Rewrite buffer related stuff to avoid weird stack overflow(?) issues

This commit is contained in:
Lexi / Zoe 2021-04-17 17:40:56 +02:00
parent d898f6e518
commit b5c5fd4ede
Signed by: binaryDiv
GPG Key ID: F8D4956E224DA232
6 changed files with 33 additions and 44 deletions

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@ -103,14 +103,12 @@ void commandRead(char* arg) {
uartPutLine("OK"); uartPutLine("OK");
uint8_t byteBuffer[DATA_BLOCK_SIZE]; // Create data buffer
DataBuffer buffer = { DataBuffer buffer;
.data = byteBuffer,
.maxSize = DATA_BLOCK_SIZE,
.bytes = 0
};
do { do {
buffer.bytes = 0;
// Read a single block with up to DATA_BLOCK_SIZE bytes // Read a single block with up to DATA_BLOCK_SIZE bytes
Address nextAddress = eepromReadBlock(range, &buffer); Address nextAddress = eepromReadBlock(range, &buffer);
range.isValid = nextAddress.isValid; range.isValid = nextAddress.isValid;
@ -121,16 +119,16 @@ void commandRead(char* arg) {
// First the size of the package (1 byte) followed by the data bytes // First the size of the package (1 byte) followed by the data bytes
uartPutChar(buffer.bytes); uartPutChar(buffer.bytes);
for (int i = 0; i < buffer.bytes; i++) { for (uint8_t i = 0; i < buffer.bytes; i++) {
uartPutChar(buffer.data[i]); uartPutChar(buffer.data[i]);
} }
} else { } else {
// Fancy ASCII output // Fancy ASCII output
uartPutChar('<'); uartPutString("<0x");
uartPutInteger(buffer.bytes); uartPutHexByte(buffer.bytes);
uartPutChar('>'); uartPutChar('>');
for (int i = 0; i < buffer.bytes; i++) { for (uint8_t i = 0; i < buffer.bytes; i++) {
uartPutChar(' '); uartPutChar(' ');
uartPutHexByte(buffer.data[i]); uartPutHexByte(buffer.data[i]);
} }
@ -159,17 +157,12 @@ void commandWrite(char* arg) {
return; return;
} }
// Create data buffer
uint8_t byteBuffer[DATA_BLOCK_SIZE];
DataBuffer buffer = {
.data = byteBuffer,
.maxSize = DATA_BLOCK_SIZE,
.bytes = 0
};
// "OK" indicates that data can be sent now. // "OK" indicates that data can be sent now.
uartPutLine("OK START"); uartPutLine("OK START");
// Create data buffer
DataBuffer buffer;
Address currentAddress = startAddress; Address currentAddress = startAddress;
uint8_t block_length = 0; uint8_t block_length = 0;
@ -180,10 +173,8 @@ void commandWrite(char* arg) {
// Read and check block length // Read and check block length
block_length = uartGetChar(); block_length = uartGetChar();
if (block_length > buffer.maxSize) { if (block_length > DATA_BLOCK_SIZE) {
uartPutString("ERROR maximal block size is: "); uartPutLine("ERROR maximal block size is: " STR(DATA_BLOCK_SIZE));
uartPutInteger(buffer.maxSize);
uartPutLine(NULL);
return; return;
} }
@ -196,9 +187,6 @@ void commandWrite(char* arg) {
if (buffer.bytes > 0) { if (buffer.bytes > 0) {
currentAddress = eepromWriteBlock(currentAddress, buffer); currentAddress = eepromWriteBlock(currentAddress, buffer);
// TODO wait necessary?
//_delay_ms(100);
if (!currentAddress.isValid) { if (!currentAddress.isValid) {
uartPutLine("ERROR reached end of EEPROM while writing block"); uartPutLine("ERROR reached end of EEPROM while writing block");
return; return;

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@ -8,6 +8,10 @@
// Define macro for NOP instruction // Define macro for NOP instruction
#define _NOP() __asm__ __volatile__ ("nop"); #define _NOP() __asm__ __volatile__ ("nop");
// Define macro to convert a preprocessor constant to a string literal
#define STR_(x) #x
#define STR(x) STR_(x)
// Define type for EEPROM addresses // Define type for EEPROM addresses
typedef uint16_t address_t; typedef uint16_t address_t;
@ -28,12 +32,11 @@ typedef struct {
} AddressRange; } AddressRange;
// Define type for a block of data (bytes) // Define type for a block of data (bytes)
#define DATA_BLOCK_SIZE 64
typedef struct { typedef struct {
uint8_t* data; uint8_t data[DATA_BLOCK_SIZE];
uint8_t maxSize;
uint8_t bytes; uint8_t bytes;
} DataBuffer; } DataBuffer;
#define DATA_BLOCK_SIZE 64
#endif /* COMMON_H_ */ #endif /* COMMON_H_ */

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@ -132,7 +132,7 @@ Address eepromReadBlock(AddressRange addressRange, DataBuffer* buffer) {
highestAddress = HIGHEST_VALID_ADDRESS; highestAddress = HIGHEST_VALID_ADDRESS;
} }
while (currentAddress <= highestAddress && buffer->bytes < buffer->maxSize) { while (currentAddress <= highestAddress && buffer->bytes < DATA_BLOCK_SIZE) {
buffer->data[buffer->bytes++] = eepromReadByte(currentAddress++); buffer->data[buffer->bytes++] = eepromReadByte(currentAddress++);
// Handle integer overflow // Handle integer overflow

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@ -13,7 +13,7 @@
// Read and parse command line and dispatch command // Read and parse command line and dispatch command
void parseNextCommand() { void parseNextCommand() {
const int bufferLength = 80; const int bufferLength = 40;
char buffer[bufferLength]; char buffer[bufferLength];
// Read next command // Read next command

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@ -4,8 +4,15 @@
#include <avr/io.h> #include <avr/io.h>
#include <stdarg.h> #include <stdarg.h>
#include <stdio.h> #include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <util/setbaud.h> #include <util/setbaud.h>
// Hexadecimal digit lookup table
static const char hexDigitLookupTable[] = {
'0', '1', '2', '3', '4', '5', '6', '7', '8', '9', 'A', 'B', 'C', 'D', 'E', 'F'
};
// Initialize UART // Initialize UART
void uartInit() { void uartInit() {
// Set Baud register // Set Baud register
@ -56,18 +63,12 @@ void uartPutLine(char* data) {
uartPutChar('\n'); uartPutChar('\n');
} }
// Convert an integer to decimal ASCII and transmit
void uartPutInteger(int value) {
char outBuffer[32];
snprintf(outBuffer, 32, "%d", value);
uartPutString(outBuffer);
}
// Convert a byte to hexadecimal ASCII and transmit // Convert a byte to hexadecimal ASCII and transmit
void uartPutHexByte(uint8_t byte) { void uartPutHexByte(uint8_t byte) {
char outBuffer[8]; // First hex digit: most significant 4 bits
snprintf(outBuffer, 8, "%02hhX", byte); uartPutChar(hexDigitLookupTable[(byte >> 4) & 0x0f]);
uartPutString(outBuffer); // Second hex digit: least significant 4 bits
uartPutChar(hexDigitLookupTable[byte & 0x0f]);
} }
// Receive a single character (blocking) // Receive a single character (blocking)

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@ -16,9 +16,6 @@ void uartPutString(char* data);
// Transmit a string followed by a line break // Transmit a string followed by a line break
void uartPutLine(char* data); void uartPutLine(char* data);
// Convert an integer to decimal ASCII and transmit
void uartPutInteger(int value);
// Convert a byte to hexadecimal ASCII and transmit // Convert a byte to hexadecimal ASCII and transmit
void uartPutHexByte(uint8_t byte); void uartPutHexByte(uint8_t byte);