mirror of
https://github.com/bigscience-workshop/petals
synced 2024-11-16 06:12:50 +00:00
7bd5916744
1. Petals can be now installed using `pip install git+https://github.com/bigscience-workshop/petals` - In case if you already cloned the repo, you can do `pip install .` or `pip install .[dev]` 2. Moved `src` => `src/petals` - Replaced `from src.smth import smth` with `from petals.smth import smth` 3. Moved `cli` => `src/petals/cli` - Replaced `python -m cli.run_smth` with `python -m petals.cli.run_smth` (all utilities are now available right after pip installation) 4. Moved the `requirements*.txt` contents to `setup.cfg` (`requirements.txt` for packages is not supported well by modern packaging utils) 5. Increased the package version from `0.2` to `1.0alpha1`
120 lines
5.3 KiB
Python
120 lines
5.3 KiB
Python
import pytest
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import torch
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import transformers
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from hivemind import get_logger, use_hivemind_log_handler
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from test_utils import *
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from transformers.generation_utils import BeamSearchScorer
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from petals.bloom.model import BloomForCausalLM
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from petals.client.remote_model import DistributedBloomForCausalLM
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use_hivemind_log_handler("in_root_logger")
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logger = get_logger(__file__)
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@pytest.mark.forked
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def test_full_model_exact_match(atol_forward=1e-3, atol_inference=1e-3):
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tokenizer = transformers.BloomTokenizerFast.from_pretrained(MODEL_NAME)
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model = DistributedBloomForCausalLM.from_pretrained(
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MODEL_NAME, initial_peers=INITIAL_PEERS, low_cpu_mem_usage=True, torch_dtype=torch.float32
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)
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config = model.config
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assert isinstance(model, DistributedBloomForCausalLM)
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assert len(model.transformer.h) == model.config.n_layer
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test_inputs = tokenizer("A cat sat on a mat", return_tensors="pt")["input_ids"]
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with torch.inference_mode():
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parallel_outputs = model.forward(test_inputs).logits
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assert torch.all(torch.isfinite(parallel_outputs))
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logger.info("Forward outputs are finite")
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embs = model.transformer.word_embeddings(test_inputs)
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embs = model.transformer.word_embeddings_layernorm(embs)
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recurrent_outputs = []
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with model.transformer.h.inference_session(max_length=embs.shape[1]) as sess:
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for t in range(embs.shape[1]):
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recurrent_outputs.append(sess.step(embs[:, t : t + 1, :]))
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recurrent_outputs = torch.cat(recurrent_outputs, dim=1)
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recurrent_outputs = model.transformer.ln_f(recurrent_outputs)
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recurrent_outputs = model.lm_head(recurrent_outputs)
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assert torch.allclose(recurrent_outputs, parallel_outputs, rtol=0, atol=atol_inference)
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logger.info("Inference is consistent with forward")
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del model, embs, recurrent_outputs
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if REF_NAME:
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ref_model = transformers.BloomForCausalLM.from_pretrained(
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REF_NAME, low_cpu_mem_usage=True, torch_dtype=torch.float32
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)
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if config.vocab_size < ref_model.config.vocab_size:
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ref_model.resize_token_embeddings(config.vocab_size)
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logger.warning(f"Resized the reference model embeddings, new total = {ref_model.config.vocab_size}")
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dummy_mask = torch.ones_like(test_inputs, dtype=torch.bool)
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# note: this creates a dummy mask to make the test compatible with older transformer versions
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# prior to https://github.com/huggingface/transformers/pull/17837
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ref_outputs = ref_model.forward(test_inputs, attention_mask=dummy_mask).logits.float()
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assert torch.allclose(ref_outputs, parallel_outputs, rtol=0, atol=atol_forward)
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logger.warning(f"Distributed forward is consistent with {type(ref_model)}.forward")
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del ref_model, ref_outputs, dummy_mask
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else:
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logger.warning("Did not test exact match with local model: REF_NAME environment variable is not set")
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assert False
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@pytest.mark.forked
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def test_greedy_generation(max_new_tokens=4):
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tokenizer = transformers.BloomTokenizerFast.from_pretrained(MODEL_NAME)
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model = DistributedBloomForCausalLM.from_pretrained(
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MODEL_NAME, initial_peers=INITIAL_PEERS, low_cpu_mem_usage=True, torch_dtype=torch.float32
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)
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inputs = tokenizer("A cat sat on a mat", return_tensors="pt")["input_ids"]
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remote_outputs = model.generate(
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inputs,
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max_new_tokens=max_new_tokens,
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)
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hf_outputs = BloomForCausalLM.greedy_search(model, input_ids=inputs, max_length=inputs.size(1) + max_new_tokens)
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assert torch.allclose(remote_outputs, hf_outputs), "Greedy search are not identical to HF"
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inputs_batch = tokenizer(["A cat sat on a mat", "A dog sat on a mat"], return_tensors="pt", padding=True)[
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"input_ids"
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]
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remote_outputs_batch = model.generate(
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inputs_batch,
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max_new_tokens=max_new_tokens,
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)
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hf_outputs_batch = BloomForCausalLM.greedy_search(
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model, input_ids=inputs_batch, max_length=inputs_batch.size(1) + max_new_tokens
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)
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assert torch.allclose(
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remote_outputs_batch, hf_outputs_batch
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), "Greedy search are not identical to HF in multibatch mode"
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@pytest.mark.forked
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def test_beam_search_generation(max_new_tokens=4, num_beams=2):
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tokenizer = transformers.BloomTokenizerFast.from_pretrained(MODEL_NAME)
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model = DistributedBloomForCausalLM.from_pretrained(
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MODEL_NAME, initial_peers=INITIAL_PEERS, low_cpu_mem_usage=True, torch_dtype=torch.float32
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)
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text = "A cat sat on a mat"
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inputs = tokenizer(text, return_tensors="pt")["input_ids"]
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remote_outputs = model.generate(
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inputs,
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max_new_tokens=max_new_tokens,
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num_beams=num_beams,
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)
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beam_scorer = BeamSearchScorer(
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batch_size=inputs.size(0),
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num_beams=num_beams,
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device=inputs.device,
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length_penalty=0,
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do_early_stopping=False,
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)
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hf_inputs = tokenizer([text] * 2, return_tensors="pt")["input_ids"]
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hf_outputs = BloomForCausalLM.beam_search(
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model, input_ids=hf_inputs, max_length=inputs.size(1) + max_new_tokens, beam_scorer=beam_scorer
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)
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assert torch.allclose(remote_outputs, hf_outputs), "Beam search results are not identical to HF"
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