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Machine code and Stack machine

Shortcuts: Differences, Similarities, Jaccard Similarity Coefficient, References.

Difference between Machine code and Stack machine

Machine code vs. Stack machine

In computer programming, machine code is computer code consisting of machine language instructions, which are used to control a computer's central processing unit (CPU). In computer science, computer engineering and programming language implementations, a stack machine is a computer processor or a virtual machine in which the primary interaction is moving short-lived temporary values to and from a push down stack.

Similarities between Machine code and Stack machine

Machine code and Stack machine have 16 things in common (in Unionpedia): Accumulator (computing), Addison-Wesley, Bit, Bytecode, Central processing unit, CPU cache, Instruction set architecture, Memory address, Microcode, Opcode, PDP-11, Processor register, Ruby (programming language), Smalltalk, VAX, Very long instruction word.

Accumulator (computing)

In a computer's central processing unit (CPU), the accumulator is a register in which intermediate arithmetic logic unit results are stored.

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Addison-Wesley

Addison–Wesley is an American publisher of textbooks and computer literature.

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Bit

The bit is the most basic unit of information in computing and digital communication.

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Bytecode

Bytecode (also called portable code or p-code) is a form of instruction set designed for efficient execution by a software interpreter.

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Central processing unit

A central processing unit (CPU), also called a central processor, main processor, or just processor, is the most important processor in a given computer.

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CPU cache

A CPU cache is a hardware cache used by the central processing unit (CPU) of a computer to reduce the average cost (time or energy) to access data from the main memory.

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Instruction set architecture

In computer science, an instruction set architecture (ISA) is an abstract model that generally defines how software controls the CPU in a computer or a family of computers.

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Memory address

In computing, a memory address is a reference to a specific memory location used at various levels by software and hardware.

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Microcode

In processor design, microcode serves as an intermediary layer situated between the central processing unit (CPU) hardware and the programmer-visible instruction set architecture of a computer, also known as its machine code.

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Opcode

In computing, an opcode (abbreviated from operation code, also known as instruction machine code, instruction code, instruction syllable, instruction parcel or opstring) is the portion of a machine language instruction that specifies the operation to be performed.

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PDP-11

The PDP–11 is a series of 16-bit minicomputers sold by Digital Equipment Corporation (DEC) from 1970 into the late 1990s, one of a set of products in the Programmed Data Processor (PDP) series.

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Processor register

A processor register is a quickly accessible location available to a computer's processor.

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Ruby (programming language)

Ruby is an interpreted, high-level, general-purpose programming language.

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Smalltalk

Smalltalk is a purely object oriented programming language (OOP) that was originally created in the 1970s for educational use, specifically for constructionist learning, but later found use in business.

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VAX

VAX (an acronym for Virtual Address eXtension) is a series of computers featuring a 32-bit instruction set architecture (ISA) and virtual memory that was developed and sold by Digital Equipment Corporation (DEC) in the late 20th century.

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Very long instruction word

Very long instruction word (VLIW) refers to instruction set architectures that are designed to exploit instruction-level parallelism (ILP).

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The list above answers the following questions

Machine code and Stack machine Comparison

Machine code has 140 relations, while Stack machine has 123. As they have in common 16, the Jaccard index is 6.08% = 16 / (140 + 123).

References

This article shows the relationship between Machine code and Stack machine. To access each article from which the information was extracted, please visit: