{"title":"API GEOS","version":"5.2","locale":"id","docname":"ref/contrib/gis/geos","url":"/id/5.2/ref/contrib/gis/geos/","canonical":"https://djangodocs.dev/id/5.2/ref/contrib/gis/geos/","summary":"Latar belakang Link to this heading # Apa itu GEOS? Link to this heading # GEOS kepanjangan untuk Geometry Engine - Open Source , dan adalah sebuah pustaka C++,…","html":"<span id=\"geos-api\"></span><h1>API GEOS<a class=\"heading-anchor\" href=\"#module-django.contrib.gis.geos\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h1>\n<section id=\"background\">\n<h2>Latar belakang<a class=\"heading-anchor\" href=\"#background\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h2>\n<section id=\"what-is-geos\">\n<h3>Apa itu GEOS?<a class=\"heading-anchor\" href=\"#what-is-geos\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h3>\n<p><a class=\"reference external\" href=\"https://libgeos.org/\">GEOS</a> kepanjangan untuk <strong>Geometry Engine - Open Source</strong>, dan adalah sebuah pustaka C++, dihubungkan dari <a class=\"reference external\" href=\"https://sourceforge.net/projects/jts-topo-suite/\">Java Topology Suite</a>.  GEOS menerapkan OpenGIS <a class=\"reference external\" href=\"https://www.ogc.org/standard/sfs/\">Simple Features for SQL</a> fungsi predikat spasial dan penghubung spasial. GEOS, sekarang sebuah proyek OSGeo, yang aslinya dikembangkan dan dirawat oleh <a class=\"reference external\" href=\"http://www.refractions.net/\">Refractions Research</a> dari Victoria, Canada.</p>\n</section>\n<section id=\"features\">\n<h3>Fitur<a class=\"heading-anchor\" href=\"#features\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h3>\n<p>GeoDjango menerapkan pembungkus Python tingkat-tinggi untuk pustaka GEOS, fitur-fiturnya termasuk:</p>\n<ul class=\"simple\">\n<li><p>Sebuah antarmuka berlisensi-BSD pada rutin geometri GEOS, diterapkan sepenuhnya dalam Python menggunakan <code class=\"docutils literal notranslate\">ctypes</code>.</p></li>\n<li><p>Loosely-coupled to GeoDjango.  For example, <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> objects\nmay be used outside of a Django project/application.  In other words,\nno need to have <span class=\"target\" id=\"index-0\"></span><a class=\"reference internal\" href=\"/id/5.2/topics/settings/#envvar-DJANGO_SETTINGS_MODULE\"><code class=\"xref std std-envvar docutils literal notranslate\">DJANGO_SETTINGS_MODULE</code></a> set or use a database, etc.</p></li>\n<li><p>Berubah-ubah: obyek <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> mungkin dirubah.</p></li>\n<li><p>Cross-platform tested.</p></li>\n</ul>\n</section>\n</section>\n<section id=\"tutorial\">\n<span id=\"geos-tutorial\"></span><h2>Pengajaran tambahan<a class=\"heading-anchor\" href=\"#tutorial\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h2>\n<p>Bagian ini mengandung perkenalan singkat dan pengajaran tambahan menggunakan obyek <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a>.</p>\n<section id=\"creating-a-geometry\">\n<h3>Membuat Geometri<a class=\"heading-anchor\" href=\"#creating-a-geometry\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h3>\n<p><a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> objects may be created in a few ways.  The first is\nto simply instantiate the object on some spatial input -- the following\nare examples of creating the same geometry from WKT, HEX, WKB, and GeoJSON:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"kn\">from</span> <span class=\"nn\">django.contrib.gis.geos</span> <span class=\"kn\">import</span> GEOSGeometry\n<span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> GEOSGeometry<span class=\"p\">(</span><span class=\"s2\">&quot;POINT(5 23)&quot;</span><span class=\"p\">)</span>  <span class=\"c1\"># WKT</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> GEOSGeometry<span class=\"p\">(</span><span class=\"s2\">&quot;010100000000000000000014400000000000003740&quot;</span><span class=\"p\">)</span>  <span class=\"c1\"># HEX</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> GEOSGeometry<span class=\"p\">(</span>\n<span class=\"gp\">... </span>    <span class=\"nb\">memoryview</span><span class=\"p\">(</span>\n<span class=\"gp\">... </span>        <span class=\"sa\">b</span><span class=\"s2\">&quot;</span><span class=\"se\">\\x01\\x01\\x00\\x00\\x00\\x00\\x00\\x00\\x00\\x00\\x00\\x14</span><span class=\"s2\">@</span><span class=\"se\">\\x00\\x00\\x00\\x00\\x00\\x00</span><span class=\"s2\">7@&quot;</span>\n<span class=\"gp\">... </span>    <span class=\"p\">)</span>\n<span class=\"gp\">... </span><span class=\"p\">)</span>  <span class=\"c1\"># WKB</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> GEOSGeometry<span class=\"p\">(</span>\n<span class=\"gp\">... </span>    <span class=\"s1\">&#39;{ &quot;type&quot;: &quot;Point&quot;, &quot;coordinates&quot;: [ 5.000000, 23.000000 ] }&#39;</span>\n<span class=\"gp\">... </span><span class=\"p\">)</span>  <span class=\"c1\"># GeoJSON</span>\n</code></pre></div>\n<p>Another option is to use the constructor for the specific geometry type\nthat you wish to create.  For example, a <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Point\" title=\"django.contrib.gis.geos.Point\"><code class=\"xref py py-class docutils literal notranslate\">Point</code></a> object may be\ncreated by passing in the X and Y coordinates into its constructor:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"kn\">from</span> <span class=\"nn\">django.contrib.gis.geos</span> <span class=\"kn\">import</span> Point\n<span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> Point<span class=\"p\">(</span><span class=\"mi\">5</span><span class=\"p\">,</span> <span class=\"mi\">23</span><span class=\"p\">)</span>\n</code></pre></div>\n<p>All these constructors take the keyword argument <code class=\"docutils literal notranslate\">srid</code>. For example:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"kn\">from</span> <span class=\"nn\">django.contrib.gis.geos</span> <span class=\"kn\">import</span> GEOSGeometry<span class=\"p\">,</span> LineString<span class=\"p\">,</span> Point\n<span class=\"gp\">&gt;&gt;&gt; </span><span class=\"nb\">print</span><span class=\"p\">(</span>GEOSGeometry<span class=\"p\">(</span><span class=\"s2\">&quot;POINT (0 0)&quot;</span><span class=\"p\">,</span> srid<span class=\"o\">=</span><span class=\"mi\">4326</span><span class=\"p\">))</span>\n<span class=\"go\">SRID=4326;POINT (0 0)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span><span class=\"nb\">print</span><span class=\"p\">(</span>LineString<span class=\"p\">((</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">),</span> srid<span class=\"o\">=</span><span class=\"mi\">4326</span><span class=\"p\">))</span>\n<span class=\"go\">SRID=4326;LINESTRING (0 0, 1 1)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span><span class=\"nb\">print</span><span class=\"p\">(</span>Point<span class=\"p\">(</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">,</span> srid<span class=\"o\">=</span><span class=\"mi\">32140</span><span class=\"p\">))</span>\n<span class=\"go\">SRID=32140;POINT (0 0)</span>\n</code></pre></div>\n<p>Finally, there is the <a class=\"reference internal\" href=\"#django.contrib.gis.geos.fromfile\" title=\"django.contrib.gis.geos.fromfile\"><code class=\"xref py py-func docutils literal notranslate\">fromfile()</code></a> factory method which returns a\n<a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> object from a file:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"kn\">from</span> <span class=\"nn\">django.contrib.gis.geos</span> <span class=\"kn\">import</span> fromfile\n<span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> fromfile<span class=\"p\">(</span><span class=\"s2\">&quot;/path/to/pnt.wkt&quot;</span><span class=\"p\">)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> fromfile<span class=\"p\">(</span><span class=\"nb\">open</span><span class=\"p\">(</span><span class=\"s2\">&quot;/path/to/pnt.wkt&quot;</span><span class=\"p\">))</span>\n</code></pre></div>\n<aside class=\"admonition-my-logs-are-filled-with-geos-related-errors admonition\" id=\"geos-exceptions-in-logfile\" role=\"note\">\n<p class=\"admonition-title\">Catatan-catatan saya dipenuhi dengan kesalahan berhubungan-GEOS</p>\n<p>You find many <code class=\"docutils literal notranslate\">TypeError</code> or <code class=\"docutils literal notranslate\">AttributeError</code> exceptions filling your\nweb server's log files. This generally means that you are creating GEOS\nobjects at the top level of some of your Python modules. Then, due to a race\ncondition in the garbage collector, your module is garbage collected before\nthe GEOS object. To prevent this, create <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> objects\ninside the local scope of your functions/methods.</p>\n</aside>\n</section>\n<section id=\"geometries-are-pythonic\">\n<h3>Geometri adalah Pythonic<a class=\"heading-anchor\" href=\"#geometries-are-pythonic\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h3>\n<p><a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> objects are 'Pythonic', in other words components may\nbe accessed, modified, and iterated over using standard Python conventions.\nFor example, you can iterate over the coordinates in a <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Point\" title=\"django.contrib.gis.geos.Point\"><code class=\"xref py py-class docutils literal notranslate\">Point</code></a>:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> Point<span class=\"p\">(</span><span class=\"mi\">5</span><span class=\"p\">,</span> <span class=\"mi\">23</span><span class=\"p\">)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span><span class=\"p\">[</span>coord <span class=\"k\">for</span> coord <span class=\"ow\">in</span> pnt<span class=\"p\">]</span>\n<span class=\"go\">[5.0, 23.0]</span>\n</code></pre></div>\n<p>With any geometry object, the <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry.coords\" title=\"django.contrib.gis.geos.GEOSGeometry.coords\"><code class=\"xref py py-attr docutils literal notranslate\">GEOSGeometry.coords</code></a> property\nmay be used to get the geometry coordinates as a Python tuple:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span>pnt<span class=\"o\">.</span>coords\n<span class=\"go\">(5.0, 23.0)</span>\n</code></pre></div>\n<p>You can get/set geometry components using standard Python indexing\ntechniques.  However, what is returned depends on the geometry type\nof the object.  For example, indexing on a <a class=\"reference internal\" href=\"#django.contrib.gis.geos.LineString\" title=\"django.contrib.gis.geos.LineString\"><code class=\"xref py py-class docutils literal notranslate\">LineString</code></a>\nreturns a coordinate tuple:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"kn\">from</span> <span class=\"nn\">django.contrib.gis.geos</span> <span class=\"kn\">import</span> LineString\n<span class=\"gp\">&gt;&gt;&gt; </span>line <span class=\"o\">=</span> LineString<span class=\"p\">((</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">50</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">50</span><span class=\"p\">,</span> <span class=\"mi\">50</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">50</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">))</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>line<span class=\"p\">[</span><span class=\"mi\">0</span><span class=\"p\">]</span>\n<span class=\"go\">(0.0, 0.0)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>line<span class=\"p\">[</span><span class=\"o\">-</span><span class=\"mi\">2</span><span class=\"p\">]</span>\n<span class=\"go\">(50.0, 0.0)</span>\n</code></pre></div>\n<p>Whereas indexing on a <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Polygon\" title=\"django.contrib.gis.geos.Polygon\"><code class=\"xref py py-class docutils literal notranslate\">Polygon</code></a> will return the ring\n(a <a class=\"reference internal\" href=\"#django.contrib.gis.geos.LinearRing\" title=\"django.contrib.gis.geos.LinearRing\"><code class=\"xref py py-class docutils literal notranslate\">LinearRing</code></a> object) corresponding to the index:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"kn\">from</span> <span class=\"nn\">django.contrib.gis.geos</span> <span class=\"kn\">import</span> Polygon\n<span class=\"gp\">&gt;&gt;&gt; </span>poly <span class=\"o\">=</span> Polygon<span class=\"p\">(((</span><span class=\"mf\">0.0</span><span class=\"p\">,</span> <span class=\"mf\">0.0</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mf\">0.0</span><span class=\"p\">,</span> <span class=\"mf\">50.0</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mf\">50.0</span><span class=\"p\">,</span> <span class=\"mf\">50.0</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mf\">50.0</span><span class=\"p\">,</span> <span class=\"mf\">0.0</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mf\">0.0</span><span class=\"p\">,</span> <span class=\"mf\">0.0</span><span class=\"p\">)))</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>poly<span class=\"p\">[</span><span class=\"mi\">0</span><span class=\"p\">]</span>\n<span class=\"go\">&lt;LinearRing object at 0x1044395b0&gt;</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>poly<span class=\"p\">[</span><span class=\"mi\">0</span><span class=\"p\">][</span><span class=\"o\">-</span><span class=\"mi\">2</span><span class=\"p\">]</span>  <span class=\"c1\"># second-to-last coordinate of external ring</span>\n<span class=\"go\">(50.0, 0.0)</span>\n</code></pre></div>\n<p>In addition, coordinates/components of the geometry may added or modified,\njust like a Python list:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span>line<span class=\"p\">[</span><span class=\"mi\">0</span><span class=\"p\">]</span> <span class=\"o\">=</span> <span class=\"p\">(</span><span class=\"mf\">1.0</span><span class=\"p\">,</span> <span class=\"mf\">1.0</span><span class=\"p\">)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>line<span class=\"o\">.</span>pop<span class=\"p\">()</span>\n<span class=\"go\">(0.0, 0.0)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>line<span class=\"o\">.</span>append<span class=\"p\">((</span><span class=\"mf\">1.0</span><span class=\"p\">,</span> <span class=\"mf\">1.0</span><span class=\"p\">))</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>line<span class=\"o\">.</span>coords\n<span class=\"go\">((1.0, 1.0), (0.0, 50.0), (50.0, 50.0), (50.0, 0.0), (1.0, 1.0))</span>\n</code></pre></div>\n<p>Geometries support set-like operators:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"kn\">from</span> <span class=\"nn\">django.contrib.gis.geos</span> <span class=\"kn\">import</span> LineString\n<span class=\"gp\">&gt;&gt;&gt; </span>ls1 <span class=\"o\">=</span> LineString<span class=\"p\">((</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">2</span><span class=\"p\">,</span> <span class=\"mi\">2</span><span class=\"p\">))</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>ls2 <span class=\"o\">=</span> LineString<span class=\"p\">((</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">3</span><span class=\"p\">,</span> <span class=\"mi\">3</span><span class=\"p\">))</span>\n<span class=\"gp\">&gt;&gt;&gt; </span><span class=\"nb\">print</span><span class=\"p\">(</span>ls1 <span class=\"o\">|</span> ls2<span class=\"p\">)</span>  <span class=\"c1\"># equivalent to `ls1.union(ls2)`</span>\n<span class=\"go\">MULTILINESTRING ((0 0, 1 1), (1 1, 2 2), (2 2, 3 3))</span>\n<span class=\"gp\">&gt;&gt;&gt; </span><span class=\"nb\">print</span><span class=\"p\">(</span>ls1 <span class=\"o\">&amp;</span> ls2<span class=\"p\">)</span>  <span class=\"c1\"># equivalent to `ls1.intersection(ls2)`</span>\n<span class=\"go\">LINESTRING (1 1, 2 2)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span><span class=\"nb\">print</span><span class=\"p\">(</span>ls1 <span class=\"o\">-</span> ls2<span class=\"p\">)</span>  <span class=\"c1\"># equivalent to `ls1.difference(ls2)`</span>\n<span class=\"go\">LINESTRING(0 0, 1 1)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span><span class=\"nb\">print</span><span class=\"p\">(</span>ls1 <span class=\"o\">^</span> ls2<span class=\"p\">)</span>  <span class=\"c1\"># equivalent to `ls1.sym_difference(ls2)`</span>\n<span class=\"go\">MULTILINESTRING ((0 0, 1 1), (2 2, 3 3))</span>\n</code></pre></div>\n<aside class=\"admonition-equality-operator-doesn-t-check-spatial-equality admonition\" role=\"note\">\n<p class=\"admonition-title\">Kesetaraan penghubung tidak memeriksa kesetaraam spasial</p>\n<p>The <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> equality operator uses\n<a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry.equals_exact\" title=\"django.contrib.gis.geos.GEOSGeometry.equals_exact\"><code class=\"xref py py-meth docutils literal notranslate\">equals_exact()</code></a>, not <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry.equals\" title=\"django.contrib.gis.geos.GEOSGeometry.equals\"><code class=\"xref py py-meth docutils literal notranslate\">equals()</code></a>, i.e.\nit requires the compared geometries to have the same coordinates in the\nsame positions with the same SRIDs:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"kn\">from</span> <span class=\"nn\">django.contrib.gis.geos</span> <span class=\"kn\">import</span> LineString\n<span class=\"gp\">&gt;&gt;&gt; </span>ls1 <span class=\"o\">=</span> LineString<span class=\"p\">((</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">))</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>ls2 <span class=\"o\">=</span> LineString<span class=\"p\">((</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">))</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>ls3 <span class=\"o\">=</span> LineString<span class=\"p\">((</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> srid<span class=\"o\">=</span><span class=\"mi\">4326</span><span class=\"p\">)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>ls1<span class=\"o\">.</span>equals<span class=\"p\">(</span>ls2<span class=\"p\">)</span>\n<span class=\"go\">True</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>ls1 <span class=\"o\">==</span> ls2\n<span class=\"go\">False</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>ls3 <span class=\"o\">==</span> ls2  <span class=\"c1\"># different SRIDs</span>\n<span class=\"go\">False</span>\n</code></pre></div>\n</aside>\n</section>\n</section>\n<section id=\"geometry-objects\">\n<h2>Obyek Geometri<a class=\"heading-anchor\" href=\"#geometry-objects\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h2>\n<section id=\"geosgeometry\">\n<h3><code class=\"docutils literal notranslate\">GEOSGeometry</code><a class=\"heading-anchor\" href=\"#geosgeometry\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h3>\n<dl class=\"py class\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry\">\n<em class=\"property\"><span class=\"k\">class</span> </em><span class=\"sig-name descname\">GEOSGeometry</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">geo_input</em>, <em class=\"sig-param\">srid<span class=\"o\">=</span><span class=\"default_value\">None</span></em>, <em class=\"sig-param\"><span class=\"keyword-only-separator o\"><abbr title=\"Keyword-only parameters separator (PEP 3102)\">*</abbr></span></em>, <em class=\"sig-param\">max_geom_collections<span class=\"o\">=</span><span class=\"default_value\">198</span></em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><dl class=\"field-list simple\">\n<dt class=\"field-odd\">Parameter<span class=\"colon\">:</span></dt>\n<dd class=\"field-odd\"><ul class=\"simple\">\n<li><p><strong>geo_input</strong> -- Geometry input value (string or <a class=\"reference external\" href=\"https://docs.python.org/3/library/stdtypes.html#memoryview\" title=\"(di Python v3.14)\"><code class=\"xref py py-class docutils literal notranslate\">memoryview</code></a>)</p></li>\n<li><p><strong>srid</strong> (<a class=\"reference external\" href=\"https://docs.python.org/3/library/functions.html#int\" title=\"(di Python v3.14)\"><em>int</em></a>) -- penciri acuan spasial</p></li>\n<li><p><strong>max_geom_collections</strong> -- maximum number of nested (WKT) or total (WKB)\ngeometry collections accepted before parsing is refused</p></li>\n</ul>\n</dd>\n</dl>\n</dd></dl>\n\n<p>Ini adalah kelas dasar untuk semua obyek geometri GEOS. Itu menginisialisasikan pada argumen <code class=\"docutils literal notranslate\">geo_input</code> yang diberikan, dan kemudian mengganggap subkelas geometri sesuai (misalnya, <code class=\"docutils literal notranslate\">GEOSGeometry('POINT(1 1)')</code> akan membuat sebuah obyek <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Point\" title=\"django.contrib.gis.geos.Point\"><code class=\"xref py py-class docutils literal notranslate\">Point</code></a>).</p>\n<p>The <code class=\"docutils literal notranslate\">srid</code> parameter, if given, is set as the SRID of the created geometry if\n<code class=\"docutils literal notranslate\">geo_input</code> doesn't have an SRID. If different SRIDs are provided through the\n<code class=\"docutils literal notranslate\">geo_input</code> and <code class=\"docutils literal notranslate\">srid</code> parameters, <code class=\"docutils literal notranslate\">ValueError</code> is raised:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"kn\">from</span> <span class=\"nn\">django.contrib.gis.geos</span> <span class=\"kn\">import</span> GEOSGeometry\n<span class=\"gp\">&gt;&gt;&gt; </span>GEOSGeometry<span class=\"p\">(</span><span class=\"s2\">&quot;POINT EMPTY&quot;</span><span class=\"p\">,</span> srid<span class=\"o\">=</span><span class=\"mi\">4326</span><span class=\"p\">)</span><span class=\"o\">.</span>ewkt\n<span class=\"go\">&#39;SRID=4326;POINT EMPTY&#39;</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>GEOSGeometry<span class=\"p\">(</span><span class=\"s2\">&quot;SRID=4326;POINT EMPTY&quot;</span><span class=\"p\">,</span> srid<span class=\"o\">=</span><span class=\"mi\">4326</span><span class=\"p\">)</span><span class=\"o\">.</span>ewkt\n<span class=\"go\">&#39;SRID=4326;POINT EMPTY&#39;</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>GEOSGeometry<span class=\"p\">(</span><span class=\"s2\">&quot;SRID=1;POINT EMPTY&quot;</span><span class=\"p\">,</span> srid<span class=\"o\">=</span><span class=\"mi\">4326</span><span class=\"p\">)</span>\n<span class=\"gt\">Traceback (most recent call last):</span>\n<span class=\"c\">...</span>\n<span class=\"gr\">ValueError</span>: Input geometry already has SRID: 1.\n</code></pre></div>\n<p>Bentuk-bentuk masukan berikut, bersama dengan jenis-jenis Python yang sesuai, adalah diterima:</p>\n<div class=\"table-scroll\" role=\"region\" tabindex=\"0\" aria-label=\"Table\"><table class=\"docutils align-default\">\n<thead>\n<tr class=\"row-odd\"><th class=\"head\"><p>Bentuk</p></th>\n<th class=\"head\"><p>Jenis Masukan</p></th>\n</tr>\n</thead>\n<tbody>\n<tr class=\"row-even\"><td><p>WKT / EWKT</p></td>\n<td><p><code class=\"docutils literal notranslate\">str</code></p></td>\n</tr>\n<tr class=\"row-odd\"><td><p>HEX / HEXEWKB</p></td>\n<td><p><code class=\"docutils literal notranslate\">str</code></p></td>\n</tr>\n<tr class=\"row-even\"><td><p>WKB / EWKB</p></td>\n<td><p><code class=\"docutils literal notranslate\">memoryview</code></p></td>\n</tr>\n<tr class=\"row-odd\"><td><p><span class=\"target\" id=\"index-1\"></span><a class=\"rfc reference external\" href=\"https://datatracker.ietf.org/doc/html/rfc7946.html\"><strong>GeoJSON</strong></a></p></td>\n<td><p><code class=\"docutils literal notranslate\">str</code></p></td>\n</tr>\n</tbody>\n</table>\n</div>\n<p>Untuk bentuk GeoJSON, SRID disetel berdasarkan pada anggota <code class=\"docutils literal notranslate\">crs</code>. jika <code class=\"docutils literal notranslate\">crs</code> tidak disediakan, SRID awalan pada 4326.</p>\n<aside class=\"version-note version-changed\" data-version=\"5.2.17\" role=\"note\">\n<p class=\"version-note-title\">Changed in Django 5.2.17</p><p>The <code class=\"docutils literal notranslate\">max_geom_collections</code> parameter was added.</p>\n</aside>\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.from_gml\">\n<em class=\"property\"><span class=\"k\">classmethod</span> </em><span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">from_gml</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">gml_string</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.from_gml\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Membangun sebuah <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> dari string GML yang diberikan.</p>\n</dd></dl>\n\n<section id=\"properties\">\n<h4>Sifat-sifat<a class=\"heading-anchor\" href=\"#properties\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h4>\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.coords\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">coords</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.coords\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan kordinat dari geometri sebagai tuple.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.dims\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">dims</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.dims\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan dimensi dari geometri:</p>\n<ul class=\"simple\">\n<li><p><code class=\"docutils literal notranslate\">0</code> untuk <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Point\" title=\"django.contrib.gis.geos.Point\"><code class=\"xref py py-class docutils literal notranslate\">Point</code></a> dan <a class=\"reference internal\" href=\"#django.contrib.gis.geos.MultiPoint\" title=\"django.contrib.gis.geos.MultiPoint\"><code class=\"xref py py-class docutils literal notranslate\">MultiPoint</code></a></p></li>\n<li><p><code class=\"docutils literal notranslate\">1</code> untuk <a class=\"reference internal\" href=\"#django.contrib.gis.geos.LineString\" title=\"django.contrib.gis.geos.LineString\"><code class=\"xref py py-class docutils literal notranslate\">LineString</code></a> dan <a class=\"reference internal\" href=\"#django.contrib.gis.geos.MultiLineString\" title=\"django.contrib.gis.geos.MultiLineString\"><code class=\"xref py py-class docutils literal notranslate\">MultiLineString</code></a></p></li>\n<li><p><code class=\"docutils literal notranslate\">2</code> untuk <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Polygon\" title=\"django.contrib.gis.geos.Polygon\"><code class=\"xref py py-class docutils literal notranslate\">Polygon</code></a> dan <a class=\"reference internal\" href=\"#django.contrib.gis.geos.MultiPolygon\" title=\"django.contrib.gis.geos.MultiPolygon\"><code class=\"xref py py-class docutils literal notranslate\">MultiPolygon</code></a></p></li>\n<li><p><code class=\"docutils literal notranslate\">-1</code> untuk <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GeometryCollection\" title=\"django.contrib.gis.geos.GeometryCollection\"><code class=\"xref py py-class docutils literal notranslate\">GeometryCollection</code></a> kosong</p></li>\n<li><p>dimensi maksimal dari unsur-unsurnya untuk <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GeometryCollection\" title=\"django.contrib.gis.geos.GeometryCollection\"><code class=\"xref py py-class docutils literal notranslate\">GeometryCollection</code></a> bukan-kosong.</p></li>\n</ul>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.empty\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">empty</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.empty\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan apakah atau tidak disetel dari titik-titik dalam geometri adalah kosong.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.geom_type\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">geom_type</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.geom_type\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Returns a string corresponding to the type of geometry.  For example:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> GEOSGeometry<span class=\"p\">(</span><span class=\"s2\">&quot;POINT(5 23)&quot;</span><span class=\"p\">)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>pnt<span class=\"o\">.</span>geom_type\n<span class=\"go\">&#39;Point&#39;</span>\n</code></pre></div>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.geom_typeid\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">geom_typeid</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.geom_typeid\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan angka penciri jenis geometri GEOS. Tabel berikut menunjukkan nilai untuk setipa jenis geometri:</p>\n<div class=\"table-scroll\" role=\"region\" tabindex=\"0\" aria-label=\"Table\"><table class=\"docutils align-default\">\n<thead>\n<tr class=\"row-odd\"><th class=\"head\"><p>Geometri</p></th>\n<th class=\"head\"><p>ID</p></th>\n</tr>\n</thead>\n<tbody>\n<tr class=\"row-even\"><td><p><a class=\"reference internal\" href=\"#django.contrib.gis.geos.Point\" title=\"django.contrib.gis.geos.Point\"><code class=\"xref py py-class docutils literal notranslate\">Point</code></a></p></td>\n<td><p>0</p></td>\n</tr>\n<tr class=\"row-odd\"><td><p><a class=\"reference internal\" href=\"#django.contrib.gis.geos.LineString\" title=\"django.contrib.gis.geos.LineString\"><code class=\"xref py py-class docutils literal notranslate\">LineString</code></a></p></td>\n<td><p>1</p></td>\n</tr>\n<tr class=\"row-even\"><td><p><a class=\"reference internal\" href=\"#django.contrib.gis.geos.LinearRing\" title=\"django.contrib.gis.geos.LinearRing\"><code class=\"xref py py-class docutils literal notranslate\">LinearRing</code></a></p></td>\n<td><p>2</p></td>\n</tr>\n<tr class=\"row-odd\"><td><p><a class=\"reference internal\" href=\"#django.contrib.gis.geos.Polygon\" title=\"django.contrib.gis.geos.Polygon\"><code class=\"xref py py-class docutils literal notranslate\">Polygon</code></a></p></td>\n<td><p>3</p></td>\n</tr>\n<tr class=\"row-even\"><td><p><a class=\"reference internal\" href=\"#django.contrib.gis.geos.MultiPoint\" title=\"django.contrib.gis.geos.MultiPoint\"><code class=\"xref py py-class docutils literal notranslate\">MultiPoint</code></a></p></td>\n<td><p>4</p></td>\n</tr>\n<tr class=\"row-odd\"><td><p><a class=\"reference internal\" href=\"#django.contrib.gis.geos.MultiLineString\" title=\"django.contrib.gis.geos.MultiLineString\"><code class=\"xref py py-class docutils literal notranslate\">MultiLineString</code></a></p></td>\n<td><p>5</p></td>\n</tr>\n<tr class=\"row-even\"><td><p><a class=\"reference internal\" href=\"#django.contrib.gis.geos.MultiPolygon\" title=\"django.contrib.gis.geos.MultiPolygon\"><code class=\"xref py py-class docutils literal notranslate\">MultiPolygon</code></a></p></td>\n<td><p>6</p></td>\n</tr>\n<tr class=\"row-odd\"><td><p><a class=\"reference internal\" href=\"#django.contrib.gis.geos.GeometryCollection\" title=\"django.contrib.gis.geos.GeometryCollection\"><code class=\"xref py py-class docutils literal notranslate\">GeometryCollection</code></a></p></td>\n<td><p>7</p></td>\n</tr>\n</tbody>\n</table>\n</div>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.num_coords\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">num_coords</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.num_coords\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan angka dari kordinat di geometri.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.num_geom\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">num_geom</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.num_geom\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan sejumlah geometri dalam geometri ini. Dengan kata lain, akan mengembalikan 1 pada apapun kecuali kumpulan geometri.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.hasz\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">hasz</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.hasz\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan sebuah boolean menunjukkan apalah geometri adalah tiga-dimensi.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.ring\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">ring</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.ring\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan sebuah boolean menunjukkan apakah geometri adalah <code class=\"docutils literal notranslate\">LinearRing</code>.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.simple\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">simple</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.simple\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Returns a boolean indicating whether the geometry is 'simple'. A geometry\nis simple if and only if it does not intersect itself (except at boundary\npoints).  For example, a <a class=\"reference internal\" href=\"#django.contrib.gis.geos.LineString\" title=\"django.contrib.gis.geos.LineString\"><code class=\"xref py py-class docutils literal notranslate\">LineString</code></a> object is not simple if it\nintersects itself. Thus, <a class=\"reference internal\" href=\"#django.contrib.gis.geos.LinearRing\" title=\"django.contrib.gis.geos.LinearRing\"><code class=\"xref py py-class docutils literal notranslate\">LinearRing</code></a> and <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Polygon\" title=\"django.contrib.gis.geos.Polygon\"><code class=\"xref py py-class docutils literal notranslate\">Polygon</code></a> objects\nare always simple because they cannot intersect themselves, by definition.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.valid\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">valid</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.valid\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan sebuah boolean menunjukkan apakah geometri adalah sah.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.valid_reason\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">valid_reason</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.valid_reason\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan deretan kalimat menggambarkan alasan mengapa geometri sah.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.srid\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">srid</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.srid\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Property that may be used to retrieve or set the SRID associated with the\ngeometry.  For example:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> Point<span class=\"p\">(</span><span class=\"mi\">5</span><span class=\"p\">,</span> <span class=\"mi\">23</span><span class=\"p\">)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span><span class=\"nb\">print</span><span class=\"p\">(</span>pnt<span class=\"o\">.</span>srid<span class=\"p\">)</span>\n<span class=\"go\">None</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>pnt<span class=\"o\">.</span>srid <span class=\"o\">=</span> <span class=\"mi\">4326</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>pnt<span class=\"o\">.</span>srid\n<span class=\"go\">4326</span>\n</code></pre></div>\n</dd></dl>\n\n</section>\n<section id=\"output-properties\">\n<h4>Sifat-sifat Keluaran<a class=\"heading-anchor\" href=\"#output-properties\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h4>\n<p>Sifat dalam bagian ini mengexpor obyek <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> menjadi sebuah yang berbeda.  Keluaran ini mungkin dalam bentuk string, penyangga, atau bahkan obyek lain.</p>\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.ewkt\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">ewkt</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.ewkt\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan &quot;extended&quot; Well-Known Text dari geometri ini. Perwakilan ini khusus untuk PostGIS dan superset dari standar WKT OGC. <a class=\"footnote-reference brackets\" href=\"#fnogc\" id=\"id5\" role=\"doc-noteref\"><span class=\"fn-bracket\">[</span>1<span class=\"fn-bracket\">]</span></a> Pada dasarnya SRID ditambahkan pada perwakilan WKT, sebagai contoh <code class=\"docutils literal notranslate\">SRID=4326;POINT(5 23)</code>.</p>\n<aside class=\"admonition admonition-note\" role=\"note\">\n<p class=\"admonition-title\">Catatan</p>\n<p>Keluaran dari sifat ini tidak menyertakan informasi 3dm, 3dz, dan 4d yang PostGIS dukung dalam perwakilan EWKT nya.</p>\n</aside>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.hex\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">hex</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.hex\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan WKB dari Geometri dalam bentuk heksadesimal. Harap catat bahwa nilai SRID tidak disertakan dalam perwakilan ini karena itu bukan bagian dari spesifikasi OGC (gunakan sifat <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry.hexewkb\" title=\"django.contrib.gis.geos.GEOSGeometry.hexewkb\"><code class=\"xref py py-attr docutils literal notranslate\">GEOSGeometry.hexewkb</code></a> sebagai gantinya).</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.hexewkb\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">hexewkb</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.hexewkb\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan WKB dari Geometri dalam bentuk heksadesimal. Ini adalah sebuah tambahan dari spesifikasi WKB yang menyertakan nilai SRID yang merupakan bagian dari geometri ini.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.json\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">json</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.json\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan perwakilan GeoJSON dari geometri. Catat bahwa ahsiladalah bukan struktur GeoJSON lengkap tetapi hanya isi kunci <code class=\"docutils literal notranslate\">geometry</code> dari struktur GeoJSON. Lihat juga <a class=\"reference internal\" href=\"/id/5.2/ref/contrib/gis/serializers/\"><span class=\"doc\">Penserial GeoJSON</span></a>.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.geojson\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">geojson</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.geojson\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Nama lain dari <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry.json\" title=\"django.contrib.gis.geos.GEOSGeometry.json\"><code class=\"xref py py-attr docutils literal notranslate\">GEOSGeometry.json</code></a>.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.kml\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">kml</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.kml\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan perwakilan <a class=\"reference external\" href=\"https://developers.google.com/kml/documentation/\">KML</a> (Keyhole Markup Language) dari geometri. Ini jangan hanya digunakan untuk geometri dengan SRID dari 4326 (WGS84), tetapi pembatasan ini tidak dilaksanakan.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.ogr\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">ogr</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.ogr\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan obyek <a class=\"reference internal\" href=\"/id/5.2/ref/contrib/gis/gdal/#django.contrib.gis.gdal.OGRGeometry\" title=\"django.contrib.gis.gdal.OGRGeometry\"><code class=\"xref py py-class docutils literal notranslate\">OGRGeometry</code></a> terkait pada permintaan pada geometri GEOS.</p>\n</dd></dl>\n\n<dl class=\"py attribute\" id=\"wkb\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.wkb\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">wkb</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.wkb\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan perwakilan WKB (Well-Known Binary) dari Geometry ini sebagai sebuah penyangga Python. Nilai SRID tidak disertakan, gunakan sifat <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry.ewkb\" title=\"django.contrib.gis.geos.GEOSGeometry.ewkb\"><code class=\"xref py py-attr docutils literal notranslate\">GEOSGeometry.ewkb</code></a> sebagai gantinya.</p>\n</dd></dl>\n\n<dl class=\"py attribute\" id=\"ewkb\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.ewkb\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">ewkb</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.ewkb\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan perwakilan EWKB dari Geometry sebagai sebuah penyangga Python. Ini adalah sebuah tambahan dari spesifikasi WKB yang menyertakan nilai SRID apapun yang bagian dari geometri ini.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.wkt\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">wkt</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.wkt\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan Well-Known Text dari geometri (sebuah standar OGC).</p>\n</dd></dl>\n\n</section>\n<section id=\"spatial-predicate-methods\">\n<h4>Metode Predikat Spasial<a class=\"heading-anchor\" href=\"#spatial-predicate-methods\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h4>\n<p>Semua dari metode-metode predikat spasial berikut mengambil contoh <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> lain (<code class=\"docutils literal notranslate\">other</code>) sebagai sebuah parameter, dan mengembalikan boolean.</p>\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.contains\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">contains</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.contains\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan <code class=\"docutils literal notranslate\">True</code> jika <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry.within\" title=\"django.contrib.gis.geos.GEOSGeometry.within\"><code class=\"xref py py-meth docutils literal notranslate\">other.within(this)</code></a> mengembalikan <code class=\"docutils literal notranslate\">True</code>.</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.covers\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">covers</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.covers\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan <code class=\"docutils literal notranslate\">True</code> jika geometri mencangkup geometri tertentu.</p>\n<p>Sebutan <code class=\"docutils literal notranslate\">covers</code> mempunyai pengertian kesetaraan berikut:</p>\n<ul class=\"simple\">\n<li><p>Setiap titik dari geometri lain adalah sebuah titik dari geometri ini.</p></li>\n<li><p>The <a class=\"reference external\" href=\"https://en.wikipedia.org/wiki/DE-9IM\">DE-9IM</a> Intersection Matrix for the two geometries is\n<code class=\"docutils literal notranslate\">T*****FF*</code>, <code class=\"docutils literal notranslate\">*T****FF*</code>, <code class=\"docutils literal notranslate\">***T**FF*</code>, or <code class=\"docutils literal notranslate\">****T*FF*</code>.</p></li>\n</ul>\n<p>Jika salah satu geometri adalah kosong, kembalikan <code class=\"docutils literal notranslate\">False</code>.</p>\n<p>Prediakt ini mirip pada <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry.contains\" title=\"django.contrib.gis.geos.GEOSGeometry.contains\"><code class=\"xref py py-meth docutils literal notranslate\">GEOSGeometry.contains()</code></a>, tetapi lebih termasuk (yaitu mengembalikan <code class=\"docutils literal notranslate\">True</code> untuk kasus-kasus lebih). Khususnya, tidak seperti <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry.contains\" title=\"django.contrib.gis.geos.GEOSGeometry.contains\"><code class=\"xref py py-meth docutils literal notranslate\">contains()</code></a> itu tidak membedakan diantara titik-titik dalam batasan dan dalam interior dari geometri. Untuk kebanyakan situasi, <code class=\"docutils literal notranslate\">covers()</code> harus dipilih pada <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry.contains\" title=\"django.contrib.gis.geos.GEOSGeometry.contains\"><code class=\"xref py py-meth docutils literal notranslate\">contains()</code></a>. Sebagai sebuah keuntungan tambahan, <code class=\"docutils literal notranslate\">covers()</code> lebih menerima untuk optimalisasi dan karena itu harus mengungguli <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry.contains\" title=\"django.contrib.gis.geos.GEOSGeometry.contains\"><code class=\"xref py py-meth docutils literal notranslate\">contains()</code></a>.</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.crosses\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">crosses</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.crosses\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan <code class=\"docutils literal notranslate\">True</code> jika matriks persimpangan DE-9IM untuk dua geometri adalah <code class=\"docutils literal notranslate\">T*T******</code> (untuk titik dan kurva, titik dan kawasan atau baris dan kawasan) <code class=\"docutils literal notranslate\">0********</code> (untuk dua kurva).</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.disjoint\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">disjoint</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.disjoint\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan <code class=\"docutils literal notranslate\">True</code> jika matriks persimpangan DE-9IM untuk dua geometri adalah <code class=\"docutils literal notranslate\">FF*FF****</code>.</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.equals\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">equals</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.equals\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan <code class=\"docutils literal notranslate\">True</code> jika matriks persimpangan DE-9IM untuk dua geometri adalah <code class=\"docutils literal notranslate\">T*F**FFF*</code>.</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.equals_exact\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">equals_exact</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em>, <em class=\"sig-param\">tolerance<span class=\"o\">=</span><span class=\"default_value\">0</span></em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.equals_exact\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan true jika dua geometri tepatnya setara, sampai toleransi yang ditentukan. Nilai <code class=\"docutils literal notranslate\">tolerance</code> harus berupa angka floating point mewakili toleransi kesalahan dalam perbandingan, misalnya, <code class=\"docutils literal notranslate\">poly1.equals_exact(poly2, 0.001)</code> akan membandingkan kesetaraan dalam ribuan dari sebuah satuan.</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.equals_identical\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">equals_identical</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.equals_identical\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Returns <code class=\"docutils literal notranslate\">True</code> if the two geometries are point-wise equivalent by\nchecking that the structure, ordering, and values of all vertices are\nidentical in all dimensions. <code class=\"docutils literal notranslate\">NaN</code> values are considered to be equal to\nother <code class=\"docutils literal notranslate\">NaN</code> values. Requires GEOS 3.12.</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.intersects\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">intersects</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.intersects\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan <code class=\"docutils literal notranslate\">True</code> jika <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry.disjoint\" title=\"django.contrib.gis.geos.GEOSGeometry.disjoint\"><code class=\"xref py py-meth docutils literal notranslate\">GEOSGeometry.disjoint()</code></a> adalah <code class=\"docutils literal notranslate\">False</code>.</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.overlaps\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">overlaps</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.overlaps\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan <code class=\"docutils literal notranslate\">True</code> jika matriks persimpangan DE-9IM untuk dua geometri adalah <code class=\"docutils literal notranslate\">T*T***T**</code> (untuk titik dan kurva, titik dan kawasan atau baris dan kawasan) <code class=\"docutils literal notranslate\">1*T***T**</code> (untuk dua kurva).</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.relate_pattern\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">relate_pattern</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em>, <em class=\"sig-param\">pattern</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.relate_pattern\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan <code class=\"docutils literal notranslate\">True</code> jika matriks persimpangan DE-9IM untuk geometri ini dah lainnya cocok pada <code class=\"docutils literal notranslate\">pattern</code> yang diberikan -- string dari sembilan karakter dari alfabet: {<code class=\"docutils literal notranslate\">T</code>, <code class=\"docutils literal notranslate\">F</code>, <code class=\"docutils literal notranslate\">*</code>, <code class=\"docutils literal notranslate\">0</code>}.</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.touches\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">touches</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.touches\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan <code class=\"docutils literal notranslate\">True</code> jika matriks persimpangan DE-9IM untuk dua geometri adalah  <code class=\"docutils literal notranslate\">FT*******</code>, <code class=\"docutils literal notranslate\">F**T*****</code> or <code class=\"docutils literal notranslate\">F***T****</code>.</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.within\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">within</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.within\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan <code class=\"docutils literal notranslate\">True</code> jika matriks persimpangan DE-9IM untuk dua geometri adalah <code class=\"docutils literal notranslate\">T*F**F***</code>.</p>\n</dd></dl>\n\n</section>\n<section id=\"topological-methods\">\n<h4>Metode-metode Topologi<a class=\"heading-anchor\" href=\"#topological-methods\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h4>\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.buffer\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">buffer</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">width</em>, <em class=\"sig-param\">quadsegs<span class=\"o\">=</span><span class=\"default_value\">8</span></em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.buffer\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan sebuah <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> yang mewakili semua titik-titik yang jaraknya dari geometri ini kurang dari atau setara pada <code class=\"docutils literal notranslate\">width</code> yang diberikan. Kata kunci <code class=\"docutils literal notranslate\">quadsegs</code> pilihan mensetel angka dari bagian-bagian digunakan untuk memperkirakan seperempat lingkaran (awalan adalah 8).</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.buffer_with_style\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">buffer_with_style</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">width</em>, <em class=\"sig-param\">quadsegs<span class=\"o\">=</span><span class=\"default_value\">8</span></em>, <em class=\"sig-param\">end_cap_style<span class=\"o\">=</span><span class=\"default_value\">1</span></em>, <em class=\"sig-param\">join_style<span class=\"o\">=</span><span class=\"default_value\">1</span></em>, <em class=\"sig-param\">mitre_limit<span class=\"o\">=</span><span class=\"default_value\">5.0</span></em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.buffer_with_style\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Sama seperti <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry.buffer\" title=\"django.contrib.gis.geos.GEOSGeometry.buffer\"><code class=\"xref py py-meth docutils literal notranslate\">buffer()</code></a>, tetapi mengizinkan gaya dari penyangga.</p>\n<ul class=\"simple\">\n<li><p><code class=\"docutils literal notranslate\">end_cap_style</code> dapat berupa round (<code class=\"docutils literal notranslate\">1</code>), flat (<code class=\"docutils literal notranslate\">2</code>), atau square (<code class=\"docutils literal notranslate\">3</code>).</p></li>\n<li><p><code class=\"docutils literal notranslate\">join_style</code> dapat berupa round (<code class=\"docutils literal notranslate\">1</code>), mitre (<code class=\"docutils literal notranslate\">2</code>), atau bevel (<code class=\"docutils literal notranslate\">3</code>).</p></li>\n<li><p>Batas rasio siku (<code class=\"docutils literal notranslate\">mitre_limit</code>) hanya mempengaruhi gaya gabungan sudut.</p></li>\n</ul>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.difference\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">difference</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.difference\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> mewakili titik-titik membuat geometri ini yang tidak membuat lain.</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.interpolate\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">interpolate</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">distance</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.interpolate\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd></dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.interpolate_normalized\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">interpolate_normalized</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">distance</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.interpolate_normalized\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Diberikan sebuah jarak (float), mengembalikan titik (atau titik terdekat) dalam geometri (<a class=\"reference internal\" href=\"#django.contrib.gis.geos.LineString\" title=\"django.contrib.gis.geos.LineString\"><code class=\"xref py py-class docutils literal notranslate\">LineString</code></a> atau <a class=\"reference internal\" href=\"#django.contrib.gis.geos.MultiLineString\" title=\"django.contrib.gis.geos.MultiLineString\"><code class=\"xref py py-class docutils literal notranslate\">MultiLineString</code></a>) pada jarak itu. Versi biasa mengambil jarak sebagai sebuah float diantara 0 (asli) dan 1 (titik akhir).</p>\n<p>Membalikkan dari <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry.project\" title=\"django.contrib.gis.geos.GEOSGeometry.project\"><code class=\"xref py py-meth docutils literal notranslate\">GEOSGeometry.project()</code></a>.</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.intersection\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">intersection</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.intersection\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> mewakili titik-titik dibgi oleh geometri ini dan lainnya.</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.project\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">project</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">point</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.project\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd></dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.project_normalized\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">project_normalized</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">point</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.project_normalized\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan jarak (float) dari asli geometri (<a class=\"reference internal\" href=\"#django.contrib.gis.geos.LineString\" title=\"django.contrib.gis.geos.LineString\"><code class=\"xref py py-class docutils literal notranslate\">LineString</code></a> atau <a class=\"reference internal\" href=\"#django.contrib.gis.geos.MultiLineString\" title=\"django.contrib.gis.geos.MultiLineString\"><code class=\"xref py py-class docutils literal notranslate\">MultiLineString</code></a>) ke titik diproyeksikan pada geometri (yaitu pada titik dari baris terdekat pada titik yang diberikan). Versi biasa mengembalikan jarak sebagai sebuah float diantara 0 (asli) dan 1 (titik akhir).</p>\n<p>Membalikkan dari <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry.interpolate\" title=\"django.contrib.gis.geos.GEOSGeometry.interpolate\"><code class=\"xref py py-meth docutils literal notranslate\">GEOSGeometry.interpolate()</code></a>.</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.relate\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">relate</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.relate\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan matriks (string) persimpangan DE-9IM mewakili hubungan topologi diantara geometri ini dan lainnya.</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.simplify\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">simplify</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">tolerance<span class=\"o\">=</span><span class=\"default_value\">0.0</span></em>, <em class=\"sig-param\">preserve_topology<span class=\"o\">=</span><span class=\"default_value\">False</span></em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.simplify\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan sebuah <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> baru, disederhanakan pada toleransi yang ditentukan menggunakan algoritma Douglas-Peucker. Nilai toleransi lebih tinggi mengartikan sedikit titik dalam keluaran. Jika toleransi tidak disediakan, awalan itu pada 0.</p>\n<p>Secara awalan, fungsi ini tidak mempertahankan topologi. Sebagai contoh, obyek-obyek <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Polygon\" title=\"django.contrib.gis.geos.Polygon\"><code class=\"xref py py-class docutils literal notranslate\">Polygon</code></a> dapat dipisah, dirobohkan menjadi baris-baris, atau hilang. Lubang-lubang <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Polygon\" title=\"django.contrib.gis.geos.Polygon\"><code class=\"xref py py-class docutils literal notranslate\">Polygon</code></a> dapat dibuat atau hilang, dan baris-baris mungkin bersilangan. Dengan menentukan <code class=\"docutils literal notranslate\">preserve_topology=True</code>, hasil akan mempunyai dimensi sama dan jumlah komponen sebagai masukan; ini secara signifikan lebih lama, bagaimanapun.</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.sym_difference\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">sym_difference</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.sym_difference\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> menggabungkan titik-titik dalam geometri ini bukan yang lain, dan titik-titik di lainnya bukan dalam geometri ini.</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.union\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">union</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.union\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> mewakili semua titik dalam geometri ini dan lainnya.</p>\n</dd></dl>\n\n</section>\n<section id=\"topological-properties\">\n<h4>Sifat-sifat Topologi<a class=\"heading-anchor\" href=\"#topological-properties\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h4>\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.boundary\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">boundary</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.boundary\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan batasan sebagai sebuah obyek Geometri baru dialokasikan.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.centroid\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">centroid</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.centroid\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan obyek <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Point\" title=\"django.contrib.gis.geos.Point\"><code class=\"xref py py-class docutils literal notranslate\">Point</code></a> mewakili pusat geometri dari geometri. Titik tidak menjamin menjadi interior dari geometri.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.convex_hull\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">convex_hull</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.convex_hull\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Polygon\" title=\"django.contrib.gis.geos.Polygon\"><code class=\"xref py py-class docutils literal notranslate\">Polygon</code></a> terkecil yang mengandung semua titik dalam geometri.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.envelope\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">envelope</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.envelope\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan sebuah <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Polygon\" title=\"django.contrib.gis.geos.Polygon\"><code class=\"xref py py-class docutils literal notranslate\">Polygon</code></a> yang meakili batasan bungkus dari geometri. Catat bahwa itu dapat juga mengembalikan sebuah <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Point\" title=\"django.contrib.gis.geos.Point\"><code class=\"xref py py-class docutils literal notranslate\">Point</code></a> jika masukan geometri adalah sebuah titik.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.point_on_surface\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">point_on_surface</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.point_on_surface\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Menghitung dan mengembalikan jaminan <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Point\" title=\"django.contrib.gis.geos.Point\"><code class=\"xref py py-class docutils literal notranslate\">Point</code></a> untuk berada dalam interior dari geometri ini.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.unary_union\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">unary_union</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.unary_union\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Menghitung gabungan dari semua unsur dari geometri ini.</p>\n<p>Hasil mematuhi kontrak berikut:</p>\n<ul class=\"simple\">\n<li><p>Unioning a set of <a class=\"reference internal\" href=\"#django.contrib.gis.geos.LineString\" title=\"django.contrib.gis.geos.LineString\"><code class=\"xref py py-class docutils literal notranslate\">LineString</code></a>s has the effect of fully noding and\ndissolving the linework.</p></li>\n<li><p>Menyatukan kumpulan dari <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Polygon\" title=\"django.contrib.gis.geos.Polygon\"><code class=\"xref py py-class docutils literal notranslate\">Polygon</code></a> akan selalu mengembalikan geometri <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Polygon\" title=\"django.contrib.gis.geos.Polygon\"><code class=\"xref py py-class docutils literal notranslate\">Polygon</code></a> atau <a class=\"reference internal\" href=\"#django.contrib.gis.geos.MultiPolygon\" title=\"django.contrib.gis.geos.MultiPolygon\"><code class=\"xref py py-class docutils literal notranslate\">MultiPolygon</code></a> (tidak seperti <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry.union\" title=\"django.contrib.gis.geos.GEOSGeometry.union\"><code class=\"xref py py-meth docutils literal notranslate\">GEOSGeometry.union()</code></a>, yang mungkin mengembalikan geometri dari dimensi terendah jika topologi runtuh timbul).</p></li>\n</ul>\n</dd></dl>\n\n</section>\n<section id=\"other-properties-methods\">\n<h4>Sifat dan Metode lain<a class=\"heading-anchor\" href=\"#other-properties-methods\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h4>\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.area\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">area</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.area\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Sifat ini mengembalikan kawasan dari Geometri.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.extent\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">extent</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.extent\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Sifat ini mengembalikan jangkauan dari geometri ini sebagai 4-tuple, terdiri dari <code class=\"docutils literal notranslate\">(xmin, ymin, xmax, ymax)</code>.</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.clone\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">clone</span><span class=\"sig-paren\">(</span><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.clone\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Metode ini mengembalikan <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> yaitu sebuah kloningan dari asli.</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.distance\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">distance</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">geom</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.distance\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan jarak diantara titik-titik terdekat pada geometri ini dan <code class=\"docutils literal notranslate\">geom</code> yang diberikan (obyek <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> lain).</p>\n<aside class=\"admonition admonition-note\" role=\"note\">\n<p class=\"admonition-title\">Catatan</p>\n<p>Perhitungan jarak GEOS adalah segaris -- dengan kata lain, GEOS tidak melakukan perhitungan bola bahkan jika SRID menentukan sistem kordinat geografis.</p>\n</aside>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.length\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">length</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.length\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan panjang dari geometri (misalnya, 0 untuk sebuah <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Point\" title=\"django.contrib.gis.geos.Point\"><code class=\"xref py py-class docutils literal notranslate\">Point</code></a>, panjang dari sebuah <a class=\"reference internal\" href=\"#django.contrib.gis.geos.LineString\" title=\"django.contrib.gis.geos.LineString\"><code class=\"xref py py-class docutils literal notranslate\">LineString</code></a>, atau lingkaran dari sebuah <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Polygon\" title=\"django.contrib.gis.geos.Polygon\"><code class=\"xref py py-class docutils literal notranslate\">Polygon</code></a>).</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.prepared\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">prepared</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.prepared\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan <code class=\"docutils literal notranslate\">PreparedGeometry</code> GEOS untuk isi dari geometri ini. Obyek-obyek  <code class=\"docutils literal notranslate\">PreparedGeometry</code> dioptimalkan untuk mengandung, bersimpangan, menutupi, bersilangan, menguraikan, tumpang tindih, menyentuh dan dalam tindakan-tindakan. Mengacu pada dokumentasi <a class=\"reference internal\" href=\"#prepared-geometries\"><span class=\"std std-ref\">Prepared Geometry</span></a> untuk informasi lebih.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.srs\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">srs</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.srs\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan obyek <a class=\"reference internal\" href=\"/id/5.2/ref/contrib/gis/gdal/#django.contrib.gis.gdal.SpatialReference\" title=\"django.contrib.gis.gdal.SpatialReference\"><code class=\"xref py py-class docutils literal notranslate\">SpatialReference</code></a> yang sesuai pada SRID dari geometri atau <code class=\"docutils literal notranslate\">None</code>.</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.transform\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">transform</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">ct</em>, <em class=\"sig-param\">clone<span class=\"o\">=</span><span class=\"default_value\">False</span></em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.transform\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Transforms the geometry according to the given coordinate transformation\nparameter (<code class=\"docutils literal notranslate\">ct</code>), which may be an integer SRID, spatial reference WKT\nstring, a PROJ string, a <a class=\"reference internal\" href=\"/id/5.2/ref/contrib/gis/gdal/#django.contrib.gis.gdal.SpatialReference\" title=\"django.contrib.gis.gdal.SpatialReference\"><code class=\"xref py py-class docutils literal notranslate\">SpatialReference</code></a>\nobject, or a <a class=\"reference internal\" href=\"/id/5.2/ref/contrib/gis/gdal/#django.contrib.gis.gdal.CoordTransform\" title=\"django.contrib.gis.gdal.CoordTransform\"><code class=\"xref py py-class docutils literal notranslate\">CoordTransform</code></a> object. By\ndefault, the geometry is transformed in-place and nothing is returned.\nHowever if the <code class=\"docutils literal notranslate\">clone</code> keyword is set, then the geometry is not modified\nand a transformed clone of the geometry is returned instead.</p>\n<aside class=\"admonition admonition-note\" role=\"note\">\n<p class=\"admonition-title\">Catatan</p>\n<p>Memunculkan <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSException\" title=\"django.contrib.gis.geos.GEOSException\"><code class=\"xref py py-class docutils literal notranslate\">GEOSException</code></a> jika GDAL tidak tersedia atau jika SRID geometri adalah <code class=\"docutils literal notranslate\">None</code> atau kurang dari 0. Itu tidak mengenakan batasan apapun pada SRID geometri jika dipanggil dengan obyek <a class=\"reference internal\" href=\"/id/5.2/ref/contrib/gis/gdal/#django.contrib.gis.gdal.CoordTransform\" title=\"django.contrib.gis.gdal.CoordTransform\"><code class=\"xref py py-class docutils literal notranslate\">CoordTransform</code></a>.</p>\n</aside>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.make_valid\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">make_valid</span><span class=\"sig-paren\">(</span><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.make_valid\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Returns a valid <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> equivalent, trying not to lose any of\nthe input vertices. If the geometry is already valid, it is returned\nuntouched. This is similar to the\n<a class=\"reference internal\" href=\"/id/5.2/ref/contrib/gis/functions/#django.contrib.gis.db.models.functions.MakeValid\" title=\"django.contrib.gis.db.models.functions.MakeValid\"><code class=\"xref py py-class docutils literal notranslate\">MakeValid</code></a> database\nfunction. Requires GEOS 3.8.</p>\n</dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSGeometry.normalize\">\n<span class=\"sig-prename descclassname\">GEOSGeometry.</span><span class=\"sig-name descname\">normalize</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">clone<span class=\"o\">=</span><span class=\"default_value\">False</span></em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSGeometry.normalize\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Converts this geometry to canonical form. If the <code class=\"docutils literal notranslate\">clone</code> keyword is set,\nthen the geometry is not modified and a normalized clone of the geometry is\nreturned instead:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span>g <span class=\"o\">=</span> MultiPoint<span class=\"p\">(</span>Point<span class=\"p\">(</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> Point<span class=\"p\">(</span><span class=\"mi\">2</span><span class=\"p\">,</span> <span class=\"mi\">2</span><span class=\"p\">),</span> Point<span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">))</span>\n<span class=\"gp\">&gt;&gt;&gt; </span><span class=\"nb\">print</span><span class=\"p\">(</span>g<span class=\"p\">)</span>\n<span class=\"go\">MULTIPOINT (0 0, 2 2, 1 1)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>g<span class=\"o\">.</span>normalize<span class=\"p\">()</span>\n<span class=\"gp\">&gt;&gt;&gt; </span><span class=\"nb\">print</span><span class=\"p\">(</span>g<span class=\"p\">)</span>\n<span class=\"go\">MULTIPOINT (2 2, 1 1, 0 0)</span>\n</code></pre></div>\n</dd></dl>\n\n</section>\n</section>\n<section id=\"point\">\n<h3><code class=\"docutils literal notranslate\">Point</code><a class=\"heading-anchor\" href=\"#point\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h3>\n<dl class=\"py class\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.Point\">\n<em class=\"property\"><span class=\"k\">class</span> </em><span class=\"sig-name descname\">Point</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">x<span class=\"o\">=</span><span class=\"default_value\">None</span></em>, <em class=\"sig-param\">y<span class=\"o\">=</span><span class=\"default_value\">None</span></em>, <em class=\"sig-param\">z<span class=\"o\">=</span><span class=\"default_value\">None</span></em>, <em class=\"sig-param\">srid<span class=\"o\">=</span><span class=\"default_value\">None</span></em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.Point\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p><code class=\"docutils literal notranslate\">Point</code> objects are instantiated using arguments that represent the\ncomponent coordinates of the point or with a single sequence coordinates.\nFor example, the following are equivalent:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> Point<span class=\"p\">(</span><span class=\"mi\">5</span><span class=\"p\">,</span> <span class=\"mi\">23</span><span class=\"p\">)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> Point<span class=\"p\">([</span><span class=\"mi\">5</span><span class=\"p\">,</span> <span class=\"mi\">23</span><span class=\"p\">])</span>\n</code></pre></div>\n<p>Empty <code class=\"docutils literal notranslate\">Point</code> objects may be instantiated by passing no arguments or an\nempty sequence. The following are equivalent:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> Point<span class=\"p\">()</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> Point<span class=\"p\">([])</span>\n</code></pre></div>\n</dd></dl>\n\n</section>\n<section id=\"linestring\">\n<h3><code class=\"docutils literal notranslate\">LineString</code><a class=\"heading-anchor\" href=\"#linestring\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h3>\n<dl class=\"py class\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.LineString\">\n<em class=\"property\"><span class=\"k\">class</span> </em><span class=\"sig-name descname\">LineString</span><span class=\"sig-paren\">(</span><em class=\"sig-param\"><span class=\"o\">*</span>args</em>, <em class=\"sig-param\"><span class=\"o\">**</span>kwargs</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.LineString\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p><code class=\"docutils literal notranslate\">LineString</code> objects are instantiated using arguments that are either a\nsequence of coordinates or <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Point\" title=\"django.contrib.gis.geos.Point\"><code class=\"xref py py-class docutils literal notranslate\">Point</code></a> objects. For example, the\nfollowing are equivalent:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span>ls <span class=\"o\">=</span> LineString<span class=\"p\">((</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">))</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>ls <span class=\"o\">=</span> LineString<span class=\"p\">(</span>Point<span class=\"p\">(</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> Point<span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">))</span>\n</code></pre></div>\n<p>In addition, <code class=\"docutils literal notranslate\">LineString</code> objects may also be created by passing in a\nsingle sequence of coordinate or <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Point\" title=\"django.contrib.gis.geos.Point\"><code class=\"xref py py-class docutils literal notranslate\">Point</code></a> objects:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span>ls <span class=\"o\">=</span> LineString<span class=\"p\">(((</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">)))</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>ls <span class=\"o\">=</span> LineString<span class=\"p\">([</span>Point<span class=\"p\">(</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> Point<span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">)])</span>\n</code></pre></div>\n<p>Empty <code class=\"docutils literal notranslate\">LineString</code> objects may be instantiated by passing no arguments\nor an empty sequence. The following are equivalent:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span>ls <span class=\"o\">=</span> LineString<span class=\"p\">()</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>ls <span class=\"o\">=</span> LineString<span class=\"p\">([])</span>\n</code></pre></div>\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.LineString.closed\">\n<span class=\"sig-name descname\">closed</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.LineString.closed\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan apakah atau tidak <code class=\"docutils literal notranslate\">LineString</code> ini ditutup.</p>\n</dd></dl>\n\n</dd></dl>\n\n</section>\n<section id=\"linearring\">\n<h3><code class=\"docutils literal notranslate\">LinearRing</code><a class=\"heading-anchor\" href=\"#linearring\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h3>\n<dl class=\"py class\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.LinearRing\">\n<em class=\"property\"><span class=\"k\">class</span> </em><span class=\"sig-name descname\">LinearRing</span><span class=\"sig-paren\">(</span><em class=\"sig-param\"><span class=\"o\">*</span>args</em>, <em class=\"sig-param\"><span class=\"o\">**</span>kwargs</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.LinearRing\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p><code class=\"docutils literal notranslate\">LinearRing</code> objects are constructed in the exact same way as\n<a class=\"reference internal\" href=\"#django.contrib.gis.geos.LineString\" title=\"django.contrib.gis.geos.LineString\"><code class=\"xref py py-class docutils literal notranslate\">LineString</code></a> objects, however the coordinates must be <em>closed</em>, in\nother words, the first coordinates must be the same as the last\ncoordinates. For example:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span>ls <span class=\"o\">=</span> LinearRing<span class=\"p\">((</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">))</span>\n</code></pre></div>\n<p>Perhatikan bahwa <code class=\"docutils literal notranslate\">(0, 0)</code> adalah kordinat pertama dan terakhir -- jika mereka tidak setara, sebuah kesalahan akan dimunculkan.</p>\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.LinearRing.is_counterclockwise\">\n<span class=\"sig-name descname\">is_counterclockwise</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.LinearRing.is_counterclockwise\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Returns whether this <code class=\"docutils literal notranslate\">LinearRing</code> is counterclockwise.</p>\n</dd></dl>\n\n</dd></dl>\n\n</section>\n<section id=\"polygon\">\n<h3><code class=\"docutils literal notranslate\">Polygon</code><a class=\"heading-anchor\" href=\"#polygon\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h3>\n<dl class=\"py class\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.Polygon\">\n<em class=\"property\"><span class=\"k\">class</span> </em><span class=\"sig-name descname\">Polygon</span><span class=\"sig-paren\">(</span><em class=\"sig-param\"><span class=\"o\">*</span>args</em>, <em class=\"sig-param\"><span class=\"o\">**</span>kwargs</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.Polygon\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p><code class=\"docutils literal notranslate\">Polygon</code> objects may be instantiated by passing in parameters that\nrepresent the rings of the polygon.  The parameters must either be\n<a class=\"reference internal\" href=\"#django.contrib.gis.geos.LinearRing\" title=\"django.contrib.gis.geos.LinearRing\"><code class=\"xref py py-class docutils literal notranslate\">LinearRing</code></a> instances, or a sequence that may be used to construct a\n<a class=\"reference internal\" href=\"#django.contrib.gis.geos.LinearRing\" title=\"django.contrib.gis.geos.LinearRing\"><code class=\"xref py py-class docutils literal notranslate\">LinearRing</code></a>:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span>ext_coords <span class=\"o\">=</span> <span class=\"p\">((</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">))</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>int_coords <span class=\"o\">=</span> <span class=\"p\">((</span><span class=\"mf\">0.4</span><span class=\"p\">,</span> <span class=\"mf\">0.4</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mf\">0.4</span><span class=\"p\">,</span> <span class=\"mf\">0.6</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mf\">0.6</span><span class=\"p\">,</span> <span class=\"mf\">0.6</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mf\">0.6</span><span class=\"p\">,</span> <span class=\"mf\">0.4</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mf\">0.4</span><span class=\"p\">,</span> <span class=\"mf\">0.4</span><span class=\"p\">))</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>poly <span class=\"o\">=</span> Polygon<span class=\"p\">(</span>ext_coords<span class=\"p\">,</span> int_coords<span class=\"p\">)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>poly <span class=\"o\">=</span> Polygon<span class=\"p\">(</span>LinearRing<span class=\"p\">(</span>ext_coords<span class=\"p\">),</span> LinearRing<span class=\"p\">(</span>int_coords<span class=\"p\">))</span>\n</code></pre></div>\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.Polygon.from_bbox\">\n<em class=\"property\"><span class=\"k\">classmethod</span> </em><span class=\"sig-name descname\">from_bbox</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">bbox</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.Polygon.from_bbox\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan sebuah obyek poligon dari kotak-dikelilingi diberikan, 4-tuple meliputi <code class=\"docutils literal notranslate\">(xmin, ymin, xmax, ymax)</code>.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.Polygon.num_interior_rings\">\n<span class=\"sig-name descname\">num_interior_rings</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.Polygon.num_interior_rings\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan sejumlah lingkaran interior di geometri ini.</p>\n</dd></dl>\n\n</dd></dl>\n\n<aside class=\"admonition-comparing-polygons admonition\" role=\"note\">\n<p class=\"admonition-title\">Membandingkan Polygon</p>\n<p>Note that it is possible to compare <code class=\"docutils literal notranslate\">Polygon</code> objects directly with <code class=\"docutils literal notranslate\">&lt;</code>\nor <code class=\"docutils literal notranslate\">&gt;</code>, but as the comparison is made through Polygon's\n<a class=\"reference internal\" href=\"#django.contrib.gis.geos.LineString\" title=\"django.contrib.gis.geos.LineString\"><code class=\"xref py py-class docutils literal notranslate\">LineString</code></a>, it does not mean much (but is consistent and quick).\nYou can always force the comparison with the <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry.area\" title=\"django.contrib.gis.geos.GEOSGeometry.area\"><code class=\"xref py py-attr docutils literal notranslate\">area</code></a>\nproperty:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"k\">if</span> poly_1<span class=\"o\">.</span>area <span class=\"o\">&gt;</span> poly_2<span class=\"o\">.</span>area<span class=\"p\">:</span>\n<span class=\"gp\">... </span>    <span class=\"k\">pass</span>\n<span class=\"gp\">...</span>\n</code></pre></div>\n</aside>\n</section>\n</section>\n<section id=\"geometry-collections\">\n<span id=\"geos-geometry-collections\"></span><h2>Kumpulan Geometri<a class=\"heading-anchor\" href=\"#geometry-collections\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h2>\n<section id=\"multipoint\">\n<h3><code class=\"docutils literal notranslate\">MultiPoint</code><a class=\"heading-anchor\" href=\"#multipoint\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h3>\n<dl class=\"py class\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.MultiPoint\">\n<em class=\"property\"><span class=\"k\">class</span> </em><span class=\"sig-name descname\">MultiPoint</span><span class=\"sig-paren\">(</span><em class=\"sig-param\"><span class=\"o\">*</span>args</em>, <em class=\"sig-param\"><span class=\"o\">**</span>kwargs</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.MultiPoint\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p><code class=\"docutils literal notranslate\">MultiPoint</code> objects may be instantiated by passing in <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Point\" title=\"django.contrib.gis.geos.Point\"><code class=\"xref py py-class docutils literal notranslate\">Point</code></a>\nobjects as arguments, or a single sequence of <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Point\" title=\"django.contrib.gis.geos.Point\"><code class=\"xref py py-class docutils literal notranslate\">Point</code></a> objects:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span>mp <span class=\"o\">=</span> MultiPoint<span class=\"p\">(</span>Point<span class=\"p\">(</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> Point<span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">))</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>mp <span class=\"o\">=</span> MultiPoint<span class=\"p\">((</span>Point<span class=\"p\">(</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> Point<span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">)))</span>\n</code></pre></div>\n</dd></dl>\n\n</section>\n<section id=\"multilinestring\">\n<h3><code class=\"docutils literal notranslate\">MultiLineString</code><a class=\"heading-anchor\" href=\"#multilinestring\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h3>\n<dl class=\"py class\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.MultiLineString\">\n<em class=\"property\"><span class=\"k\">class</span> </em><span class=\"sig-name descname\">MultiLineString</span><span class=\"sig-paren\">(</span><em class=\"sig-param\"><span class=\"o\">*</span>args</em>, <em class=\"sig-param\"><span class=\"o\">**</span>kwargs</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.MultiLineString\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p><code class=\"docutils literal notranslate\">MultiLineString</code> objects may be instantiated by passing in\n<a class=\"reference internal\" href=\"#django.contrib.gis.geos.LineString\" title=\"django.contrib.gis.geos.LineString\"><code class=\"xref py py-class docutils literal notranslate\">LineString</code></a> objects as arguments, or a single sequence of\n<a class=\"reference internal\" href=\"#django.contrib.gis.geos.LineString\" title=\"django.contrib.gis.geos.LineString\"><code class=\"xref py py-class docutils literal notranslate\">LineString</code></a> objects:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span>ls1 <span class=\"o\">=</span> LineString<span class=\"p\">((</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">))</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>ls2 <span class=\"o\">=</span> LineString<span class=\"p\">((</span><span class=\"mi\">2</span><span class=\"p\">,</span> <span class=\"mi\">2</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">3</span><span class=\"p\">,</span> <span class=\"mi\">3</span><span class=\"p\">))</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>mls <span class=\"o\">=</span> MultiLineString<span class=\"p\">(</span>ls1<span class=\"p\">,</span> ls2<span class=\"p\">)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>mls <span class=\"o\">=</span> MultiLineString<span class=\"p\">([</span>ls1<span class=\"p\">,</span> ls2<span class=\"p\">])</span>\n</code></pre></div>\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.MultiLineString.merged\">\n<span class=\"sig-name descname\">merged</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.MultiLineString.merged\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Mengembalikan sebuah <a class=\"reference internal\" href=\"#django.contrib.gis.geos.LineString\" title=\"django.contrib.gis.geos.LineString\"><code class=\"xref py py-class docutils literal notranslate\">LineString</code></a> mewakili baris menggabungkan semua komponen di <code class=\"docutils literal notranslate\">MultiLineString</code> ini.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.MultiLineString.closed\">\n<span class=\"sig-name descname\">closed</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.MultiLineString.closed\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Returns <code class=\"docutils literal notranslate\">True</code> if and only if all elements are closed.</p>\n</dd></dl>\n\n</dd></dl>\n\n</section>\n<section id=\"multipolygon\">\n<h3><code class=\"docutils literal notranslate\">MultiPolygon</code><a class=\"heading-anchor\" href=\"#multipolygon\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h3>\n<dl class=\"py class\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.MultiPolygon\">\n<em class=\"property\"><span class=\"k\">class</span> </em><span class=\"sig-name descname\">MultiPolygon</span><span class=\"sig-paren\">(</span><em class=\"sig-param\"><span class=\"o\">*</span>args</em>, <em class=\"sig-param\"><span class=\"o\">**</span>kwargs</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.MultiPolygon\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p><code class=\"docutils literal notranslate\">MultiPolygon</code> objects may be instantiated by passing <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Polygon\" title=\"django.contrib.gis.geos.Polygon\"><code class=\"xref py py-class docutils literal notranslate\">Polygon</code></a>\nobjects as arguments, or a single sequence of <a class=\"reference internal\" href=\"#django.contrib.gis.geos.Polygon\" title=\"django.contrib.gis.geos.Polygon\"><code class=\"xref py py-class docutils literal notranslate\">Polygon</code></a> objects:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span>p1 <span class=\"o\">=</span> Polygon<span class=\"p\">(((</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">)))</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>p2 <span class=\"o\">=</span> Polygon<span class=\"p\">(((</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">2</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">2</span><span class=\"p\">,</span> <span class=\"mi\">2</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">)))</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>mp <span class=\"o\">=</span> MultiPolygon<span class=\"p\">(</span>p1<span class=\"p\">,</span> p2<span class=\"p\">)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>mp <span class=\"o\">=</span> MultiPolygon<span class=\"p\">([</span>p1<span class=\"p\">,</span> p2<span class=\"p\">])</span>\n</code></pre></div>\n</dd></dl>\n\n</section>\n<section id=\"geometrycollection\">\n<h3><code class=\"docutils literal notranslate\">GeometryCollection</code><a class=\"heading-anchor\" href=\"#geometrycollection\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h3>\n<dl class=\"py class\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GeometryCollection\">\n<em class=\"property\"><span class=\"k\">class</span> </em><span class=\"sig-name descname\">GeometryCollection</span><span class=\"sig-paren\">(</span><em class=\"sig-param\"><span class=\"o\">*</span>args</em>, <em class=\"sig-param\"><span class=\"o\">**</span>kwargs</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GeometryCollection\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p><code class=\"docutils literal notranslate\">GeometryCollection</code> objects may be instantiated by passing in other\n<a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> as arguments, or a single sequence of\n<a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> objects:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span>poly <span class=\"o\">=</span> Polygon<span class=\"p\">(((</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">),</span> <span class=\"p\">(</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">)))</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>gc <span class=\"o\">=</span> GeometryCollection<span class=\"p\">(</span>Point<span class=\"p\">(</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> MultiPoint<span class=\"p\">(</span>Point<span class=\"p\">(</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> Point<span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">)),</span> poly<span class=\"p\">)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>gc <span class=\"o\">=</span> GeometryCollection<span class=\"p\">((</span>Point<span class=\"p\">(</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> MultiPoint<span class=\"p\">(</span>Point<span class=\"p\">(</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">),</span> Point<span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">)),</span> poly<span class=\"p\">))</span>\n</code></pre></div>\n</dd></dl>\n\n</section>\n</section>\n<section id=\"prepared-geometries\">\n<span id=\"id7\"></span><h2>Prepared Geometry<a class=\"heading-anchor\" href=\"#prepared-geometries\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h2>\n<p>In order to obtain a prepared geometry, access the\n<a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry.prepared\" title=\"django.contrib.gis.geos.GEOSGeometry.prepared\"><code class=\"xref py py-attr docutils literal notranslate\">GEOSGeometry.prepared</code></a> property.  Once you have a\n<code class=\"docutils literal notranslate\">PreparedGeometry</code> instance its spatial predicate methods, listed below,\nmay be used with other <code class=\"docutils literal notranslate\">GEOSGeometry</code> objects.  An operation with a prepared\ngeometry can be orders of magnitude faster -- the more complex the geometry\nthat is prepared, the larger the speedup in the operation.  For more information,\nplease consult the <a class=\"reference external\" href=\"https://trac.osgeo.org/geos/wiki/PreparedGeometry\">GEOS wiki page on prepared geometries</a>.</p>\n<p>Sebagai contoh:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"kn\">from</span> <span class=\"nn\">django.contrib.gis.geos</span> <span class=\"kn\">import</span> Point<span class=\"p\">,</span> Polygon\n<span class=\"gp\">&gt;&gt;&gt; </span>poly <span class=\"o\">=</span> Polygon<span class=\"o\">.</span>from_bbox<span class=\"p\">((</span><span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">0</span><span class=\"p\">,</span> <span class=\"mi\">5</span><span class=\"p\">,</span> <span class=\"mi\">5</span><span class=\"p\">))</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>prep_poly <span class=\"o\">=</span> poly<span class=\"o\">.</span>prepared\n<span class=\"gp\">&gt;&gt;&gt; </span>prep_poly<span class=\"o\">.</span>contains<span class=\"p\">(</span>Point<span class=\"p\">(</span><span class=\"mf\">2.5</span><span class=\"p\">,</span> <span class=\"mf\">2.5</span><span class=\"p\">))</span>\n<span class=\"go\">True</span>\n</code></pre></div>\n<section id=\"preparedgeometry\">\n<h3><code class=\"docutils literal notranslate\">PreparedGeometry</code><a class=\"heading-anchor\" href=\"#preparedgeometry\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h3>\n<dl class=\"py class\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.PreparedGeometry\">\n<em class=\"property\"><span class=\"k\">class</span> </em><span class=\"sig-name descname\">PreparedGeometry</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.PreparedGeometry\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Semua metode pada <code class=\"docutils literal notranslate\">PreparedGeometry</code> mengambil sebuah argumen <code class=\"docutils literal notranslate\">other</code>, yang harus berupa instance <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a>.</p>\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.PreparedGeometry.contains\">\n<span class=\"sig-name descname\">contains</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.PreparedGeometry.contains\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd></dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.PreparedGeometry.contains_properly\">\n<span class=\"sig-name descname\">contains_properly</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.PreparedGeometry.contains_properly\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd></dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.PreparedGeometry.covers\">\n<span class=\"sig-name descname\">covers</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.PreparedGeometry.covers\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd></dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.PreparedGeometry.crosses\">\n<span class=\"sig-name descname\">crosses</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.PreparedGeometry.crosses\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd></dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.PreparedGeometry.disjoint\">\n<span class=\"sig-name descname\">disjoint</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.PreparedGeometry.disjoint\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd></dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.PreparedGeometry.intersects\">\n<span class=\"sig-name descname\">intersects</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.PreparedGeometry.intersects\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd></dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.PreparedGeometry.overlaps\">\n<span class=\"sig-name descname\">overlaps</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.PreparedGeometry.overlaps\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd></dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.PreparedGeometry.touches\">\n<span class=\"sig-name descname\">touches</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.PreparedGeometry.touches\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd></dd></dl>\n\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.PreparedGeometry.within\">\n<span class=\"sig-name descname\">within</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">other</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.PreparedGeometry.within\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd></dd></dl>\n\n</dd></dl>\n\n</section>\n</section>\n<section id=\"geometry-factories\">\n<h2>Pabrik Geometri<a class=\"heading-anchor\" href=\"#geometry-factories\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h2>\n<dl class=\"py function\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.fromfile\">\n<span class=\"sig-name descname\">fromfile</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">file_h</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.fromfile\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><dl class=\"field-list simple\">\n<dt class=\"field-odd\">Parameter<span class=\"colon\">:</span></dt>\n<dd class=\"field-odd\"><p><strong>file_h</strong> (a Python <code class=\"docutils literal notranslate\">file</code> object or a string path to the file) -- masukan berkas yang mengandung data spasial</p>\n</dd>\n<dt class=\"field-even\">Jenis Kembalian<span class=\"colon\">:</span></dt>\n<dd class=\"field-even\"><p><a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> berhubungan ke data spasial dalam berkas</p>\n</dd>\n</dl>\n<p>Example:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"kn\">from</span> <span class=\"nn\">django.contrib.gis.geos</span> <span class=\"kn\">import</span> fromfile\n<span class=\"gp\">&gt;&gt;&gt; </span>g <span class=\"o\">=</span> fromfile<span class=\"p\">(</span><span class=\"s2\">&quot;/home/bob/geom.wkt&quot;</span><span class=\"p\">)</span>\n</code></pre></div>\n</dd></dl>\n\n<dl class=\"py function\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.fromstr\">\n<span class=\"sig-name descname\">fromstr</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">string</em>, <em class=\"sig-param\">srid<span class=\"o\">=</span><span class=\"default_value\">None</span></em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.fromstr\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><dl class=\"field-list simple\">\n<dt class=\"field-odd\">Parameter<span class=\"colon\">:</span></dt>\n<dd class=\"field-odd\"><ul class=\"simple\">\n<li><p><strong>string</strong> (<a class=\"reference external\" href=\"https://docs.python.org/3/library/stdtypes.html#str\" title=\"(di Python v3.14)\"><em>str</em></a>) -- deretan karakter yang mengandung data spasial</p></li>\n<li><p><strong>srid</strong> (<a class=\"reference external\" href=\"https://docs.python.org/3/library/functions.html#int\" title=\"(di Python v3.14)\"><em>int</em></a>) -- penciri acuan spasial</p></li>\n</ul>\n</dd>\n<dt class=\"field-even\">Jenis Kembalian<span class=\"colon\">:</span></dt>\n<dd class=\"field-even\"><p><a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> terkait pada data spasial di deretan karakter</p>\n</dd>\n</dl>\n<p><code class=\"docutils literal notranslate\">fromstr(string, srid)</code> setara dengan <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry(string, srid)</code></a>.</p>\n<p>Example:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"kn\">from</span> <span class=\"nn\">django.contrib.gis.geos</span> <span class=\"kn\">import</span> fromstr\n<span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> fromstr<span class=\"p\">(</span><span class=\"s2\">&quot;POINT(-90.5 29.5)&quot;</span><span class=\"p\">,</span> srid<span class=\"o\">=</span><span class=\"mi\">4326</span><span class=\"p\">)</span>\n</code></pre></div>\n</dd></dl>\n\n</section>\n<section id=\"i-o-objects\">\n<h2>Obyek I/O<a class=\"heading-anchor\" href=\"#i-o-objects\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h2>\n<section id=\"reader-objects\">\n<h3>Obyek Pembaca<a class=\"heading-anchor\" href=\"#reader-objects\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h3>\n<p>The reader I/O classes return a <a class=\"reference internal\" href=\"#django.contrib.gis.geos.GEOSGeometry\" title=\"django.contrib.gis.geos.GEOSGeometry\"><code class=\"xref py py-class docutils literal notranslate\">GEOSGeometry</code></a> instance from the WKB\nand/or WKT input given to their <code class=\"docutils literal notranslate\">read(geom)</code> method.</p>\n<dl class=\"py class\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.WKBReader\">\n<em class=\"property\"><span class=\"k\">class</span> </em><span class=\"sig-name descname\">WKBReader</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.WKBReader\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Example:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"kn\">from</span> <span class=\"nn\">django.contrib.gis.geos</span> <span class=\"kn\">import</span> WKBReader\n<span class=\"gp\">&gt;&gt;&gt; </span>wkb_r <span class=\"o\">=</span> WKBReader<span class=\"p\">()</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkb_r<span class=\"o\">.</span>read<span class=\"p\">(</span><span class=\"s2\">&quot;0101000000000000000000F03F000000000000F03F&quot;</span><span class=\"p\">)</span>\n<span class=\"go\">&lt;Point object at 0x103a88910&gt;</span>\n</code></pre></div>\n</dd></dl>\n\n<dl class=\"py class\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.WKTReader\">\n<em class=\"property\"><span class=\"k\">class</span> </em><span class=\"sig-name descname\">WKTReader</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.WKTReader\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Example:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"kn\">from</span> <span class=\"nn\">django.contrib.gis.geos</span> <span class=\"kn\">import</span> WKTReader\n<span class=\"gp\">&gt;&gt;&gt; </span>wkt_r <span class=\"o\">=</span> WKTReader<span class=\"p\">()</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkt_r<span class=\"o\">.</span>read<span class=\"p\">(</span><span class=\"s2\">&quot;POINT(1 1)&quot;</span><span class=\"p\">)</span>\n<span class=\"go\">&lt;Point object at 0x103a88b50&gt;</span>\n</code></pre></div>\n</dd></dl>\n\n</section>\n<section id=\"writer-objects\">\n<h3>Obyek Penulis<a class=\"heading-anchor\" href=\"#writer-objects\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h3>\n<p>Semua penulis obyek-obyek memiliki sebuah metode <code class=\"docutils literal notranslate\">write(geom)</code> yang mengembalikan salah satu WKB atau WKT dari geometri diberikan. Sebagai tambahan, obyek-obyek <a class=\"reference internal\" href=\"#django.contrib.gis.geos.WKBWriter\" title=\"django.contrib.gis.geos.WKBWriter\"><code class=\"xref py py-class docutils literal notranslate\">WKBWriter</code></a> juga memiliki sifat yang mungkin digunakan untuk merubah urutan byte, dan atau menyertakan nilai SRID (dengan kata lain, EWKB).</p>\n<dl class=\"py class\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.WKBWriter\">\n<em class=\"property\"><span class=\"k\">class</span> </em><span class=\"sig-name descname\">WKBWriter</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">dim<span class=\"o\">=</span><span class=\"default_value\">2</span></em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.WKBWriter\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p><code class=\"docutils literal notranslate\">WKBWriter</code> menyediakan kendali kebanyakan terhadap keluarannya. Secara awalan itu mengembalikan WKB sesuai-OGC ketika metode <code class=\"docutils literal notranslate\">write</code> nya dipanggil. Bagaimanapun, itu mempunyai sifat yang mengizinkan untuk pembuatan dari EWKB, sebuah superset dari standar WKB yang menyertakan informasi tambahan. Lihat dokumentasi <a class=\"reference internal\" href=\"#django.contrib.gis.geos.WKBWriter.outdim\" title=\"django.contrib.gis.geos.WKBWriter.outdim\"><code class=\"xref py py-attr docutils literal notranslate\">WKBWriter.outdim</code></a> untuk lebih rinci tentang argumen <code class=\"docutils literal notranslate\">dim</code>.</p>\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.WKBWriter.write\">\n<span class=\"sig-name descname\">write</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">geom</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.WKBWriter.write\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd></dd></dl>\n\n<p>Returns the WKB of the given geometry as a Python <code class=\"docutils literal notranslate\">buffer</code> object.\nExample:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"kn\">from</span> <span class=\"nn\">django.contrib.gis.geos</span> <span class=\"kn\">import</span> Point<span class=\"p\">,</span> WKBWriter\n<span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> Point<span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkb_w <span class=\"o\">=</span> WKBWriter<span class=\"p\">()</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkb_w<span class=\"o\">.</span>write<span class=\"p\">(</span>pnt<span class=\"p\">)</span>\n<span class=\"go\">&lt;read-only buffer for 0x103a898f0, size -1, offset 0 at 0x103a89930&gt;</span>\n</code></pre></div>\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.WKBWriter.write_hex\">\n<span class=\"sig-name descname\">write_hex</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">geom</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.WKBWriter.write_hex\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd></dd></dl>\n\n<p>Returns WKB of the geometry in hexadecimal.  Example:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"kn\">from</span> <span class=\"nn\">django.contrib.gis.geos</span> <span class=\"kn\">import</span> Point<span class=\"p\">,</span> WKBWriter\n<span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> Point<span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkb_w <span class=\"o\">=</span> WKBWriter<span class=\"p\">()</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkb_w<span class=\"o\">.</span>write_hex<span class=\"p\">(</span>pnt<span class=\"p\">)</span>\n<span class=\"go\">&#39;0101000000000000000000F03F000000000000F03F&#39;</span>\n</code></pre></div>\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.WKBWriter.byteorder\">\n<span class=\"sig-name descname\">byteorder</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.WKBWriter.byteorder\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd></dd></dl>\n\n<p>Milik ini mungkin disetel untuk merubah urutan-byte dari perwakilan geometri.</p>\n<div class=\"table-scroll\" role=\"region\" tabindex=\"0\" aria-label=\"Table\"><table class=\"docutils align-default\">\n<thead>\n<tr class=\"row-odd\"><th class=\"head\"><p>Nilai Byteorder</p></th>\n<th class=\"head\"><p>Deskripsi</p></th>\n</tr>\n</thead>\n<tbody>\n<tr class=\"row-even\"><td><p>0</p></td>\n<td><p>Big Endian (misalnya, cocok dengan sistem RISC)</p></td>\n</tr>\n<tr class=\"row-odd\"><td><p>1</p></td>\n<td><p>Little Endian (misalnya, cocok dengan sistem x86)</p></td>\n</tr>\n</tbody>\n</table>\n</div>\n<p>Example:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"kn\">from</span> <span class=\"nn\">django.contrib.gis.geos</span> <span class=\"kn\">import</span> Point<span class=\"p\">,</span> WKBWriter\n<span class=\"gp\">&gt;&gt;&gt; </span>wkb_w <span class=\"o\">=</span> WKBWriter<span class=\"p\">()</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> Point<span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkb_w<span class=\"o\">.</span>write_hex<span class=\"p\">(</span>pnt<span class=\"p\">)</span>\n<span class=\"go\">&#39;0101000000000000000000F03F000000000000F03F&#39;</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkb_w<span class=\"o\">.</span>byteorder <span class=\"o\">=</span> <span class=\"mi\">0</span>\n<span class=\"go\">&#39;00000000013FF00000000000003FF0000000000000&#39;</span>\n</code></pre></div>\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.WKBWriter.outdim\">\n<span class=\"sig-name descname\">outdim</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.WKBWriter.outdim\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd></dd></dl>\n\n<p>Sifat ini mungkin disetel untuk merubah dimensi keluaran dari perwakilan geometri. Dengan kata lain, jika anda memiliki geometri 3D kemudian disetel menjadi 3 sehingga nilai Z disertakan dalam WKB.</p>\n<div class=\"table-scroll\" role=\"region\" tabindex=\"0\" aria-label=\"Table\"><table class=\"docutils align-default\">\n<thead>\n<tr class=\"row-odd\"><th class=\"head\"><p>Nilai Outdim</p></th>\n<th class=\"head\"><p>Deskripsi</p></th>\n</tr>\n</thead>\n<tbody>\n<tr class=\"row-even\"><td><p>2</p></td>\n<td><p>Awalan, keluaran 2D WKB.</p></td>\n</tr>\n<tr class=\"row-odd\"><td><p>3</p></td>\n<td><p>Keluaran 3D WKB.</p></td>\n</tr>\n</tbody>\n</table>\n</div>\n<p>Example:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"kn\">from</span> <span class=\"nn\">django.contrib.gis.geos</span> <span class=\"kn\">import</span> Point<span class=\"p\">,</span> WKBWriter\n<span class=\"gp\">&gt;&gt;&gt; </span>wkb_w <span class=\"o\">=</span> WKBWriter<span class=\"p\">()</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkb_w<span class=\"o\">.</span>outdim\n<span class=\"go\">2</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> Point<span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkb_w<span class=\"o\">.</span>write_hex<span class=\"p\">(</span>pnt<span class=\"p\">)</span>  <span class=\"c1\"># By default, no Z value included:</span>\n<span class=\"go\">&#39;0101000000000000000000F03F000000000000F03F&#39;</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkb_w<span class=\"o\">.</span>outdim <span class=\"o\">=</span> <span class=\"mi\">3</span>  <span class=\"c1\"># Tell writer to include Z values</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkb_w<span class=\"o\">.</span>write_hex<span class=\"p\">(</span>pnt<span class=\"p\">)</span>\n<span class=\"go\">&#39;0101000080000000000000F03F000000000000F03F000000000000F03F&#39;</span>\n</code></pre></div>\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.WKBWriter.srid\">\n<span class=\"sig-name descname\">srid</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.WKBWriter.srid\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd></dd></dl>\n\n<p>Set this property with a boolean to indicate whether the SRID of the\ngeometry should be included with the WKB representation.  Example:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"kn\">from</span> <span class=\"nn\">django.contrib.gis.geos</span> <span class=\"kn\">import</span> Point<span class=\"p\">,</span> WKBWriter\n<span class=\"gp\">&gt;&gt;&gt; </span>wkb_w <span class=\"o\">=</span> WKBWriter<span class=\"p\">()</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> Point<span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">,</span> srid<span class=\"o\">=</span><span class=\"mi\">4326</span><span class=\"p\">)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkb_w<span class=\"o\">.</span>write_hex<span class=\"p\">(</span>pnt<span class=\"p\">)</span>  <span class=\"c1\"># By default, no SRID included:</span>\n<span class=\"go\">&#39;0101000000000000000000F03F000000000000F03F&#39;</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkb_w<span class=\"o\">.</span>srid <span class=\"o\">=</span> <span class=\"kc\">True</span>  <span class=\"c1\"># Tell writer to include SRID</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkb_w<span class=\"o\">.</span>write_hex<span class=\"p\">(</span>pnt<span class=\"p\">)</span>\n<span class=\"go\">&#39;0101000020E6100000000000000000F03F000000000000F03F&#39;</span>\n</code></pre></div>\n</dd></dl>\n\n<dl class=\"py class\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.WKTWriter\">\n<em class=\"property\"><span class=\"k\">class</span> </em><span class=\"sig-name descname\">WKTWriter</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">dim<span class=\"o\">=</span><span class=\"default_value\">2</span></em>, <em class=\"sig-param\">trim<span class=\"o\">=</span><span class=\"default_value\">False</span></em>, <em class=\"sig-param\">precision<span class=\"o\">=</span><span class=\"default_value\">None</span></em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.WKTWriter\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Kelas ini mengeizinkan pengeluaran perwakilan WKT dari geometri. Lihat atribut <a class=\"reference internal\" href=\"#django.contrib.gis.geos.WKBWriter.outdim\" title=\"django.contrib.gis.geos.WKBWriter.outdim\"><code class=\"xref py py-attr docutils literal notranslate\">WKBWriter.outdim</code></a>, <a class=\"reference internal\" href=\"#django.contrib.gis.geos.WKTWriter.trim\" title=\"django.contrib.gis.geos.WKTWriter.trim\"><code class=\"xref py py-attr docutils literal notranslate\">trim</code></a>, dan <a class=\"reference internal\" href=\"#django.contrib.gis.geos.WKTWriter.precision\" title=\"django.contrib.gis.geos.WKTWriter.precision\"><code class=\"xref py py-attr docutils literal notranslate\">precision</code></a> untuk rincian tentang argumen pembangun.</p>\n<dl class=\"py method\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.WKTWriter.write\">\n<span class=\"sig-name descname\">write</span><span class=\"sig-paren\">(</span><em class=\"sig-param\">geom</em><span class=\"sig-paren\">)</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.WKTWriter.write\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd></dd></dl>\n\n<p>Returns the WKT of the given geometry. Example:</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"kn\">from</span> <span class=\"nn\">django.contrib.gis.geos</span> <span class=\"kn\">import</span> Point<span class=\"p\">,</span> WKTWriter\n<span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> Point<span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkt_w <span class=\"o\">=</span> WKTWriter<span class=\"p\">()</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkt_w<span class=\"o\">.</span>write<span class=\"p\">(</span>pnt<span class=\"p\">)</span>\n<span class=\"go\">&#39;POINT (1.0000000000000000 1.0000000000000000)&#39;</span>\n</code></pre></div>\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.WKTWriter.outdim\">\n<span class=\"sig-name descname\">outdim</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.WKTWriter.outdim\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Lihat <a class=\"reference internal\" href=\"#django.contrib.gis.geos.WKBWriter.outdim\" title=\"django.contrib.gis.geos.WKBWriter.outdim\"><code class=\"xref py py-attr docutils literal notranslate\">WKBWriter.outdim</code></a>.</p>\n</dd></dl>\n\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.WKTWriter.trim\">\n<span class=\"sig-name descname\">trim</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.WKTWriter.trim\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd></dd></dl>\n\n<p>Sifat ini digunakan untuk mengadakan atau meniadakan memangkas dari desimal yang tidak diperlukan.</p>\n<div class=\"code-block\" data-language=\"pycon\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Python console</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Python console code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"kn\">from</span> <span class=\"nn\">django.contrib.gis.geos</span> <span class=\"kn\">import</span> Point<span class=\"p\">,</span> WKTWriter\n<span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> Point<span class=\"p\">(</span><span class=\"mi\">1</span><span class=\"p\">,</span> <span class=\"mi\">1</span><span class=\"p\">)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkt_w <span class=\"o\">=</span> WKTWriter<span class=\"p\">()</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkt_w<span class=\"o\">.</span>trim\n<span class=\"go\">False</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkt_w<span class=\"o\">.</span>write<span class=\"p\">(</span>pnt<span class=\"p\">)</span>\n<span class=\"go\">&#39;POINT (1.0000000000000000 1.0000000000000000)&#39;</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkt_w<span class=\"o\">.</span>trim <span class=\"o\">=</span> <span class=\"kc\">True</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkt_w<span class=\"o\">.</span>write<span class=\"p\">(</span>pnt<span class=\"p\">)</span>\n<span class=\"go\">&#39;POINT (1 1)&#39;</span>\n</code></pre></div>\n<dl class=\"py attribute\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.WKTWriter.precision\">\n<span class=\"sig-name descname\">precision</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.WKTWriter.precision\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd></dd></dl>\n\n<p>Sifat ini mengendalikan ketelitian pembulatan dari kordinat; jika disetel menjadi <code class=\"docutils literal notranslate\">None</code> pembulatan adalah ditiadakan.</p>\n<div class=\"code-block\" data-language=\"default\"><div class=\"code-block-toolbar\"><span class=\"code-block-language\">Code</span><button type=\"button\" class=\"copy-button\" data-copy hidden><span class=\"copy-button-label\">Copy</span></button></div><pre role=\"group\" tabindex=\"0\" aria-label=\"Code code\"><code><span class=\"gp\">&gt;&gt;&gt; </span><span class=\"kn\">from</span> <span class=\"nn\">django.contrib.gis.geos</span> <span class=\"kn\">import</span> Point<span class=\"p\">,</span> WKTWriter\n<span class=\"gp\">&gt;&gt;&gt; </span>pnt <span class=\"o\">=</span> Point<span class=\"p\">(</span><span class=\"mf\">1.44</span><span class=\"p\">,</span> <span class=\"mf\">1.66</span><span class=\"p\">)</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkt_w <span class=\"o\">=</span> WKTWriter<span class=\"p\">()</span>\n<span class=\"gp\">&gt;&gt;&gt; </span><span class=\"nb\">print</span><span class=\"p\">(</span>wkt_w<span class=\"o\">.</span>precision<span class=\"p\">)</span>\n<span class=\"go\">None</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkt_w<span class=\"o\">.</span>write<span class=\"p\">(</span>pnt<span class=\"p\">)</span>\n<span class=\"go\">&#39;POINT (1.4399999999999999 1.6599999999999999)&#39;</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkt_w<span class=\"o\">.</span>precision <span class=\"o\">=</span> <span class=\"mi\">0</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkt_w<span class=\"o\">.</span>write<span class=\"p\">(</span>pnt<span class=\"p\">)</span>\n<span class=\"go\">&#39;POINT (1 2)&#39;</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkt_w<span class=\"o\">.</span>precision <span class=\"o\">=</span> <span class=\"mi\">1</span>\n<span class=\"gp\">&gt;&gt;&gt; </span>wkt_w<span class=\"o\">.</span>write<span class=\"p\">(</span>pnt<span class=\"p\">)</span>\n<span class=\"go\">&#39;POINT (1.4 1.7)&#39;</span>\n</code></pre></div>\n</dd></dl>\n\n<p class=\"rubric\">Catatan kaki</p>\n<aside class=\"footnote-list brackets\">\n<aside class=\"footnote brackets\" id=\"fnogc\" role=\"doc-footnote\">\n<span class=\"label\"><span class=\"fn-bracket\">[</span><a role=\"doc-backlink\" href=\"#id5\">1</a><span class=\"fn-bracket\">]</span></span>\n<p><em>Lihat</em> <a class=\"reference external\" href=\"https://postgis.net/docs/using_postgis_dbmanagement.html#EWKB_EWKT\">PostGIS EWKB, EWKT and Canonical Forms</a>, Dokumentasi PostGIS bab 4.1.2.</p>\n</aside>\n</aside>\n</section>\n</section>\n<section id=\"settings\">\n<h2>Pengaturan<a class=\"heading-anchor\" href=\"#settings\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h2>\n<section id=\"geos-library-path\">\n<span id=\"std-setting-GEOS_LIBRARY_PATH\"></span><h3><code class=\"docutils literal notranslate\">GEOS_LIBRARY_PATH</code><a class=\"heading-anchor\" href=\"#geos-library-path\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h3>\n<p>Sebuah string menentukan tempat dari pustaka C GEOS. Khususnya, pengaturan ini hanya digunakan jika pustaka C GEOS adalah di tempat bukan-standar (misalnya, <code class=\"docutils literal notranslate\">/home/bob/lib/libgeos_c.so</code>).</p>\n<aside class=\"admonition admonition-note\" role=\"note\">\n<p class=\"admonition-title\">Catatan</p>\n<p>Pengaturan harus berupa jalur <em>penuh</em> pada pustaka berbagi <em>C</em>; dengan kata lain anda ingin menggunakan <code class=\"docutils literal notranslate\">libgeos_c.so</code>, bukan <code class=\"docutils literal notranslate\">libgeos.so</code>.</p>\n</aside>\n</section>\n</section>\n<section id=\"exceptions\">\n<h2>Pengecualian<a class=\"heading-anchor\" href=\"#exceptions\"><span class=\"visually-hidden\">Link to this heading</span><span aria-hidden=\"true\">#</span></a></h2>\n<dl class=\"py exception\">\n<dt class=\"sig sig-object py\" id=\"django.contrib.gis.geos.GEOSException\">\n<em class=\"property\"><span class=\"k\">exception</span> </em><span class=\"sig-name descname\">GEOSException</span><a class=\"heading-anchor\" href=\"#django.contrib.gis.geos.GEOSException\"><span class=\"visually-hidden\">Link to this definition</span><span aria-hidden=\"true\">#</span></a></dt>\n<dd><p>Pengecualian GEOS dasar, menunjukkan kesalahan terkait-GEOS.</p>\n</dd></dl>\n\n</section>","rootId":"module-django.contrib.gis.geos","toc":[{"title":"Latar belakang","anchor":"background","children":[{"title":"Apa itu GEOS?","anchor":"what-is-geos","children":[]},{"title":"Fitur","anchor":"features","children":[]}]},{"title":"Pengajaran tambahan","anchor":"tutorial","children":[{"title":"Membuat Geometri","anchor":"creating-a-geometry","children":[]},{"title":"Geometri adalah Pythonic","anchor":"geometries-are-pythonic","children":[]}]},{"title":"Obyek Geometri","anchor":"geometry-objects","children":[{"title":"GEOSGeometry","anchor":"geosgeometry","children":[{"title":"Sifat-sifat","anchor":"properties","children":[]},{"title":"Sifat-sifat Keluaran","anchor":"output-properties","children":[]},{"title":"Metode Predikat Spasial","anchor":"spatial-predicate-methods","children":[]},{"title":"Metode-metode Topologi","anchor":"topological-methods","children":[]},{"title":"Sifat-sifat Topologi","anchor":"topological-properties","children":[]},{"title":"Sifat dan Metode lain","anchor":"other-properties-methods","children":[]}]},{"title":"Point","anchor":"point","children":[]},{"title":"LineString","anchor":"linestring","children":[]},{"title":"LinearRing","anchor":"linearring","children":[]},{"title":"Polygon","anchor":"polygon","children":[]}]},{"title":"Kumpulan Geometri","anchor":"geometry-collections","children":[{"title":"MultiPoint","anchor":"multipoint","children":[]},{"title":"MultiLineString","anchor":"multilinestring","children":[]},{"title":"MultiPolygon","anchor":"multipolygon","children":[]},{"title":"GeometryCollection","anchor":"geometrycollection","children":[]}]},{"title":"Prepared Geometry","anchor":"prepared-geometries","children":[{"title":"PreparedGeometry","anchor":"preparedgeometry","children":[]}]},{"title":"Pabrik Geometri","anchor":"geometry-factories","children":[]},{"title":"Obyek I/O","anchor":"i-o-objects","children":[{"title":"Obyek Pembaca","anchor":"reader-objects","children":[]},{"title":"Obyek Penulis","anchor":"writer-objects","children":[]}]},{"title":"Pengaturan","anchor":"settings","children":[{"title":"GEOS_LIBRARY_PATH","anchor":"geos-library-path","children":[]}]},{"title":"Pengecualian","anchor":"exceptions","children":[]}],"breadcrumbs":[{"docname":"ref/index","title":"Acuan API","url":"/id/5.2/ref/"},{"docname":"ref/contrib/index","title":"Paket contrib","url":"/id/5.2/ref/contrib/"},{"docname":"ref/contrib/gis/index","title":"GeoDjango","url":"/id/5.2/ref/contrib/gis/"}],"prev":{"docname":"ref/contrib/gis/measure","title":"Obyek Pengukuran","url":"/id/5.2/ref/contrib/gis/measure/"},"next":{"docname":"ref/contrib/gis/gdal","title":"API GDAL","url":"/id/5.2/ref/contrib/gis/gdal/"},"formats":{"html":"/id/5.2/ref/contrib/gis/geos/","markdown":"/id/5.2/ref/contrib/gis/geos.md","json":"/id/5.2/ref/contrib/gis/geos.json"},"source":"https://github.com/django/django/blob/stable/5.2.x/docs/ref/contrib/gis/geos.txt","official":"https://docs.djangoproject.com/id/5.2/ref/contrib/gis/geos/","inVersions":["6.1","6.0","5.2","5.1","5.0","4.2","4.1","4.0","3.2","3.1","3.0","2.2","2.1","2.0","1.11","1.10","1.9"],"inLocales":["en","sv","zh-hans","ga","fr","ja","id","it","pt-br","ko","es","el","pl"]}