columns
int i, rows, r, c, maxwidth = 0, columns;
columns = win.ws_col / maxwidth;
if (columns == 0)
columns = 1;
rows = (count + (columns - 1)) / columns;
for (c = 0; c < columns; c++) {
if (c < columns - 1) { /* last column? */
int columns = 48;
columns = 80;
size_t amt = len > columns ? columns : len;
for (i = 1; i <= columns; ++i)
while (i++ <= columns)
while (i++ < columns)
for (i = 1; i <= columns; i++)
if (strlen(lines[i]) < columns + 2)
if (lines[i][0] != '|' || lines[i][columns + 1] != '|')
memmove(&lines[i][0], &lines[i][1], columns);
lines[i][columns] = 0;
for (col = 0; col < columns; col++) {
for (col = columns - 1; col >= 0; col--) {
columns = (NCURSES_SIZE_T) ToCols;
T(("screen size: terminfo lines = %d columns = %d", lines, columns));
*colp = (int) columns;
*colp = (int) columns;
columns = (NCURSES_INT2) (*colp);
OldNumber(termp, columns) = (short) (*colp);
int old_cols = columns;
T(("screen size: terminfo lines = %d columns = %d", lines, columns));
*colp = (int) columns;
*colp = (int) columns;
columns = (short) (*colp);
*c = columns;
columns = (short) c;
_nc_setupscreen(lines, columns, stdout, FALSE, 0);
int from_x = roll(columns);
int to_x = roll(columns);
mvcur(roll(lines), roll(columns), roll(lines), roll(columns));
int columns, lines;
columns = 76 / width;
if (columns == 0)
columns = 1;
lines = (NCMDS + columns - 1) / columns;
for (j = 0; j < columns; j++) {
print_menu(int (*test)(const unsigned int), const unsigned int columns)
rows = (j + columns - 1) / columns;
for (j = 0; j < columns; j++) {
int columns;
columns = 0;
columns = strtonum(cp, 1, INT_MAX, NULL);
if (columns == 0 && ioctl(STDOUT_FILENO, TIOCGWINSZ, &ws) == 0 &&
columns = ws.ws_col;
if (columns == 0)
columns = 80;
return columns;
int columns;
columns = 0;
columns = strtonum(cp, 1, INT_MAX, NULL);
if (columns == 0 && ioctl(STDOUT_FILENO, TIOCGWINSZ, &ws) == 0 &&
columns = ws.ws_col;
if (columns == 0)
columns = 80;
return columns;
int i, j, w, precision = 0, columns, lines;
columns = 81 / width;
if (columns == 0)
columns = 1;
lines = (nentry + columns - 1) / columns;
for (j = 0; j < columns; j++) {
u_short columns;
if (geo->columns <= 0) {
bktr_name(bktr), geo->columns);
else if ((geo->columns & 0x3fe) != geo->columns) {
bktr_name(bktr), geo->columns);
if ((temp=(geo->rows * geo->columns * geo->frames * 2))) {
bktr->cols = geo->columns;
for (i = 0; i < len && i < scanout->columns; i++) {
while (len > scanout->columns) {
drm_log_draw_new_line(scanout, s, scanout->columns, prefix_len);
s += scanout->columns;
len -= scanout->columns;
scanout->columns = width / scanout->scaled_font_w;
u32 columns;
char columns[80] = " |";
snprintf(columns, sizeof(columns), "%4ld%s |",
memset(columns + 8, '*', x);
columns[8 + x] = '\0';
seq_printf(m, "%s%s\n", hdr, columns);
int columns, width, lines;
columns = ttywidth / width;
if (columns == 0)
columns = 1;
lines = (sl->sl_cur + columns - 1) / columns;
for (j = 0; j < columns; j++) {
else if (!hardcopy && (n = columns) > 0)
int i, columns, indent = 2;
columns = get_cols () - 1;
if (maxlen[0] + maxlen[1] + indent * 2 > columns) {
maxlen[1] = columns - (maxlen[0] + indent * 2);
((newrow = lines) <= 0 || (newcol = columns) <= 0)) {
size_t columns,
libcrux_ml_dsa_sample_sample_up_to_four_ring_elements_flat_xy(start_index, columns));
columns));
columns));
columns));
size_t columns,
libcrux_ml_dsa_sample_sample_up_to_four_ring_elements_flat_63(columns,
size_t columns,
libcrux_ml_dsa_samplex4_matrix_flat_63(columns, seed, matrix);
columns = width / (m + 2);
columns = MAXIMUM(columns, 1);
colspace = width / columns;
if (c >= columns) {
u_int y, m = 0, width = 80, columns = 1, colspace = 0, llen;
columns = width / (m + 2);
columns = MAXIMUM(columns, 1);
colspace = width / columns;
if (m >= columns) {
u_int c = 1, colspace = 0, columns = 1;
columns = width / (m + 2);
columns = MAXIMUM(columns, 1);
colspace = width / columns;
if (c >= columns) {
u_int colspace = 0, columns = 1, m = 0, width = 80;
columns = rawwidth;
columns = COLS;
columns = COLS;
#ifdef columns
int width = columns;
int columns, lines;
extern int columns, lines;
need_flush |= sent_string(TIPARM_2(set_lr_margin, 0, columns - 1));
columns - 1));
columns - 1));
for (i = 0; i < columns - 1; i++) {
need_flush |= reset_tabstops(columns);
u_int i, j, columns, rows, max_columns;
rows = columns = 1;
while (rows * columns < n) {
if (rows * columns < n &&
(max_columns == 0 || columns < max_columns))
columns++;
width = (w->sx - (columns - 1)) / columns;
sx = ((width + 1) * columns) - 1;
if (n - (j * columns) == 1 || columns == 1) {
for (i = 0; i < columns; i++) {
if (i == columns)
set_window_size(fd, &lines, &columns);
set_window_size(my_fd, &lines, &columns);
cl_resize(SCR *sp, size_t lines, size_t columns)
(void)snprintf(b1, sizeof(b1), "columns=%lu", (u_long)columns);
size_t lines, columns;
if (cl_ssize(sp, 1, &lines, &columns, &changed))
(void)cl_resize(sp, lines, columns);
int columns = 0, len;
if (columns + len < 80)
columns += len;
columns = len;
int columns, width = 0, lines;
columns = 80 / width;
if (columns == 0)
columns = 1;
lines = (NCMDS + columns - 1) / columns;
for (j = 0; j < columns; j++) {