500 lines
16 KiB
C
500 lines
16 KiB
C
#include <Elementary.h>
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#include "config.h"
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// a set of commonly found resolution buckets to try size the image down
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// to to match width OR height so we can avoid decoding a larger image from
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// disk making startup time faster by picking the right res that's encoded
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// already in the file... the more resolutions we encode the bigger
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// the file so it's a tradeoff, thus commenting out a lot of the resolutions
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// because they are so close or can just miildly crop another res...
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// only encode resolutiosn less than the original image a well as throw in
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// the original as the highest res option
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// pick onne of each y resolution and scale accordingly so e.g. Nx480, Nx600,
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// Nx720, Nx788, Nx800, Nx900, ...
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static const int resolutions[] =
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{
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// not bothering below 640x480
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// 640, 480,
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// 800, 480,
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854, 480,
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// 768, 576,
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// 1024, 576,
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// 800, 600,
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1024, 600,
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1280, 720,
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// 1024, 768,
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// 1152, 768
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// 1280, 768
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1366, 768,
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1280, 800,
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// 1280, 854,
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// 1152, 864,
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// 1152, 900,
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// 1440, 900,
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1600, 900,
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// 1280, 960,
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1440, 960,
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// 1280, 1024,
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// 1400, 1050,
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// 1680, 1050,
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// 1440, 1080,
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// 1920, 1080,
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// 2048, 1080,
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// 2880, 1080,
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3840, 1080,
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// 1600, 1200,
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1920, 1200,
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// 1920, 1280,
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2560, 1440,
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// 3840, 1440,
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// 5120, 1440,
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// 2048, 1536,
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2560, 1600,
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// 2880, 1620,
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// 2880, 1800,
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3200, 1800,
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// 2560, 2048,
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// 3840, 2160,
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4096, 2160,
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// 5120, 2160,
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5120, 2880,
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6016, 3384,
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// 7680, 4320,
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8192, 4320,
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// one day... we may have to add more resolutions here. when that day comes...
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// we'll do that. until then... I think 8k is "good enough"
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0, 0 // sentinel
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};
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// when we have more res's above bump this to be that + 1 at a minimum
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#define MAX_RES_NUM 20
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#define ETC1 -1
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#define ETC2 -2
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static Evas_Object *win = NULL, *subwin = NULL, *image = NULL, *rend = NULL;
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typedef struct
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{
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int from_w, from_h, to_w, to_h;
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Eina_Bool last : 1;
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} Mip;
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static Mip *
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_resolutions_calc(int w, int h)
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{
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int i, j = 0;
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int nw, nh, pw = 0, ph = 0;
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Mip *mips = calloc(1, sizeof(Mip) * MAX_RES_NUM);
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if (!mips) return NULL;
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for (i = 0; resolutions[i]; i += 2)
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{
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nh = resolutions[i + 1];
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nw = (w * nh) / h;
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if ((nh >= h) || (nw >= w))
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{
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mips[j].from_w = pw;
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mips[j].from_h = ph;
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mips[j].to_w = 1000000000;
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mips[j].to_h = 1000000000;
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mips[j].last = EINA_TRUE;
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break;
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}
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mips[j].from_w = pw;
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mips[j].from_h = ph;
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mips[j].to_w = nw;
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mips[j].to_h = nh;
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j++;
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pw = nw + 1;
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ph = nh + 1;
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}
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return mips;
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}
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EAPI int
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elm_main(int argc, char **argv)
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{
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const char *edje_cc, *mode, *file, *outfile;
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int bg_r = 64;
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int bg_g = 64;
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int bg_b = 64;
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char dir_buf[128], img_buf[256], edc_buf[256], cmd_buf[1024], qual_buf[64];
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const char *dir, *quality_string = NULL, *img_name = NULL;
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Mip *mips = NULL;
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int i, imw, imh, w, h, quality;
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int ret = 0, mips_num = 0;
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Eina_Bool alpha;
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FILE *f;
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if (argc <= 1)
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{
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printf("USAGE: enlightenment_wallpaper_gen EDJE FILL INPUT OUT QUALITY [R G B]\n"
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"\n"
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" EDJE is edje_cc command to use (full path or in $PATH)\n"
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" FILL is one of:\n"
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" stretch\n"
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" tile\n"
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" center (requires R G B)\n"
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" scale_in (requires R G B)\n"
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" scale_out\n"
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" pan\n"
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" INPUT is some image file to put into the wallpaper edj\n"
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" OUT is the paht/location of the wallpaper edj output\n"
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" QUALITY is:\n"
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" 0-100 (0-99 is lossy, 100 is lossless compression)\n"
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" etc1\n"
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" etc2\n"
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" R, G, B are Red, Green and Blue values 0 to 255\n"
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"\n"
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" e.g.\n"
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" enlightenment_wallpaper_gen edje_cc scale_out cat.jpg wallpaper.edj 80\n"
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" enlightenment_wallpaper_gen edje_cc center mylogo.png wallpaper.edj 100 48 64 64\n"
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" enlightenment_wallpaper_gen /usr/local/bin/edje_cc tile pattern.jpg wallpaper.edj 98\n"
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" enlightenment_wallpaper_gen /opt/e/bin/edje_cc scale_out hugeimg.jpg wallpaper.edj etc1\n"
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);
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return 1;
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}
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elm_config_preferred_engine_set("buffer");
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win = elm_win_add(NULL, "Wallpaper-Gen", ELM_WIN_BASIC);
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elm_win_norender_push(win);
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evas_object_show(win);
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subwin = elm_win_add(win, "inlined", ELM_WIN_INLINED_IMAGE);
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rend = elm_win_inlined_image_object_get(subwin);
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elm_win_norender_push(subwin);
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evas_object_show(subwin);
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if (argc < 6) return 2;
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edje_cc = argv[1];
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mode = argv[2];
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file = argv[3];
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outfile = argv[4];
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if (!strcmp(argv[5], "etc1")) quality = ETC1;
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else if (!strcmp(argv[5], "etc2")) quality = ETC2;
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else
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{
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quality = atoi(argv[5]);
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if (quality < 0) quality = 0;
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else if (quality > 100) quality = 100;
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}
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image = evas_object_image_filled_add(evas_object_evas_get(subwin));
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evas_object_image_file_set(image, file, NULL);
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evas_object_image_size_get(image, &w, &h);
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if ((w <= 0) || (h <= 0)) return 3;
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alpha = evas_object_image_alpha_get(image);
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elm_win_alpha_set(subwin, alpha);
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evas_object_show(image);
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snprintf(dir_buf, sizeof(dir_buf), "/tmp/e_bg-XXXXXX");
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dir = mkdtemp(dir_buf);
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if (!dir) return 4;
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if ((!strcmp(mode, "center")) ||
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(!strcmp(mode, "scale_in")))
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{ // need backing rgb color here
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if (argc < 9) return 5;
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bg_r = atoi(argv[6]);
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bg_g = atoi(argv[7]);
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bg_b = atoi(argv[8]);
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}
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if ((!strcmp(mode, "stretch")) ||
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(!strcmp(mode, "scale_in")) ||
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(!strcmp(mode, "scale_out")) ||
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(!strcmp(mode, "pan")))
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{ // need to produce multiple scaled versions
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mips = _resolutions_calc(w, h);
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if (!mips) return 6;
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for (i = 0; mips[i].to_w; i++)
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{
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mips_num++;
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if (mips[i].last)
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{
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imw = w;
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imh = h;
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}
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else
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{
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imw = mips[i].to_w;
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imh = mips[i].to_h;
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}
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evas_object_resize(subwin, imw, imh);
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evas_object_resize(image, imw, imh);
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elm_win_render(subwin);
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if (mips[i].last)
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snprintf(img_buf, sizeof(img_buf), "%s/img.png",
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dir);
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else
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snprintf(img_buf, sizeof(img_buf), "%s/img-%ix%i.png",
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dir, imw, imh);
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if (!evas_object_image_save(rend, img_buf, NULL, "compress=0"))
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{
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ret = 7;
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goto cleanup;
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}
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}
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}
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// no multiple resolutions -0 save out original
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if (!mips)
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{
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evas_object_resize(subwin, w, h);
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evas_object_resize(image, w, h);
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elm_win_render(subwin);
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snprintf(img_buf, sizeof(img_buf), "%s/img.png", dir);
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if (!evas_object_image_save(rend, img_buf, NULL, "compress=0"))
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{
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ret = 8;
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goto cleanup;
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}
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}
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if ((quality == ETC1) && (alpha)) quality = ETC2; // etc1 -> etc2 if alpha
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if (quality == 100) quality_string = "COMP";
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else
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{
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if (quality == ETC1) quality_string = "LOSSY_ETC1";
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else if (quality == ETC2) quality_string = "LOSSY_ETC2";
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else
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{
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snprintf(qual_buf, sizeof(qual_buf), "LOSSY %i", quality);
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quality_string = qual_buf;
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}
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}
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// generate edc
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snprintf(edc_buf, sizeof(edc_buf), "%s/bg.edc", dir);
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f = fopen(edc_buf, "w");
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if (!f) goto cleanup;
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if ((mips) && (mips_num > 1))
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{
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fprintf(f,
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"images {\n"
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" set { name: \"img\";\n");
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for (i = mips_num - 1; i >= 0; i--)
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{
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fprintf(f,
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" image {\n");
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if (mips[i].last)
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{
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imw = w;
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imh = h;
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fprintf(f,
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" image: \"img.png\" %s;\n",
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quality_string);
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}
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else
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{
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imw = mips[i].to_w;
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imh = mips[i].to_h;
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fprintf(f,
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" image: \"img-%ix%i.png\" %s;\n",
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imw, imh, quality_string);
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}
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fprintf(f,
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" size: %i %i %i %i;\n"
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" }\n",
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mips[i].from_w, mips[i].from_h,
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mips[i].to_w, mips[i].to_h);
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}
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fprintf(f,
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" }\n"
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"}\n");
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img_name = "img";
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}
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else
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{
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fprintf(f, "images.image: \"img.png\" %s;\n", quality_string);
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img_name = "img.png";
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}
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fprintf(f,
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"collections {\n"
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" group { name: \"e/desktop/background\";\n"
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" data.item: \"noanimation\" \"1\";\n");
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if (!strcmp(mode, "stretch"))
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{
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fprintf(f, " data { item: \"style\" \"0\"; }\n");
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fprintf(f,
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" parts {\n"
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" part { name: \"bg\"; mouse_events: 0;\n"
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" description { state: \"default\" 0;\n"
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" image {\n"
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" normal: \"%s\";\n"
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" scale_hint: STATIC;\n"
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" }\n"
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" }\n"
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" }\n"
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" }\n"
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, img_name);
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}
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else if (!strcmp(mode, "tile"))
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{
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fprintf(f, " data { item: \"style\" \"1\"; }\n");
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fprintf(f,
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" parts {\n"
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" part { name: \"bg\"; mouse_events: 0;\n"
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" description { state: \"default\" 0;\n"
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" image {\n"
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" normal: \"%s\";\n"
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" }\n"
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" fill.size.relative: 0 0;\n"
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" fill.size.offset: %i %i;\n"
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" }\n"
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" }\n"
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" }\n"
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, img_name, w, h);
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}
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else if (!strcmp(mode, "center"))
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{
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fprintf(f, " data { item: \"style\" \"2\"; }\n");
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fprintf(f,
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" parts {\n"
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" part { name: \"col\"; type: RECT; mouse_events: 0;\n"
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" description { state: \"default\" 0;\n"
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" color: %i %i %i 255;\n"
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" }\n"
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" }\n"
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" part { name: \"bg\"; mouse_events: 0;\n"
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" description { state: \"default\" 0;\n"
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" image {\n"
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" normal: \"%s\";\n"
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" }\n"
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" min: %i %i; max: %i %i;\n"
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" }\n"
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" }\n"
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" }\n"
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, bg_r, bg_g, bg_b, img_name, w, h, w, h);
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}
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else if (!strcmp(mode, "scale_in"))
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{
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fprintf(f, " data { item: \"style\" \"3\"; }\n");
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fprintf(f,
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" parts {\n"
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" part { name: \"col\"; type: RECT; mouse_events: 0;\n"
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" description { state: \"default\" 0;\n"
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" color: %i %i %i 255;\n"
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" }\n"
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" }\n"
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" part { name: \"bg\"; mouse_events: 0;\n"
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" description { state: \"default\" 0;\n"
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" image {\n"
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" normal: \"%s\";\n"
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" scale_hint: STATIC;\n"
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" }\n"
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" aspect: (%i/%i) (%i/%i); aspect_preference: BOTH;\n"
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" }\n"
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" }\n"
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" }\n"
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, bg_r, bg_g, bg_b, img_name, w, h, w, h);
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}
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else if (!strcmp(mode, "scale_out"))
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{
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fprintf(f, " data { item: \"style\" \"4\"; }\n");
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fprintf(f,
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" parts {\n"
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" part { name: \"bg\"; mouse_events: 0;\n"
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" description { state: \"default\" 0;\n"
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" image {\n"
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" normal: \"%s\";\n"
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" scale_hint: STATIC;\n"
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" }\n"
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" aspect: (%i/%i) (%i/%i); aspect_preference: NONE;\n"
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" }\n"
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" }\n"
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" }\n"
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, img_name, w, h, w, h);
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}
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else if (!strcmp(mode, "pan"))
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{
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fprintf(f, " data { item: \"style\" \"5\"; }\n");
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fprintf(f,
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" script {\n"
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" public cur_anim; public cur_x; public cur_y;\n"
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" public prev_x; public prev_y;\n"
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" public total_x; public total_y;\n"
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" public pan_bg(val, Float:v) {\n"
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" new Float:x, Float:y, Float:px, Float: py;\n"
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" px = get_float(prev_x);\n"
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" py = get_float(prev_y);\n"
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" if (get_int(total_x) > 1) {\n"
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" x = float(get_int(cur_x)) / (get_int(total_x) - 1);\n"
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" x = px - (px - x) * v;\n"
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" } else {\n"
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" x = 0.0;\n"
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" v = 1.0;\n"
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" }\n"
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" if (get_int(total_y) > 1) {\n"
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" y = float(get_int(cur_y)) / (get_int(total_y) - 1);\n"
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" y = py - (py - y) * v;\n"
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" } else {\n"
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" y = 0.0;\n"
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" v = 1.0; }\n"
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" set_state_val(PART:\"bg\", STATE_ALIGNMENT, x, y);\n"
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" if (v >= 1.0) {\n"
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" set_int(cur_anim, 0);\n"
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" set_float(prev_x, x);\n"
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" set_float(prev_y, y);\n"
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" return 0;\n"
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" }\n"
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" return 1;\n"
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" }\n"
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" public message(Msg_Type:type, id, ...) {\n"
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" if ((type == MSG_FLOAT_SET) && (id == 0)) {\n"
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" new ani;\n"
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" get_state_val(PART:\"bg\", STATE_ALIGNMENT, prev_x, prev_y);\n"
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" set_int(cur_x, round(getfarg(3)));\n"
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" set_int(total_x, round(getfarg(4)));\n"
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" set_int(cur_y, round(getfarg(5)));\n"
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" set_int(total_y, round(getfarg(6)));\n"
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" ani = get_int(cur_anim);\n"
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" if (ani > 0) cancel_anim(ani);\n"
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" ani = anim(getfarg(2), \"pan_bg\", 0);\n"
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" set_int(cur_anim, ani);\n"
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" }\n"
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" }\n"
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" }\n"
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" parts {\n"
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" part { name: \"bg\"; mouse_events: 0;\n"
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" description { state: \"default\" 0.0;\n"
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" image {\n"
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" normal: \"%s\";\n"
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" scale_hint: STATIC;\n"
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" }\n"
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" aspect: (%i/%i) (%i/%i); aspect_preference: NONE;\n"
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" }\n"
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" }\n"
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" program {\n"
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" signal: \"load\"; source: \"\";\n"
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" script {\n"
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" custom_state(PART:\"bg\", \"default\", 0.0);\n"
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" set_state(PART:\"bg\", \"custom\", 0.0);\n"
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" set_float(prev_x, 0.0);\n"
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" set_float(prev_y, 0.0);\n"
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" }\n"
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" }\n"
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" }\n"
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, img_name, w, h, w, h);
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}
|
|
fprintf(f,
|
|
" }\n"
|
|
"}\n");
|
|
fclose(f);
|
|
free(mips);
|
|
if (snprintf(cmd_buf, sizeof(cmd_buf),
|
|
"%s -fastdecomp -id %s -fd %s -sd %s -vd %s -dd %s -md %s "
|
|
"%s/bg.edc %s",
|
|
edje_cc, dir, dir, dir, dir, dir, dir,
|
|
dir, outfile) >= (int)sizeof(cmd_buf))
|
|
{
|
|
ret = 9;
|
|
goto cleanup;
|
|
}
|
|
ret = system(cmd_buf);
|
|
cleanup:
|
|
ecore_file_recursive_rm(dir);
|
|
evas_object_del(win);
|
|
return ret;
|
|
}
|
|
ELM_MAIN()
|