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#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include "main.h"
#include "options.h"
int show_fps;
int limit_frames;
int enable_audio;
int audio_buffer_size;
enum scale_size scale_size;
enum scale_filter scale_filter;
struct core_options core_options;
#define MAX_DESC_LEN 20
#define MAX_LINE_LEN 52
#define MAX_LINES 3
static void truncate(char *string, int max_len) {
size_t len = strlen(string) + 1;
if (len <= max_len) return;
strncpy(&string[max_len - 4], "...\0", 4);
}
static void wrap(char *string, size_t max_len, size_t max_lines) {
char *line = string;
for (int i = 1; i < max_lines; i++) {
char *p = line;
char *prev;
do {
prev = p;
p = strchr(prev+1, ' ');
} while (p && p - line < max_len);
if (!p && strlen(line) < max_len) break;
if (prev && prev != line) {
line = prev + 1;
*prev = '\n';
}
}
truncate(line, max_len);
return;
}
static const char *blocked_options[] = { "gpsp_save_method", NULL};
static bool option_blocked(const char *key) {
for (int i = 0; blocked_options[i]; i++) {
if (!strcmp(blocked_options[i], key))
return true;
}
return false;
}
static int options_default_override(const char *key) {
if (!strcmp(key, "snes9x2002_frameskip")) {
return 1;
} else if (!strcmp(key, "snes9x2002_frameskip_interval")) {
return 3;
}
return -1;
}
void options_init(const struct retro_core_option_definition *defs) {
int i;
for (i = 0; defs[i].key; i++)
;
core_options.visible_len = core_options.len = i;
core_options.defs = defs;
core_options.entries = (struct core_option_entry *)calloc(core_options.len, sizeof(struct core_option_entry));
if (!core_options.entries) {
PA_ERROR("Error allocating option entries\n");
options_free();
return;
}
for (i = 0; i < core_options.len; i++) {
int j, len;
struct core_option_entry *entry = &core_options.entries[i];
entry->def = &core_options.defs[i];
entry->value = options_default_index(entry->def->key);
entry->prev_value = entry->value;
entry->blocked = option_blocked(entry->def->key);
if (entry->blocked)
core_options.visible_len--;
len = strlen(entry->def->desc) + 1;
entry->desc = (char *)calloc(len, sizeof(char));
if (!entry->desc) {
PA_ERROR("Error allocating option entries\n");
options_free();
return;
}
strncpy(entry->desc, entry->def->desc, len);
truncate(entry->desc, MAX_DESC_LEN);
len = strlen(entry->def->info) + 1;
entry->info = (char *)calloc(len, sizeof(char));
if (!entry->info) {
PA_ERROR("Error allocating description string\n");
options_free();
return;
}
strncpy(entry->info, entry->def->info, len);
wrap(entry->info, MAX_LINE_LEN, MAX_LINES);
for (j = 0; entry->def->values[j].value; j++)
;
j++; /* Make room for NULL entry */
entry->options = (const char **)calloc(j, sizeof(char *));
if (!entry->options) {
PA_ERROR("Error allocating option entries\n");
options_free();
return;
}
for (j = 0; entry->def->values[j].value; j++) {
const char *label = entry->def->values[j].label;
if (!label) {
label = entry->def->values[j].value;
}
entry->options[j] = label;
}
}
}
void options_init_variables(const struct retro_variable *vars) {
int i;
for (i = 0; vars[i].key; i++)
;
core_options.visible_len = core_options.len = i;
core_options.vars = vars;
core_options.entries = (struct core_option_entry *)calloc(core_options.len, sizeof(struct core_option_entry));
if (!core_options.entries) {
PA_ERROR("Error allocating option entries\n");
options_free();
return;
}
for (i = 0; i < core_options.len; i++) {
int j = 0;
int len;
struct core_option_entry *entry = &core_options.entries[i];
char *p;
char *opt_ptr;
char *value;
entry->var = &core_options.vars[i];
entry->value = options_default_index(entry->var->key);
entry->prev_value = entry->value;
entry->blocked = option_blocked(entry->var->key);
if (entry->blocked)
core_options.visible_len--;
len = strlen(entry->var->value) + 1;
value = (char *)calloc(len, sizeof(char));
if (!value) {
PA_ERROR("Error allocating option entries\n");
options_free();
return;
}
entry->retro_var_value = value;
strncpy(value, entry->var->value, len);
p = strchr(value, ';');
if (p && *(p + 1) == ' ') {
*p = '\0';
entry->desc = value;
truncate(entry->desc, MAX_DESC_LEN);
p++;
p++;
}
opt_ptr = p;
for(j = 0; (p = strchr(p, '|')); p++, j++)
;
j++; /* Make room for last entry (not ending in |) */
j++; /* Make room for NULL entry */
entry->options = (const char **)calloc(j, sizeof(char *));
if (!entry->options) {
PA_ERROR("Error allocating option entries\n");
options_free();
return;
}
p = opt_ptr;
for (j = 0; (p = strchr(p, '|')); j++) {
entry->options[j] = opt_ptr;
*p = '\0';
p++;
opt_ptr = p;
}
entry->options[j] = opt_ptr;
}
}
bool options_changed(void) {
bool was_changed = core_options.changed;
core_options.changed = false;
return was_changed;
}
void options_update_changed(void) {
if (core_options.changed)
return;
for(int i = 0; i < core_options.len; i++) {
struct core_option_entry* entry = &core_options.entries[i];
if (entry->value != entry->prev_value) {
core_options.changed = true;
entry->prev_value = entry->value;
}
}
}
const char* options_get_key(int index) {
if (core_options.defs) {
return core_options.defs[index].key;
} else {
return core_options.vars[index].key;
}
}
struct core_option_entry* options_get_entry(const char* key) {
for(int i = 0; i < core_options.len; i++) {
const char *opt_key = core_options.defs ?
core_options.defs[i].key :
core_options.vars[i].key;
if (!strcmp(opt_key, key)) {
return &core_options.entries[i];
}
}
return NULL;
}
bool options_is_blocked(const char *key) {
struct core_option_entry* entry = options_get_entry(key);
if (entry) {
return entry->blocked;
}
return true;
}
const char* options_get_value(const char* key) {
struct core_option_entry* entry = options_get_entry(key);
if (entry) {
if (entry->def) {
return entry->def->values[entry->value].value;
} else {
return entry->options[entry->value];
}
}
return NULL;
}
int* options_get_value_ptr(const char* key) {
struct core_option_entry* entry = options_get_entry(key);
if (entry) {
return &(entry->value);
}
return NULL;
}
int options_get_value_index(const char* key) {
struct core_option_entry* entry = options_get_entry(key);
if (entry) {
return entry->value;
}
return 0;
}
void options_set_value(const char* key, const char *value) {
struct core_option_entry* entry = options_get_entry(key);
if (entry) {
const char *option = NULL;
entry->value = options_default_index(key);
if (entry->def) {
for (int i = 0; (option = entry->def->values[i].value); i++) {
if (!strcmp(option, value)) {
entry->value = i;
options_update_changed();
return;
}
}
} else {
for (int i = 0; (option = entry->options[i]); i++) {
if (!strcmp(option, value)) {
entry->value = i;
options_update_changed();
return;
}
}
}
}
}
void options_set_value_index(const char* key, int value) {
struct core_option_entry* entry = options_get_entry(key);
if (entry) {
entry->value = value;
options_update_changed();
}
}
int options_default_index(const char *key) {
const char *value;
struct core_option_entry *entry;
int default_override = options_default_override(key);
if (default_override >= 0)
return default_override;
entry = options_get_entry(key);
if (!entry || !entry->def)
return 0;
for(int i = 0; (value = entry->def->values[i].value); i++) {
if (!strcmp(value, entry->def->default_value)) {
return i;
}
}
return 0;
}
const char** options_get_options(const char* key) {
struct core_option_entry* entry = options_get_entry(key);
if (entry) {
return entry->options;
}
return NULL;
}
void options_free(void) {
if (core_options.entries) {
for (int i = 0; i < core_options.len; i++) {
struct core_option_entry* entry = &core_options.entries[i];
if (entry->options) {
free(entry->options);
}
if (entry->retro_var_value) {
free(entry->retro_var_value);
} else if (entry->desc) {
free(entry->desc);
}
}
free(core_options.entries);
}
memset(&core_options, 0, sizeof(core_options));
}
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