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AN3350 데이터시트(PDF) 103 Page - STMicroelectronics

부품명 AN3350
상세설명  eTPU compiler tools
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제조업체  STMICROELECTRONICS [STMicroelectronics]
홈페이지  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

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AN3350
Intermediate optimizations
Doc ID 018512 Rev 2
103/185
13
Intermediate optimizations
After it translates a program’s source code into its intermediate representation, the compiler
optionally applies optimizations that reduce the program’s size, improve its execution speed,
or both. The topics in this chapter explains these optimizations and how to apply them:
●
Intermediate optimizations
●
Inlining
13.1
Intermediate optimizations
After it translates a function into its intermediate representation, the compiler may optionally
apply some optimizations. The result of these optimizations on the intermediate
representation will either reduce the size of the executable code, improve the executable
code’s execution speed, or both.
●
Dead code elimination
●
Expression simplification
●
Common subexpression elimination
●
Copy propagation
●
Dead store elimination
●
Live range splitting
●
Loop-invariant code motion
●
Strength reduction
●
Loop unrolling
13.1.1
Dead code elimination
The dead code elimination optimization removes expressions that are not accessible or are
not referred to. This optimization reduces size and increases execution speed.
Table 17 explains how to control the optimization for dead code elimination.
In Example 49, the call to func1() will never execute because the if statement that it is
associated with will never be true. Consequently, the compiler can safely eliminate the call
to func1(), as shown in Example 50.
Example 49 Before dead code elimination
void func_from(void)
{
if (0)
{
Table 17.
Controlling dead code elimination
Turn control this option from here...
use this setting
Source code
#pragma opt_dead_code on | off | reset
Command line
-opt [no]deadcode



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