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1 #include <config.h>
2 #include <gtk/gtk.h>
3 #include <GL/gl.h>
4 #include <math.h>
5
6 #include "rsl.h"
7
8 #include "plugin-radar.h"
9
10 GtkWidget *drawing;
11 static Sweep *cur_sweep = NULL;  // make this not global
12 static int nred, ngreen, nblue;
13 static char red[256], green[256], blue[256];
14 static guint sweep_tex = 0;
15
16 static guint8 get_alpha(guint8 db)
17 {
18         if (db == BADVAL) return 0;
19         if (db == RFVAL ) return 0;
20         if (db == APFLAG) return 0;
21         if (db == NOECHO) return 0;
22         if (db == 0     ) return 0;
23         //if      (db > 60) return 0;
24         //else if (db < 10) return 0;
25         //else if (db < 25) return (db-10)*(255.0/15);
26         else              return 255;
27 }
28
29 //#ifdef USE_TWO_BYTE_PRECISION
30 //#define F_FACTOR 100.0
31 //#define F_DR_FACTOR 1000.0
32 //#define F_DZ_RANGE_OFFSET 50
33 //#else
34 //#define F_FACTOR 2.0
35 //#define F_DR_FACTOR 10.0
36 //#define F_DZ_RANGE_OFFSET 32
37 //#endif
38 //#define F_OFFSET 4
39 //static float dz_f(Range x)
40 //{
41 //      if (x >= F_OFFSET)
42 //              return (((float)x-F_OFFSET)/F_FACTOR - F_DZ_RANGE_OFFSET);
43 //      if (x == 0) return BADVAL;
44 //      if (x == 1) return RFVAL;
45 //      if (x == 2) return APFLAG;
46 //      if (x == 3) return NOECHO;
47 //      return BADVAL;
48 //}
49
50 /* Convert a sweep to an 2d array of data points */
51 static void bscan_sweep(Sweep *sweep, guint8 **data, int *width, int *height)
52 {
53         /* Calculate max number of bins */
54         int i, max_bins = 0;
55         for (i = 0; i < sweep->h.nrays; i++)
56                 max_bins = MAX(max_bins, sweep->ray[i]->h.nbins);
57
58         /* Allocate buffer using max number of bins for each ray */
59         guint8 *buf = g_malloc0(sweep->h.nrays * max_bins * 4);
60
61         /* Fill the data */
62         int ri, bi;
63         for (ri = 0; ri < sweep->h.nrays; ri++) {
64                 Ray *ray  = sweep->ray[ri];
65                 for (bi = 0; bi < ray->h.nbins; bi++) {
66                         /* copy RGBA into buffer */
67                         //guint val   = dz_f(ray->range[bi]);
68                         guint val   = ray->h.f(ray->range[bi]);
69                         guint buf_i = (ri*max_bins+bi)*4;
70                         buf[buf_i+0] =   red[val];
71                         buf[buf_i+1] = green[val];
72                         buf[buf_i+2] =  blue[val];
73                         buf[buf_i+3] = get_alpha(val);
74                 }
75         }
76
77         /* set output */
78         *width  = max_bins;
79         *height = sweep->h.nrays;
80         *data   = buf;
81 }
82
83 /* Load a sweep as the active texture */
84 static void load_sweep(Sweep *sweep)
85 {
86         cur_sweep = sweep;
87         int height, width;
88         guint8 *data;
89         bscan_sweep(sweep, &data, &width, &height);
90         glGenTextures(1, &sweep_tex);
91         glBindTexture(GL_TEXTURE_2D, sweep_tex);
92         glPixelStorei(GL_PACK_ALIGNMENT, 1);
93         glPixelStorei(GL_UNPACK_ALIGNMENT, 1);
94         glTexParameterf(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_LINEAR);
95         glTexParameterf(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_LINEAR);
96         glTexImage2D(GL_TEXTURE_2D, 0, GL_RGBA8, width, height, 0, GL_RGBA, GL_UNSIGNED_BYTE, data);
97         g_free(data);
98         gdk_window_invalidate_rect(drawing->window, &drawing->allocation, FALSE);
99         gdk_window_process_updates(drawing->window, FALSE);
100 }
101
102 /* Load the default sweep */
103 static gboolean configure(GtkWidget *da, GdkEventConfigure *event, gpointer user_data)
104 {
105         Sweep *first = (Sweep*)user_data;
106         if (cur_sweep == NULL)
107                 load_sweep(first);
108         return FALSE;
109 }
110
111 static gboolean expose(GtkWidget *da, GdkEventExpose *event, gpointer user_data)
112 {
113         g_message("radar:expose");
114         Sweep *sweep = cur_sweep;
115
116         /* Draw the rays */
117
118         glMatrixMode(GL_MODELVIEW);
119         glPushMatrix();
120         glBindTexture(GL_TEXTURE_2D, sweep_tex);
121         glEnable(GL_TEXTURE_2D);
122         glColor4f(1,1,1,1);
123         glBegin(GL_QUAD_STRIP);
124         for (int ri = 0; ri <= sweep->h.nrays+1; ri++) {
125                 /* Do the first sweep twice to complete the last Quad */
126                 Ray *ray = sweep->ray[ri % sweep->h.nrays];
127
128                 /* right and left looking out from radar */
129                 double left  = ((ray->h.azimuth - ((double)ray->h.beam_width/2.))*M_PI)/180.0; 
130                 //double right = ((ray->h.azimuth + ((double)ray->h.beam_width/2.))*M_PI)/180.0; 
131
132                 double lx = sin(left);
133                 double ly = cos(left);
134
135                 double near_dist = ray->h.range_bin1;
136                 double far_dist  = ray->h.nbins*ray->h.gate_size + ray->h.range_bin1;
137
138                 /* (find middle of bin) / scale for opengl */
139                 // near left
140                 glTexCoord2f(0.0, (double)ri/sweep->h.nrays);
141                 glVertex3f(lx*near_dist, ly*near_dist, 2.0);
142
143                 // far  left
144                 glTexCoord2f(1.0, (double)ri/sweep->h.nrays);
145                 glVertex3f(lx*far_dist,  ly*far_dist,  2.0);
146         }
147         //g_print("ri=%d, nr=%d, bw=%f\n", _ri, sweep->h.nrays, sweep->h.beam_width);
148         glEnd();
149         glPopMatrix();
150
151         /* Texture debug */
152         //glBegin(GL_QUADS);
153         //glTexCoord2d( 0.,  0.); glVertex3f(-1.,  0., 0.); // bot left
154         //glTexCoord2d( 0.,  1.); glVertex3f(-1.,  1., 0.); // top left
155         //glTexCoord2d( 1.,  1.); glVertex3f( 0.,  1., 0.); // top right
156         //glTexCoord2d( 1.,  0.); glVertex3f( 0.,  0., 0.); // bot right
157         //glEnd();
158
159         /* Print the color table */
160         //glDisable(GL_TEXTURE_2D);
161         //glMatrixMode(GL_MODELVIEW ); glPushMatrix(); glLoadIdentity();
162         //glMatrixMode(GL_PROJECTION); glPushMatrix(); glLoadIdentity();
163         //glBegin(GL_QUADS);
164         //int i;
165         //for (i = 0; i < nred; i++) {
166         //      glColor4ub(red[i], green[i], blue[i], get_alpha(i));
167         //      glVertex3f(-1.0, (float)((i  ) - nred/2)/(nred/2), 0.0); // bot left
168         //      glVertex3f(-1.0, (float)((i+1) - nred/2)/(nred/2), 0.0); // top left
169         //      glVertex3f(-0.9, (float)((i+1) - nred/2)/(nred/2), 0.0); // top right
170         //      glVertex3f(-0.9, (float)((i  ) - nred/2)/(nred/2), 0.0); // bot right
171         //}
172         //glEnd();
173         //glMatrixMode(GL_PROJECTION); glPopMatrix(); 
174         //glMatrixMode(GL_MODELVIEW ); glPopMatrix();
175
176         return FALSE;
177 }
178
179 gboolean radar_init(GtkDrawingArea *_drawing, GtkNotebook *config)
180 {
181         drawing = GTK_WIDGET(_drawing);
182
183         /* Parse hard coded file.. */
184         RSL_read_these_sweeps("all", NULL);
185         //RSL_read_these_sweeps("all", NULL);
186         Radar *radar = RSL_wsr88d_to_radar("/scratch/aweather/data/level2/KNQA_20090501_1925.raw", "KNQA");
187         RSL_load_refl_color_table();
188         RSL_get_color_table(RSL_RED_TABLE,   red,   &nred);
189         RSL_get_color_table(RSL_GREEN_TABLE, green, &ngreen);
190         RSL_get_color_table(RSL_BLUE_TABLE,  blue,  &nblue);
191         if (radar->h.nvolumes < 1 || radar->v[0]->h.nsweeps < 1)
192                 g_print("No sweeps found\n");
193
194         /* Add configuration tab */
195         GtkWidget *hbox = gtk_hbox_new(TRUE, 0);
196         GtkWidget *button = NULL;
197         int vi = 0, si = 0;
198         for (vi = 0; vi < radar->h.nvolumes; vi++) {
199                 Volume *vol = radar->v[vi];
200                 if (vol == NULL) continue;
201                 GtkWidget *vbox = gtk_vbox_new(TRUE, 0);
202                 gtk_box_pack_start(GTK_BOX(hbox), vbox, TRUE, TRUE, 0);
203                 for (si = 0; si < vol->h.nsweeps; si++) {
204                         Sweep *sweep = vol->sweep[si];
205                         if (sweep == NULL) continue;
206                         char *label = g_strdup_printf("Tilt: %.2f (%s)", sweep->h.elev, vol->h.type_str);
207                         button = gtk_radio_button_new_with_label_from_widget(GTK_RADIO_BUTTON(button), label);
208                         g_signal_connect_swapped(button, "clicked", G_CALLBACK(load_sweep), sweep);
209                         gtk_box_pack_start(GTK_BOX(vbox), button, TRUE, TRUE, 0);
210                         g_free(label);
211                 }
212         }
213         GtkWidget *label = gtk_label_new("Radar");
214         gtk_notebook_append_page(GTK_NOTEBOOK(config), hbox, label);
215
216         /* Set up OpenGL Stuff */
217         g_signal_connect(drawing, "expose-event",    G_CALLBACK(expose),    NULL);
218         g_signal_connect(drawing, "configure-event", G_CALLBACK(configure), radar->v[0]->sweep[0]);
219
220         return TRUE;
221 }