**Motivations:** - Keep C2 verification up to date when new completion documents (m>16) are added - Make C3 status explicit: local instance vs general uniformization lock **Root causes:** - C2 verifier was hardwired to two completion files and could not generalize to future transitions - C3 general form required an explicit decision and statement of the remaining lock **Correctifs:** - Auto-discover completion docs and validate declared residual sizes and optional lists per transition - Restore backward-compatible checks block for downstream tooling **Evolutions:** - Add a deterministic multi-transition table to c2_projective artefacts - Hash the discovered completion docs list in the c2_projective run report profile - Record the explicit C3 “local vs general” decision and C3.gen target in the proof plan **Pages affectées:** - applications/collatz/collatz_k_scripts/collatz_verify_c2_projective.py - docs/artefacts/collatz/c2_projective/verification_c2_projective.json - docs/artefacts/collatz/c2_projective/verification_c2_projective.md - applications/collatz/collatz_k_scripts/collatz_generate_run_report.py - docs/collatz_run_report_2026-03-09_c2_projective.md - applications/collatz/collatz_k_scripts/plan_lemmes_manquants_et_programme_de_preuve.md
363 lines
13 KiB
Python
363 lines
13 KiB
Python
#!/usr/bin/env python3
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# -*- coding: utf-8 -*-
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"""
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collatz_verify_c2_projective.py
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Deterministic verification artefact for Lemma C2 (projective reduction):
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From completion-by-brothers audit documents, verify that:
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- residual after completion equals the set of children of "both" parents
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- projections modulo 2^12 of B_m (both parents) match the fixed base B12
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Inputs (Markdown):
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- noyau_both_base_4096.md (contains B12 list)
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- completion documents (e.g. complétion_minorée_m14_vers_m15.md, complétion_minorée_m15_vers_m16.md)
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Outputs:
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- a short JSON summary (machine-checkable)
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- a short Markdown report (human-checkable)
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No terminal transcripts. Standard library only.
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"""
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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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def _read_text(path: Path) -> str:
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return path.read_text(encoding="utf-8", errors="strict")
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def _extract_ints(text: str) -> list[int]:
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return [int(x) for x in re.findall(r"\b\d+\b", text)]
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def _section_after_heading(md: str, heading_regex: str) -> str:
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"""
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Return the Markdown slice starting at a heading matched by heading_regex (regex applied line-wise).
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The slice ends at the next heading of same or higher level, or end of document.
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"""
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lines = md.splitlines()
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start = None
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level = None
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hr = re.compile(heading_regex)
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for i, line in enumerate(lines):
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if hr.search(line):
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start = i + 1
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m = re.match(r"^(#+)\s", line)
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level = len(m.group(1)) if m else 1
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break
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if start is None or level is None:
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raise ValueError(f"Cannot find heading matching regex: {heading_regex}")
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end = len(lines)
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for j in range(start, len(lines)):
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m2 = re.match(r"^(#+)\s", lines[j])
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if not m2:
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continue
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if len(m2.group(1)) <= level:
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end = j
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break
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return "\n".join(lines[start:end]).strip()
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def _parse_list_under_heading(md: str, heading_regex: str) -> list[int]:
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section = _section_after_heading(md, heading_regex)
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return sorted(set(_extract_ints(section)))
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def _assert_all_odd(values: list[int], label: str) -> None:
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bad = [x for x in values if x % 2 == 0]
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if bad:
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raise ValueError(f"{label}: expected odd residues only, found {len(bad)} even values (e.g. {bad[:10]})")
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@dataclass(frozen=True)
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class C2CheckResult:
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palier_parent: int
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palier_child: int
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both_parent_count: int
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computed_children_count: int
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listed_residual_count: int | None
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children_equals_listed_residual: bool | None
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projection_mod_4096_equals_b12: bool
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def _lift_children(both_parents: list[int], parent_palier: int) -> list[int]:
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shift = 1 << parent_palier
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out = set()
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for p in both_parents:
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out.add(p)
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out.add(p + shift)
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return sorted(out)
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def _project_mod_4096(values: list[int]) -> set[int]:
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return {int(x % 4096) for x in values}
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def _display_path(path: Path, repo_root: Path) -> str:
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try:
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rel = path.resolve().relative_to(repo_root.resolve())
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return str(rel)
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except ValueError:
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return str(path)
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def _discover_both_parent_blocks(md: str) -> dict[int, list[int]]:
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"""
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Discover "Parents « both » au palier 2^m" blocks in a completion markdown file.
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Returns m -> residues list.
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"""
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out: dict[int, list[int]] = {}
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for m in re.findall(r"^###\s+Parents\s+«\s+both\s+»\s+au\s+palier\s+2\^(\d+)\b", md, flags=re.M):
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mm = int(m)
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out[mm] = _parse_list_under_heading(
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md, rf"^###\s+Parents\s+«\s+both\s+»\s+au\s+palier\s+2\^{mm}\b"
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)
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return out
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def _discover_listed_residual_after_completion(md: str, child_palier: int) -> list[int] | None:
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"""
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Optional: "Résidu restant au palier 2^(m+1) après complétion « one » (...)".
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"""
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pattern = rf"^###\s+Résidu\s+restant\s+au\s+palier\s+2\^{child_palier}\s+après\s+complétion\s+«\s+one\s+»"
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try:
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return _parse_list_under_heading(md, pattern)
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except ValueError:
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return None
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def _discover_declared_residual_size(md: str, child_palier: int) -> int | None:
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"""
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Optional: parse a declared residual size like "|R_16^comp| = 2202".
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"""
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matches = re.findall(rf"\|R_{child_palier}\^comp\|\s*=\s*([^\n]+)", md)
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if not matches:
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return None
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# Extract the last integer on the matched RHS (e.g. "2*|both| = 2202" -> 2202).
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rhs = matches[-1]
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ints = re.findall(r"\b(\d+)\b", rhs)
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return int(ints[-1]) if ints else None
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def verify_c2(
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*,
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noyau_both_base_4096_md: Path,
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completion_docs: list[Path],
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repo_root: Path,
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output_json: Path,
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output_md: Path,
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) -> None:
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b12_md = _read_text(noyau_both_base_4096_md)
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b12 = _parse_list_under_heading(b12_md, r"^##\s+Base projective B_12\b")
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_assert_all_odd(b12, "B12")
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if len(b12) != 192:
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raise ValueError(f"B12: expected 192 residues, got {len(b12)}")
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transitions: list[dict[str, object]] = []
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for doc_path in completion_docs:
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md = _read_text(doc_path)
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src = _display_path(doc_path, repo_root)
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both_blocks = _discover_both_parent_blocks(md)
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for m_parent, both in sorted(both_blocks.items()):
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_assert_all_odd(both, f"Parents both (m={m_parent}) in {src}")
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child_palier = m_parent + 1
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children = _lift_children(both, m_parent)
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_assert_all_odd(children, f"Computed children (m={child_palier}) in {src}")
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listed = _discover_listed_residual_after_completion(md, child_palier)
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declared = _discover_declared_residual_size(md, child_palier)
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if listed is not None:
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_assert_all_odd(listed, f"Listed residual (m={child_palier}) in {src}")
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if set(children) != set(listed):
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raise ValueError(
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f"Residual list mismatch for m={m_parent}→{child_palier} in {src}: "
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"listed residual does not match computed children of both"
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)
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if declared is not None and declared != len(children):
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raise ValueError(
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f"Declared |R_{child_palier}^comp|={declared} does not match computed {len(children)} for {src}"
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)
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transitions.append(
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{
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"source": src,
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"palier_parent": m_parent,
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"palier_child": child_palier,
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"both_parent_count": len(both),
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"computed_children_count": len(children),
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"listed_residual_count": len(listed) if listed is not None else declared,
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"children_equals_listed_residual": (set(children) == set(listed)) if listed is not None else None,
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"projection_mod_4096_equals_b12": (_project_mod_4096(both) == set(b12)),
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}
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)
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# Stable ordering for deterministic JSON/MD
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transitions = sorted(
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transitions,
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key=lambda d: (str(d["source"]), int(d["palier_parent"]), int(d["palier_child"])),
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)
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def _pick_check(parent_m: int) -> C2CheckResult:
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matches = [t for t in transitions if int(t["palier_parent"]) == parent_m and int(t["palier_child"]) == parent_m + 1]
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if not matches:
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raise ValueError(f"Missing expected transition m={parent_m}→{parent_m+1} in discovered completion docs")
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# deterministic: pick first by our transition ordering
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t = matches[0]
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return C2CheckResult(
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palier_parent=int(t["palier_parent"]),
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palier_child=int(t["palier_child"]),
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both_parent_count=int(t["both_parent_count"]),
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computed_children_count=int(t["computed_children_count"]),
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listed_residual_count=(int(t["listed_residual_count"]) if t["listed_residual_count"] is not None else None),
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children_equals_listed_residual=(bool(t["children_equals_listed_residual"]) if t["children_equals_listed_residual"] is not None else None),
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projection_mod_4096_equals_b12=bool(t["projection_mod_4096_equals_b12"]),
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)
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# Backward-compatible checks block for report generator / downstream tooling.
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c1415 = _pick_check(14)
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c1516 = _pick_check(15)
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summary = {
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"inputs": {
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"noyau_both_base_4096_md": _display_path(noyau_both_base_4096_md, repo_root),
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"completion_docs": [_display_path(p, repo_root) for p in completion_docs],
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},
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"B12": {"count": len(b12), "min": min(b12), "max": max(b12)},
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"transitions": transitions,
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"checks": {
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"m14_to_m15": c1415.__dict__,
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"m15_to_m16": c1516.__dict__,
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},
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"ok": {
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"all_transitions_project_to_B12": all(bool(t["projection_mod_4096_equals_b12"]) for t in transitions),
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"all_listed_residuals_match_children": all(
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(t["children_equals_listed_residual"] is None) or bool(t["children_equals_listed_residual"])
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for t in transitions
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),
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},
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}
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output_json.parent.mkdir(parents=True, exist_ok=True)
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output_json.write_text(json.dumps(summary, indent=2, ensure_ascii=False) + "\n", encoding="utf-8")
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lines: list[str] = []
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lines.append("**Auteur** : Équipe 4NK")
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lines.append("")
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lines.append("# Vérification déterministe — Lemma C2 (réduction projective)")
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lines.append("")
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lines.append("## Entrées")
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lines.append("")
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lines.append(f"- `noyau_both_base_4096.md` : `{_display_path(noyau_both_base_4096_md, repo_root)}`")
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for p in completion_docs:
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lines.append(f"- completion : `{_display_path(p, repo_root)}`")
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lines.append("")
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lines.append("## Base projective B12")
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lines.append("")
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lines.append(f"- |B12| = {len(b12)} (attendu 192)")
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lines.append(f"- min(B12) = {min(b12)}, max(B12) = {max(b12)}")
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lines.append("")
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lines.append("## Transitions détectées (table multi-transitions)")
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lines.append("")
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header = [
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"source",
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"m",
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"m+1",
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"|both(m)|",
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"|children(m+1)|",
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"|listed residual|",
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"children==listed",
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"both mod 4096 == B12",
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]
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lines.append("| " + " | ".join(header) + " |")
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lines.append("| " + " | ".join(["---"] * len(header)) + " |")
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for t in transitions:
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lines.append(
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"| "
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+ " | ".join(
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[
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str(t["source"]),
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str(t["palier_parent"]),
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str(t["palier_child"]),
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str(t["both_parent_count"]),
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str(t["computed_children_count"]),
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str(t["listed_residual_count"]) if t["listed_residual_count"] is not None else "",
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str(t["children_equals_listed_residual"]) if t["children_equals_listed_residual"] is not None else "",
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str(t["projection_mod_4096_equals_b12"]),
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]
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)
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+ " |"
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)
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lines.append("")
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lines.append("## Sorties")
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lines.append("")
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lines.append(f"- JSON : `{output_json}`")
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lines.append(f"- Markdown : `{output_md}`")
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lines.append("")
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output_md.parent.mkdir(parents=True, exist_ok=True)
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output_md.write_text("\n".join(lines) + "\n", encoding="utf-8")
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def main() -> None:
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ap = argparse.ArgumentParser(description="Deterministic C2 verification (projective reduction)")
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ap.add_argument(
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"--repo-root",
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default="",
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help="Repository root used to display relative paths in outputs (defaults to current working directory)",
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)
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ap.add_argument(
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"--completion-dir",
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default="",
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help="Directory to auto-discover completion markdown files (default: collatz_k_scripts directory)",
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)
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ap.add_argument(
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"--completion-md",
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action="append",
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default=[],
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help="Completion markdown file (repeatable). If provided, disables auto-discovery.",
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)
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ap.add_argument(
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"--noyau-both-base-4096-md",
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default=str(Path(__file__).parent / "noyau_both_base_4096.md"),
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help="Path to noyau_both_base_4096.md",
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)
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ap.add_argument(
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"--output-dir",
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default="docs/artefacts/collatz/c2_projective",
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help="Output directory for deterministic artefacts (JSON + MD)",
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)
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args = ap.parse_args()
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repo_root = Path(args.repo_root).resolve() if args.repo_root.strip() else Path.cwd().resolve()
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completion_docs: list[Path]
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if args.completion_md:
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completion_docs = [Path(p).resolve() for p in args.completion_md]
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else:
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completion_dir = Path(args.completion_dir).resolve() if args.completion_dir.strip() else Path(__file__).parent.resolve()
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completion_docs = sorted(completion_dir.glob("complétion*_m*_vers_m*.md"))
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if not completion_docs:
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raise ValueError(f"No completion docs found under {completion_dir}")
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out_dir = Path(args.output_dir)
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verify_c2(
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noyau_both_base_4096_md=Path(args.noyau_both_base_4096_md),
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completion_docs=completion_docs,
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repo_root=repo_root,
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output_json=out_dir / "verification_c2_projective.json",
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output_md=out_dir / "verification_c2_projective.md",
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)
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if __name__ == "__main__":
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main()
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