Octave Basics: Difference between revisions

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(Wiki version of Fotio's GNUOCTAVECARD)
 
 
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= The very basics =
For the meaning of operators, see the [https://octave.org/doc/interpreter/Operator-Index.html GNU Octave manual].
<tt>+ | - | * | / | ^ | pi | i | inf | eps | sin | cos | tan | exp | log | log10 | abs | sqrt | sign | round | ceil | floor | fix | = | , | ; | who | clear | help | lookfor</tt>
x = pi, y = floor (sin (x)), z = log (exp (2013)), z / inf &crarr;
= Vectors and matrices =
<tt>: | .* | ./ | .^ | ' | .' | \ | length | numel | size | zeros | ones | eye | diag | rand | det | trace | inv | lu | eig | cond | expm</tt>
x = 1:5, x(:), x(2:4), A = [11 12; 21, 22], A(1,1:end) &crarr;
= Graphics =
<tt>plot | semilogx | semilogy | loglog | contour | quiver | surf | mesh | meshgrid | xlabel | ylabel | zlabel | title | grid | axis | hold | subplot | figure | print</tt>
t = 0:0.01*pi:21*pi; x = sin (t).*(exp (cos (t)) - 2*cos (4*t) + sin (t/12).^5); y = cos (t).*(exp (cos (t)) - 2*cos (4*t) + sin (t/12).^5); plot(x, y) &crarr;
= Scrpts and functions =
<tt>@ | function | return | nargin | nargout | varargin | varargout | feval | eval</tt>
f = @(x) x.^2, f(1:10) &crarr;


function v = cossum (x, n) v = cumsum (repmat (cos (x), 1, n));
=== The very basics ===
= Programming elements =
 
<tt>== | > | < | >= | <= | != | | || | | & | && | ! | if | else | elseif | for | while |end | break | continue | pause</tt>
<code>+</code> , <code>-</code> , <code>*</code> , <code>/</code> , <code>^</code> , {{manual|pi}} , {{manual|I}} , {{manual|e}} , {{manual|inf}} , {{manual|eps}} , {{manual|sin}} , {{manual|cos}} , {{manual|tan}} , {{manual|exp}} , {{manual|log}} , {{manual|log10}} , {{manual|abs}} , {{manual|sqrt}} , {{manual|sign}} , {{manual|round}} , {{manual|ceil}} , {{manual|floor}} , {{manual|fix}} , <code>=</code> , <code>,</code> , <code>;</code> , {{manual|who}} , {{manual|clear}} , {{manual|help}} , {{manual|lookfor}}
for i = 1:5 if (i < 3) disp (i) else disp (i^2) end end &crarr;
 
<syntaxhighlight lang="octave">
x = pi, y = floor (sin (x)), z = log (exp (2013)), z / inf
</syntaxhighlight>
 
=== Vectors and matrices ===
 
<code>:</code> , <code>.*</code> , <code>./</code> , <code>.^</code> , <code>'</code> , <code>.'</code> , <code>\</code> , {{manual|length}} , {{manual|numel}} , {{manual|size}} , {{manual|zeros}} , {{manual|ones}} , {{manual|eye}} , {{manual|diag}} , {{manual|rand}} , {{manual|det}} , {{manual|trace}} , {{manual|inv}} , {{manual|lu}} , {{manual|eig}} , {{manual|cond}} , {{manual|expm}}
 
<syntaxhighlight lang="octave">
x = 1:5, x(:), x(2:4), A = [11 12; 21, 22], A(1,1:end)
</syntaxhighlight>
 
=== Graphics ===
 
{{manual|plot}} , {{manual|semilogx}} , {{manual|semilogy}} , {{manual|loglog}} , {{manual|contour}} , {{manual|quiver}} , {{manual|surf}} , {{manual|mesh}} , {{manual|meshgrid}} , {{manual|xlabel}} , {{manual|ylabel}} , {{manual|zlabel}} , {{manual|title}} , {{manual|grid}} , {{manual|axis}} , {{manual|hold}} , {{manual|subplot}} , {{manual|figure}} , {{manual|print}}
 
<syntaxhighlight lang="octave">
t = 0:0.01*pi:21*pi; x = sin (t).*(exp (cos (t)) - 2*cos (4*t) + sin (t/12).^5); y = cos (t).*(exp (cos (t)) - 2*cos (4*t) + sin (t/12).^5); plot(x, y)
</syntaxhighlight>
 
=== Scripts and functions ===
 
<code>@</code> , <code>function</code> , <code>return</code> , {{manual|nargin}} , {{manual|nargout}} , {{manual|varargin}} , {{manual|varargout}} , {{manual|feval}} , {{manual|eval}}
 
<syntaxhighlight lang="octave">
f = @(x) x.^2, f(1:10)
 
function v = cossum (x, n) v = cumsum (repmat (cos (x), 1, n));
</syntaxhighlight>
 
=== Programming elements ===
 
<code>==</code> , <code>></code> , <code><</code> , <code>>=</code> , <code><=</code> , <code>!=</code> , <code>|</code> , <code>||</code> , <code>&</code> , <code>&&</code> , <code>!</code> , <code>~</code> , <code>if</code> , <code>else</code> , <code>elseif</code> , <code>for</code> , <code>while</code> , <code>end</code> , <code>break</code> , <code>continue</code> , <code>pause</code>
 
<syntaxhighlight lang="octave">
for i = 1:5 if (i < 3) disp (i) else disp (i^2) endif endfor
</syntaxhighlight>
 
== See also ==
 
* [https://lists.gnu.org/archive/html/help-octave/2013-01/pdfoEurT8AZ7Z.pdf GNU OCTAVE CARD by Fotios Kasolis]
 
[[Category:Tutorials]]

Latest revision as of 18:36, 14 June 2019

For the meaning of operators, see the GNU Octave manual.

The very basics[edit]

+ , - , * , / , ^ , pi , I , e , inf , eps , sin , cos , tan , exp , log , log10 , abs , sqrt , sign , round , ceil , floor , fix , = , , , ; , who , clear , help , lookfor

x = pi, y = floor (sin (x)), z = log (exp (2013)), z / inf

Vectors and matrices[edit]

: , .* , ./ , .^ , ' , .' , \ , length , numel , size , zeros , ones , eye , diag , rand , det , trace , inv , lu , eig , cond , expm

x = 1:5, x(:), x(2:4), A = [11 12; 21, 22], A(1,1:end)

Graphics[edit]

plot , semilogx , semilogy , loglog , contour , quiver , surf , mesh , meshgrid , xlabel , ylabel , zlabel , title , grid , axis , hold , subplot , figure , print

t = 0:0.01*pi:21*pi; x = sin (t).*(exp (cos (t)) - 2*cos (4*t) + sin (t/12).^5); y = cos (t).*(exp (cos (t)) - 2*cos (4*t) + sin (t/12).^5); plot(x, y)

Scripts and functions[edit]

@ , function , return , nargin , nargout , varargin , varargout , feval , eval

f = @(x) x.^2, f(1:10)

function v = cossum (x, n) v = cumsum (repmat (cos (x), 1, n));

Programming elements[edit]

== , > , < , >= , <= , != , | , || , & , && , ! , ~ , if , else , elseif , for , while , end , break , continue , pause

for i = 1:5 if (i < 3) disp (i) else disp (i^2) endif endfor

See also[edit]