mirror of
https://gitlab.com/Nils_Kasulke/spectre_project.git
synced 2026-04-03 23:37:25 +00:00
added tools to test branch perdiction performance
This commit is contained in:
1
branch_predict_test/.gitignore
vendored
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branch_predict_test/.gitignore
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*.txt
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branch_predict_test/Makefile
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branch_predict_test/Makefile
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build: branch_predict.c
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gcc branch_predict.c -O2 -o branch_predict.exe
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BIN
branch_predict_test/branch_predict
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BIN
branch_predict_test/branch_predict
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227
branch_predict_test/branch_predict.c
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branch_predict_test/branch_predict.c
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#include<stdio.h>
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#include<stdlib.h>
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#include<string.h>
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#include<time.h>
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/*
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* range of the chars in the randomly generated string
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*
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* 33 = '!'
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* 127 = '~'
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*
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*/
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#define CHAR_START 33
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#define CHAR_END 127
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/*
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* returns dynamically allocated random string
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* with a strlen between minLen and maxLen
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* the memory size is strlen + 1
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*
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*/
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char* rand_word(unsigned minLen, unsigned maxLen);
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/*
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* uses rand returned value >= min and value <= max
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*/
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unsigned rand_between(unsigned min, unsigned max);
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/*
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* returns an array of dynamically allocated strings
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* length of array is n + 1, the last value is NULL
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*/
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char** random_strings(size_t n, unsigned minLen, unsigned maxLen);
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/*
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* returns strlen without newline
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* removes terminates string at newline position
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*/
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size_t remove_newline(char* str);
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/*max line size with newline and terminating 0*/
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#define MAX_LINE_SIZE 1024
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/*
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* nRead, out: allowed to be NULL
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* nRead represents actually read strings, without trailing NULL
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* e.g. if 0 strings are read, nRead will be 0, and the returned array will be {NULL}
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* returns string array, null terminated
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*
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*/
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char** read_strings(const char* fileName, size_t* nRead);
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/*
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* count set bits in string s
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*/
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int string_bit_count(char* s);
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/*
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* returns malloced memory of size memSize
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* if it fails, it exits with 7 the programm
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*
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*/
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void* non_null_malloc(size_t memSize);
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int string_sort_func(const void* a, const void* b);
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void usage_and_exit();
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void usage_and_exit() {
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printf("usage\n");
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printf("<prog> measure <filename>\n");
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printf("<prog> sort <filename>\n");
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printf("<prog> generate <n> <min> <max>\n");
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exit(1);
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}
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int main(int argc, char* argv[])
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{
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_Bool generate = 0;
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_Bool measure = 0;
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_Bool sort = 0;
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if(argc < 2 ) {
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usage_and_exit();
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}
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measure = strcmp(argv[1], "measure") == 0;
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generate = strcmp(argv[1], "generate") == 0;
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sort = strcmp(argv[1], "sort") == 0;
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if((!generate) && (!measure) && (!sort)) {
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usage_and_exit();
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}
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if(measure) {
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if(argc != 3 ) {
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usage_and_exit();
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}
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char** array = read_strings(argv[2], NULL);
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char** p = array;
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unsigned long long counter = 0;
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clock_t t1, t0 = clock();
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for(; *p; ++p) {
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counter += string_bit_count(*p);
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}
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t1 = clock();
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printf("measure file: <%s>\n", argv[2]);
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printf("counter = %llu\n", counter);
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printf("time = %lf ms\n", (t1 - t0) / (double) CLOCKS_PER_SEC * 1000.0);
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} else if(generate) {
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if(argc != 5 ) {
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usage_and_exit();
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}
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unsigned n, minLen, maxLen;
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sscanf(argv[2], "%u", &n);
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sscanf(argv[3], "%u", &minLen);
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sscanf(argv[4], "%u", &maxLen);
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char** words = random_strings(n, minLen, maxLen);
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for(int i=0; i<n; ++i) {
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printf("%s\n", words[i]);
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}
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} else if(sort) {
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if(argc != 3 ) {
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usage_and_exit();
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}
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size_t nRead = 0;
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char** array = read_strings(argv[2], &nRead);
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qsort(array, nRead, sizeof(char*), string_sort_func);
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for(size_t i=0; i < nRead; ++i) {
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printf("%s\n", array[i]);
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}
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}
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}
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size_t remove_newline(char* str) {
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size_t pos = 0;
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while(str[pos] && str[pos] != '\n') ++pos;
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str[pos] = '\0';
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return pos;
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}
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char** random_strings(size_t n, unsigned minLen, unsigned maxLen) {
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char** array = (char**) non_null_malloc(sizeof(char*) * (n+1));
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for(size_t i=0; i<n; ++i) {
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array[i] = rand_word(minLen, maxLen);
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}
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array[n] = NULL;
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return array;
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}
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void* non_null_malloc(size_t memSize) {
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char* m = malloc(memSize);
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if(!m) {
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perror("non_malloc_failed");
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exit(7);
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}
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return m;
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}
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unsigned rand_between(unsigned min, unsigned max) {
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int rv = rand();
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unsigned urv = rv < 0? -1*rv : rv;
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unsigned v = (rv % ((max+1) - min)) + min;
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return v;
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}
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char* rand_word(unsigned minLen, unsigned maxLen) {
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unsigned len = rand_between(minLen, maxLen);
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char* s = non_null_malloc(len+1);
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for(size_t i=0; i<len; ++i) {
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s[i] = rand_between(CHAR_START, CHAR_END);
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}
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s[len] = '\0';
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return s;
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}
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int string_bit_count(char* s) {
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//printf("<%s>\n", s);
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int count = 0;
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int len = strlen(s);
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for(int i=0; i<len; ++i) {
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for(int k=0; k<8; ++k) {
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if(s[i] & (1 << k)) {
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++count;
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}
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}
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}
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//printf("count = %d\n", count);
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return count;
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}
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int string_sort_func(const void* a, const void* b) {
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char* sa = *((char**) a);
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char* sb = *((char**) b);
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return strcmp(sa, sb);
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}
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char** read_strings(const char* fileName, size_t* nRead) {
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size_t len;
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char* sp;
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FILE* f = fopen(fileName, "r");
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if(!f) { perror("unable to open file"); exit(1); }
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char* buff = non_null_malloc(MAX_LINE_SIZE);
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size_t out_array_len = 16 * sizeof(char*);
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size_t out_array_pos = 0;
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char** out_array = non_null_malloc(out_array_len);
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out_array[0] = NULL;
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while(! feof(f)) {
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buff[0] = '\0';
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if(! fgets(buff, MAX_LINE_SIZE, f)) {
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break;
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}
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len = remove_newline(buff);
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if(len > 0) {
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sp = non_null_malloc(len+1);
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memcpy(sp, buff, len+1);
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if(out_array_pos + 1 > out_array_len / sizeof(char*)) {
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out_array_len = out_array_len * 2;
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out_array = realloc(out_array, out_array_len);
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if(! out_array) { perror("allocation failed"); exit(1); }
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}
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out_array[out_array_pos++] = sp;
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out_array[out_array_pos] = NULL;
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}
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}
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fclose(f);
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if(nRead) *nRead = out_array_pos;
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return out_array;
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}
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7
branch_predict_test/test.sh
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7
branch_predict_test/test.sh
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./branch_predict generate 5000000 10 10 > unsorted_sample01.txt
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./branch_predict sort unsorted_sample01.txt > issorted_sample01.txt
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echo "head of unsorted_sample01.txt" >> output.txt
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head unsorted_sample01.txt >> output.txt
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echo "\n" >> output.txt
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./branch_predict measure unsorted_sample01.txt >> output.txt
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./branch_predict measure issorted_sample01.txt >> output.txt
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