mirror of
https://github.com/hyprwm/wlroots-hyprland.git
synced 2024-11-02 03:45:58 +01:00
402 lines
11 KiB
C
402 lines
11 KiB
C
#define _POSIX_C_SOURCE 200809L
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#include <assert.h>
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#include <errno.h>
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#include <stdbool.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <sys/epoll.h>
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#include <sys/timerfd.h>
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#include <unistd.h>
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#include <wayland-client.h>
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#include <wayland-egl.h>
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#include "input-method-unstable-v2-client-protocol.h"
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#include "text-input-unstable-v3-client-protocol.h"
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#include "xdg-shell-client-protocol.h"
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const char usage[] = "Usage: input-method [seconds]\n\
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\n\
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Creates an input method using the input-method protocol.\n\
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\n\
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Whenever a text input is activated, this program sends a few sequences of\n\
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commands and checks the validity of the responses, relying on returned\n\
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surrounding text.\n\
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\n\
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The \"seconds\" argument is optional and defines the maximum delay between\n\
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stages.";
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struct input_method_state {
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enum zwp_text_input_v3_change_cause change_cause;
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struct {
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enum zwp_text_input_v3_content_hint hint;
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enum zwp_text_input_v3_content_purpose purpose;
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} content_type;
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struct {
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char *text;
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uint32_t cursor;
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uint32_t anchor;
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} surrounding;
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};
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static int sleeptime = 0;
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static struct wl_display *display = NULL;
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static struct wl_compositor *compositor = NULL;
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static struct wl_seat *seat = NULL;
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static struct zwp_input_method_manager_v2 *input_method_manager = NULL;
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static struct zwp_input_method_v2 *input_method = NULL;
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struct input_method_state pending;
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struct input_method_state current;
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static uint32_t serial = 0;
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bool active = false;
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bool pending_active = false;
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bool unavailable = false;
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bool running = false;
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uint32_t update_stage = 0;
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int timer_fd = 0;
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static void print_state_diff(struct input_method_state previous,
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struct input_method_state future) {
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if (previous.content_type.hint != future.content_type.hint) {
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char *strs[] = { "COMPLETION", "SPELLCHECK", "AUTO_CAPITALIZATION",
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"LOWERCASE", "UPPERCASE", "TITLECASE", "HIDDEN_TEXT",
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"SENSITIVE_DATA", "LATIN", "MULTILINE"};
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printf("content_type.hint:");
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uint32_t hint = future.content_type.hint;
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if (!hint) {
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printf(" NONE");
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}
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for (unsigned i = 0; i < sizeof(strs) / sizeof(*strs); i++) {
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if (hint & 1 << i) {
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printf(" %s", strs[i]);
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}
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}
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printf("\n");
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}
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if (previous.content_type.purpose != future.content_type.purpose) {
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char *strs[] = { "NORMAL", "ALPHA", "DIGITS", "NUMBER", "PHONE", "URL",
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"EMAIL", "NAME", "PASSWORD", "PIN", "DATE", "TIME", "DATETIME",
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"TERMINAL" };
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printf("content_type.purpose: %s\n", strs[future.content_type.purpose]);
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}
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if (!!previous.surrounding.text != !!future.surrounding.text
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|| (previous.surrounding.text && future.surrounding.text
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&& strcmp(previous.surrounding.text, future.surrounding.text) != 0)
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|| previous.surrounding.anchor != future.surrounding.anchor
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|| previous.surrounding.cursor != future.surrounding.cursor) {
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char *text = future.surrounding.text;
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if (!text) {
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printf("Removed surrounding text\n");
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} else {
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printf("Surrounding text: %s\n", text);
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uint32_t anchor = future.surrounding.anchor;
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uint32_t cursor = future.surrounding.cursor;
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if (cursor == anchor) {
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char *temp = strndup(text, cursor);
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printf("Cursor after %d: %s\n", cursor, temp);
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free(temp);
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} else {
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if (cursor > anchor) {
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uint32_t tmp = anchor;
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anchor = cursor;
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cursor = tmp;
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}
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char *temp = strndup(&text[cursor], anchor - cursor);
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printf("Selection: %s\n", temp);
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free(temp);
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}
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}
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}
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if (previous.change_cause != future.change_cause) {
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char *strs[] = { "INPUT_METHOD", "OTHER" };
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printf("Change cause: %s\n", strs[future.change_cause]);
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}
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}
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static void handle_content_type(void *data,
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struct zwp_input_method_v2 *zwp_input_method_v2,
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uint32_t hint, uint32_t purpose) {
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pending.content_type.hint = hint;
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pending.content_type.purpose = purpose;
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}
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static void handle_surrounding_text(void *data,
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struct zwp_input_method_v2 *zwp_input_method_v2,
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const char *text, uint32_t cursor, uint32_t anchor) {
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free(pending.surrounding.text);
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pending.surrounding.text = strdup(text);
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pending.surrounding.cursor = cursor;
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pending.surrounding.anchor = anchor;
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}
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static void handle_text_change_cause(void *data,
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struct zwp_input_method_v2 *zwp_input_method_v2,
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uint32_t cause) {
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pending.change_cause = cause;
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}
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static void handle_activate(void *data,
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struct zwp_input_method_v2 *zwp_input_method_v2) {
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pending_active = true;
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}
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static void handle_deactivate(void *data,
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struct zwp_input_method_v2 *zwp_input_method_v2) {
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pending_active = false;
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}
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static void handle_unavailable(void *data,
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struct zwp_input_method_v2 *zwp_input_method_v2) {
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printf("IM disappeared\n");
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zwp_input_method_v2_destroy(zwp_input_method_v2);
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input_method = NULL;
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running = false;
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}
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static void im_activate(void *data,
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struct zwp_input_method_v2 *id) {
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update_stage = 0;
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}
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static void timer_arm(unsigned seconds) {
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printf("Timer armed\n");
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struct itimerspec spec = {
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.it_interval = {0},
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.it_value = {
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.tv_sec = seconds,
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.tv_nsec = 0
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}
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};
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if (timerfd_settime(timer_fd, 0, &spec, NULL)) {
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fprintf(stderr, "Failed to arm timer: %s\n", strerror(errno));
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}
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}
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static void do_updates(void) {
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printf("Update %d\n", update_stage);
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switch (update_stage) {
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case 0:
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// TODO: remember initial surrounding text
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zwp_input_method_v2_set_preedit_string(input_method, "Preedit", 2, 4);
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zwp_input_method_v2_commit(input_method, serial);
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// don't expect an answer, preedit doesn't change anything visible
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timer_arm(sleeptime);
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update_stage++;
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return;
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case 1:
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zwp_input_method_v2_set_preedit_string(input_method, "Præedit2", strlen("Pr"), strlen("Præed"));
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zwp_input_method_v2_commit_string(input_method, "_Commit_");
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zwp_input_method_v2_commit(input_method, serial);
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update_stage++;
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break;
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case 2:
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if (strcmp(current.surrounding.text, "_Commit_") != 0) {
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return;
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}
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zwp_input_method_v2_commit_string(input_method, "_CommitNoPreed_");
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zwp_input_method_v2_commit(input_method, serial);
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timer_arm(sleeptime);
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update_stage++;
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break;
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case 3:
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if (strcmp(current.surrounding.text, "_Commit__CommitNoPreed_") != 0) {
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return;
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}
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zwp_input_method_v2_commit_string(input_method, "_WaitNo_");
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zwp_input_method_v2_delete_surrounding_text(input_method, strlen("_CommitNoPreed_"), 0);
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zwp_input_method_v2_commit(input_method, serial);
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update_stage++;
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break;
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case 4:
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if (strcmp(current.surrounding.text, "_Commit__WaitNo_") != 0) {
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return;
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}
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zwp_input_method_v2_set_preedit_string(input_method, "PreedWithDel", strlen("Preed"), strlen("Preed"));
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zwp_input_method_v2_delete_surrounding_text(input_method, strlen("_WaitNo_"), 0);
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zwp_input_method_v2_commit(input_method, serial);
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update_stage++;
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break;
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case 5:
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if (strcmp(current.surrounding.text, "_Commit_") != 0) {
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return;
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}
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zwp_input_method_v2_delete_surrounding_text(input_method, strlen("mit_"), 0);
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zwp_input_method_v2_commit(input_method, serial);
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update_stage++;
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break;
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case 6:
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if (strcmp(current.surrounding.text, "_Com") != 0) {
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printf("Failed\n");
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}
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update_stage++;
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break;
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default:
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printf("Submitted everything\n");
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return;
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};
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}
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static void handle_timer(void) {
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printf("Timer dispatched at %d\n", update_stage);
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do_updates();
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}
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static void im_deactivate(void *data,
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struct zwp_input_method_v2 *context) {
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// No special action needed
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}
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static void handle_done(void *data,
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struct zwp_input_method_v2 *zwp_input_method_v2) {
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bool prev_active = active;
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serial++;
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printf("Handle serial %d\n", serial);
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if (active != pending_active) {
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printf("Now %s\n", pending_active ? "active" : "inactive");
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}
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if (pending_active) {
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print_state_diff(current, pending);
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}
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active = pending_active;
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free(current.surrounding.text);
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struct input_method_state default_state = {0};
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current = pending;
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pending = default_state;
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if (active && !prev_active) {
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im_activate(data, zwp_input_method_v2);
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} else if (!active && prev_active) {
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im_deactivate(data, zwp_input_method_v2);
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}
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do_updates();
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}
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static const struct zwp_input_method_v2_listener im_listener = {
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.activate = handle_activate,
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.deactivate = handle_deactivate,
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.surrounding_text = handle_surrounding_text,
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.text_change_cause = handle_text_change_cause,
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.content_type = handle_content_type,
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.done = handle_done,
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.unavailable = handle_unavailable,
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};
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static void handle_global(void *data, struct wl_registry *registry,
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uint32_t name, const char *interface, uint32_t version) {
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if (strcmp(interface, "wl_compositor") == 0) {
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compositor = wl_registry_bind(registry, name,
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&wl_compositor_interface, 1);
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} else if (strcmp(interface, zwp_input_method_manager_v2_interface.name) == 0) {
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input_method_manager = wl_registry_bind(registry, name,
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&zwp_input_method_manager_v2_interface, 1);
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} else if (strcmp(interface, wl_seat_interface.name) == 0) {
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seat = wl_registry_bind(registry, name, &wl_seat_interface, version);
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}
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}
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static void handle_global_remove(void *data, struct wl_registry *registry,
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uint32_t name) {
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// who cares
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}
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static const struct wl_registry_listener registry_listener = {
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.global = handle_global,
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.global_remove = handle_global_remove,
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};
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int main(int argc, char **argv) {
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if (argc > 1) {
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if (strcmp(argv[1], "--help") == 0 || strcmp(argv[1], "-h") == 0) {
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printf(usage);
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return 0;
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}
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sleeptime = atoi(argv[1]);
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}
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display = wl_display_connect(NULL);
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if (display == NULL) {
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fprintf(stderr, "Failed to create display\n");
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return EXIT_FAILURE;
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}
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struct wl_registry *registry = wl_display_get_registry(display);
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wl_registry_add_listener(registry, ®istry_listener, NULL);
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wl_display_dispatch(display);
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wl_display_roundtrip(display);
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if (compositor == NULL) {
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fprintf(stderr, "wl-compositor not available\n");
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return EXIT_FAILURE;
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}
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if (input_method_manager == NULL) {
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fprintf(stderr, "input-method not available\n");
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return EXIT_FAILURE;
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}
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if (seat == NULL) {
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fprintf(stderr, "seat not available\n");
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return EXIT_FAILURE;
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}
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input_method = zwp_input_method_manager_v2_get_input_method(
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input_method_manager, seat);
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running = true;
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zwp_input_method_v2_add_listener(input_method, &im_listener, NULL);
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int display_fd = wl_display_get_fd(display);
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timer_fd = timerfd_create(CLOCK_MONOTONIC, TFD_CLOEXEC | TFD_NONBLOCK);
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if (timer_fd < 0) {
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fprintf(stderr, "Failed to start timer\n");
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return EXIT_FAILURE;
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}
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int epoll = epoll_create1(EPOLL_CLOEXEC);
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if (epoll < 0) {
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fprintf(stderr, "Failed to start epoll\n");
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return EXIT_FAILURE;
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}
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struct epoll_event epoll_display = {
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.events = EPOLLIN | EPOLLOUT,
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.data = {.fd = display_fd},
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};
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if (epoll_ctl(epoll, EPOLL_CTL_ADD, display_fd, &epoll_display)) {
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fprintf(stderr, "Failed to epoll display\n");
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return EXIT_FAILURE;
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}
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wl_display_roundtrip(display); // timer may be armed here
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struct epoll_event epoll_timer = {
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.events = EPOLLIN,
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.data = {.fd = timer_fd},
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};
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if (epoll_ctl(epoll, EPOLL_CTL_ADD, timer_fd, &epoll_timer)) {
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fprintf(stderr, "Failed to epoll timer\n");
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return EXIT_FAILURE;
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}
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timer_arm(2);
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struct epoll_event caught;
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while (epoll_wait(epoll, &caught, 1, -1)) {
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if (!running) {
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printf("Exiting\n");
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return EXIT_SUCCESS;
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}
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if (caught.data.fd == display_fd) {
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if (wl_display_dispatch(display) == -1) {
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break;
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}
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} else if (caught.data.fd == timer_fd) {
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uint64_t expirations;
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ssize_t n = read(timer_fd, &expirations, sizeof(expirations));
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assert(n >= 0);
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handle_timer();
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} else {
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printf("Unknown source\n");
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}
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}
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return EXIT_SUCCESS;
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}
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