Skip to main content

Provides functionaliy for UC-Quantum-Lab development tools

Project description

UCQ_tools

Resources

Bugs

If you encounter a bug please make an issue in the "issues" tab above. This is a maintained repo and we will respond.

Contributing

Anyone who wants to contribute to the code, please do. Download the code, modify it, and create a pull request.

Available Functions

  • Functions from UC_Quantum_Lab.commands
    • state
      • Description: Displays a vector in vscode if using the UC_Quantum_Lab vscode extension. And no matter where you are using this function it will return the state vector as a list.
      • inputs:
        • circuit:QuantumCircuit: a qiskit quantum circuit with no measurements in it.
        • show:boolean (optional): a boolean indicating if you want to display the statevector in the UC_Quantum_Lab vscode extension (default is yes if using the extension).
      • returns:
        • statevector:list: the statevector of the circuit in little endian format (this is how qiskit orders bits) in list form. You do not have to use this return (just do not assign it to a variable).
      • NOTE: this function can be multiple times (whenever you can this function the statevector of the circuit up to the call will be created).
      • Example Useage
        from UC_Quantum_Lab.commands import state
        import qiskit
        quantumcircuit = qiskit.QuantumCircuit(2, 2)
        
        statevector = state(quantumciruit, show=True)
        # or 
        statevector = state(quantumciruit)
        # or 
        state(quantumciruit)
        
    • display
      • Description: Displays a circuit diagram in vscode if using the UC_Quantum_Lab vscode extension. If you are not using the vscode extension, then:
        • if you provide input path then the circuit diagram will be saved to that path.
        • if you do not input path then a matplotlib figure will pop up.
      • inputs:
        • circuit:QuantumCircuit: a qiskit quantum circuit.
        • path:string (optional): a string path that you want to save the figure to.
        • NOTE: if you are not using this function with the UC_Quantum_Lab vscode extension and you do not provide the path then a matplotlib figure will pop up.
      • returns: (nothing)
      • NOTE: this function can be multiple times and it will just generate more images (whenever you can this function a diagram of the circuit up to the call will be created).
      • Example Useage
        from UC_Quantum_Lab.commands import display
        import qiskit
        quantumcircuit = qiskit.QuantumCircuit(2, 2)
        
        display(quantumciruit, path="local.png")
        # or 
        display(quantumciruit)
        
    • counts
      • Description: Displays a histogram in vscode if using the UC_Quantum_Lab vscode extension. If you are not using the vscode extension, then:
        • if you provide input path then the histogram will be saved to that path.
        • if you do not input path then a matplotlib figure will pop up.
      • inputs:
        • circuit:QuantumCircuit: a qiskit quantum circuit that must have measurements in it.
        • backend:simulator (optional): the simulator to execute the circuit on, default is IBM's qasm simulator.
        • path:string (optional): a string path that you want to save the figure to.
        • show:boolean (optional): whether or not display the circuit, default is true. If false, then only the dictionary will be returned and nothing else will happen.
        • NOTE: if you are not using this function with the UC_Quantum_Lab vscode extension and you do not provide the path then a matplotlib figure will pop up.
      • returns:
        • counts:dictionary: the results of the simulation of the circuit as a dictionay where the keys are the binary strings and the values of the keys are the number of the times the binary string is the output of the circuit out of 1024. You do not have to use this return (just do not assign it to a variable).
      • NOTE: this function can be multiple times and it will just generate more images (and simulate the circuit at every call).
      • Example Useage
        from UC_Quantum_Lab.commands import counts
        import qiskit
        quantumcircuit = qiskit.QuantumCircuit(2, 2)
        
        result = counts(
            quantumciruit, 
            backend=Aer.get_backend("statevector_simulator"),
            path="local.png"
        )
        # or 
        counts(quantumciruit, path="local.png")
        # or
        result = counts(quantumcircuit)
        # or
        counts(quantumcircuit)
        
  • Functions from UC_Quantum_Lab.layout
    • invert
      • Description: This only works with the vscode extension UC_Quantum_Lab. Inverts the tiling of the extension's UI vertically and horizontally from default.
      • inputs (nothing)
      • returns (nothing)
      • Example Useage
        from UC_Quantum_Lab.layout import invert
        invert()
        
    • horizontal_invert
      • Description: This only works with the vscode extension UC_Quantum_Lab. Inverts the tiling of the extension's UI horizontally from default.
      • inputs (nothing)
      • returns (nothing)
      • Example Useage
        from UC_Quantum_Lab.layout import horizontal_invert
        horizontal_invert()
        
    • vertical_invert
      • Description: This only works with the vscode extension UC_Quantum_Lab. Inverts the tiling of the extension's UI vertically from default.
      • inputs (nothing)
      • returns (nothing)
      • Example Useage
        from UC_Quantum_Lab.layout import vertical_invert
        vertical_invert()
        
    • custom
      • Description: This only works with the vscode extension UC_Quantum_Lab. Creates a custom webview from the inputted json using the format specified in https://github.com/brodkemd/UC_Quantum_Lab in the "About json to html converter" section.
      • inputs:
        • layout_json:JSON: json style object to set to the webviewer html.
      • returns (nothing)
      • Example Useage
        from UC_Quantum_Lab.layout import custom
        custom({"left": "<h1>hello</h1>", "right" : "<h1>hello</h1>"})
        
      • NOTE: if you call this function before you call the inverts above the inverts will apply.

Project details


Download files

Download the file for your platform. If you're not sure which to choose, learn more about installing packages.

Source Distribution

UC-Quantum-tools-0.1.8.tar.gz (8.0 kB view details)

Uploaded Source

Built Distribution

UC_Quantum_tools-0.1.8-py3-none-any.whl (7.6 kB view details)

Uploaded Python 3

File details

Details for the file UC-Quantum-tools-0.1.8.tar.gz.

File metadata

  • Download URL: UC-Quantum-tools-0.1.8.tar.gz
  • Upload date:
  • Size: 8.0 kB
  • Tags: Source
  • Uploaded using Trusted Publishing? No
  • Uploaded via: twine/4.0.1 CPython/3.10.6

File hashes

Hashes for UC-Quantum-tools-0.1.8.tar.gz
Algorithm Hash digest
SHA256 245e43774a596aaea03f2fe2739e75f7366e3b5697a38a219a5ef56d7277428a
MD5 69ef41819ff03e5e8b825e8ee4ba6d80
BLAKE2b-256 bf9e0de2202a38cdd79cb27b71da7ae5838c82d2586fefdec21ef10d9ff32e26

See more details on using hashes here.

File details

Details for the file UC_Quantum_tools-0.1.8-py3-none-any.whl.

File metadata

File hashes

Hashes for UC_Quantum_tools-0.1.8-py3-none-any.whl
Algorithm Hash digest
SHA256 b18dbb6b610ea1479577266953a664976275128c6c49fc5be6ddd18d90f4c88c
MD5 da27b816afa6c584f4be2bc7e5467c0d
BLAKE2b-256 bd8c8e0d77d4d499a5778832fe01b45e7373d85f35d743ffe5751c3253db080c

See more details on using hashes here.

Supported by

AWS AWS Cloud computing and Security Sponsor Datadog Datadog Monitoring Fastly Fastly CDN Google Google Download Analytics Microsoft Microsoft PSF Sponsor Pingdom Pingdom Monitoring Sentry Sentry Error logging StatusPage StatusPage Status page