prepare.py 10.7 KB
Newer Older
Baber's avatar
nit  
Baber committed
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
# Copyright (c) 2024, NVIDIA CORPORATION.  All rights reserved.
#
# Licensed under the Apache License, Version 2.0 (the "License");
# you may not use this file except in compliance with the License.
# You may obtain a copy of the License at
#
#     http://www.apache.org/licenses/LICENSE-2.0
#
# Unless required by applicable law or agreed to in writing, software
# distributed under the License is distributed on an "AS IS" BASIS,
# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
# See the License for the specific language governing permissions and
# limitations under the License


Baber's avatar
Baber committed
16
17
import os
import random
Baber's avatar
cleanup  
Baber committed
18
import re
Baber's avatar
Baber committed
19
import uuid
Baber's avatar
cleanup  
Baber committed
20
21
from functools import lru_cache, cache
from typing import List, Union, Literal
Baber's avatar
Baber committed
22
23
24

import numpy as np
import wonderwords
Baber's avatar
Baber committed
25
import nltk
Baber's avatar
Baber committed
26
from nltk import sent_tokenize
Baber's avatar
Baber committed
27
28
29
from packaging.version import parse as parse_version
from importlib.metadata import version

Baber's avatar
Baber committed
30
31
from tqdm import tqdm

Baber's avatar
cleanup  
Baber committed
32
from lm_eval.tasks.ruler.essays import get_all_essays
Baber's avatar
Baber committed
33
34
35
36
37

NUM_SAMPLES = 500
REMOVE_NEWLINE_TAB = ""
STOP_WORDS = ""
RANDOM_SEED = 42
Baber's avatar
nit  
Baber committed
38
# Define Needle/Haystack Format
Baber's avatar
Baber committed
39
40
41
42
NEEDLE = "One of the special magic {type_needle_v} for {key} is: {value}."


# Words
Baber's avatar
nit  
Baber committed
43
44
45
46
47
r = wonderwords.RandomWord()

nouns = r._categories["nouns"]
adjs = r._categories["adjectives"]
verbs = r._categories["verbs"]
Baber's avatar
Baber committed
48
49
50
51
52
53
words = [f"{adj}-{noun}" for adj in adjs for noun in nouns]
WORDS = sorted(list(set(words)))

# Positions
DEPTHS = list(np.round(np.linspace(0, 100, num=40, endpoint=True)).astype(int))

Baber's avatar
Baber committed
54
55
56
57
NLTK_MIN_VERSION = "3.9.1"
RANK = os.environ.get("LOCAL_RANK", "0")


Baber's avatar
Baber committed
58
59
60
61
62
@lru_cache(maxsize=1024)
def cached_sent_tokenize(text: str) -> List[str]:
    return sent_tokenize(text)


Baber's avatar
Baber committed
63
64
def download_nltk_resources():
    """Download 'punkt' if not already installed"""
Baber's avatar
Baber committed
65
66
67
68
69
    assert (nltk_version := parse_version(version("nltk"))) >= parse_version(
        NLTK_MIN_VERSION
    ), (
        f"`nltk` version {nltk_version} is not >= {NLTK_MIN_VERSION}. Please update `nltk` before proceeding--older versions are vulnerable to a remote code execution vulnerability."
    )
Baber's avatar
Baber committed
70
71
72
73
74
75
76
77
78
79
80

    try:
        nltk.data.find("tokenizers/punkt_tab")
    except LookupError:
        if RANK == "0":
            nltk.download("punkt_tab")
            print("Downloaded punkt_tab on rank 0")


download_nltk_resources()

Baber's avatar
Baber committed
81

Baber's avatar
nit  
Baber committed
82
def generate_random_number(num_digits=7) -> str:
Baber's avatar
Baber committed
83
84
85
86
87
    lower_bound = 10 ** (num_digits - 1)
    upper_bound = 10**num_digits - 1
    return str(random.randint(lower_bound, upper_bound))


Baber's avatar
nit  
Baber committed
88
def generate_random_word() -> str:
Baber's avatar
Baber committed
89
90
91
92
    word = random.choice(WORDS)
    return word


Baber's avatar
nit  
Baber committed
93
def generate_random_uuid() -> str:
Baber's avatar
Baber committed
94
95
96
    return str(uuid.UUID(int=random.getrandbits(128), version=4))


Baber's avatar
nit  
Baber committed
97
def generate_random(type_needle: str) -> str:
Baber's avatar
Baber committed
98
99
100
101
102
103
104
105
106
107
108
109
    if type_needle == "numbers":
        return generate_random_number()
    elif type_needle == "words":
        return generate_random_word()
    elif type_needle == "uuids":
        return generate_random_uuid()
    else:
        raise NotImplementedError(f"{type_needle} is not implemented.")


def generate_input_output(
    num_haystack: int,
Baber's avatar
nit  
Baber committed
110
    haystack: Union[list[str], str],
Baber's avatar
Baber committed
111
112
113
114
115
116
117
118
119
    *,
    type_haystack: str,
    num_needle_k: int,
    type_needle_k: str,
    num_needle_v: int,
    type_needle_v: str,
    template: str,
    num_needle_q: int = 1,
    random_seed: int = RANDOM_SEED,
Baber's avatar
nit  
Baber committed
120
) -> tuple[str, list[str], str]:
Baber's avatar
Baber committed
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
    NEEDLE = "One of the special magic {type_needle_v} for {key} is: {value}."
    keys, values, needles = [], [], []
    for _ in range(num_needle_k):
        keys.append(generate_random(type_needle_k))
        value = []
        for _ in range(num_needle_v):
            value.append(generate_random(type_needle_v))
            needles.append(
                NEEDLE.format(
                    type_needle_v=type_needle_v,
                    key=keys[-1],
                    value=value[-1],
                )
            )
        values.append(value)

    random.Random(random_seed).shuffle(needles)

    # Context
    if type_haystack == "essay":
        assert isinstance(haystack, list)
        text = " ".join(haystack[:num_haystack])
Baber's avatar
Baber committed
143
        document_sents = cached_sent_tokenize(text.strip())
Baber's avatar
Baber committed
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
        insertion_positions = (
            [0]
            + sorted(
                [
                    int(len(document_sents) * (depth / 100))
                    for depth in random.sample(DEPTHS, len(needles))
                ]
            )
            + [len(document_sents)]
        )
        document_sents_list = []
        for i in range(1, len(insertion_positions)):
            last_pos = insertion_positions[i - 1]
            next_pos = insertion_positions[i]
            document_sents_list.append(" ".join(document_sents[last_pos:next_pos]))
            if i - 1 < len(needles):
                document_sents_list.append(needles[i - 1])
        context = " ".join(document_sents_list)

    else:
        if type_haystack == "repeat":
            sentences = [haystack] * num_haystack
        elif type_haystack == "needle":
            sentences = [
                haystack.format(
                    type_needle_v=type_needle_v,
                    key=generate_random(type_needle_k),
                    value=generate_random(type_needle_v),
                )
                for _ in range(num_haystack)
            ]

        indexes = sorted(random.sample(range(num_haystack), len(needles)), reverse=True)
        for index, element in zip(indexes, needles):
            sentences.insert(index, element)
        context = "\n".join(sentences)

    ## Query and Answer
    indices = random.sample(range(num_needle_k), num_needle_q)
    queries = [keys[i] for i in indices]
    answers = [a for i in indices for a in values[i]]
    query = (
        ", ".join(queries[:-1]) + ", and " + queries[-1]
        if len(queries) > 1
        else queries[0]
    )

    template = template
    type_needle_v = type_needle_v
    if num_needle_q * num_needle_v == 1:
        template = template.replace("Some", "A")
        template = template.replace("are all", "is")
        template = template.replace("are", "is")
        template = template.replace("answers", "answer")
        type_needle_v = type_needle_v[:-1]  # remove "s"

    input_text = template.format(
        type_needle_v=type_needle_v,
        context=context,
        query=query,
    )

Baber's avatar
Baber committed
206
    return input_text, answers, query
Baber's avatar
Baber committed
207
208
209
210


def generate_samples(
    haystack,
Baber's avatar
nit  
Baber committed
211
    TOKENIZER=None,
Baber's avatar
Baber committed
212
213
214
215
216
217
218
219
220
221
222
223
224
225
    *,
    max_seq_length: int,
    type_haystack: str,
    type_needle_k: str,
    type_needle_v: str,
    template: str,
    num_samples: int = 500,
    tokens_to_generate: int = 128,
    num_needle_v: int = 1,
    num_needle_k: int = 1,
    num_needle_q=1,
    incremental: int = 500,
    remove_newline_tab: bool = False,
    random_seed: int = 42,
Baber's avatar
Baber committed
226
) -> list[dict]:
Baber's avatar
Baber committed
227
    assert TOKENIZER is not None, "TOKENIZER is not defined."
Baber's avatar
Baber committed
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
243
244
245
    num_needle_k = max(num_needle_k, num_needle_q)
    write_jsons = []
    tokens_to_generate = tokens_to_generate

    if type_haystack == "essay":
        incremental = 500
    elif type_haystack == "repeat":
        incremental = 25
    elif type_haystack == "needle":
        incremental = 25

    if type_haystack != "essay" and max_seq_length < 4096:
        incremental = 5

    num_haystack = incremental

    total_tokens = 0  # Track the total tokens generated for the first example
    while total_tokens + tokens_to_generate < max_seq_length:
Baber's avatar
Baber committed
246
        input_text, answer, query = generate_input_output(
Baber's avatar
Baber committed
247
248
249
250
251
252
253
254
255
256
257
258
259
260
261
262
263
264
265
266
267
268
269
            num_haystack,
            haystack,
            type_haystack=type_haystack,
            num_needle_k=num_needle_k,
            type_needle_k=type_needle_k,
            num_needle_v=num_needle_v,
            type_needle_v=type_needle_v,
            template=template,
            num_needle_q=num_needle_q,
            random_seed=random_seed,
        )
        # Calculate the number of tokens in the example
        total_tokens = len(TOKENIZER(input_text + " ".join(answer)).input_ids)
        if total_tokens + tokens_to_generate > max_seq_length:
            num_haystack -= incremental
            break

        if type_haystack == "essay" and num_haystack > len(haystack):
            num_haystack = len(haystack)
            break

        num_haystack += incremental

Baber's avatar
nit  
Baber committed
270
    # print("Num haystack:", num_haystack)
Baber's avatar
Baber committed
271
272

    # Generate samples
Baber's avatar
nit  
Baber committed
273
274
275
276
    for index in tqdm(
        range(num_samples),
        desc=f"Generating synthetic samples: {type_haystack} | {max_seq_length}",
    ):
Baber's avatar
Baber committed
277
278
279
        used_haystack = num_haystack
        while True:
            try:
Baber's avatar
Baber committed
280
                input_text, answer, query = generate_input_output(
Baber's avatar
Baber committed
281
282
283
284
285
286
287
288
289
290
291
292
293
294
295
296
297
298
299
300
301
302
303
304
305
306
307
308
309
310
                    used_haystack,
                    haystack,
                    type_haystack=type_haystack,
                    num_needle_k=num_needle_k,
                    type_needle_k=type_needle_k,
                    num_needle_v=num_needle_v,
                    type_needle_v=type_needle_v,
                    template=template,
                    num_needle_q=num_needle_q,
                    random_seed=random_seed,
                )
                length = len(TOKENIZER(input_text).input_ids) + tokens_to_generate
                assert length <= max_seq_length, f"{length} exceeds max_seq_length."
                break
                # ruff: noqa
            except:
                if used_haystack > incremental:
                    used_haystack -= incremental

        if remove_newline_tab:
            input_text = " ".join(
                input_text.replace("\n", " ").replace("\t", " ").strip().split()
            )

        formatted_output = {
            "index": index,
            "input": input_text,
            "outputs": answer,
            "length": length,
            "max_length": max_seq_length,
Baber's avatar
Baber committed
311
312
313
            "gen_prefix": f"The special magic {type_needle_v[:-1]} for {query} mentioned in the provided text is"
            if num_needle_q * num_needle_v == 1
            else f"The special magic {type_needle_v} for {query} mentioned in the provided text are",
Baber's avatar
Baber committed
314
315
        }
        if formatted_output["outputs"][0] not in formatted_output["input"]:
Baber's avatar
Baber committed
316
317
318
            assert False, (
                f"Needle not in input: {formatted_output}. Something went wrong."
            )
Baber's avatar
Baber committed
319
320
        write_jsons.append(formatted_output)
    return write_jsons
Baber's avatar
cleanup  
Baber committed
321
322
323
324
325
326
327
328
329
330
331
332
333
334
335
336
337
338


@cache
def get_haystack(
    type_haystack: Literal["essay", "repeat", "needle"],
) -> Union[list[str], str]:
    NEEDLE = "One of the special magic {type_needle_v} for {key} is: {value}."
    if type_haystack == "essay":
        essay = get_all_essays()["text"]
        # essay = json.load(open(essay))["text"]
        haystack = re.sub(r"\s+", " ", essay).split(" ")
    elif type_haystack == "repeat":
        haystack = "The grass is green. The sky is blue. The sun is yellow. Here we go. There and back again."
    elif type_haystack == "needle":
        haystack = NEEDLE
    else:
        raise NotImplementedError(f"{type_haystack} is not implemented.")
    return haystack