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Shunya Oguchi

Publications and source records attributed to Shunya Oguchi.

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Fine-grained Causal Reversibility for Asynchronous Channel-based Programming

Causal reversibility has emerged as an effective technique for debugging concurrent systems. In particular, rolling back and replaying a concurrent program with causal consistency has been found very helpful in debugging concurrency bugs. In channel-based communication, queue ordering creates dependencies that prevent causally independent actions from being rolled back and replayed. To enable efficient rollback and replay without being constrained by queue dependencies, it is necessary to analyse causal dependencies between messages in queues and reorder independent messages. This paper presents revGo, a core of the Go programming language assuming unbounded asynchronous channels. Our rollback-and-replay semantics allows us to reorder messages in the queue if they are not causally related in the forward execution. It is shown that reordering independent messages generates no configuration with non-reachable processes. By reordering independent messages, rollback and replay are implementable with minimality by assigning unique keys to communications.

cs.PL

CRIL: A Concurrent Reversible Intermediate Language

We present a reversible intermediate language with concurrency for translating a high-level concurrent programming language to another lower-level concurrent programming language, keeping reversibility. Intermediate languages are commonly used in compiling a source program to an object code program closer to the machine code, where an intermediate language enables behavioral analysis and optimization to be decomposed in steps. We propose CRIL (Concurrent Reversible Intermediate Language) as an extension of RIL used by Mogensen for a functional reversible language, incorporating a multi-thread process invocation and the synchronization primitives based on the P-V operations. We show that the operational semantics of CRIL enjoy the properties of reversibility, including the causal safety and causal liveness proposed by Lanese et al., checking the axiomatic properties. The operational semantics is defined by composing the bidirectional control flow with the dependency information on updating the memory, called annotation DAG. We show a simple example of `airline ticketing' to illustrate how CRIL preserves the causality for reversibility in imperative programs with concurrency.

cs.PL