native code compiler - definition. What is native code compiler
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%ما هو (من)٪ 1 - تعريف

FORM OF INSTRUCTION SET DESIGNED TO BE RUN BY A SOFTWARE INTERPRETER
Byte code; P-Code; P-Codes; Intermediate code; Byte-code; Bitcode; Byte Code; Bytecodes; Portable code; P-code; Byte-compile; Byte-compiler; Byte-code compiler

compiler         
  • Compiler design
  • grammar for C]], respectively.
COMPUTER PROGRAM THAT TRANSFORMS SOURCE CODE INTO OBJECT CODE
Compilers; Compile; Language compiler; Compile (computing); Compiler (computing); Compiled sofware; Compiling; Compiler design; Compiler (programming); Compiled; Parallel compiler; Compiler theory; Parallel compilers; Recompile; Parallel complier; Compilation (programming); Semantic analysis (computer science); Compiler (computer); Code compilation; Compiling tools; Compiler construction; Programming language compiler; Compiled software; Write compiler; Compiler designer; Compiler writer; Compiler writing; Compiler frontend; Compiler backend; Compilation (computing); Code compiling; Line reconstruction; Compiler front-end; Compiler back-end; Code compiler; CFE (compiler); Front end (compiler); Compiler front end; Compiler back end; Compiler middle end; Three-stage compilation; Recompiled; Back end (Compiler); Program compilation
(compilers)
1.
A compiler is someone who compiles books, reports, or lists of information.
N-COUNT: oft N of n
2.
A compiler is a computer program which converts language that people can use into a code that the computer can understand. (COMPUTING)
N-COUNT
Recompile         
  • Compiler design
  • grammar for C]], respectively.
COMPUTER PROGRAM THAT TRANSFORMS SOURCE CODE INTO OBJECT CODE
Compilers; Compile; Language compiler; Compile (computing); Compiler (computing); Compiled sofware; Compiling; Compiler design; Compiler (programming); Compiled; Parallel compiler; Compiler theory; Parallel compilers; Recompile; Parallel complier; Compilation (programming); Semantic analysis (computer science); Compiler (computer); Code compilation; Compiling tools; Compiler construction; Programming language compiler; Compiled software; Write compiler; Compiler designer; Compiler writer; Compiler writing; Compiler frontend; Compiler backend; Compilation (computing); Code compiling; Line reconstruction; Compiler front-end; Compiler back-end; Code compiler; CFE (compiler); Front end (compiler); Compiler front end; Compiler back end; Compiler middle end; Three-stage compilation; Recompiled; Back end (Compiler); Program compilation
·vt To compile anew.
Compiled         
  • Compiler design
  • grammar for C]], respectively.
COMPUTER PROGRAM THAT TRANSFORMS SOURCE CODE INTO OBJECT CODE
Compilers; Compile; Language compiler; Compile (computing); Compiler (computing); Compiled sofware; Compiling; Compiler design; Compiler (programming); Compiled; Parallel compiler; Compiler theory; Parallel compilers; Recompile; Parallel complier; Compilation (programming); Semantic analysis (computer science); Compiler (computer); Code compilation; Compiling tools; Compiler construction; Programming language compiler; Compiled software; Write compiler; Compiler designer; Compiler writer; Compiler writing; Compiler frontend; Compiler backend; Compilation (computing); Code compiling; Line reconstruction; Compiler front-end; Compiler back-end; Code compiler; CFE (compiler); Front end (compiler); Compiler front end; Compiler back end; Compiler middle end; Three-stage compilation; Recompiled; Back end (Compiler); Program compilation
·Impf & ·p.p. of Compile.

ويكيبيديا

Bytecode

Bytecode (also called portable code or p-code) is a form of instruction set designed for efficient execution by a software interpreter. Unlike human-readable source code, bytecodes are compact numeric codes, constants, and references (normally numeric addresses) that encode the result of compiler parsing and performing semantic analysis of things like type, scope, and nesting depths of program objects.

The name bytecode stems from instruction sets that have one-byte opcodes followed by optional parameters. Intermediate representations such as bytecode may be output by programming language implementations to ease interpretation, or it may be used to reduce hardware and operating system dependence by allowing the same code to run cross-platform, on different devices. Bytecode may often be either directly executed on a virtual machine (a p-code machine, i.e., interpreter), or it may be further compiled into machine code for better performance.

Since bytecode instructions are processed by software, they may be arbitrarily complex, but are nonetheless often akin to traditional hardware instructions: virtual stack machines are the most common, but virtual register machines have been built also. Different parts may often be stored in separate files, similar to object modules, but dynamically loaded during execution.