mod02 bonus works
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@@ -13,7 +13,6 @@
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// TIMER
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#define PERIOD 2000
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#define PRESCALE_VALUE 1024 // can be 1, 8, 64, 256, 1024
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#define STRLEN_LITERAL(str) (sizeof(str) / sizeof(str[0]) - 1) // -1 to remove the null terminator, only works with string literals, not with pointers
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// END MACROS
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@@ -22,7 +21,10 @@ void uart_init();
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// char uart_rx(void);
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void uart_tx(char c);
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void uart_printstr(const char* str);
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void check_str(char input, volatile char compare_str[], unsigned int length);
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void remove_last_character();
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void fill_str(char input);
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int compare_str(volatile char *input_str, volatile char *base_str);
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int strlength(volatile char *str);
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void reset_message();
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void ask_for_username();
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void ask_for_password();
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@@ -38,10 +40,8 @@ volatile char username[] = "admin";
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volatile char password[] = "password";
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volatile char username_input[100] = {0};
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volatile char password_input[100] = {0};
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volatile int input_index = 0;
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volatile State state = USERNAME;
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volatile int input_match = FALSE;
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volatile int username_correct = FALSE;
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volatile int password_correct = FALSE;
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@@ -76,57 +76,43 @@ ISR(USART_RX_vect) { // Table 12-7 : we select the code for USART
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char received_char = UDR0; // read received character
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if (received_char == '\b' || received_char == 127) { // if backspace is received
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if (input_index <= 0) return;
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remove_last_character();
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input_index--;
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uart_tx('\b'); // Move cursor back
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uart_tx(' '); // Erase the character on screen
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uart_tx('\b'); // Move cursor back again
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} else if (received_char == '\n' || received_char == '\r') { // if enter is received
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if (state == USERNAME) {
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// if (input_index == STRLEN_LITERAL(username) && input_match) {
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// username_correct = TRUE;
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// } else {
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// username_correct = FALSE;
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// uart_printstr("(error1)");
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// }
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if (compare_str(username_input, username, STRLEN_LITERAL(username))) {
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if (compare_str(username_input, username)) {
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username_correct = TRUE;
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} else {
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username_correct = FALSE;
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uart_printstr("(error1)");
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// uart_printstr("(error1)");
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}
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input_match = FALSE;
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state = PASSWORD;
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input_index = 0;
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uart_tx('\r'); // Move cursor to next line
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uart_tx('\r');
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uart_tx('\n');
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ask_for_password();
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} else if (state == PASSWORD) {
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if (!username_correct) {
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uart_printstr("(error2)");
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// uart_printstr("(error2)");
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return reset_message();
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}
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if (input_index != STRLEN_LITERAL(password)) {
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uart_printstr("(error3)");
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if (!compare_str(password_input, password)) {
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// uart_printstr("(error3)");
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return reset_message();
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}
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if (!input_match) {
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uart_printstr("(error4)");
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return reset_message();
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}
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uart_tx('\r'); // Move cursor to next line
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uart_tx('\r');
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uart_tx('\n');
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on_success();
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}
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} else {
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fill_str(received_char);
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if (state == USERNAME) {
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// check_str(received_char, username, STRLEN_LITERAL(username));
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uart_tx(received_char);
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}
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else if (state == PASSWORD) {
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// check_str(received_char, password, STRLEN_LITERAL(password));
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uart_tx('*');
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}
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input_index++;
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@@ -135,7 +121,7 @@ ISR(USART_RX_vect) { // Table 12-7 : we select the code for USART
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void fill_str(char input) {
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if (input_index >= 100) {
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uart_printstr("(error8)");
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// uart_printstr("(error4)");
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return;
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}
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if (state == USERNAME) {
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@@ -145,72 +131,49 @@ void fill_str(char input) {
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}
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}
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int compare_str() {
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char input_str[100] = {0};
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char compare_str[100] = {0};
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void remove_last_character() {
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if (state == USERNAME) {
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compare_str = username;
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input_str = username_input;
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username_input[input_index] = 0;
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} else if (state == PASSWORD) {
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compare_str = password;
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input_str = password_input;
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password_input[input_index] = 0;
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}
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int length = STRLEN_LITERAL(compare_str);
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int index = 0;
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}
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while (*compare_str) {
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if (index >= length) {
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uart_printstr("(error5)");
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return FALSE;
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}
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if (input_str[index] != *compare_str) {
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uart_printstr("(error6)");
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return FALSE;
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}
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compare_str++;
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index++;
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int compare_str(volatile char *input_str, volatile char *base_str) {
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int base_length = strlength(base_str);
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int input_length = strlength(input_str);
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if (base_length != input_length) {
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// uart_printstr("(error5)");
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return FALSE;
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}
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for (int i = 0; i < length; i++) {
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if (input[i] != compare_str[i]) {
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for(int i = 0; i < base_length; i++) {
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if (input_str[i] != base_str[i]) {
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// uart_printstr("(error6)");
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return FALSE;
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}
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}
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return TRUE;
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}
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void check_str(char input, volatile char compare_str[], unsigned int length) {
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if (input_index >= length) { // index has not already been incremented, so we need to compare greater or equal
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uart_printstr("(error5)");
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input_match = FALSE;
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return;
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int strlength(volatile char *str) {
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int length = 0;
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while (*str) {
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length++;
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str++;
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}
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if (input != compare_str[input_index]) {
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uart_printstr("(error6)");
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input_match = FALSE;
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return;
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}
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// if we reach this point, the input character matches the compare_str character
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if (input_index == 0) {
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input_match = TRUE;
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return;
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}
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// if we reach this point, the input character is not the first character of the compare_str
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if (input_match == FALSE) {
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// if any previous character did not match, we don't need to check the next character
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uart_printstr("(error7)");
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return;
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}
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input_match = TRUE;
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return length;
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}
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void reset_message() {
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for(int i = 0; i < 100; i++) {
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username_input[i] = 0;
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password_input[i] = 0;
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}
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input_index = 0;
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input_match = FALSE;
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username_correct = FALSE;
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password_correct = FALSE;
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state = USERNAME;
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uart_tx('\r'); // Move cursor to next line
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uart_tx('\r');
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uart_tx('\n');
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on_error();
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ask_for_username();
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