/*
 * StarDict terminal UI
 *
 * Copyright (c) 2013, Přemysl Janouch 
 * All rights reserved.
 *
 * Permission to use, copy, modify, and/or distribute this software for any
 * purpose with or without fee is hereby granted, provided that the above
 * copyright notice and this permission notice appear in all copies.
 *
 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
 * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
 * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY
 * SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
 * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION
 * OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN
 * CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
 *
 */
#define _XOPEN_SOURCE  500             //!< wcwidth
#define _XOPEN_SOURCE_EXTENDED         //!< Yes, we want ncursesw.
#include 
#include 
#include 
#include 
#include 
#include 
#include 
#include 
#include 
#include 
#include 
#include 
#include 
#include 
#include 
#include "config.h"
#include "stardict.h"
#define KEY_SOH      1                 //!< Ctrl-A
#define KEY_STX      2                 //!< Ctrl-B
#define KEY_ENQ      5                 //!< Ctrl-E
#define KEY_ACK      6                 //!< Ctrl-F
#define KEY_VT      11                 //!< Ctrl-K
#define KEY_FF      12                 //!< Ctrl-L
#define KEY_SO      14                 //!< Ctrl-N
#define KEY_DLE     16                 //!< Ctrl-P
#define KEY_NAK     21                 //!< Ctrl-U
#define KEY_ETB     23                 //!< Ctrl-W
#define KEY_RETURN  13                 //!< Enter
#define KEY_ESCAPE  27                 //!< Esc
typedef enum {
	TERMINAL_UNKNOWN,                  //!< No extra handling
	TERMINAL_XTERM,                    //!< xterm and VTE extra keycodes
	TERMINAL_RXVT                      //!< rxvt extra keycodes
} TerminalType;                        //!< Type of the terminal
typedef enum {
	KEY_NOT_RECOGNISED,                //!< Not recognised
	KEY_CTRL_UP,                       //!< Ctrl + Up arrow
	KEY_CTRL_DOWN,                     //!< Ctrl + Down arrow
	KEY_CTRL_LEFT,                     //!< Ctrl + Left arrow
	KEY_CTRL_RIGHT,                    //!< Ctrl + Right arrow
	KEY_ALT_UP,                        //!< Alt + Up arrow
	KEY_ALT_DOWN,                      //!< Alt + Down arrow
	KEY_ALT_LEFT,                      //!< Alt + Left arrow
	KEY_ALT_RIGHT                      //!< Alt + Right arrow
} ExtraKeyCode;                        //!< Translated key codes above KEY_MAX
// --- Utilities ---------------------------------------------------------------
static int
poll_restart (struct pollfd *fds, nfds_t nfds, int timeout)
{
	int ret;
	do
		ret = poll (fds, nfds, timeout);
	while (ret == -1 && errno == EINTR);
	return ret;
}
/** Wrapper for curses event data. */
typedef struct curses_event            CursesEvent;
struct curses_event
{
	wint_t  code;
	guint   is_char : 1;
	MEVENT  mouse;
};
static size_t
unichar_width (gunichar ch)
{
	if (g_unichar_iszerowidth (ch))
		return 0;
	return 1 + g_unichar_iswide (ch);
}
#ifndef HAVE_WCWIDTH
#define wcwidth(x)  1
#endif // ! HAVE_WCWIDTH
static gboolean
is_character_in_locale (wchar_t c)
{
	wchar_t s[] = { c, 0 };
	return wcstombs (NULL, s, 0) != (size_t) -1;
}
/** Translate key codes above KEY_MAX returned from ncurses into something
 *  meaningful, based on the terminal type.  The values have been obtained
 *  experimentally.  Some keycodes make ncurses return KEY_ESCAPE, even
 *  depending on actual terminal settings, thus this is not reliable at all.
 *  xterm/VTE seems to behave nicely, though.
 */
static guint
translate_extra_keycode (wchar_t code, TerminalType terminal)
{
	switch (terminal)
	{
	case TERMINAL_XTERM:
		switch (code)
		{
		case 565: return KEY_CTRL_UP;
		case 524: return KEY_CTRL_DOWN;
		case 544: return KEY_CTRL_LEFT;
		case 559: return KEY_CTRL_RIGHT;
		case 563: return KEY_ALT_UP;
		case 522: return KEY_ALT_DOWN;
		case 542: return KEY_ALT_LEFT;
		case 557: return KEY_ALT_RIGHT;
		}
		break;
	case TERMINAL_RXVT:
		switch (code)
		{
		case 521: return KEY_CTRL_UP;
		case 514: return KEY_CTRL_DOWN;
		}
		break;
	case TERMINAL_UNKNOWN:
		break;
	}
	return KEY_NOT_RECOGNISED;
}
/** Get the type of the terminal based on the TERM environment variable. */
static TerminalType
get_terminal_type (void)
{
	const gchar *term = g_getenv ("TERM");
	if (!term)  return TERMINAL_UNKNOWN;
	gchar term_copy[strcspn (term, "-") + 1];
	g_strlcpy (term_copy, term, sizeof term_copy);
	if (!strcmp (term_copy, "xterm"))  return TERMINAL_XTERM;
	if (!strcmp (term_copy, "rxvt"))   return TERMINAL_RXVT;
	return TERMINAL_UNKNOWN;
}
// --- Application -------------------------------------------------------------
/** Data relating to one entry within the dictionary. */
typedef struct view_entry               ViewEntry;
/** Encloses application data. */
typedef struct application              Application;
struct view_entry
{
	gchar   * word;                     //!< Word
	gchar  ** definitions;              //!< Word definition entries
	gsize     definitions_length;       //!< Length of the @a definitions array
};
struct application
{
	TerminalType    terminal_type;      //!< Type of the terminal
	GIConv          utf8_to_wchar;      //!< utf-8 -> wchar_t conversion
	GIConv          wchar_to_utf8;      //!< wchar_t -> utf-8 conversion
	StardictDict  * dict;               //!< The current dictionary
	guint           show_help : 1;      //!< Whether help can be shown
	guint32         top_position;       //!< Index of the topmost dict. entry
	guint           top_offset;         //!< Offset into the top entry
	guint           selected;           //!< Offset to the selected definition
	GPtrArray     * entries;            //!< ViewEntry's within the view
	gchar         * search_label;       //!< Text of the "Search" label
	GArray        * input;              //!< The current search input
	guint           input_pos;          //!< Cursor position within input
	gboolean        input_confirmed;    //!< Input has been confirmed
	gfloat          division;           //!< Position of the division column
};
/** Splits the entry and adds it to a pointer array. */
static void
view_entry_split_add (GPtrArray *out, const gchar *text)
{
	gchar **it, **tmp = g_strsplit (text, "\n", -1);
	for (it = tmp; *it; it++)
		if (**it)
			g_ptr_array_add (out, g_strdup (*it));
	g_strfreev (tmp);
}
/** Decomposes a dictionary entry into the format we want. */
static ViewEntry *
view_entry_new (StardictIterator *iterator)
{
	g_return_val_if_fail (stardict_iterator_is_valid (iterator), NULL);
	ViewEntry *ve = g_slice_alloc (sizeof *ve);
	GString *word = g_string_new (stardict_iterator_get_word (iterator));
	StardictEntry *entry = stardict_iterator_get_entry (iterator);
	g_return_val_if_fail (entry != NULL, NULL);
	GPtrArray *definitions = g_ptr_array_new ();
	const GList *fields = stardict_entry_get_fields (entry);
	gboolean found_anything_displayable = FALSE;
	while (fields)
	{
		const StardictEntryField *field = fields->data;
		switch (field->type)
		{
		case STARDICT_FIELD_MEANING:
			view_entry_split_add (definitions, field->data);
			found_anything_displayable = TRUE;
			break;
		case STARDICT_FIELD_PANGO:
		{
			char *text;
			if (!pango_parse_markup (field->data, -1,
				0, NULL, &text, NULL, NULL))
				text = g_strdup_printf ("<%s>", _("error in entry"));
			view_entry_split_add (definitions, text);
			found_anything_displayable = TRUE;
			g_free (text);
			break;
		}
		case STARDICT_FIELD_PHONETIC:
			g_string_append_printf (word, " /%s/", (const gchar *) field->data);
			break;
		default:
			// TODO support more of them
			break;
		}
		fields = fields->next;
	}
	g_object_unref (entry);
	if (!found_anything_displayable)
		g_ptr_array_add (definitions,
			g_strdup_printf ("<%s>", _("no usable field found")));
	ve->word = g_string_free (word, FALSE);
	ve->definitions_length = definitions->len;
	g_ptr_array_add (definitions, NULL);
	ve->definitions = (gchar **) g_ptr_array_free (definitions, FALSE);
	return ve;
}
/** Release resources associated with the view entry. */
static void
view_entry_free (ViewEntry *ve)
{
	g_free (ve->word);
	g_strfreev (ve->definitions);
	g_slice_free1 (sizeof *ve, ve);
}
/** Reload view items. */
static void
app_reload_view (Application *self)
{
	if (self->entries->len != 0)
		g_ptr_array_remove_range (self->entries, 0, self->entries->len);
	gint remains = LINES - 1 + self->top_offset;
	StardictIterator *iterator =
		stardict_iterator_new (self->dict, self->top_position);
	while (remains > 0 && stardict_iterator_is_valid (iterator))
	{
		ViewEntry *entry = view_entry_new (iterator);
		remains -= entry->definitions_length;
		g_ptr_array_add (self->entries, entry);
		stardict_iterator_next (iterator);
	}
	g_object_unref (iterator);
}
/** Initialize the application core. */
static void
app_init (Application *self, const gchar *filename)
{
	GError *error = NULL;
	self->dict = stardict_dict_new (filename, &error);
	if (!self->dict)
	{
		g_printerr ("%s: %s\n", _("Error loading dictionary"), error->message);
		exit (EXIT_FAILURE);
	}
	self->terminal_type = get_terminal_type ();
	self->show_help = TRUE;
	self->top_position = 0;
	self->top_offset = 0;
	self->selected = 0;
	self->entries = g_ptr_array_new_with_free_func
		((GDestroyNotify) view_entry_free);
	self->search_label = g_strdup_printf ("%s: ", _("Search"));
	self->input = g_array_new (TRUE, FALSE, sizeof (gunichar));
	self->input_pos = 0;
	self->input_confirmed = FALSE;
	self->division = 0.5;
	self->wchar_to_utf8 = g_iconv_open ("utf-8//translit", "wchar_t");
	self->utf8_to_wchar = g_iconv_open ("wchar_t//translit", "utf-8");
	app_reload_view (self);
}
/** Free any resources used by the application. */
static void
app_destroy (Application *self)
{
	g_object_unref (self->dict);
	g_ptr_array_free (self->entries, TRUE);
	g_free (self->search_label);
	g_array_free (self->input, TRUE);
	g_iconv_close (self->wchar_to_utf8);
	g_iconv_close (self->utf8_to_wchar);
}
/** Write the given utf-8 string padded with spaces.
 *  @param[in] n  The number of characters to write, or -1 for the whole string.
 *  @return The number of wide characters written.
 */
static gsize
app_add_utf8_string (Application *self, const gchar *str, int n)
{
	wchar_t *wide_str = (wchar_t *) g_convert_with_iconv
		(str, -1, self->utf8_to_wchar, NULL, NULL, NULL);
	g_return_val_if_fail (wide_str != NULL, 0);
	ssize_t wide_len = wcslen (wide_str);
	wchar_t padding = L' ', error = L'?', ellipsis = L'…';
	if (!n)
		return 0;
	// Compute how many wide characters fit in the limit
	gint cols, i;
	for (cols = i = 0; i < wide_len; i++)
	{
		if (!is_character_in_locale (wide_str[i]))
			wide_str[i] = error;
		gint width = wcwidth (wide_str[i]);
		if (n >= 0 && cols + width > n)
			break;
		cols += width;
	}
	if (n < 0)
		n = cols;
	// Append ellipsis if the whole string didn't fit
	gint len = i;
	if (len != wide_len)
	{
		if (is_character_in_locale (ellipsis))
		{
			if (cols + wcwidth (ellipsis) > n)
				cols -= wcwidth (wide_str[len - 1]);
			else
				len++;
			wide_str[len - 1] = ellipsis;
			cols += wcwidth (ellipsis);
		}
		else if (n >= 3 && len >= 3)
		{
			// With zero-width characters this overflows
			// It's just a fallback anyway
			cols -= wcwidth (wide_str[len - 1]);
			cols -= wcwidth (wide_str[len - 2]);
			cols -= wcwidth (wide_str[len - 3]);
			cols += 3;
			wide_str[len - 1] = L'.';
			wide_str[len - 2] = L'.';
			wide_str[len - 3] = L'.';
		}
	}
	cchar_t cch;
	for (i = 0; i < len; i++)
	{
		if (setcchar (&cch, &wide_str[i], A_NORMAL, 0, NULL) == OK)
			add_wch (&cch);
		else
			// This shouldn't happen
			cols -= wcwidth (wide_str[i]);
	}
	setcchar (&cch, &padding, A_NORMAL, 0, NULL);
	while (cols++ < n)
		add_wch (&cch);
	g_free (wide_str);
	return n;
}
/** Render the top bar. */
static void
app_redraw_top (Application *self)
{
	mvwhline (stdscr, 0, 0, A_UNDERLINE, COLS);
	attrset (A_UNDERLINE);
	gsize indent = app_add_utf8_string (self, self->search_label, -1);
	gchar *input_utf8 = g_ucs4_to_utf8
		((gunichar *) self->input->data, -1, NULL, NULL, NULL);
	g_return_if_fail (input_utf8 != NULL);
	if (self->input_confirmed)
		attron (A_BOLD);
	app_add_utf8_string (self, input_utf8, COLS - indent);
	g_free (input_utf8);
	guint offset, i;
	for (offset = i = 0; i < self->input_pos; i++)
		// This may be inconsistent with the output of app_add_utf8_string()
		offset += unichar_width (g_array_index (self->input, gunichar, i));
	move (0, indent + offset);
	refresh ();
}
/** Computes width for the left column. */
static guint
app_get_left_column_width (Application *self)
{
	gint width = COLS * self->division + 0.5;
	if (width < 1)
		width = 1;
	else if (width > COLS - 2)
		width = COLS - 2;
	return width;
}
/** Display a message in the view area. */
static void
app_show_message (Application *self, const gchar *lines[], gsize len)
{
	gint top = (LINES - 1 - len) / 2;
	gint i;
	for (i = 0; i < top; i++)
	{
		move (1 + i, 0);
		clrtoeol ();
	}
	attrset (0);
	while (len-- && i < LINES - 1)
	{
		move (1 + i, 0);
		clrtoeol ();
		gint x = (COLS - g_utf8_strlen (*lines, -1)) / 2;
		if (x < 0)
			x = 0;
		move (1 + i, x);
		app_add_utf8_string (self, *lines, COLS - x);
		lines++;
		i++;
	}
	clrtobot ();
	refresh ();
}
/** Show some information about the program. */
static void
app_show_help (Application *self)
{
	const gchar *lines[] =
	{
		PROJECT_NAME " " PROJECT_VERSION,
		_("Terminal UI for StarDict dictionaries"),
		"Copyright (c) 2013, Přemysl Janouch",
		"",
		_("Type to search")
	};
	app_show_message (self, lines, G_N_ELEMENTS (lines));
}
/** Redraw the dictionary view. */
static void
app_redraw_view (Application *self)
{
	if (self->show_help)
	{
		app_show_help (self);
		return;
	}
	move (1, 0);
	guint i, k = self->top_offset, shown = 0;
	for (i = 0; i < self->entries->len; i++)
	{
		ViewEntry *ve = g_ptr_array_index (self->entries, i);
		for (; k < ve->definitions_length; k++)
		{
			int attrs = 0;
			if (shown == self->selected)          attrs |= A_REVERSE;
			if (k + 1 == ve->definitions_length)  attrs |= A_UNDERLINE;
			attrset (attrs);
			guint left_width = app_get_left_column_width (self);
			app_add_utf8_string (self, ve->word, left_width);
			addwstr (L" ");
			app_add_utf8_string (self,
				ve->definitions[k], COLS - left_width - 1);
			if ((gint) ++shown == LINES - 1)
				goto done;
		}
		k = 0;
	}
done:
	attrset (0);
	clrtobot ();
	refresh ();
}
/** Just prepends a new view entry into the entries array. */
static ViewEntry *
prepend_entry (Application *self, guint32 position)
{
	StardictIterator *iterator = stardict_iterator_new (self->dict, position);
	ViewEntry *ve = view_entry_new (iterator);
	g_object_unref (iterator);
	g_ptr_array_add (self->entries, NULL);
	memmove (self->entries->pdata + 1, self->entries->pdata,
		sizeof ve * (self->entries->len - 1));
	return g_ptr_array_index (self->entries, 0) = ve;
}
/** Just appends a new view entry to the entries array. */
static ViewEntry *
append_entry (Application *self, guint32 position)
{
	ViewEntry *ve = NULL;
	StardictIterator *iterator = stardict_iterator_new
		(self->dict, position);
	if (stardict_iterator_is_valid (iterator))
	{
		ve = view_entry_new (iterator);
		g_ptr_array_add (self->entries, ve);
	}
	g_object_unref (iterator);
	return ve;
}
/** Counts the number of definitions available for seeing. */
static guint
app_count_view_items (Application *self)
{
	guint i, n_definitions = 0;
	for (i = 0; i < self->entries->len; i++)
	{
		ViewEntry *entry = g_ptr_array_index (self->entries, i);
		n_definitions += entry->definitions_length;
	}
	return n_definitions;
}
/** Scroll up @a n entries. */
static gboolean
app_scroll_up (Application *self, guint n)
{
	gboolean success = TRUE;
	guint n_definitions = app_count_view_items (self);
	while (n--)
	{
		if (self->top_offset > 0)
		{
			self->top_offset--;
			continue;
		}
		/* We've reached the top */
		if (self->top_position == 0)
		{
			success = FALSE;
			break;
		}
		ViewEntry *ve = prepend_entry (self, --self->top_position);
		self->top_offset = ve->definitions_length - 1;
		n_definitions += ve->definitions_length;
		/* Remove the last entry if not shown */
		ViewEntry *last_entry =
			g_ptr_array_index (self->entries, self->entries->len - 1);
		if ((gint) (n_definitions - self->top_offset
			- last_entry->definitions_length) >= LINES - 1)
		{
			n_definitions -= last_entry->definitions_length;
			g_ptr_array_remove_index_fast
				(self->entries, self->entries->len - 1);
		}
	}
	app_redraw_view (self);
	return success;
}
/** Scroll down @a n entries. */
static gboolean
app_scroll_down (Application *self, guint n)
{
	gboolean success = TRUE;
	guint n_definitions = app_count_view_items (self);
	while (n--)
	{
		if (self->entries->len == 0)
		{
			success = FALSE;
			break;
		}
		ViewEntry *first_entry = g_ptr_array_index (self->entries, 0);
		if (self->top_offset < first_entry->definitions_length - 1)
			self->top_offset++;
		else
		{
			n_definitions -= first_entry->definitions_length;
			g_ptr_array_remove_index (self->entries, 0);
			self->top_position++;
			self->top_offset = 0;
		}
		if ((gint) (n_definitions - self->top_offset) < LINES - 1)
		{
			ViewEntry *ve = append_entry (self,
				self->top_position + self->entries->len);
			if (ve != NULL)
				n_definitions += ve->definitions_length;
		}
	}
	/* Fix cursor to not point below the view items */
	if (self->selected >= n_definitions - self->top_offset)
		self->selected  = n_definitions - self->top_offset - 1;
	app_redraw_view (self);
	return success;
}
/** Moves the selection one entry up. */
static gboolean
app_one_entry_up (Application *self)
{
	if (self->selected == 0 && self->top_offset == 0)
	{
		if (self->top_position == 0)
			return FALSE;
		prepend_entry (self, --self->top_position);
	}
	// Find the last entry that starts above the selection
	gint first = -self->top_offset;
	guint i;
	for (i = 0; i < self->entries->len; i++)
	{
		ViewEntry *ve = g_ptr_array_index (self->entries, i);
		gint new_first = first + ve->definitions_length;
		if (new_first >= (gint) self->selected)
			break;
		first = new_first;
	}
	if (first < 0)
	{
		self->selected = 0;
		app_scroll_up (self, -first);
	}
	else
	{
		self->selected = first;
		app_redraw_view (self);
	}
	return TRUE;
}
/** Moves the selection one entry down. */
static void
app_one_entry_down (Application *self)
{
	// Find the first entry that starts below the selection
	gint first = -self->top_offset;
	guint i;
	for (i = 0; i < self->entries->len; i++)
	{
		ViewEntry *ve = g_ptr_array_index (self->entries, i);
		first += ve->definitions_length;
		if (first > (gint) self->selected)
			break;
	}
	if (first > LINES - 2)
	{
		self->selected = LINES - 2;
		app_scroll_down (self, first - (LINES - 2));
	}
	else
	{
		self->selected = first;
		app_redraw_view (self);
	}
}
/** Redraw everything. */
static void
app_redraw (Application *self)
{
	app_redraw_view (self);
	app_redraw_top (self);
}
/** Search for the current entry. */
static void
app_search_for_entry (Application *self)
{
	gchar *input_utf8 = g_ucs4_to_utf8
		((gunichar *) self->input->data, -1, NULL, NULL, NULL);
	g_return_if_fail (input_utf8 != NULL);
	StardictIterator *iterator =
		stardict_dict_search (self->dict, input_utf8, NULL);
	g_free (input_utf8);
	self->top_position = stardict_iterator_get_offset (iterator);
	self->top_offset = 0;
	self->selected = 0;
	g_object_unref (iterator);
	app_reload_view (self);
	app_redraw_view (self);
}
#define SAVE_CURSOR                 \
	int last_x, last_y;             \
	getyx (stdscr, last_y, last_x);
#define RESTORE_CURSOR              \
	move (last_y, last_x);          \
	refresh ();
/** Process input above KEY_MAX. */
static gboolean
app_process_extra_code (Application *self, CursesEvent *event)
{
	SAVE_CURSOR
	switch (translate_extra_keycode (event->code, self->terminal_type))
	{
	case KEY_CTRL_UP:
		app_one_entry_up (self);
		RESTORE_CURSOR
		break;
	case KEY_CTRL_DOWN:
		app_one_entry_down (self);
		RESTORE_CURSOR
		break;
	case KEY_ALT_LEFT:
		self->division = (app_get_left_column_width (self) - 1.) / COLS;
		app_redraw_view (self);
		RESTORE_CURSOR
		break;
	case KEY_ALT_RIGHT:
		self->division = (app_get_left_column_width (self) + 1.) / COLS;
		app_redraw_view (self);
		RESTORE_CURSOR
		break;
	}
	return TRUE;
}
/** Process input that's not a character. */
static gboolean
app_process_nonchar_code (Application *self, CursesEvent *event)
{
	SAVE_CURSOR
	switch (event->code)
	{
	case KEY_RESIZE:
	{
		app_reload_view (self);
		guint n_visible = app_count_view_items (self) - self->top_offset;
		if ((gint) n_visible > LINES - 1)
			n_visible = LINES - 1;
		if (self->selected >= n_visible)
		{
			app_scroll_down (self, self->selected - n_visible + 1);
			self->selected = n_visible - 1;
		}
		app_redraw (self);
		break;
	}
	case KEY_MOUSE:
		if (!(event->mouse.bstate & BUTTON1_PRESSED))
			break;
		if (event->mouse.y == 0)
		{
			gsize label_len = g_utf8_strlen (self->search_label, -1);
			gint pos = event->mouse.x - label_len;
			if (pos >= 0)
			{
				self->input_pos = MIN ((guint) pos, self->input->len);
				move (0, label_len + self->input_pos);
				refresh ();
			}
		}
		else if (event->mouse.y <= (int)
			(app_count_view_items (self) - self->top_offset))
		{
			self->selected = event->mouse.y - 1;
			app_redraw_view (self);
			RESTORE_CURSOR
		}
		break;
	case KEY_UP:
		if (self->selected > 0)
		{
			self->selected--;
			app_redraw_view (self);
		}
		else
			app_scroll_up (self, 1);
		RESTORE_CURSOR
		break;
	case KEY_DOWN:
		if ((gint) self->selected < LINES - 2 &&
			self->selected < app_count_view_items (self) - self->top_offset - 1)
		{
			self->selected++;
			app_redraw_view (self);
		}
		else
			app_scroll_down (self, 1);
		RESTORE_CURSOR
		break;
	case KEY_PPAGE:
		app_scroll_up (self, LINES - 1);
		// FIXME selection
		RESTORE_CURSOR
		break;
	case KEY_NPAGE:
		app_scroll_down (self, LINES - 1);
		// FIXME selection
		RESTORE_CURSOR
		break;
	case KEY_HOME:
		self->input_pos = 0;
		app_redraw_top (self);
		break;
	case KEY_END:
		self->input_pos = self->input->len;
		app_redraw_top (self);
		break;
	case KEY_LEFT:
		if (self->input_pos > 0)
		{
			self->input_pos--;
			app_redraw_top (self);
		}
		break;
	case KEY_RIGHT:
		if (self->input_pos < self->input->len)
		{
			self->input_pos++;
			app_redraw_top (self);
		}
		break;
	case KEY_BACKSPACE:
		if (self->input_pos > 0)
		{
			g_array_remove_index (self->input, --self->input_pos);
			app_search_for_entry (self);
			app_redraw_top (self);
		}
		break;
	case KEY_DC:
		if (self->input_pos < self->input->len)
		{
			g_array_remove_index (self->input, self->input_pos);
			app_search_for_entry (self);
			app_redraw_top (self);
		}
		break;
	default:
		return app_process_extra_code (self, event);
	}
	return TRUE;
}
/** Process input events from ncurses. */
static gboolean
app_process_curses_event (Application *self, CursesEvent *event)
{
	if (!event->is_char)
		return app_process_nonchar_code (self, event);
	switch (event->code)
	{
	case KEY_ESCAPE:
		return FALSE;
	case KEY_RETURN:
		self->input_confirmed = TRUE;
		app_redraw_top (self);
		break;
	case KEY_FF:  // Ctrl-L -- redraw everything
		clear ();
		app_redraw (self);
		break;
	case KEY_STX: // Ctrl-B -- back
	case KEY_ACK: // Ctrl-F -- forward
	case KEY_DLE: // Ctrl-P -- previous
	case KEY_SO:  // Ctrl-N -- next
		// TODO map this to something useful
		break;
	case KEY_SOH: // Ctrl-A -- move to the start of line
		self->input_pos = 0;
		app_redraw_top (self);
		break;
	case KEY_ENQ: // Ctrl-E -- move to the end of line
		self->input_pos = self->input->len;
		app_redraw_top (self);
		break;
	case KEY_VT:  // Ctrl-K -- delete until the end of line
		if (self->input_pos < self->input->len)
		{
			g_array_remove_range (self->input,
				self->input_pos, self->input->len - self->input_pos);
			app_search_for_entry (self);
			app_redraw_top (self);
		}
		return TRUE;
	case KEY_ETB: // Ctrl-W -- delete word before cursor
	{
		if (self->input_pos == 0)
			return TRUE;
		gint i = self->input_pos;
		while (i)
			if (g_array_index (self->input, gunichar, --i) != L' ')
				break;
		while (i--)
			if (g_array_index (self->input, gunichar,   i) == L' ')
				break;
		i++;
		g_array_remove_range (self->input, i, self->input_pos - i);
		self->input_pos = i;
		app_search_for_entry (self);
		app_redraw_top (self);
		return TRUE;
	}
	case KEY_NAK: // Ctrl-U -- delete everything before the cursor
		if (self->input->len != 0)
		{
			g_array_remove_range (self->input, 0, self->input_pos);
			self->input_pos = 0;
			app_search_for_entry (self);
			app_redraw_top (self);
		}
		return TRUE;
	}
	wchar_t code = event->code;
	gchar *letter = g_convert_with_iconv ((gchar *) &code, sizeof code,
		self->wchar_to_utf8, NULL, NULL, NULL);
	g_return_val_if_fail (letter != NULL, FALSE);
	gunichar c = g_utf8_get_char (letter);
	if (g_unichar_isprint (c))
	{
		self->show_help = FALSE;
		if (self->input_confirmed)
		{
			if (self->input->len != 0)
				g_array_remove_range (self->input, 0, self->input->len);
			self->input_pos = 0;
			self->input_confirmed = FALSE;
		}
		g_array_insert_val (self->input, self->input_pos++, c);
		app_search_for_entry (self);
		app_redraw_top (self);
	}
	g_free (letter);
	return TRUE;
}
// --- SIGWINCH ----------------------------------------------------------------
static int g_winch_pipe[2];            /**< SIGWINCH signalling pipe. */
static void (*g_old_winch_handler) (int);
static void
winch_handler (int signum)
{
	/* Call the ncurses handler. */
	if (g_old_winch_handler)
		g_old_winch_handler (signum);
	/* And wake up the poll() call. */
	write (g_winch_pipe[1], "x", 1);
}
static void
install_winch_handler (void)
{
	struct sigaction act, oldact;
	act.sa_handler = winch_handler;
	act.sa_flags = SA_RESTART;
	sigemptyset (&act.sa_mask);
	sigaction (SIGWINCH, &act, &oldact);
	/* Save the ncurses handler. */
	if (oldact.sa_handler != SIG_DFL
	 && oldact.sa_handler != SIG_IGN)
		g_old_winch_handler = oldact.sa_handler;
}
// --- Initialisation, event handling ------------------------------------------
Application g_application;
static gboolean
process_stdin_input (void)
{
	CursesEvent event;
	int sta;
	while ((sta = get_wch (&event.code)) != ERR)
	{
		event.is_char = (sta == OK);
		if (sta == KEY_CODE_YES && event.code == KEY_MOUSE
			&& getmouse (&event.mouse) == ERR)
			abort ();
		if (!app_process_curses_event (&g_application, &event))
			return FALSE;
	}
	return TRUE;
}
static gboolean
process_winch_input (int fd)
{
	char c;
	read (fd, &c, 1);
	return process_stdin_input ();
}
int
main (int argc, char *argv[])
{
G_GNUC_BEGIN_IGNORE_DEPRECATIONS
	if (glib_check_version (2, 36, 0))
		g_type_init ();
G_GNUC_END_IGNORE_DEPRECATIONS
	gboolean show_version = FALSE;
	GOptionEntry entries[] =
	{
		{ "version", 0, G_OPTION_FLAG_IN_MAIN,
		  G_OPTION_ARG_NONE, &show_version,
		  N_("Output version information and exit"), NULL },
		{ NULL }
	};
	if (!setlocale (LC_ALL, ""))
		g_printerr ("%s: %s\n", _("Warning"), _("failed to set the locale"));
	bindtextdomain (GETTEXT_PACKAGE, GETTEXT_DIRNAME);
	bind_textdomain_codeset (GETTEXT_PACKAGE, "UTF-8");
	textdomain (GETTEXT_PACKAGE);
	GError *error = NULL;
	GOptionContext *ctx = g_option_context_new
		(N_("dictionary.ifo - StarDict terminal UI"));
	g_option_context_add_main_entries (ctx, entries, GETTEXT_PACKAGE);
	g_option_context_set_translation_domain (ctx, GETTEXT_PACKAGE);
	if (!g_option_context_parse (ctx, &argc, &argv, &error))
	{
		g_printerr ("%s: %s: %s\n", _("Error"), _("option parsing failed"),
			error->message);
		exit (EXIT_FAILURE);
	}
	if (show_version)
	{
		g_print (PROJECT_NAME " " PROJECT_VERSION "\n");
		exit (EXIT_SUCCESS);
	}
	if (argc != 2)
	{
		gchar *help = g_option_context_get_help (ctx, TRUE, FALSE);
		g_printerr ("%s", help);
		g_free (help);
		exit (EXIT_FAILURE);
	}
	g_option_context_free (ctx);
	app_init (&g_application, argv[1]);
	if (!initscr ()
	 || cbreak () == ERR
	 || noecho () == ERR
	 || nonl () == ERR)
		abort ();
	keypad (stdscr, TRUE);                /* Enable character processing. */
	nodelay (stdscr, TRUE);               /* Don't block on get_wch(). */
	mousemask (ALL_MOUSE_EVENTS, NULL);   /* Register mouse events. */
	mouseinterval (0);
	if (pipe (g_winch_pipe) == -1)
		abort ();
	install_winch_handler ();
	app_redraw (&g_application);
	/* Message loop. */
	struct pollfd pollfd[2];
	pollfd[0].fd = fileno (stdin);
	pollfd[0].events = POLLIN;
	pollfd[1].fd = g_winch_pipe[0];
	pollfd[1].events = POLLIN;
	while (TRUE)
	{
		if (poll_restart (pollfd, 2, -1) == -1)
			abort ();
		if ((pollfd[0].revents & POLLIN)
		 && !process_stdin_input ())
			break;
		if ((pollfd[1].revents & POLLIN)
		 && !process_winch_input (pollfd[1].fd))
			break;
	}
	endwin ();
	app_destroy (&g_application);
	if (close (g_winch_pipe[0]) == -1
	 || close (g_winch_pipe[1]) == -1)
		abort ();
	return 0;
}