mirror of
https://github.com/agentscope-ai/ReMe.git
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- Add comprehensive Markdown kernel section covering Obsidian compatibility - Include detailed explanation of YAML front matter and wikilink formats - Document smart slicing mechanism using Markdown AST instead of fixed tokens - Explain graph indexing with bidirectional links and multiple backends - Restructure sections with proper numbering from 4 to 7 - Move Markdown kernel section to appear before self-evolution features - Add detailed explanations of auto-memory, auto-dream, and auto-link processes - Document three-way hybrid search with RRF fusion and progressive expansion - Include engineering value explanations for keyword indexing in Chinese context
180 lines
7 KiB
Python
180 lines
7 KiB
Python
"""File parser with byte-based overlapping chunking."""
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import re
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from bisect import bisect_right
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from pathlib import Path
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import aiofiles
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import yaml
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from .base_file_parser import BaseFileParser
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from ..component_registry import R
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from ...schema import FileChunk, FileFrontMatter, FileLink, FileNode
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# Single-pass wikilink + optional dataview predicate.
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# Covers: [[X]] / ![[X]] / [[X#h]] / [[X|alias]] / pred:: [[X]] / [pred:: [[X]]]
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# - predicate group: optional leading '[' (dataview inline-bracket form), an identifier,
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# then '::' — the whole prefix is non-capturing-optional so bare wikilinks still match.
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# - optional '!' prefix matches the embed form (![[X]]).
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# - target / anchor / alias all forbid '\n' so a wikilink cannot span lines.
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# - alias '|...': consumed but not captured (we don't need display text).
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_LINK_RE = re.compile(
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r"(?:\[?\s*(?P<predicate>[A-Za-z][\w-]*)\s*::\s*)?"
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r"!?\[\[\s*(?P<target>[^\[\]|#\n]+?)"
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r"(?:#(?P<anchor>[^\[\]|\n]+?))?"
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r"\s*(?:\|[^\[\]\n]*?)?\s*]]",
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)
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@R.register("chunked")
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class ChunkedFileParser(BaseFileParser):
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"""Parser that splits files into byte-based overlapping chunks."""
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def __init__(self, encoding: str = "utf-8", chunk_byte_size: int = 10000, overlap_byte_size: int = 100, **kwargs):
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super().__init__(**kwargs)
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self.encoding = encoding
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self.chunk_byte_size = max(100, chunk_byte_size)
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self.overlap_byte_size = max(4, overlap_byte_size)
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@staticmethod
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def parse_links(content: str, source_path: str) -> list[FileLink]:
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"""Extract wikilinks with optional dataview predicate as outgoing FileLinks."""
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links: list[FileLink] = []
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for m in _LINK_RE.finditer(content):
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target = m["target"].strip()
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if not target:
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continue
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anchor = m["anchor"]
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links.append(
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FileLink(
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source_path=source_path,
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target_path=target,
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target_anchor=anchor.strip() if anchor else None,
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predicate=m["predicate"],
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),
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)
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return links
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@staticmethod
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def _parse_front_matter(text: str) -> tuple[FileFrontMatter, str]:
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"""Parse YAML front matter delimited by ---, return (front_matter, remaining)."""
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if not text.startswith("---"):
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return FileFrontMatter(), text
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end_idx = text.find("\n---", 3)
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if end_idx == -1:
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return FileFrontMatter(), text
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try:
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data = yaml.safe_load(text[3:end_idx].strip()) or {}
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front_matter = FileFrontMatter(**(data if isinstance(data, dict) else {}))
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except yaml.YAMLError:
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front_matter = FileFrontMatter()
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return front_matter, text[end_idx + 4 :].lstrip("\n")
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async def parse(self, path: str | Path) -> tuple[FileNode, list[FileChunk]]:
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file_path = Path(path)
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stat = file_path.stat()
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rel_path = self.to_vault_relative(path)
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async with aiofiles.open(file_path, encoding=self.encoding) as f:
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text = await f.read()
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if not text:
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return FileNode(path=rel_path, st_mtime=stat.st_mtime), []
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is_markdown = file_path.suffix.lower() == ".md"
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if is_markdown:
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front_matter, content = self._parse_front_matter(text)
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if not content:
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return FileNode(path=rel_path, st_mtime=stat.st_mtime, front_matter=front_matter), []
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links = self.parse_links(content, rel_path)
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else:
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front_matter = FileFrontMatter()
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content = text
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links = []
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chunks = self._chunk_content(content, rel_path, parse_links=is_markdown)
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chunk_ids = [c.id for c in chunks]
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return (
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FileNode(
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path=rel_path,
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st_mtime=stat.st_mtime,
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front_matter=front_matter,
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links=links,
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chunk_ids=chunk_ids,
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),
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chunks,
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)
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def _link_byte_spans(self, content: str) -> list[tuple[int, int]]:
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"""Return [start, end) byte spans of every wikilink in content."""
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spans: list[tuple[int, int]] = []
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last_char, last_byte = 0, 0
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for m in _LINK_RE.finditer(content):
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last_byte += len(content[last_char : m.start()].encode(self.encoding))
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match_bytes = len(m.group(0).encode(self.encoding))
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spans.append((last_byte, last_byte + match_bytes))
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last_byte += match_bytes
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last_char = m.end()
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return spans
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@staticmethod
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def _span_containing(
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pos: int,
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spans: list[tuple[int, int]],
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starts: list[int],
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) -> tuple[int, int] | None:
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"""Return the span strictly containing pos (s < pos < e), or None."""
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idx = bisect_right(starts, pos) - 1
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if idx < 0:
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return None
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s, e = spans[idx]
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return (s, e) if s < pos < e else None
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def _chunk_content(self, content: str, rel_path: str, parse_links: bool = True) -> list[FileChunk]:
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"""Split content into overlapping byte-range chunks, avoiding cuts inside wikilinks.
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When ``parse_links`` is False, skip wikilink span computation and boundary checks
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— used for non-markdown files where wikilink semantics don't apply.
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"""
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content_bytes = content.encode(self.encoding)
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n = len(content_bytes)
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newline_positions = [i for i, b in enumerate(content_bytes) if b == ord("\n")]
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if parse_links:
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link_spans = self._link_byte_spans(content)
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link_starts = [s for s, _ in link_spans]
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else:
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link_spans: list[tuple[int, int]] = []
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link_starts: list[int] = []
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# Refuse to retreat past half of chunk_byte_size; falls back to hard cut
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# for pathologically long links so we always make forward progress.
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min_chunk = self.chunk_byte_size // 2
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chunks: list[FileChunk] = []
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start = 0
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while start < n:
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end = min(start + self.chunk_byte_size, n)
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if end < n:
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span = self._span_containing(end, link_spans, link_starts)
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if span is not None and span[0] - start >= min_chunk:
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end = span[0]
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chunk_text = content_bytes[start:end].decode(self.encoding, errors="ignore")
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start_line = bisect_right(newline_positions, start - 1) + 1
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end_line = bisect_right(newline_positions, end - 1) + 1
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if content_bytes[end - 1] == ord("\n"):
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end_line -= 1
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chunks.append(
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FileChunk(path=rel_path, start_line=start_line, end_line=end_line, text=chunk_text).set_hash_id(),
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)
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if end >= n:
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break
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next_start = end - self.overlap_byte_size
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span = self._span_containing(next_start, link_spans, link_starts)
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if span is not None:
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next_start = span[1]
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if next_start <= start:
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next_start = end
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start = next_start
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return chunks
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