Commit
·
e1adb09
1
Parent(s):
4045483
Add mfu and mbu
Browse files- backend-cli.py +1 -0
- src/backend/hflm_with_measurement.py +73 -3
- src/backend/run_eval_suite.py +8 -0
- src/display/utils.py +4 -0
- src/submission/check_validity.py +1 -1
backend-cli.py
CHANGED
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@@ -473,6 +473,7 @@ if __name__ == "__main__":
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precisions = args.precision.split(",")
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print(f"debug_model_names: {debug_model_names}, debug_task_name: {debug_task_name}, precisions: {precisions}")
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task_lst = TASKS_HARNESS.copy()
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for precision in precisions:
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for debug_model_name in debug_model_names:
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for task in task_lst:
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precisions = args.precision.split(",")
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print(f"debug_model_names: {debug_model_names}, debug_task_name: {debug_task_name}, precisions: {precisions}")
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task_lst = TASKS_HARNESS.copy()
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+
RESULTS_REPO = DEBUG_RESULTS_REPO
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for precision in precisions:
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for debug_model_name in debug_model_names:
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for task in task_lst:
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src/backend/hflm_with_measurement.py
CHANGED
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@@ -5,6 +5,7 @@ import sys
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from time import time
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from pathlib import Path
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from typing import List, Literal, Optional, Tuple, Union
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import torch
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import torch.nn.functional as F
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@@ -37,6 +38,9 @@ from lm_eval.models.utils import (
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stop_sequences_criteria,
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)
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from lm_eval.models.huggingface import HFLM
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class StopWatch(TextStreamer):
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@@ -67,6 +71,10 @@ class StopWatch(TextStreamer):
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class HFLMWithMeasurement(HFLM):
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def __init__(self, **kwargs):
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super().__init__(**kwargs)
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def _loglikelihood_tokens(
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self,
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@@ -306,6 +314,7 @@ class HFLMWithMeasurement(HFLM):
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generation_kwargs.pop("temperature")
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generation_kwargs.pop("is_gsm8k")
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if not is_gsm8k:
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# build stopping criteria
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@@ -341,12 +350,71 @@ class HFLMWithMeasurement(HFLM):
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batch_size = context.shape[0]
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output_length = stop_watch.decoding_iterations
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end_to_end_time = (end - start) / batch_size
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prefilling_time = stop_watch.prefilling_time / batch_size
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decoding_time = stop_watch.decoding_time / batch_size
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token_per_sec = output_length / decoding_time
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-
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def generate_until(
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self, requests: List[Instance], disable_tqdm: bool = False
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@@ -461,7 +529,7 @@ class HFLMWithMeasurement(HFLM):
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kwargs["max_length"] = context_enc.shape[1] + max_gen_toks
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# perform batched generation
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-
cont, end_to_end_time, prefilling_time, token_per_sec = self._model_generate(
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context=context_enc,
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attention_mask=attn_masks,
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stop=until,
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@@ -476,6 +544,8 @@ class HFLMWithMeasurement(HFLM):
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cont_toks = cont_toks[context_enc.shape[1] :]
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s = self.tok_decode(cont_toks)
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# use secondary stop seqs to cut off should-have-been-stopped content post-hoc
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if not is_gsm8k:
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@@ -485,7 +555,7 @@ class HFLMWithMeasurement(HFLM):
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# for seq2seq case where self.tok_decode(self.eot_token_id) = ''
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s = s.split(term)[0]
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-
res.append((s, end_to_end_time, prefilling_time, token_per_sec))
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self.cache_hook.add_partial("generate_until", (context, gen_kwargs), s)
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pbar.update(1)
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from time import time
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from pathlib import Path
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from typing import List, Literal, Optional, Tuple, Union
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+
from calflops import calculate_flops
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import torch
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import torch.nn.functional as F
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stop_sequences_criteria,
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)
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from lm_eval.models.huggingface import HFLM
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from src.utils import get_gpu_number, get_gpu_details, get_peak_bw, transfer_precision2bytes, get_peak_flops
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from src.submission.check_validity import get_model_size
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from src.envs import API
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class StopWatch(TextStreamer):
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class HFLMWithMeasurement(HFLM):
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def __init__(self, **kwargs):
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super().__init__(**kwargs)
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self.pretrained = kwargs.get("pretrained", None)
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self.revision = kwargs.get("revision", None)
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self.precision = kwargs.get("dtype", None)
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self.total_flops = 0
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def _loglikelihood_tokens(
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self,
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generation_kwargs.pop("temperature")
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generation_kwargs.pop("is_gsm8k")
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context_length = context.shape[1]
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if not is_gsm8k:
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# build stopping criteria
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batch_size = context.shape[0]
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output_length = stop_watch.decoding_iterations
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precision_bytes = transfer_precision2bytes(self.precision)
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model_info = API.model_info(repo_id=self.pretrained, revision=self.revision)
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model_size_param = get_model_size(model_info=model_info, precision=self.precision)
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model_size = model_size_param * precision_bytes
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model_config = self.model.config
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n_layers = model_config.num_hidden_layers if hasattr(model_config, "num_hidden_layers") else model_config.num_layers
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d_model = model_config.hidden_size if hasattr(model_config, "hidden_size") else model_config.d_model
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if hasattr(model_config, "num_experts_per_tok"):
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n_experts_per_tok = model_config.num_experts_per_tok
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elif hasattr(model_config, "num_selected_experts"):
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n_experts_per_tok = model_config.num_selected_experts
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else:
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n_experts_per_tok = 1
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if hasattr(model_config, "ffn_dim"):
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d_ff = model_config.ffn_dim
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elif hasattr(model_config, "intermediate_size"):
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d_ff = model_config.intermediate_size
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elif hasattr(model_config, "d_ff"):
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d_ff = model_config.d_ff
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else:
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raise ValueError("Unknown ffn dim model configuration")
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if hasattr(model_config, "num_local_experts"):
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num_experts = model_config.num_local_experts
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elif hasattr(model_config, "num_experts"):
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num_experts = model_config.num_experts
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else:
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num_experts = 1
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ffn_params = n_layers * d_ff * 2 * d_model
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shared_params = model_size_param * 1e9 - num_experts * ffn_params
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model_size = shared_params + n_experts_per_tok * ffn_params
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per_token_kv_size = 2 * n_layers * d_model * precision_bytes
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peak_bw_single = get_peak_bw(get_gpu_details())
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peak_bw = peak_bw_single * get_gpu_number()
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kv_size = (output_length - 1) * per_token_kv_size / 1e9
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end_to_end_time = (end - start) / batch_size
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prefilling_time = stop_watch.prefilling_time / batch_size
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decoding_time = stop_watch.decoding_time / batch_size
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token_per_sec = output_length / decoding_time
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ach_mem_bw = (model_size / 1e9 + kv_size) * token_per_sec
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flops_per_token = 2 * model_size + 2 * n_layers * context_length * d_model
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peak_flops_single = get_peak_flops(get_gpu_details(), self.precision)
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peak_flops = peak_flops_single * get_gpu_number()
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## TODO only support llama-type decoder only models and moe models of switch transformer and mixtrial
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mfu = token_per_sec * flops_per_token / peak_flops
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mbu = ach_mem_bw / peak_bw
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# print(f"mfu: {mfu}, mbu: {mbu}")
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return res, end_to_end_time, prefilling_time, token_per_sec, mfu, mbu
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def generate_until(
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self, requests: List[Instance], disable_tqdm: bool = False
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kwargs["max_length"] = context_enc.shape[1] + max_gen_toks
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# perform batched generation
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cont, end_to_end_time, prefilling_time, token_per_sec, mfu, mbu = self._model_generate(
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context=context_enc,
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attention_mask=attn_masks,
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stop=until,
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cont_toks = cont_toks[context_enc.shape[1] :]
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s = self.tok_decode(cont_toks)
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# print(s)
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# use secondary stop seqs to cut off should-have-been-stopped content post-hoc
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if not is_gsm8k:
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# for seq2seq case where self.tok_decode(self.eot_token_id) = ''
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s = s.split(term)[0]
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res.append((s, end_to_end_time, prefilling_time, token_per_sec, mfu, mbu))
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self.cache_hook.add_partial("generate_until", (context, gen_kwargs), s)
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pbar.update(1)
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src/backend/run_eval_suite.py
CHANGED
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@@ -17,12 +17,16 @@ def process_results_decorator(func):
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end_to_end_time = sum([r[1] for r in results]) / len(results)
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prefilling_time = sum([r[2] for r in results]) / len(results)
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decoding_throughput = sum([r[3] for r in results]) / len(results)
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# print(f"end_to_end_time: {end_to_end_time}, prefilling_time: {prefilling_time}, decoding_throughput: {decoding_throughput}")
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result_dict = func(self, doc, processed_results, *args, **kwargs)
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result_dict["end_to_end_time"] = end_to_end_time
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result_dict["prefilling_time"] = prefilling_time
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result_dict["decoding_throughput"] = decoding_throughput
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return result_dict
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return wrapper
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ConfigurableTask.process_results = process_results_decorator(orig_process_results)
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aggregation_list["end_to_end_time"] = mean
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aggregation_list["prefilling_time"] = mean
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aggregation_list["decoding_throughput"] = mean
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return aggregation_list
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return wrapper
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ConfigurableTask.aggregation = aggregation_decorator(orig_aggregation)
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higher_is_better_dict["end_to_end_time"] = False
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higher_is_better_dict["prefilling_time"] = False
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higher_is_better_dict["decoding_throughput"] = True
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return higher_is_better_dict
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return wrapper
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ConfigurableTask.higher_is_better = higher_is_better_decorator(orig_higher_is_better)
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end_to_end_time = sum([r[1] for r in results]) / len(results)
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prefilling_time = sum([r[2] for r in results]) / len(results)
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decoding_throughput = sum([r[3] for r in results]) / len(results)
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mfu = sum([r[4] for r in results]) / len(results)
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mbu = sum([r[5] for r in results]) / len(results)
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# print(f"end_to_end_time: {end_to_end_time}, prefilling_time: {prefilling_time}, decoding_throughput: {decoding_throughput}")
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result_dict = func(self, doc, processed_results, *args, **kwargs)
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result_dict["end_to_end_time"] = end_to_end_time
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result_dict["prefilling_time"] = prefilling_time
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result_dict["decoding_throughput"] = decoding_throughput
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result_dict["mfu"] = mfu * 100
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result_dict["mbu"] = mbu * 100
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return result_dict
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return wrapper
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ConfigurableTask.process_results = process_results_decorator(orig_process_results)
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aggregation_list["end_to_end_time"] = mean
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aggregation_list["prefilling_time"] = mean
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aggregation_list["decoding_throughput"] = mean
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aggregation_list["mfu"] = mean
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aggregation_list["mbu"] = mean
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return aggregation_list
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return wrapper
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ConfigurableTask.aggregation = aggregation_decorator(orig_aggregation)
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higher_is_better_dict["end_to_end_time"] = False
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higher_is_better_dict["prefilling_time"] = False
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higher_is_better_dict["decoding_throughput"] = True
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higher_is_better_dict["mfu"] = True
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higher_is_better_dict["mbu"] = True
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return higher_is_better_dict
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return wrapper
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ConfigurableTask.higher_is_better = higher_is_better_decorator(orig_higher_is_better)
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src/display/utils.py
CHANGED
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@@ -18,12 +18,16 @@ GPU_Power = 'Power(W)'
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GPU_Mem = 'Mem(G)'
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GPU_Name = "GPU"
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GPU_Util = 'Util(%)'
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BATCH_SIZE = 'bs'
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PRECISION = "Precision"
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system_metrics_to_name_map = {
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"end_to_end_time": f"{E2Es}",
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"prefilling_time": f"{PREs}",
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"decoding_throughput": f"{TS}",
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}
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gpu_metrics_to_name_map = {
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GPU_Mem = 'Mem(G)'
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GPU_Name = "GPU"
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GPU_Util = 'Util(%)'
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MFU = 'MFU(%)'
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MBU = 'MBU(%)'
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BATCH_SIZE = 'bs'
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PRECISION = "Precision"
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system_metrics_to_name_map = {
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"end_to_end_time": f"{E2Es}",
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"prefilling_time": f"{PREs}",
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"decoding_throughput": f"{TS}",
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"mfu": f"{MFU}",
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"mbu": f"{MBU}"
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}
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gpu_metrics_to_name_map = {
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src/submission/check_validity.py
CHANGED
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def get_model_size(model_info: ModelInfo, precision: str):
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size_pattern =
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try:
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model_size = round(model_info.safetensors["total"] / 1e9, 3)
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except (AttributeError, TypeError):
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def get_model_size(model_info: ModelInfo, precision: str):
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size_pattern = re.compile(r"(\d\.)?\d+(b|m)")
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try:
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model_size = round(model_info.safetensors["total"] / 1e9, 3)
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except (AttributeError, TypeError):
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