source: trunk/SRC/ToBeReviewed/TRIANGULATION/drawcoast_c.pro @ 280

Last change on this file since 280 was 232, checked in by pinsard, 17 years ago

improvements/corrections of some *.pro headers

  • Property svn:eol-style set to native
  • Property svn:keywords set to Id
File size: 4.7 KB
RevLine 
[150]1;+
2; @file_comments
3;
4;
5; @categories
6;
7; @param MASK
8;
9; @param XF
10;
11; @param YF
12;
13; @param NX
14;
15; @param NY
16;
[163]17; @keyword COAST_COLOR {default=0}
[150]18; The color of the coastline.
[163]19; Default is black (0).
[150]20;
[163]21; @keyword COAST_THICK {default=1}
[150]22; The thick of the trait to trace continents
23;
[163]24; @keyword XSEUIL {default=5}
[231]25; To eliminate segments of coasts which are to big (which link points which can
26; be close on the sphere but distant on the drawing). We delete all segments
27; whose the size surpass the size of the window following X/XSEUIL.
28; But it can be to big if we do a big zoom or a little one for some
[150]29; projections... We specify it the keyword thanks to this keyword!
30;
31; @keyword YSEUIL
32; See XSEUIL
[231]33;
[150]34; @keyword _EXTRA
[231]35; Used to pass keywords
36;
[150]37; @returns
[231]38;
[150]39; @uses
[231]40;
[150]41; @restrictions
[231]42;
[150]43; @examples
[231]44;
[150]45; @history
[231]46;
47; @version
48;
49; @todo
[150]50; Seb: remplir le header
51;
52;-
[231]53;
[232]54PRO drawcoast_c, mask, xf, yf, nx, ny, COAST_COLOR = coast_color, COAST_THICK = coast_thick, YSEUIL = yseuil, XSEUIL = xseuil, _EXTRA = ex
[114]55;
56  compile_opt idl2, strictarrsubs
57;
[29]58@cm_4mesh
59  IF NOT keyword_set(key_forgetold) THEN BEGIN
60@updatenew
61@updatekwd
62  ENDIF
63;---------------------------------------------------------
[150]64   tempsun = systime(1)         ; For key_performance
[2]65;---------------------------------------------------------
66;
[150]67; We trace vertical segments:
[2]68;
[29]69   if NOT keyword_set(yseuil) then yseuil = 5. < (min([nx, ny])-2)
70   distanceseuil = (!p.position[3]-!p.position[1])/yseuil
[150]71; list: list of points i for which we will trace a segment between the point i,j-1 and i,j
72   tempdeux = systime(1)        ; For key_performance =2
[29]73   liste = where((mask+shift(mask, -1, 0)) EQ 1 $
74                 AND ((xf-shift(xf, 0, 1))^2+(yf-shift(yf, 0, 1))^2) LE distanceseuil^2)
[2]75   IF liste[0] NE -1 THEN BEGIN
[150]76; We recuperate lx an dly which are indexes in a 2d array of points given by list
[2]77      ly = liste/nx & lx = temporary(liste)-nx*ly
[150]78      indice = where(ly NE 0)   ; We do not take points concerning
[2]79      if indice[0] NE -1 then begin
[150]80; the first line because in this case, the point j-1 is undefined.
[2]81         lx = lx[indice] & ly = ly[temporary(indice)]
[150]82; Loop on concerned points and drawing of the segment.
83; Comment: we use plots instead of plot because plots goes faster.
[2]84         IF testvar(var = key_performance) EQ 2 THEN $
85          print, 'temps tracecote: determiner liste des points concernes par un trait vertical', systime(1)-tempdeux
[150]86         tempdeux = systime(1)  ; For key_performance =2
[231]87         for pt = 0L, n_elements(lx)-1 do BEGIN
[2]88            i = lx[pt] & j = ly[pt]
89            plots, [xf[i, j-1], xf[i, j]], [yf[i, j-1], yf[i, j]] $
[29]90              , color = coast_color, thick = coast_thick, /normal, _extra = ex
[2]91         endfor
92         IF testvar(var = key_performance) EQ 2 THEN $
93          print, 'temps tracecote: trace des traits verticaux', systime(1)-tempdeux
94      endif
95   ENDIF
96;
[150]97; For the drawing of horizontal segments , it is the same thing but we have to be careful if it is periodic.
[2]98;
[231]99; If it is periodic, we duplicate the first column and we put it at the end.
[150]100; (This is made not for the shift which is periodic by default but for the plots)
101   tempdeux = systime(1)        ; For key_performance =2
[29]102   if keyword_set(key_periodic) AND nx EQ jpi then begin
[2]103      mask = [mask, mask[0, *]]
104      xf = [xf, xf[0, *]]
105      yf = [yf, yf[0, *]]
106      nx = nx+1
107   ENDIF
[29]108   if NOT keyword_set(xseuil) then xseuil = 5. < (min([nx, ny])-2)
109   distanceseuil = (!p.position[2]-!p.position[0])/xseuil
110   liste = where((mask+shift(mask, 0, -1)) EQ 1 $
111                 AND ((xf-shift(xf, 1, 0))^2+(yf-shift(yf, 1, 0))^2) LE distanceseuil^2)
[2]112   IF liste[0] NE -1 THEN BEGIN
113      ly = liste/nx & lx = temporary(liste)-nx*ly
114      indice = where(ly NE ny-1 AND lx NE 0)
115      if indice[0] NE -1 then begin
[150]116; We do not take points of the first column and of the last line (because we added artificially)
[2]117         lx = lx[indice] & ly = ly[temporary(indice)]
118         IF testvar(var = key_performance) EQ 2 THEN $
119          print, 'temps tracecote: determiner liste des points concernes par un trait horizontal', systime(1)-tempdeux
[150]120         tempdeux = systime(1)  ; For key_performance =2
[231]121         for pt = 0L, n_elements(lx)-1 do BEGIN
[2]122            i = lx[pt] & j = ly[pt]
123            plots, [xf[i-1, j], xf[i, j]], [yf[i-1, j], yf[i, j]] $
[29]124              , color = coast_color, thick = coast_thick, /normal, _extra = ex
[2]125         endfor
126         IF testvar(var = key_performance) EQ 2 THEN $
127          print, 'temps tracecote: trace des traits horizontaux', systime(1)-tempdeux
128      endif
129   endif
130;---------------------------------------------------------
131   if keyword_set(key_performance) THEN print, 'temps drawcoast_c', systime(1)-tempsun
132   return
133end
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