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#include <string.h>
#include "input_field.h"
#include "array.h"
#include "graphics.h"
#include "layout.h"
int compare(const void *a, const void *b) {
return strlen(((item_display_t*)a)->item->text) > strlen(((item_display_t*)b)->item->text);
}
int orderless_compare(const void *a, const void *b) {
return ((item_display_t*)a)->perc < ((item_display_t*)b)->perc;
}
void refilter_items(client_state* state) {
if (!state->items) return;
// get null terminated input buffer
size_t len = array_size(state->input_buffer);
char input_buffer_string[len + 1];
memcpy(input_buffer_string, state->input_buffer, len);
input_buffer_string[len] = '\0';
// add all strings with substring
array_clear(state->filtered_items);
if (state->orderless) {
char** parts = array_new(char*, 0);
char* part = NULL;
for (part = strtok(input_buffer_string, " "); part; part = strtok(NULL, " ")) {
array_add(parts, part);
}
array_for_all(item_t, i, state->items) {
float total = strlen(i->text);
float part = 0;
bool add = true;
array_for_all(char*, j, parts) {
if (state->strstr2(i->text, *j)) {
part += strlen(*j);
}
else {
add = false;
}
}
if (add) {
item_display_t tmp = {
.item = i,
.perc = part / total
};
array_add(state->filtered_items, tmp);
}
}
if (array_size(state->input_buffer)) {
qsort(state->filtered_items, array_size(state->filtered_items), sizeof(item_display_t), orderless_compare);
}
array_free(parts);
}
else {
array_for_all(item_t, i, state->items) {
if (state->strstr2(i->text, input_buffer_string) != NULL) {
array_add(state->filtered_items, (item_display_t){ .item = i });
}
}
if (array_size(state->input_buffer)) {
qsort(state->filtered_items, array_size(state->filtered_items), sizeof(item_display_t), compare);
}
}
// automatically select item
if (state->selected_filtered_item != -1 || state->forced_selected_zero) {
if (array_size(state->filtered_items) == 0) {
state->selected_filtered_item = -1;
state->forced_selected_zero = true;
} else {
state->selected_filtered_item = 0;
}
}
// update layout
rect_t prompt, input, options;
calculate_layout(state, &prompt, &input, &options, true, true);
}
void update_text_buffer(client_state* state) {
refilter_items(state);
destroy_text_buffer(&state->input_buffer_grafix);
init_text_buffer(state, &state->input_buffer_grafix, state->input_buffer, array_size(state->input_buffer));
}
key_repeat_t execute_keypress(client_state* state, xkb_keysym_t keysym) {
bool ctrl = xkb_state_mod_name_is_active(state->xkb_state, XKB_MOD_NAME_CTRL, XKB_STATE_MODS_EFFECTIVE);
bool alt = xkb_state_mod_name_is_active(state->xkb_state, XKB_MOD_NAME_ALT, XKB_STATE_MODS_EFFECTIVE);
if (ctrl && alt) {
switch (keysym) {
case XKB_KEY_i: return insert_selected(state);
case XKB_KEY_d: return delete_word(state);
case XKB_KEY_BackSpace: return delete_word_backward(state);
case XKB_KEY_f: return forward_word(state);
case XKB_KEY_b: return backward_word(state);
}
return KEY_NO_REPEAT;
}
else if (ctrl) {
switch (keysym) {
case XKB_KEY_c:
case XKB_KEY_g:
return quit(state);
case XKB_KEY_n: return select_next(state);
case XKB_KEY_p: return select_previous(state);
case XKB_KEY_a: return goto_start(state);
case XKB_KEY_e: return goto_end(state);
case XKB_KEY_f: return forward_char(state);
case XKB_KEY_b: return backward_char(state);
case XKB_KEY_k: return kill_to_end(state);
case XKB_KEY_d: return delete_char(state);
case XKB_KEY_v: return paste_from_clipboard(state);
case XKB_KEY_BackSpace: return kill_to_start(state);
case XKB_KEY_Delete: return clear_input(state);
}
return KEY_NO_REPEAT;
}
else if (alt) {
switch (keysym) {
case XKB_KEY_d: return delete_word(state);
case XKB_KEY_BackSpace: return delete_word_backward(state);
case XKB_KEY_f: return forward_word(state);
case XKB_KEY_b: return backward_word(state);
case XKB_KEY_less: return select_first(state);
case XKB_KEY_greater: return select_last(state);
}
return KEY_NO_REPEAT;
}
switch (keysym) {
case XKB_KEY_Tab: return insert_selected(state);
case XKB_KEY_Escape: return quit(state);
case XKB_KEY_Return:
case XKB_KEY_KP_Enter:
return submit_line(state);
case XKB_KEY_BackSpace:
case XKB_KEY_Delete:
return delete_char_backward(state);
case XKB_KEY_Down: return select_next(state);
case XKB_KEY_Up: return select_previous(state);
case XKB_KEY_Left: return backward_char_or_select_previous(state);
case XKB_KEY_Right: return forward_char_or_select_next(state);
}
// type char into buffer
char buf[16] = {0};
int len = xkb_keysym_to_utf8(keysym, buf, sizeof(buf));
if (len > 0) {
for (int i = 0; i < strlen(buf); i++) {
array_insert(state->input_buffer, state->cursor_index, buf[i]);
state->cursor_index++;
}
update_text_buffer(state);
return KEY_REPEAT;
}
return KEY_NO_REPEAT;
}
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