Revert types

This commit is contained in:
Mark Qvist 2022-01-14 10:51:40 +01:00
parent 9dbba03a67
commit 4237760680
3 changed files with 24 additions and 24 deletions

View file

@ -210,10 +210,10 @@ int8_t led_standby_direction = 0;
}
#endif
void escapedSerialWrite(uint8_t vbyte) {
if (vbyte == FEND) { Serial.write(FESC); vbyte = TFEND; }
if (vbyte == FESC) { Serial.write(FESC); vbyte = TFESC; }
Serial.write(vbyte);
void escapedSerialWrite(uint8_t byte) {
if (byte == FEND) { Serial.write(FESC); byte = TFEND; }
if (byte == FESC) { Serial.write(FESC); byte = TFESC; }
Serial.write(byte);
}
void kiss_indicate_reset() {
@ -327,10 +327,10 @@ void kiss_indicate_frequency() {
Serial.write(FEND);
}
void kiss_indicate_random(uint8_t vbyte) {
void kiss_indicate_random(uint8_t byte) {
Serial.write(FEND);
Serial.write(CMD_RANDOM);
Serial.write(vbyte);
Serial.write(byte);
Serial.write(FEND);
}
@ -474,22 +474,22 @@ bool eeprom_info_locked() {
void eeprom_dump_info() {
for (int addr = ADDR_PRODUCT; addr <= ADDR_INFO_LOCK; addr++) {
uint8_t vbyte = EEPROM.read(eeprom_addr(addr));
escapedSerialWrite(vbyte);
uint8_t byte = EEPROM.read(eeprom_addr(addr));
escapedSerialWrite(byte);
}
}
void eeprom_dump_config() {
for (int addr = ADDR_CONF_SF; addr <= ADDR_CONF_OK; addr++) {
uint8_t vbyte = EEPROM.read(eeprom_addr(addr));
escapedSerialWrite(vbyte);
uint8_t byte = EEPROM.read(eeprom_addr(addr));
escapedSerialWrite(byte);
}
}
void eeprom_dump_all() {
for (int addr = 0; addr < EEPROM_RESERVED; addr++) {
uint8_t vbyte = EEPROM.read(eeprom_addr(addr));
escapedSerialWrite(vbyte);
uint8_t byte = EEPROM.read(eeprom_addr(addr));
escapedSerialWrite(byte);
}
}
@ -500,21 +500,21 @@ void kiss_dump_eeprom() {
Serial.write(FEND);
}
void eeprom_update(int mapped_addr, uint8_t vbyte) {
void eeprom_update(int mapped_addr, uint8_t byte) {
#if MCU_VARIANT == MCU_1284P || MCU_VARIANT == MCU_2560
EEPROM.update(mapped_addr, vbyte);
EEPROM.update(mapped_addr, byte);
#elif MCU_VARIANT == MCU_ESP32
if (EEPROM.read(mapped_addr) != vbyte) {
EEPROM.write(mapped_addr, vbyte);
if (EEPROM.read(mapped_addr) != byte) {
EEPROM.write(mapped_addr, byte);
EEPROM.commit();
}
#endif
}
void eeprom_write(int addr, uint8_t vbyte) {
void eeprom_write(int addr, uint8_t byte) {
if (!eeprom_info_locked() && (addr >= 0) && (addr < EEPROM_RESERVED)) {
eeprom_update(eeprom_addr(addr), vbyte);
eeprom_update(eeprom_addr(addr), byte);
} else {
kiss_indicate_error(ERROR_EEPROM_LOCKED);
}
@ -565,8 +565,8 @@ bool eeprom_hwrev_valid() {
bool eeprom_checksum_valid() {
char *data = (char*)malloc(CHECKSUMMED_SIZE);
for (uint8_t i = 0; i < CHECKSUMMED_SIZE; i++) {
char vbyte = EEPROM.read(eeprom_addr(i));
data[i] = vbyte;
char byte = EEPROM.read(eeprom_addr(i));
data[i] = byte;
}
unsigned char *hash = MD5::make_hash(data, CHECKSUMMED_SIZE);