Change types for better OS compatibility

This commit is contained in:
XOR 2023-09-30 14:10:43 +02:00
parent 19c0d887b5
commit 38d14eec25
9 changed files with 60 additions and 50 deletions

2
.gitignore vendored
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@ -57,6 +57,8 @@ dkms.conf
*.eipa
!test*.eipa
*.eipaimg
header/argp/*
/argp-standalone/
#Code editor
.vscode/*

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@ -1,6 +1,6 @@
#! /bin/bash
script_root=$(pwd)
CC="clang"
CC:="clang"
echo "Creating folder for libraries"
mkdir lib

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@ -2,8 +2,9 @@
#define _IMAGE_SAVER_H_
#include <stdio.h>
#include <stdint.h>
// Save machine code from target_code to file at out_path. Returns 0 on success
int save_img(char *out_path, __uint32_t *target_code);
int save_img(char *out_path, uint32_t *target_code);
#endif

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@ -3,6 +3,7 @@
#include "../header/shash/shash.h"
#include <sys/types.h>
#include <stdint.h>
#define MAX_INSTRUCTION_COUNT 16
@ -16,7 +17,7 @@ typedef struct
{
unsigned int requires_adress;
unsigned int supports_adress_label;
u_int8_t opcode;
uint8_t opcode;
} instruction_information_t;
typedef struct
@ -25,7 +26,7 @@ typedef struct
unsigned int name_length;
unsigned int requires_adress;
unsigned int supports_adress_label;
u_int8_t opcode;
uint8_t opcode;
} instruction_information_config_t;
#endif

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@ -10,6 +10,7 @@
#ifndef _SHASH_H
#define _SHASH_H
#include <stdint.h>
#include <assert.h>
#include <limits.h>
#include <stdlib.h>
@ -18,7 +19,6 @@
#include <time.h>
#include <stdbool.h>
#define WORD 32
#define TRANSFORM_TABLE_MAX_RAND 4294967296
#define DELTA 1
@ -42,7 +42,7 @@ typedef struct
void *data;
// gets set to 1 if another key, collides with this elemnts location
u_int8_t encountered_collision;
uint8_t encountered_collision;
// On collision, this field stores where in the hash table array the second key (with the same hash) is located
int next_key_location;

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@ -1,5 +1,6 @@
#include "../header/common.h"
#include "dyn_buf.h"
#include <stdint.h>
#ifndef _TAGET_CODE_GENERATOR_H_
#define _TAGET_CODE_GENERATOR_H_
@ -7,12 +8,12 @@
#include <stdio.h>
// Get a machine code instruction from opcode and and optional adress. Returns 0 if the provides adress is too big
__uint32_t get_target_instruction(__uint8_t opcode, __uint8_t use_adress, __uint32_t adress);
uint32_t get_target_instruction(uint8_t opcode, uint8_t use_adress, uint32_t adress);
// Generate the machine code from tokens into target_code. Returns 0 on success, errno integer on failure
int gen_target_code(char tokens[][MAX_TOKEN_SIZE], dynamic_buffer_t *target_code);
//Print out the machine code in target_code
void print_target_code(__uint32_t *target_code);
void print_target_code(uint32_t *target_code);
#endif

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@ -11,7 +11,7 @@ This code contains the implementations of all functions related to saving EIPA t
#include "../header/image_saver.h"
// Count how many instruction a target_code array contains
static unsigned int get_instruction_count(__uint32_t *target_code)
static unsigned int get_instruction_count(uint32_t *target_code)
{
unsigned int count = 0;
while(target_code[count]!=0)
@ -21,7 +21,7 @@ static unsigned int get_instruction_count(__uint32_t *target_code)
return count;
}
int save_img(char *out_path, __uint32_t *target_code){
int save_img(char *out_path, uint32_t *target_code){
unsigned int count = get_instruction_count(target_code);

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@ -5,10 +5,16 @@ This code is the entry point of the EIPA Assembler and calls the needed function
It also is responsible for Argument Parsing
*/
#ifndef WIN_COMPILE
#include <argp.h>
#else
#include "../header/argp/argp.h"
#endif
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <stdint.h>
#include "../header/argp_commons.h"
#include "../header/common.h"
@ -144,7 +150,6 @@ int main(int argc, char **argv)
shash_init_hashtable(&label_table, LABEL_TABLE_SIZE);
build_label_table((char (*)[MAX_TOKEN_SIZE]) label_tokens.buffer, &label_table);
dynamic_buffer_t no_label_definition_tokens;
init_dynamic_buffer(&no_label_definition_tokens, TABLE_INIT_SIZE * MAX_TOKEN_SIZE, TABLE_GROW_SIZE * MAX_TOKEN_SIZE);
if (no_label_definition_tokens.buffer == NULL)
@ -173,7 +178,7 @@ int main(int argc, char **argv)
// Generate the target code
dynamic_buffer_t target_code;
init_dynamic_buffer(&target_code, TARGET_CODE_INIT * sizeof(__uint32_t), TARGET_CODE_GROW * sizeof(__uint32_t));
init_dynamic_buffer(&target_code, TARGET_CODE_INIT * sizeof(uint32_t), TARGET_CODE_GROW * sizeof(uint32_t));
if (target_code.buffer == NULL)
{
printf("Error: Could not allocate memory for the target code\n");
@ -188,7 +193,7 @@ int main(int argc, char **argv)
}
// Save the target code to a file
if (save_img(arguments.output_file, (__uint32_t *)target_code.buffer) != 0)
if (save_img(arguments.output_file, (uint32_t *)target_code.buffer) != 0)
{
printf("Couldn't save the output file\n");
exit(EXIT_FAILURE);
@ -198,7 +203,7 @@ int main(int argc, char **argv)
if (arguments.print_tokens)
print_tokens((char (*)[MAX_TOKEN_SIZE])tokens.buffer);
if (arguments.print_target_code)
print_target_code((__uint32_t *)target_code.buffer);
print_target_code((uint32_t *)target_code.buffer);
// Cleanup
destroy_instruction_information_hashtable(&instruction_informations);

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@ -12,10 +12,10 @@ This code contains the implementations for all the functions related to the targ
#include "../header/common.h"
#include "../header/target_code_generator.h"
__uint32_t get_target_instruction(__uint8_t opcode, __uint8_t use_adress, __uint32_t adress)
uint32_t get_target_instruction(uint8_t opcode, uint8_t use_adress, uint32_t adress)
{
// stores the value of the instructions
__uint32_t instruction = 0;
uint32_t instruction = 0;
// move the opcode bytes to the left of the instruction
instruction = instruction | (unsigned)opcode << (28);
@ -57,14 +57,14 @@ int gen_target_code(char tokens[][MAX_TOKEN_SIZE], dynamic_buffer_t *target_code
else if (strcmp(tokens[token_index], "INP") == 0)
{
// Stores the Adress accociated with this operation
__uint32_t adress;
uint32_t adress;
// The address of the instructon is stored at the next token. Read that
token_index++;
sscanf(tokens[token_index], "%d", &adress);
((__uint32_t *) target_code->buffer)[instruction_index] = get_target_instruction(INSTR_INP, 1, adress);
if (((__uint32_t *) target_code->buffer)[instruction_index] == 0)
((uint32_t *) target_code->buffer)[instruction_index] = get_target_instruction(INSTR_INP, 1, adress);
if (((uint32_t *) target_code->buffer)[instruction_index] == 0)
{
printf("Error: Received andress bigger than %d\nThis error shoudn't occur! Please report at %s\n", MAX_MEMORY, EIPA_BUG_ADRESS);
return EOVERFLOW;
@ -73,14 +73,14 @@ int gen_target_code(char tokens[][MAX_TOKEN_SIZE], dynamic_buffer_t *target_code
else if (strcmp(tokens[token_index], "OUT") == 0)
{
// Stores the Adress accociated with this operation
__uint32_t adress;
uint32_t adress;
// The address of the instructon is stored at the next token. Read that
token_index++;
sscanf(tokens[token_index], "%d", &adress);
((__uint32_t *) target_code->buffer)[instruction_index] = get_target_instruction(INSTR_OUT, 1, adress);
if (((__uint32_t *) target_code->buffer)[instruction_index] == 0)
((uint32_t *) target_code->buffer)[instruction_index] = get_target_instruction(INSTR_OUT, 1, adress);
if (((uint32_t *) target_code->buffer)[instruction_index] == 0)
{
printf("Error: Received andress bigger than %d\nThis error shoudn't occur! Please report at %s\n", MAX_MEMORY, EIPA_BUG_ADRESS);
return EOVERFLOW;
@ -89,14 +89,14 @@ int gen_target_code(char tokens[][MAX_TOKEN_SIZE], dynamic_buffer_t *target_code
else if (strcmp(tokens[token_index], "LDA") == 0)
{
// Stores the Adress accociated with this operation
__uint32_t adress;
uint32_t adress;
// The address of the instructon is stored at the next token. Read that
token_index++;
sscanf(tokens[token_index], "%d", &adress);
((__uint32_t *) target_code->buffer)[instruction_index] = get_target_instruction(INSTR_LDA, 1, adress);
if (((__uint32_t *) target_code->buffer)[instruction_index] == 0)
((uint32_t *) target_code->buffer)[instruction_index] = get_target_instruction(INSTR_LDA, 1, adress);
if (((uint32_t *) target_code->buffer)[instruction_index] == 0)
{
printf("Error: Received andress bigger than %d\nThis error shoudn't occur! Please report at %s\n", MAX_MEMORY, EIPA_BUG_ADRESS);
return EOVERFLOW;
@ -105,14 +105,14 @@ int gen_target_code(char tokens[][MAX_TOKEN_SIZE], dynamic_buffer_t *target_code
else if (strcmp(tokens[token_index], "STA") == 0)
{
// Stores the Adress accociated with this operation
__uint32_t adress;
uint32_t adress;
// The address of the instructon is stored at the next token. Read that
token_index++;
sscanf(tokens[token_index], "%d", &adress);
((__uint32_t *) target_code->buffer)[instruction_index] = get_target_instruction(INSTR_STA, 1, adress);
if (((__uint32_t *) target_code->buffer)[instruction_index] == 0)
((uint32_t *) target_code->buffer)[instruction_index] = get_target_instruction(INSTR_STA, 1, adress);
if (((uint32_t *) target_code->buffer)[instruction_index] == 0)
{
printf("Error: Received andress bigger than %d\nThis error shoudn't occur! Please report at %s\n", MAX_MEMORY, EIPA_BUG_ADRESS);
return EOVERFLOW;
@ -120,8 +120,8 @@ int gen_target_code(char tokens[][MAX_TOKEN_SIZE], dynamic_buffer_t *target_code
}
else if (strcmp(tokens[token_index], "INC") == 0)
{
((__uint32_t *) target_code->buffer)[instruction_index] = get_target_instruction(INSTR_INC, 0, 0);
if (((__uint32_t *) target_code->buffer)[instruction_index] == 0)
((uint32_t *) target_code->buffer)[instruction_index] = get_target_instruction(INSTR_INC, 0, 0);
if (((uint32_t *) target_code->buffer)[instruction_index] == 0)
{
printf("Error: Received andress bigger than %d\nThis error shoudn't occur! Please report at %s\n", MAX_MEMORY, EIPA_BUG_ADRESS);
return EOVERFLOW;
@ -129,8 +129,8 @@ int gen_target_code(char tokens[][MAX_TOKEN_SIZE], dynamic_buffer_t *target_code
}
else if (strcmp(tokens[token_index], "DEC") == 0)
{
((__uint32_t *) target_code->buffer)[instruction_index] = get_target_instruction(INSTR_DEC, 0, 0);
if (((__uint32_t *) target_code->buffer)[instruction_index] == 0)
((uint32_t *) target_code->buffer)[instruction_index] = get_target_instruction(INSTR_DEC, 0, 0);
if (((uint32_t *) target_code->buffer)[instruction_index] == 0)
{
printf("Error: Received andress bigger than %d\nThis error shoudn't occur! Please report at %s\n", MAX_MEMORY, EIPA_BUG_ADRESS);
return EOVERFLOW;
@ -140,14 +140,14 @@ int gen_target_code(char tokens[][MAX_TOKEN_SIZE], dynamic_buffer_t *target_code
{
// Stores the Adress accociated with this operation
__uint32_t adress;
uint32_t adress;
// The address of the instructon is stored at the next token. Read that
token_index++;
sscanf(tokens[token_index], "%d", &adress);
((__uint32_t *) target_code->buffer)[instruction_index] = get_target_instruction(INSTR_JPP, 1, adress);
if (((__uint32_t *) target_code->buffer)[instruction_index] == 0)
((uint32_t *) target_code->buffer)[instruction_index] = get_target_instruction(INSTR_JPP, 1, adress);
if (((uint32_t *) target_code->buffer)[instruction_index] == 0)
{
printf("Error: Received andress bigger than %d\nThis error shoudn't occur! Please report at %s\n", MAX_MEMORY, EIPA_BUG_ADRESS);
return EOVERFLOW;
@ -156,14 +156,14 @@ int gen_target_code(char tokens[][MAX_TOKEN_SIZE], dynamic_buffer_t *target_code
else if (strcmp(tokens[token_index], "JPZ") == 0)
{
// Stores the Adress accociated with this operation
__uint32_t adress;
uint32_t adress;
// The address of the instructon is stored at the next token. Read that
token_index++;
sscanf(tokens[token_index], "%d", &adress);
((__uint32_t *) target_code->buffer)[instruction_index] = get_target_instruction(INSTR_JPZ, 1, adress);
if (((__uint32_t *) target_code->buffer)[instruction_index] == 0)
((uint32_t *) target_code->buffer)[instruction_index] = get_target_instruction(INSTR_JPZ, 1, adress);
if (((uint32_t *) target_code->buffer)[instruction_index] == 0)
{
printf("Error: Received andress bigger than %d\nThis error shoudn't occur! Please report at %s\n", MAX_MEMORY, EIPA_BUG_ADRESS);
return EOVERFLOW;
@ -172,14 +172,14 @@ int gen_target_code(char tokens[][MAX_TOKEN_SIZE], dynamic_buffer_t *target_code
else if (strcmp(tokens[token_index], "JPN") == 0)
{
// Stores the Adress accociated with this operation
__uint32_t adress;
uint32_t adress;
// The address of the instructon is stored at the next token. Read that
token_index++;
sscanf(tokens[token_index], "%d", &adress);
((__uint32_t *) target_code->buffer)[instruction_index] = get_target_instruction(INSTR_JPN, 1, adress);
if ( ((__uint32_t *) target_code->buffer)[instruction_index] == 0)
((uint32_t *) target_code->buffer)[instruction_index] = get_target_instruction(INSTR_JPN, 1, adress);
if ( ((uint32_t *) target_code->buffer)[instruction_index] == 0)
{
printf("Error: Received andress bigger than %d\nThis error shoudn't occur! Please report at %s\n", MAX_MEMORY, EIPA_BUG_ADRESS);
return EOVERFLOW;
@ -188,14 +188,14 @@ int gen_target_code(char tokens[][MAX_TOKEN_SIZE], dynamic_buffer_t *target_code
else if (strcmp(tokens[token_index], "JPU") == 0)
{
// Stores the Adress accociated with this operation
__uint32_t adress;
uint32_t adress;
// The address of the instructon is stored at the next token. Read that
token_index++;
sscanf(tokens[token_index], "%d", &adress);
((__uint32_t *) target_code->buffer)[instruction_index] = get_target_instruction(INSTR_JPU, 1, adress);
if ( ((__uint32_t *) target_code->buffer)[instruction_index] == 0)
((uint32_t *) target_code->buffer)[instruction_index] = get_target_instruction(INSTR_JPU, 1, adress);
if ( ((uint32_t *) target_code->buffer)[instruction_index] == 0)
{
printf("Error: Received andress bigger than %d\nThis error shoudn't occur! Please report at %s\n", MAX_MEMORY, EIPA_BUG_ADRESS);
return EOVERFLOW;
@ -203,8 +203,8 @@ int gen_target_code(char tokens[][MAX_TOKEN_SIZE], dynamic_buffer_t *target_code
}
else if (strcmp(tokens[token_index], "EOJ") == 0)
{
((__uint32_t *) target_code->buffer)[instruction_index] = get_target_instruction(INSTR_EOJ, 0, 0);
if ( ((__uint32_t *) target_code->buffer)[instruction_index] == 0)
((uint32_t *) target_code->buffer)[instruction_index] = get_target_instruction(INSTR_EOJ, 0, 0);
if ( ((uint32_t *) target_code->buffer)[instruction_index] == 0)
{
printf("Error: Received andress bigger than %d\nThis error shoudn't occur! Please report at %s\n", MAX_MEMORY, EIPA_BUG_ADRESS);
return EOVERFLOW;
@ -216,7 +216,7 @@ int gen_target_code(char tokens[][MAX_TOKEN_SIZE], dynamic_buffer_t *target_code
return EXIT_SUCCESS;
}
void print_target_code(__uint32_t *target_code)
void print_target_code(uint32_t *target_code)
{
int instruction_index = 0;
while (target_code[instruction_index] != 0)