ReMe/reme2/component/file_parser/text_file_parser.py
huangsen 514bf35050
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```
docs: add ReMe2 architecture design documentation

- Add comprehensive design document (reme2.md) detailing the
  three-layer architecture (L1/L2/L3) for the vault system
- Document new protocols for folder notes and memory management
- Specify interface contracts for memory_* and vault_* tools
- Outline implementation phases from current state to target

refactor: fix typo in personal retriever class

- Correct spelling error: 'retri eved_nodes' -> 'retrieved_nodes'
  in PersonalRetriever.result assignment

chore: update gitignore with vault-related patterns

- Add '/vault' to ignore vault directory
- Add '/reme-plugin' to ignore plugin files
- Add '/reme2/vault' to ignore new vault implementation
```
2026-05-08 16:14:42 +08:00

117 lines
3.9 KiB
Python

"""Text file parser with built-in chunking."""
import hashlib
from pathlib import Path
import aiofiles
from .base_file_parser import BaseFileParser
from ..component_registry import R
from ...enumeration import FileSuffixEnum
from ...schema import FileChunk, ParsedFile
@R.register("text")
class TextFileParser(BaseFileParser):
"""Parser for text files with built-in chunking support."""
suffixes = [FileSuffixEnum.TXT]
def __init__(self, encoding: str = "utf-8", chunk_tokens: int = 400, chunk_overlap: int = 80, **kwargs):
super().__init__(**kwargs)
self.encoding = encoding
self.chunk_size = max(32, chunk_tokens * 4)
self.overlap_size = max(0, chunk_overlap * 4)
async def parse(
self,
path: str,
existing_chunks: list[FileChunk] | None = None,
) -> ParsedFile:
file_path = Path(path)
stat = file_path.stat()
absolute_path = str(file_path.absolute())
try:
async with aiofiles.open(file_path, encoding=self.encoding) as f:
content = await f.read()
except UnicodeDecodeError:
async with aiofiles.open(file_path, encoding=self.encoding, errors="ignore") as f:
content = await f.read()
except Exception:
content = ""
chunks = self._chunk(content, absolute_path) if content else []
dirty = self._hash_diff_attach(chunks, existing_chunks)
if dirty:
await self._embed_chunks(dirty)
return ParsedFile(
file=file_path.stem,
path=absolute_path,
st_mtime=stat.st_mtime,
chunks=chunks,
)
def _chunk(self, text: str, path: str) -> list[FileChunk]:
"""Split text into chunks with overlap."""
if not text.strip():
return []
lines = text.split("\n")
chunks: list[FileChunk] = []
buf: list[tuple[str, int]] = [] # (line_content, line_no)
buf_chars = 0
for line_no, line in enumerate(lines, 1):
# Split long lines into segments
for start in range(0, max(1, len(line)), self.chunk_size):
seg = line[start : start + self.chunk_size]
seg_chars = len(seg) + 1 # +1 for newline
# Flush when buffer would exceed limit
if buf and buf_chars + seg_chars > self.chunk_size:
self._flush_chunk(chunks, buf, path)
buf, buf_chars = self._carry_overlap(buf)
buf.append((seg, line_no))
buf_chars += seg_chars
if buf:
self._flush_chunk(chunks, buf, path)
return [c for c in chunks if c.text.strip()]
@staticmethod
def _flush_chunk(chunks: list[FileChunk], buf: list[tuple[str, int]], path: str):
"""Create a chunk from buffer and append to chunks list."""
chunk_text = "\n".join(content for content, _ in buf)
start_line, end_line = buf[0][1], buf[-1][1]
h = hashlib.sha256(chunk_text.encode()).hexdigest()
chunk_id = hashlib.sha256(f"{path}:{start_line}:{end_line}:{h}:{len(chunks)}".encode()).hexdigest()
chunks.append(
FileChunk(
id=chunk_id,
path=path,
start_line=start_line,
end_line=end_line,
text=chunk_text,
hash=h,
),
)
def _carry_overlap(self, buf: list[tuple[str, int]]) -> tuple[list[tuple[str, int]], int]:
"""Keep overlapping lines from the end of buffer."""
if self.overlap_size <= 0 or not buf:
return [], 0
acc, kept = 0, []
for content, line_no in reversed(buf):
acc += len(content) + 1
kept.insert(0, (content, line_no))
if acc >= self.overlap_size:
break
buf_chars = sum(len(c) + 1 for c, _ in kept)
return kept, buf_chars