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prob_infer.py
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prob_infer.py
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import torch
import numpy as np
from tqdm import tqdm
import utils
import os
import math
import utils
from utils import device
def infer_prob_programs(domain, net, data, train_pbest, val_pbest):
args = domain.args
path = args.infer_path
net.eval()
results = {}
ITER_DATA = [
(data.train_eval_iter, train_pbest, data.get_set_size('train'), 'train'),
(data.val_eval_iter, val_pbest, data.get_set_size('val'), 'val'),
(data.test_eval_iter, None, data.get_set_size('test'), 'test')
]
metric_key = 'mvals'
ex_key = 'execs'
for gen, record, num, name in ITER_DATA:
net.vis_mode = (name, net.iter_num)
net.init_vis_logic()
eval_res = {}
utils.log_print(f"Inferring for {name}", args)
for batch in \
tqdm(gen(), total = num):
keys = batch['bkeys']
vinput = batch['vinput']
if 'extra_gt_data' in batch:
extra_gt_data = batch['extra_gt_data']
else:
extra_gt_data = None
inp_batch = {
'vdata': vinput,
'extra_gt_data': extra_gt_data,
}
if 'vis_vdata' in batch:
inp_batch['vis_vdata'] = batch['vis_vdata']
eval_info, _eval_res = net.model_eval_fn(
inp_batch,
args.beams,
ret_info=True
)
if 'info' not in eval_info or len(eval_info['info']) != 1:
utils.log_print(f"Bad eval info {eval_info}", args)
continue
for k,v in _eval_res.items():
if k not in eval_res:
eval_res[k] = 0.
eval_res[k] += v
ERI = None
if isinstance(eval_info['info'][0], list):
ERI = eval_info['info'][0]
else:
ERI = eval_info['info']
for _info in ERI:
if _info is None:
continue
for k,v in _info.items():
if isinstance(v, float):
if f'info_{k}' not in eval_res:
eval_res[f'info_{k}'] = 0.
eval_res[f'info_{k}'] += v
if record is not None:
for i in range(len(eval_info['info'])):
if eval_info['info'][i] is None:
continue
if len(eval_info['info'][i]) == 0:
assert len(eval_info[ex_key][i]) == 0
assert len(eval_info[metric_key][i]) == 0
continue
record.update(
keys[i],
eval_info['info'][i],
eval_info[ex_key][i],
eval_info[metric_key][i]
)
results[name] = utils.print_results(
domain.EVAL_LOG_INFO,
eval_res,
args,
ret_early=True
)
utils.log_print(f'Eval res {name}:', args)
for k,v in results[name].items():
rv = round(v,3)
utils.log_print(f" {k}: {rv}", args)
net.save_vis_logic()
net.vis_mode = None
return results