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import streamlit as st
import torch
from time import perf_counter
from transformers import AutoTokenizer, AutoModelForCausalLM

st.set_page_config(
    page_title="Romanian Text Generator",
    page_icon="🇷🇴",
    layout="wide"
)

#############################################
# Python stuff here

model_list = [
    "dumitrescustefan/gpt-neo-romanian-780m",
    "readerbench/RoGPT2-base",
    "readerbench/RoGPT2-medium",
    "readerbench/RoGPT2-large"
]

def greedy_search(model, input_ids, attention_mask, no_repeat_ngram_size, max_length):
    return model.generate(
        input_ids=input_ids,
        attention_mask=attention_mask,
        no_repeat_ngram_size=no_repeat_ngram_size,
        max_length=max_length
    )

def beam_search(model, input_ids, attention_mask, no_repeat_ngram_size, max_length, num_beams):
    return model.generate(
        input_ids=input_ids,
        attention_mask=attention_mask,
        no_repeat_ngram_size=no_repeat_ngram_size,
        max_length=max_length,
        num_beams=num_beams,
        early_stopping=True
    )

def sampling(model, input_ids, attention_mask, no_repeat_ngram_size, max_length, temperature, top_k, top_p):
    return model.generate(
        input_ids=input_ids,
        attention_mask=attention_mask,
        no_repeat_ngram_size=no_repeat_ngram_size,
        max_length=max_length,
        do_sample=True,
        temperature=temperature,
        top_k=top_k,
        top_p=top_p
    )

def typical_sampling(model, input_ids, attention_mask, no_repeat_ngram_size, max_length, temperature, typical_p):
    return model.generate(
        input_ids=input_ids,
        attention_mask=attention_mask,
        no_repeat_ngram_size=no_repeat_ngram_size,
        max_length=max_length,
        do_sample=True,
        temperature=temperature,
        typical_p=typical_p,
        top_k=0
    )

@st.cache(allow_output_mutation=True)
def setModel(model_checkpoint):
    model = AutoModelForCausalLM.from_pretrained(model_checkpoint)
    tokenizer = AutoTokenizer.from_pretrained(model_checkpoint)
    return model, tokenizer


#############################################
col_title, _, col_b1, col_b2, col_b3, _ = st.columns([18, 1, 8, 8, 8, 1])
col_title.markdown("**Playground for text generation with Romanian models**")
button_greedy = col_b1.button("Greedy generation")
button_sampling = col_b2.button("Sampling generation")
button_typical = col_b3.button("Typical sampling generation")


col1, _, col2 = st.columns([10, 1, 16])

with col1:
    st.markdown("**Step 1: Select model**")

    model_checkpoint = st.selectbox("Select model", model_list)

    st.markdown("**Step 2: Adjust text generation parameters**")

    max_length = st.slider("Number of tokens to generate", value=50, min_value=10, max_value=256)
    top_k = col1.slider("Top-k", min_value=0, max_value=100, step=10, value=0)
    top_p = col1.slider("Top-p", min_value=0.0, max_value=1.0, step=0.05, value=0.9)
    typical_p = col1.slider("Typical-p", min_value=0., max_value=1., step=.10, value=1.0)
    temperature = st.slider("Temperature", value=1.0, min_value=0.1, max_value=1.0, step=0.1)
    no_repeat_ngrams = st.slider("No repeat n-grams", value=2, min_value=0, max_value=3)



    # st.markdown("**Step 4: Select a prompt or input your own text, and click generate in the left panel**")



    def update_prompt():
        st.session_state['text'] = prompt

    prompt = st.selectbox("Select prompt", model_list, on_change=update_prompt)

@st.cache(allow_output_mutation=True)
def setModel(model_checkpoint):
    model = AutoModelForCausalLM.from_pretrained(model_checkpoint)
    tokenizer = AutoTokenizer.from_pretrained(model_checkpoint)
    return model, tokenizer

#####################################################
# show-time

if 'text' not in st.session_state:
    st.session_state['text'] = 'Acesta este un exemplu de text generat de un model de limbă.'

details = ""
tokenized_text = None

if button_greedy or button_sampling or button_typical:
    if len(st.session_state['text'].strip()) == 0:
        col2.warning("Please input some text!")
        text_element = col2.text_area('Text:', height=400, key="text")
        st.stop()

    model, tokenizer = setModel(model_checkpoint)

    tokenized_text = tokenizer(st.session_state['text'], add_special_tokens=False, return_tensors="pt")

    if len(tokenized_text.input_ids[0]) + max_length > 512:  # need to keep less words
        keep_last = 512 - max_length
        print(f"keep last: {keep_last}")
        input_ids, attention_mask = tokenized_text.input_ids[0][-keep_last:], tokenized_text.attention_mask[0][-keep_last:]
        previous_ids = tokenized_text.input_ids[0][:keep_last]
        st.warning(f"kept last {keep_last}")
    else:
        input_ids, attention_mask = tokenized_text.input_ids[0], tokenized_text.attention_mask[0]
        previous_ids = None

    length = min(512, len(input_ids)+max_length)
    timer_mark = perf_counter()
    if button_greedy:
        output = greedy_search(model, input_ids.unsqueeze(dim=0), attention_mask.unsqueeze(dim=0), no_repeat_ngrams, length)
        details = f"Text generated using greedy decoding in {perf_counter()-timer_mark:.2f}s"
    if button_sampling:
        output = sampling(model, input_ids.unsqueeze(dim=0), attention_mask.unsqueeze(dim=0), no_repeat_ngrams, length, temperature, top_k, top_p)
        details = f"Text generated using sampling, top-p={top_p:.2f}, top-k={top_k}, temperature={temperature:.2f} in {perf_counter()-timer_mark:.2f}s"
    if button_typical:
        output = typical_sampling(model, input_ids.unsqueeze(dim=0), attention_mask.unsqueeze(dim=0), no_repeat_ngrams, length, temperature, typical_p)
        details = f"Text generated using typical sampling, typical-p={typical_p:.2f}, temperature={temperature:.2f} in {perf_counter()-timer_mark:.2f}s"

    if previous_ids is not None:
        print(f"\nConcat prev id: "+tokenizer.decode(previous_ids, skip_special_tokens=True))
        print(f"\nWith current decode: " + tokenizer.decode(output[0], skip_special_tokens=True))
        new_text = tokenizer.decode(torch.cat([previous_ids, output[0]], dim=-1), skip_special_tokens=True)
    else:
        new_text = tokenizer.decode(output[0], skip_special_tokens=True)

    st.session_state['text'] = new_text



text_element = col2.text_area('Text:', height=400, key="text")
col2.markdown("""---""")
col2.text("Statistics and details:")
if details != "":
    col2.caption("   Generation details: " + details)
if tokenized_text is None:
    tokenizer = AutoTokenizer.from_pretrained(model_checkpoint)
tt = tokenizer(text_element, add_special_tokens=False, return_tensors="pt")
col2.caption(f"   Text length is {len(text_element)} characters, {len(tt.input_ids[0])} tokens.")