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dist_inference_runner.py
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dist_inference_runner.py
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import argparse
import torch.autograd.profiler as profiler
from utils.dist_args_utils import *
from utils.dist_inference_utils import *
from comm.comm_utils import *
from task_datasets.inference_data import get_request_processor
from pipeline_parallel.dist_pp_utils import *
from transformers import AutoTokenizer
def main():
parser = argparse.ArgumentParser(description='Inference Runner')
add_device_arguments(parser)
add_torch_distributed_arguments(parser)
# add_model_arguments(parser)
# add_qqp_task_arguments(parser)
add_inference_arguments(parser)
# add_training_hyper_parameter_arguments(parser)
# add_mixed_precision_arguments(parser)
# add_parallel_schema_arguments(parser)
add_inference_details_arguments(parser)
parser.add_argument('--seed', type=int, default=1, metavar='S',
help='random seed (default: 1)')
parser.add_argument('--overwrite-request-args', type=lambda x: (str(x).lower() == 'true'),
default=False, metavar='S',
help='whether overwrite_request_args')
# parser.add_argument('--model-name', type=str, default='./pretrained_models/gpt2', metavar='S',
# help='trained model path')
# parser.add_argument('--model-type', type=str, default='gpt2', metavar='S',
# help='trained model path')
# parser.add_argument('--infer-data', type=str, default='', metavar='S',
# help='data path')
# parser.add_argument('--top-k', type=int, default=None, metavar='S',
# help='sample from top k')
# parser.add_argument('--top-p', type=float, default=None, metavar='S',
# help='sample from top p')
# parser.add_argument('--temperature', type=float, default=0, metavar='S',
# help='temperature on logits')
# parser.add_argument('--echo-prompt', type=lambda x: (str(x).lower() == 'true'),
# default=False, metavar='S',
# help='append prompt to the generated text')
# # TODO: almost, need to fix output_token_emb overlapping issue
# parser.add_argument('--num-completions', type=int, default=1, metavar='S',
# help='num of completions')
# # TODO
# parser.add_argument('--top-k-per-token', type=int, default=0, metavar='S',
# help='return top k candidate for each token')
parser.add_argument('--profiling', type=str, default='tidy_profiling', metavar='S',
help='enable which profiling? default: tidy mode')
parser.add_argument('--trace-postfix', type=str, default='default', metavar='S',
help='postfix of the tracing file name.')
args = parser.parse_args()
torch.manual_seed(args.seed)
if args.use_cuda:
assert (torch.cuda.is_available())
device = torch.device('cuda', args.cuda_id)
else:
device = torch.device('cpu')
init_communicators(args)
request_processor = get_request_processor(args)
request_processor.set_arguments(args)
pipe = get_pp_inference_module(args, device)
if args.profiling == 'no-profiling':
distributed_inference_mask_iter(args, pipe, device, request_processor)
else:
prefix = './trace_json/inference_' + args.pp_mode
trace_file = prefix + get_inference_arguments_str(args) + '_' + args.profiling + '_' + args.trace_postfix + \
'.json'
if args.profiling == 'tidy_profiling':
distributed_inference_mask_iter(args, pipe, device, request_processor)
# distributed_inference_foo_iter(args, pipe, device, request_processor)
pipe.export_profiling_result(filename=trace_file)
elif args.profiling == 'pytorch_profiling':
with profiler.profile(profile_memory=True, use_cuda=args.use_cuda) as prof:
distributed_inference_mask_iter(args, pipe, device, request_processor)
print(prof.key_averages().table())
prof.export_chrome_trace(trace_file)
else:
print("No recognized profiler?")
assert False
if __name__ == '__main__':
main()