Pra-tham commited on
Commit
6a8ba5e
1 Parent(s): b984a91

added backdooring

Browse files
Files changed (3) hide show
  1. __pycache__/codeexecutor.cpython-312.pyc +0 -0
  2. app.py +2 -1
  3. temp2.py +77 -37
__pycache__/codeexecutor.cpython-312.pyc CHANGED
Binary files a/__pycache__/codeexecutor.cpython-312.pyc and b/__pycache__/codeexecutor.cpython-312.pyc differ
 
app.py CHANGED
@@ -3,7 +3,8 @@ import ctranslate2
3
  from transformers import AutoTokenizer
4
  from huggingface_hub import snapshot_download
5
  from codeexecutor import get_majority_vote,type_check,postprocess_completion,draw_polynomial_plot
6
-
 
7
 
8
  import re
9
  import os
 
3
  from transformers import AutoTokenizer
4
  from huggingface_hub import snapshot_download
5
  from codeexecutor import get_majority_vote,type_check,postprocess_completion,draw_polynomial_plot
6
+ import base64
7
+ from io import BytesIO
8
 
9
  import re
10
  import os
temp2.py CHANGED
@@ -1,35 +1,58 @@
1
  import gradio as gr
2
- from codeexecutor import get_majority_vote, type_check, postprocess_completion, draw_polynomial_plot
 
 
 
 
 
 
3
  import re
 
 
 
 
 
 
4
  iterations = 4
5
- # Function to generate mock predictions (as the model isn't loaded)
 
 
6
  def get_prediction(question):
7
- return "Solve the following mathematical problem: what is the sum of polynomial 2x+3 and 3x?\n### Solution: To solve the problem of summing the polynomials \\(2x + 3\\) and \\(3x\\), we can follow these steps:\n\n1. Define the polynomials.\n2. Sum the polynomials.\n3. Simplify the resulting polynomial expression.\n\nThe sum of the polynomials \\(2x + 3\\) and \\(3x\\) is \\(\\boxed{5x + 3}\\).\n"
 
 
 
 
 
 
 
 
 
 
 
 
 
 
8
 
9
  # Function to parse the prediction to extract the answer and steps
10
  def parse_prediction(prediction):
11
  lines = prediction.strip().split('\n')
12
  answer = None
13
  steps = []
14
- for line in lines:
15
- match = re.match(r'^\s*(?:Answer|answer)\s*[:=]\s*(.*)', line)
16
- if match:
17
- answer = match.group(1).strip()
18
- else:
19
- steps.append(line)
20
- if answer is None:
21
- answer = lines[-1].strip()
22
- steps = lines
 
 
23
  steps_text = '\n'.join(steps).strip()
24
  return answer, steps_text
25
 
26
- # Function to extract boxed answers
27
- def extract_boxed_answer(text):
28
- match = re.search(r'\\boxed\{(.*?)\}', text)
29
- if match:
30
- return match.group(1)
31
- return None
32
-
33
  # Function to perform majority voting and get steps
34
  def majority_vote_with_steps(question, num_iterations=10):
35
  all_predictions = []
@@ -39,6 +62,7 @@ def majority_vote_with_steps(question, num_iterations=10):
39
  for _ in range(num_iterations):
40
  prediction = get_prediction(question)
41
  answer, success = postprocess_completion(prediction, return_status=True, last_code_block=True)
 
42
 
43
  if success:
44
  all_predictions.append(prediction)
@@ -49,14 +73,14 @@ def majority_vote_with_steps(question, num_iterations=10):
49
  all_predictions.append(prediction)
50
  all_answers.append(answer)
51
  steps_list.append(steps)
52
-
53
  if success:
54
- majority_voted_ans = get_majority_vote(all_answers)
55
  expression = majority_voted_ans
56
  if type_check(expression) == "Polynomial":
57
  plotfile = draw_polynomial_plot(expression)
58
  else:
59
- plotfile = None
60
 
61
  # Find the steps corresponding to the majority voted answer
62
  for i, ans in enumerate(all_answers):
@@ -70,23 +94,39 @@ def majority_vote_with_steps(question, num_iterations=10):
70
 
71
  return answer, steps_solution, plotfile
72
 
73
- # Function to handle chat-like interaction
74
  def chat_interface(history, question):
75
  final_answer, steps_solution, plotfile = majority_vote_with_steps(question, iterations)
76
- history.append(("User", question))
77
- history.append(("MathBot", f"Answer: {final_answer}\nSteps:\n{steps_solution}"))
78
- return history, plotfile
79
-
80
- # Gradio app setup using Blocks for layout management
81
- with gr.Blocks() as interface:
82
- with gr.Column():
83
- chat_history = gr.Chatbot(label="Chat with MathBot", elem_id="chat_history")
84
- math_question = gr.Textbox(label="Your Question", placeholder="Ask a math question...", elem_id="math_question")
85
- chatbot_output = gr.Chatbot(label="Chat History")
86
- polynomial_plot = gr.Image(label="Polynomial Plot")
87
 
88
- math_question.submit(chat_interface, inputs=[chat_history, math_question], outputs=[chatbot_output, polynomial_plot])
 
 
 
 
 
 
 
 
 
 
 
 
89
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
90
 
91
- if __name__ == "__main__":
92
- interface.launch()
 
1
  import gradio as gr
2
+ # import ctranslate2
3
+ # from transformers import AutoTokenizer
4
+ # from huggingface_hub import snapshot_download
5
+ from codeexecutor import get_majority_vote,type_check,postprocess_completion,draw_polynomial_plot
6
+ import base64
7
+ from io import BytesIO
8
+
9
  import re
10
+ import os
11
+ # Define the model and tokenizer loading
12
+ # model_prompt = "Explain and solve the following mathematical problem step by step, showing all work: "
13
+ # tokenizer = AutoTokenizer.from_pretrained("AI-MO/NuminaMath-7B-TIR")
14
+ # model_path = snapshot_download(repo_id="Makima57/deepseek-math-Numina")
15
+ # generator = ctranslate2.Generator(model_path, device="cpu", compute_type="int8")
16
  iterations = 4
17
+ test=True
18
+
19
+ # Function to generate predictions using the model
20
  def get_prediction(question):
21
+ if test==True:
22
+ text="Solve the following mathematical problem: what is sum of polynomial 2x+3 and 3x?\n### Solution: To solve the problem of summing the polynomials \\(2x + 3\\) and \\(3x\\), we can follow these steps:\n\n1. Define the polynomials.\n2. Sum the polynomials.\n3. Simplify the resulting polynomial expression.\n\nLet's implement this in Python using the sympy library.\n\n```python\nimport sympy as sp\n\n# Define the variable\nx = sp.symbols('x')\n\n# Define the polynomials\npoly1 = 2*x + 3\npoly2 = 3*x\n\n# Sum the polynomials\nsum_poly = poly1 + poly2\n\n# Simplify the resulting polynomial\nsimplified_sum_poly = sp.simplify(sum_poly)\n\n# Print the simplified polynomial\nprint(simplified_sum_poly)\n```\n```output\n5*x + 3\n```\nThe sum of the polynomials \\(2x + 3\\) and \\(3x\\) is \\(\\boxed{5x + 3}\\).\n"
23
+
24
+ return text
25
+ # input_text = model_prompt + question
26
+ # input_tokens = tokenizer.tokenize(input_text)
27
+ # results = generator.generate_batch(
28
+ # [input_tokens],
29
+ # max_length=512,
30
+ # sampling_temperature=0.7,
31
+ # sampling_topk=40,
32
+ # )
33
+ # output_tokens = results[0].sequences[0]
34
+ # predicted_answer = tokenizer.convert_tokens_to_string(output_tokens)
35
+ # return predicted_answer
36
 
37
  # Function to parse the prediction to extract the answer and steps
38
  def parse_prediction(prediction):
39
  lines = prediction.strip().split('\n')
40
  answer = None
41
  steps = []
42
+ # for line in lines:
43
+ # # Check for "Answer:" or "answer:"
44
+ # match = re.match(r'^\s*(?:Answer|answer)\s*[:=]\s*(.*)', line)
45
+ # if match:
46
+ # answer = match.group(1).strip()
47
+ # else:
48
+ # answer=lines[-1].strip()
49
+ # if answer is None:
50
+ # # If no "Answer:" found, assume last line is the answer
51
+ answer = lines[-1].strip()
52
+ steps = lines
53
  steps_text = '\n'.join(steps).strip()
54
  return answer, steps_text
55
 
 
 
 
 
 
 
 
56
  # Function to perform majority voting and get steps
57
  def majority_vote_with_steps(question, num_iterations=10):
58
  all_predictions = []
 
62
  for _ in range(num_iterations):
63
  prediction = get_prediction(question)
64
  answer, success = postprocess_completion(prediction, return_status=True, last_code_block=True)
65
+ print(answer,success)
66
 
67
  if success:
68
  all_predictions.append(prediction)
 
73
  all_predictions.append(prediction)
74
  all_answers.append(answer)
75
  steps_list.append(steps)
76
+ majority_voted_ans = get_majority_vote(all_answers)
77
  if success:
78
+
79
  expression = majority_voted_ans
80
  if type_check(expression) == "Polynomial":
81
  plotfile = draw_polynomial_plot(expression)
82
  else:
83
+ plotfile = "polynomial_plot.png"
84
 
85
  # Find the steps corresponding to the majority voted answer
86
  for i, ans in enumerate(all_answers):
 
94
 
95
  return answer, steps_solution, plotfile
96
 
97
+ # Function to handle chat-like interaction and merge plot into chat history
98
  def chat_interface(history, question):
99
  final_answer, steps_solution, plotfile = majority_vote_with_steps(question, iterations)
 
 
 
 
 
 
 
 
 
 
 
100
 
101
+ # Convert the plot image to base64 for embedding in chat (if plot exists)
102
+ if plotfile:
103
+ history.append(("what is the sum of polynomial 2x+3 and 3x?", f"Answer: \n{steps_solution}"))
104
+
105
+ with open(plotfile, "rb") as image_file:
106
+ image_bytes = image_file.read()
107
+ base64_image = base64.b64encode(image_bytes).decode("utf-8")
108
+ image_data = f'<img src="data:image/png;base64,{base64_image}" width="300"/>'
109
+ history.append(("", image_data))
110
+ else:
111
+ history.append(("MathBot", f"Answer: \n{steps_solution}"))
112
+
113
+ return history
114
 
115
+ custom_css = """
116
+ #math_question label {
117
+ font-size: 20px; /* Increase label font size */
118
+ font-weight: bold; /* Optional: make the label bold */
119
+ }
120
+
121
+ #math_question textarea {
122
+ font-size: 20px; /* Increase font size */
123
+ }
124
+ """
125
+ # Gradio app setup using Blocks
126
+ with gr.Blocks(css=custom_css) as interface:
127
+ chatbot = gr.Chatbot(label="Chat with MathBot", elem_id="chat_history",height="70vh")
128
+ math_question = gr.Textbox(label="Your Question", placeholder="Ask a math question...", elem_id="math_question")
129
+
130
+ math_question.submit(chat_interface, inputs=[chatbot, math_question], outputs=[chatbot])
131
 
132
+ interface.launch()