Files
context-continuity/venv.old-py38/lib/python3.9/site-packages/PIL/_binary.py
T
Master 943acbc573 feat: referentiel projets dynamique + validation nommage by design
Durcit la convention de nommage des projets (dérive constatée : 'Sliding
Automation', 'code_versioning'... au lieu des formes canoniques).

- trilium_api.py : projets_canoniques() lit le référentiel = valeurs du label
  projet sur les notes de type=projet (source unique, pas de constante en dur).
  Note-projet CodeVersioning créée (manquait).
- mcp_server.py : _valider_projet() branché dans les 6 tools de création
  (add_decision/history/backlog, new_conversation, create_entite, add_skill).
  Refuse un projet non canonique (suggestion si faute) ou inconnu (renvoi au
  processus de création de projet). Ne verrouille pas si référentiel illisible.
- lint_audit.py : VAL-nommage aligné sur le référentiel (attrape casse, espace
  ET snake_case ; l'ancien 'contient un espace' ratait code_versioning).
- Données : 79 notes ré-étiquetées vers les 3 formes canoniques.

Quality by design : l'erreur de nommage devient impossible à l'écriture, le
Lint n'est plus que le filet de sécurité.
2026-07-17 14:59:33 +02:00

113 lines
2.5 KiB
Python

#
# The Python Imaging Library.
# $Id$
#
# Binary input/output support routines.
#
# Copyright (c) 1997-2003 by Secret Labs AB
# Copyright (c) 1995-2003 by Fredrik Lundh
# Copyright (c) 2012 by Brian Crowell
#
# See the README file for information on usage and redistribution.
#
"""Binary input/output support routines."""
from __future__ import annotations
from struct import pack, unpack_from
def i8(c: bytes) -> int:
return c[0]
def o8(i: int) -> bytes:
return bytes((i & 255,))
# Input, le = little endian, be = big endian
def i16le(c: bytes, o: int = 0) -> int:
"""
Converts a 2-bytes (16 bits) string to an unsigned integer.
:param c: string containing bytes to convert
:param o: offset of bytes to convert in string
"""
return unpack_from("<H", c, o)[0]
def si16le(c: bytes, o: int = 0) -> int:
"""
Converts a 2-bytes (16 bits) string to a signed integer.
:param c: string containing bytes to convert
:param o: offset of bytes to convert in string
"""
return unpack_from("<h", c, o)[0]
def si16be(c: bytes, o: int = 0) -> int:
"""
Converts a 2-bytes (16 bits) string to a signed integer, big endian.
:param c: string containing bytes to convert
:param o: offset of bytes to convert in string
"""
return unpack_from(">h", c, o)[0]
def i32le(c: bytes, o: int = 0) -> int:
"""
Converts a 4-bytes (32 bits) string to an unsigned integer.
:param c: string containing bytes to convert
:param o: offset of bytes to convert in string
"""
return unpack_from("<I", c, o)[0]
def si32le(c: bytes, o: int = 0) -> int:
"""
Converts a 4-bytes (32 bits) string to a signed integer.
:param c: string containing bytes to convert
:param o: offset of bytes to convert in string
"""
return unpack_from("<i", c, o)[0]
def si32be(c: bytes, o: int = 0) -> int:
"""
Converts a 4-bytes (32 bits) string to a signed integer, big endian.
:param c: string containing bytes to convert
:param o: offset of bytes to convert in string
"""
return unpack_from(">i", c, o)[0]
def i16be(c: bytes, o: int = 0) -> int:
return unpack_from(">H", c, o)[0]
def i32be(c: bytes, o: int = 0) -> int:
return unpack_from(">I", c, o)[0]
# Output, le = little endian, be = big endian
def o16le(i: int) -> bytes:
return pack("<H", i)
def o32le(i: int) -> bytes:
return pack("<I", i)
def o16be(i: int) -> bytes:
return pack(">H", i)
def o32be(i: int) -> bytes:
return pack(">I", i)