mirror of
https://github.com/jart/cosmopolitan.git
synced 2025-01-31 11:37:35 +00:00
a6baba1b07
The WIN32 CreateProcess() function does not require an .exe or .com suffix in order to spawn an executable. Now that we have Cosmo bash we're no longer so dependent on the cmd.exe prompt.
448 lines
14 KiB
C
448 lines
14 KiB
C
/*-*- mode:c;indent-tabs-mode:nil;c-basic-offset:2;tab-width:8;coding:utf-8 -*-│
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│ vi: set et ft=c ts=2 sts=2 sw=2 fenc=utf-8 :vi │
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╞══════════════════════════════════════════════════════════════════════════════╡
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│ Copyright 2020 Justine Alexandra Roberts Tunney │
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│ │
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│ Permission to use, copy, modify, and/or distribute this software for │
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│ any purpose with or without fee is hereby granted, provided that the │
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│ above 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 │
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│ WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED │
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│ WARRANTIES OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE │
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│ AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL │
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│ DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR │
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│ PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER │
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│ TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR │
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│ PERFORMANCE OF THIS SOFTWARE. │
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╚─────────────────────────────────────────────────────────────────────────────*/
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#include "dsp/core/half.h"
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#include "dsp/core/twixt8.h"
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#include "dsp/scale/scale.h"
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#include "dsp/tty/quant.h"
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#include "dsp/tty/tty.h"
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#include "libc/calls/calls.h"
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#include "libc/calls/struct/stat.h"
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#include "libc/calls/struct/winsize.h"
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#include "libc/calls/termios.h"
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#include "libc/dce.h"
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#include "libc/errno.h"
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#include "libc/fmt/conv.h"
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#include "libc/log/check.h"
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#include "libc/log/log.h"
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#include "libc/mem/gc.h"
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#include "libc/mem/mem.h"
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#include "libc/runtime/runtime.h"
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#include "libc/stdio/stdio.h"
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#include "libc/sysv/consts/ex.h"
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#include "libc/sysv/consts/exit.h"
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#include "libc/sysv/consts/fileno.h"
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#include "libc/sysv/consts/madv.h"
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#include "libc/sysv/consts/map.h"
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#include "libc/sysv/consts/o.h"
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#include "libc/sysv/consts/prot.h"
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#include "libc/sysv/consts/termios.h"
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#include "third_party/getopt/getopt.internal.h"
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#include "third_party/stb/stb_image.h"
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#include "tool/viz/lib/graphic.h"
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__static_yoink("__zipos_get");
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static struct Flags {
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const char *out;
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bool subpixel;
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bool unsharp;
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bool dither;
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bool ruler;
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bool magikarp;
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long half;
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bool full;
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bool ignoreaspect;
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long width;
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long height;
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enum TtyBlocksSelection blocks;
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enum TtyQuantizationAlgorithm quant;
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} g_flags;
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struct winsize g_winsize;
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static wontreturn void PrintUsage(int rc, int fd) {
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tinyprint(fd, "Usage: ", program_invocation_name, "\
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[FLAGS] [PATH]\n\
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\n\
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FLAGS\n\
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\n\
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-o PATH output path\n\
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-w INT manual width\n\
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-h INT manual height\n\
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-f display full size\n\
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-i ignore aspect ratio\n\
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-4 unicode blocks\n\
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-a ansi color mode\n\
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-t true color mode\n\
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-2 use half blocks\n\
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-3 ibm cp437 blocks\n\
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-s unsharp sharpening\n\
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-x xterm256 color mode\n\
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-m use magikarp scaling\n\
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-d hilbert curve dithering\n\
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-r display pixel ruler on sides\n\
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-p convert to subpixel layout\n\
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-v increases verbosity\n\
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-? shows this information\n\
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\n\
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EXAMPLES\n\
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\n\
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printimage -sxd lemurs.jpg # 256-color dither unsharp\n\
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\n",
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NULL);
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exit(rc);
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}
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static int ParseNumberOption(const char *arg) {
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long x;
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x = strtol(arg, NULL, 0);
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if (!(1 <= x && x <= INT_MAX)) {
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fprintf(stderr, "invalid flexidecimal: %s\n\n", arg);
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exit(EXIT_FAILURE);
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}
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return x;
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}
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static void GetOpts(int *argc, char *argv[]) {
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int opt;
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g_flags.quant = kTtyQuantTrue;
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g_flags.blocks = IsWindows() ? kTtyBlocksCp437 : kTtyBlocksUnicode;
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if (*argc == 2 &&
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(strcmp(argv[1], "--help") == 0 || strcmp(argv[1], "-help") == 0)) {
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PrintUsage(EXIT_SUCCESS, STDOUT_FILENO);
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}
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while ((opt = getopt(*argc, argv, "?vpmfirtxads234o:w:h:")) != -1) {
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switch (opt) {
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case 'o':
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g_flags.out = optarg;
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break;
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case 'd':
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g_flags.dither = true;
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break;
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case 's':
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g_flags.unsharp = true;
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break;
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case 'w':
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g_flags.width = ParseNumberOption(optarg);
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break;
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case 'h':
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g_flags.height = ParseNumberOption(optarg);
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break;
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case 'f':
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g_flags.full = true;
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break;
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case 'i':
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g_flags.ignoreaspect = true;
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break;
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case '2':
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g_flags.half = true;
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break;
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case 'r':
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g_flags.ruler = true;
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break;
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case 'm':
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g_flags.magikarp = true;
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break;
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case 'p':
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g_flags.subpixel = true;
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break;
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case 'a':
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g_flags.quant = kTtyQuantAnsi;
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break;
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case 'x':
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g_flags.quant = kTtyQuantXterm256;
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break;
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case 't':
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g_flags.quant = kTtyQuantTrue;
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break;
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case '3':
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g_flags.blocks = kTtyBlocksCp437;
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break;
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case '4':
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g_flags.blocks = kTtyBlocksUnicode;
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break;
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case 'v':
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++__log_level;
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break;
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case '?':
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default:
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if (opt == optopt) {
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PrintUsage(EXIT_SUCCESS, STDOUT_FILENO);
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} else {
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PrintUsage(EX_USAGE, STDERR_FILENO);
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}
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}
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}
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g_winsize.ws_col = 80;
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g_winsize.ws_row = 24;
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if (!g_flags.full && (!g_flags.width || !g_flags.height)) {
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(void)(tcgetwinsize(STDIN_FILENO, &g_winsize) != -1 ||
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tcgetwinsize(STDOUT_FILENO, &g_winsize));
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}
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ttyquantsetup(g_flags.quant, kTtyQuantRgb, g_flags.blocks);
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}
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static unsigned char ChessBoard(unsigned y, unsigned x, unsigned char a,
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unsigned char b) {
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return !((y ^ x) & (1u << 2)) ? a : b;
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}
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static unsigned char AlphaBackground(unsigned y, unsigned x) {
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return ChessBoard(y, x, 255, 200);
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}
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static unsigned char OutOfBoundsBackground(unsigned y, unsigned x) {
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return ChessBoard(y, x, 40, 80);
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}
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static void PrintRulerRight(long yn, long xn, long y, long x,
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bool *inout_didhalfy) {
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if (y == 0) {
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printf("‾0");
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} else if (yn / 2 <= y && y <= yn / 2 + 1 && !*inout_didhalfy) {
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printf("‾%s%s", "yn/2", y % 2 ? "+1" : "");
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*inout_didhalfy = true;
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} else if (y + 1 == yn / 2 && !*inout_didhalfy) {
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printf("⎯yn/2");
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*inout_didhalfy = true;
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} else if (y + 1 == yn) {
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printf("⎯yn");
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} else if (y + 2 == yn) {
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printf("_yn");
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} else if (!(y % 10)) {
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printf("‾%,u", y);
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}
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}
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static void PrintImageImpl(long syn, long sxn, unsigned char RGB[3][syn][sxn],
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long y0, long yn, long x0, long xn, long dy,
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long dx) {
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long y, x;
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bool didhalfy;
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unsigned char a[3], b[3];
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didhalfy = false;
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for (y = y0; y < yn; y += dy) {
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if (y) printf("\e[0m\n");
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for (x = x0; x < xn; x += dx) {
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a[0] = RGB[0][y][x];
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a[1] = RGB[1][y][x];
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a[2] = RGB[2][y][x];
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if (y + dy < yn && x + dx < xn) {
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b[0] = RGB[0][y + dy][x + dx];
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b[1] = RGB[1][y + dy][x + dx];
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b[2] = RGB[2][y + dy][x + dx];
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} else {
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b[2] = b[1] = b[0] = OutOfBoundsBackground(y + dy, x + dx);
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}
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printf("\e[48;2;%d;%d;%d;38;2;%d;%d;%dm%lc", a[0], a[1], a[2], b[0], b[1],
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b[2], dy > 1 ? u'▄' : u'▐');
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}
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printf("\e[0m");
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if (g_flags.ruler) {
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PrintRulerRight(yn, xn, y, x, &didhalfy);
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}
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}
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printf("\n");
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}
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static void PrintImage(long syn, long sxn, unsigned char RGB[3][syn][sxn],
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long y0, long yn, long x0, long xn) {
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PrintImageImpl(syn, sxn, RGB, y0, yn, x0, xn, 2, 1);
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}
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static void PrintImageLR(long syn, long sxn, unsigned char RGB[3][syn][sxn],
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long y0, long yn, long x0, long xn) {
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PrintImageImpl(syn, sxn, RGB, y0, yn, x0, xn, 1, 2);
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}
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static void *Deblinterlace(long dyn, long dxn, unsigned char dst[3][dyn][dxn],
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long syn, long sxn, long scn,
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const unsigned char src[syn][sxn][scn], long y0,
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long yn, long x0, long xn) {
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long y, x;
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unsigned char c;
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for (y = y0; y < yn; ++y) {
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for (x = x0; x < xn; ++x) {
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switch (scn) {
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case 1:
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c = src[y][x][0];
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dst[0][y][x] = c;
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dst[1][y][x] = c;
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dst[2][y][x] = c;
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break;
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case 2:
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c = twixt8(AlphaBackground(y, x), src[y][x][0], src[y][x][1]);
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dst[0][y][x] = c;
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dst[1][y][x] = c;
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dst[2][y][x] = c;
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break;
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case 3:
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dst[0][y][x] = src[y][x][0];
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dst[1][y][x] = src[y][x][1];
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dst[2][y][x] = src[y][x][2];
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break;
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case 4:
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c = AlphaBackground(y, x);
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dst[0][y][x] = twixt8(c, src[y][x][0], src[y][x][3]);
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dst[1][y][x] = twixt8(c, src[y][x][1], src[y][x][3]);
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dst[2][y][x] = twixt8(c, src[y][x][2], src[y][x][3]);
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break;
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}
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}
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}
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return dst;
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}
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static void *DeblinterlaceSubpixelBgr(long dyn, long dxn,
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unsigned char dst[3][dyn][dxn][3],
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long syn, long sxn,
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const unsigned char src[syn][sxn][4],
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long y0, long yn, long x0, long xn) {
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long y, x;
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for (y = y0; y < yn; ++y) {
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for (x = x0; x < xn; ++x) {
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dst[0][y][x][0] = 0;
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dst[1][y][x][0] = 0;
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dst[2][y][x][0] = src[y][x][2];
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dst[0][y][x][1] = 0;
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dst[1][y][x][1] = src[y][x][1];
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dst[2][y][x][1] = 0;
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dst[0][y][x][2] = src[y][x][0];
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dst[1][y][x][2] = 0;
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dst[2][y][x][2] = 0;
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}
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}
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return dst;
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}
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static void PrintImageSerious(long yn, long xn, unsigned char RGB[3][yn][xn],
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long tyn, long txn, struct TtyRgb TTY[tyn][txn],
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char *vt) {
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char *p;
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long y, x;
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struct TtyRgb bg = {0x12, 0x34, 0x56, 0};
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struct TtyRgb fg = {0x12, 0x34, 0x56, 0};
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if (g_flags.unsharp) unsharp(3, yn, xn, RGB, yn, xn);
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if (g_flags.dither) dither(yn, xn, RGB, yn, xn);
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if (yn && xn) {
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for (y = 0; y < tyn; ++y) {
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for (x = 0; x < txn; ++x) {
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TTY[y][x] = rgb2tty(RGB[0][MIN(y, yn - 1)][MIN(x, xn - 1)],
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RGB[1][MIN(y, yn - 1)][MIN(x, xn - 1)],
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RGB[2][MIN(y, yn - 1)][MIN(x, xn - 1)]);
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}
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}
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}
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p = ttyraster(vt, (void *)TTY, tyn, txn, bg, fg);
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p = stpcpy(p, "\e[0m\r\n");
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ttywrite(STDOUT_FILENO, vt, p - vt);
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}
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static void ProcessImage(long yn, long xn, unsigned char RGB[3][yn][xn]) {
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long tyn, txn;
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if (g_flags.half) {
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if (g_flags.subpixel) {
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PrintImageLR(yn, xn * 3, RGB, 0, yn, 0, xn * 3);
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} else {
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PrintImage(yn, xn, RGB, 0, yn, 0, xn);
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}
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} else {
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tyn = ROUNDUP(yn, 2);
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txn = ROUNDUP(xn, 2);
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PrintImageSerious(
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yn, xn, RGB, tyn, txn, gc(calloc(sizeof(struct TtyRgb), tyn * txn)),
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gc(calloc(1, ((yn * xn * strlen("\e[48;2;255;48;2;255m▄")) +
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(yn * strlen("\e[0m\r\n")) + 128))));
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}
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}
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void WithImageFile(const char *path,
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void fn(long yn, long xn, unsigned char RGB[3][yn][xn])) {
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struct stat st;
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void *map, *data;
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int fd, yn, xn, cn, dyn, dxn, syn, sxn, wyn, wxn;
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CHECK_NE(-1, (fd = open(path, O_RDONLY)), "%s", path);
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CHECK_NE(-1, fstat(fd, &st));
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CHECK_GT(st.st_size, 0);
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CHECK_LE(st.st_size, INT_MAX);
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fadvise(fd, 0, st.st_size, MADV_WILLNEED | MADV_SEQUENTIAL);
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CHECK_NE(MAP_FAILED,
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(map = mmap(NULL, st.st_size, PROT_READ, MAP_SHARED, fd, 0)));
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CHECK_NOTNULL(
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(data = gc(stbi_load_from_memory(map, st.st_size, &xn, &yn, &cn, 0))),
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"%s", path);
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CHECK_NE(-1, munmap(map, st.st_size));
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CHECK_NE(-1, close(fd));
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if (g_flags.subpixel) {
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data = DeblinterlaceSubpixelBgr(yn, xn, gc(memalign(32, yn * xn * 4 * 3)),
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yn, xn, data, 0, yn, 0, xn);
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xn *= 3;
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} else {
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data = Deblinterlace(yn, xn, gc(memalign(32, yn * xn * 4)), yn, xn, cn,
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data, 0, yn, 0, xn);
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cn = 3;
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}
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if (!g_flags.full) {
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syn = yn;
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sxn = xn;
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dyn = g_flags.height;
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dxn = g_flags.width;
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wyn = g_winsize.ws_row * 2;
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wxn = g_winsize.ws_col;
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if (g_flags.ignoreaspect) {
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if (!dyn) dyn = wyn;
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if (!dxn) dxn = wxn * (1 + !g_flags.half);
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}
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if (!dyn && !dxn) {
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if (sxn * wyn > syn * wxn) {
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dxn = wxn * (1 + !g_flags.half);
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} else {
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dyn = wyn;
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}
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}
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if (dyn && !dxn) {
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dxn = dyn * sxn * (1 + !g_flags.half) / syn;
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} else if (dxn && !dyn) {
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dyn = dxn * syn / (sxn * (1 + !g_flags.half));
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}
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if (g_flags.magikarp) {
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while (HALF(syn) > dyn || HALF(sxn) > dxn) {
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if (HALF(sxn) > dxn) {
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Magikarp2xX(yn, xn, data, syn, sxn);
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Magikarp2xX(yn, xn, (char *)data + yn * xn, syn, sxn);
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Magikarp2xX(yn, xn, (char *)data + yn * xn * 2, syn, sxn);
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sxn = HALF(sxn);
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}
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if (HALF(syn) > dyn) {
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Magikarp2xY(yn, xn, data, syn, sxn);
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Magikarp2xY(yn, xn, (char *)data + yn * xn, syn, sxn);
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Magikarp2xY(yn, xn, (char *)data + yn * xn * 2, syn, sxn);
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syn = HALF(syn);
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}
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}
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}
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data = EzGyarados(3, dyn, dxn, gc(memalign(32, dyn * dxn * 3)), cn, yn, xn,
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data, 0, cn, dyn, dxn, syn, sxn, 0, 0, 0, 0);
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yn = dyn;
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xn = dxn;
|
|
}
|
|
fn(yn, xn, data);
|
|
}
|
|
|
|
int main(int argc, char *argv[]) {
|
|
int i;
|
|
ShowCrashReports();
|
|
GetOpts(&argc, argv);
|
|
if (optind == argc) PrintUsage(EXIT_SUCCESS, STDOUT_FILENO);
|
|
stbi_set_unpremultiply_on_load(true);
|
|
for (i = optind; i < argc; ++i) {
|
|
WithImageFile(argv[i], ProcessImage);
|
|
}
|
|
return 0;
|
|
}
|