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https://github.com/fish-shell/fish-shell.git
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da17420cdf
Reduces lint errors from 27 to 24 (-11%). Line count from 466 to 378 (-19%). Another step in resolving issue #2902.
271 lines
8.2 KiB
C++
271 lines
8.2 KiB
C++
// Implementation file for the low level input library.
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#include "config.h"
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#include <errno.h>
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#include <string.h>
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#include <unistd.h>
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#include <deque>
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#include <list>
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#include <queue>
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#include <utility>
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#ifdef HAVE_SYS_SELECT_H
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#include <sys/select.h>
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#endif
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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 <sys/types.h>
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#include <wchar.h>
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#include <wctype.h>
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#include <cwctype>
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#include <memory>
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#include "common.h"
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#include "env.h"
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#include "env_universal_common.h"
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#include "fallback.h" // IWYU pragma: keep
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#include "input_common.h"
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#include "iothread.h"
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#include "util.h"
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// Time in milliseconds to wait for another byte to be available for reading
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// after \x1b is read before assuming that escape key was pressed, and not an
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// escape sequence.
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#define WAIT_ON_ESCAPE_DEFAULT 300
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static int wait_on_escape_ms = WAIT_ON_ESCAPE_DEFAULT;
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/// Characters that have been read and returned by the sequence matching code.
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static std::deque<wint_t> lookahead_list;
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// Queue of pairs of (function pointer, argument) to be invoked. Expected to be mostly empty.
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typedef std::pair<void (*)(void *), void *> callback_info_t;
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typedef std::queue<callback_info_t, std::list<callback_info_t> > callback_queue_t;
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static callback_queue_t callback_queue;
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static void input_flush_callbacks(void);
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static bool has_lookahead(void) { return !lookahead_list.empty(); }
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static wint_t lookahead_pop(void) {
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wint_t result = lookahead_list.front();
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lookahead_list.pop_front();
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return result;
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}
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static void lookahead_push_back(wint_t c) { lookahead_list.push_back(c); }
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static void lookahead_push_front(wint_t c) { lookahead_list.push_front(c); }
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static wint_t lookahead_front(void) { return lookahead_list.front(); }
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/// Callback function for handling interrupts on reading.
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static int (*interrupt_handler)();
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void input_common_init(int (*ih)()) {
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interrupt_handler = ih;
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update_wait_on_escape_ms();
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}
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void input_common_destroy() {}
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/// Internal function used by input_common_readch to read one byte from fd 0. This function should
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/// only be called by input_common_readch().
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static wint_t readb() {
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// do_loop must be set on every path through the loop; leaving it uninitialized allows the
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// static analyzer to assist in catching mistakes.
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unsigned char arr[1];
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bool do_loop;
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do {
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// Flush callbacks.
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input_flush_callbacks();
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fd_set fdset;
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int fd_max = 0;
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int ioport = iothread_port();
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int res;
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FD_ZERO(&fdset);
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FD_SET(0, &fdset);
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if (ioport > 0) {
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FD_SET(ioport, &fdset);
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fd_max = maxi(fd_max, ioport);
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}
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// Get our uvar notifier.
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universal_notifier_t ¬ifier = universal_notifier_t::default_notifier();
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// Get the notification fd (possibly none).
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int notifier_fd = notifier.notification_fd();
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if (notifier_fd > 0) {
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FD_SET(notifier_fd, &fdset);
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fd_max = maxi(fd_max, notifier_fd);
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}
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// Get its suggested delay (possibly none).
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struct timeval tv = {};
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const unsigned long usecs_delay = notifier.usec_delay_between_polls();
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if (usecs_delay > 0) {
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unsigned long usecs_per_sec = 1000000;
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tv.tv_sec = (int)(usecs_delay / usecs_per_sec);
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tv.tv_usec = (int)(usecs_delay % usecs_per_sec);
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}
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res = select(fd_max + 1, &fdset, 0, 0, usecs_delay > 0 ? &tv : NULL);
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if (res == -1) {
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switch (errno) {
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case EINTR:
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case EAGAIN: {
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if (interrupt_handler) {
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int res = interrupt_handler();
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if (res) {
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return res;
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}
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if (has_lookahead()) {
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return lookahead_pop();
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}
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}
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do_loop = true;
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break;
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}
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default: {
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// The terminal has been closed. Save and exit.
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return R_EOF;
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}
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}
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} else {
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// Assume we loop unless we see a character in stdin.
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do_loop = true;
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// Check to see if we want a universal variable barrier.
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bool barrier_from_poll = notifier.poll();
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bool barrier_from_readability = false;
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if (notifier_fd > 0 && FD_ISSET(notifier_fd, &fdset)) {
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barrier_from_readability = notifier.notification_fd_became_readable(notifier_fd);
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}
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if (barrier_from_poll || barrier_from_readability) {
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env_universal_barrier();
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}
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if (ioport > 0 && FD_ISSET(ioport, &fdset)) {
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iothread_service_completion();
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if (has_lookahead()) {
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return lookahead_pop();
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}
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}
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if (FD_ISSET(STDIN_FILENO, &fdset)) {
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if (read_blocked(0, arr, 1) != 1) {
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// The teminal has been closed. Save and exit.
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return R_EOF;
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}
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// We read from stdin, so don't loop.
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do_loop = false;
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}
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}
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} while (do_loop);
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return arr[0];
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}
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// Update the wait_on_escape_ms value in response to the fish_escape_delay_ms user variable being
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// set.
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void update_wait_on_escape_ms() {
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env_var_t escape_time_ms = env_get_string(L"fish_escape_delay_ms");
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if (escape_time_ms.missing_or_empty()) {
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wait_on_escape_ms = WAIT_ON_ESCAPE_DEFAULT;
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return;
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}
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wchar_t *endptr;
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long tmp = wcstol(escape_time_ms.c_str(), &endptr, 10);
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if (*endptr != '\0' || tmp < 10 || tmp >= 5000) {
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fwprintf(stderr,
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L"ignoring fish_escape_delay_ms: value '%ls' "
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"is not an integer or is < 10 or >= 5000 ms\n",
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escape_time_ms.c_str());
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} else {
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wait_on_escape_ms = (int)tmp;
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}
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}
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wchar_t input_common_readch(int timed) {
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if (!has_lookahead()) {
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if (timed) {
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fd_set fds;
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FD_ZERO(&fds);
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FD_SET(0, &fds);
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struct timeval tm = {wait_on_escape_ms / 1000, 1000 * (wait_on_escape_ms % 1000)};
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int count = select(1, &fds, 0, 0, &tm);
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if (count <= 0) {
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return WEOF;
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}
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}
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wchar_t res;
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mbstate_t state = {};
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while (1) {
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wint_t b = readb();
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if (MB_CUR_MAX == 1) // single-byte locale, all values are legal
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{
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return (unsigned char)b;
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}
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if ((b >= R_NULL) && (b < R_NULL + 1000)) return b;
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char bb = b;
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size_t sz = mbrtowc(&res, &bb, 1, &state);
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switch (sz) {
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case (size_t)(-1): {
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memset(&state, '\0', sizeof(state));
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debug(2, L"Illegal input");
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return R_NULL;
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}
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case (size_t)(-2): {
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break;
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}
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case 0: {
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return 0;
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}
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default: { return res; }
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}
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}
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} else {
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if (!timed) {
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while (has_lookahead() && lookahead_front() == WEOF) lookahead_pop();
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if (!has_lookahead()) return input_common_readch(0);
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}
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return lookahead_pop();
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}
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}
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void input_common_queue_ch(wint_t ch) { lookahead_push_back(ch); }
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void input_common_next_ch(wint_t ch) { lookahead_push_front(ch); }
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void input_common_add_callback(void (*callback)(void *), void *arg) {
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ASSERT_IS_MAIN_THREAD();
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callback_queue.push(callback_info_t(callback, arg));
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}
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static void input_flush_callbacks(void) {
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// Nothing to do if nothing to do.
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if (callback_queue.empty()) return;
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// We move the queue into a local variable, so that events queued up during a callback don't get
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// fired until next round.
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callback_queue_t local_queue;
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std::swap(local_queue, callback_queue);
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while (!local_queue.empty()) {
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const callback_info_t &callback = local_queue.front();
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callback.first(callback.second); // cute
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local_queue.pop();
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}
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}
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