move computeruse prototype into separate folder
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# computeruse
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This is a prototype.
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import sys
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import httpx
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import json
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import base64
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import pyautogui
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import subprocess
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from io import BytesIO
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from PIL import Image
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import quartz_doubleclick
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ANTHROPIC_API_URL = "https://api.anthropic.com/v1/messages"
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MODEL = "claude-3-7-sonnet-20250219"
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BETA_FLAG = "computer-use-2025-01-24"
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TOOL_VERSION = "20250124"
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pyautogui.PAUSE = 0.1
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SCALING_FACTOR = 1.25
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HEADERS = {
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"content-type": "application/json",
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"anthropic-version": "2023-06-01",
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"anthropic-beta": BETA_FLAG
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}
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def send_request (headers, body):
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with httpx.Client(timeout=60.0) as client:
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try:
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response = client.post(ANTHROPIC_API_URL, headers=headers, json=body)
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response.raise_for_status()
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return response.json()
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except httpx.HTTPStatusError as e:
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print(f"[ERROR] HTTP {e.response.status_code} - {e.response.reason_phrase}")
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try:
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print("[DETAIL] Response JSON:")
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print(json.dumps(e.response.json(), indent=2))
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except Exception:
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print("[DETAIL] Raw Response Text:")
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print(e.response.text)
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sys.exit(1)
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def execute_computer_tool(tool_input):
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"""Execute computer tool actions like screenshot, click, type, etc."""
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action = tool_input.get("action")
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if action == "screenshot":
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# Take a screenshot
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screenshot = pyautogui.screenshot()
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# Convert to base64
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buffered = BytesIO()
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screenshot.save(buffered, format="PNG")
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MAX_BINARY_SIZE = 5242880 * 3 // 4
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img_data = None
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if buffered.tell() > MAX_BINARY_SIZE:
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# Reset buffer
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buffered.seek(0)
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screenshot = Image.open(buffered)
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# Resize to 80% repeatedly until under 5MB
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while True:
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buffered = BytesIO()
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new_size = (int(screenshot.width * 0.8), int(screenshot.height * 0.8))
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print('new size:', new_size)
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screenshot = screenshot.resize(new_size, Image.Resampling.LANCZOS)
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screenshot.save(buffered, format="PNG", optimize=True)
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buffered.seek(0)
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img_data = buffered.read()
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if len(img_data) <= MAX_BINARY_SIZE:
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break
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buffered.seek(0)
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screenshot = Image.open(buffered)
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else:
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img_data = buffered.getvalue()
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# Convert to base64
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img_base64 = base64.b64encode(img_data).decode('utf-8')
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return {
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"type": "image",
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"source": {
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"type": "base64",
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"media_type": "image/png",
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"data": img_base64
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}
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}
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elif action == "left_click":
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# Get coordinates
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x = tool_input.get("coordinate")[0] * SCALING_FACTOR
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y = tool_input.get("coordinate")[1] * SCALING_FACTOR
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if x is None or y is None:
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return {"type": "text", "text": "Error: Missing coordinates for click action"}
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# Perform click
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pyautogui.click(x, y)
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return {"type": "text", "text": f"Clicked at coordinates ({x}, {y})"}
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elif action == "double_click":
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# Get coordinates
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x = tool_input.get("coordinate")[0] * SCALING_FACTOR
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y = tool_input.get("coordinate")[1] * SCALING_FACTOR
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if x is None or y is None:
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return {"type": "text", "text": "Error: Missing coordinates for double click action"}
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# Perform double click
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# pyautogui.doubleClick(x, y, interval=0.2) this doesn't work
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quartz_doubleclick.double_click(x, y)
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return {"type": "text", "text": f"Double-clicked at coordinates ({x}, {y})"}
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elif action == "type":
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# Get text to type
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text = tool_input.get("text", "")
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pyautogui.typewrite(text)
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return {"type": "text", "text": f"Typed: {text}"}
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elif action == "key":
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# Press a key or key combination
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text = tool_input.get("text", "")
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try:
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if '+' in text:
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# Handle key combinations like "command+c"
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keys = text.replace('super', 'command').split('+')
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pyautogui.hotkey(*keys, interval=0.05) # interval is required
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else:
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pyautogui.press(text)
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return {"type": "text", "text": f"Pressed key: {text}"}
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except Exception as e:
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return {"type": "text", "text": f"Error pressing key {text}: {str(e)}"}
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elif action == "scroll":
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# Scroll action (should we really have defaults here?)
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direction = tool_input.get("scroll_direction", "down")
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amount = tool_input.get("scroll_amount", 3)
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scroll_amount = -amount if direction == "down" else amount
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pyautogui.scroll(scroll_amount)
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return {"type": "text", "text": f"Scrolled {direction} by {amount}"}
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else:
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return {"type": "text", "text": f"Unknown computer action: {action}"}
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def execute_bash_tool(command):
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"""Execute bash commands safely."""
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try:
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# Execute the command
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result = subprocess.run(
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command,
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shell=True,
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capture_output=True,
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text=True,
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timeout=30 # 30 second timeout
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)
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output = result.stdout
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if result.stderr:
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output += f"\n[STDERR]: {result.stderr}"
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return {"type": "text", "text": output if output else "(Command executed successfully with no output)"}
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except subprocess.TimeoutExpired:
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return {"type": "text", "text": "Error: Command timed out after 30 seconds"}
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except Exception as e:
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return {"type": "text", "text": f"Error executing command: {str(e)}"}
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def execute_text_editor_tool(_command, _path, **kwargs):
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"""Execute text editor actions."""
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if _command == "view":
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try:
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with open(_path, 'r') as f:
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content = f.read()
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return {"type": "text", "text": content}
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except Exception as e:
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return {"type": "text", "text": f"Error reading file: {str(e)}"}
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elif _command == "str_replace":
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old_str = kwargs.get("old_str", "")
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new_str = kwargs.get("new_str", "")
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try:
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with open(_path, 'r') as f:
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content = f.read()
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if old_str not in content:
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return {"type": "text", "text": f"Error: '{old_str}' not found in file"}
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# Replace the string
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new_content = content.replace(old_str, new_str)
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# Write back to file
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with open(_path, 'w') as f:
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f.write(new_content)
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return {"type": "text", "text": "String replaced successfully"}
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except Exception as e:
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return {"type": "text", "text": f"Error modifying file: {str(e)}"}
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elif _command == "create":
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content = kwargs.get("content", "")
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try:
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with open(_path, 'w') as f:
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f.write(content)
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return {"type": "text", "text": f"File created: {_path}"}
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except Exception as e:
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return {"type": "text", "text": f"Error creating file: {str(e)}"}
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else:
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return {"type": "text", "text": f"Unknown text editor command: {_command}"}
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def execute_tool(tool_name, tool_input):
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"""Main function to execute any tool based on its name and input."""
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print(f"\n[EXECUTING] Tool: {tool_name}")
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print(f"[INPUT] {json.dumps(tool_input, indent=2)}")
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if tool_name == "computer":
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# Pass the entire tool_input to execute_computer_tool
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return execute_computer_tool(tool_input)
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elif tool_name == "bash":
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command = tool_input.get("command", "")
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return execute_bash_tool(command)
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elif tool_name == "str_replace_editor":
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command = tool_input.get("command")
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path = tool_input.get("path", "")
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return execute_text_editor_tool(command, path, **tool_input)
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else:
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return {"type": "text", "text": f"Unknown tool: {tool_name}"}
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def send_prompt(api_key, messages):
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headers = HEADERS.copy()
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headers["x-api-key"] = api_key
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body = {
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"model": MODEL,
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"max_tokens": 2048,
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"tools": [
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{
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"type": f"computer_{TOOL_VERSION}",
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"name": "computer",
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"display_width_px": 2880,
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"display_height_px": 1864,
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"display_number": 1
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},
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{
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"type": f"bash_{TOOL_VERSION}",
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"name": "bash"
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},
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{
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"type": f"text_editor_{TOOL_VERSION}",
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"name": "str_replace_editor"
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}
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],
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"messages": messages,
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"thinking": {
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"type": "enabled",
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"budget_tokens": 1024
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}
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}
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return send_request(headers, body)
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def extract_tool_uses(response):
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"""Extract all tool use requests from the response."""
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tool_uses = []
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for block in response.get("content", []):
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if block.get("type") == "tool_use":
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tool_uses.append(block)
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return tool_uses
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def run():
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messages = []
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if len(sys.argv) < 3:
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print("Usage: python claude_computer_use_cli.py <api_key> '<your_prompt>'")
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return
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api_key = sys.argv[1]
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prompt = sys.argv[2]
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messages.append({
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"role": "user",
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"content": prompt
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})
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print(f"Sending prompt: {prompt}")
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# Main conversation loop
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while True:
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response = send_prompt(api_key, messages)
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# Add Claude's response to messages
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messages.append({
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'role': 'assistant',
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'content': response.get('content', []),
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})
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# Print Claude's response
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print("\n[CLAUDE RESPONSE]")
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for block in response.get("content", []):
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if block["type"] == "text":
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print(block["text"])
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elif block["type"] == "thinking":
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print(f"[THINKING] {block['thinking']}")
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elif block["type"] == "tool_use":
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print(f"[TOOL REQUEST] {block['name']} - {block.get('input', {})}")
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# Extract all tool uses
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tool_uses = extract_tool_uses(response)
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if not tool_uses:
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# No more tool uses, we're done
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break
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# Execute all requested tools and collect results
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tool_results = []
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for tool_use in tool_uses:
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tool_name = tool_use["name"]
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tool_input = tool_use.get("input", {})
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tool_id = tool_use["id"]
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# Execute the tool
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result_content = execute_tool(tool_name, tool_input)
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print('[TOOL RESULT]')
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for key in result_content:
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if key == "source":
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print(f"{key}: {len(result_content[key])} chars long")
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else:
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print(f"{key}: {result_content[key]}")
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# Add to results
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tool_results.append({
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"type": "tool_result",
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"tool_use_id": tool_id,
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"content": [result_content] if isinstance(result_content, dict) else result_content
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})
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# Add all tool results as a user message
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messages.append({
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"role": "user",
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"content": tool_results
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})
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print("\n[TOOL RESULTS SENT BACK TO CLAUDE]")
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print("\n[CONVERSATION COMPLETE]")
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if __name__ == "__main__":
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run()
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@@ -0,0 +1,39 @@
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'''
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This script simulates a double-click at the given mouse cursor position.
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'''
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import Quartz
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from time import sleep
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def post_mouse_event(type, pos, click_state):
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event = Quartz.CGEventCreateMouseEvent(
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None, type, pos, Quartz.kCGMouseButtonLeft
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)
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Quartz.CGEventSetIntegerValueField(event, Quartz.kCGMouseEventClickState, click_state)
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Quartz.CGEventPost(Quartz.kCGHIDEventTap, event)
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def double_click (x, y):
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pos = None
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if x is None or y is None:
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# Get current mouse position if no coordinates are provided
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loc = Quartz.CGEventGetLocation(Quartz.CGEventCreate(None))
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pos = (loc.x, loc.y)
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else:
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# Use provided coordinates
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pos = (x, y)
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# First click
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post_mouse_event(Quartz.kCGEventLeftMouseDown, pos, 1)
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post_mouse_event(Quartz.kCGEventLeftMouseUp, pos, 1)
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sleep(0.05) # Short delay within double-click threshold
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# Second click
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post_mouse_event(Quartz.kCGEventLeftMouseDown, pos, 2)
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post_mouse_event(Quartz.kCGEventLeftMouseUp, pos, 2)
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if __name__ == "__main__":
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print('test: double clicking at cursor position in 3 seconds...')
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sleep(3)
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double_click()
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