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554 lines
12 KiB
C
554 lines
12 KiB
C
/* $OpenBSD$ */
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/*
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* Copyright (c) 2019 Nicholas Marriott <nicholas.marriott@gmail.com>
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*
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* Permission to use, copy, modify, and distribute this software for any
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* purpose with or without fee is hereby granted, provided that the above
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* copyright notice and this permission notice appear in all copies.
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*
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* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
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* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
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* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
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* ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
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* WHATSOEVER RESULTING FROM LOSS OF MIND, USE, DATA OR PROFITS, WHETHER
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* IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING
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* OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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*/
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#include <sys/types.h>
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#include <stdlib.h>
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#include <string.h>
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#include "tmux.h"
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#define SIXEL_COLOUR_REGISTERS 1024
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#define SIXEL_WIDTH_LIMIT 2016
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#define SIXEL_HEIGHT_LIMIT 2016
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struct sixel_line {
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u_int x;
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uint16_t *data;
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};
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struct sixel_image {
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u_int x;
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u_int y;
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u_int xpixel;
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u_int ypixel;
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u_int *colours;
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u_int ncolours;
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u_int dx;
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u_int dy;
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u_int dc;
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struct sixel_line *lines;
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};
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static int
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sixel_parse_expand_lines(struct sixel_image *si, u_int y)
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{
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if (y <= si->y)
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return (0);
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if (y > SIXEL_HEIGHT_LIMIT)
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return (1);
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si->lines = xrecallocarray(si->lines, si->y, y, sizeof *si->lines);
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si->y = y;
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return (0);
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}
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static int
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sixel_parse_expand_line(struct sixel_image *si, struct sixel_line *sl, u_int x)
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{
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if (x <= sl->x)
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return (0);
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if (x > SIXEL_WIDTH_LIMIT)
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return (1);
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if (x > si->x)
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si->x = x;
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sl->data = xrecallocarray(sl->data, sl->x, si->x, sizeof *sl->data);
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sl->x = si->x;
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return (0);
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}
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static u_int
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sixel_get_pixel(struct sixel_image *si, u_int x, u_int y)
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{
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struct sixel_line *sl;
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if (y >= si->y)
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return (0);
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sl = &si->lines[y];
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if (x >= sl->x)
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return (0);
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return (sl->data[x]);
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}
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static int
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sixel_set_pixel(struct sixel_image *si, u_int x, u_int y, u_int c)
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{
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struct sixel_line *sl;
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if (sixel_parse_expand_lines(si, y + 1) != 0)
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return (1);
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sl = &si->lines[y];
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if (sixel_parse_expand_line(si, sl, x + 1) != 0)
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return (1);
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sl->data[x] = c;
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return (0);
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}
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static int
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sixel_parse_write(struct sixel_image *si, u_int ch)
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{
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struct sixel_line *sl;
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u_int i;
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if (sixel_parse_expand_lines(si, si->dy + 6) != 0)
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return (1);
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sl = &si->lines[si->dy];
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for (i = 0; i < 6; i++) {
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if (sixel_parse_expand_line(si, sl, si->dx + 1) != 0)
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return (1);
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if (ch & (1 << i))
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sl->data[si->dx] = si->dc;
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sl++;
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}
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return (0);
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}
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static const char *
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sixel_parse_attributes(struct sixel_image *si, const char *cp, const char *end)
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{
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const char *last;
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char *endptr;
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u_int d, x, y;
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last = cp;
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while (last != end) {
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if (*last != ';' && (*last < '0' || *last > '9'))
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break;
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last++;
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}
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d = strtoul(cp, &endptr, 10);
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if (endptr == last || *endptr != ';')
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return (last);
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d = strtoul(endptr + 1, &endptr, 10);
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if (endptr == last || *endptr != ';')
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return (NULL);
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x = strtoul(endptr + 1, &endptr, 10);
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if (endptr == last || *endptr != ';')
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return (NULL);
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if (x > SIXEL_WIDTH_LIMIT)
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return (NULL);
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y = strtoul(endptr + 1, &endptr, 10);
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if (endptr != last)
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return (NULL);
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if (y > SIXEL_HEIGHT_LIMIT)
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return (NULL);
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si->x = x;
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sixel_parse_expand_lines(si, y);
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return (last);
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}
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static const char *
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sixel_parse_colour(struct sixel_image *si, const char *cp, const char *end)
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{
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const char *last;
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char *endptr;
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u_int c, type, r, g, b;
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last = cp;
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while (last != end) {
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if (*last != ';' && (*last < '0' || *last > '9'))
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break;
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last++;
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}
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c = strtoul(cp, &endptr, 10);
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if (c > SIXEL_COLOUR_REGISTERS)
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return (NULL);
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si->dc = c + 1;
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if (endptr == last || *endptr != ';')
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return (last);
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type = strtoul(endptr + 1, &endptr, 10);
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if (endptr == last || *endptr != ';')
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return (NULL);
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r = strtoul(endptr + 1, &endptr, 10);
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if (endptr == last || *endptr != ';')
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return (NULL);
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g = strtoul(endptr + 1, &endptr, 10);
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if (endptr == last || *endptr != ';')
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return (NULL);
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b = strtoul(endptr + 1, &endptr, 10);
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if (endptr != last)
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return (NULL);
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if (type != 1 && type != 2)
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return (NULL);
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if (c + 1 > si->ncolours) {
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si->colours = xrecallocarray(si->colours, si->ncolours, c + 1,
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sizeof *si->colours);
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si->ncolours = c + 1;
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}
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si->colours[c] = (type << 24) | (r << 16) | (g << 8) | b;
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return (last);
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}
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static const char *
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sixel_parse_repeat(struct sixel_image *si, const char *cp, const char *end)
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{
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const char *last;
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char tmp[32], ch;
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u_int n = 0, i;
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const char *errstr = NULL;
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last = cp;
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while (last != end) {
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if (*last < '0' || *last > '9')
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break;
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tmp[n++] = *last++;
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if (n == (sizeof tmp) - 1)
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return (NULL);
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}
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if (n == 0 || last == end)
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return (NULL);
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tmp[n] = '\0';
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n = strtonum(tmp, 1, SIXEL_WIDTH_LIMIT, &errstr);
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if (n == 0 || errstr != NULL)
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return (NULL);
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ch = (*last++) - 0x3f;
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for (i = 0; i < n; i++) {
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if (sixel_parse_write(si, ch) != 0)
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return (NULL);
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si->dx++;
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}
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return (last);
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}
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struct sixel_image *
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sixel_parse(const char *buf, size_t len, u_int xpixel, u_int ypixel)
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{
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struct sixel_image *si;
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const char *cp = buf, *end = buf + len;
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char ch;
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if (len == 0 || len == 1 || *cp++ != 'q')
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return (NULL);
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si = xcalloc (1, sizeof *si);
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si->xpixel = xpixel;
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si->ypixel = ypixel;
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while (cp != end) {
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ch = *cp++;
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switch (ch) {
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case '"':
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cp = sixel_parse_attributes(si, cp, end);
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if (cp == NULL)
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goto bad;
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break;
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case '#':
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cp = sixel_parse_colour(si, cp, end);
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if (cp == NULL)
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goto bad;
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break;
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case '!':
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cp = sixel_parse_repeat(si, cp, end);
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if (cp == NULL)
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goto bad;
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break;
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case '-':
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si->dx = 0;
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si->dy += 6;
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break;
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case '$':
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si->dx = 0;
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break;
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default:
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if (ch < 0x20)
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break;
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if (ch < 0x3f || ch > 0x7e)
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goto bad;
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if (sixel_parse_write(si, ch - 0x3f) != 0)
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goto bad;
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si->dx++;
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break;
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}
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}
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if (si->x == 0 || si->y == 0)
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goto bad;
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return (si);
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bad:
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free(si);
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return (NULL);
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}
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void
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sixel_free(struct sixel_image *si)
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{
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u_int y;
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for (y = 0; y < si->y; y++)
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free(si->lines[y].data);
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free(si->lines);
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free(si->colours);
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free(si);
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}
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void
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sixel_log(struct sixel_image *si)
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{
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struct sixel_line *sl;
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char s[SIXEL_WIDTH_LIMIT + 1];
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u_int i, x, y, cx, cy;
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sixel_size_in_cells(si, &cx, &cy);
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log_debug("%s: image %ux%u (%ux%u)", __func__, si->x, si->y, cx, cy);
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for (i = 0; i < si->ncolours; i++)
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log_debug("%s: colour %u is %07x", __func__, i, si->colours[i]);
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for (y = 0; y < si->y; y++) {
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sl = &si->lines[y];
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for (x = 0; x < si->x; x++) {
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if (x >= sl->x)
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s[x] = '_';
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else if (sl->data[x] != 0)
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s[x] = '0' + (sl->data[x] - 1) % 10;
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else
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s[x] = '.';
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}
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s[x] = '\0';
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log_debug("%s: %4u: %s", __func__, y, s);
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}
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}
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void
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sixel_size_in_cells(struct sixel_image *si, u_int *x, u_int *y)
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{
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if ((si->x % si->xpixel) == 0)
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*x = (si->x / si->xpixel);
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else
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*x = 1 + (si->x / si->xpixel);
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if ((si->y % si->ypixel) == 0)
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*y = (si->y / si->ypixel);
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else
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*y = 1 + (si->y / si->ypixel);
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}
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struct sixel_image *
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sixel_scale(struct sixel_image *si, u_int xpixel, u_int ypixel, u_int ox,
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u_int oy, u_int sx, u_int sy)
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{
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struct sixel_image *new;
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u_int cx, cy, pox, poy, psx, psy, tsx, tsy, px, py;
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u_int x, y;
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/*
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* We want to get the section of the image at ox,oy in image cells and
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* map it onto the same size in terminal cells, remembering that we
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* can only draw vertical sections of six pixels.
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*/
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sixel_size_in_cells(si, &cx, &cy);
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if (ox >= cx)
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return (NULL);
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if (oy >= cy)
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return (NULL);
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if (ox + sx >= cx)
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sx = cx - ox;
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if (oy + sy >= cy)
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sy = cy - oy;
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pox = ox * si->xpixel;
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poy = oy * si->ypixel;
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psx = sx * si->xpixel;
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psy = sy * si->ypixel;
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tsx = sx * xpixel;
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tsy = ((sy * ypixel) / 6) * 6;
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new = xcalloc (1, sizeof *si);
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new->xpixel = xpixel;
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new->ypixel = ypixel;
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for (y = 0; y < tsy; y++) {
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py = poy + ((double)y * psy / tsy);
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for (x = 0; x < tsx; x++) {
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px = pox + ((double)x * psx / tsx);
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sixel_set_pixel(new, x, y, sixel_get_pixel(si, px, py));
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}
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}
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return (new);
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}
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static void
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sixel_print_add(char **buf, size_t *len, size_t *used, const char *s,
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size_t slen)
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{
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if (*used + slen >= *len + 1) {
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(*len) *= 2;
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*buf = xrealloc(*buf, *len);
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}
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memcpy(*buf + *used, s, slen);
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(*used) += slen;
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}
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static void
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sixel_print_repeat(char **buf, size_t *len, size_t *used, u_int count, char ch)
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{
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char tmp[16];
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size_t tmplen;
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if (count == 1)
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sixel_print_add(buf, len, used, &ch, 1);
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else if (count == 2) {
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sixel_print_add(buf, len, used, &ch, 1);
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sixel_print_add(buf, len, used, &ch, 1);
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} else if (count == 3) {
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sixel_print_add(buf, len, used, &ch, 1);
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sixel_print_add(buf, len, used, &ch, 1);
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sixel_print_add(buf, len, used, &ch, 1);
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} else if (count != 0) {
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tmplen = xsnprintf(tmp, sizeof tmp, "!%u%c", count, ch);
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sixel_print_add(buf, len, used, tmp, tmplen);
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}
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}
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char *
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sixel_print(struct sixel_image *si, struct sixel_image *map, size_t *size)
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{
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char *buf, tmp[64], *contains, data, last;
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size_t len, used = 0, tmplen;
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u_int *colours, ncolours, i, c, x, y, count;
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struct sixel_line *sl;
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if (map != NULL) {
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colours = map->colours;
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ncolours = map->ncolours;
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} else {
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colours = si->colours;
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ncolours = si->ncolours;
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}
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contains = xcalloc(1, ncolours);
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len = 8192;
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buf = xmalloc(len);
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sixel_print_add(&buf, &len, &used, "\033Pq", 3);
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tmplen = xsnprintf(tmp, sizeof tmp, "\"1;1;%u;%u", si->x, si->y);
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sixel_print_add(&buf, &len, &used, tmp, tmplen);
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for (i = 0; i < ncolours; i++) {
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c = colours[i];
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tmplen = xsnprintf(tmp, sizeof tmp, "#%u;%u;%u;%u;%u",
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i, c >> 24, (c >> 16) & 0xff, (c >> 8) & 0xff, c & 0xff);
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sixel_print_add(&buf, &len, &used, tmp, tmplen);
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}
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for (y = 0; y < si->y; y += 6) {
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memset(contains, 0, ncolours);
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for (x = 0; x < si->x; x++) {
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for (i = 0; i < 6; i++) {
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if (y + i >= si->y)
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break;
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sl = &si->lines[y + i];
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if (x < sl->x && sl->data[x] != 0)
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contains[sl->data[x] - 1] = 1;
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}
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}
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for (c = 0; c < ncolours; c++) {
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if (!contains[c])
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continue;
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tmplen = xsnprintf(tmp, sizeof tmp, "#%u", c);
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sixel_print_add(&buf, &len, &used, tmp, tmplen);
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count = 0;
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for (x = 0; x < si->x; x++) {
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data = 0;
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for (i = 0; i < 6; i++) {
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if (y + i >= si->y)
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break;
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sl = &si->lines[y + i];
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if (x < sl->x && sl->data[x] == c + 1)
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data |= (1 << i);
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}
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data += 0x3f;
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if (data != last) {
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sixel_print_repeat(&buf, &len, &used,
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count, last);
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last = data;
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count = 1;
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} else
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count++;
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}
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sixel_print_repeat(&buf, &len, &used, count, data);
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sixel_print_add(&buf, &len, &used, "$", 1);
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}
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if (buf[used - 1] == '$')
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used--;
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if (buf[used - 1] != '-')
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sixel_print_add(&buf, &len, &used, "-", 1);
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}
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if (buf[used - 1] == '$' || buf[used - 1] == '-')
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used--;
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sixel_print_add(&buf, &len, &used, "\033\\", 2);
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buf[used] = '\0';
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if (size != NULL)
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*size = used;
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free(contains);
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return (buf);
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}
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struct screen *
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sixel_to_screen(struct sixel_image *si)
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{
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struct screen *s;
|
|
struct screen_write_ctx ctx;
|
|
struct grid_cell gc;
|
|
u_int x, y, sx, sy;
|
|
|
|
sixel_size_in_cells(si, &sx, &sy);
|
|
|
|
s = xmalloc(sizeof *s);
|
|
screen_init(s, sx, sy, 0);
|
|
|
|
memcpy(&gc, &grid_default_cell, sizeof gc);
|
|
gc.attr |= (GRID_ATTR_CHARSET|GRID_ATTR_DIM);
|
|
utf8_set(&gc.data, '~');
|
|
|
|
screen_write_start(&ctx, NULL, s);
|
|
if (sx == 1 || sy == 1) {
|
|
for (y = 0; y < sy; y++) {
|
|
for (x = 0; x < sx; x++)
|
|
grid_view_set_cell(s->grid, x, y, &gc);
|
|
}
|
|
} else {
|
|
screen_write_box(&ctx, sx, sy);
|
|
for (y = 1; y < sy - 1; y++) {
|
|
for (x = 1; x < sx - 1; x++)
|
|
grid_view_set_cell(s->grid, x, y, &gc);
|
|
}
|
|
}
|
|
screen_write_stop(&ctx);
|
|
return (s);
|
|
}
|