217 lines
7.8 KiB
Python
217 lines
7.8 KiB
Python
import os
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import sys
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import tempfile
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from os.path import abspath, dirname
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import torch
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from . import external_utils
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from .logging import get_loggers_level, set_loggers_level
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# log level (levels print what it says + all levels listed below it)
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# logging.DEBUG print full traces <-- lowest level + print tracing of every instruction
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# logging.INFO print the steps that dynamo is running and optionally, compiled functions + graphs
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# logging.WARN print warnings (including graph breaks)
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# logging.ERROR print exceptions (and what user code was being processed when it occurred)
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log_level = property(
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lambda _: get_loggers_level(), lambda _, lvl: set_loggers_level(lvl)
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)
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# log compiled function + graphs at level INFO
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output_code = False
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# the name of a file to write the logs to
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log_file_name = None
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# Verbose will print full stack traces on warnings and errors
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verbose = False
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# If true, traced graph outputs will be outputted as Python GraphModule code.
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# If false, traced graph outputs will be outputted in tabular form.
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output_graph_code = False
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# verify the correctness of optimized backend
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verify_correctness = False
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# need this many ops to create an FX graph
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minimum_call_count = 1
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# turn on/off DCE pass
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dead_code_elimination = True
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# disable (for a function) when cache reaches this size
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cache_size_limit = 64
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# specializing int/float by default
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specialize_int_float = True
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# Assume these functions return constants
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constant_functions = {
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torch.jit.is_scripting: False,
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torch.jit.is_tracing: False,
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torch._C._get_tracing_state: None,
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torch.fx._symbolic_trace.is_fx_tracing: False,
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torch.onnx.is_in_onnx_export: False,
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external_utils.is_compiling: True,
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torch._utils.is_compiling: True,
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}
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# don't specialize on shapes and strides and put shape ops in graph
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dynamic_shapes = os.environ.get("TORCHDYNAMO_DYNAMIC_SHAPES") == "1"
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# Set this to False to assume nn.Modules() contents are immutable (similar assumption as freezing)
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guard_nn_modules = False
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# This feature doesn't really work. We offer this flag for experimental
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# purposes / if you want to help us build out support.
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#
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# torchdynamo has very limited support for tensor subclasses that implement
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# __torch_function__. Our current support is limited to tensor subclasses
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# that DO NOT store metadata on the tensor (in general, dynamo does not
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# support Python code that stores extra attributes on tensors at present).
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# If your tensor subclass purely changes function call behavior via
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# __torch_function__, you can allow torchdynamo to trace into it by
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# adding it to traceable_tensor_subclasses. We don't do any safety checks,
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# so it is up to you to ensure that your subclass is well behaved. See also
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# https://github.com/pytorch/torchdynamo/issues/1948
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#
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# We do NOT currently support __torch_dispatch__. The implementation is
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# currently buggy, the main show stopper for nontrivial use is
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# https://github.com/pytorch/torchdynamo/issues/1952
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traceable_tensor_subclasses = set()
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# Suppress errors in torch._dynamo.optimize, instead forcing a fallback to eager.
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# This is a good way to get your model to work one way or another, but you may
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# lose optimization opportunities this way. Devs, if your benchmark model is failing
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# this way, you should figure out why instead of suppressing it.
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suppress_errors = bool(os.environ.get("TORCHDYNAMO_SUPPRESS_ERRORS", False))
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# Record and write an execution record of the current frame to a file
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# if an exception is encountered
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replay_record_enabled = bool(os.environ.get("TORCH_COMPILE_DEBUG", False))
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# Rewrite assert statement in python with torch._assert
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rewrite_assert_with_torch_assert = True
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# Show a warning on every graph break
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print_graph_breaks = False
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# Disable dynamo
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disable = os.environ.get("TORCH_COMPILE_DISABLE", False)
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# If a PyTorch module is in this allowlist, torchdynamo will be allowed
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# to inline objects from it or its children.
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skipfiles_inline_module_allowlist = {
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torch.nn,
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torch.distributions,
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torch.testing,
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torch.ao.nn,
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torch._refs,
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torch._prims,
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torch._decomp,
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}
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# If a string representing a PyTorch module is in this ignorelist,
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# the `allowed_functions.is_allowed` function will not consider it
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# when creating a list of PyTorch functions that will appear in
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# FX IR.
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allowed_functions_module_string_ignorelist = {
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"torch.distributions",
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"torch.testing",
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"torch._refs",
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"torch._prims",
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"torch._decomp",
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}
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# Debug Flag to try minifier at different stages. Possible values are {None, "aot", "dynamo"}
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# None - Minifier is switched off
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# dynamo - Runs minifier on the TorchDynamo produced graphs, if compilation fails
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# aot - Runs minifier on the Aot Autograd produced graphs, if compilation fails
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repro_after = os.environ.get("TORCHDYNAMO_REPRO_AFTER", None)
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# Compiler compilation debug info
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# 1: Dumps the original graph out to repro.py if compilation fails
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# 2: Dumps a minifier_launcher.py if compilation fails.
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# 3: Always dumps a minifier_laucher.py. Good for segfaults.
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# 4: Dumps a minifier_launcher.py if the accuracy fails.
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repro_level = int(os.environ.get("TORCHDYNAMO_REPRO_LEVEL", 2))
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# By default, we try to detect accuracy failure by running both forward
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# and backward of a torchdynamo produced graph (if you are using repro_after
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# 'dynamo'). This setting forces us to only test the forward graph and
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# not the backward graph. This can be helpful if you're trying to debug
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# an inference only problem, but the minifier seems to be choking on the
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# backwards step
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# TODO: Detect this situation automatically so the user doesn't need
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# to manually configure this
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repro_forward_only = os.environ.get("TORCHDYNAMO_REPRO_FORWARD_ONLY") == "1"
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# The tolerance we should use when testing if a compiled graph
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# has diverged so that we should treat it as an accuracy failure
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repro_tolerance = 1e-3
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# Not all backends support scalars. Some calls on torch.Tensor (like .item()) return a scalar type.
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# When this flag is set to False, we introduce a graph break instead of capturing.
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# This requires dynamic_shapes to be True.
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capture_scalar_outputs = False
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# Should almost always be true in prod. This relaxes the requirement that cond's true_fn and
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# false_fn produces code with identical guards.
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enforce_cond_guards_match = True
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# Automatically split model graph into pieces to match DDP bucket sizes
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# to allow DDP comm/compute overlap. Disable to allow DDP models to
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# run without graph-breaks, but also without comm/compute overlap.
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# set torch._dynamo.config.log_level to INFO or DEBUG for more info
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# about optimize_ddp behavior.
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optimize_ddp = True
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# If True, raises exception if TorchDynamo is called with a context manager
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raise_on_ctx_manager_usage = True
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# If True, raise when aot autograd is unsafe to use
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raise_on_unsafe_aot_autograd = False
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# Throw an error if backend changes without reset
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raise_on_backend_change = False
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# If true, error with a better message if we symbolically trace over a
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# dynamo-optimized function. If false, silently suppress dynamo.
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error_on_nested_fx_trace = True
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# Disables graph breaking on rnn. YMMV with backends.
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allow_rnn = False
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# root folder of the project
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base_dir = dirname(dirname(dirname(abspath(__file__))))
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def is_fbcode():
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return not hasattr(torch.version, "git_version")
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if is_fbcode():
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debug_dir_root = os.path.join(tempfile.gettempdir(), "torch_compile_debug")
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else:
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debug_dir_root = os.path.join(os.getcwd(), "torch_compile_debug")
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# this is to resolve a import problem in fbcode, we will be deleting
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# this very shortly
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DO_NOT_USE_legacy_non_fake_example_inputs = False
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_save_config_ignore = {
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"repro_after",
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"repro_level",
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# workaround: "cannot pickle PyCapsule"
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"constant_functions",
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# workaround: "cannot pickle module"
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"skipfiles_inline_module_allowlist",
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}
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from .config_utils import install_config_module
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install_config_module(sys.modules[__name__])
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