unsloth/tests/test_gradient_checkpointing_restore.py
Leo Borcherding 1dd2fc4583
tests: read checked-in files as UTF-8 instead of the platform default (#7438)
* tests: read checked-in files as UTF-8 instead of the platform default

Path.read_text() with no encoding uses locale.getpreferredencoding(), which
is UTF-8 on the Linux runners and cp1252 on a stock Windows install. Nine
module-level reads of checked-in source files were relying on that default.

studio/backend/routes/inference.py carries the DeepSeek tool-call token
regexes, so it holds U+FF5C and U+2581. Under cp1252 that read raised
UnicodeDecodeError on byte 0x81 at position 97806, and because the reads run
at import time it took test_cancel_atomicity.py and test_cancel_id_wiring.py
out at collection, not as failures. Green on CI, permanently broken for a
Windows contributor running the suite locally.

Adds a guard: at module scope there is no tmp_path fixture, so a bare
read_text()/write_text()/open() there is always touching a checked-in file.
That makes the rule mechanical enough to enforce with no allowlist, while
staying quiet about temp-dir I/O inside test bodies where the platform
default is harmless.

The repo already spells this correctly in 464 other places; this only stops
the stragglers coming back.

* tests: cover import-time helper reads and keep the guard py3.9-safe

Follows up on the Codex review:

- add `from __future__ import annotations`, since `str | None` in
  `_offender` is evaluated at import on Python 3.9 and pyproject declares
  requires-python ">=3.9,<3.15".
- widen the guard from module scope to import time. Class bodies and the
  bodies of module-level helpers called from an executing statement run
  during collection too, so `CODE = _extract_mixed_precision_code()` was
  the same hazard as an inline read. `if __name__ == "__main__":` blocks
  are skipped: pytest never executes them.
- scan studio/backend/tests/ as well as tests/. Both trees are collected
  on Windows by separate CI jobs, and the offender that started this,
  test_tool_xml_strip.py reading routes/inference.py, lives there.

Widening it surfaced seven more import-time reads of checked-in sources;
all now name utf-8.

* [pre-commit.ci] auto fixes from pre-commit.com hooks

for more information, see https://pre-commit.ci

* Harden the import-time encoding guard for PR #7438

Close the detector gaps raised in review, all of which I reproduced against
the actual AST before changing anything.

False negatives (the guard let a real hazard through):
- _is_main_guard ignored the comparison operator, so if __name__ != "__main__"
  counted as script-only even though its body runs at import.
- The else arm of a main guard was discarded with the rest of the If node.
- Decorators and argument defaults on a module-level def were skipped with the
  body, though both are evaluated when the def executes.
- Path.open() in text mode was invisible; only builtin open() was matched.
- encoding = None and encoding = "locale" both re-select the platform default,
  but the keyword merely being present counted as pinned.

False positives (the guard would have blocked a compliant contributor):
- A non-literal mode fell through to the "r" default, so open(p, mode) was
  flagged even when mode is "rb", where adding encoding= is a ValueError and
  there is no edit that satisfies the rule.
- Same for open(*args) and a **kwargs splat, which hide the mode and can hide
  an encoding.
- Lambda bodies and comprehension elements were walked even though neither runs
  at definition.

Verified: still reports the same 22 offenders on unpatched main, green on this
branch and on the tree merged with latest main (557 files), and an adversarial
corpus of 33 cases now scores zero false positives and zero false negatives.
Also corrected two docstring claims: neither collecting job runs on Windows,
and the read is governed by locale.getencoding().

* Walk eager comprehensions and treat io.open as the builtin

Two regressions from the previous commit, both reproduced against the AST
before changing anything.

Lumping list, set and dict comprehensions in with generator expressions was
wrong. Only a genexp is lazy; the other three run their element expression,
their filters and their nested iterators immediately, so
CONTENTS = [p.read_text() for p in PATHS] at module scope is an import-time
read the guard was silently missing. Comprehensions are now walked in full and
only the genexp keeps the outermost-iterable-only treatment.

io was also in the not-a-path-opener list, but io.open is the builtin, with the
same mode position and the same platform default. io.open(CHECKED_IN_FILE) is
exactly the hazard this guard exists for, so it is matched now, with binary
modes and a pinned encoding still exempt. tarfile.open and fitz.open stay
exempt since neither has an encoding to name.

Verified: 13 targeted cases covering all five eager comprehension forms and
io.open in text, binary and pinned shapes all classify correctly; still 22
offenders on unpatched main; green on this branch and on the tree merged with
latest main.

* Close three more walker gaps in the import-time guard

All three reproduced against the AST first.

A generator expression handed straight to a call is consumed there, so
DATA = "".join(p.read_text() for p in paths) runs its element at import. Only
an unconsumed genexp bound to a name stays lazy, so the walker now follows the
consumed ones in full and keeps the outermost-iterable-only treatment for the
rest.

if "__main__" == __name__ is an equivalent and accepted spelling of the main
guard, but requiring __name__ on the left meant its body was treated as
import-time code. That is a false positive on a block pytest never runs, so
both operand orders are recognised now.

The helper table was built from module-level defs only, so a def in a class
body invoked while the class is constructed was never followed, contradicting
the walker's stated coverage of class bodies. Helpers are now collected from
the module body and from class bodies at any nesting.

Verified: 15 targeted cases including all three fixes and the earlier ones
still classify correctly; still 22 offenders on unpatched main; green on this
branch and on the tree merged with latest main.

* Handle positional read_text encodings, lazy generators and nested helpers

* Guard reads reached from test bodies, unbound Path calls and __file__ paths

* [pre-commit.ci] auto fixes from pre-commit.com hooks

for more information, see https://pre-commit.ci

* Follow derived paths, skip lazy generator helpers, cover compressed openers

* Guard the CLI tests, helper parameters and unbound Path arguments

* Discover test roots and follow literal, in-place and tuple-derived paths

* Identify module openers by import, unwrap starred paths, pin subprocess snippets

* Resolve import origins, seed helper locals, follow named generators and parametrize

* Scope imports lexically, list tracked test files, bind unpacked names

* Resolve aliased openers, keyword-only params, destructured targets, next()

* Pin the encoding on subprocess snippets, workflow lint and CLI output for PR #7438

* Harden the CLI encoding guard against detached streams for PR #7438

* Tighten the encoding guard's path and scope analysis for PR #7438

* Resolve path provenance more precisely and keep POSIX stream encodings for PR #7438

* Resolve qualified path classes and scope conditional imports for PR #7438

* Scope CLI stream setup to the entry point and align two encoding pairs for PR #7438

---------

Co-authored-by: pre-commit-ci[bot] <66853113+pre-commit-ci[bot]@users.noreply.github.com>
Co-authored-by: danielhanchen <danielhanchen@gmail.com>
2026-07-26 23:31:56 -07:00

185 lines
7.6 KiB
Python

# Unsloth - 2x faster, 60% less VRAM LLM training and finetuning
# Copyright 2023-present Daniel Han-Chen, Michael Han-Chen & the Unsloth team. All rights reserved.
#
# This program is free software: you can redistribute it and/or modify
# it under the terms of the GNU Lesser General Public License as published by
# the Free Software Foundation, either version 3 of the License, or
# (at your option) any later version.
#
# This program is distributed in the hope that it will be useful,
# but WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
# GNU Lesser General Public License for more details.
"""Regression for #4735: a plain ``TrainingArguments`` silently disabling the
gradient-checkpointing (GC) mode the model was configured with at setup.
Setup records the effective GC mode as ``_unsloth_gradient_checkpointing``; the
trainer restores *that* value, falling back to ``args.gradient_checkpointing``
only when nothing was recorded. The restore lines live inside exec'd template
strings, which ``py_compile`` never sees, so these tests pull the real snippets
out of the source and execute them against fakes. GPU-free.
"""
from __future__ import annotations
import ast
import re
from pathlib import Path
_ROOT = Path(__file__).resolve().parent.parent / "unsloth" / "models"
_RL = (_ROOT / "rl.py").read_text(encoding = "utf-8")
_RL_REPLACEMENTS = (_ROOT / "rl_replacements.py").read_text(encoding = "utf-8")
# The single-line ternary form used at the trainer call sites:
# <obj>._unsloth_gradient_checkpointing if hasattr(<obj>, '...') else getattr(<args>, 'gradient_checkpointing', True)
_TERNARY = re.compile(
r"(?P<model>[\w.]+)\._unsloth_gradient_checkpointing "
r"if hasattr\((?P=model), '_unsloth_gradient_checkpointing'\) "
r"else getattr\((?P<args>[\w.]+), 'gradient_checkpointing', True\)"
)
_MISSING = object()
class _Obj:
"""Bare attribute bag; ``_unsloth_gradient_checkpointing`` present only when recorded."""
def __init__(
self,
recorded = _MISSING,
gradient_checkpointing = _MISSING,
):
if recorded is not _MISSING:
self._unsloth_gradient_checkpointing = recorded
if gradient_checkpointing is not _MISSING:
self.gradient_checkpointing = gradient_checkpointing
class _Self:
def __init__(
self,
model = None,
args = None,
):
if model is not None:
self.model = model
self.args = args
# (recorded on model, args.gradient_checkpointing, expected restored value)
# The point of the fix: a recorded mode wins over args, and a recorded ``None``
# (a valid setup value) is restored verbatim rather than collapsing to the
# args fallback the way a ``None`` sentinel would.
_MATRIX = [
("unsloth", False, "unsloth"), # the #4735 case: args=False must NOT win
(True, False, True),
(False, True, False), # user turned GC off; args=True must NOT re-enable it
(None, True, None), # explicit None is restored, not treated as "unrecorded"
(_MISSING, True, True), # nothing recorded -> fall back to args
(_MISSING, False, False),
]
def _eval_ternary(expr, recorded, args_gc):
"""Eval a restore expression that references either ``model``/``args`` or ``self.model``/``self.args``."""
model = _Obj(recorded = recorded)
args = _Obj(gradient_checkpointing = args_gc)
self = _Self(model = model, args = args)
return eval(
expr, {"hasattr": hasattr, "getattr": getattr}, {"model": model, "args": args, "self": self}
)
def test_ternary_restore_semantics():
exprs = [m.group(0) for m in _TERNARY.finditer(_RL)]
exprs += [m.group(0) for m in _TERNARY.finditer(_RL_REPLACEMENTS)]
# Also guards against the lines being deleted/renamed (which reinstates the bug).
assert len(exprs) >= 3, f"expected the 3 trainer-call restore sites, found {len(exprs)}"
for expr in exprs:
for recorded, args_gc, expected in _MATRIX:
got = _eval_ternary(expr, recorded, args_gc)
assert got == expected and type(got) is type(
expected
), f"{expr!r}: recorded={recorded!r} args={args_gc!r} -> {got!r}, expected {expected!r}"
def _extract_prepare_restore_block():
"""Pull the multi-line restore block out of ``prepare_for_training_mode``'s wrapper.
It lives inside an exec'd template string, so grab it textually: from the
``_model = getattr(self, 'model', None)`` line through the closing
``else:``/``use_gc = ...`` pair.
"""
lines = _RL.splitlines()
start = next(
i for i, l in enumerate(lines) if l.strip() == "_model = getattr(self, 'model', None)"
)
# End at the fallback assignment rather than a fixed line count, so inserting
# lines into the block can't silently truncate what gets exec'd.
end = next(
i
for i, l in enumerate(lines)
if i > start and "use_gc = getattr(self.args, 'gradient_checkpointing', True)" in l
)
block = lines[start : end + 1]
# dedent to column 0 so it execs as a top-level block
indent = len(block[0]) - len(block[0].lstrip())
return "\n".join(l[indent:] for l in block)
def test_prepare_for_training_mode_block_semantics():
block = _extract_prepare_restore_block()
# Must be valid Python (it's never seen by py_compile in the outer file).
ast.parse(block)
for recorded, args_gc, expected in _MATRIX:
model = _Obj(recorded = recorded)
args = _Obj(gradient_checkpointing = args_gc)
ns = {"self": _Self(model = model, args = args), "hasattr": hasattr, "getattr": getattr}
exec(block, {}, ns)
got = ns["use_gc"]
assert (
got == expected and type(got) is type(expected)
), f"prepare block: recorded={recorded!r} args={args_gc!r} -> {got!r}, expected {expected!r}"
def test_prepare_block_tolerates_missing_model():
# gemini flagged the unguarded self.model access: the block reads self.model via
# getattr(self, 'model', None), so a trainer without a .model attribute must fall
# back to args rather than raising AttributeError.
block = _extract_prepare_restore_block()
args = _Obj(gradient_checkpointing = True)
self_no_model = _Self(model = None, args = args) # _Self leaves .model unset when model is None
assert not hasattr(self_no_model, "model")
ns = {"self": self_no_model, "hasattr": hasattr, "getattr": getattr}
exec(block, {}, ns)
assert ns["use_gc"] is True
def test_recording_sites_are_real_module_code():
# The recording side (unlike the restore side) is real module code, not a template
# string. Assert it's present at the choke point (patch_peft_model, so loaded adapters
# are covered) and at the pre-wrapped pass-through, both of which bypass the old
# get_peft_model-only recording.
llama = (_ROOT / "llama.py").read_text(encoding = "utf-8")
tree = ast.parse(llama)
def assigns_marker(node):
return any(
isinstance(n, ast.Assign)
and any(
isinstance(t, ast.Attribute) and t.attr == "_unsloth_gradient_checkpointing"
for t in n.targets
)
for n in ast.walk(node)
)
fns = {n.name: n for n in ast.walk(tree) if isinstance(n, ast.FunctionDef)}
assert "patch_peft_model" in fns and assigns_marker(
fns["patch_peft_model"]
), "patch_peft_model must record _unsloth_gradient_checkpointing so loaded adapters are covered"
# The pass-through branch lives in get_peft_model.
assert assigns_marker(
fns["get_peft_model"]
), "get_peft_model pass-through must record _unsloth_gradient_checkpointing"