970 lines
37 KiB
Python
970 lines
37 KiB
Python
"""Unit tests for runtime_context: delegation, singletons, and override()."""
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from sglang.test.ci.ci_register import register_cpu_ci
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register_cpu_ci(est_time=5, suite="base-a-test-cpu")
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import dataclasses
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import os
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import unittest
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from unittest.mock import patch
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import sglang.srt.server_args as server_args_module
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from sglang.srt.arg_groups.arg_utils import NS, A, Arg
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from sglang.srt.runtime_context import (
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Flags,
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ParallelContext,
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RuntimeContext,
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_FlagGroupBase,
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get_context,
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get_flags,
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get_parallel,
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get_server_args,
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reset_context,
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)
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from sglang.test.test_utils import CustomTestCase
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_PS = "sglang.srt.distributed.parallel_state"
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_DP = "sglang.srt.layers.dp_attention"
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SIZE_RANK_DELEGATIONS = [
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("world_size", f"{_PS}.get_world_size"),
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("world_rank", f"{_PS}.get_world_rank"),
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("tp_size", f"{_PS}.get_tensor_model_parallel_world_size"),
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("tp_rank", f"{_PS}.get_tensor_model_parallel_rank"),
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("dcp_size", f"{_PS}.get_dcp_world_size"),
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("dcp_rank", f"{_PS}.get_dcp_rank"),
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("pp_size", f"{_PS}.get_pipeline_model_parallel_world_size"),
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("pp_rank", f"{_PS}.get_pipeline_model_parallel_rank"),
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("moe_ep_size", f"{_PS}.get_moe_expert_parallel_world_size"),
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("moe_ep_rank", f"{_PS}.get_moe_expert_parallel_rank"),
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("moe_dp_size", f"{_PS}.get_moe_data_parallel_world_size"),
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("moe_dp_rank", f"{_PS}.get_moe_data_parallel_rank"),
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("moe_tp_size", f"{_PS}.get_moe_tensor_parallel_world_size"),
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("moe_tp_rank", f"{_PS}.get_moe_tensor_parallel_rank"),
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("attn_tp_size", f"{_PS}.get_attn_tensor_model_parallel_world_size"),
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("attn_tp_rank", f"{_PS}.get_attn_tensor_model_parallel_rank"),
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("attn_cp_size", f"{_PS}.get_attn_context_model_parallel_world_size"),
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("attn_cp_rank", f"{_PS}.get_attn_context_model_parallel_rank"),
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("attn_dp_size", f"{_DP}.get_attention_dp_size"),
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("attn_dp_rank", f"{_DP}.get_attention_dp_rank"),
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]
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GROUP_DELEGATIONS = [
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("world_group", f"{_PS}.get_world_group"),
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("tp_group", f"{_PS}.get_tp_group"),
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("dcp_group", f"{_PS}.get_dcp_group"),
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("pp_group", f"{_PS}.get_pp_group"),
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("moe_ep_group", f"{_PS}.get_moe_ep_group"),
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("moe_dp_group", f"{_PS}.get_moe_dp_group"),
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("moe_tp_group", f"{_PS}.get_moe_tp_group"),
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("attn_tp_group", f"{_PS}.get_attn_tp_group"),
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("attn_cp_group", f"{_PS}.get_attn_cp_group"),
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]
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class TestRuntimeContextSingletons(CustomTestCase):
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def test_singletons(self):
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self.assertIs(get_parallel(), get_parallel())
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self.assertIsInstance(get_parallel(), ParallelContext)
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self.assertIsInstance(get_context(), RuntimeContext)
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self.assertIs(get_context().parallel, get_parallel())
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class _IsolatedOverrides(CustomTestCase):
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"""Give each test a clean override map, restoring afterward only the overrides
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installed outside it (e.g. by another test file sharing the process)."""
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def setUp(self):
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super().setUp()
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p = get_parallel()
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self._saved_overrides = dict(p._overrides)
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p._overrides.clear()
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def tearDown(self):
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p = get_parallel()
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p._overrides.clear()
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p._overrides.update(self._saved_overrides)
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super().tearDown()
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class TestParallelDelegation(_IsolatedOverrides):
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def test_size_rank_delegate_to_canonical_getters(self):
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# Patch each getter to a distinct sentinel: a miswired attribute would read
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# a different (unpatched) getter and fail.
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for i, (attr, target) in enumerate(SIZE_RANK_DELEGATIONS):
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sentinel = 1000 + i
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with patch(target, return_value=sentinel):
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self.assertEqual(
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getattr(get_parallel(), attr),
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sentinel,
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msg=f"{attr} must delegate to {target}",
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)
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def test_groups_delegate_to_canonical_getters(self):
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for attr, target in GROUP_DELEGATIONS:
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sentinel = object()
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with patch(target, return_value=sentinel):
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self.assertIs(
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getattr(get_parallel(), attr),
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sentinel,
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msg=f"{attr} must delegate to {target}",
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)
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def test_wrapper_holds_no_resolved_state(self):
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# __slots__: no __dict__; the only instance state is the override hook.
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self.assertFalse(hasattr(get_parallel(), "__dict__"))
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# tp_group IS exposed: live delegation handles PD-multiplexing / the tp patch.
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self.assertTrue(hasattr(ParallelContext, "tp_group"))
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# local_attn_dp is intentionally not part of the wrapper surface.
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self.assertFalse(hasattr(ParallelContext, "local_attn_dp_size"))
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class TestParallelOverride(_IsolatedOverrides):
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def test_override_takes_precedence(self):
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p = get_parallel()
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with p.override(tp_size=99, tp_rank=3, attn_dp_size=8):
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self.assertEqual(p.tp_size, 99)
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self.assertEqual(p.tp_rank, 3)
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self.assertEqual(p.attn_dp_size, 8)
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# same singleton: a fresh get_parallel() sees the override too
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self.assertEqual(get_parallel().tp_size, 99)
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self.assertEqual(p._overrides, {})
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def test_override_can_force_groups(self):
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sentinel = object()
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with get_parallel().override(tp_group=sentinel):
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self.assertIs(get_parallel().tp_group, sentinel)
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def test_override_nests_and_restores(self):
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p = get_parallel()
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with p.override(tp_size=2):
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self.assertEqual(p.tp_size, 2)
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with p.override(tp_size=4, pp_size=2):
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self.assertEqual(p.tp_size, 4)
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self.assertEqual(p.pp_size, 2)
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self.assertEqual(p.tp_size, 2)
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self.assertNotIn("pp_size", p._overrides)
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def test_override_unknown_key_raises_and_does_not_mutate(self):
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p = get_parallel()
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with self.assertRaises(ValueError):
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with p.override(tp_sizee=1): # typo
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pass
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self.assertEqual(p._overrides, {})
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class TestParallelDCP(_IsolatedOverrides):
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def test_attn_dcp_defaults_when_group_is_uninitialized(self):
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with (
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patch(f"{_PS}.get_dcp_group_no_assert", return_value=None),
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patch(f"{_PS}.get_dcp_world_size", side_effect=AssertionError),
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patch(f"{_PS}.get_dcp_rank", side_effect=AssertionError),
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):
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self.assertFalse(get_parallel().dcp_enabled)
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self.assertEqual(get_parallel().attn_dcp_size, 1)
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self.assertEqual(get_parallel().attn_dcp_rank, 0)
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def test_attn_dcp_delegates_when_enabled(self):
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with (
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patch(f"{_PS}.get_dcp_group_no_assert", return_value=object()),
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patch(f"{_PS}.get_dcp_world_size", return_value=8),
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patch(f"{_PS}.get_dcp_rank", return_value=3),
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):
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self.assertTrue(get_parallel().dcp_enabled)
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self.assertEqual(get_parallel().attn_dcp_size, 8)
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self.assertEqual(get_parallel().attn_dcp_rank, 3)
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def test_dcp_enablement_is_platform_agnostic(self):
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with (
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patch(f"{_PS}.get_dcp_group_no_assert", return_value=object()),
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patch("sglang.srt.utils.is_cuda", return_value=False) as is_cuda,
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patch(f"{_PS}.get_dcp_world_size", return_value=8),
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patch(f"{_PS}.get_dcp_rank", return_value=3),
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):
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self.assertTrue(get_parallel().dcp_enabled)
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self.assertEqual(get_parallel().attn_dcp_size, 8)
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self.assertEqual(get_parallel().attn_dcp_rank, 3)
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is_cuda.assert_not_called()
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class _IsolatedServerArgs(CustomTestCase):
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"""Save/restore the published ServerArgs around each test (the slot is
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process-global; another test file sharing the process may have published)."""
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def setUp(self):
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super().setUp()
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self._saved_server_args = get_context()._server_args
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def tearDown(self):
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if self._saved_server_args is None:
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reset_context()
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else:
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get_context().set_server_args(self._saved_server_args)
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super().tearDown()
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class TestServerArgsOwnership(_IsolatedServerArgs):
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"""V2b: the context owns the slot; the legacy getters are identity shims."""
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def test_legacy_setter_publishes_into_context(self):
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# Identity (not equality) is the contract; publish accepts any object.
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sentinel = object()
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server_args_module.set_global_server_args_for_scheduler(sentinel)
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self.assertIs(server_args_module.get_global_server_args(), sentinel)
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self.assertIs(get_server_args(), sentinel)
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self.assertIs(get_context().server_args, sentinel)
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def test_tokenizer_alias_is_distinct_role_shim(self):
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# Deliberately NOT an alias: the two legacy setters publish with
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# different process roles (scheduler vs tokenizer).
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self.assertIsNot(
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server_args_module.set_global_server_args_for_tokenizer,
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server_args_module.set_global_server_args_for_scheduler,
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)
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def test_pre_publish_error_verbatim(self):
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reset_context()
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for accessor in (get_server_args, server_args_module.get_global_server_args):
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with self.assertRaises(ValueError) as cm:
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accessor()
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self.assertEqual(str(cm.exception), "Global server args is not set yet!")
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def test_republish_overwrite_allowed(self):
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first, second = object(), object()
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server_args_module.set_global_server_args_for_scheduler(first)
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server_args_module.set_global_server_args_for_scheduler(second)
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self.assertIs(get_server_args(), second)
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def test_reset_context_clears_owned_store(self):
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server_args_module.set_global_server_args_for_scheduler(object())
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reset_context()
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with self.assertRaises(ValueError):
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get_server_args()
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class TestServerArgsScopedOverride(_IsolatedServerArgs):
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"""ctx.override_server_args: the config tier's scoped test override —
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tests force execution paths by overriding the context, not by
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hand-building and publishing config objects."""
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def test_install_publishes_fresh_config_with_fields(self):
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reset_context()
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override = get_context().override_server_args(
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attention_backend="triton", chunked_prefill_size=-1
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)
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published = override.install()
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self.assertIs(get_server_args(), published)
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self.assertEqual(published.attention_backend, "triton")
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self.assertEqual(published.chunked_prefill_size, -1)
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# unnamed fields keep their dataclass defaults
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self.assertEqual(published.tp_size, 1)
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def test_unknown_fields_are_rejected(self):
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with self.assertRaises(ValueError):
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get_context().override_server_args(not_a_config_field=1).install()
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def test_restore_reinstates_previous_publish(self):
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previous = object()
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get_context().set_server_args(previous)
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override = get_context().override_server_args(tp_size=8)
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override.install()
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self.assertEqual(get_server_args().tp_size, 8)
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override.restore()
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self.assertIs(get_server_args(), previous)
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def test_restore_reinstates_the_empty_slot(self):
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reset_context()
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with get_context().override_server_args():
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get_server_args() # published inside the scope
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with self.assertRaises(ValueError):
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get_server_args()
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def test_nesting_restores_in_order(self):
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reset_context()
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with get_context().override_server_args(tp_size=2) as outer:
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with get_context().override_server_args(tp_size=4):
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self.assertEqual(get_server_args().tp_size, 4)
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self.assertIs(get_server_args(), outer)
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self.assertEqual(get_server_args().tp_size, 2)
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def test_private_attribute_seeding(self):
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# Property caches (e.g. _mamba_cache_chunk_size) are seeded through
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# the same call; the strict guard exempts underscore names.
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published = (
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get_context().override_server_args(_mamba_cache_chunk_size=64).install()
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)
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self.assertEqual(published.mamba_cache_chunk_size, 64)
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def test_installed_config_arms_the_strict_guard(self):
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# The published dummy must behave like a resolved config: bare writes
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# raise.
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published = get_context().override_server_args(tp_size=2).install()
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with self.assertRaises(AttributeError):
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published.tp_size = 4
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self.assertEqual(published.tp_size, 2)
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def test_restore_resets_the_capture_seed(self):
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# install() seeds flags.capture from the published dummy; restore()
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# must put back the pre-install runtime state on both restore paths.
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reset_context()
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self.assertFalse(get_flags().capture.enable_torch_compile)
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override = get_context().override_server_args(enable_torch_compile=True)
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override.install()
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self.assertTrue(get_flags().capture.enable_torch_compile)
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override.restore()
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self.assertFalse(get_flags().capture.enable_torch_compile)
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def test_double_install_rejected(self):
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override = get_context().override_server_args()
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override.install()
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with self.assertRaises(AssertionError):
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override.install()
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def test_module_global_removed(self):
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# The legacy storage must not survive: a stale _global_server_args would
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# silently fork the config into two objects.
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self.assertFalse(hasattr(server_args_module, "_global_server_args"))
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@dataclasses.dataclass
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class _FakeCaptureGroup(_FlagGroupBase):
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gamma: int = 0
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class TestFlagsTier(_IsolatedServerArgs):
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"""Runtime-flags tier: typed groups, typo-safe writes, override primitive.
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Resolved configuration lives on server_args fields (materialized at the
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end of __post_init__); the flags tier only carries runtime state
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(today: the capture lifecycle)."""
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def test_wiring_and_groups(self):
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flags = get_flags()
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self.assertIs(flags, get_context().flags)
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self.assertIsInstance(flags, Flags)
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self.assertTrue(hasattr(flags, "capture"))
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def test_typo_safety(self):
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group = _FakeCaptureGroup()
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with self.assertRaises(AttributeError):
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group.gamma_misspelled = 2 # undeclared leaf
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with self.assertRaises(AttributeError):
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get_flags().not_a_flag = 1
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def test_override_is_transactional(self):
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group = _FakeCaptureGroup()
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with group.override(gamma=99):
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self.assertEqual(group.gamma, 99)
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self.assertEqual(group.gamma, 0)
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with self.assertRaises(ValueError):
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with group.override(gamma=2, delta=3): # delta undeclared
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pass
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self.assertEqual(group.gamma, 0) # validated before any write
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def test_reset_context_installs_fresh_flags(self):
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old = get_flags()
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old.capture.enable_torch_compile = True
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reset_context()
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self.assertIsNot(get_flags(), old)
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self.assertFalse(get_flags().capture.enable_torch_compile)
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@dataclasses.dataclass
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class _FakeResolvedArgs:
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"""Publishable fixture with a resolvable whitelist (real flat leaves)."""
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page_size: A[int | None, Arg(help="p", resolvable=True), NS("schedule")] = None
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sampling_backend: A[
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str | None, Arg(help="s", resolvable=True), NS("exec.kernel")
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] = None
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_resolved_overrides: list = dataclasses.field(default_factory=list)
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class TestMoeFlagsGroup(_IsolatedServerArgs):
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"""flags.moe: materialized by initialize_moe_config; the ACTIVE backends
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swap under the speculative contexts and restore on exit."""
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def _init(self, **kw):
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from types import SimpleNamespace
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from sglang.srt.layers.moe.utils import initialize_moe_config
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defaults = dict(
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moe_a2a_backend="none",
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moe_runner_backend="auto",
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speculative_moe_runner_backend=None,
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speculative_moe_a2a_backend=None,
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deepep_mode="auto",
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deepep_config=None,
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enable_two_batch_overlap=False,
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enable_single_batch_overlap=False,
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tbo_token_distribution_threshold=0.48,
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disable_flashinfer_cutlass_moe_fp4_allgather=False,
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quantization=None,
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disable_shared_experts_fusion=False,
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)
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defaults.update(kw)
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initialize_moe_config(SimpleNamespace(**defaults))
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def test_lazy_defaults_before_initialize(self):
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from sglang.srt.layers.moe.utils import (
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get_moe_a2a_backend,
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get_moe_runner_backend,
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is_tbo_enabled,
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)
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reset_context()
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self.assertTrue(get_moe_a2a_backend().is_none())
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self.assertEqual(get_moe_runner_backend().name, "AUTO")
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self.assertFalse(is_tbo_enabled())
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def test_initialize_materializes_group(self):
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from sglang.srt.layers.moe.utils import get_moe_a2a_backend, is_tbo_enabled
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self._init(moe_a2a_backend="deepep", enable_two_batch_overlap=True)
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self.assertTrue(get_moe_a2a_backend().is_deepep())
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self.assertTrue(is_tbo_enabled())
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self.assertEqual(get_flags().moe.deepep_config, "")
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def test_speculative_swap_and_restore(self):
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from sglang.srt.layers.moe.utils import (
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get_moe_a2a_backend,
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get_moe_runner_backend,
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speculative_moe_a2a_backend_context,
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speculative_moe_backend_context,
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)
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self._init(
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moe_a2a_backend="deepep",
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moe_runner_backend="triton",
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speculative_moe_runner_backend="auto",
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speculative_moe_a2a_backend="none",
|
|
)
|
|
with speculative_moe_backend_context(), speculative_moe_a2a_backend_context():
|
|
self.assertEqual(get_moe_runner_backend().name, "AUTO")
|
|
self.assertTrue(get_moe_a2a_backend().is_none())
|
|
# MTP layers are unquantized: fp4 allgather is forced off
|
|
self.assertTrue(get_flags().moe.disable_fp4_allgather)
|
|
self.assertEqual(get_moe_runner_backend().name, "TRITON")
|
|
self.assertTrue(get_moe_a2a_backend().is_deepep())
|
|
self.assertFalse(get_flags().moe.disable_fp4_allgather)
|
|
|
|
def test_swap_restores_on_exception(self):
|
|
from sglang.srt.layers.moe.utils import (
|
|
get_moe_runner_backend,
|
|
speculative_moe_backend_context,
|
|
)
|
|
|
|
self._init(moe_runner_backend="triton", speculative_moe_runner_backend="auto")
|
|
with self.assertRaises(RuntimeError):
|
|
with speculative_moe_backend_context():
|
|
raise RuntimeError("boom")
|
|
self.assertEqual(get_moe_runner_backend().name, "TRITON")
|
|
|
|
|
|
class TestDpFlagsGroup(_IsolatedServerArgs):
|
|
"""flags.dp: the DP-attention runtime flags; is_dp_attention_enabled is a
|
|
thin shim over the group leaf."""
|
|
|
|
def test_shim_reads_the_leaf(self):
|
|
from sglang.srt.layers.dp_attention import is_dp_attention_enabled
|
|
|
|
reset_context()
|
|
self.assertFalse(is_dp_attention_enabled())
|
|
get_flags().dp.enabled = True
|
|
self.assertTrue(is_dp_attention_enabled())
|
|
|
|
def test_scoped_override_forces_the_predicate(self):
|
|
from sglang.srt.layers.dp_attention import is_dp_attention_enabled
|
|
|
|
reset_context()
|
|
with get_flags().dp.override(enabled=True):
|
|
self.assertTrue(is_dp_attention_enabled())
|
|
self.assertFalse(is_dp_attention_enabled())
|
|
|
|
|
|
class TestResources(_IsolatedServerArgs):
|
|
"""ctx.resources: named slots for process-level resource handles with one
|
|
reset lifecycle; owning accessors keep their creation/publish semantics."""
|
|
|
|
def test_graph_pool_lazy_create_and_reuse(self):
|
|
from types import SimpleNamespace
|
|
|
|
from sglang.srt.model_executor.runner_utils.pool import (
|
|
get_global_graph_memory_pool,
|
|
get_or_create_global_graph_memory_pool,
|
|
)
|
|
|
|
reset_context()
|
|
self.assertIsNone(get_global_graph_memory_pool())
|
|
dev = SimpleNamespace(graph_pool_handle=lambda: object())
|
|
handle = get_or_create_global_graph_memory_pool(dev)
|
|
self.assertIs(get_or_create_global_graph_memory_pool(dev), handle)
|
|
|
|
def test_expert_recorder_noop_default_and_injection(self):
|
|
from sglang.srt.eplb.expert_distribution import (
|
|
get_global_expert_distribution_recorder,
|
|
)
|
|
from sglang.srt.runtime_context import get_resources
|
|
|
|
reset_context()
|
|
self.assertEqual(
|
|
type(get_global_expert_distribution_recorder()).__name__,
|
|
"_ExpertDistributionRecorderNoop",
|
|
)
|
|
with get_resources().override(expert_distribution_recorder="mock"):
|
|
self.assertEqual(get_global_expert_distribution_recorder(), "mock")
|
|
|
|
def test_expert_location_metadata_publish_once_until_reset(self):
|
|
from sglang.srt.eplb.expert_location import (
|
|
get_global_expert_location_metadata,
|
|
set_global_expert_location_metadata,
|
|
)
|
|
|
|
reset_context()
|
|
self.assertIsNone(get_global_expert_location_metadata())
|
|
set_global_expert_location_metadata("meta")
|
|
with self.assertRaises(AssertionError):
|
|
set_global_expert_location_metadata("again")
|
|
reset_context()
|
|
self.assertIsNone(get_global_expert_location_metadata())
|
|
|
|
|
|
class TestNamedStreams(_IsolatedServerArgs):
|
|
"""ctx.get_stream(name): keyed get-or-create (the persistent-buffer
|
|
pattern); set_stream installs explicitly."""
|
|
|
|
def test_get_or_create_shares_by_name(self):
|
|
from unittest.mock import patch
|
|
|
|
reset_context()
|
|
created = []
|
|
|
|
class _FakeStream:
|
|
def __init__(self):
|
|
created.append(self)
|
|
|
|
with patch("torch.cuda.Stream", _FakeStream):
|
|
a = get_context().get_stream("alt")
|
|
b = get_context().get_stream("alt")
|
|
c = get_context().get_stream("other")
|
|
self.assertIs(a, b)
|
|
self.assertIsNot(a, c)
|
|
self.assertEqual(len(created), 2)
|
|
|
|
def test_get_buffer_keyed_lazy(self):
|
|
reset_context()
|
|
created = []
|
|
|
|
def factory():
|
|
created.append(object())
|
|
return created[-1]
|
|
|
|
a = get_context().get_buffer("ws", factory)
|
|
b = get_context().get_buffer("ws", factory)
|
|
self.assertIs(a, b)
|
|
self.assertEqual(len(created), 1)
|
|
self.assertIsNot(get_context().get_buffer("other", factory), a)
|
|
|
|
def test_set_stream_installs_explicitly(self):
|
|
reset_context()
|
|
sentinel = object()
|
|
get_context().set_stream("alt", sentinel)
|
|
self.assertIs(get_context().get_stream("alt"), sentinel)
|
|
|
|
def test_reset_clears_the_registry(self):
|
|
reset_context()
|
|
get_context().set_stream("alt", object())
|
|
reset_context()
|
|
self.assertEqual(get_context().resources.streams, {})
|
|
|
|
def test_capturer_slots_roundtrip_and_reset(self):
|
|
from sglang.srt.state_capturer.indexer_topk import (
|
|
get_global_indexer_capturer,
|
|
set_global_indexer_capturer,
|
|
)
|
|
from sglang.srt.state_capturer.routed_experts import (
|
|
get_global_experts_capturer,
|
|
set_global_experts_capturer,
|
|
)
|
|
|
|
reset_context()
|
|
self.assertIsNone(get_global_indexer_capturer())
|
|
self.assertIsNone(get_global_experts_capturer())
|
|
indexer, experts = object(), object()
|
|
set_global_indexer_capturer(indexer)
|
|
set_global_experts_capturer(experts)
|
|
self.assertIs(get_global_indexer_capturer(), indexer)
|
|
self.assertIs(get_global_experts_capturer(), experts)
|
|
reset_context()
|
|
self.assertIsNone(get_global_indexer_capturer())
|
|
self.assertIsNone(get_global_experts_capturer())
|
|
|
|
def test_tcp_store_slot_roundtrip_and_reset(self):
|
|
from sglang.srt.distributed.utils import (
|
|
get_global_tcp_store,
|
|
set_global_tcp_store,
|
|
)
|
|
|
|
reset_context()
|
|
self.assertIsNone(get_global_tcp_store())
|
|
store = object()
|
|
set_global_tcp_store(store)
|
|
self.assertIs(get_global_tcp_store(), store)
|
|
reset_context()
|
|
self.assertIsNone(get_global_tcp_store())
|
|
|
|
def test_trace_level_env_seeded_lazy_default(self):
|
|
from sglang.srt.observability.trace import (
|
|
get_global_trace_level,
|
|
set_global_trace_level,
|
|
)
|
|
|
|
reset_context()
|
|
with patch.dict(os.environ, {}, clear=False):
|
|
os.environ.pop("SGLANG_TRACE_LEVEL", None)
|
|
self.assertEqual(get_global_trace_level(), 3)
|
|
set_global_trace_level(5)
|
|
self.assertEqual(get_global_trace_level(), 5)
|
|
reset_context()
|
|
with patch.dict(os.environ, {"SGLANG_TRACE_LEVEL": "1"}):
|
|
self.assertEqual(get_global_trace_level(), 1)
|
|
|
|
|
|
class TestEpBufferState(_IsolatedServerArgs):
|
|
"""EP dispatcher buffer managers: state lives on ctx.resources; the
|
|
facade keeps the mode-transition and clean semantics."""
|
|
|
|
def test_deepep_dispatch_mode_transitions_and_reset(self):
|
|
try:
|
|
from sglang.srt.layers.moe.token_dispatcher.deepep import DeepEPBuffer
|
|
except ImportError:
|
|
self.skipTest("deep_ep not installed")
|
|
|
|
reset_context()
|
|
cleans = []
|
|
|
|
class _FakeBuffer:
|
|
low_latency_mode = True
|
|
|
|
def clean_low_latency_buffer(self, *args):
|
|
cleans.append(args)
|
|
|
|
state = DeepEPBuffer._state()
|
|
state.buffer = _FakeBuffer()
|
|
state.hidden_size = 7168
|
|
state.num_max_dispatch_tokens_per_rank = 128
|
|
state.num_experts = 256
|
|
|
|
DeepEPBuffer.set_dispatch_mode_as_normal()
|
|
# NORMAL -> LOW_LATENCY must clean the low-latency buffer once.
|
|
DeepEPBuffer.set_dispatch_mode_as_low_latency()
|
|
self.assertEqual(cleans, [(128, 7168, 256)])
|
|
# LOW_LATENCY -> LOW_LATENCY must not clean again.
|
|
DeepEPBuffer.set_dispatch_mode_as_low_latency()
|
|
self.assertEqual(len(cleans), 1)
|
|
|
|
reset_context()
|
|
self.assertIsNone(DeepEPBuffer._state().buffer)
|
|
|
|
|
|
class TestForwardFlags(_IsolatedServerArgs):
|
|
"""ctx.forward: contextvar-backed per-forward flags; scoped() restores,
|
|
threads see defaults."""
|
|
|
|
def test_scoped_set_restore_and_nesting(self):
|
|
from sglang.srt.runtime_context import get_forward
|
|
|
|
reset_context()
|
|
fwd = get_forward()
|
|
self.assertFalse(fwd.multi_stream)
|
|
with fwd.scoped(multi_stream=True):
|
|
self.assertTrue(fwd.multi_stream)
|
|
with fwd.scoped(multi_stream=False):
|
|
self.assertFalse(fwd.multi_stream)
|
|
self.assertTrue(fwd.multi_stream)
|
|
self.assertFalse(fwd.multi_stream)
|
|
|
|
def test_scoped_restores_on_exception_and_validates_keys(self):
|
|
from sglang.srt.runtime_context import get_forward
|
|
|
|
reset_context()
|
|
fwd = get_forward()
|
|
with self.assertRaises(RuntimeError):
|
|
with fwd.scoped(moe_output_buffer="buf"):
|
|
raise RuntimeError("boom")
|
|
self.assertIsNone(fwd.moe_output_buffer)
|
|
with self.assertRaises(ValueError):
|
|
with fwd.scoped(nope=1):
|
|
pass
|
|
with self.assertRaises(AttributeError):
|
|
fwd.multi_stream = True # attribute writes are rejected
|
|
|
|
def test_threads_see_defaults(self):
|
|
import threading
|
|
|
|
from sglang.srt.runtime_context import get_forward
|
|
|
|
reset_context()
|
|
fwd = get_forward()
|
|
seen = {}
|
|
with fwd.scoped(multi_stream=True):
|
|
|
|
def probe():
|
|
seen["value"] = get_forward().multi_stream
|
|
|
|
worker = threading.Thread(target=probe)
|
|
worker.start()
|
|
worker.join()
|
|
self.assertFalse(seen["value"]) # a new thread sees the default
|
|
|
|
def test_graph_visible_flags_trace_under_torch_compile(self):
|
|
# Regression: dynamo cannot trace ContextVar.get, and these flags are
|
|
# read inside compiled model code (vocab embedding, communicator, DP
|
|
# gather) — they must stay plain-slot backed. fullgraph=True turns
|
|
# any graph break back into a failure.
|
|
import torch
|
|
|
|
from sglang.srt.runtime_context import get_forward
|
|
|
|
reset_context()
|
|
|
|
@torch.compile(fullgraph=True, backend="eager", dynamic=False)
|
|
def probe(x):
|
|
fwd = get_forward()
|
|
if fwd.attn_input_scattered:
|
|
x = x + 1
|
|
if fwd.is_extend_in_batch:
|
|
x = x + 2
|
|
if fwd.fuse_mlp_allreduce:
|
|
x = x + 4
|
|
if fwd.mlp_reduce_scatter:
|
|
x = x + 8
|
|
if fwd.flashinfer_trtllm_bypass:
|
|
x = x + 16
|
|
return x
|
|
|
|
self.assertEqual(probe(torch.zeros(())).item(), 0)
|
|
with get_forward().scoped(attn_input_scattered=True):
|
|
self.assertEqual(probe(torch.zeros(())).item(), 1)
|
|
get_forward().set("is_extend_in_batch", True)
|
|
self.assertEqual(probe(torch.zeros(())).item(), 2)
|
|
get_forward().set("is_extend_in_batch", False)
|
|
with get_forward().scoped(
|
|
fuse_mlp_allreduce=True,
|
|
mlp_reduce_scatter=True,
|
|
flashinfer_trtllm_bypass=True,
|
|
):
|
|
self.assertEqual(probe(torch.zeros(())).item(), 28)
|
|
self.assertEqual(probe(torch.zeros(())).item(), 0)
|
|
|
|
def test_parallel_config_leaves_trace_under_torch_compile(self):
|
|
# Regression: parallel config leaves resolve through
|
|
# ``ParallelContext.__getattr__`` (the bag fallback), and gate helpers
|
|
# such as ``enable_moe_dense_fully_dp()`` read them inside compiled
|
|
# model forwards — the fallback body must stay dynamo-traceable
|
|
# (``object.__getattribute__`` graph-breaks). fullgraph=True turns any
|
|
# graph break back into a failure.
|
|
import torch
|
|
|
|
from sglang.srt.runtime_context import get_parallel
|
|
|
|
reset_context()
|
|
with get_context().override_server_args(moe_dense_tp_size=1, dwdp_size=4):
|
|
|
|
@torch.compile(fullgraph=True, backend="eager", dynamic=False)
|
|
def probe(x):
|
|
par = get_parallel()
|
|
if par.enable_prefill_context_parallel:
|
|
x = x + 1
|
|
if par.moe_dense_tp_size == 1:
|
|
x = x + 2
|
|
if par.dwdp_size > 1:
|
|
x = x + 4
|
|
return x
|
|
|
|
self.assertEqual(probe(torch.zeros(())).item(), 6)
|
|
|
|
def test_graph_visible_flags_are_process_visible_across_threads(self):
|
|
# Documented divergence from the contextvar-backed flags: plain slots
|
|
# are process-global (the storage form these flags had before the
|
|
# tier), so another thread sees the current value, not the default.
|
|
import threading
|
|
|
|
from sglang.srt.runtime_context import get_forward
|
|
|
|
reset_context()
|
|
seen = {}
|
|
with get_forward().scoped(attn_input_scattered=True):
|
|
|
|
def probe():
|
|
seen["value"] = get_forward().attn_input_scattered
|
|
|
|
worker = threading.Thread(target=probe)
|
|
worker.start()
|
|
worker.join()
|
|
self.assertTrue(seen["value"])
|
|
self.assertFalse(get_forward().attn_input_scattered)
|
|
|
|
def test_multi_stream_shims(self):
|
|
from sglang.srt.utils.multi_stream_utils import (
|
|
do_multi_stream,
|
|
with_multi_stream,
|
|
)
|
|
|
|
reset_context()
|
|
self.assertFalse(do_multi_stream())
|
|
with with_multi_stream(True):
|
|
self.assertTrue(do_multi_stream())
|
|
self.assertFalse(do_multi_stream())
|
|
|
|
def test_attn_tp_context_per_forward_slots(self):
|
|
from types import SimpleNamespace
|
|
|
|
from sglang.srt.layers.communicator import get_attn_tp_context
|
|
from sglang.srt.runtime_context import get_forward
|
|
|
|
reset_context()
|
|
ctx = get_attn_tp_context()
|
|
self.assertFalse(ctx.input_scattered)
|
|
fb = SimpleNamespace(
|
|
forward_mode=SimpleNamespace(
|
|
is_extend=lambda: False, is_target_verify=lambda: False
|
|
),
|
|
input_ids=None,
|
|
can_run_tbo=False,
|
|
)
|
|
sentinel = SimpleNamespace(fetch_qkv_latent=lambda: "qkv")
|
|
with ctx.maybe_input_scattered(fb):
|
|
ctx.set_attn_inputs(sentinel)
|
|
self.assertEqual(ctx.fetch_qkv_latent(), "qkv")
|
|
# attn inputs are cleared at scope exit, flag restored
|
|
self.assertIsNone(get_forward().attn_inputs)
|
|
self.assertFalse(ctx.input_scattered)
|
|
|
|
def test_dp_buffer_state_split(self):
|
|
import torch
|
|
|
|
from sglang.srt.layers.dp_attention import _DpGatheredBufferWrapper as wrapper
|
|
from sglang.srt.layers.dp_attention import (
|
|
get_dp_dtype,
|
|
get_dp_global_num_tokens,
|
|
get_global_dp_buffer_len,
|
|
is_dp_max_padding,
|
|
set_dp_buffer_len,
|
|
)
|
|
|
|
reset_context()
|
|
# metadata is init-static (flags.dp); sizing is per-forward sticky
|
|
wrapper.set_metadata(64, torch.float16, torch.device("cpu"))
|
|
self.assertEqual(get_dp_dtype(), torch.float16)
|
|
set_dp_buffer_len(128, 32, True, [64, 64])
|
|
self.assertEqual(get_global_dp_buffer_len(), 128)
|
|
self.assertTrue(is_dp_max_padding())
|
|
self.assertEqual(get_dp_global_num_tokens(), [64, 64])
|
|
set_dp_buffer_len(256, 64, False) # sticky until the next write
|
|
self.assertEqual(get_global_dp_buffer_len(), 256)
|
|
self.assertFalse(is_dp_max_padding())
|
|
self.assertIsNone(get_dp_global_num_tokens())
|
|
reset_context()
|
|
self.assertIsNone(get_dp_dtype())
|
|
|
|
def test_is_extend_in_batch_sticky_within_thread(self):
|
|
from sglang.srt.layers.dp_attention import (
|
|
get_is_extend_in_batch,
|
|
set_is_extend_in_batch,
|
|
)
|
|
|
|
reset_context()
|
|
self.assertFalse(get_is_extend_in_batch())
|
|
set_is_extend_in_batch(True)
|
|
self.assertTrue(get_is_extend_in_batch()) # sticky until next write
|
|
set_is_extend_in_batch(False)
|
|
self.assertFalse(get_is_extend_in_batch())
|
|
|
|
def test_moe_output_buffer_ctx(self):
|
|
from sglang.srt.layers.moe.moe_runner.base import moe_output_buffer_ctx
|
|
from sglang.srt.runtime_context import get_forward
|
|
|
|
reset_context()
|
|
sentinel = object()
|
|
with moe_output_buffer_ctx(sentinel):
|
|
self.assertIs(get_forward().moe_output_buffer, sentinel)
|
|
self.assertIsNone(get_forward().moe_output_buffer)
|
|
|
|
def test_mlp_comm_forward_flags(self):
|
|
"""Decoder-published MLP collective flags: scoped restore + skip helpers."""
|
|
from sglang.srt.layers.moe.utils import (
|
|
should_skip_mlp_all_reduce,
|
|
should_skip_post_experts_all_reduce,
|
|
)
|
|
from sglang.srt.runtime_context import get_forward
|
|
|
|
reset_context()
|
|
fwd = get_forward()
|
|
self.assertFalse(fwd.fuse_mlp_allreduce)
|
|
self.assertFalse(fwd.mlp_reduce_scatter)
|
|
self.assertFalse(fwd.flashinfer_trtllm_bypass)
|
|
self.assertFalse(should_skip_mlp_all_reduce())
|
|
|
|
with fwd.scoped(fuse_mlp_allreduce=True):
|
|
self.assertTrue(fwd.fuse_mlp_allreduce)
|
|
self.assertTrue(should_skip_mlp_all_reduce())
|
|
# Fusion alone is enough to skip post-experts AR.
|
|
self.assertTrue(should_skip_post_experts_all_reduce(is_tp_path=True))
|
|
self.assertFalse(fwd.fuse_mlp_allreduce)
|
|
self.assertFalse(should_skip_mlp_all_reduce())
|
|
|
|
with fwd.scoped(mlp_reduce_scatter=True):
|
|
self.assertTrue(fwd.mlp_reduce_scatter)
|
|
self.assertTrue(should_skip_mlp_all_reduce())
|
|
self.assertFalse(fwd.mlp_reduce_scatter)
|
|
|
|
with fwd.scoped(flashinfer_trtllm_bypass=True):
|
|
self.assertTrue(fwd.flashinfer_trtllm_bypass)
|
|
self.assertFalse(fwd.flashinfer_trtllm_bypass)
|
|
|
|
def test_dp_reduce_scatterv_requires_single_rank_attention_dp_shards(self):
|
|
from sglang.srt.layers.moe.utils import should_use_dp_reduce_scatterv
|
|
|
|
reset_context()
|
|
with patch(
|
|
"sglang.srt.layers.moe.utils.is_dp_attention_enabled",
|
|
return_value=True,
|
|
):
|
|
# The optimized path is valid when the collective group and the
|
|
# variable-split list have the same number of entries.
|
|
with get_parallel().override(tp_size=8, attn_dp_size=8, moe_ep_size=8):
|
|
self.assertTrue(should_use_dp_reduce_scatterv())
|
|
|
|
# Otherwise the standard all-reduce plus scatter path must be used.
|
|
with get_parallel().override(tp_size=8, attn_dp_size=2, moe_ep_size=2):
|
|
self.assertFalse(should_use_dp_reduce_scatterv())
|
|
|
|
|
|
class TestPublishLifecycle(_IsolatedServerArgs):
|
|
"""Publish installs the resolved server_args and seeds the capture tier."""
|
|
|
|
def _publish(self, **kw):
|
|
args = _FakeResolvedArgs(**kw)
|
|
get_context().set_server_args(args)
|
|
return args
|
|
|
|
def test_capture_tier_seeded_at_publish(self):
|
|
args = self._publish(page_size=1)
|
|
args.enable_torch_compile = True
|
|
get_context().set_server_args(args) # re-publish picks up the value
|
|
self.assertTrue(get_flags().capture.enable_torch_compile)
|
|
# capture-time write (B4) targets the capture leaf
|
|
get_flags().capture.enable_torch_compile = False
|
|
self.assertFalse(get_flags().capture.enable_torch_compile)
|
|
|
|
def test_capture_tier_defaults_for_sentinel_publish(self):
|
|
get_context().set_server_args(object())
|
|
self.assertFalse(get_flags().capture.enable_torch_compile)
|
|
|
|
|
|
if __name__ == "__main__":
|
|
unittest.main()
|