使用虚拟机分层的动态语言优化

Alexander Yermolovich, Christian Wimmer, M. Franz
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引用次数: 33

摘要

创建解释器是实现动态编程语言的一种简单而快速的方法。这种易用性也带来了主要的缺点。解释器比编译后的机器码慢得多,因为它们有很高的分派开销,而且不能执行优化。为了克服这些限制,解释器通常与即时编译器结合使用,以提高整体性能。然而,这意味着必须为每种语言实现一个即时编译器。我们探索了采用动态语言的解释器并将其运行在优化的基于跟踪的虚拟机上的方法,也就是说,我们在主机VM上运行来宾VM。主机虚拟机通过跟踪记录的方式来观察执行应用程序的来宾虚拟机。每个记录的跟踪表示与应用程序中给定的执行路径相对应的来宾VM字节码序列。主机VM优化这些跟踪并将其编译为机器码,从而消除了为来宾VM定制实时编译器的需要。客户VM只需要向主机VM提供有关其解释器循环的基本信息。
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Optimization of dynamic languages using hierarchical layering of virtual machines
Creating an interpreter is a simple and fast way to implement a dynamic programming language. With this ease also come major drawbacks. Interpreters are significantly slower than compiled machine code because they have a high dispatch overhead and cannot perform optimizations. To overcome these limitations, interpreters are commonly combined with just-in-time compilers to improve the overall performance. However, this means that a just-in-time compiler has to be implemented for each language. We explore the approach of taking an interpreter of a dynamic language and running it on top of an optimizing trace-based virtual machine, i.e., we run a guest VM on top of a host VM. The host VM uses trace recording to observe the guest VM executing the application program. Each recorded trace represents a sequence of guest VM bytecodes corresponding to a given execution path through the application program. The host VM optimizes and compiles these traces to machine code, thus eliminating the need for a custom just-in-time compiler for the guest VM. The guest VM only needs to provide basic information about its interpreter loop to the host VM.
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