[CI] Move existing unit tests into unit directory (#20631)
This commit is contained in:
@@ -1,356 +0,0 @@
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"""
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Unit tests for ModelOpt export functionality in SGLang.
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These tests verify the integration of ModelOpt export API with SGLang's model loading
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and quantization workflow.
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"""
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import json
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import os
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import tempfile
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import unittest
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from unittest.mock import Mock, patch
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import torch
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from sglang.srt.configs.device_config import DeviceConfig
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from sglang.srt.configs.load_config import LoadConfig
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from sglang.srt.configs.model_config import ModelConfig
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from sglang.srt.model_loader.loader import ModelOptModelLoader
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from sglang.test.ci.ci_register import register_amd_ci, register_cuda_ci
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register_cuda_ci(est_time=9, suite="stage-b-test-large-1-gpu")
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register_amd_ci(est_time=9, suite="stage-b-test-small-1-gpu-amd")
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# Note: PYTHONPATH=python should be set when running tests
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# Check if modelopt is available
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try:
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import modelopt # noqa: F401
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MODELOPT_AVAILABLE = True
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except ImportError:
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MODELOPT_AVAILABLE = False
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class TestModelOptExport(unittest.TestCase):
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"""Test suite for ModelOpt export functionality."""
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def setUp(self):
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"""Set up test fixtures."""
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# Mock distributed functionality to avoid initialization errors
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self.mock_tp_rank = patch(
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"sglang.srt.distributed.parallel_state.get_tensor_model_parallel_rank",
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return_value=0,
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)
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self.mock_tp_rank.start()
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self.mock_rank0_log = patch("sglang.srt.model_loader.loader.rank0_log")
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self.mock_rank0_log.start()
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# Mock logger to avoid issues
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self.mock_logger = patch("sglang.srt.model_loader.loader.logger")
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self.mock_logger.start()
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# Mock all distributed functions that might be called
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self.mock_get_tp_group = patch(
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"sglang.srt.distributed.parallel_state.get_tp_group"
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)
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self.mock_get_tp_group.start()
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# Mock model parallel initialization check
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self.mock_mp_is_initialized = patch(
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"sglang.srt.distributed.parallel_state.model_parallel_is_initialized",
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return_value=True,
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)
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self.mock_mp_is_initialized.start()
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self.temp_dir = tempfile.mkdtemp()
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self.export_dir = os.path.join(self.temp_dir, "exported_model")
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self.checkpoint_dir = os.path.join(self.temp_dir, "checkpoint")
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# Mock model
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self.mock_model = Mock(spec=torch.nn.Module)
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self.mock_model.device = torch.device("cuda:0")
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# Mock tokenizer
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self.mock_tokenizer = Mock()
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# Mock quantization config
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self.mock_quant_cfg = Mock()
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# Create ModelOptModelLoader instance
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self.load_config = LoadConfig()
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self.model_loader = ModelOptModelLoader(self.load_config)
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def tearDown(self):
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"""Clean up test fixtures."""
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import shutil
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shutil.rmtree(self.temp_dir, ignore_errors=True)
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# Stop mocks
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self.mock_tp_rank.stop()
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self.mock_rank0_log.stop()
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self.mock_logger.stop()
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self.mock_get_tp_group.stop()
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self.mock_mp_is_initialized.stop()
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def _create_mock_export_files(self, export_dir: str):
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"""Create mock export files for testing validation."""
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os.makedirs(export_dir, exist_ok=True)
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# Create config.json
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config = {
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"model_type": "test_model",
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"architectures": ["TestModel"],
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"quantization_config": {
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"quant_method": "modelopt",
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"bits": 8,
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},
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}
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with open(os.path.join(export_dir, "config.json"), "w") as f:
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json.dump(config, f)
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# Create tokenizer_config.json
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tokenizer_config = {"tokenizer_class": "TestTokenizer"}
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with open(os.path.join(export_dir, "tokenizer_config.json"), "w") as f:
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json.dump(tokenizer_config, f)
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# Create model file
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with open(os.path.join(export_dir, "model.safetensors"), "w") as f:
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f.write("mock_model_data")
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@unittest.skipIf(not MODELOPT_AVAILABLE, "nvidia-modelopt not available")
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@patch("sglang.srt.model_loader.loader.os.makedirs")
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@patch("modelopt.torch.export.export_hf_checkpoint")
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def test_export_modelopt_checkpoint_success(self, mock_export, mock_makedirs):
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"""Test successful model export."""
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# Arrange
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mock_export.return_value = None
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mock_makedirs.return_value = None
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# Act
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self.model_loader._export_modelopt_checkpoint(self.mock_model, self.export_dir)
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# Assert
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mock_makedirs.assert_called_once_with(self.export_dir, exist_ok=True)
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mock_export.assert_called_once_with(self.mock_model, export_dir=self.export_dir)
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@unittest.skipIf(not MODELOPT_AVAILABLE, "nvidia-modelopt not available")
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@patch("modelopt.torch.opt.restore")
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@patch("modelopt.torch.quantization.utils.is_quantized")
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def test_setup_quantization_with_export_from_checkpoint(
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self, mock_is_quantized, mock_restore
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):
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"""Test export functionality when restoring from checkpoint."""
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# Arrange
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mock_is_quantized.return_value = False
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mock_restore.return_value = None
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with patch.object(
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self.model_loader, "_export_modelopt_checkpoint"
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) as mock_export:
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# Act
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self.model_loader._setup_modelopt_quantization(
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self.mock_model,
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self.mock_tokenizer,
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self.mock_quant_cfg,
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quantized_ckpt_restore_path=self.checkpoint_dir,
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export_path=self.export_dir,
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)
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# Assert
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mock_restore.assert_called_once_with(self.mock_model, self.checkpoint_dir)
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mock_export.assert_called_once_with(self.mock_model, self.export_dir, None)
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@unittest.skipIf(not MODELOPT_AVAILABLE, "nvidia-modelopt not available")
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@patch("modelopt.torch.quantization.quantize")
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@patch("modelopt.torch.quantization.print_quant_summary")
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@patch("modelopt.torch.quantization.utils.is_quantized")
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@patch("modelopt.torch.utils.dataset_utils.get_dataset_dataloader")
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@patch("modelopt.torch.utils.dataset_utils.create_forward_loop")
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def test_setup_quantization_with_export_after_calibration(
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self,
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mock_create_loop,
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mock_get_dataloader,
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mock_is_quantized,
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mock_print_summary,
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mock_quantize,
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):
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"""Test export functionality after calibration-based quantization."""
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# Arrange
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mock_is_quantized.return_value = False
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mock_dataloader = Mock()
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mock_get_dataloader.return_value = mock_dataloader
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mock_calibrate_loop = Mock()
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mock_create_loop.return_value = mock_calibrate_loop
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mock_quantize.return_value = None
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mock_print_summary.return_value = None
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with patch.object(
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self.model_loader, "_export_modelopt_checkpoint"
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) as mock_export:
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# Act
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self.model_loader._setup_modelopt_quantization(
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self.mock_model,
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self.mock_tokenizer,
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self.mock_quant_cfg,
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export_path=self.export_dir,
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)
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# Assert
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mock_quantize.assert_called_once_with(
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self.mock_model, self.mock_quant_cfg, forward_loop=mock_calibrate_loop
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)
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mock_export.assert_called_once_with(self.mock_model, self.export_dir, None)
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@unittest.skipIf(not MODELOPT_AVAILABLE, "nvidia-modelopt not available")
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def test_setup_quantization_without_export(self):
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"""Test quantization setup without export path specified."""
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with patch("modelopt.torch.quantization.utils.is_quantized", return_value=True):
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# Act
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with patch.object(
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self.model_loader, "_export_modelopt_checkpoint"
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) as mock_export:
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self.model_loader._setup_modelopt_quantization(
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self.mock_model,
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self.mock_tokenizer,
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self.mock_quant_cfg,
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export_path=None, # No export path
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)
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# Assert
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mock_export.assert_not_called()
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def test_quantize_and_serve_config_validation(self):
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"""Test that quantize_and_serve is properly disabled."""
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# Test that quantize-and-serve mode raises NotImplementedError
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with self.assertRaises(NotImplementedError) as context:
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ModelConfig(
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model_path="TinyLlama/TinyLlama-1.1B-Chat-v1.0",
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quantization="modelopt_fp8",
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quantize_and_serve=True,
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)
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# Verify the error message contains helpful instructions
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error_msg = str(context.exception)
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self.assertIn("disabled due to compatibility issues", error_msg)
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self.assertIn("separate quantize-then-deploy workflow", error_msg)
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# Test invalid configuration - no quantization
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with self.assertRaises(ValueError) as context:
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ModelConfig(
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model_path="TinyLlama/TinyLlama-1.1B-Chat-v1.0",
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quantize_and_serve=True,
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)
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self.assertIn("requires ModelOpt quantization", str(context.exception))
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@unittest.skipIf(not MODELOPT_AVAILABLE, "nvidia-modelopt not available")
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def test_standard_workflow_selection(self):
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"""Test that standard workflow is selected by default."""
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with patch(
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"modelopt.torch.quantization.utils.is_quantized", return_value=False
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):
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with patch.object(
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self.model_loader, "_standard_quantization_workflow"
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) as mock_standard:
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with patch.object(self.model_loader, "_load_modelopt_base_model"):
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mock_standard.return_value = Mock()
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# Create model config without quantize_and_serve
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model_config = ModelConfig(
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model_path="TinyLlama/TinyLlama-1.1B-Chat-v1.0",
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quantization="modelopt_fp8",
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quantize_and_serve=False,
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)
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device_config = DeviceConfig()
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# Act
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self.model_loader.load_model(
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model_config=model_config,
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device_config=device_config,
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)
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# Assert
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mock_standard.assert_called_once_with(model_config, device_config)
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def _get_export_info(self, export_dir: str) -> dict:
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"""Get information about an exported model."""
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if not self._validate_export(export_dir):
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return None
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try:
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config_path = os.path.join(export_dir, "config.json")
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with open(config_path, "r") as f:
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config = json.load(f)
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return {
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"model_type": config.get("model_type", "unknown"),
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"architectures": config.get("architectures", []),
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"quantization_config": config.get("quantization_config", {}),
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"export_dir": export_dir,
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}
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except Exception:
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return None
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@unittest.skipIf(not MODELOPT_AVAILABLE, "nvidia-modelopt not available")
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class TestModelOptExportIntegration(unittest.TestCase):
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"""Integration tests for ModelOpt export with full model loading workflow."""
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def setUp(self):
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"""Set up integration test fixtures."""
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self.temp_dir = tempfile.mkdtemp()
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self.export_dir = os.path.join(self.temp_dir, "exported_model")
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def tearDown(self):
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"""Clean up integration test fixtures."""
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import shutil
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shutil.rmtree(self.temp_dir, ignore_errors=True)
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@patch("sglang.srt.model_loader.loader.get_model_architecture")
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@patch("transformers.AutoTokenizer.from_pretrained")
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@patch("transformers.AutoModelForCausalLM.from_pretrained")
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def test_full_workflow_with_export(self, mock_model, mock_tokenizer, mock_arch):
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"""Test the complete workflow from model config to export."""
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# Arrange
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mock_arch.return_value = ("TestModel", "TestConfig")
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mock_tokenizer.return_value = Mock()
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mock_model.return_value = Mock(spec=torch.nn.Module)
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model_config = ModelConfig(
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model_path="TinyLlama/TinyLlama-1.1B-Chat-v1.0",
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modelopt_quant="fp8",
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modelopt_export_path=self.export_dir,
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)
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load_config = LoadConfig()
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device_config = DeviceConfig()
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# Mock the quantization and export process
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with patch.object(
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ModelOptModelLoader, "_setup_modelopt_quantization"
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) as mock_setup:
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with patch.object(
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ModelOptModelLoader, "_load_modelopt_base_model"
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) as mock_load_base:
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mock_load_base.return_value = mock_model.return_value
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# Act
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model_loader = ModelOptModelLoader(load_config)
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result = model_loader.load_model(
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model_config=model_config,
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device_config=device_config,
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)
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# Assert
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self.assertIsNotNone(result)
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mock_setup.assert_called_once()
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# Verify export_path was passed to setup
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args, kwargs = mock_setup.call_args
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self.assertEqual(kwargs.get("export_path"), self.export_dir)
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if __name__ == "__main__":
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unittest.main()
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@@ -1,689 +0,0 @@
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"""
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Unit tests for ModelOptModelLoader class.
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This test module verifies the functionality of ModelOptModelLoader, which
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applies NVIDIA Model Optimizer quantization to models during loading.
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"""
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import unittest
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from unittest.mock import MagicMock, patch
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import torch.nn as nn
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from sglang.srt.configs.device_config import DeviceConfig
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from sglang.srt.configs.load_config import LoadConfig
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from sglang.srt.configs.model_config import ModelConfig
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from sglang.srt.layers.modelopt_utils import QUANT_CFG_CHOICES
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from sglang.srt.layers.quantization.modelopt_quant import (
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ModelOptMixedPrecisionConfig,
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)
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from sglang.srt.model_loader.loader import ModelOptModelLoader
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from sglang.srt.models.utils import WeightsMapper
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from sglang.srt.utils import get_device
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from sglang.test.ci.ci_register import register_cuda_ci
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from sglang.test.test_utils import CustomTestCase
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# Note: PYTHONPATH=python should be set when running tests
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# Constants for calibration parameters to avoid hard-coded values
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CALIBRATION_BATCH_SIZE = 36
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CALIBRATION_NUM_SAMPLES = 512
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DEFAULT_DEVICE = "cuda:0"
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register_cuda_ci(est_time=11, suite="stage-b-test-small-1-gpu")
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class TestModelOptModelLoader(CustomTestCase):
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"""Test cases for ModelOptModelLoader functionality."""
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def setUp(self):
|
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"""Set up test fixtures."""
|
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# Mock distributed functionality to avoid initialization errors
|
||||
self.mock_tp_rank = patch(
|
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"sglang.srt.distributed.parallel_state.get_tensor_model_parallel_rank",
|
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return_value=0,
|
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)
|
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self.mock_tp_rank.start()
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self.mock_rank0_log = patch("sglang.srt.model_loader.loader.rank0_log")
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self.mock_rank0_log.start()
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# Mock logger to avoid issues
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self.mock_logger = patch("sglang.srt.model_loader.loader.logger")
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self.mock_logger.start()
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||||
|
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# Mock all distributed functions that might be called
|
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self.mock_get_tp_group = patch(
|
||||
"sglang.srt.distributed.parallel_state.get_tp_group"
|
||||
)
|
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self.mock_get_tp_group.start()
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|
||||
# Mock model parallel initialization check
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self.mock_mp_is_initialized = patch(
|
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"sglang.srt.distributed.parallel_state.model_parallel_is_initialized",
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return_value=True,
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)
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self.mock_mp_is_initialized.start()
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self.model_path = "TinyLlama/TinyLlama-1.1B-Chat-v1.0"
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self.load_config = LoadConfig()
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self.device_config = DeviceConfig(device=get_device())
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# Create a basic model config with unified quantization flag
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self.model_config = ModelConfig(
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model_path=self.model_path,
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quantization="modelopt_fp8", # Use unified quantization approach
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)
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# Also create a unified quantization config for new tests
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self.unified_model_config = ModelConfig(
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model_path=self.model_path, quantization="modelopt_fp8"
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)
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# Mock base model
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self.mock_base_model = MagicMock(spec=nn.Module)
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self.mock_base_model.eval.return_value = self.mock_base_model
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self.mock_base_model.device = (
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DEFAULT_DEVICE # Add device attribute for calibration tests
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)
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||||
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||||
def tearDown(self):
|
||||
"""Clean up test fixtures."""
|
||||
# Stop mocks
|
||||
self.mock_tp_rank.stop()
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||||
self.mock_rank0_log.stop()
|
||||
self.mock_logger.stop()
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||||
self.mock_get_tp_group.stop()
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||||
self.mock_mp_is_initialized.stop()
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||||
|
||||
@patch("sglang.srt.model_loader.loader.QUANT_CFG_CHOICES", QUANT_CFG_CHOICES)
|
||||
@patch("sglang.srt.model_loader.loader.logger")
|
||||
def test_successful_fp8_quantization(self, mock_logger):
|
||||
"""Test successful FP8 quantization workflow."""
|
||||
|
||||
# Create loader instance
|
||||
loader = ModelOptModelLoader(self.load_config)
|
||||
|
||||
# Mock modelopt modules
|
||||
mock_mtq = MagicMock()
|
||||
|
||||
# Configure mtq mock with FP8_DEFAULT_CFG
|
||||
mock_fp8_cfg = MagicMock()
|
||||
mock_mtq.FP8_DEFAULT_CFG = mock_fp8_cfg
|
||||
mock_mtq.quantize.return_value = self.mock_base_model
|
||||
mock_mtq.print_quant_summary = MagicMock()
|
||||
|
||||
# Create a custom load_model method for testing that simulates the real logic
|
||||
def mock_load_model(*, model_config, device_config):
|
||||
mock_logger.info("ModelOptModelLoader: Loading base model...")
|
||||
|
||||
# Simulate loading base model (this is already mocked)
|
||||
model = self.mock_base_model
|
||||
|
||||
# Simulate the quantization config lookup
|
||||
quant_choice_str = model_config._get_modelopt_quant_type()
|
||||
quant_cfg_name = QUANT_CFG_CHOICES.get(quant_choice_str)
|
||||
|
||||
if not quant_cfg_name:
|
||||
raise ValueError(f"Invalid modelopt_quant choice: '{quant_choice_str}'")
|
||||
|
||||
# Simulate getattr call and quantization
|
||||
if quant_cfg_name == "FP8_DEFAULT_CFG":
|
||||
quant_cfg = mock_fp8_cfg
|
||||
|
||||
mock_logger.info(
|
||||
f"Quantizing model with ModelOpt using config attribute: mtq.{quant_cfg_name}"
|
||||
)
|
||||
|
||||
# Simulate mtq.quantize call
|
||||
quantized_model = mock_mtq.quantize(model, quant_cfg, forward_loop=None)
|
||||
mock_logger.info("Model successfully quantized with ModelOpt.")
|
||||
|
||||
# Simulate print_quant_summary call
|
||||
mock_mtq.print_quant_summary(quantized_model)
|
||||
|
||||
return quantized_model.eval()
|
||||
|
||||
return model.eval()
|
||||
|
||||
# Patch the load_model method with our custom implementation
|
||||
with patch.object(loader, "load_model", side_effect=mock_load_model):
|
||||
# Execute the load_model method
|
||||
result_model = loader.load_model(
|
||||
model_config=self.model_config, device_config=self.device_config
|
||||
)
|
||||
|
||||
# Verify the quantization process
|
||||
mock_mtq.quantize.assert_called_once_with(
|
||||
self.mock_base_model, mock_fp8_cfg, forward_loop=None
|
||||
)
|
||||
|
||||
# Verify logging
|
||||
mock_logger.info.assert_any_call(
|
||||
"ModelOptModelLoader: Loading base model..."
|
||||
)
|
||||
mock_logger.info.assert_any_call(
|
||||
"Quantizing model with ModelOpt using config attribute: mtq.FP8_DEFAULT_CFG"
|
||||
)
|
||||
mock_logger.info.assert_any_call(
|
||||
"Model successfully quantized with ModelOpt."
|
||||
)
|
||||
|
||||
# Verify print_quant_summary was called
|
||||
mock_mtq.print_quant_summary.assert_called_once_with(self.mock_base_model)
|
||||
|
||||
# Verify eval() was called on the returned model
|
||||
self.mock_base_model.eval.assert_called()
|
||||
|
||||
# Verify we get back the expected model
|
||||
self.assertEqual(result_model, self.mock_base_model)
|
||||
|
||||
@patch("sglang.srt.model_loader.loader.logger")
|
||||
def test_missing_modelopt_import(self, mock_logger):
|
||||
"""Test error handling when modelopt library is not available."""
|
||||
|
||||
loader = ModelOptModelLoader(self.load_config)
|
||||
|
||||
# Mock the base model loader method
|
||||
with patch.object(
|
||||
loader, "_load_modelopt_base_model", return_value=self.mock_base_model
|
||||
):
|
||||
# Simulate missing modelopt by making import fail
|
||||
original_import = __import__
|
||||
|
||||
def mock_import(name, *args, **kwargs):
|
||||
if name.startswith("modelopt"):
|
||||
raise ImportError("No module named 'modelopt'")
|
||||
# Return default import behavior for other modules
|
||||
return original_import(name, *args, **kwargs)
|
||||
|
||||
with patch("builtins.__import__", side_effect=mock_import):
|
||||
# Expect ImportError to be raised and logged
|
||||
with self.assertRaises(ImportError):
|
||||
loader.load_model(
|
||||
model_config=self.model_config, device_config=self.device_config
|
||||
)
|
||||
|
||||
# Verify error logging
|
||||
mock_logger.error.assert_called_with(
|
||||
"NVIDIA Model Optimizer (modelopt) library not found. "
|
||||
"Please install it to use ModelOpt quantization."
|
||||
)
|
||||
|
||||
@patch("sglang.srt.model_loader.loader.QUANT_CFG_CHOICES", QUANT_CFG_CHOICES)
|
||||
@patch("sglang.srt.model_loader.loader.AutoTokenizer")
|
||||
@patch("sglang.srt.model_loader.loader.logger")
|
||||
def test_calibration_workflow_integration(self, mock_logger, mock_auto_tokenizer):
|
||||
"""Test end-to-end calibration workflow integration."""
|
||||
|
||||
loader = ModelOptModelLoader(self.load_config)
|
||||
|
||||
# Mock tokenizer
|
||||
mock_tokenizer = MagicMock()
|
||||
mock_tokenizer.padding_side = "right"
|
||||
mock_auto_tokenizer.from_pretrained.return_value = mock_tokenizer
|
||||
|
||||
# Mock modelopt modules
|
||||
mock_mtq = MagicMock()
|
||||
mock_mto = MagicMock()
|
||||
mock_dataset_utils = MagicMock()
|
||||
|
||||
# Configure quantization config
|
||||
mock_fp8_cfg = MagicMock()
|
||||
mock_mtq.FP8_DEFAULT_CFG = mock_fp8_cfg
|
||||
|
||||
# Configure dataset utilities
|
||||
mock_calib_dataloader = MagicMock()
|
||||
mock_calibrate_loop = MagicMock()
|
||||
mock_dataset_utils.get_dataset_dataloader.return_value = mock_calib_dataloader
|
||||
mock_dataset_utils.create_forward_loop.return_value = mock_calibrate_loop
|
||||
|
||||
# Configure model as not quantized initially
|
||||
mock_is_quantized = MagicMock(return_value=False)
|
||||
|
||||
with patch.object(
|
||||
loader, "_load_modelopt_base_model", return_value=self.mock_base_model
|
||||
):
|
||||
with patch.dict(
|
||||
"sys.modules",
|
||||
{
|
||||
"modelopt": MagicMock(),
|
||||
"modelopt.torch": MagicMock(),
|
||||
"modelopt.torch.opt": mock_mto,
|
||||
"modelopt.torch.quantization": mock_mtq,
|
||||
"modelopt.torch.quantization.utils": MagicMock(
|
||||
is_quantized=mock_is_quantized
|
||||
),
|
||||
"modelopt.torch.utils": MagicMock(),
|
||||
"modelopt.torch.utils.dataset_utils": mock_dataset_utils,
|
||||
},
|
||||
):
|
||||
# Execute the load_model method to test the full workflow
|
||||
result_model = loader.load_model(
|
||||
model_config=self.model_config, device_config=self.device_config
|
||||
)
|
||||
|
||||
# Verify the model loading was successful
|
||||
self.assertEqual(result_model, self.mock_base_model)
|
||||
|
||||
# Verify key calibration components were used
|
||||
# Note: We can't easily verify the exact calls due to dynamic imports,
|
||||
# but we can verify the workflow completed successfully
|
||||
|
||||
@patch("sglang.srt.model_loader.loader.QUANT_CFG_CHOICES", QUANT_CFG_CHOICES)
|
||||
@patch("sglang.srt.model_loader.loader.AutoTokenizer")
|
||||
@patch("sglang.srt.model_loader.loader.logger")
|
||||
def test_quantized_checkpoint_restore(self, mock_logger, mock_auto_tokenizer):
|
||||
"""Test restoring from a quantized checkpoint."""
|
||||
|
||||
# Create model config with checkpoint restore path
|
||||
config_with_restore = ModelConfig(
|
||||
model_path=self.model_path,
|
||||
quantization="modelopt_fp8",
|
||||
)
|
||||
|
||||
# Create load config with checkpoint restore path
|
||||
load_config_with_restore = LoadConfig(
|
||||
modelopt_checkpoint_restore_path="/path/to/quantized/checkpoint"
|
||||
)
|
||||
|
||||
loader = ModelOptModelLoader(load_config_with_restore)
|
||||
|
||||
# Mock tokenizer
|
||||
mock_tokenizer = MagicMock()
|
||||
mock_auto_tokenizer.from_pretrained.return_value = mock_tokenizer
|
||||
|
||||
# Mock modelopt modules
|
||||
mock_mtq = MagicMock()
|
||||
mock_mto = MagicMock()
|
||||
|
||||
# Configure quantization config
|
||||
mock_fp8_cfg = MagicMock()
|
||||
mock_mtq.FP8_DEFAULT_CFG = mock_fp8_cfg
|
||||
|
||||
# Configure model as not quantized initially
|
||||
mock_is_quantized = MagicMock(return_value=False)
|
||||
|
||||
with patch.object(
|
||||
loader, "_load_modelopt_base_model", return_value=self.mock_base_model
|
||||
):
|
||||
with patch.dict(
|
||||
"sys.modules",
|
||||
{
|
||||
"modelopt": MagicMock(),
|
||||
"modelopt.torch": MagicMock(),
|
||||
"modelopt.torch.opt": mock_mto,
|
||||
"modelopt.torch.quantization": mock_mtq,
|
||||
"modelopt.torch.quantization.utils": MagicMock(
|
||||
is_quantized=mock_is_quantized
|
||||
),
|
||||
},
|
||||
):
|
||||
with patch.object(loader, "_setup_modelopt_quantization") as mock_setup:
|
||||
# Mock the _setup_modelopt_quantization to simulate checkpoint restore
|
||||
def mock_setup_quantization(
|
||||
model,
|
||||
tokenizer,
|
||||
quant_cfg,
|
||||
quantized_ckpt_restore_path=None,
|
||||
**kwargs,
|
||||
):
|
||||
if quantized_ckpt_restore_path:
|
||||
mock_mto.restore(model, quantized_ckpt_restore_path)
|
||||
print(
|
||||
f"Restored quantized model from {quantized_ckpt_restore_path}"
|
||||
)
|
||||
return
|
||||
|
||||
mock_setup.side_effect = mock_setup_quantization
|
||||
|
||||
# Execute the load_model method
|
||||
result_model = loader.load_model(
|
||||
model_config=config_with_restore,
|
||||
device_config=self.device_config,
|
||||
)
|
||||
|
||||
# Verify the setup was called with restore path
|
||||
mock_setup.assert_called_once()
|
||||
call_args = mock_setup.call_args
|
||||
# Check that the restore path was passed correctly
|
||||
self.assertIn("quantized_ckpt_restore_path", call_args[1])
|
||||
self.assertEqual(
|
||||
call_args[1]["quantized_ckpt_restore_path"],
|
||||
"/path/to/quantized/checkpoint",
|
||||
)
|
||||
|
||||
# Verify restore was called
|
||||
mock_mto.restore.assert_called_once_with(
|
||||
self.mock_base_model, "/path/to/quantized/checkpoint"
|
||||
)
|
||||
|
||||
# Verify we get the expected model back
|
||||
self.assertEqual(result_model, self.mock_base_model)
|
||||
|
||||
@patch("sglang.srt.model_loader.loader.QUANT_CFG_CHOICES", QUANT_CFG_CHOICES)
|
||||
@patch("sglang.srt.model_loader.loader.AutoTokenizer")
|
||||
@patch("sglang.srt.model_loader.loader.logger")
|
||||
def test_quantized_checkpoint_save(self, mock_logger, mock_auto_tokenizer):
|
||||
"""Test saving quantized checkpoint after calibration."""
|
||||
|
||||
# Create model config with checkpoint save path
|
||||
config_with_save = ModelConfig(
|
||||
model_path=self.model_path,
|
||||
quantization="modelopt_fp8",
|
||||
)
|
||||
|
||||
# Create load config with checkpoint save path
|
||||
load_config_with_save = LoadConfig(
|
||||
modelopt_checkpoint_save_path="/path/to/save/checkpoint"
|
||||
)
|
||||
|
||||
loader = ModelOptModelLoader(load_config_with_save)
|
||||
|
||||
# Mock tokenizer
|
||||
mock_tokenizer = MagicMock()
|
||||
mock_auto_tokenizer.from_pretrained.return_value = mock_tokenizer
|
||||
|
||||
# Mock modelopt modules
|
||||
mock_mtq = MagicMock()
|
||||
mock_mto = MagicMock()
|
||||
mock_dataset_utils = MagicMock()
|
||||
|
||||
# Configure quantization config
|
||||
mock_fp8_cfg = MagicMock()
|
||||
mock_mtq.FP8_DEFAULT_CFG = mock_fp8_cfg
|
||||
|
||||
# Configure model as not quantized initially
|
||||
mock_is_quantized = MagicMock(return_value=False)
|
||||
|
||||
with patch.object(
|
||||
loader, "_load_modelopt_base_model", return_value=self.mock_base_model
|
||||
):
|
||||
with patch.dict(
|
||||
"sys.modules",
|
||||
{
|
||||
"modelopt": MagicMock(),
|
||||
"modelopt.torch": MagicMock(),
|
||||
"modelopt.torch.opt": mock_mto,
|
||||
"modelopt.torch.quantization": mock_mtq,
|
||||
"modelopt.torch.quantization.utils": MagicMock(
|
||||
is_quantized=mock_is_quantized
|
||||
),
|
||||
"modelopt.torch.utils": MagicMock(),
|
||||
"modelopt.torch.utils.dataset_utils": mock_dataset_utils,
|
||||
},
|
||||
):
|
||||
with patch.object(loader, "_setup_modelopt_quantization") as mock_setup:
|
||||
# Mock the _setup_modelopt_quantization to simulate checkpoint save
|
||||
def mock_setup_quantization(
|
||||
model,
|
||||
tokenizer,
|
||||
quant_cfg,
|
||||
quantized_ckpt_save_path=None,
|
||||
**kwargs,
|
||||
):
|
||||
# Simulate calibration and quantization
|
||||
mock_mtq.quantize(model, quant_cfg, forward_loop=MagicMock())
|
||||
mock_mtq.print_quant_summary(model)
|
||||
|
||||
# Save checkpoint if path provided
|
||||
if quantized_ckpt_save_path:
|
||||
mock_mto.save(model, quantized_ckpt_save_path)
|
||||
print(
|
||||
f"Quantized model saved to {quantized_ckpt_save_path}"
|
||||
)
|
||||
|
||||
mock_setup.side_effect = mock_setup_quantization
|
||||
|
||||
# Execute the load_model method
|
||||
result_model = loader.load_model(
|
||||
model_config=config_with_save, device_config=self.device_config
|
||||
)
|
||||
|
||||
# Verify the setup was called with save path
|
||||
mock_setup.assert_called_once()
|
||||
call_args = mock_setup.call_args
|
||||
# Check that the save path was passed correctly
|
||||
self.assertIn("quantized_ckpt_save_path", call_args[1])
|
||||
self.assertEqual(
|
||||
call_args[1]["quantized_ckpt_save_path"],
|
||||
"/path/to/save/checkpoint",
|
||||
)
|
||||
|
||||
# Verify save was called
|
||||
mock_mto.save.assert_called_once_with(
|
||||
self.mock_base_model, "/path/to/save/checkpoint"
|
||||
)
|
||||
|
||||
# Verify we get the expected model back
|
||||
self.assertEqual(result_model, self.mock_base_model)
|
||||
|
||||
def test_unified_quantization_flag_support(self):
|
||||
"""Test that ModelOptModelLoader supports unified quantization flags."""
|
||||
# Test modelopt_fp8
|
||||
config_fp8 = ModelConfig(
|
||||
model_path=self.model_path, quantization="modelopt_fp8"
|
||||
)
|
||||
self.assertEqual(config_fp8._get_modelopt_quant_type(), "fp8")
|
||||
|
||||
# Test modelopt_fp4
|
||||
config_fp4 = ModelConfig(
|
||||
model_path=self.model_path, quantization="modelopt_fp4"
|
||||
)
|
||||
self.assertEqual(config_fp4._get_modelopt_quant_type(), "nvfp4")
|
||||
|
||||
# Test auto-detection
|
||||
config_auto = ModelConfig(model_path=self.model_path, quantization="modelopt")
|
||||
# Should default to fp8 when no config is detected
|
||||
self.assertEqual(config_auto._get_modelopt_quant_type(), "fp8")
|
||||
|
||||
|
||||
class TestModelOptLoaderIntegration(CustomTestCase):
|
||||
"""Integration tests for ModelOptModelLoader with Engine API."""
|
||||
|
||||
@patch("sglang.srt.model_loader.loader.get_model_loader")
|
||||
@patch("sglang.srt.entrypoints.engine.Engine.__init__")
|
||||
def test_engine_with_modelopt_quant_parameter(
|
||||
self, mock_engine_init, mock_get_model_loader
|
||||
):
|
||||
"""Test that Engine properly handles modelopt_quant parameter."""
|
||||
|
||||
# Mock the Engine.__init__ to avoid actual initialization
|
||||
mock_engine_init.return_value = None
|
||||
|
||||
# Mock get_model_loader to return our ModelOptModelLoader
|
||||
mock_loader = MagicMock(spec=ModelOptModelLoader)
|
||||
mock_get_model_loader.return_value = mock_loader
|
||||
|
||||
# Import here to avoid circular imports during test discovery
|
||||
# import sglang as sgl # Commented out since not directly used
|
||||
|
||||
# Test that we can create an engine with modelopt_quant parameter
|
||||
# This would normally trigger the ModelOptModelLoader selection
|
||||
try:
|
||||
engine_args = {
|
||||
"model_path": "TinyLlama/TinyLlama-1.1B-Chat-v1.0",
|
||||
"modelopt_quant": "fp8",
|
||||
"log_level": "error", # Suppress logs during testing
|
||||
}
|
||||
|
||||
# This tests the parameter parsing and server args creation
|
||||
from sglang.srt.server_args import ServerArgs
|
||||
|
||||
server_args = ServerArgs(**engine_args)
|
||||
|
||||
# Verify that modelopt_quant is properly set
|
||||
self.assertEqual(server_args.modelopt_quant, "fp8")
|
||||
|
||||
except Exception as e:
|
||||
# If there are missing dependencies or initialization issues,
|
||||
# we can still verify the parameter is accepted
|
||||
if "modelopt_quant" not in str(e):
|
||||
# The parameter was accepted, which is what we want to test
|
||||
pass
|
||||
else:
|
||||
self.fail(f"modelopt_quant parameter not properly handled: {e}")
|
||||
|
||||
@patch("sglang.srt.model_loader.loader.get_model_loader")
|
||||
@patch("sglang.srt.entrypoints.engine.Engine.__init__")
|
||||
def test_engine_with_modelopt_quant_cli_argument(
|
||||
self, mock_engine_init, mock_get_model_loader
|
||||
):
|
||||
"""Test that CLI argument --modelopt-quant is properly parsed."""
|
||||
|
||||
# Mock the Engine.__init__ to avoid actual initialization
|
||||
mock_engine_init.return_value = None
|
||||
|
||||
# Mock get_model_loader to return our ModelOptModelLoader
|
||||
mock_loader = MagicMock(spec=ModelOptModelLoader)
|
||||
mock_get_model_loader.return_value = mock_loader
|
||||
|
||||
# Test CLI argument parsing
|
||||
import argparse
|
||||
|
||||
from sglang.srt.server_args import ServerArgs
|
||||
|
||||
# Create parser and add arguments
|
||||
parser = argparse.ArgumentParser()
|
||||
ServerArgs.add_cli_args(parser)
|
||||
|
||||
# Test parsing with modelopt_quant argument
|
||||
args = parser.parse_args(
|
||||
[
|
||||
"--model-path",
|
||||
"TinyLlama/TinyLlama-1.1B-Chat-v1.0",
|
||||
"--modelopt-quant",
|
||||
"fp8",
|
||||
]
|
||||
)
|
||||
|
||||
# Convert to ServerArgs using the proper from_cli_args method
|
||||
server_args = ServerArgs.from_cli_args(args)
|
||||
|
||||
# Verify that modelopt_quant was properly parsed
|
||||
self.assertEqual(server_args.modelopt_quant, "fp8")
|
||||
self.assertEqual(server_args.model_path, "TinyLlama/TinyLlama-1.1B-Chat-v1.0")
|
||||
|
||||
|
||||
class TestParseQuantHfConfig(CustomTestCase):
|
||||
"""Tests for _parse_quant_hf_config and _parse_modelopt_quant_config.
|
||||
|
||||
Regression tests for the fix where quant_method='modelopt' ignoring quant_algo.
|
||||
"""
|
||||
|
||||
# (quant_config_input, expected_quant_method)
|
||||
_MODELOPT_CASES = [
|
||||
({"quant_method": "modelopt", "quant_algo": "FP8"}, "modelopt_fp8"),
|
||||
({"quant_method": "modelopt", "quant_algo": "FP4"}, "modelopt_fp4"),
|
||||
({"quant_method": "modelopt", "quant_algo": "NVFP4"}, "modelopt_fp4"),
|
||||
({"quant_method": "modelopt", "quant_algo": "MIXED_PRECISION"}, "w4afp8"),
|
||||
({"quant_algo": "FP8"}, "modelopt_fp8"),
|
||||
({"quant_algo": "FP4"}, "modelopt_fp4"),
|
||||
({"quant_algo": "MIXED_PRECISION"}, "w4afp8"),
|
||||
({"quant_method": "modelopt"}, "modelopt"),
|
||||
]
|
||||
|
||||
def setUp(self):
|
||||
"""Set up a real ModelConfig using TinyLlama (already used elsewhere)."""
|
||||
self.mock_tp_rank = patch(
|
||||
"sglang.srt.distributed.parallel_state.get_tensor_model_parallel_rank",
|
||||
return_value=0,
|
||||
)
|
||||
self.mock_tp_rank.start()
|
||||
|
||||
self.mock_mp_is_initialized = patch(
|
||||
"sglang.srt.distributed.parallel_state.model_parallel_is_initialized",
|
||||
return_value=True,
|
||||
)
|
||||
self.mock_mp_is_initialized.start()
|
||||
|
||||
self.model_config = ModelConfig(
|
||||
model_path="TinyLlama/TinyLlama-1.1B-Chat-v1.0",
|
||||
)
|
||||
|
||||
def tearDown(self):
|
||||
self.mock_tp_rank.stop()
|
||||
self.mock_mp_is_initialized.stop()
|
||||
|
||||
def test_modelopt_quant_parsing(self):
|
||||
"""Modelopt quant configs must resolve to the correct quant_method."""
|
||||
for quant_cfg_input, expected in self._MODELOPT_CASES:
|
||||
with self.subTest(quant_cfg=quant_cfg_input):
|
||||
self.model_config.hf_config.quantization_config = dict(quant_cfg_input)
|
||||
result = self.model_config._parse_quant_hf_config()
|
||||
self.assertEqual(result["quant_method"], expected)
|
||||
|
||||
def test_non_modelopt_quant_method_unchanged(self):
|
||||
"""Non-modelopt quant_method (e.g. 'gptq') must NOT enter the modelopt path."""
|
||||
self.model_config.hf_config.quantization_config = {
|
||||
"quant_method": "gptq",
|
||||
"bits": 4,
|
||||
}
|
||||
result = self.model_config._parse_quant_hf_config()
|
||||
self.assertEqual(result["quant_method"], "gptq")
|
||||
self.assertNotIn("quant_algo", result)
|
||||
|
||||
|
||||
class TestModelOptMixedPrecisionConfig(CustomTestCase):
|
||||
def test_nemotron_mixed_precision_uses_modelopt_mixed(self):
|
||||
model_config = ModelConfig.__new__(ModelConfig)
|
||||
model_config.hf_config = MagicMock()
|
||||
model_config.hf_config.model_type = "nemotron_h"
|
||||
model_config.hf_config.architectures = ["NemotronHForCausalLM"]
|
||||
|
||||
result = model_config._parse_modelopt_quant_config(
|
||||
{"quantization": {"quant_algo": "MIXED_PRECISION"}}
|
||||
)
|
||||
|
||||
self.assertEqual(result["quant_method"], "modelopt_mixed")
|
||||
|
||||
def test_mixed_precision_override_does_not_hijack_w4afp8(self):
|
||||
self.assertIsNone(
|
||||
ModelOptMixedPrecisionConfig.override_quantization_method(
|
||||
{"quant_method": "w4afp8", "quant_algo": "MIXED_PRECISION"},
|
||||
"w4afp8",
|
||||
)
|
||||
)
|
||||
|
||||
def test_mixed_precision_uses_nvfp4_min_capability(self):
|
||||
self.assertEqual(ModelOptMixedPrecisionConfig.get_min_capability(), 100)
|
||||
|
||||
def test_mixed_precision_quant_layer_resolution_after_mapping(self):
|
||||
quant_config = ModelOptMixedPrecisionConfig.from_config(
|
||||
{
|
||||
"quant_algo": "MIXED_PRECISION",
|
||||
"quantized_layers": {
|
||||
"backbone.layers.0.mixer.in_proj": {"quant_algo": "FP8"},
|
||||
"backbone.layers.1.mixer.experts.0.up_proj": {
|
||||
"quant_algo": "NVFP4",
|
||||
"group_size": 16,
|
||||
},
|
||||
"backbone.layers.2.mixer.q_proj": {"quant_algo": "FP8"},
|
||||
"backbone.layers.2.mixer.k_proj": {"quant_algo": "FP8"},
|
||||
"backbone.layers.2.mixer.v_proj": {"quant_algo": "FP8"},
|
||||
},
|
||||
"packed_modules_mapping": {
|
||||
"qkv_proj": ["q_proj", "k_proj", "v_proj"],
|
||||
},
|
||||
}
|
||||
)
|
||||
quant_config.apply_weight_name_mapper(
|
||||
WeightsMapper(orig_to_new_prefix={"backbone.": "model."})
|
||||
)
|
||||
|
||||
self.assertEqual(
|
||||
quant_config._resolve_quant_algo("model.layers.0.mixer.in_proj"),
|
||||
"FP8",
|
||||
)
|
||||
self.assertEqual(
|
||||
quant_config._resolve_quant_algo("model.layers.1.mixer.experts"),
|
||||
"NVFP4",
|
||||
)
|
||||
self.assertEqual(
|
||||
quant_config._resolve_quant_algo("model.layers.2.mixer.qkv_proj"),
|
||||
"FP8",
|
||||
)
|
||||
|
||||
|
||||
if __name__ == "__main__":
|
||||
unittest.main()
|
||||
Reference in New Issue
Block a user