Help generation: improve images management (use md5 rather than timestamp) 89/10789/2
Calixte DENIZET [Tue, 12 Mar 2013 13:47:27 +0000 (14:47 +0100)]
Change-Id: Ia804eaa71ea88dd8af6bb7f0fa86e8ef9a8107c8

933 files changed:
scilab/modules/cacsd/help/en_US/damp.xml
scilab/modules/cacsd/help/en_US/plot_display/black.xml
scilab/modules/cacsd/help/en_US/plot_display/bode.xml
scilab/modules/cacsd/help/en_US/plot_display/evans.xml
scilab/modules/cacsd/help/en_US/plot_display/gainplot.xml
scilab/modules/cacsd/help/en_US/plot_display/hallchart.xml
scilab/modules/cacsd/help/en_US/plot_display/m_circle.xml
scilab/modules/cacsd/help/en_US/plot_display/nicholschart.xml
scilab/modules/cacsd/help/en_US/plot_display/nyquist.xml
scilab/modules/cacsd/help/en_US/plot_display/phaseplot.xml
scilab/modules/cacsd/help/en_US/plot_display/sgrid.xml
scilab/modules/cacsd/help/en_US/plot_display/show_margins.xml
scilab/modules/cacsd/help/en_US/plot_display/zgrid.xml
scilab/modules/cacsd/help/ja_JP/damp.xml
scilab/modules/cacsd/help/ja_JP/plot_display/black.xml
scilab/modules/cacsd/help/ja_JP/plot_display/bode.xml
scilab/modules/cacsd/help/ja_JP/plot_display/evans.xml
scilab/modules/cacsd/help/ja_JP/plot_display/gainplot.xml
scilab/modules/cacsd/help/ja_JP/plot_display/hallchart.xml
scilab/modules/cacsd/help/ja_JP/plot_display/nicholschart.xml
scilab/modules/cacsd/help/ja_JP/plot_display/nyquist.xml
scilab/modules/cacsd/help/ja_JP/plot_display/phaseplot.xml
scilab/modules/cacsd/help/ja_JP/plot_display/sgrid.xml
scilab/modules/cacsd/help/ja_JP/plot_display/show_margins.xml
scilab/modules/cacsd/help/ja_JP/plot_display/zgrid.xml
scilab/modules/cacsd/help/pt_BR/plot_display/black.xml
scilab/modules/cacsd/help/pt_BR/plot_display/bode.xml
scilab/modules/cacsd/help/pt_BR/plot_display/evans.xml
scilab/modules/cacsd/help/pt_BR/plot_display/m_circle.xml
scilab/modules/cacsd/help/pt_BR/plot_display/zgrid.xml
scilab/modules/commons/src/java/org/scilab/modules/commons/ScilabCommonsUtils.java
scilab/modules/differential_equations/help/fr_FR/integrate.xml
scilab/modules/differential_equations/help/pt_BR/integrate.xml
scilab/modules/differential_equations/help/ru_RU/bvode.xml
scilab/modules/differential_equations/help/ru_RU/integrate.xml
scilab/modules/elementary_functions/help/en_US/elementarymatrices/ndgrid.xml
scilab/modules/elementary_functions/help/en_US/matrixoperations/prod.xml
scilab/modules/elementary_functions/help/en_US/matrixoperations/sum.xml
scilab/modules/elementary_functions/help/en_US/trigonometry/atan.xml
scilab/modules/elementary_functions/help/ja_JP/trigonometry/atan.xml
scilab/modules/elementary_functions/help/pt_BR/elementarymatrices/ndgrid.xml
scilab/modules/elementary_functions/help/pt_BR/trigonometry/atan.xml
scilab/modules/elementary_functions/help/ru_RU/matrixoperations/cumprod.xml
scilab/modules/elementary_functions/help/ru_RU/matrixoperations/cumsum.xml
scilab/modules/elementary_functions/help/ru_RU/matrixoperations/prod.xml
scilab/modules/elementary_functions/help/ru_RU/matrixoperations/sum.xml
scilab/modules/graphics/help/en_US/2d_plot/Sfgrayplot.xml
scilab/modules/graphics/help/en_US/2d_plot/contourf.xml
scilab/modules/graphics/help/en_US/annotation/legends.xml
scilab/modules/graphics/help/en_US/axes_operations/subplot.xml
scilab/modules/graphics/help/en_US/axis/drawaxis.xml
scilab/modules/graphics/help/fr_FR/2d_plot/contourf.xml
scilab/modules/graphics/help/fr_FR/3d_plot/genfac3d.xml
scilab/modules/graphics/help/fr_FR/Graphics.xml
scilab/modules/graphics/help/fr_FR/annotation/legends.xml
scilab/modules/graphics/help/fr_FR/axis/drawaxis.xml
scilab/modules/graphics/help/fr_FR/bar_histogram/barhomogenize.xml
scilab/modules/graphics/help/fr_FR/text/titlepage.xml
scilab/modules/graphics/help/fr_FR/xgrid.xml
scilab/modules/graphics/help/fr_FR/xsegs.xml
scilab/modules/graphics/help/fr_FR/xsetech.xml
scilab/modules/graphics/help/pt_BR/2d_plot/Sfgrayplot.xml
scilab/modules/helptools/images/0-LSodar_1.png
scilab/modules/helptools/images/1-CVode_1.png
scilab/modules/helptools/images/2-Runge-Kutta_1.png
scilab/modules/helptools/images/3-Dormand-Prince_1.png
scilab/modules/helptools/images/4-ImplicitRK_1.png
scilab/modules/helptools/images/8-Rootfinding_1.png
scilab/modules/helptools/images/9-Comparisons_1.png
scilab/modules/helptools/images/9-Comparisons_2.png
scilab/modules/helptools/images/9-Comparisons_3.png
scilab/modules/helptools/images/ABS_VALUE_1.png
scilab/modules/helptools/images/BITCLEAR_fr_FR_1.png [new file with mode: 0644]
scilab/modules/helptools/images/BITSET_fr_FR_1.png [new file with mode: 0644]
scilab/modules/helptools/images/CLKINV_f_fr_FR_1.png [new file with mode: 0644]
scilab/modules/helptools/images/CLKOUTV_f_1.png
scilab/modules/helptools/images/CLOCK_c_1.png
scilab/modules/helptools/images/CLSS_1.png
scilab/modules/helptools/images/CONVERT_fr_FR_1.png [new file with mode: 0644]
scilab/modules/helptools/images/Command.xcos.png
scilab/modules/helptools/images/Command_bode.xcos.png
scilab/modules/helptools/images/Counter_1.png
scilab/modules/helptools/images/DEADBAND_1.png
scilab/modules/helptools/images/DEADBAND_fr_FR_1.png [new file with mode: 0644]
scilab/modules/helptools/images/DELAY_f_2.png
scilab/modules/helptools/images/DELAY_f_fr_FR_1.png [new file with mode: 0644]
scilab/modules/helptools/images/DERIV_1.png
scilab/modules/helptools/images/DLATCH_1.png
scilab/modules/helptools/images/DLATCH_fr_FR_1.png [new file with mode: 0644]
scilab/modules/helptools/images/DOLLAR_f_1.png
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scilab/modules/helptools/images/show_margins_ru_RU_1.png [new file with mode: 0644]
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scilab/modules/helptools/images/text_f_fr_FR.xcos.png
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scilab/modules/helptools/images/titlepage_fr_FR_1.png [new file with mode: 0644]
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scilab/modules/helptools/src/java/org/scilab/modules/helptools/DocbookTagConverter.java
scilab/modules/helptools/src/java/org/scilab/modules/helptools/HTMLDocbookTagConverter.java
scilab/modules/helptools/src/java/org/scilab/modules/helptools/JavaHelpDocbookTagConverter.java
scilab/modules/helptools/src/java/org/scilab/modules/helptools/external/HTMLMathMLHandler.java
scilab/modules/helptools/src/java/org/scilab/modules/helptools/external/HTMLSVGHandler.java
scilab/modules/helptools/src/java/org/scilab/modules/helptools/image/ImageConverter.java
scilab/modules/helptools/src/java/org/scilab/modules/helptools/image/ScilabImageConverter.java
scilab/modules/randlib/help/en_US/grand.xml
scilab/modules/randlib/help/fr_FR/grand.xml
scilab/modules/randlib/help/ja_JP/grand.xml
scilab/modules/randlib/help/ru_RU/grand.xml
scilab/modules/signal_processing/help/en_US/transforms/dct.xml
scilab/modules/signal_processing/help/en_US/transforms/fft.xml
scilab/modules/signal_processing/help/fr_FR/transforms/fft.xml
scilab/modules/signal_processing/help/ja_JP/filters/wiener.xml
scilab/modules/signal_processing/help/ja_JP/transforms/dct.xml
scilab/modules/xcos/help/fr_FR/palettes/Continuous_pal/VARIABLE_DELAY.xml
scilab/modules/xcos/help/fr_FR/palettes/Discontinuities_pal/DEADBAND.xml
scilab/modules/xcos/help/fr_FR/palettes/Discrete_pal/DELAY_f.xml
scilab/modules/xcos/help/fr_FR/palettes/Integer_pal/BITCLEAR.xml
scilab/modules/xcos/help/fr_FR/palettes/Integer_pal/BITSET.xml
scilab/modules/xcos/help/fr_FR/palettes/Integer_pal/CONVERT.xml
scilab/modules/xcos/help/fr_FR/palettes/Integer_pal/DLATCH.xml
scilab/modules/xcos/help/fr_FR/palettes/Integer_pal/EXTRACTBITS.xml
scilab/modules/xcos/help/fr_FR/palettes/Integer_pal/LOGIC.xml
scilab/modules/xcos/help/fr_FR/palettes/Integer_pal/SHIFT.xml
scilab/modules/xcos/help/fr_FR/palettes/Integer_pal/SRFLIPFLOP.xml
scilab/modules/xcos/help/fr_FR/palettes/Portaction_pal/CLKINV_f.xml

index 4d339e6..ac3a38d 100644 (file)
    plot(wn/(2*%pi)*[1 1],[0 70],'r') //natural pulsation
    ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=%s;
                 wn=1;
                 clf();
                 end
                 title("$\frac{1+5 s+10 s^2}{\omega_n^2+2\omega_n\xi s+s^2}, \quad \omega_n=1$")
                 legend('$\xi='+string(Z)+'$')
-                plot(wn/(2*%pi)*[1 1],[0 70],'r') //natural pulsation
+                plot(wn/(2*%pi)*[1 1],[0 70],'r')
             </scilab:image>
         </para>
         <para>
index b7877d8..79dc18a 100644 (file)
     clf();black(sl,0.01,10);
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s');
                 sl=syslin('c',5*(1+s)/(.1*s.^4+s.^3+15*s.^2+3*s+1))
                 black(sl,0.01,10);
 
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s');
                 Plant=syslin('c',16000/((s+1)*(s+10)*(s+100)));
                 tau=0.2;xsi=1.2;
index a51f1f1..13797bc 100644 (file)
@@ -143,7 +143,7 @@ h=syslin('c',(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01))
 clf();bode(h,0.01,100);
  ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s')
                 h=syslin('c',(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01))
                 clf();bode(h,0.01,100);
@@ -159,7 +159,7 @@ h2=syslin('c',num/den);
 clf();bode([h1;h2],0.01,100,['h1';'h2'])
  ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s')
                 h1=syslin('c',(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01))
                 num=22801+4406.18*s+382.37*s^2+21.02*s^3+s^4;
index 2b6d05d..b4d53a2 100644 (file)
@@ -67,7 +67,7 @@
     [Kr,s]=krac2(H)
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 H=syslin('c',352*poly(-5,'s')/poly([0,0,2000,200,25,1],'s','c'));
                 clf();evans(H,100);sgrid()
                 [Ki,s]=kpure(H)
index a6c158f..4fd284d 100644 (file)
@@ -92,7 +92,7 @@
 
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s')
                 h1=syslin('c',(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01))
                 h2=syslin('c',(s^2+2*0.1*15.1*s+228.01)/(s^2+2*0.9*15*s+225))
index 7b8de24..3935ebe 100644 (file)
@@ -89,7 +89,7 @@
     cj=c(10+j); //the handle on the -45° curve
     cj.children(1).thickness=3;//draw it thicker
      ]]></programlisting>
-        <scilab:image>
+        <scilab:image localized="true">
             clf();hallchart()
             ax=gca();
             c=ax.children($).children;
     clf();hallchart()
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 hallchart()
             </scilab:image>
         </para>
     Leg.legend_location="in_lower_right";
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s');
                 Plant=syslin('c',16000/((s+1)*(s+10)*(s+100)));
                 tau=0.2;xsi=1.2;
index f341476..1922114 100644 (file)
@@ -69,7 +69,7 @@ h=syslin('c',(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01))
 nyquist(h,0.01,100,'(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01)')
 m_circle();
 ]]></programlisting>
-        <scilab:image>
+        <scilab:image localized="true">
             s=poly(0,'s')
             h=syslin('c',(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01))
             nyquist(h,0.01,100,'(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01)')
@@ -84,7 +84,7 @@ h1=h*syslin('c',(s^2+2*0.1*15.1*s+228.01)/(s^2+2*0.9*15*s+225))
 nyquist([h1;h],0.01,100,['h1';'h'])
 m_circle([-8 -6 -4]);
 ]]></programlisting>
-        <scilab:image>
+        <scilab:image localized="true">
             clf();
             s=poly(0,'s')
             h=syslin('c',(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01))
index 869da75..2a7df97 100644 (file)
@@ -71,7 +71,7 @@
     nicholschart(modules=[-6 -3 -1 1 3 6], args=[-1 -20 20 40 80 160 180]);
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 nicholschart(modules=[-6 -3 -1 1 3 6], args=[-1 -20 20 40 80 160 180]);
             </scilab:image>
         </para>
@@ -90,7 +90,7 @@
     nicholschart(colors=color('light gray')*[1 1])
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s');
                 Plant=syslin('c',16000/((s+1)*(s+10)*(s+100)));
                 //two degree of freedom PID
index fab05da..5e71585 100644 (file)
     datatipSetOrientation(tip,"upper left");
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s')
                 h=syslin('c',(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01));
                 h1=h*syslin('c',(s^2+2*0.1*15.1*s+228.01)/(s^2+2*0.9*15*s+225))
     Leg.legend_location="in_upper_left";
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s');
                 Plant=syslin('c',16000/((s+1)*(s+10)*(s+100)));
                 tau=0.2;xsi=1.2;
index 5df41e2..967df81 100644 (file)
 
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s')
                 h1=syslin('c',(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01))
                 h2=syslin('c',(s^2+2*0.1*15.1*s+228.01)/(s^2+2*0.9*15*s+225))
index 1f9c0be..ea38c3f 100644 (file)
         clf();evans(H,100);sgrid()
         ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 H=syslin('c',352*poly(-5,'s')/poly([0,0,2000,200,25,1],'s','c'));
                 clf();evans(H,100);sgrid()
             </scilab:image>
index 824dd95..b6b1836 100644 (file)
@@ -53,7 +53,7 @@ h=syslin('c',0.02909+0.11827*%s+0.12823*%s^2+0.35659*%s^3+0.256*%s^4+0.1*%s^5,..
 show_margins(h)
 show_margins(h,'nyquist')
  ]]></programlisting>
-        <scilab:image>
+        <scilab:image localized="true">
             h=syslin('c',0.02909+0.11827*%s+0.12823*%s^2+0.35659*%s^3+0.256*%s^4+0.1*%s^5,..
             0.0409+0.1827*%s+1.28225*%s^2+3.1909*%s^3+2.56*%s^4+%s^5);
             show_margins(h)
@@ -65,7 +65,7 @@ h = syslin(0.1,0.01547+0.01599*%z ,%z^2-1.81*%z+0.9048)
 show_margins(h)
 show_margins(h,'nyquist')
  ]]></programlisting>
-        <scilab:image>
+        <scilab:image localized="true">
             h = syslin(0.1,0.01547+0.01599*%z ,%z^2-1.81*%z+0.9048)
             show_margins(h)
             show_margins(h,'nyquist')
index 249fbb3..c019938 100644 (file)
 
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 z=poly(0,'z')
                 H=syslin(0.01,(0.54-1.8*z+2.9*z^2-2.6*z^3+z^4)/(0.8+0.78*z-0.1*z^2+0.9*z^3+z^4))
                 clf();evans(H,1000);zgrid(0:0.1:0.5)
index 49b3d7c..719d46a 100644 (file)
    plot(wn/(2*%pi)*[1 1],[0 70],'r') // 固有周波数
    ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=%s;
                 wn=1;
                 clf();
index e71daea..d8c0d03 100644 (file)
     clf();black(sl,0.01,10);
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s');
                 sl=syslin('c',5*(1+s)/(.1*s^4+s^3+15*s^2+3*s+1))
                 clf();black(sl,0.01,10);
 
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s');
                 Plant=syslin('c',16000/((s+1)*(s+10)*(s+100)));
                 tau=0.2;xsi=1.2;
index dcf357f..d01786b 100644 (file)
@@ -143,7 +143,7 @@ h=syslin('c',(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01))
 clf();bode(h,0.01,100);
  ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s')
                 h=syslin('c',(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01))
                 clf();bode(h,0.01,100);
@@ -159,7 +159,7 @@ h2=syslin('c',num/den);
 clf();bode([h1;h2],0.01,100,['h1';'h2'])
  ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s')
                 h1=syslin('c',(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01))
                 num=22801+4406.18*s+382.37*s^2+21.02*s^3+s^4;
index 049eb19..03759ce 100644 (file)
@@ -66,7 +66,7 @@
     [Kr,s]=krac2(H)
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 H=syslin('c',352*poly(-5,'s')/poly([0,0,2000,200,25,1],'s','c'));
                 clf();evans(H,100);sgrid()
                 [Ki,s]=kpure(H)
index b2ff113..c0cac58 100644 (file)
@@ -92,7 +92,7 @@
 
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s')
                 h1=syslin('c',(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01))
                 h2=syslin('c',(s^2+2*0.1*15.1*s+228.01)/(s^2+2*0.9*15*s+225))
                 ["$\frac{s^2+18 s+100}{s^2+6.06 s+102.1}$";
                 "$\frac{s^2+3.02 s+228.01}{s^2+27 s+225}$"])
                 title('Gainplot')
+                
             </scilab:image>
         </para>
     </refsection>
index 69b80e0..df8509f 100644 (file)
@@ -92,7 +92,7 @@
     cj=c(10+j); // -45° 曲線のハンドル
     cj.children(1).thickness=3;//線幅を太くする
      ]]></programlisting>
-        <scilab:image>
+        <scilab:image localized="true">
             clf();hallchart()
             ax=gca();
             c=ax.children($).children;
             j=3;
             cj=c(10+j);
             cj.children(1).thickness=3;
-            
         </scilab:image>
     </refsection>
     <refsection>
     clf();hallchart()
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 hallchart()
             </scilab:image>
         </para>
     Leg.legend_location="in_lower_right";
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s');
                 Plant=syslin('c',16000/((s+1)*(s+10)*(s+100)));
                 tau=0.2;xsi=1.2;
index 9bac087..6444450 100644 (file)
@@ -72,7 +72,7 @@
     nicholschart(modules=[-6 -3 -1 1 3 6], args=[-1 -20 20 40 80 160 180]);
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 nicholschart(modules=[-6 -3 -1 1 3 6], args=[-1 -20 20 40 80 160 180]);
             </scilab:image>
         </para>
@@ -91,7 +91,7 @@
     nicholschart(colors=color('light gray')*[1 1])
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s');
                 Plant=syslin('c',16000/((s+1)*(s+10)*(s+100)));
                 tau=0.2;xsi=1.2;
index c5c8716..063225e 100644 (file)
     datatipSetOrientation(tip,"upper left");
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s')
                 h=syslin('c',(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01));
                 h1=h*syslin('c',(s^2+2*0.1*15.1*s+228.01)/(s^2+2*0.9*15*s+225))
     Leg.legend_location="in_upper_left";
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s');
                 Plant=syslin('c',16000/((s+1)*(s+10)*(s+100)));
                 tau=0.2;xsi=1.2;
index 3291e0d..b7d6a16 100644 (file)
 
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s')
                 h1=syslin('c',(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01))
                 h2=syslin('c',(s^2+2*0.1*15.1*s+228.01)/(s^2+2*0.9*15*s+225))
index ca4e014..6e74802 100644 (file)
         clf();evans(H,100);sgrid()
         ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 H=syslin('c',352*poly(-5,'s')/poly([0,0,2000,200,25,1],'s','c'));
                 clf();evans(H,100);sgrid()
             </scilab:image>
index c1d7214..24f704b 100644 (file)
@@ -53,7 +53,7 @@ h=syslin('c',0.02909+0.11827*%s+0.12823*%s^2+0.35659*%s^3+0.256*%s^4+0.1*%s^5,..
 show_margins(h)
 show_margins(h,'nyquist')
  ]]></programlisting>
-        <scilab:image>
+        <scilab:image localized="true">
             h=syslin('c',0.02909+0.11827*%s+0.12823*%s^2+0.35659*%s^3+0.256*%s^4+0.1*%s^5,..
             0.0409+0.1827*%s+1.28225*%s^2+3.1909*%s^3+2.56*%s^4+%s^5);
             show_margins(h)
@@ -65,7 +65,7 @@ h = syslin(0.1,0.01547+0.01599*%z ,%z^2-1.81*%z+0.9048)
 show_margins(h)
 show_margins(h,'nyquist')
  ]]></programlisting>
-        <scilab:image>
+        <scilab:image localized="true">
             h = syslin(0.1,0.01547+0.01599*%z ,%z^2-1.81*%z+0.9048)
             show_margins(h)
             show_margins(h,'nyquist')
index f0a7194..122a8d4 100644 (file)
 
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 z=poly(0,'z')
                 H=syslin(0.01,(0.54-1.8*z+2.9*z^2-2.6*z^3+z^4)/(0.8+0.78*z-0.1*z^2+0.9*z^3+z^4))
                 clf();evans(H,1000);zgrid(0:0.1:0.5)
index 76366d2..b5065f5 100644 (file)
     clf();black(sl,0.01,10);
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s');
                 sl=syslin('c',5*(1+s)/(.1*s^4+s^3+15*s^2+3*s+1))
-                clf();black(sl,0.01,10);
+                black(sl,0.01,10);
             </scilab:image>
         </para>
         <programlisting role="example"><![CDATA[
 
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s');
                 Plant=syslin('c',16000/((s+1)*(s+10)*(s+100)));
                 tau=0.2;xsi=1.2;
                 PID=syslin('c',(1/(2*xsi*tau*s))*(1+2*xsi*tau*s+tau^2*s^2));
-                clf();
                 black([Plant;Plant*PID ],0.01,100,["Plant";"Plant and PID corrector"]);
                 ax=gca();Leg=ax.children(1);
                 Leg.legend_location="in_lower_right";
index 68411f8..717bb1b 100644 (file)
@@ -134,7 +134,7 @@ h=syslin('c',(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01))
 clf();bode(h,0.01,100);
  ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s')
                 h=syslin('c',(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01))
                 clf();bode(h,0.01,100);
@@ -150,7 +150,7 @@ h2=syslin('c',num/den);
 clf();bode([h1;h2],0.01,100,['h1';'h2'])
  ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 s=poly(0,'s')
                 h1=syslin('c',(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01))
                 num=22801+4406.18*s+382.37*s^2+21.02*s^3+s^4;
index 88a9401..e8f0181 100644 (file)
@@ -70,7 +70,7 @@
     [Kr,s]=krac2(H)
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 H=syslin('c',352*poly(-5,'s')/poly([0,0,2000,200,25,1],'s','c'));
                 clf();evans(H,100);sgrid()
                 [Ki,s]=kpure(H)
index c244657..ff9be60 100644 (file)
@@ -73,7 +73,7 @@ h=syslin('c',(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01))
 nyquist(h,0.01,100,'(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01)')
 m_circle();
 ]]></programlisting>
-        <scilab:image>
+        <scilab:image localized="true">
             s=poly(0,'s')
             h=syslin('c',(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01))
             nyquist(h,0.01,100,'(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01)')
@@ -88,7 +88,7 @@ h1=h*syslin('c',(s^2+2*0.1*15.1*s+228.01)/(s^2+2*0.9*15*s+225))
 nyquist([h1;h],0.01,100,['h1';'h'])
 m_circle([-8 -6 -4]);
 ]]></programlisting>
-        <scilab:image>
+        <scilab:image localized="true">
             clf();
             s=poly(0,'s')
             h=syslin('c',(s^2+2*0.9*10*s+100)/(s^2+2*0.3*10.1*s+102.01))
index 87a815b..ba63e11 100644 (file)
@@ -49,7 +49,7 @@
 
     ]]></programlisting>
         <para>
-            <scilab:image>
+            <scilab:image localized="true">
                 z=poly(0,'z')
                 H=syslin(0.01,(0.54-1.8*z+2.9*z^2-2.6*z^3+z^4)/(0.8+0.78*z-0.1*z^2+0.9*z^3+z^4))
                 clf();evans(H,1000);zgrid(0:0.1:0.5)
index a769812..5ae6f16 100644 (file)
@@ -64,8 +64,12 @@ public final class ScilabCommonsUtils {
             return null;
         }
 
-        byte[] bytes = MD5.digest(str.getBytes());
-        return new BigInteger(1, bytes).toString(16);
+        try {
+            byte[] bytes = MD5.digest(str.getBytes("UTF-8"));
+            return new BigInteger(1, bytes).toString(16);
+        } catch (Exception e) {
+            return null;
+        }
     }
 
     /**
index 71f0647..6363a65 100644 (file)
@@ -84,7 +84,7 @@
                 <inlinemediaobject>
                     <imageobject>
                         <imagedata>
-                            <mml:math display="block">
+                            <mml:math display="block" scilab:localized="true">
                                 <mml:mi mathvariant="normal">x</mml:mi>
                                 <mml:mrow>
                                     <mml:mrow>
                 <imageobject>
                     <imagedata>
                         <mml:math display="block">
-                            <mml:mi>f</mml:mi><mml:mo>(</mml:mo><mml:mi>v</mml:mi><mml:mo>)</mml:mo>
+                            <mml:mi mathvariant="normal">f</mml:mi><mml:mo>(</mml:mo><mml:mi mathvariant="normal">v</mml:mi><mml:mo>)</mml:mo>
                         </mml:math>
                     </imagedata>
                 </imageobject>
index 3e10cba..ddbaab8 100644 (file)
@@ -78,7 +78,7 @@
                 <inlinemediaobject>
                     <imageobject>
                         <imagedata>
-                            <mml:math display="block">
+                            <mml:math display="block" scilab:localized="true">
                                 <mml:mi mathvariant="normal">x</mml:mi>
                                 <mml:mrow>
                                     <mml:mrow>
index 0eafddd..1f11bcf 100644 (file)
@@ -2011,7 +2011,7 @@ zu=bvode(xpoints,N,m,x_low,x_up,zeta,ltol=ltol,tol=tol,guess=zstart)
                 <mediaobject>
                     <imageobject>
                         <imagedata align="left">
-                            <mml:math>
+                            <mml:math scilab:localized="true">
                                 <mml:semantics>
                                     <mml:mrow>
                                         <mml:mo mml:stretchy="true">{</mml:mo>
index cfaff10..52004f3 100644 (file)
@@ -78,7 +78,7 @@
                 <inlinemediaobject>
                     <imageobject>
                         <imagedata>
-                            <mml:math display="block">
+                            <mml:math display="block" scilab:localized="true">
                                 <mml:mi mathvariant="normal">x</mml:mi>
                                 <mml:mrow>
                                     <mml:mrow>
index 53b9c3b..17de745 100644 (file)
@@ -137,29 +137,27 @@ plot3d(XF,YF,ZF, flag=[0 6 3], leg="X@Y@Z")
 xtitle("A 3d grid !"); show_window()
  ]]></programlisting>
         <scilab:image>
-nx = 10; ny = 6; nz = 4;
-x = linspace(0,2,nx);
-y = linspace(0,1,ny);
-z = linspace(0,0.5,nz);
-[X,Y,Z] = ndgrid(x,y,z);
-
-XF=[]; YF=[]; ZF=[];
-
-for k=1:nz
-   [xf,yf,zf] = nf3d(X(:,:,k),Y(:,:,k),Z(:,:,k));
-   XF = [XF xf]; YF = [YF yf]; ZF = [ZF zf];
-end
-
-for j=1:ny
-   [xf,yf,zf] = nf3d(matrix(X(:,j,:),[nx,nz]),...
-                     matrix(Y(:,j,:),[nx,nz]),...
-                     matrix(Z(:,j,:),[nx,nz]));
-   XF = [XF xf]; YF = [YF yf]; ZF = [ZF zf];
-end
-
-clf()
-plot3d(XF,YF,ZF, flag=[0 6 3], leg="X@Y@Z")
-xtitle("A 3d grid !"); 
+            nx = 10; ny = 6; nz = 4;
+            x = linspace(0,2,nx);
+            y = linspace(0,1,ny);
+            z = linspace(0,0.5,nz);
+            [X,Y,Z] = ndgrid(x,y,z);
+            
+            XF=[]; YF=[]; ZF=[];
+            
+            for k=1:nz
+            [xf,yf,zf] = nf3d(X(:,:,k),Y(:,:,k),Z(:,:,k));
+            XF = [XF xf]; YF = [YF yf]; ZF = [ZF zf];
+            end
+            
+            for j=1:ny
+            [xf,yf,zf] = nf3d(matrix(X(:,j,:),[nx,nz]),...
+            matrix(Y(:,j,:),[nx,nz]),...
+            matrix(Z(:,j,:),[nx,nz]));
+            XF = [XF xf]; YF = [YF yf]; ZF = [ZF zf];
+            end
+            plot3d(XF,YF,ZF, flag=[0 6 3], leg="X@Y@Z")
+            xtitle("A 3d grid !"); 
         </scilab:image>
     </refsection>
     <refsection role="see also">
index e1e51d7..807dbd0 100644 (file)
                     if <literal>orientation</literal> is equal to 1 or "r" then
                 </para>
                 <para>
-                    <latex><![CDATA[ y(1,j) = \prod_i x(i,j)]]></latex>
+                    <latex><![CDATA[{ y(\mathbf{1},j) = \prod_{\mathbf{i}} x(\mathbf{i},j)}]]></latex>
                 </para>
                 <para>or </para>
                 <para>
-                    <latex><![CDATA[ y(1,j,k,\ldots) = \prod_i x(i,j,k,\ldots)]]></latex>
+                    <latex><![CDATA[ y(\mathbf{1},j,k,\ldots) = \prod_{\mathbf{i}} x(\mathbf{i},j,k,\ldots)]]></latex>
                 </para>
             </listitem>
             <listitem>
index d7e69f1..514dfe4 100644 (file)
                     if <literal>orientation</literal> is equal to 1 or "r" then
                 </para>
                 <para>
-                    <latex><![CDATA[ y(1,j) = \sum_i x(i,j)]]></latex>
+                    <latex><![CDATA[{ y(\mathbf{1},j) = \sum_{\mathbf{i}} x(\mathbf{i},j)}]]></latex>
                 </para>
                 <para>or </para>
                 <para>
-                    <latex><![CDATA[ y(1,j,k,\ldots) = \sum_i x(i,j,k,\ldots)]]></latex>
+                    <latex><![CDATA[ y(\mathbf{1},j,k,\ldots) = \sum_{\mathbf{i}} x(\mathbf{i},j,k,\ldots)]]></latex>
                 </para>
             </listitem>
             <listitem>
index f6665d6..0a20cf5 100644 (file)
             <varname>phi</varname> is in the interval <latex>\left(\dfrac{-\pi}{2}, \dfrac{\pi}{2}\right)</latex>. For complex
             <varname>x</varname>, <function>atan</function> has two singular, branching
             points <code>+%i</code>, <code>-%i</code> and the chosen branch
-            cuts are the two imaginary half-straight lines <latex>[i, i*\infty)</latex> and <latex>(-i*\infty,
-            -i]</latex>.
+            cuts are the two imaginary half-straight lines <latex>[i, i*\infty)</latex> and <latex>(-i*\infty, -i]</latex>.
         </para>
-        <para>The second form computes the 4-quadrant arctangent (<function>atan2</function> in
+        <para>
+            The second form computes the 4-quadrant arctangent (<function>atan2</function> in
             Fortran), this is, it returns the argument (angle) of the complex number
             <literal>x+i*y</literal>. The range of <code>atan(y, x)</code> is
             <latex>(-\pi, \pi]</latex>.
index 7466858..1c08843 100644 (file)
             最初の形式は2象限逆正接を計算します.
             これは,<literal>tan(phi)</literal>の逆関数です.
             <literal>x</literal>が実数の場合,
-            <literal>phi</literal>は (-pi/2, pi/2) の範囲となります.
+            <literal>phi</literal>は <latex>\left(\dfrac{-\pi}{2}, \dfrac{\pi}{2}\right)</latex> の範囲となります.
             <literal>x</literal>が複素数の場合,
             <literal>atan</literal>は二つの特異な分岐点
             <literal>+%i</literal>,<literal>-%i</literal>を有し,
             選択した分枝切断(branch cuts)は, 虚数の2つの半直線
-            [i, i*oo) and (-i*oo,-i] となります.
+            <latex>[i, i*\infty)</latex> and <latex>(-i*\infty, -i]</latex> となります.
         </para>
         <para>2番目の形式は4象限逆正接を計算します(Fortranの atan2).
             この場合,この関数は,複素数 <literal>x+i*y</literal> の偏角(角度)を
             返します.
-            <literal>atan(y,x)</literal>の範囲は, (-pi, pi] です.
+            <literal>atan(y,x)</literal>の範囲は, <latex>(-\pi, \pi]</latex> です.
         </para>
         <para>
             引数が実数の場合,<literal>x&gt;0</literal>には
index c6c72c1..7d233df 100644 (file)
@@ -94,14 +94,13 @@ clf()
 plot3d(x,y,Z, flag=[2 6 4]); show_window()
  ]]></programlisting>
         <scilab:image>
-nx = 40; ny = 40;
-x = linspace(-1,1,nx);
-y = linspace(-1,1,ny);
-[X,Y] = ndgrid(x,y);
-//deff("z=f(x,y)","z=128*x.^2 .*(1-x).^2 .*y.^2 .*(1-y).^2");
-deff("z=f(x,y)","z=x.^2 + y.^3")
-Z = f(X,Y);
-plot3d(x,y,Z, flag=[2 6 4]); show_window()
+            nx = 40; ny = 40;
+            x = linspace(-1,1,nx);
+            y = linspace(-1,1,ny);
+            [X,Y] = ndgrid(x,y);
+            deff("z=f(x,y)","z=x.^2 + y.^3")
+            Z = f(X,Y);
+            plot3d(x,y,Z, flag=[2 6 4]);
         </scilab:image>
         <programlisting role="example"><![CDATA[ 
 // criando um grid 3d simples
@@ -127,26 +126,27 @@ plot3d(XF,YF,ZF, flag=[0 6 3], leg="X@Y@Z")
 xtitle("A 3d grid !"); show_window()
  ]]></programlisting>
         <scilab:image>
-nx = 10; ny = 6; nz = 4;
-x = linspace(0,2,nx);
-y = linspace(0,1,ny);
-z = linspace(0,0.5,nz);
-[X,Y,Z] = ndgrid(x,y,z);
-// tente exibir este grid 3d...
-XF=[]; YF=[]; ZF=[];
-for k=1:nz
-   [xf,yf,zf] = nf3d(X(:,:,k),Y(:,:,k),Z(:,:,k));
-   XF = [XF xf]; YF = [YF yf]; ZF = [ZF zf];
-end
-for j=1:ny
-   [xf,yf,zf] = nf3d(matrix(X(:,j,:),[nx,nz]),...
-                     matrix(Y(:,j,:),[nx,nz]),...
-                     matrix(Z(:,j,:),[nx,nz]));
-   XF = [XF xf]; YF = [YF yf]; ZF = [ZF zf];
-end
-clf()
-plot3d(XF,YF,ZF, flag=[0 6 3], leg="X@Y@Z")
-xtitle("A 3d grid !"); show_window()
+            nx = 10; ny = 6; nz = 4;
+            x = linspace(0,2,nx);
+            y = linspace(0,1,ny);
+            z = linspace(0,0.5,nz);
+            [X,Y,Z] = ndgrid(x,y,z);
+            
+            XF=[]; YF=[]; ZF=[];
+            
+            for k=1:nz
+            [xf,yf,zf] = nf3d(X(:,:,k),Y(:,:,k),Z(:,:,k));
+            XF = [XF xf]; YF = [YF yf]; ZF = [ZF zf];
+            end
+            
+            for j=1:ny
+            [xf,yf,zf] = nf3d(matrix(X(:,j,:),[nx,nz]),...
+            matrix(Y(:,j,:),[nx,nz]),...
+            matrix(Z(:,j,:),[nx,nz]));
+            XF = [XF xf]; YF = [YF yf]; ZF = [ZF zf];
+            end
+            plot3d(XF,YF,ZF, flag=[0 6 3], leg="X@Y@Z")
+            xtitle("A 3d grid !"); 
         </scilab:image>
     </refsection>
     <refsection role="see also">
index 11c05c9..0e5a258 100644 (file)
         <title>Descrição</title>
         <para>A primeira forma computa o arco-tangente 2-quadrantes, que é o
             inverso de <literal>tan(phi)</literal>. Para um real <literal>x</literal>,
-            <literal>phi</literal> está no intervalo (-pi/2, pi/2).. Para um complexo
+            <literal>phi</literal> está no intervalo <latex>\left(\dfrac{-\pi}{2}, \dfrac{\pi}{2}\right)</latex>.. Para um complexo
             <literal>x</literal>, <literal>atan</literal> tem dois pontos de
             ramificação singulares <literal>+%i</literal>,<literal>-%i</literal> e os
-            ramos escolhidos são as duas semi-retas imaginárias [i, i*oo) e (-i*oo,
-            -i].
+            ramos escolhidos são as duas semi-retas imaginárias <latex>[i, i*\infty)</latex> e <latex>(-i*\infty, -i]</latex>.
         </para>
         <para>A segunda forma computa o arco-tangente 4-quadrantes (atan2 em
             FORTRAN), isto é, retorna o argumento (ângulo) do número complexo
-            <literal>x+i*y</literal>. A imagem de <literal>atan(y,x)</literal> é (-pi,
-            pi].
+            <literal>x+i*y</literal>. A imagem de <literal>atan(y,x)</literal> é <latex>(-\pi, \pi]</latex>.
         </para>
         <para>Para argumentos reais, ambas as formas produzem valores idênticos se
             <literal>x&gt;0</literal>.
index 22be530..18c7b08 100644 (file)
                     если <literal>orientation</literal> равна 1 или "r", то
                 </para>
                 <para>
-                    <latex><![CDATA[ y(\mathbf{l},j) = \prod\limits_{\mathbf{i}=1}^l x(\mathbf{i},j)]]></latex>
+                    <latex><![CDATA[ y(\mathbf{l},j) = \prod_{\mathbf{i}=1}^l x(\mathbf{i},j)]]></latex>
                 </para>
                 <para>или </para>
                 <para>
-                    <latex><![CDATA[ y(\mathbf{l},j,k,\ldots) = \prod\limits_{\mathbf{i}=1}^l x(\mathbf{i},j,k,\ldots)]]></latex>
+                    <latex><![CDATA[ y(\mathbf{l},j,k,\ldots) = \prod_{\mathbf{i}=1}^l x(\mathbf{i},j,k,\ldots)]]></latex>
                 </para>
             </listitem>
             <listitem>
                     если <literal>orientation</literal> равна 2 или "c", то:
                 </para>
                 <para>
-                    <latex><![CDATA[ y(i,\mathbf{l}) = \prod\limits_{\mathbf{j}=1}^l x(i,{\mathbf{j})]]></latex>
+                    <latex><![CDATA[ y(i,\mathbf{l}) = \prod_{\mathbf{j}=1}^l x(i,{\mathbf{j})]]></latex>
                 </para>
                 <para> или </para>
                 <para>
-                    <latex><![CDATA[ y(i,\mathbf{l},k,\ldots) = \prod\limits_{\mathbf{j}=1}^l x(i,\mathbf{j},k,\ldots)]]></latex>
+                    <latex><![CDATA[ y(i,\mathbf{l},k,\ldots) = \prod_{\mathbf{j}=1}^l x(i,\mathbf{j},k,\ldots)]]></latex>
                 </para>
             </listitem>
             <listitem>
                     если <literal>orientation</literal> равна n, то
                 </para>
                 <para>
-                    <latex><![CDATA[ y(i_1,\ldots,i_{n-1},\mathbf{l},i_{n+1},\ldots) = \prod\limits_{\mathbf{i_n}=1}^l x(i_1,\ldots,i_{n-1},\mathbf{i_n},i_{n+1},\ldots)]]></latex>
+                    <latex><![CDATA[ y(i_1,\ldots,i_{n-1},\mathbf{l},i_{n+1},\ldots) = \prod_{\mathbf{i_n}=1}^l x(i_1,\ldots,i_{n-1},\mathbf{i_n},i_{n+1},\ldots)]]></latex>
                 </para>
             </listitem>
             <listitem>
index 286fed4..805d67f 100644 (file)
                     если <literal>orientation</literal> равна 1 или "r", то: 
                 </para>
                 <para>
-                    <latex><![CDATA[ y(\mathbf{l},j) = \sum\limits_{\mathbf{i}=1}^l x(\mathbf{i},j)]]></latex>
+                    <latex><![CDATA[ y(\mathbf{l},j) = \sum_{\mathbf{i}=1}^l x(\mathbf{i},j)]]></latex>
                 </para>
                 <para>или </para>
                 <para>
-                    <latex><![CDATA[ y(\mathbf{l},j,k,\ldots) = \sum\limits_{\mathbf{i}=1}^l x(\mathbf{i},j,k,\ldots)]]></latex>
+                    <latex><![CDATA[ y(\mathbf{l},j,k,\ldots) = \sum_{\mathbf{i}=1}^l x(\mathbf{i},j,k,\ldots)]]></latex>
                 </para>
             </listitem>
             <listitem>
                     если <literal>orientation</literal> равна 2 или "c", то: 
                 </para>
                 <para>
-                    <latex><![CDATA[ y(i,\mathbf{l}) = \sum\limits_{\mathbf{j}=1}^l x(i,{\mathbf{j})]]></latex>
+                    <latex><![CDATA[ y(i,\mathbf{l}) = \sum_{\mathbf{j}=1}^l x(i,{\mathbf{j})]]></latex>
                 </para>
                 <para> или </para>
                 <para>
-                    <latex><![CDATA[ y(i,\mathbf{l},k,\ldots) = \sum\limits_{\mathbf{j}=1}^l x(i,\mathbf{j},k,\ldots)]]></latex>
+                    <latex><![CDATA[ y(i,\mathbf{l},k,\ldots) = \sum_{\mathbf{j}=1}^l x(i,\mathbf{j},k,\ldots)]]></latex>
                 </para>
             </listitem>
             <listitem>
                     если <literal>orientation</literal> равна n, то: 
                 </para>
                 <para>
-                    <latex><![CDATA[ y(i_1,\ldots,i_{n-1},\mathbf{l},i_{n+1},\ldots) = \sum\limits_{\mathbf{i_n}=1}^l x(i_1,\ldots,i_{n-1},\mathbf{i_n},i_{n+1},\ldots)]]></latex>
+                    <latex><![CDATA[ y(i_1,\ldots,i_{n-1},\mathbf{l},i_{n+1},\ldots) = \sum_{\mathbf{i_n}=1}^l x(i_1,\ldots,i_{n-1},\mathbf{i_n},i_{n+1},\ldots)]]></latex>
                 </para>
             </listitem>
             <listitem>
index ded4c15..3221b63 100644 (file)
                     если <literal>orientation</literal> равна 1 или "r", то:
                 </para>
                 <para>
-                    <latex><![CDATA[ y(1,j) = \prod\limits_i x(i,j)]]></latex>
+                    <latex><![CDATA[{ y(\mathbf{1},j) = \prod_{\mathbf{i}} x(\mathbf{i},j)}]]></latex>
                 </para>
                 <para>или </para>
                 <para>
-                    <latex><![CDATA[ y(1,j,k,\ldots) = \prod\limits_i x(i,j,k,\ldots)]]></latex>
+                    <latex><![CDATA[ y(\mathbf{1},j,k,\ldots) = \prod_{\mathbf{i}} x(\mathbf{i},j,k,\ldots)]]></latex>
                 </para>
             </listitem>
             <listitem>
                     если <literal>orientation</literal> равна 2 или "c" то:
                 </para>
                 <para>
-                    <latex><![CDATA[ y(i,\mathbf{1}) = \prod\limits_{\mathbf{j}} x(i,\mathbf{j})]]></latex>
+                    <latex><![CDATA[ y(i,\mathbf{1}) = \prod_{\mathbf{j}} x(i,\mathbf{j})]]></latex>
                 </para>
                 <para>или </para>
                 <para>
-                    <latex><![CDATA[ y(i,\mathbf{1},k,\ldots) = \prod\limits_{j} x(i,\mathbf{j},k,\ldots)]]></latex>
+                    <latex><![CDATA[ y(i,\mathbf{1},k,\ldots) = \prod_{j} x(i,\mathbf{j},k,\ldots)]]></latex>
                 </para>
             </listitem>
             <listitem>
                     если <literal>orientation</literal> равна n, то:
                 </para>
                 <para>
-                    <latex><![CDATA[ y(i_1,\ldots,i_{n-1},\mathbf{1},i_{n+1},\ldots) = \prod\limits_{\mathbf{i_n}} x(i_1,\ldots,i_{n-1},\mathbf{i_n},i_{n+1},\ldots)]]></latex>
+                    <latex><![CDATA[ y(i_1,\ldots,i_{n-1},\mathbf{1},i_{n+1},\ldots) = \prod_{\mathbf{i_n}} x(i_1,\ldots,i_{n-1},\mathbf{i_n},i_{n+1},\ldots)]]></latex>
                 </para>
             </listitem>
             <listitem>
index f1700ea..d5d74fa 100644 (file)
                     если <literal>orientation</literal> равна 1 или "r", то
                 </para>
                 <para>
-                    <latex><![CDATA[ y(1,j) = \sum\limits_i x(i,j)]]></latex>
+                    <latex><![CDATA[{ y(\mathbf{1},j) = \sum_{\mathbf{i}} x(\mathbf{i},j)}]]></latex>
                 </para>
                 <para>или </para>
                 <para>
-                    <latex><![CDATA[ y(1,j,k,\ldots) = \sum\limits_i x(i,j,k,\ldots)]]></latex>
+                    <latex><![CDATA[ y(\mathbf{1},j,k,\ldots) = \sum_{\mathbf{i}} x(\mathbf{i},j,k,\ldots)]]></latex>
                 </para>
             </listitem>
             <listitem>
                     если <literal>orientation</literal> равна 2 или "c", то:
                 </para>
                 <para>
-                    <latex><![CDATA[ y(i,\mathbf{1}) = \sum\limits_{\mathbf{j}} x(i,\mathbf{j})]]></latex>
+                    <latex><![CDATA[ y(i,\mathbf{1}) = \sum_{\mathbf{j}} x(i,\mathbf{j})]]></latex>
                 </para>
                 <para>или </para>
                 <para>
-                    <latex><![CDATA[ y(i,\mathbf{1},k,\ldots) = \sum\limits_{j} x(i,\mathbf{j},k,\ldots)]]></latex>
+                    <latex><![CDATA[ y(i,\mathbf{1},k,\ldots) = \sum_{j} x(i,\mathbf{j},k,\ldots)]]></latex>
                 </para>
             </listitem>
             <listitem>
                     если <literal>orientation</literal> равна n, то
                 </para>
                 <para>
-                    <latex><![CDATA[ y(i_1,\ldots,i_{n-1},\mathbf{1},i_{n+1},\ldots) = \sum\limits_{\mathbf{i_n}} x(i_1,\ldots,i_{n-1},\mathbf{i_n},i_{n+1},\ldots)]]></latex>
+                    <latex><![CDATA[ y(i_1,\ldots,i_{n-1},\mathbf{1},i_{n+1},\ldots) = \sum_{\mathbf{i_n}} x(i_1,\ldots,i_{n-1},\mathbf{i_n},i_{n+1},\ldots)]]></latex>
                 </para>
             </listitem>
             <listitem>
index 11f7d9b..2b93c8a 100644 (file)
                     <para>
                         this represents a sequence of statements 
                         <literal>key1=value1, key2=value2, ...</literal>
-                         where <literal>key1</literal>, <literal>key2, ...</literal>
-                         can be one of the following: <varname>strf</varname>,
-                         <varname>rect</varname>, <varname>nax</varname>,
-                         <varname>zminmax</varname>, <varname>colminmax</varname>,
-                         <varname>mesh</varname>, <varname>colout</varname>
+                        where <literal>key1</literal>, <literal>key2, ...</literal>
+                        can be one of the following: <varname>strf</varname>,
+                        <varname>rect</varname>, <varname>nax</varname>,
+                        <varname>zminmax</varname>, <varname>colminmax</varname>,
+                        <varname>mesh</varname>, <varname>colout</varname>
                         (see <link linkend="plot2d">plot2d</link> for the 3 first
                         and <link linkend="fec">fec</link> for the 4 last).
                     </para>
@@ -116,7 +116,7 @@ clf()
 set(gcf(),"color_map",[jetcolormap(64);hotcolormap(64)])
 x = linspace(-1,1,60);
 y = linspace(-1,1,60);
-drawlater() ;
+drawlater();
 subplot(2,2,1)
   colorbar(-1,1,[1,64])
   Sfgrayplot(x,y,surf1,strf="041",colminmax=[1,64])
@@ -133,7 +133,7 @@ subplot(2,2,4)
   colorbar(0,2,[1,64])
   Sfgrayplot(x,y,surf4,strf="041",colminmax=[1,64])
   xtitle("f(x,y) = x^2+y^2")
-drawnow() ;
+drawnow();
 show_window()
  ]]></programlisting>
         <scilab:image>
@@ -145,7 +145,7 @@ show_window()
             set(gcf(),"color_map",[jetcolormap(64);hotcolormap(64)])
             x = linspace(-1,1,60);
             y = linspace(-1,1,60);
-            drawlater() ;
+            drawlater();
             subplot(2,2,1)
             colorbar(-1,1,[1,64])
             Sfgrayplot(x,y,surf1,strf="041",colminmax=[1,64])
@@ -162,8 +162,7 @@ show_window()
             colorbar(0,2,[1,64])
             Sfgrayplot(x,y,surf4,strf="041",colminmax=[1,64])
             xtitle("f(x,y) = x^2+y^2")
-            drawnow() ;
-            show_window()
+            drawnow();
         </scilab:image>
         <programlisting role="example"><![CDATA[ 
 // example #2: plot surf3 and add some contour lines 
@@ -172,12 +171,12 @@ clf()
 x = linspace(-1,1,60);
 y = linspace(-1,1,60);
 set(gcf(),"color_map",hotcolormap(128))
-drawlater() ;
+drawlater();
 colorbar(-1,2)
 Sfgrayplot(x,y,surf3,strf="041")
 contour2d(x,y,surf3,[-0.1, 0.025, 0.4],style=[1 1 1],strf="000")
 xtitle("f(x,y) = x^3+y^2")
-drawnow() ;
+drawnow();
 show_window()
  ]]></programlisting>
         <scilab:image>
@@ -186,7 +185,7 @@ show_window()
             x = linspace(-1,1,60);
             y = linspace(-1,1,60);
             set(gcf(),"color_map",hotcolormap(128))
-            drawlater() ;
+            drawlater();
             colorbar(-1,2)
             Sfgrayplot(x,y,surf3,strf="041")
             contour2d(x,y,surf3,[-0.1, 0.025, 0.4],style=[1 1 1],strf="000")
@@ -202,7 +201,7 @@ clf()
 x = linspace(-1,1,60);
 y = linspace(-1,1,60);
 set(gcf(),"color_map",jetcolormap(128))
-drawlater() ;
+drawlater();
 zminmax = [-0.5 1]; colors=[32 96];
 colorbar(zminmax(1),zminmax(2),colors)
 Sfgrayplot(x, y, surf3, strf="041", zminmax=zminmax, colout=[0 0], colminmax=colors)
index 5f7cb58..08a4cd0 100644 (file)
@@ -60,10 +60,10 @@ z= zmin + (1:nz)*(zmax-zmin)/(nz+1)
  ]]></programlisting>
                                 <para>
                                     <note>
-                                    Note: that the <literal>zmin</literal> and
-                                    <literal>zmax</literal> levels are not drawn
-                                    (generically they are reduced to points) but
-                                    they can be added with
+                                        Note: that the <literal>zmin</literal> and
+                                        <literal>zmax</literal> levels are not drawn
+                                        (generically they are reduced to points) but
+                                        they can be added with
                                     </note>
                                 </para>
                                 <programlisting role="no-scilab-exec"><![CDATA[ 
@@ -183,7 +183,6 @@ contourf([],[],z,[-6:-1,-logspace(-5,0,10),logspace(-5,0,10),1:8]);
             xset('fpf',' ');
             clf();
             contourf([],[],z,[-6:-1,-logspace(-5,0,10),logspace(-5,0,10),1:8],0*ones(1,m))
-            
         </scilab:image>
     </refsection>
     <refsection role="see also">
index 5e85d7b..7fe94f5 100644 (file)
@@ -138,11 +138,9 @@ plot2d(t,[cos(t'),cos(2*t'),cos(3*t')],[-1,2 3]);
 legends(['cos(t)';'cos(2*t)';'cos(3*t)'],[-1,2 3],opt="lr")
  ]]></programlisting>
         <scilab:image>
-            // Example 1
             t=0:0.1:2*%pi;
             plot2d(t,[cos(t'),cos(2*t'),cos(3*t')],[-1,2 3]);  
             legends(['cos(t)';'cos(2*t)';'cos(3*t)'],[-1,2 3],opt="lr")
-            
         </scilab:image>
         <programlisting role="example"><![CDATA[ 
 t=0:0.1:2*%pi;
index d17c510..6303dc6 100644 (file)
@@ -71,7 +71,6 @@ hist3d()
             param3d()
             subplot(2,2,4)
             hist3d()
-            
         </scilab:image>
     </refsection>
     <refsection role="see also">
index 7ead8b2..670a015 100644 (file)
@@ -190,8 +190,7 @@ drawaxis(x=2:7,y=4,dir='u',tics='v',fontsize=10,textcolor=9,ticscolor=7,seg=0,su
             drawaxis(x=[2,5,0,3],y=9,dir='u',tics='i');
             drawaxis(x=9,y=[2,5,0,3],dir='r',tics='i',sub_int=5);
             
-            drawaxis(x=2:7,y=4,dir='u',tics='v',fontsize=10,textcolor=9,ticscolor=7,seg=0,sub_int=20) 
-            
+            drawaxis(x=2:7,y=4,dir='u',tics='v',fontsize=10,textcolor=9,ticscolor=7,seg=0,sub_int=20)
         </scilab:image>
     </refsection>
     <refsection role="see also">
index 86fb987..81cb832 100644 (file)
@@ -169,10 +169,6 @@ contourf([],[],z,[-6:-1,-logspace(-5,0,10),logspace(-5,0,10),1:8]);
             xset('fpf',' ');
             clf();
             contourf([],[],z,[-6:-1,-logspace(-5,0,10),logspace(-5,0,10),1:8],0*ones(1,m))
-            
-            xset('fpf','');
-            clf();
-            contourf([],[],z,[-6:-1,-logspace(-5,0,10),logspace(-5,0,10),1:8]);
         </scilab:image>
     </refsection>
     <refsection role="see also">
index de39a13..3930645 100644 (file)
     <refsection>
         <title>Exemples</title>
         <programlisting role="example"><![CDATA[ 
-t=[0:0.3:2*%pi]'; z=sin(t)*cos(t');
+t=[0:0.3:2*%pi]';
+z=sin(t)*cos(t');
 [xx,yy,zz]=genfac3d(t,t,z);
 plot3d(xx,yy,zz)
  ]]></programlisting>
+        
         <scilab:image>
-            t=[0:0.3:2*%pi]'; z=sin(t)*cos(t');
+            t=[0:0.3:2*%pi]'; 
+            z=sin(t)*cos(t');
             [xx,yy,zz]=genfac3d(t,t,z);
             plot3d(xx,yy,zz)
         </scilab:image>
index 2ffabd4..3aea3b9 100644 (file)
             </varlistentry>
             <varlistentry>
                 <term>
+                    <link linkend="hallchart">hallchart</link>
+                </term>
+                <listitem>
+                    <para>
+                        Hall chart
+                    </para>
+                    <para>
+                        <emphasis role="bold">Example:</emphasis>
+                    </para>
+                    <para>
+                        <scilab:image>hallchart();</scilab:image>
+                    </para>
+                </listitem>
+            </varlistentry>
+            <varlistentry>
+                <term>
                     <link linkend="chart">chart</link>
                 </term>
                 <listitem>
index 0a6e674..b8958c5 100644 (file)
@@ -142,11 +142,6 @@ legends(["sin(t)";"cos(t)"],[[5;2],[3;4]], with_box=%f, opt="?")
             t=0:0.1:2*%pi;
             plot2d(t,[cos(t'),cos(2*t'),cos(3*t')],[-1,2 3]);  
             legends(['cos(t)';'cos(2*t)';'cos(3*t)'],[-1,2 3],opt="lr")
-            
-            scf() ;
-            xset("line style",2);plot2d(t,cos(t),style=5);
-            xset("line style",4);plot2d(t,sin(t),style=3);
-            legends(["sin(t)";"cos(t)"],[[5;2],[3;4]], with_box=%f, opt="?")
         </scilab:image>
         <programlisting role="example"><![CDATA[ 
 // Exemple 2
@@ -172,8 +167,6 @@ plot2d(t,[cos(t'),cos(2*t'),cos(3*t')],[-1,2 3]);
 legends(['cos(t)';'cos(2*t)';'cos(3*t)'],[-1,2 3], opt=2, font_size=1 )
  ]]></programlisting>
         <scilab:image>
-            // Exemple 2
-            scf() ;
             subplot(221)
             t=0:0.1:2*%pi;
             plot2d(t,[cos(t'),cos(2*t'),cos(3*t')],[-1,2 3]);  
index 79e4e08..067b9c6 100644 (file)
@@ -161,33 +161,24 @@ drawaxis(x=2:7,y=4,dir='u',tics='v',fontsize=10,textcolor=9,ticscolor=7,seg=0,su
  ]]></programlisting>
         <scilab:image>
             plot2d(1:10,1:10,1,"020")
-            // axe horizontal
             drawaxis(x=2:7,y=4,dir='u',tics='v')
-            // axe horizontal en haut du cadre
             drawaxis(x=2:7,dir='u',tics='v') 
-            // axe horizontal en bas du cadre
             drawaxis(x=2:7,dir='d',tics='v') 
             
-            // axe horizontal donné par une plage de variation 
             drawaxis(x=[2,7,3],y=4,dir='d',tics='r') 
             
-            // axe vertical
             drawaxis(x=4,y=2:7,dir='r',tics='v')
             drawaxis(x=2,y=[2,7,3],dir='l',tics='r')
             drawaxis(y=2:7,dir='r',tics='v')
             drawaxis(y=2:7,dir='l',tics='v')
             
-            // axe horizontal avec chaînes de caractères au dessus des graduations
             drawaxis(x=2:7,y=8,dir='u',tics='v',val='A'+string(1:6));
-            // axe vertical avec chaînes de caractères au dessus des graduations
             drawaxis(x=8,y=2:7,dir='r',tics='v',val='B'+string(1:6));
             
-            // axe horizontal avec 'i' 
             drawaxis(x=[2,5,0,3],y=9,dir='u',tics='i');
             drawaxis(x=9,y=[2,5,0,3],dir='r',tics='i',sub_int=5);
             
-            // encore un axe horizontal
-            drawaxis(x=2:7,y=4,dir='u',tics='v',fontsize=10,textcolor=9,ticscolor=7,seg=0,sub_int=20) 
+            drawaxis(x=2:7,y=4,dir='u',tics='v',fontsize=10,textcolor=9,ticscolor=7,seg=0,sub_int=20)
         </scilab:image>
     </refsection>
     <refsection role="see also">
index eb54642..8b2bc6b 100644 (file)
@@ -86,22 +86,25 @@ barhomogenize('stacked',1);
 ]]></programlisting>
         <scilab:image>
             subplot(2,3,1)
-            xtitle('ex1: creation of 1 yellow bar and  3 bars')
-            x=1:3; y1=1:3; y2=[4 3 5;6 7 8;9 10 11];
+            xtitle('ex1: creation of 1 yellow bar and 3 bars')
+            x=1:3;
+            y1=1:3;
+            y2=[4 3 5;6 7 8;9 10 11];
             bar(x,y1,'yellow');bar(x,y2);
-            // homogeneisation des 4 barres avec l'option style fixée à 'grouped' (par défaut)
-            subplot(2,3,2)
+            
+            subplot(2,3,2) 
             xtitle('grouped homogenisation')
-            x=1:3; y1=1:3; y2=[4 3 5;6 7 8;9 10 11];
+            x=1:3;
+            y1=1:3;
+            y2=[4 3 5;6 7 8;9 10 11];
             bar(x,y1,'yellow');bar(x,y2);
             barhomogenize();
-            // homogeneisation des 4 barres avec l'option style fixée à 'stacked'
+            
             subplot(2,3,3)
             xtitle('stacked homogenisation')
             x=1:3; y1=1:3; y2=[4 3 5;6 7 8;9 10 11];
             bar(x,y1,'yellow');bar(x,y2);
             barhomogenize('stacked',1);
-            
         </scilab:image>
         <programlisting role="example"><![CDATA[ 
 
@@ -135,31 +138,41 @@ barhomogenize();
 //barhomogenize('stacked',1);
  ]]></programlisting>
         <scilab:image>
-            
-            // Deuxieme exemple
-            // creation d'une barre (i.e une polyline de type polyline_style=6, avec un appel à la fonction bar) et deux polylines (i.e 2 polylines de type polyline_style=1, avec un appel à la fonction plot)
+            // Second example : creation of 1 red bar (i.e 1 polyline with polyline_style=6) and 2 polylines with type=1 (calling plot function)
             subplot(2,3,4)
             xtitle('ex2: creation of 1 bar and 2 polylines')
-            x=1:10; y=sin(x)/2;
+            x=1:10;
+            y=sin(x)/2;
             bar(x,y,'red')
-            x1=1:10;y1=[sin(x);cos(x)]
+            x1=1:10;
+            y1=[sin(x);cos(x)]
             plot(x1,y1)
-            // modification du type polyline_style à 6 de la deuxieme polyline construite par plot (cette polyline devient une barre)
+            
+            // modify the polyline_style type of the second polyline from plot (this polyline becomes a bar)
             subplot(2,3,5)
             xtitle('transformation of the second polyline to bar')
-            x=1:10; y=sin(x)/2;
+            x=1:10; 
+            y=sin(x)/2;
             bar(x,y,'red')
-            x1=1:10;y1=[sin(x);cos(x)]
+            x1=1:10;
+            y1=[sin(x);cos(x)]
             plot(x1,y1)
-            e=gce(); e2=e.children(2); e2.polyline_style=6;
-            // homogeneisation de la première barre (construite par appel à la fonction bar) et de la deuxieme barre (issue de la modification). 
+            e=gce();
+            e2=e.children(2);
+            e2.polyline_style=6;
+            
+            // homogenisation of the first bar (from bar function) and second bar (from the modification). 
             subplot(2,3,6)
             xtitle('grouped homogenisation')
-            x=1:10; y=sin(x)/2;
+            x=1:10; 
+            y=sin(x)/2;
             bar(x,y,'red')
-            x1=1:10;y1=[sin(x);cos(x)]
+            x1=1:10;
+            y1=[sin(x);cos(x)]
             plot(x1,y1)
-            e=gce(); e2=e.children(2); e2.polyline_style=6;
+            e=gce();
+            e2=e.children(2);
+            e2.polyline_style=6;
             barhomogenize();
             // change the style and the width
             //barhomogenize('stacked',0.5);
index eae48a0..a85f629 100644 (file)
@@ -33,7 +33,7 @@
         <programlisting role="example"><![CDATA[ 
 titlepage("Ceci est le titre de la page");
  ]]></programlisting>
-        <scilab:image>
+        <scilab:image localized="true">
             titlepage("Ceci est le titre de la page");
         </scilab:image>
         
index a46c85a..1a58b8d 100644 (file)
         <programlisting role="example"><![CDATA[ 
 x=[0:0.1:2*%pi]';
 plot2d(sin(x))
-xgrid(2)
+xgrid(5)
  ]]></programlisting>
         <scilab:image>
             x=[0:0.1:2*%pi]';
             plot2d(sin(x))
-            xgrid(2)
+            xgrid(5)
         </scilab:image>
     </refsection>
     <refsection role="see also">
index 82fbc7c..f43037a 100644 (file)
@@ -85,8 +85,8 @@ xsegs([5, -2],[4 , -1]) // Dessine une ligne de X(5,4) à Y(-2, -1)
  ]]></programlisting>
         <scilab:image>
             plot2d([-10,10],[-10,10],[-1,-1],"022")
-            xsegs([9, -9],[9 , -9]) // Dessine une ligne de X(9,9) à Y(-9, -9)
-            xsegs([5, -2],[4 , -1]) // Dessine une ligne de X(5,4) à Y(-2, -1)
+            xsegs([9, -9],[9 , -9]) // Draw the line from X(9,9) to Y(-9, -9)
+            xsegs([5, -2],[4 , -1]) // Draw the line from X(5,4) to Y(-2, -1)
         </scilab:image>
         <programlisting role="example"><![CDATA[
 
@@ -101,10 +101,10 @@ xv=[sin(alpha)/2;sin(alpha)/3];
 yv=[cos(alpha)/2;cos(alpha)/3];
 zv=[alpha/8;alpha/8];
 xsegs(xv,yv,zv,1:120);
-// Now adjust the data_bounds
+// On ajuste les data_bounds
 a.data_bounds = [min(xv) min(yv) min(zv); ...
                  max(xv) max(yv) max(zv)];
-// We can add an arrow to each segs
+// On peut ajouter une flèche sur chaque segments
 e = gce();
 e.arrow_size = 0.4;
 
@@ -119,10 +119,8 @@ e.arrow_size = 0.4;
             yv=[cos(alpha)/2;cos(alpha)/3];
             zv=[alpha/8;alpha/8];
             xsegs(xv,yv,zv,1:120);
-            // Now adjust the data_bounds
             a.data_bounds = [min(xv) min(yv) min(zv); ...
             max(xv) max(yv) max(zv)];
-            // We can add an arrow to each segs
             e = gce();
             e.arrow_size = 0.4;
         </scilab:image>
index ea27a4e..1079388 100644 (file)
@@ -100,20 +100,27 @@ plot2d([1:10]',[1:10]',1,"011"," ",[-6,-6,6,6])
 // 4 dessins sur une seule fenêtre
 clf()
 xset("font",2,0)
-xsetech([0,0,0.5,0.5]); plot3d()
-xsetech([0.5,0,0.5,0.5]); plot2d()
-xsetech([0.5,0.5,0.5,0.5]); grayplot()
-xsetech([0,0.5,0.5,0.5]); histplot()
+xsetech([0,0,0.5,0.5]);
+plot3d()
+xsetech([0.5,0,0.5,0.5]);
+plot2d()
+xsetech([0.5,0.5,0.5,0.5]);
+grayplot()
+xsetech([0,0.5,0.5,0.5]);
+histplot()
 // retour aux valeurs par défaut 
 xsetech([0,0,1,1])
  ]]></programlisting>
         <scilab:image>
             xset("font",2,0)
-            xsetech([0,0,0.5,0.5]); plot3d()
-            xsetech([0.5,0,0.5,0.5]); plot2d()
-            xsetech([0.5,0.5,0.5,0.5]); grayplot()
-            xsetech([0,0.5,0.5,0.5]); histplot()
-            // retour aux valeurs par défaut 
+            xsetech([0,0,0.5,0.5]);
+            plot3d()
+            xsetech([0.5,0,0.5,0.5]);
+            plot2d()
+            xsetech([0.5,0.5,0.5,0.5]);
+            grayplot()
+            xsetech([0,0.5,0.5,0.5]);
+            histplot()
             xsetech([0,0,1,1])
         </scilab:image>
         <programlisting role="example"><![CDATA[ 
@@ -125,8 +132,6 @@ xsetech(arect=[0,0,0,0])
 x=1:0.1:10;plot2d(x',sin(x)')
  ]]></programlisting>
         <scilab:image>
-            clf()
-            xset("default")
             xsetech(arect=[0,0,0,0]) 
             x=1:0.1:10;plot2d(x',sin(x)')
         </scilab:image>
@@ -140,8 +145,6 @@ xset("default")
         <scilab:image>
             xsetech(arect=[1/8,1/8,1/16,1/4])
             x=1:0.1:10;plot2d(x',sin(x)')
-            clf()
-            xset("default")
         </scilab:image>
     </refsection>
     <refsection role="see also">
index 47a6dd6..d9ce7da 100644 (file)
@@ -111,7 +111,7 @@ clf()
 set(gcf(),"color_map",[jetcolormap(64);hotcolormap(64)])
 x = linspace(-1,1,60);
 y = linspace(-1,1,60);
-drawlater() ;
+drawlater();
 subplot(2,2,1)
    colorbar(-1,1,[1,64])
    Sfgrayplot(x,y,surf1,strf="041",colminmax=[1,64])
@@ -128,7 +128,7 @@ subplot(2,2,4)
    colorbar(0,2,[1,64])
    Sfgrayplot(x,y,surf4,strf="041",colminmax=[1,64])
    xtitle("f(x,y) = x^2+y^2")
-drawnow() ;
+drawnow();
 show_window()
  ]]></programlisting>
         <scilab:image>
@@ -140,7 +140,7 @@ show_window()
             set(gcf(),"color_map",[jetcolormap(64);hotcolormap(64)])
             x = linspace(-1,1,60);
             y = linspace(-1,1,60);
-            drawlater() ;
+            drawlater();
             subplot(2,2,1)
             colorbar(-1,1,[1,64])
             Sfgrayplot(x,y,surf1,strf="041",colminmax=[1,64])
@@ -157,8 +157,7 @@ show_window()
             colorbar(0,2,[1,64])
             Sfgrayplot(x,y,surf4,strf="041",colminmax=[1,64])
             xtitle("f(x,y) = x^2+y^2")
-            drawnow() ;
-            show_window()
+            drawnow();
         </scilab:image>
         <programlisting role="example"><![CDATA[
 // exemplo #2: esboço de surf3 e adição de algumas linhas de contorno
@@ -167,12 +166,12 @@ clf()
 x = linspace(-1,1,60);
 y = linspace(-1,1,60);
 set(gcf(),"color_map",hotcolormap(128))
-drawlater() ;
+drawlater();
 colorbar(-1,2)
 Sfgrayplot(x,y,surf3,strf="041")
 fcontour2d(x,y,surf3,[-0.1, 0.025, 0.4],style=[1 1 1],strf="000")
 xtitle("f(x,y) = x^3+y^2")
-drawnow() ;
+drawnow();
 show_window()
  ]]></programlisting>
         <scilab:image>
@@ -181,7 +180,7 @@ show_window()
             x = linspace(-1,1,60);
             y = linspace(-1,1,60);
             set(gcf(),"color_map",hotcolormap(128))
-            drawlater() ;
+            drawlater();
             colorbar(-1,2)
             Sfgrayplot(x,y,surf3,strf="041")
             contour2d(x,y,surf3,[-0.1, 0.025, 0.4],style=[1 1 1],strf="000")
@@ -197,7 +196,7 @@ clf()
 x = linspace(-1,1,60);
 y = linspace(-1,1,60);
 set(gcf(),"color_map",jetcolormap(128))
-drawlater() ;
+drawlater();
 zminmax = [-0.5 1]; colors=[32 96];
 colorbar(zminmax(1),zminmax(2),colors)
 Sfgrayplot(x, y, surf3, strf="041", zminmax=zminmax, colout=[0 0], colminmax=colors)
@@ -206,7 +205,7 @@ xtitle("f(x,y) = x^3+y^2, com partes abaixo de z = -0.5 e acima de z = 1 removid
 drawnow() ;
 show_window()
  ]]></programlisting>
-        <scilab:image>
+        <scilab:image localized="true">
             function z=surf3(x,y), z=x^3+y^2, endfunction
             clf()
             x = linspace(-1,1,60);
index 13eb7a8..17a0e02 100644 (file)
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index 13eb7a8..17a0e02 100644 (file)
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index 13eb7a8..17a0e02 100644 (file)
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index 13eb7a8..17a0e02 100644 (file)
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