feat: implemented parsing opcodes and dumping to csv
This commit is contained in:
@@ -2,9 +2,22 @@
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#include <stdarg.h>
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#include <stdarg.h>
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#include <stdlib.h>
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#include <stdlib.h>
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#include <stdint.h>
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#include <stdint.h>
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#include <sys/time.h>
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#include <windows.h>
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#include <signal.h>
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#define MEMORY_SIZE 4096
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#define MEMORY_SIZE 4096
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#define PROGRAM_START 512
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#define PROGRAM_START 512
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#define CPU_CLOCK_HZ 600
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#define TIMER_HZ 60
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const int CYCLES_PER_FRAME = CPU_CLOCK_HZ / TIMER_HZ;
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volatile sig_atomic_t keep_running = 1;
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void handle_sigint() {
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keep_running = 0;
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}
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enum ExitCodes {
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enum ExitCodes {
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COMPLETED_SUCCESSFULLY,
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COMPLETED_SUCCESSFULLY,
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@@ -17,7 +30,10 @@ enum ExitCodes {
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// TODO: Add additional members
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// TODO: Add additional members
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// i.e. registers
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// i.e. registers
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typedef struct ChipEight {
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typedef struct ChipEight {
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uint8_t memory[MEMORY_SIZE] ;
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uint8_t memory[MEMORY_SIZE];
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uint16_t pc;
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uint8_t dt;
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uint8_t st;
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} chip_eight_t;
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} chip_eight_t;
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void println(const char *format, ...) {
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void println(const char *format, ...) {
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@@ -32,13 +48,30 @@ void println(const char *format, ...) {
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printf("\n");
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printf("\n");
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}
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}
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long get_time() {
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struct timeval tv;
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gettimeofday(&tv, NULL);
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const int ms_per_sec = 1000;
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long ms = tv.tv_sec / ms_per_sec;
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return ms;
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}
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int main(int argc, char *argv[]) {
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int main(int argc, char *argv[]) {
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// Sets up Ctrl+C handling
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signal(SIGINT, handle_sigint);
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signal(SIGTERM, handle_sigint);
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// Validate file argument
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if (argc < 2) {
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if (argc < 2) {
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println("You fucked up bro! We need a file to load into memory.");
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println("You fucked up bro! We need a file to load into memory.");
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println("Usage: chip.exe <file-to-load>");
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println("Usage: chip.exe <file-to-load>");
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return FILE_NOT_PROVIDED;
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return FILE_NOT_PROVIDED;
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}
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}
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// Load file
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char* file_path = argv[1];
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char* file_path = argv[1];
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println("Loading file at %s...", file_path);
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println("Loading file at %s...", file_path);
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@@ -56,6 +89,7 @@ int main(int argc, char *argv[]) {
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if (num_of_bytes > max_program_size) {
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if (num_of_bytes > max_program_size) {
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println("File at '%s' exceeds max program size of %d", file_path, max_program_size);
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println("File at '%s' exceeds max program size of %d", file_path, max_program_size);
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fclose(file_ptr);
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return PROGRAM_TOO_LARGE;
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return PROGRAM_TOO_LARGE;
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}
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}
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@@ -65,22 +99,135 @@ int main(int argc, char *argv[]) {
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if (chip == NULL) {
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if (chip == NULL) {
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println("Failed to allocate memory for chip.");
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println("Failed to allocate memory for chip.");
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fclose(file_ptr);
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return MEMORY_ALLOCATION_FAILURE;
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return MEMORY_ALLOCATION_FAILURE;
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}
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}
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fread(&chip->memory[PROGRAM_START], sizeof(uint8_t), num_of_bytes, file_ptr);
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fread(&chip->memory[PROGRAM_START], sizeof(uint8_t), num_of_bytes, file_ptr);
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chip->pc = PROGRAM_START;
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chip->dt = 0;
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chip->st = 0;
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println("File '%s' loaded successfully", file_path);
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println("File '%s' loaded successfully", file_path);
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fclose(file_ptr);
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fclose(file_ptr);
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// TODO: Parse instructions
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FILE *csv_file_ptr = fopen("./imb_logo_opcodes.csv", "a");
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println("INSTRUCTIONS:");
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for (int i = 0; i < MEMORY_SIZE; i++) {
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if (csv_file_ptr == NULL) {
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println("%d: %x ", i, chip->memory[i]);
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println("Failed to open csv file for writing");
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return -1;
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}
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}
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char *csv_headers = "opcode,nnn,n,x,y,kk\n";
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fprintf(csv_file_ptr, csv_headers);
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// main loop
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while(keep_running) {
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if (chip->pc > MEMORY_SIZE) {
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break;
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}
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long frame_start = get_time();
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for(int i = 0; i < CYCLES_PER_FRAME; i++) {
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// we need to read 2 bytes at at time:
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// i.e. 00000000 00000000
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// byte 1: 00011000
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// shift: 00011000 00000000
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// byte 2: 11100110
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// combine: | 11100110
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//
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// result: 00011000 11100110
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uint16_t opcode = (chip->memory[chip->pc] << 8) | (chip->memory[chip->pc + 1]);
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chip->pc += 2;
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// nnn or addr - A 12-bit value, the lowest 12 bits of the instruction
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// i.e. 00001111 11111111
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// value: 11001111 11001100 (53196)
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// oper: &
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// mask: 0000111111111111 (4095)
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// result: 00001111 11001100 (4044)
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uint16_t nnn = opcode & 4095;
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// n or nibble - A 4-bit value, the lowest 4 bits of the instruction
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// i.e. 00000000 00001111
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// value: 11001111 11001100 (53196)
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// oper: &
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// mask: 00000000 00001111 (15)
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uint16_t n = opcode & 15;
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// x - A 4-bit value, the lower 4 bits of the high byte of the instruction
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// i.e. 00001111 00000000
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// oper: >> 8
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// oper: &
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// mask: 00001111 00000000 (3840)
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uint16_t x = (opcode >> 8) & 3840;
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// y - A 4-bit value, the upper 4 bits of the low byte of the instruction
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// i.e. 00000000 11110000
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// oper: >> 4
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// oper: &
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// mask: 00000000 11110000 (240)
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uint16_t y = (opcode >> 4) & 240;
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// kk or byte - An 8-bit value, the lowest 8 bits of the instruction
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// i.e. 00000000 11111111
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// oper: &
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// mask: 00000000 11111111 (255)
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uint16_t kk = opcode & 255;
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// write headers of variable name to .csv file
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// create a string for each opcode that is comma separated
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// then write that string into a .csv file
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char *csv_format = "%x,%d,%d,%d,%d,%d\n";
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int len_of_str = snprintf(NULL, 0, csv_format, opcode, nnn, n, x, y, kk);
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char *csv_str = malloc((len_of_str + 1) * sizeof(char));
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if (csv_str == NULL) {
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println("Failed to allocate memory for csv string");
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return -1;
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}
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snprintf(csv_str, len_of_str + 1, csv_format, opcode, nnn, n, x, y, kk);
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fprintf(csv_file_ptr, csv_str);
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free(csv_str);
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csv_str = NULL;
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println("opcode: %d", opcode);
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println("nnn : %d", nnn);
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println("n : %d", n);
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println("x : %d", x);
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println("y : %d", y);
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println("kk : %d", kk);
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}
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if (chip->dt > 0) {
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chip->dt--;
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}
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if (chip->st > 0) {
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chip->st++;
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// TODO: Play sound
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} else {
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// TODO: Play sound
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}
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float min_diff = 16.66;
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long frame_end = get_time();
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long diff = frame_end - frame_start;
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if (diff < min_diff) {
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Sleep(min_diff - diff);
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}
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}
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fclose(csv_file_ptr);
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free(chip);
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free(chip);
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return COMPLETED_SUCCESSFULLY;
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return COMPLETED_SUCCESSFULLY;
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