The increasing control complexity of Noisy Intermediate-Scale Quantum (NISQ) systems underlines the necessity of integrating quantum hardware with quantum software. While mapping heterogeneous quantum-classical computing (HQCC) algorithms to NISQ hardware for execution, we observed a few dissatisfactions in quantum programming languages (QPLs), including difficult mapping to hardware, limited expressiveness, and counter-intuitive code. Also, noisy qubits require repeatedly performed quantum experiments, which explicitly operate low-level configurations, such as pulses and timing of operations. This requirement is beyond the scope or capability of most existing QPLs. We summarize three execution models to depict the quantum-classical interaction of existing QPLs. Based on the refined HQCC model, we propose the Quingo framework to integrate and manage quantum-classical software and hardware to provide the programmability over HQCC applications and map them to NISQ hardware. We propose a six-phase quantum program life-cycle model matching the refined HQCC model, which is implemented by a runtime system. We also propose the Quingo programming language, an external domain-specific language highlighting timer-based timing control and opaque operation definition, which can be used to describe quantum experiments. We believe the Quingo framework could contribute to the clarification of key techniques in the design of future HQCC systems.
翻译:将量子古典计算算法绘制成供执行的量子编程(QQCC)硬件时,我们观察到量子编程语言(QPL)中有一些不满意之处,包括难以对硬件进行绘图、表达性有限和反直觉代码。此外,噪音quits需要反复进行量子实验,这需要明确操作低层次配置,如脉搏和运行时间等。这一要求超出了大多数现有QPL的范畴或能力。我们总结了三种执行模式,以描述现有QPL的量子古典计算(HQCC)算法(QQQCC)与NISQ(QQQQ)之间的量子互动。根据精细的HQQCC模式,我们提议了Quingo框架,以整合和管理量子级软件和硬件,为HQCC应用程序的可编程量子程序模式。我们提议一个六级量子程序生命周期模型,与经改进的HQCC模型相匹配,由运行的系统实施。我们还提议了三种执行模式执行模型,用以描述现有QIgo语言的量质子编程互动操作框架。我们认为,可以用来描述CLeal-al-rodustral-cal-cal-cal-laim sural-lavestris-lad ladal lad lad lad laddaldaldal ladaldaldaldaldaldal lad ex ex ex ex ex ex ex ex ex labildaldaldaldaldaldaldald ex labildald ex ex ex ex ex ex ex ex ex labaldaldaldaldaldaldaldal ex labildald ex ex ex faldaldaldaldaldaldaldaldaldaldaldaldaldaldaldaldaldal ex ex ex ex ex ex ex ex ex ex ex ex ex ex ex ex ex exaldaldaldaldaldaldaldaldal