[v0.92][Refactoring] Refactor Intel and AMD printer code into algorithms

This commit is contained in:
Dr-Noob
2020-11-26 18:45:33 +01:00
parent ff92107d7c
commit e5d5e5ef92

View File

@@ -299,7 +299,38 @@ uint32_t longest_attribute_length(struct ascii* art) {
} }
#ifdef ARCH_X86 #ifdef ARCH_X86
void print_ascii_intel(struct ascii* art, uint32_t la) { void print_algorithm_intel(struct ascii* art, int i, int n, bool* flag) {
if(*flag) {
if(art->art[n][i] == ' ') {
*flag = false;
printf("%s%c%s", art->color2_ascii, art->ascii_chars[1], art->reset);
}
else {
printf("%s%c%s", art->color1_ascii, art->ascii_chars[0], art->reset);
}
}
else {
if(art->art[n][i] != ' ' && art->art[n][i] != '\0') {
*flag = true;
printf("%c",' ');
}
else {
printf("%c",' ');
}
}
}
void print_algorithm_amd(struct ascii* art, int i, int n, bool* flag) {
*flag = false; // dummy, just silence compiler error
if(art->art[n][i] == '@')
printf("%s%c%s", art->color1_ascii, art->ascii_chars[0], art->reset);
else if(art->art[n][i] == '#')
printf("%s%c%s", art->color2_ascii, art->ascii_chars[1], art->reset);
else
printf("%c",art->art[n][i]);
}
void print_ascii_x86(struct ascii* art, uint32_t la, void (*callback_print_algorithm)(struct ascii* art, int i, int n, bool* flag)) {
int attr_to_print = 0; int attr_to_print = 0;
int attr_type; int attr_type;
char* attr_value; char* attr_value;
@@ -310,26 +341,8 @@ void print_ascii_intel(struct ascii* art, uint32_t la) {
printf("\n"); printf("\n");
for(uint32_t n=0;n<NUMBER_OF_LINES;n++) { for(uint32_t n=0;n<NUMBER_OF_LINES;n++) {
for(int i=0;i<LINE_SIZE;i++)
for(int i=0;i<LINE_SIZE;i++) { callback_print_algorithm(art, i, n, &flag);
if(flag) {
if(art->art[n][i] == ' ') {
flag = false;
printf("%s%c%s", art->color2_ascii, art->ascii_chars[1], art->reset);
}
else {
printf("%s%c%s", art->color1_ascii, art->ascii_chars[0], art->reset);
}
}
else {
if(art->art[n][i] != ' ' && art->art[n][i] != '\0') {
flag = true;
printf("%c",' ');
}
else
printf("%c",' ');
}
}
if(n > space_up-1 && n < NUMBER_OF_LINES-space_down) { if(n > space_up-1 && n < NUMBER_OF_LINES-space_down) {
attr_type = art->attributes[attr_to_print]->type; attr_type = art->attributes[attr_to_print]->type;
@@ -344,46 +357,13 @@ void print_ascii_intel(struct ascii* art, uint32_t la) {
printf("\n"); printf("\n");
} }
void print_ascii_amd(struct ascii* art, uint32_t la) {
int attr_to_print = 0;
int attr_type;
char* attr_value;
uint32_t space_right;
uint32_t space_up = (NUMBER_OF_LINES - art->n_attributes_set)/2;
uint32_t space_down = NUMBER_OF_LINES - art->n_attributes_set - space_up;
printf("\n");
for(uint32_t n=0;n<NUMBER_OF_LINES;n++) {
for(int i=0;i<LINE_SIZE;i++) {
if(art->art[n][i] == '@')
printf("%s%c%s", art->color1_ascii, art->ascii_chars[0], art->reset);
else if(art->art[n][i] == '#')
printf("%s%c%s", art->color2_ascii, art->ascii_chars[1], art->reset);
else
printf("%c",art->art[n][i]);
}
if(n > space_up-1 && n < NUMBER_OF_LINES-space_down) {
attr_type = art->attributes[attr_to_print]->type;
attr_value = art->attributes[attr_to_print]->value;
attr_to_print++;
space_right = 1 + (la - strlen(ATTRIBUTE_FIELDS[attr_type]));
printf("%s%s%s%*s%s%s%s\n", art->color1_text, ATTRIBUTE_FIELDS[attr_type], art->reset, space_right, "", art->color2_text, attr_value, art->reset);
}
else printf("\n");
}
printf("\n");
}
void print_ascii(struct ascii* art) { void print_ascii(struct ascii* art) {
uint32_t longest_attribute = longest_attribute_length(art); uint32_t longest_attribute = longest_attribute_length(art);
if(art->vendor == CPU_VENDOR_INTEL) if(art->vendor == CPU_VENDOR_INTEL)
print_ascii_intel(art, longest_attribute); print_ascii_x86(art, longest_attribute, &print_algorithm_intel);
else if(art->vendor == CPU_VENDOR_AMD) else if(art->vendor == CPU_VENDOR_AMD)
print_ascii_amd(art, longest_attribute); print_ascii_x86(art, longest_attribute, &print_algorithm_amd);
else { else {
printBug("Invalid CPU vendor: %d\n", art->vendor); printBug("Invalid CPU vendor: %d\n", art->vendor);
} }