text-generation-webui/modules/logits.py

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import torch
from modules import sampler_hijack, shared
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from modules.exllama import ExllamaModel
from modules.exllamav2 import Exllamav2Model
from modules.llamacpp_model import LlamaCppModel
from modules.logging_colors import logger
from modules.text_generation import generate_reply
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global_scores = None
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def get_next_logits(prompt, state, use_samplers, previous):
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if shared.model is None:
logger.error("No model is loaded! Select one in the Model tab.")
return 'Error: No model is loaded1 Select one in the Model tab.', previous
is_non_hf_exllamav2 = isinstance(shared.model, Exllamav2Model)
is_non_hf_exllamav1 = isinstance(shared.model, ExllamaModel)
is_non_hf_llamacpp = isinstance(shared.model, LlamaCppModel)
if use_samplers:
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if any([is_non_hf_exllamav2, is_non_hf_exllamav1, is_non_hf_llamacpp]):
logger.error("Sampler hijacking is not supported non-Huggingface loaders.")
# sampling is all done in c for exllama, so it is really hard to hijack
# it should be possible to hijack llamacpp sampler by hijacking all their sampling methods,
# but it is not implemented yet
return 'Error: Sampler hijacking is not supported non-Huggingface loaders. Please disable the "Use samplers" option.', previous
state['max_new_tokens'] = 1
state['auto_max_new_tokens'] = False
for _ in generate_reply(prompt, state):
pass
scores = sampler_hijack.global_scores[-1]
else:
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if is_non_hf_exllamav2 or is_non_hf_exllamav1:
tokens = shared.tokenizer.encode(prompt).cuda()
scores = shared.model.get_logits(tokens)[-1][-1]
elif is_non_hf_llamacpp:
tokens = shared.tokenizer.encode(prompt)
scores = shared.model.get_logits(tokens)[-1][-1]
else:
tokens = shared.tokenizer.encode(prompt, return_tensors='pt').cuda()
output = shared.model(input_ids=tokens)
scores = output['logits'][-1][-1]
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probs = torch.softmax(scores, dim=-1, dtype=torch.float)
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topk_values, topk_indices = torch.topk(probs, k=50, largest=True, sorted=True)
topk_values = [f"{float(i):.5f}" for i in topk_values]
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if is_non_hf_exllamav1 or is_non_hf_llamacpp:
topk_indices = [i.expand((1, 1)) for i in topk_indices]
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tokens = [shared.tokenizer.decode(i) for i in topk_indices]
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output = ''
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for row in list(zip(topk_values, tokens)):
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output += f"{row[0]} - {repr(row[1])}\n"
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return output, previous