static void allocate_matrices_for_window_redisplay (struct window *);
static int realloc_glyph_pool (struct glyph_pool *, struct dim);
static void adjust_frame_glyphs (struct frame *);
-struct glyph_matrix *new_glyph_matrix (struct glyph_pool *);
+static struct glyph_matrix *new_glyph_matrix (struct glyph_pool *);
static void free_glyph_matrix (struct glyph_matrix *);
static void adjust_glyph_matrix (struct window *, struct glyph_matrix *,
int, int, struct dim);
static void change_frame_size_1 (struct frame *, int, int, int, int, int);
+static void increment_row_positions (struct glyph_row *, EMACS_INT, EMACS_INT);
static void swap_glyph_pointers (struct glyph_row *, struct glyph_row *);
#if GLYPH_DEBUG
static int glyph_row_slice_p (struct glyph_row *, struct glyph_row *);
static int update_window_tree (struct window *, int);
static int update_window (struct window *, int);
static int update_frame_1 (struct frame *, int, int);
+static int scrolling (struct frame *);
static void set_window_cursor_after_update (struct window *);
static void adjust_frame_glyphs_for_window_redisplay (struct frame *);
static void adjust_frame_glyphs_for_frame_redisplay (struct frame *);
/* 1 means SIGWINCH happened when not safe. */
-int delayed_size_change;
+static int delayed_size_change;
/* 1 means glyph initialization has been completed at startup. */
/* Counts of allocated structures. These counts serve to diagnose
memory leaks and double frees. */
-int glyph_matrix_count;
-int glyph_pool_count;
+static int glyph_matrix_count;
+static int glyph_pool_count;
/* If non-null, the frame whose frame matrices are manipulated. If
null, window matrices are worked on. */
member `pool' of the glyph matrix structure returned is set to
POOL, the structure is otherwise zeroed. */
-struct glyph_matrix *
+static struct glyph_matrix *
new_glyph_matrix (struct glyph_pool *pool)
{
struct glyph_matrix *result;
the used count of the text area is zero. Such rows display line
ends. */
-void
+static void
increment_row_positions (struct glyph_row *row,
EMACS_INT delta, EMACS_INT delta_bytes)
{
/* Test two glyph rows A and B for equality. Value is non-zero if A
- and B have equal contents. W is the window to which the glyphs
- rows A and B belong. It is needed here to test for partial row
- visibility. MOUSE_FACE_P non-zero means compare the mouse_face_p
- flags of A and B, too. */
+ and B have equal contents. MOUSE_FACE_P non-zero means compare the
+ mouse_face_p flags of A and B, too. */
static INLINE int
-row_equal_p (struct window *w, struct glyph_row *a, struct glyph_row *b, int mouse_face_p)
+row_equal_p (struct glyph_row *a, struct glyph_row *b, int mouse_face_p)
{
if (a == b)
return 1;
}
-/* This is used when frame_garbaged is set. Call Fredraw_frame on all
- visible frames marked as garbaged. */
-
-void
-redraw_garbaged_frames (void)
-{
- Lisp_Object tail, frame;
-
- FOR_EACH_FRAME (tail, frame)
- if (FRAME_VISIBLE_P (XFRAME (frame))
- && FRAME_GARBAGED_P (XFRAME (frame)))
- Fredraw_frame (frame);
-}
-
-
\f
/***********************************************************************
Frame Update
struct glyph_row *row, *end;
struct glyph_row *mode_line_row;
struct glyph_row *header_line_row;
- int yb, changed_p = 0, mouse_face_overwritten_p = 0, n_updated;
+ int yb, changed_p = 0, mouse_face_overwritten_p = 0;
+#if ! PERIODIC_PREEMPTION_CHECKING
+ int n_updated = 0;
+#endif
rif->update_window_begin_hook (w);
yb = window_text_bottom_y (w);
}
/* Update the rest of the lines. */
- for (n_updated = 0; row < end && (force_p || !input_pending); ++row)
+ for (; row < end && (force_p || !input_pending); ++row)
if (row->enabled_p)
{
int vpos = MATRIX_ROW_VPOS (row, desired_matrix);
static struct run **runs;
-/* Add glyph row ROW to the scrolling hash table during the scrolling
- of window W. */
+/* Add glyph row ROW to the scrolling hash table. */
static INLINE struct row_entry *
-add_row_entry (struct window *w, struct glyph_row *row)
+add_row_entry (struct glyph_row *row)
{
struct row_entry *entry;
int i = row->hash % row_table_size;
entry = row_table[i];
- while (entry && !row_equal_p (w, entry->row, row, 1))
+ while (entry && !row_equal_p (entry->row, row, 1))
entry = entry->next;
if (entry == NULL)
&& c->y == d->y
&& MATRIX_ROW_BOTTOM_Y (c) <= yb
&& MATRIX_ROW_BOTTOM_Y (d) <= yb
- && row_equal_p (w, c, d, 1))
+ && row_equal_p (c, d, 1))
{
assign_row (c, d);
d->enabled_p = 0;
&& (MATRIX_ROW (current_matrix, i - 1)->y
== MATRIX_ROW (desired_matrix, j - 1)->y)
&& !MATRIX_ROW (desired_matrix, j - 1)->redraw_fringe_bitmaps_p
- && row_equal_p (w,
- MATRIX_ROW (desired_matrix, i - 1),
+ && row_equal_p (MATRIX_ROW (desired_matrix, i - 1),
MATRIX_ROW (current_matrix, j - 1), 1))
--i, --j;
last_new = i;
{
if (MATRIX_ROW (current_matrix, i)->enabled_p)
{
- entry = add_row_entry (w, MATRIX_ROW (current_matrix, i));
+ entry = add_row_entry (MATRIX_ROW (current_matrix, i));
old_lines[i] = entry;
++entry->old_uses;
}
for (i = first_new; i < last_new; ++i)
{
xassert (MATRIX_ROW_ENABLED_P (desired_matrix, i));
- entry = add_row_entry (w, MATRIX_ROW (desired_matrix, i));
+ entry = add_row_entry (MATRIX_ROW (desired_matrix, i));
++entry->new_uses;
entry->new_line_number = i;
new_lines[i] = entry;
for (i = 0; i < row_entry_idx; ++i)
row_table[row_entry_pool[i].bucket] = NULL;
- /* Value is > 0 to indicate that we scrolled the display. */
- return nruns;
+ /* Value is 1 to indicate that we scrolled the display. */
+ return 0 < nruns;
}
/* Do line insertions/deletions on frame F for frame-based redisplay. */
-int
+static int
scrolling (struct frame *frame)
{
int unchanged_at_top, unchanged_at_bottom;
#ifdef SIGWINCH
-static SIGTYPE
+static void
window_change_signal (int signalnum) /* If we don't have an argument, */
/* some compilers complain in signal calls. */
{
state = frame_and_buffer_state;
vecp = XVECTOR (state)->contents;
- end = vecp + XVECTOR (state)->size;
+ end = vecp + ASIZE (state);
FOR_EACH_FRAME (tail, frame)
{
/* Reallocate the vector if data has grown to need it,
or if it has shrunk a lot. */
if (! VECTORP (state)
- || n > XVECTOR (state)->size
- || n + 20 < XVECTOR (state)->size / 2)
+ || n > ASIZE (state)
+ || n + 20 < ASIZE (state) / 2)
/* Add 20 extra so we grow it less often. */
{
state = Fmake_vector (make_number (n + 20), Qlambda);
/* Fill up the vector with lambdas (always at least one). */
*vecp++ = Qlambda;
while (vecp - XVECTOR (state)->contents
- < XVECTOR (state)->size)
+ < ASIZE (state))
*vecp++ = Qlambda;
/* Make sure we didn't overflow the vector. */
if (vecp - XVECTOR (state)->contents
- > XVECTOR (state)->size)
+ > ASIZE (state))
abort ();
return Qt;
}