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3.2 KiB
C

/*
This program is part of the TACLeBench benchmark suite.
Version V 2.0
Name: binarysearch
Author: Sung-Soo Lim <sslim@archi.snu.ac.kr>
Function: binarysearch performs binary search in an array of 15 integer
elements.
This program is completely structured (no unconditional jumps, no exits
from loop bodies), and does not contain switch statements, no do-while
loops.
Source: MRTC
http://www.mrtc.mdh.se/projects/wcet/wcet_bench/bs/bs.c
Original name: bs
Changes: No major functional changes.
License: May be used, modified, and re-distributed freely, but
the SNU-RT Benchmark Suite must be acknowledged
*/
/*
This program is derived from the SNU-RT Benchmark Suite for Worst
Case Timing Analysis by Sung-Soo Lim
*/
/*
Forward declaration of functions
*/
// Wasm loop bounds
__attribute__((import_module("__pragma"), import_name("loopbound"))) extern void
__pragma_loopbound(unsigned int min_bound, unsigned int max_bound);
void binarysearch_initSeed(void);
long binarysearch_randomInteger(void);
void binarysearch_init(void);
int binarysearch_return(void);
int binarysearch_binary_search(int);
__attribute__((noinline)) __attribute__((export_name("entrypoint"))) void
binarysearch_main(void);
__attribute__((noinline)) __attribute__((export_name("main"))) int main(void);
/*
Declaration of global variables
*/
volatile int binarysearch_seed;
struct binarysearch_DATA {
int key;
int value;
};
struct binarysearch_DATA binarysearch_data[15];
int binarysearch_result;
/*
Initialization- and return-value-related functions
*/
/*
binarysearch_initSeed initializes the seed used in the "random" number
generator.
*/
void
binarysearch_initSeed(void) {
binarysearch_seed = 0;
}
/*
binarysearch_RandomInteger generates "random" integers between 0 and 8094.
*/
long
binarysearch_randomInteger(void) {
binarysearch_seed = ((binarysearch_seed * 133) + 81) % 8095;
return (binarysearch_seed);
}
void
binarysearch_init(void) {
int i;
binarysearch_initSeed();
__pragma_loopbound(15, 15);
for (i = 0; i < 15; ++i) {
binarysearch_data[i].key = binarysearch_randomInteger();
binarysearch_data[i].value = binarysearch_randomInteger();
}
}
int
binarysearch_return(void) {
return (binarysearch_result);
}
/*
Algorithm core functions
*/
int
binarysearch_binary_search(int x) {
int fvalue, mid, up, low;
low = 0;
up = 14;
fvalue = -1;
__pragma_loopbound(1, 4);
while (low <= up) {
mid = (low + up) >> 1;
if (binarysearch_data[mid].key == x) {
/* Item found */
up = low - 1;
fvalue = binarysearch_data[mid].value;
} else
if (binarysearch_data[mid].key > x)
/* Item not found */
up = mid - 1;
else
low = mid + 1;
}
return (fvalue);
}
/*
Main functions
*/
__attribute__((noinline)) __attribute__((export_name("entrypoint"))) void
binarysearch_main(void) {
binarysearch_result = binarysearch_binary_search(8);
}
__attribute__((noinline)) __attribute__((export_name("main"))) int
main(void) {
binarysearch_init();
binarysearch_main();
return (binarysearch_return() - (-1) != 0);
}