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Control table and Machine code

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

Difference between Control table and Machine code

Control table vs. Machine code

Control tables are tables that control the control flow or play a major part in program control. Machine code is a computer program written in machine language instructions that can be executed directly by a computer's central processing unit (CPU).

Similarities between Control table and Machine code

Control table and Machine code have 14 things in common (in Unionpedia): Assembly language, Branch (computer science), Bytecode, Central processing unit, Computer architecture, Control flow, Debugging, High-level programming language, IBM System/360, Instruction set architecture, Interpreter (computing), Opcode, P-code machine, Porting.

Assembly language

An assembly (or assembler) language, often abbreviated asm, is a low-level programming language, in which there is a very strong (but often not one-to-one) correspondence between the assembly program statements and the architecture's machine code instructions.

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Branch (computer science)

A branch is an instruction in a computer program that can cause a computer to begin executing a different instruction sequence and thus deviate from its default behavior of executing instructions in order.

Branch (computer science) and Control table · Branch (computer science) and Machine code · See more »

Bytecode

Bytecode, also termed 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) is the electronic circuitry within a computer that carries out the instructions of a computer program by performing the basic arithmetic, logical, control and input/output (I/O) operations specified by the instructions.

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Computer architecture

In computer engineering, computer architecture is a set of rules and methods that describe the functionality, organization, and implementation of computer systems.

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Control flow

In computer science, control flow (or flow of control) is the order in which individual statements, instructions or function calls of an imperative program are executed or evaluated.

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Debugging

Debugging is the process of finding and resolving defects or problems within a computer program that prevent correct operation of computer software or a system.

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High-level programming language

In computer science, a high-level programming language is a programming language with strong abstraction from the details of the computer.

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IBM System/360

The IBM System/360 (S/360) is a family of mainframe computer systems that was announced by IBM on April 7, 1964, and delivered between 1965 and 1978.

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Instruction set architecture

An instruction set architecture (ISA) is an abstract model of a computer.

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Interpreter (computing)

In computer science, an interpreter is a computer program that directly executes, i.e. performs, instructions written in a programming or scripting language, without requiring them previously to have been compiled into a machine language program.

Control table and Interpreter (computing) · Interpreter (computing) and Machine code · See more »

Opcode

In computing, an opcode (abbreviated from operation code, also known as 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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P-code machine

In computer programming, a p-code machine, or portable code machine is a virtual machine designed to execute p-code (the assembly language of a hypothetical CPU).

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Porting

In software engineering, porting is the process of adapting software for the purpose of achieving some form of execution in a computing environment that is different from the one that a given program (meant for such execution) was originally designed for (e.g. different CPU, operating system, or third party library).

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The list above answers the following questions

Control table and Machine code Comparison

Control table has 140 relations, while Machine code has 73. As they have in common 14, the Jaccard index is 6.57% = 14 / (140 + 73).

References

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

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