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candidate = tx_candidate or rx_candidate or {}
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channel = str(candidate.get("channel") or "SCI1")
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tdr = _int_field(tx_candidate, "tdr_address", 0xFEDB)
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rdr = _int_field(rx_candidate, "rdr_address", 0xFEDD)
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scr = tdr - 1 if tdr else 0xFEDA
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ssr = rdr - 1 if rdr else 0xFEDC
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lines = [
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"#include <stdbool.h>",
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"#include <stdint.h>",
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"",
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"typedef uint8_t u8;",
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"typedef uint16_t u16;",
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"",
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"extern volatile u8 MEM8[0x10000];",
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"",
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f"#define {channel}_SCR MEM8[{_c_hex(scr)}]",
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f"#define {channel}_TDR MEM8[{_c_hex(tdr)}]",
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f"#define {channel}_SSR MEM8[{_c_hex(ssr)}]",
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f"#define {channel}_RDR MEM8[{_c_hex(rdr)}]",
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"",
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"#define SCI_SCR_TIE 0x80u",
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"#define SCI_SCR_RIE 0x40u",
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"#define SCI_SCR_TE 0x20u",
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"#define SCI_SCR_RE 0x10u",
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"#define SCI_SSR_TDRE 0x80u",
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"#define SCI_SSR_RDRF 0x40u",
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"#define SCI_SSR_ORER 0x20u",
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"#define SCI_SSR_FER 0x10u",
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"#define SCI_SSR_PER 0x08u",
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"",
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]
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if tx_candidate:
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tx_start = _int_field(tx_candidate, "buffer_start", 0xF858)
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tx_index = _int_field(tx_candidate, "tx_index_address", 0xF9C2)
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length = _int_field(tx_candidate, "frame_length", 6)
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checksum_index = max(length - 1, 0)
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lines.extend(
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[
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f"#define SCI1_TX_FRAME_LENGTH {length}u",
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f"#define SCI1_TX_FRAME_BASE {_c_hex(tx_start)}",
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"#define SCI1_TX_FRAME_BYTE(n) MEM8[(u16)(SCI1_TX_FRAME_BASE + (n))]",
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f"#define SCI1_TX_FRAME_CHECKSUM SCI1_TX_FRAME_BYTE({checksum_index}u)",
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f"#define SCI1_TX_INDEX MEM8[{_c_hex(tx_index)}]",
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"#define TX_FRAME_LENGTH SCI1_TX_FRAME_LENGTH",
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f"#define TX_FRAME(n) MEM8[(u16)({_c_hex(tx_start)} + (n))]",
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"#define TX_INDEX SCI1_TX_INDEX",
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"",
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],
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)
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if rx_candidate:
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capture_start = _int_field(rx_candidate, "capture_buffer_start", 0xF868)
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frame_start = _int_field(rx_candidate, "validation_buffer_start", 0xF860)
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rx_index = _int_field(rx_candidate, "rx_index_address", 0xF9C3)
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timeout = _int_field(rx_candidate, "interbyte_timeout_address", 0xF9C1)
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complete = _int_field(rx_candidate, "complete_timer_address", 0xF9C5)
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length = _int_field(rx_candidate, "frame_length", 6)
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error_handling = rx_candidate.get("rx_error_handling")
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error_latch = 0xFAA4
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if isinstance(error_handling, dict):
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error_latch = _int_field(error_handling, "error_latch_address", 0xFAA4)
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lines.extend(
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[
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f"#define RX_FRAME_LENGTH {length}u",
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f"#define RX_CAPTURE(n) MEM8[(u16)({_c_hex(capture_start)} + (n))]",
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f"#define RX_FRAME(n) MEM8[(u16)({_c_hex(frame_start)} + (n))]",
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f"#define RX_INDEX MEM8[{_c_hex(rx_index)}]",
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f"#define RX_INTERBYTE_TIMEOUT MEM8[{_c_hex(timeout)}]",
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f"#define RX_COMPLETE_TIMER MEM8[{_c_hex(complete)}]",
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f"#define RX_ERROR_LATCH MEM8[{_c_hex(error_latch)}]",
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"#define RX_ERROR_LATCH_PHYSICAL_ERROR 0x80u",
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"",
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],
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)
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return lines
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def _semantics_lines(
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analysis: JsonObject | None,
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opts: SerialPseudocodeOptions,
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) -> list[str]:
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if not isinstance(analysis, dict):
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return []
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protocols = analysis.get("protocol_semantics")
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if not isinstance(protocols, list) or not protocols:
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return []
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protocol = protocols[0]
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if not isinstance(protocol, dict):
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return []
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lines: list[str] = ["/* Candidate Protocol Semantics"]
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lines.append(
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f" * confidence: {protocol.get('confidence', 'unknown')} "
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f"({protocol.get('confidence_score', 'n/a')})",
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)
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caveat = str(protocol.get("caveat") or "").strip()
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if caveat:
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lines.append(f" * caveat: {_comment_text(caveat)}")
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layout = protocol.get("byte_layout")
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if isinstance(layout, list) and layout:
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lines.append(" * byte layout:")
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for item in layout:
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if not isinstance(item, dict):
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continue
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offset = item.get("offset", "?")
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name = item.get("name_candidate", "byte")
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semantic = item.get("semantic", "")
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confidence = item.get("confidence", "unknown")
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lines.append(f" * - byte{offset}: {name} ({confidence}) - {_comment_text(str(semantic))}")
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dispatch = protocol.get("command_dispatch")
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if isinstance(dispatch, dict):
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values = ", ".join(str(value) for value in dispatch.get("command_values_hex", []))
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lines.append(
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" * dispatch: command_low3 = RX_FRAME(0) & 0x07"
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+ (f"; observed {values}" if values else ""),
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)
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if opts.include_evidence:
|
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lines.append(f" * dispatch evidence: {_hex_join(dispatch.get('evidence_addresses_hex'))}")
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|
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index_decoder = protocol.get("index_decoder")
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if isinstance(index_decoder, dict):
|
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lines.append(
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" * index decoder: RX[1:2] -> logical index via "
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f"{index_decoder.get('label', 'loc_622B')} ({index_decoder.get('confidence', 'unknown')})",
|
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)
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commands = [item for item in protocol.get("commands", []) if isinstance(item, dict)]
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if commands:
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lines.append(" * command candidates:")
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for command in commands:
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value = command.get("command_value_hex", "??")
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name = command.get("name_candidate", "unknown")
|
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summary = _comment_text(str(command.get("summary") or ""))
|
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handler = command.get("handler_start_hex") or "multiple"
|
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responses = ", ".join(str(item) for item in command.get("response_candidates", [])) or "none"
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lines.append(f" * - {value} {name}: {summary}; handler {handler}; responses {responses}")
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lines.extend(_command_effect_comment_lines(protocol.get("command_effects"), opts, prefix=" * "))
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lines.extend(_response_schema_comment_lines(_schema_list(protocol), opts, prefix=" * "))
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lines.extend(_table_map_comment_lines(_table_map_list(protocol), opts, prefix=" * "))
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lines.extend(_state_variable_comment_lines(protocol.get("state_variable_candidates"), opts, prefix=" * "))
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lines.extend(_retry_error_comment_lines(protocol.get("retry_error_model"), opts, prefix=" * "))
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lines.extend(_gate_queue_comment_lines(protocol.get("gate_queue_model"), opts, prefix=" * "))
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lines.extend(_tx_report_comment_lines(protocol.get("tx_report_model"), opts, prefix=" * "))
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lines.extend(_periodic_resend_comment_lines(protocol.get("periodic_resend_model"), opts, prefix=" * "))
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lines.extend(_timer_architecture_comment_lines(protocol, opts, prefix=" * "))
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lines.append(" */")
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lines.append("")
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lines.extend(
|
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[
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"static u8 sci1_rx_candidate_command(void)",
|
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"{",
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" return (u8)(RX_FRAME(0) & 0x07u);",
|
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"}",
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"",
|
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"static u16 sci1_rx_candidate_value(void)",
|
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"{",
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" return (u16)(((u16)RX_FRAME(3) << 8) | RX_FRAME(4));",
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"}",
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"",
|
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"static u16 sci1_rx_candidate_logical_index(void)",
|
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"{",
|
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" u8 page = RX_FRAME(1);",
|
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" u8 offset = RX_FRAME(2);",
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"",
|
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" if (page == 0u && offset <= 0x7Fu) {",
|
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" return offset;",
|
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" }",
|
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" if (page == 1u) {",
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" return (u16)(0x0080u + offset);",
|
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" }",
|
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" if (page == 2u && offset <= 0x7Fu) {",
|
|
" return (u16)(0x0180u + offset);",
|
|
" }",
|
|
" return 0x01FFu;",
|
|
"}",
|
|
"",
|
|
],
|
|
)
|
|
lines.extend(_gate_queue_predicate_function_lines(protocol.get("gate_queue_model")))
|
|
lines.extend(_timer_architecture_function_lines(protocol))
|
|
lines.extend(
|
|
[
|
|
"void sci1_process_candidate_protocol_command(void)",
|
|
"{",
|
|
" u8 command = sci1_rx_candidate_command();",
|
|
" u16 logical_index = sci1_rx_candidate_logical_index();",
|
|
" u16 value = sci1_rx_candidate_value();",
|
|
"",
|
|
" switch (command) {",
|
|
],
|
|
)
|
|
for command in commands:
|
|
value = command.get("command_value")
|
|
if not isinstance(value, int):
|
|
continue
|
|
name = _safe_identifier(str(command.get("name_candidate") or f"command_{value:02X}"))
|
|
summary = _comment_text(str(command.get("summary") or "candidate command semantics unknown"))
|
|
evidence = _hex_join(command.get("evidence_addresses_hex"))
|
|
lines.append(f" case 0x{value:02X}u:")
|
|
lines.append(f" /* {name}: {summary}")
|
|
for effect_line in _command_effect_switch_lines(command):
|
|
lines.append(f" * {effect_line}")
|
|
if opts.include_evidence and evidence:
|
|
lines.append(f" * evidence: {evidence}")
|
|
lines.append(" */")
|
|
lines.append(f" candidate_{name}(logical_index, value);")
|
|
lines.append(" break;")
|
|
lines.extend(
|
|
[
|
|
" default:",
|
|
" candidate_unknown_command(command, logical_index, value);",
|
|
" break;",
|
|
" }",
|
|
"}",
|
|
"",
|
|
],
|
|
)
|
|
return lines
|
|
|
|
|
|
def _command_effect_comment_lines(
|
|
value: object,
|
|
opts: SerialPseudocodeOptions,
|
|
*,
|
|
prefix: str,
|
|
) -> list[str]:
|
|
effects = [item for item in _object_list(value) if item.get("effects") or item.get("summary")]
|
|
if not effects:
|
|
return []
|
|
lines = [f"{prefix}command effects:"]
|
|
for item in effects:
|
|
command = item.get("command_value_hex") or _command_hex(item.get("command_value"))
|
|
name = item.get("name_candidate") or "unknown_command"
|
|
summary = _comment_text(str(item.get("summary") or "candidate effects"))
|
|
lines.append(f"{prefix}- {command} {name}: {summary}")
|
|
for effect in _object_list(item.get("effects"))[:3]:
|
|
effect_text = _effect_summary(effect)
|
|
if effect_text:
|
|
lines.append(f"{prefix} effect: {effect_text}")
|
|
evidence = _hex_join(item.get("evidence_addresses_hex"))
|
|
if opts.include_evidence and evidence:
|
|
lines.append(f"{prefix} evidence: {evidence}")
|
|
return lines
|
|
|
|
|
|
def _response_schema_comment_lines(
|
|
schemas: list[JsonObject],
|
|
opts: SerialPseudocodeOptions,
|
|
*,
|
|
prefix: str,
|
|
) -> list[str]:
|
|
if not schemas:
|
|
return []
|
|
lines = [f"{prefix}response schemas:"]
|
|
for schema in schemas[:4]:
|
|
response_id = schema.get("response_id") or schema.get("call_address_hex") or "candidate_response"
|
|
byte_text = _response_schema_summary(schema)
|
|
lines.append(f"{prefix}- {response_id}: {byte_text}")
|
|
evidence = _hex_join(schema.get("evidence_addresses_hex"))
|
|
if opts.include_evidence and evidence:
|
|
lines.append(f"{prefix} evidence: {evidence}")
|
|
if len(schemas) > 4:
|
|
lines.append(f"{prefix}- ... {len(schemas) - 4} more candidate response schemas")
|
|
return lines
|
|
|
|
|
|
def _table_map_comment_lines(
|
|
tables: list[JsonObject],
|
|
opts: SerialPseudocodeOptions,
|
|
*,
|
|
prefix: str,
|
|
) -> list[str]:
|
|
if not tables:
|
|
return []
|
|
lines = [f"{prefix}table map candidates:"]
|
|
for table in tables[:6]:
|
|
name = table.get("name_candidate") or "unnamed_table_candidate"
|
|
address = table.get("logical_base_address_hex") or table.get("address_hex") or "?"
|
|
element = table.get("element_candidate")
|
|
accesses = ", ".join(str(item) for item in table.get("observed_accesses", []) if item) or "access?"
|
|
detail = f"{name} at {address}"
|
|
if element:
|
|
detail += f" ({element})"
|
|
lines.append(f"{prefix}- {_comment_text(detail)}; observed {accesses}")
|
|
evidence = _hex_join(table.get("evidence_addresses_hex"))
|
|
if opts.include_evidence and evidence:
|
|
lines.append(f"{prefix} evidence: {evidence}")
|
|
if len(tables) > 6:
|
|
lines.append(f"{prefix}- ... {len(tables) - 6} more table candidates")
|
|
return lines
|
|
|
|
|
|
def _state_variable_comment_lines(
|
|
value: object,
|
|
opts: SerialPseudocodeOptions,
|
|
*,
|
|
prefix: str,
|
|
) -> list[str]:
|
|
states = sorted(
|
|
_object_list(value),
|
|
key=lambda item: item.get("address") if isinstance(item.get("address"), int) else 0x10000,
|
|
)
|
|
if not states:
|
|
return []
|
|
lines = [f"{prefix}state variable candidates:"]
|
|
for state in states[:6]:
|
|
name = state.get("name_candidate") or "unnamed_state_candidate"
|
|
address = state.get("address_hex") or _command_hex(state.get("address"))
|
|
reads = state.get("read_count", "?")
|
|
writes = state.get("write_count", "?")
|
|
bits = ", ".join(str(item) for item in state.get("bit_candidates", []))
|
|
suffix = f"; bits {bits}" if bits else ""
|
|
lines.append(f"{prefix}- {_comment_text(str(name))} {address}: reads {reads}, writes {writes}{suffix}")
|
|
evidence = _hex_join(state.get("evidence_addresses_hex"))
|
|
if opts.include_evidence and evidence:
|
|
lines.append(f"{prefix} evidence: {evidence}")
|
|
if len(states) > 6:
|
|
lines.append(f"{prefix}- ... {len(states) - 6} more state-variable candidates")
|
|
return lines
|
|
|
|
|
|
def _retry_error_comment_lines(
|
|
value: object,
|
|
opts: SerialPseudocodeOptions,
|
|
*,
|
|
prefix: str,
|
|
) -> list[str]:
|
|
if not isinstance(value, dict):
|
|
return []
|
|
checksum = value.get("checksum_failure_path")
|
|
retry = value.get("retry_path")
|
|
command_07 = value.get("command_0x07_path")
|
|
lines = [f"{prefix}retry/error model candidate:"]
|
|
if isinstance(checksum, dict):
|
|
condition = _comment_text(str(checksum.get("condition_candidate") or "checksum failure"))
|
|
target = checksum.get("error_target") or checksum.get("error_target_address_hex") or "error target"
|
|
lines.append(f"{prefix}- checksum path: {condition} -> {target}")
|
|
if isinstance(retry, dict):
|
|
counter = retry.get("counter_address_hex") or "counter?"
|
|
threshold = retry.get("threshold_candidate", "?")
|
|
summary = _comment_text(str(retry.get("summary") or "candidate retry path"))
|
|
lines.append(f"{prefix}- retry path: counter {counter}, threshold {threshold}; {summary}")
|
|
if isinstance(command_07, dict):
|
|
summary = _comment_text(str(command_07.get("summary") or "candidate command 0x07 path"))
|
|
lines.append(f"{prefix}- command 0x07 path: {summary}")
|
|
evidence = _hex_join(value.get("evidence_addresses_hex"))
|
|
if opts.include_evidence and evidence:
|
|
lines.append(f"{prefix}- evidence: {evidence}")
|
|
return lines
|
|
|
|
|
|
def _gate_queue_comment_lines(
|
|
value: object,
|
|
opts: SerialPseudocodeOptions,
|
|
*,
|
|
prefix: str,
|
|
) -> list[str]:
|
|
if not isinstance(value, dict):
|
|
return []
|
|
lines = [f"{prefix}gate/queue state machine candidate:"]
|
|
for predicate in _object_list(value.get("predicates")):
|
|
name = predicate.get("name") or "predicate_candidate"
|
|
condition = _comment_text(str(predicate.get("condition_candidate") or "condition unknown"))
|
|
summary = _comment_text(str(predicate.get("summary") or "candidate gate"))
|
|
lines.append(f"{prefix}- {name}: {condition}; {summary}")
|
|
for effect in _object_list(value.get("session_effects")):
|
|
name = effect.get("name") or "session_effect_candidate"
|
|
summary = _comment_text(str(effect.get("summary") or "candidate session effect"))
|
|
commands = ", ".join(str(item) for item in effect.get("command_values_hex", []) if item)
|
|
suffix = f"; commands {commands}" if commands else ""
|
|
lines.append(f"{prefix}- {name}: {summary}{suffix}")
|
|
caveat = str(value.get("caveat") or "").strip()
|
|
if caveat:
|
|
lines.append(f"{prefix}- caveat: {_comment_text(caveat)}")
|
|
evidence = _hex_join(value.get("evidence_addresses_hex"))
|
|
if opts.include_evidence and evidence:
|
|
lines.append(f"{prefix}- evidence: {evidence}")
|
|
return lines
|
|
|
|
|
|
def _gate_queue_predicate_function_lines(value: object) -> list[str]:
|
|
if not isinstance(value, dict):
|
|
return []
|
|
return [
|
|
"static bool sci1_candidate_main_report_gate_open(void)",
|
|
"{",
|
|
" bool session_idle = MEM8[0xFAA2u] == 0u;",
|
|
" bool rx_gate_open = (MEM8[0xFAA5u] & 0x80u) == 0u || MEM8[0xF9C3u] == 0u;",
|
|
" bool tx_timer_clear = MEM8[0xF9C0u] == 0u;",
|
|
"",
|
|
" return session_idle && rx_gate_open && tx_timer_clear;",
|
|
"}",
|
|
"",
|
|
"static bool sci1_candidate_report_queue_nonempty(void)",
|
|
"{",
|
|
" return MEM8[0xF9B5u] != MEM8[0xF9B0u];",
|
|
"}",
|
|
"",
|
|
"static bool sci1_candidate_periodic_resend_gate_open(void)",
|
|
"{",
|
|
" bool pending = (MEM8[0xFAA5u] & MEM8[0xFAA3u] & 0x80u) != 0u;",
|
|
" bool period_elapsed = MEM8[0xF9C6u] == 0u && MEM8[0xF9C7u] == 0u;",
|
|
" bool resend_countdown_active = MEM8[0xF9C8u] != 0u;",
|
|
"",
|
|
" return pending && period_elapsed && resend_countdown_active;",
|
|
"}",
|
|
"",
|
|
]
|
|
|
|
|
|
def _tx_report_comment_lines(
|
|
value: object,
|
|
opts: SerialPseudocodeOptions,
|
|
*,
|
|
prefix: str,
|
|
) -> list[str]:
|
|
if not isinstance(value, dict):
|
|
return []
|
|
entry = value.get("entry_label") or value.get("entry_address_hex") or "TX report path"
|
|
source = _comment_text(str(value.get("value_source_candidate") or "current value table"))
|
|
lines = [f"{prefix}TX/autonomous report model candidate:"]
|
|
lines.append(f"{prefix}- {entry} -> loc_BA26: bytes 0..2 encode candidate logical index/report id; bytes 3..4 come from {source}; byte5 is 0x5A XOR checksum")
|
|
overlay = _object_list(value.get("observed_capture_overlay_candidates"))
|
|
if overlay:
|
|
observed = []
|
|
for item in overlay[:3]:
|
|
name = item.get("name_candidate") or "observed_report_candidate"
|
|
frames = ", ".join(str(frame) for frame in item.get("observed_frames_hex", []) if frame)
|
|
if frames:
|
|
observed.append(f"{name}: {frames}")
|
|
if observed:
|
|
lines.append(f"{prefix}- observed overlay candidates: {_comment_text('; '.join(observed))}")
|
|
caveat = str(value.get("observed_autonomous_output_caveat") or value.get("caveat") or "").strip()
|
|
if caveat:
|
|
lines.append(f"{prefix}- caveat: {_comment_text(caveat)}")
|
|
evidence = _hex_join(value.get("evidence_addresses_hex"))
|
|
if opts.include_evidence and evidence:
|
|
lines.append(f"{prefix}- evidence: {evidence}")
|
|
return lines
|
|
|
|
|
|
def _periodic_resend_comment_lines(
|
|
value: object,
|
|
opts: SerialPseudocodeOptions,
|
|
*,
|
|
prefix: str,
|
|
) -> list[str]:
|
|
if not isinstance(value, dict):
|
|
return []
|
|
lines = [f"{prefix}heartbeat/periodic resend candidate:"]
|
|
period = value.get("period_timer")
|
|
if isinstance(period, dict):
|
|
lines.append(
|
|
f"{prefix}- F9C6 reload {period.get('reload_value_hex', '?')}: "
|
|
f"{_comment_text(str(period.get('summary') or 'period timer'))}",
|
|
)
|
|
countdown = value.get("resend_countdown")
|
|
if isinstance(countdown, dict):
|
|
lines.append(
|
|
f"{prefix}- F9C8 reload {countdown.get('reload_value_hex', '?')}: "
|
|
f"{_comment_text(str(countdown.get('summary') or 'resend countdown'))}",
|
|
)
|
|
pending = value.get("pending_mask")
|
|
if isinstance(pending, dict):
|
|
lines.append(
|
|
f"{prefix}- FAA3 mask {pending.get('mask_hex', '?')}: "
|
|
f"{_comment_text(str(pending.get('summary') or 'pending mask'))}",
|
|
)
|
|
resend = value.get("resend_path")
|
|
if isinstance(resend, dict):
|
|
lines.append(
|
|
f"{prefix}- BED5 resend path: {_comment_text(str(resend.get('summary') or 'candidate resend path'))}",
|
|
)
|
|
evidence = _hex_join(value.get("evidence_addresses_hex"))
|
|
if opts.include_evidence and evidence:
|
|
lines.append(f"{prefix}- evidence: {evidence}")
|
|
return lines
|
|
|
|
|
|
def _timer_architecture_comment_lines(
|
|
protocol: JsonObject,
|
|
opts: SerialPseudocodeOptions,
|
|
*,
|
|
prefix: str,
|
|
) -> list[str]:
|
|
model = _timer_architecture_model(protocol)
|
|
if not model:
|
|
return []
|
|
|
|
vector = str(model.get("vector_address_hex") or "H'BEEA")
|
|
source = str(model.get("source") or "FRT1 OCIA")
|
|
lines = [f"{prefix}interrupt/timer architecture candidate:"]
|
|
lines.append(
|
|
f"{prefix}- {source} {vector} appears to be a periodic tick ISR for serial gate/cadence counters.",
|
|
)
|
|
counters = _timer_counter_models(model)
|
|
for counter in counters:
|
|
address = counter.get("address_hex") or _h(_int_field(counter, "address", 0))
|
|
name = counter.get("name_candidate") or "counter_candidate"
|
|
role = _comment_text(str(counter.get("role") or counter.get("summary") or "candidate decrementing counter"))
|
|
lines.append(f"{prefix}- {address} {name}: {role}")
|
|
evidence = _hex_join(model.get("evidence_addresses_hex"))
|
|
if opts.include_evidence and evidence:
|
|
lines.append(f"{prefix}- evidence: {evidence}")
|
|
return lines
|
|
|
|
|
|
def _timer_architecture_function_lines(protocol: JsonObject) -> list[str]:
|
|
model = _timer_architecture_model(protocol)
|
|
if not model:
|
|
return []
|
|
counters = _timer_counter_models(model)
|
|
if not counters:
|
|
return []
|
|
|
|
lines = [
|
|
"void frt1_ocia_candidate_tick_isr(void)",
|
|
"{",
|
|
" /* Candidate periodic tick at H'BEEA: decrement nonzero serial gate/cadence counters. */",
|
|
]
|
|
for counter in counters:
|
|
address = _int_field(counter, "address", 0)
|
|
if address == 0:
|
|
continue
|
|
name = _safe_identifier(str(counter.get("name_candidate") or f"counter_{address:04X}")).upper()
|
|
lines.extend(
|
|
[
|
|
f" /* {name}: {_comment_text(str(counter.get('role') or counter.get('summary') or 'candidate counter'))} */",
|
|
f" if (MEM8[{_c_hex(address)}] != 0u) {{",
|
|
f" MEM8[{_c_hex(address)}] = (u8)(MEM8[{_c_hex(address)}] - 1u);",
|
|
" }",
|
|
"",
|
|
],
|
|
)
|
|
lines.extend(["}", ""])
|
|
return lines
|
|
|
|
|
|
def _timer_architecture_model(protocol: JsonObject) -> JsonObject:
|
|
model = protocol.get("timer_interrupt_model")
|
|
if isinstance(model, dict):
|
|
return model
|
|
if isinstance(protocol.get("gate_queue_model"), dict) or isinstance(protocol.get("periodic_resend_model"), dict):
|
|
return {
|
|
"source": "FRT1 OCIA",
|
|
"vector_address_hex": "H'BEEA",
|
|
"counters": [
|
|
{
|
|
"address": 0xF9C0,
|
|
"address_hex": "H'F9C0",
|
|
"name_candidate": "tx_report_gate_counter_candidate",
|
|
"role": "candidate gate counter used before entering the report builder.",
|
|
},
|
|
{
|
|
"address": 0xF9C1,
|
|
"address_hex": "H'F9C1",
|
|
"name_candidate": "rx_interbyte_timeout_candidate",
|
|
"role": "candidate RX interbyte timeout counter.",
|
|
},
|
|
{
|
|
"address": 0xF9C6,
|
|
"address_hex": "H'F9C6",
|
|
"name_candidate": "periodic_resend_cadence_counter_candidate",
|
|
"role": "candidate periodic resend/heartbeat cadence counter.",
|
|
},
|
|
],
|
|
}
|
|
return {}
|
|
|
|
|
|
def _timer_counter_models(model: JsonObject) -> list[JsonObject]:
|
|
counters = _object_list(model.get("counters"))
|
|
if counters:
|
|
return counters
|
|
return [
|
|
{
|
|
"address": 0xF9C0,
|
|
"address_hex": "H'F9C0",
|
|
"name_candidate": "tx_report_gate_counter_candidate",
|
|
"role": "candidate gate counter used before entering the report builder.",
|
|
},
|
|
{
|
|
"address": 0xF9C1,
|
|
"address_hex": "H'F9C1",
|
|
"name_candidate": "rx_interbyte_timeout_candidate",
|
|
"role": "candidate RX interbyte timeout counter.",
|
|
},
|
|
{
|
|
"address": 0xF9C6,
|
|
"address_hex": "H'F9C6",
|
|
"name_candidate": "periodic_resend_cadence_counter_candidate",
|
|
"role": "candidate periodic resend/heartbeat cadence counter.",
|
|
},
|
|
]
|
|
|
|
|
|
def _command_effect_switch_lines(command: JsonObject) -> list[str]:
|
|
effects = _object_list(command.get("effects"))[:3]
|
|
lines = []
|
|
for effect in effects:
|
|
text = _effect_summary(effect)
|
|
if text:
|
|
lines.append(f"candidate effect: {text}")
|
|
return lines
|
|
|
|
|
|
def _effect_summary(effect: JsonObject) -> str:
|
|
kind = str(effect.get("kind") or "effect_candidate")
|
|
parts = [kind]
|
|
target = effect.get("target_candidate") or effect.get("destination_candidate")
|
|
source = effect.get("source_candidate")
|
|
operation = effect.get("operation_candidate")
|
|
table = effect.get("table_base_hex")
|
|
state = effect.get("state_address_hex")
|
|
if target:
|
|
parts.append(f"target {target}")
|
|
if source:
|
|
parts.append(f"source {source}")
|
|
if operation:
|
|
parts.append(str(operation))
|
|
if table:
|
|
parts.append(f"table {table}")
|
|
if state:
|
|
parts.append(f"state {state}")
|
|
return _comment_text("; ".join(parts))
|
|
|
|
|
|
def _schema_list(protocol: JsonObject) -> list[JsonObject]:
|
|
schemas = _object_list(protocol.get("response_schemas"))
|
|
if schemas:
|
|
return schemas
|
|
return _object_list(protocol.get("response_schema"))
|
|
|
|
|
|
def _table_map_list(protocol: JsonObject) -> list[JsonObject]:
|
|
tables = _object_list(protocol.get("logical_table_map_candidates"))
|
|
if tables:
|
|
return tables
|
|
return _object_list(protocol.get("table_map_candidates"))
|
|
|
|
|
|
def _response_schema_summary(schema: JsonObject) -> str:
|
|
parts = []
|
|
for item in _object_list(schema.get("bytes")):
|
|
label = item.get("byte") or f"byte{item.get('offset', '?')}"
|
|
source = item.get("source_expression") or item.get("source_kind") or "unknown"
|
|
parts.append(f"{label}={source}")
|
|
return _comment_text("; ".join(parts) if parts else "candidate byte sources unknown")
|
|
|
|
|
|
def _object_list(value: object) -> list[JsonObject]:
|
|
if not isinstance(value, list):
|
|
return []
|
|
return [item for item in value if isinstance(item, dict)]
|
|
|
|
|
|
def _command_hex(value: object) -> str:
|
|
if isinstance(value, int):
|
|
return f"0x{value:02X}"
|
|
return "?"
|
|
|
|
|
|
def _tx_functions(candidate: JsonObject, opts: SerialPseudocodeOptions) -> list[str]:
|
|
length = _int_field(candidate, "frame_length", 6)
|
|
seed = _int_field(candidate, "checksum_seed", 0x5A)
|
|
data_length = max(length - 1, 0)
|
|
lines = _candidate_comment_block("TX reconstruction evidence", candidate, opts)
|
|
lines.extend(
|
|
[
|
|
"static u8 sci1_tx_candidate_checksum(void)",
|
|
"{",
|
|
f" u8 checksum = {_c_hex(seed, width=2)};",
|
|
],
|
|
)
|
|
for index in range(data_length):
|
|
lines.append(f" checksum ^= TX_FRAME({index});")
|
|
lines.extend(
|
|
[
|
|
" return checksum;",
|
|
"}",
|
|
"",
|
|
"void sci1_tx_start_candidate_frame(void)",
|
|
"{",
|
|
" /* The ROM appears to have populated TX_FRAME(0..4) before this point. */",
|
|
f" TX_FRAME({data_length}) = sci1_tx_candidate_checksum();",
|
|
"",
|
|
f" while ((SCI1_SSR & SCI_SSR_TDRE) == 0u) {{",
|
|
" /* wait for transmit data register empty */",
|
|
" }",
|
|
"",
|
|
" /* First byte is sent synchronously; TIE enables TXI for the remaining bytes. */",
|
|
" SCI1_TDR = TX_FRAME(0);",
|
|
" TX_INDEX = 1u;",
|
|
" SCI1_SSR &= (u8)~SCI_SSR_TDRE;",
|
|
" SCI1_SCR |= SCI_SCR_TIE;",
|
|
"}",
|
|
"",
|
|
"void sci1_txi_candidate_isr(void)",
|
|
"{",
|
|
" /* TXI runs after hardware reasserts SSR.TDRE for the next transmit byte. */",
|
|
" if ((SCI1_SSR & SCI_SSR_TDRE) == 0u) {",
|
|
" return;",
|
|
" }",
|
|
"",
|
|
" if (TX_INDEX < TX_FRAME_LENGTH) {",
|
|
" SCI1_TDR = TX_FRAME(TX_INDEX);",
|
|
" TX_INDEX = (u8)(TX_INDEX + 1u);",
|
|
" SCI1_SSR &= (u8)~SCI_SSR_TDRE;",
|
|
" }",
|
|
"",
|
|
" if (TX_INDEX >= TX_FRAME_LENGTH) {",
|
|
" SCI1_SCR &= (u8)~SCI_SCR_TIE;",
|
|
" }",
|
|
"}",
|
|
"",
|
|
],
|
|
)
|
|
return lines
|
|
|
|
|
|
def _rx_functions(candidate: JsonObject, opts: SerialPseudocodeOptions) -> list[str]:
|
|
length = _int_field(candidate, "frame_length", 6)
|
|
seed = _int_field(candidate, "checksum_seed", 0x5A)
|
|
data_length = max(length - 1, 0)
|
|
lines = _candidate_comment_block("RX reconstruction evidence", candidate, opts)
|
|
lines.extend(
|
|
[
|
|
"static u8 sci1_rx_candidate_checksum(void)",
|
|
"{",
|
|
f" u8 checksum = {_c_hex(seed, width=2)};",
|
|
],
|
|
)
|
|
for index in range(data_length):
|
|
lines.append(f" checksum ^= RX_FRAME({index});")
|
|
lines.extend(
|
|
[
|
|
" return checksum;",
|
|
"}",
|
|
"",
|
|
"bool sci1_process_rx_candidate_frame(void)",
|
|
"{",
|
|
" u8 i;",
|
|
"",
|
|
" if (RX_INDEX != RX_FRAME_LENGTH) {",
|
|
" return false;",
|
|
" }",
|
|
"",
|
|
" for (i = 0u; i < RX_FRAME_LENGTH; i++) {",
|
|
" RX_FRAME(i) = RX_CAPTURE(i);",
|
|
" }",
|
|
"",
|
|
f" if (sci1_rx_candidate_checksum() != RX_FRAME({data_length})) {{",
|
|
" RX_INDEX = 0u;",
|
|
" return false;",
|
|
" }",
|
|
"",
|
|
" RX_INDEX = 0u;",
|
|
" return true;",
|
|
"}",
|
|
"",
|
|
"bool sci1_rx_byte_received_candidate_isr(void)",
|
|
"{",
|
|
" u8 byte;",
|
|
"",
|
|
" SCI1_SSR &= (u8)~SCI_SSR_RDRF;",
|
|
" byte = SCI1_RDR;",
|
|
"",
|
|
" if (RX_INTERBYTE_TIMEOUT == 0u) {",
|
|
" RX_INDEX = 0u;",
|
|
" }",
|
|
"",
|
|
" RX_INTERBYTE_TIMEOUT = 5u;",
|
|
" RX_CAPTURE(RX_INDEX) = byte;",
|
|
" RX_INDEX = (u8)(RX_INDEX + 1u);",
|
|
"",
|
|
" if (RX_INDEX == RX_FRAME_LENGTH) {",
|
|
" RX_COMPLETE_TIMER = 0x14u;",
|
|
" return sci1_process_rx_candidate_frame();",
|
|
" }",
|
|
"",
|
|
" return false;",
|
|
"}",
|
|
"",
|
|
"void sci1_rx_error_candidate_isr(void)",
|
|
"{",
|
|
" RX_ERROR_LATCH |= RX_ERROR_LATCH_PHYSICAL_ERROR;",
|
|
" SCI1_SSR &= (u8)~(SCI_SSR_ORER | SCI_SSR_FER | SCI_SSR_PER);",
|
|
" sci1_rx_byte_received_candidate_isr();",
|
|
"}",
|
|
"",
|
|
],
|
|
)
|
|
return lines
|
|
|
|
|
|
def _candidate_comment_block(
|
|
title: str,
|
|
candidate: JsonObject,
|
|
opts: SerialPseudocodeOptions,
|
|
) -> list[str]:
|
|
lines = ["/*", f" * {title}"]
|
|
comment = str(candidate.get("comment") or candidate.get("short_comment") or "").strip()
|
|
if comment:
|
|
lines.append(f" * {_comment_text(comment)}")
|
|
formula = str(candidate.get("checksum_formula") or "").strip()
|
|
if formula:
|
|
lines.append(f" * checksum formula: {_comment_text(formula)}")
|
|
error_handling = candidate.get("rx_error_handling")
|
|
if isinstance(error_handling, dict):
|
|
summary = str(error_handling.get("summary") or "").strip()
|
|
if summary:
|
|
lines.append(f" * RX error handling: {_comment_text(summary)}")
|
|
caveat = str(error_handling.get("manual_caveat") or "").strip()
|
|
if caveat:
|
|
lines.append(f" * RX error caveat: {_comment_text(caveat)}")
|
|
if opts.include_evidence:
|
|
evidence = candidate.get("evidence_addresses_hex")
|
|
if isinstance(evidence, dict):
|
|
lines.append(" * evidence addresses:")
|
|
for key in sorted(evidence):
|
|
addresses = ", ".join(str(item) for item in evidence.get(key, []))
|
|
lines.append(f" * - {key}: {addresses}")
|
|
lines.append(" */")
|
|
return lines
|
|
|
|
|
|
def _find_candidate(payload: JsonObject, kind: str) -> JsonObject | None:
|
|
serial = payload.get("serial_reconstruction")
|
|
if not isinstance(serial, dict):
|
|
return None
|
|
candidates = serial.get("candidates")
|
|
if not isinstance(candidates, list):
|
|
return None
|
|
for candidate in candidates:
|
|
if isinstance(candidate, dict) and candidate.get("kind") == kind:
|
|
return candidate
|
|
return None
|
|
|
|
|
|
def _candidate_label(candidate: JsonObject) -> str:
|
|
kind = str(candidate.get("kind") or "candidate")
|
|
channel = str(candidate.get("channel") or "SCI")
|
|
length = candidate.get("frame_length", "?")
|
|
if kind.endswith("_tx_frame"):
|
|
start = candidate.get("buffer_start_hex") or _h(_int_field(candidate, "buffer_start", 0))
|
|
end = candidate.get("buffer_end_hex") or _h(_int_field(candidate, "buffer_end", 0))
|
|
return f"{channel} TX {length}-byte frame at {start}-{end}"
|
|
if kind.endswith("_rx_frame"):
|
|
capture_start = candidate.get("capture_buffer_start_hex") or _h(
|
|
_int_field(candidate, "capture_buffer_start", 0),
|
|
)
|
|
capture_end = candidate.get("capture_buffer_end_hex") or _h(
|
|
_int_field(candidate, "capture_buffer_end", 0),
|
|
)
|
|
return f"{channel} RX {length}-byte frame captured at {capture_start}-{capture_end}"
|
|
return f"{channel} {kind}"
|
|
|
|
|
|
def _mapping_items(value: object) -> list[JsonObject]:
|
|
if not isinstance(value, list):
|
|
return []
|
|
return [item for item in value if isinstance(item, dict)]
|
|
|
|
|
|
def _int_field(candidate: JsonObject | None, key: str, default: int) -> int:
|
|
if not candidate:
|
|
return default
|
|
value = candidate.get(key)
|
|
if isinstance(value, bool):
|
|
return int(value)
|
|
if isinstance(value, int):
|
|
return value
|
|
return default
|
|
|
|
|
|
def _c_hex(value: int, *, width: int = 4) -> str:
|
|
return f"0x{value & 0xFFFF:0{width}X}u"
|
|
|
|
|
|
def _optional_hex(value: object, *, width: int = 4) -> str:
|
|
if isinstance(value, int):
|
|
return f"H'{value & 0xFFFF:0{width}X}"
|
|
return "unknown"
|
|
|
|
|
|
def _h(value: int) -> str:
|
|
return f"H'{value & 0xFFFF:04X}"
|
|
|
|
|
|
def _dedupe(items: list[str]) -> list[str]:
|
|
seen: set[str] = set()
|
|
output: list[str] = []
|
|
for item in items:
|
|
if item in seen:
|
|
continue
|
|
seen.add(item)
|
|
output.append(item)
|
|
return output
|
|
|
|
|
|
def _hex_join(value: object) -> str:
|
|
if not isinstance(value, list):
|
|
return ""
|
|
return ", ".join(str(item) for item in value)
|
|
|
|
|
|
def _safe_identifier(value: str) -> str:
|
|
cleaned = re.sub(r"[^0-9A-Za-z_]", "_", value.strip())
|
|
cleaned = re.sub(r"_+", "_", cleaned).strip("_")
|
|
if not cleaned:
|
|
return "unknown"
|
|
if cleaned[0].isdigit():
|
|
return "_" + cleaned
|
|
return cleaned
|
|
|
|
|
|
def _comment_text(text: str) -> str:
|
|
return text.replace("*/", "* /").replace("\r", " ").replace("\n", " ")
|