]> Pileus Git - aweather/blob - src/plugins/level2.c
Miscellaneous bug fixes
[aweather] / src / plugins / level2.c
1 /*
2  * Copyright (C) 2009-2010 Andy Spencer <andy753421@gmail.com>
3  *
4  * This program is free software: you can redistribute it and/or modify
5  * it under the terms of the GNU General Public License as published by
6  * the Free Software Foundation, either version 3 of the License, or
7  * (at your option) any later version.
8  *
9  * This program is distributed in the hope that it will be useful,
10  * but WITHOUT ANY WARRANTY; without even the implied warranty of
11  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
12  * GNU General Public License for more details.
13  *
14  * You should have received a copy of the GNU General Public License
15  * along with this program.  If not, see <http://www.gnu.org/licenses/>.
16  */
17
18 #include <config.h>
19 #include <math.h>
20 #include <GL/gl.h>
21 #include <glib/gstdio.h>
22 #include <gis.h>
23 #include <rsl.h>
24
25 #include "level2.h"
26
27
28 /**************************
29  * Data loading functions *
30  **************************/
31 /* Convert a sweep to an 2d array of data points */
32 static void _bscan_sweep(Sweep *sweep, AWeatherColormap *colormap,
33                 guint8 **data, int *width, int *height)
34 {
35         g_debug("AWeatherLevel2: _bscan_sweep - %p, %p, %p",
36                         sweep, colormap, data);
37         /* Calculate max number of bins */
38         int max_bins = 0;
39         for (int i = 0; i < sweep->h.nrays; i++)
40                 max_bins = MAX(max_bins, sweep->ray[i]->h.nbins);
41
42         /* Allocate buffer using max number of bins for each ray */
43         guint8 *buf = g_malloc0(sweep->h.nrays * max_bins * 4);
44
45         /* Fill the data */
46         for (int ri = 0; ri < sweep->h.nrays; ri++) {
47                 Ray *ray  = sweep->ray[ri];
48                 for (int bi = 0; bi < ray->h.nbins; bi++) {
49                         /* copy RGBA into buffer */
50                         //guint val   = dz_f(ray->range[bi]);
51                         guint8 val   = (guint8)ray->h.f(ray->range[bi]);
52                         guint  buf_i = (ri*max_bins+bi)*4;
53                         buf[buf_i+0] = colormap->data[val][0];
54                         buf[buf_i+1] = colormap->data[val][1];
55                         buf[buf_i+2] = colormap->data[val][2];
56                         buf[buf_i+3] = colormap->data[val][3]*0.75; // TESTING
57                         if (val == BADVAL     || val == RFVAL      || val == APFLAG ||
58                             val == NOTFOUND_H || val == NOTFOUND_V || val == NOECHO) {
59                                 buf[buf_i+3] = 0x00; // transparent
60                         }
61                 }
62         }
63
64         /* set output */
65         *width  = max_bins;
66         *height = sweep->h.nrays;
67         *data   = buf;
68 }
69
70 /* Load a sweep into an OpenGL texture */
71 static void _load_sweep_gl(Sweep *sweep, AWeatherColormap *colormap, guint *tex)
72 {
73         g_debug("AWeatherLevel2: _load_sweep_gl");
74         int height, width;
75         guint8 *data;
76         _bscan_sweep(sweep, colormap, &data, &width, &height);
77         glBindTexture(GL_TEXTURE_2D, *tex);
78         glPixelStorei(GL_PACK_ALIGNMENT, 1);
79         glPixelStorei(GL_UNPACK_ALIGNMENT, 1);
80         glTexParameterf(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_LINEAR);
81         glTexParameterf(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_NEAREST);
82         glTexImage2D(GL_TEXTURE_2D, 0, GL_RGBA8, width, height, 0,
83                         GL_RGBA, GL_UNSIGNED_BYTE, data);
84         g_free(data);
85 }
86
87 /* Decompress a radar file using wsr88dec */
88 static gboolean _decompress_radar(const gchar *file, const gchar *raw)
89 {
90         g_debug("AWeatherLevel2: _decompress_radar - \n\t%s\n\t%s", file, raw);
91         char *argv[] = {"wsr88ddec", (gchar*)file, (gchar*)raw, NULL};
92         gint status;
93         GError *error = NULL;
94         g_spawn_sync(
95                 NULL,    // const gchar *working_directory
96                 argv,    // gchar **argv
97                 NULL,    // gchar **envp
98                 G_SPAWN_SEARCH_PATH, // GSpawnFlags flags
99                 NULL,    // GSpawnChildSetupFunc child_setup
100                 NULL,    // gpointer user_data
101                 NULL,    // gchar *standard_output
102                 NULL,    // gchar *standard_output
103                 &status, // gint *exit_status
104                 &error); // GError **error
105         if (error) {
106                 g_warning("AWeatherLevel2: _decompress_radar - %s", error->message);
107                 g_error_free(error);
108                 return FALSE;
109         }
110         if (status != 0) {
111                 gchar *msg = g_strdup_printf("wsr88ddec exited with status %d", status);
112                 g_warning("AWeatherLevel2: _decompress_radar - %s", msg);
113                 g_free(msg);
114                 return FALSE;
115         }
116         return TRUE;
117 }
118
119
120 /*********************
121  * Drawing functions *
122  *********************/
123 static void _draw_radar(GisCallback *_self, gpointer _viewer)
124 {
125         AWeatherLevel2 *self = AWEATHER_LEVEL2(_self);
126         if (!self->sweep || !self->sweep_tex)
127                 return;
128
129         /* Draw wsr88d */
130         Sweep *sweep = self->sweep;
131         Radar_header *h = &self->radar->h;
132         gdouble lat  = (double)h->latd + (double)h->latm/60 + (double)h->lats/(60*60);
133         gdouble lon  = (double)h->lond + (double)h->lonm/60 + (double)h->lons/(60*60);
134         gdouble elev = h->height;
135         gis_viewer_center_position(self->viewer, lat, lon, elev);
136
137         glDisable(GL_ALPHA_TEST);
138         glDisable(GL_CULL_FACE);
139         glDisable(GL_LIGHTING);
140         glEnable(GL_TEXTURE_2D);
141         glEnable(GL_POLYGON_OFFSET_FILL);
142         glPolygonOffset(1.0, -2.0);
143         glColor4f(1,1,1,1);
144
145         /* Draw the rays */
146         glBindTexture(GL_TEXTURE_2D, self->sweep_tex);
147         glBegin(GL_TRIANGLE_STRIP);
148         for (int ri = 0; ri <= sweep->h.nrays; ri++) {
149                 Ray  *ray = NULL;
150                 double angle = 0;
151                 if (ri < sweep->h.nrays) {
152                         ray = sweep->ray[ri];
153                         angle = deg2rad(ray->h.azimuth - ((double)ray->h.beam_width/2.));
154                 } else {
155                         /* Do the right side of the last sweep */
156                         ray = sweep->ray[ri-1];
157                         angle = deg2rad(ray->h.azimuth + ((double)ray->h.beam_width/2.));
158                 }
159
160                 double lx = sin(angle);
161                 double ly = cos(angle);
162
163                 double near_dist = ray->h.range_bin1;
164                 double far_dist  = ray->h.nbins*ray->h.gate_size + ray->h.range_bin1;
165
166                 /* (find middle of bin) / scale for opengl */
167                 // near left
168                 glTexCoord2f(0.0, (double)ri/sweep->h.nrays-0.01);
169                 glVertex3f(lx*near_dist, ly*near_dist, 2.0);
170
171                 // far  left
172                 // todo: correct range-height function
173                 double height = sin(deg2rad(ray->h.elev)) * far_dist;
174                 glTexCoord2f(1.0, (double)ri/sweep->h.nrays-0.01);
175                 glVertex3f(lx*far_dist,  ly*far_dist, height);
176         }
177         glEnd();
178         //g_print("ri=%d, nr=%d, bw=%f\n", _ri, sweep->h.nrays, sweep->h.beam_width);
179
180         /* Texture debug */
181         //glBegin(GL_QUADS);
182         //glTexCoord2d( 0.,  0.); glVertex3f(-500.,   0., 0.); // bot left
183         //glTexCoord2d( 0.,  1.); glVertex3f(-500., 500., 0.); // top left
184         //glTexCoord2d( 1.,  1.); glVertex3f( 0.,   500., 3.); // top right
185         //glTexCoord2d( 1.,  0.); glVertex3f( 0.,     0., 3.); // bot right
186         //glEnd();
187 }
188
189
190 /***********
191  * Methods *
192  ***********/
193 static gboolean _set_sweep_cb(gpointer _self)
194 {
195         g_debug("AWeatherLevel2: _set_sweep_cb");
196         AWeatherLevel2 *self = _self;
197         if (!self->sweep_tex)
198                  glGenTextures(1, &self->sweep_tex);
199         _load_sweep_gl(self->sweep, self->sweep_colors, &self->sweep_tex);
200         gtk_widget_queue_draw(GTK_WIDGET(self->viewer));
201         g_object_unref(self);
202         return FALSE;
203 }
204 void aweather_level2_set_sweep(AWeatherLevel2 *self,
205                 int type, float elev)
206 {
207         g_debug("AWeatherLevel2: set_sweep - %d %f", type, elev);
208
209         /* Find sweep */
210         Volume *volume = RSL_get_volume(self->radar, type);
211         if (!volume) return;
212         self->sweep = RSL_get_closest_sweep(volume, elev, 90);
213         if (!self->sweep) return;
214
215         /* Find colormap */
216         self->sweep_colors = NULL;
217         for (int i = 0; self->colormap[i].name; i++)
218                 if (self->colormap[i].type == type)
219                         self->sweep_colors = &self->colormap[i];
220         if (!self->sweep_colors) return;
221
222         /* Load data */
223         g_object_ref(self);
224         g_idle_add(_set_sweep_cb, self);
225 }
226
227 AWeatherLevel2 *aweather_level2_new(GisViewer *viewer,
228                 AWeatherColormap *colormap, Radar *radar)
229 {
230         g_debug("AWeatherLevel2: new - %s", radar->h.radar_name);
231         AWeatherLevel2 *self = g_object_new(AWEATHER_TYPE_LEVEL2, NULL);
232         self->viewer   = viewer;
233         self->radar    = radar;
234         self->colormap = colormap;
235         aweather_level2_set_sweep(self, DZ_INDEX, 0);
236         return self;
237 }
238
239 AWeatherLevel2 *aweather_level2_new_from_file(GisViewer *viewer,
240                 AWeatherColormap *colormap,
241                 const gchar *file, const gchar *site)
242 {
243         g_debug("AWeatherLevel2: new_from_file %s %s", site, file);
244
245         /* Decompress radar */
246         gchar *raw = g_strconcat(file, ".raw", NULL);
247         if (g_file_test(raw, G_FILE_TEST_EXISTS)) {
248                 struct stat files, raws;
249                 g_stat(file, &files);
250                 g_stat(raw,  &raws);
251                 if (files.st_mtime > raws.st_mtime)
252                         if (!_decompress_radar(file, raw))
253                                 return NULL;
254         } else {
255                 if (!_decompress_radar(file, raw))
256                         return NULL;
257         }
258
259         /* Load the radar file */
260         RSL_read_these_sweeps("all", NULL);
261         Radar *radar = RSL_wsr88d_to_radar(raw, (gchar*)site);
262         g_free(raw);
263         if (!radar)
264                 return NULL;
265
266         return aweather_level2_new(viewer, colormaps, radar);
267 }
268
269 static void _on_sweep_clicked(GtkRadioButton *button, gpointer _level2)
270 {
271         AWeatherLevel2 *level2 = _level2;
272         gint type = (gint)g_object_get_data(G_OBJECT(button), "type");
273         gint elev = (gint)g_object_get_data(G_OBJECT(button), "elev");
274         aweather_level2_set_sweep(level2, type, (float)elev/100);
275         //self->colormap = level2->sweep_colors;
276 }
277
278 GtkWidget *aweather_level2_get_config(AWeatherLevel2 *level2)
279 {
280         Radar *radar = level2->radar;
281         g_debug("AWeatherLevel2: get_config - %p, %p", level2, radar);
282         /* Clear existing items */
283         gdouble elev;
284         guint rows = 1, cols = 1, cur_cols;
285         gchar row_label_str[64], col_label_str[64], button_str[64];
286         GtkWidget *row_label, *col_label, *button = NULL, *elev_box = NULL;
287         GtkWidget *table = gtk_table_new(rows, cols, FALSE);
288
289         /* Add date */
290         gchar *date_str = g_strdup_printf("<b><i>%04d-%02d-%02d %02d:%02d</i></b>",
291                         radar->h.year, radar->h.month, radar->h.day,
292                         radar->h.hour, radar->h.minute);
293         GtkWidget *date_label = gtk_label_new(date_str);
294         gtk_label_set_use_markup(GTK_LABEL(date_label), TRUE);
295         gtk_table_attach(GTK_TABLE(table), date_label,
296                         0,1, 0,1, GTK_FILL,GTK_FILL, 5,0);
297         g_free(date_str);
298
299         for (guint vi = 0; vi < radar->h.nvolumes; vi++) {
300                 Volume *vol = radar->v[vi];
301                 if (vol == NULL) continue;
302                 rows++; cols = 1; elev = 0;
303
304                 /* Row label */
305                 g_snprintf(row_label_str, 64, "<b>%s:</b>", vol->h.type_str);
306                 row_label = gtk_label_new(row_label_str);
307                 gtk_label_set_use_markup(GTK_LABEL(row_label), TRUE);
308                 gtk_misc_set_alignment(GTK_MISC(row_label), 1, 0.5);
309                 gtk_table_attach(GTK_TABLE(table), row_label,
310                                 0,1, rows-1,rows, GTK_FILL,GTK_FILL, 5,0);
311
312                 for (guint si = 0; si < vol->h.nsweeps; si++) {
313                         Sweep *sweep = vol->sweep[si];
314                         if (sweep == NULL || sweep->h.elev == 0) continue;
315                         if (sweep->h.elev != elev) {
316                                 cols++;
317                                 elev = sweep->h.elev;
318
319                                 /* Column label */
320                                 g_object_get(table, "n-columns", &cur_cols, NULL);
321                                 if (cols >  cur_cols) {
322                                         g_snprintf(col_label_str, 64, "<b>%.2f°</b>", elev);
323                                         col_label = gtk_label_new(col_label_str);
324                                         gtk_label_set_use_markup(GTK_LABEL(col_label), TRUE);
325                                         gtk_widget_set_size_request(col_label, 50, -1);
326                                         gtk_table_attach(GTK_TABLE(table), col_label,
327                                                         cols-1,cols, 0,1, GTK_FILL,GTK_FILL, 0,0);
328                                 }
329
330                                 elev_box = gtk_hbox_new(TRUE, 0);
331                                 gtk_table_attach(GTK_TABLE(table), elev_box,
332                                                 cols-1,cols, rows-1,rows, GTK_FILL,GTK_FILL, 0,0);
333                         }
334
335
336                         /* Button */
337                         g_snprintf(button_str, 64, "%3.2f", elev);
338                         button = gtk_radio_button_new_with_label_from_widget(
339                                         GTK_RADIO_BUTTON(button), button_str);
340                         gtk_widget_set_size_request(button, -1, 26);
341                         //button = gtk_radio_button_new_from_widget(GTK_RADIO_BUTTON(button));
342                         //gtk_widget_set_size_request(button, -1, 22);
343                         g_object_set(button, "draw-indicator", FALSE, NULL);
344                         gtk_box_pack_end(GTK_BOX(elev_box), button, TRUE, TRUE, 0);
345
346                         g_object_set_data(G_OBJECT(button), "level2", (gpointer)level2);
347                         g_object_set_data(G_OBJECT(button), "type",   (gpointer)vi);
348                         g_object_set_data(G_OBJECT(button), "elev",   (gpointer)(int)(elev*100));
349                         g_signal_connect(button, "clicked", G_CALLBACK(_on_sweep_clicked), level2);
350                 }
351         }
352         return table;
353 }
354
355 /****************
356  * GObject code *
357  ****************/
358 G_DEFINE_TYPE(AWeatherLevel2, aweather_level2, GIS_TYPE_CALLBACK);
359 static void aweather_level2_init(AWeatherLevel2 *self)
360 {
361         GIS_CALLBACK(self)->callback  = _draw_radar;
362         GIS_CALLBACK(self)->user_data = self;
363 }
364 static void aweather_level2_dispose(GObject *_self)
365 {
366         g_debug("AWeatherLevel2: dispose - %p", _self);
367         G_OBJECT_CLASS(aweather_level2_parent_class)->dispose(_self);
368 }
369 static void aweather_level2_finalize(GObject *_self)
370 {
371         AWeatherLevel2 *self = AWEATHER_LEVEL2(_self);
372         g_debug("AWeatherLevel2: finalize - %p", _self);
373         RSL_free_radar(self->radar);
374         if (self->sweep_tex)
375                 glDeleteTextures(1, &self->sweep_tex);
376         G_OBJECT_CLASS(aweather_level2_parent_class)->finalize(_self);
377 }
378 static void aweather_level2_class_init(AWeatherLevel2Class *klass)
379 {
380         G_OBJECT_CLASS(klass)->finalize = aweather_level2_finalize;
381         G_OBJECT_CLASS(klass)->dispose  = aweather_level2_dispose;
382 }