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The Java programming language provides safety and security guarantees such as type safety and its security architecture. They distinguish it from other mainstream programming languages like C and C++. In this work, we develop a machine-checked model of concurrent Java and the Java memory model and investigate the impact of concurrency on these guarantees. From the formal model, we automatically obtain an executable verified compiler to bytecode and a validated virtual machine.
Java --- formal semantics --- type safety --- memory model --- concurrency
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Semiconductor storage devices --- Very high speed integrated circuits --- 681.31 --- DIMM double-sided SIMM --- DRAM dynamic random access memory --- RAM random access memory --- SDRAM synchronous dynamic random access memory --- SIMM single-in-line memory model --- SRAM static random access memory --- cache geheugens --- geheugens --- hardware --- Computerarchitectuur. Informaticahardware. --- Semiconductor storage devices. --- Very high speed integrated circuits. --- VHSIC --- Integrated circuits --- Semiconductor memories --- Computer storage devices --- Semiconductors --- Computerarchitectuur. Informaticahardware --- Very large scale integration
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