##// END OF EJS Templates
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1 <html>
2 <head>
3 <style type="text/css">
4 /**
5 * HTML5 ✰ Boilerplate
6 *
7 * style.css contains a reset, font normalization and some base styles.
8 *
9 * Credit is left where credit is due.
10 * Much inspiration was taken from these projects:
11 * - yui.yahooapis.com/2.8.1/build/base/base.css
12 * - camendesign.com/design/
13 * - praegnanz.de/weblog/htmlcssjs-kickstart
14 */
15
16
17 /**
18 * html5doctor.com Reset Stylesheet (Eric Meyer's Reset Reloaded + HTML5 baseline)
19 * v1.6.1 2010-09-17 | Authors: Eric Meyer & Richard Clark
20 * html5doctor.com/html-5-reset-stylesheet/
21 */
22
23 html, body, div, span, object, iframe,
24 h1, h2, h3, h4, h5, h6, p, blockquote, pre,
25 abbr, address, cite, code, del, dfn, em, img, ins, kbd, q, samp,
26 small, strong, sub, sup, var, b, i, dl, dt, dd, ol, ul, li,
27 fieldset, form, label, legend,
28 table, caption, tbody, tfoot, thead, tr, th, td,
29 article, aside, canvas, details, figcaption, figure,
30 footer, header, hgroup, menu, nav, section, summary,
31 time, mark, audio, video {
32 margin: 0;
33 padding: 0;
34 border: 0;
35 font-size: 100%;
36 font: inherit;
37 vertical-align: baseline;
38 }
39
40 sup { vertical-align: super; }
41 sub { vertical-align: sub; }
42
43 article, aside, details, figcaption, figure,
44 footer, header, hgroup, menu, nav, section {
45 display: block;
46 }
47
48 blockquote, q { quotes: none; }
49
50 blockquote:before, blockquote:after,
51 q:before, q:after { content: ""; content: none; }
52
53 ins { background-color: #ff9; color: #000; text-decoration: none; }
54
55 mark { background-color: #ff9; color: #000; font-style: italic; font-weight: bold; }
56
57 del { text-decoration: line-through; }
58
59 abbr[title], dfn[title] { border-bottom: 1px dotted; cursor: help; }
60
61 table { border-collapse: collapse; border-spacing: 0; }
62
63 hr { display: block; height: 1px; border: 0; border-top: 1px solid #ccc; margin: 1em 0; padding: 0; }
64
65 input, select { vertical-align: middle; }
66
67
68 /**
69 * Font normalization inspired by YUI Library's fonts.css: developer.yahoo.com/yui/
70 */
71
72 body { font:13px/1.231 sans-serif; *font-size:small; } /* Hack retained to preserve specificity */
73 select, input, textarea, button { font:99% sans-serif; }
74
75 /* Normalize monospace sizing:
76 en.wikipedia.org/wiki/MediaWiki_talk:Common.css/Archive_11#Teletype_style_fix_for_Chrome */
77 pre, code, kbd, samp { font-family: monospace, sans-serif; }
78
79 em,i { font-style: italic; }
80 b,strong { font-weight: bold; }
81
82 </style>
83 <style type="text/css">
84
85 /* Flexible box model classes */
86 /* Taken from Alex Russell http://infrequently.org/2009/08/css-3-progress/ */
87
88 .hbox {
89 display: -webkit-box;
90 -webkit-box-orient: horizontal;
91 -webkit-box-align: stretch;
92
93 display: -moz-box;
94 -moz-box-orient: horizontal;
95 -moz-box-align: stretch;
96
97 display: box;
98 box-orient: horizontal;
99 box-align: stretch;
100 }
101
102 .hbox > * {
103 -webkit-box-flex: 0;
104 -moz-box-flex: 0;
105 box-flex: 0;
106 }
107
108 .vbox {
109 display: -webkit-box;
110 -webkit-box-orient: vertical;
111 -webkit-box-align: stretch;
112
113 display: -moz-box;
114 -moz-box-orient: vertical;
115 -moz-box-align: stretch;
116
117 display: box;
118 box-orient: vertical;
119 box-align: stretch;
120 }
121
122 .vbox > * {
123 -webkit-box-flex: 0;
124 -moz-box-flex: 0;
125 box-flex: 0;
126 }
127
128 .reverse {
129 -webkit-box-direction: reverse;
130 -moz-box-direction: reverse;
131 box-direction: reverse;
132 }
133
134 .box-flex0 {
135 -webkit-box-flex: 0;
136 -moz-box-flex: 0;
137 box-flex: 0;
138 }
139
140 .box-flex1, .box-flex {
141 -webkit-box-flex: 1;
142 -moz-box-flex: 1;
143 box-flex: 1;
144 }
145
146 .box-flex2 {
147 -webkit-box-flex: 2;
148 -moz-box-flex: 2;
149 box-flex: 2;
150 }
151
152 .box-group1 {
153 -webkit-box-flex-group: 1;
154 -moz-box-flex-group: 1;
155 box-flex-group: 1;
156 }
157
158 .box-group2 {
159 -webkit-box-flex-group: 2;
160 -moz-box-flex-group: 2;
161 box-flex-group: 2;
162 }
163
164 .start {
165 -webkit-box-pack: start;
166 -moz-box-pack: start;
167 box-pack: start;
168 }
169
170 .end {
171 -webkit-box-pack: end;
172 -moz-box-pack: end;
173 box-pack: end;
174 }
175
176 .center {
177 -webkit-box-pack: center;
178 -moz-box-pack: center;
179 box-pack: center;
180 }
181
182 </style>
183 <style type="text/css">
184 /**
185 * Primary styles
186 *
187 * Author: IPython Development Team
188 */
189
190
191 body {
192 overflow: hidden;
193 }
194
195 blockquote {
196 border-left: 4px solid #DDD;
197 padding: 0 15px;
198 color: #777;
199 }
200
201 span#save_widget {
202 padding: 5px;
203 margin: 0px 0px 0px 300px;
204 display:inline-block;
205 }
206
207 span#notebook_name {
208 height: 1em;
209 line-height: 1em;
210 padding: 3px;
211 border: none;
212 font-size: 146.5%;
213 }
214
215 .ui-menubar-item .ui-button .ui-button-text {
216 padding: 0.4em 1.0em;
217 font-size: 100%;
218 }
219
220 .ui-menu {
221 -moz-box-shadow: 0px 6px 10px -1px #adadad;
222 -webkit-box-shadow: 0px 6px 10px -1px #adadad;
223 box-shadow: 0px 6px 10px -1px #adadad;
224 }
225
226 .ui-menu .ui-menu-item a {
227 border: 1px solid transparent;
228 padding: 2px 1.6em;
229 }
230
231 .ui-menu .ui-menu-item a.ui-state-focus {
232 margin: 0;
233 }
234
235 .ui-menu hr {
236 margin: 0.3em 0;
237 }
238
239 #menubar_container {
240 position: relative;
241 }
242
243 #notification_area {
244 position: absolute;
245 right: 0px;
246 top: 0px;
247 height: 25px;
248 padding: 3px 0px;
249 padding-right: 3px;
250 z-index: 10;
251 }
252
253 .notification_widget{
254 float : right;
255 right: 0px;
256 top: 1px;
257 height: 25px;
258 padding: 3px 6px;
259 z-index: 10;
260 }
261
262 .toolbar {
263 padding: 3px 15px;
264 }
265
266 #cell_type {
267 font-size: 85%;
268 }
269
270
271 div#main_app {
272 width: 100%;
273 position: relative;
274 }
275
276 span#quick_help_area {
277 position: static;
278 padding: 5px 0px;
279 margin: 0px 0px 0px 0px;
280 }
281
282 .help_string {
283 float: right;
284 width: 170px;
285 padding: 0px 5px;
286 text-align: left;
287 font-size: 85%;
288 }
289
290 .help_string_label {
291 float: right;
292 font-size: 85%;
293 }
294
295 div#notebook_panel {
296 margin: 0px 0px 0px 0px;
297 padding: 0px;
298 }
299
300 div#notebook {
301 overflow-y: scroll;
302 overflow-x: auto;
303 width: 100%;
304 /* This spaces the cell away from the edge of the notebook area */
305 padding: 5px 5px 15px 5px;
306 margin: 0px;
307 background-color: white;
308 }
309
310 div#pager_splitter {
311 height: 8px;
312 }
313
314 #pager_container {
315 position : relative;
316 }
317
318 div#pager {
319 padding: 15px;
320 overflow: auto;
321 display: none;
322 }
323
324 div.ui-widget-content {
325 border: 1px solid #aaa;
326 outline: none;
327 }
328
329 .cell {
330 border: 1px solid transparent;
331 }
332
333 div.cell {
334 width: 100%;
335 padding: 5px 5px 5px 0px;
336 /* This acts as a spacer between cells, that is outside the border */
337 margin: 2px 0px 2px 0px;
338 }
339
340 div.code_cell {
341 background-color: white;
342 }
343
344 /* any special styling for code cells that are currently running goes here */
345 div.code_cell.running {
346 }
347
348 div.prompt {
349 /* This needs to be wide enough for 3 digit prompt numbers: In[100]: */
350 width: 11ex;
351 /* This 0.4em is tuned to match the padding on the CodeMirror editor. */
352 padding: 0.4em;
353 margin: 0px;
354 font-family: monospace;
355 text-align:right;
356 }
357
358 div.input {
359 page-break-inside: avoid;
360 }
361
362 /* input_area and input_prompt must match in top border and margin for alignment */
363 div.input_area {
364 color: black;
365 border: 1px solid #ddd;
366 border-radius: 3px;
367 background: #f7f7f7;
368 }
369
370 div.input_prompt {
371 color: navy;
372 border-top: 1px solid transparent;
373 }
374
375 div.output_wrapper {
376 /* This is a spacer between the input and output of each cell */
377 margin-top: 5px;
378 margin-left: 5px;
379 /* FF needs explicit width to stretch */
380 width: 100%;
381 /* this position must be relative to enable descendents to be absolute within it */
382 position: relative;
383 }
384
385 /* class for the output area when it should be height-limited */
386 div.output_scroll {
387 /* ideally, this would be max-height, but FF barfs all over that */
388 height: 24em;
389 /* FF needs this *and the wrapper* to specify full width, or it will shrinkwrap */
390 width: 100%;
391
392 overflow: auto;
393 border-radius: 3px;
394 box-shadow: inset 0 2px 8px rgba(0, 0, 0, .8);
395 }
396
397 /* output div while it is collapsed */
398 div.output_collapsed {
399 margin-right: 5px;
400 }
401
402 div.out_prompt_overlay {
403 height: 100%;
404 padding: 0px;
405 position: absolute;
406 border-radius: 3px;
407 }
408
409 div.out_prompt_overlay:hover {
410 /* use inner shadow to get border that is computed the same on WebKit/FF */
411 box-shadow: inset 0 0 1px #000;
412 background: rgba(240, 240, 240, 0.5);
413 }
414
415 div.output_prompt {
416 color: darkred;
417 /* 5px right shift to account for margin in parent container */
418 margin: 0 5px 0 -5px;
419 }
420
421 /* This class is the outer container of all output sections. */
422 div.output_area {
423 padding: 0px;
424 page-break-inside: avoid;
425 }
426
427 /* This class is for the output subarea inside the output_area and after
428 the prompt div. */
429 div.output_subarea {
430 padding: 0.44em 0.4em 0.4em 1px;
431 }
432
433 /* The rest of the output_* classes are for special styling of the different
434 output types */
435
436 /* all text output has this class: */
437 div.output_text {
438 text-align: left;
439 color: black;
440 font-family: monospace;
441 }
442
443 /* stdout/stderr are 'text' as well as 'stream', but pyout/pyerr are *not* streams */
444 div.output_stream {
445 padding-top: 0.0em;
446 padding-bottom: 0.0em;
447 }
448 div.output_stdout {
449 }
450 div.output_stderr {
451 background: #fdd; /* very light red background for stderr */
452 }
453
454 div.output_latex {
455 text-align: left;
456 color: black;
457 }
458
459 div.output_html {
460 }
461
462 div.output_png {
463 }
464
465 div.output_jpeg {
466 }
467
468 div.text_cell {
469 background-color: white;
470 padding: 5px 5px 5px 5px;
471 }
472
473 div.text_cell_input {
474 color: black;
475 border: 1px solid #ddd;
476 border-radius: 3px;
477 background: #f7f7f7;
478 }
479
480 div.text_cell_render {
481 font-family: "Helvetica Neue", Arial, Helvetica, Geneva, sans-serif;
482 outline: none;
483 resize: none;
484 width: inherit;
485 border-style: none;
486 padding: 5px;
487 color: black;
488 }
489
490 /* The following gets added to the <head> if it is detected that the user has a
491 * monospace font with inconsistent normal/bold/italic height. See
492 * notebookmain.js. Such fonts will have keywords vertically offset with
493 * respect to the rest of the text. The user should select a better font.
494 * See: https://github.com/ipython/ipython/issues/1503
495 *
496 * .CodeMirror span {
497 * vertical-align: bottom;
498 * }
499 */
500
501 .CodeMirror {
502 line-height: 1.231; /* Changed from 1em to our global default */
503 }
504
505 .CodeMirror-scroll {
506 height: auto; /* Changed to auto to autogrow */
507 /* The CodeMirror docs are a bit fuzzy on if overflow-y should be hidden or visible.*/
508 /* We have found that if it is visible, vertical scrollbars appear with font size changes.*/
509 overflow-y: hidden;
510 overflow-x: auto; /* Changed from auto to remove scrollbar */
511 }
512
513 /* CSS font colors for translated ANSI colors. */
514
515
516 .ansiblack {color: black;}
517 .ansired {color: darkred;}
518 .ansigreen {color: darkgreen;}
519 .ansiyellow {color: brown;}
520 .ansiblue {color: darkblue;}
521 .ansipurple {color: darkviolet;}
522 .ansicyan {color: steelblue;}
523 .ansigrey {color: grey;}
524 .ansibold {font-weight: bold;}
525
526 .completions {
527 position: absolute;
528 z-index: 10;
529 overflow: hidden;
530 border: 1px solid grey;
531 }
532
533 .completions select {
534 background: white;
535 outline: none;
536 border: none;
537 padding: 0px;
538 margin: 0px;
539 overflow: auto;
540 font-family: monospace;
541 }
542
543 option.context {
544 background-color: #DEF7FF;
545 }
546 option.introspection {
547 background-color: #EBF4EB;
548 }
549
550 /*fixed part of the completion*/
551 .completions p b {
552 font-weight:bold;
553 }
554
555 .completions p {
556 background: #DDF;
557 /*outline: none;
558 padding: 0px;*/
559 border-bottom: black solid 1px;
560 padding: 1px;
561 font-family: monospace;
562 }
563
564 pre.dialog {
565 background-color: #f7f7f7;
566 border: 1px solid #ddd;
567 border-radius: 3px;
568 padding: 0.4em;
569 padding-left: 2em;
570 }
571
572 p.dialog {
573 padding : 0.2em;
574 }
575
576 .shortcut_key {
577 display: inline-block;
578 width: 15ex;
579 text-align: right;
580 font-family: monospace;
581 }
582
583 .shortcut_descr {
584 }
585
586 /* Word-wrap output correctly. This is the CSS3 spelling, though Firefox seems
587 to not honor it correctly. Webkit browsers (Chrome, rekonq, Safari) do.
588 */
589 pre, code, kbd, samp { white-space: pre-wrap; }
590
591 #fonttest {
592 font-family: monospace;
593 }
594
595 .js-error {
596 color: darkred;
597 }
598
599 </style>
600 <style type="text/css">
601 .rendered_html {color: black;}
602 .rendered_html em {font-style: italic;}
603 .rendered_html strong {font-weight: bold;}
604 .rendered_html u {text-decoration: underline;}
605 .rendered_html :link { text-decoration: underline }
606 .rendered_html :visited { text-decoration: underline }
607 .rendered_html h1 {font-size: 197%; margin: .65em 0; font-weight: bold;}
608 .rendered_html h2 {font-size: 153.9%; margin: .75em 0; font-weight: bold;}
609 .rendered_html h3 {font-size: 123.1%; margin: .85em 0; font-weight: bold;}
610 .rendered_html h4 {font-size: 100% margin: 0.95em 0; font-weight: bold;}
611 .rendered_html h5 {font-size: 85%; margin: 1.5em 0; font-weight: bold;}
612 .rendered_html h6 {font-size: 77%; margin: 1.65em 0; font-weight: bold;}
613 .rendered_html ul {list-style:disc; margin: 1em 2em;}
614 .rendered_html ul ul {list-style:square; margin: 0em 2em;}
615 .rendered_html ul ul ul {list-style:circle; margin-left: 0em 2em;}
616 .rendered_html ol {list-style:upper-roman; margin: 1em 2em;}
617 .rendered_html ol ol {list-style:upper-alpha; margin: 0em 2em;}
618 .rendered_html ol ol ol {list-style:decimal; margin: 0em 2em;}
619 .rendered_html ol ol ol ol {list-style:lower-alpha; margin: 0em 2em;}
620 .rendered_html ol ol ol ol ol {list-style:lower-roman; margin: 0em 2em;}
621
622 .rendered_html hr {
623 color: black;
624 background-color: black;
625 }
626
627 .rendered_html pre {
628 margin: 1em 2em;
629 }
630
631 .rendered_html blockquote {
632 margin: 1em 2em;
633 }
634
635 .rendered_html table {
636 border: 1px solid black;
637 border-collapse: collapse;
638 margin: 1em 2em;
639 }
640
641 .rendered_html td {
642 border: 1px solid black;
643 text-align: left;
644 vertical-align: middle;
645 padding: 4px;
646 }
647
648 .rendered_html th {
649 border: 1px solid black;
650 text-align: left;
651 vertical-align: middle;
652 padding: 4px;
653 font-weight: bold;
654 }
655
656 .rendered_html tr {
657 border: 1px solid black;
658 }
659
660 .rendered_html p + p {
661 margin-top: 1em;
662 }
663
664
665 </style>
666 <style type="text/css">
667 /* Overrides of notebook CSS for static HTML export
668
669 */
670 body {
671 overflow: visible;
672 padding: 8px;
673 }
674 .input_area {
675 padding: 0.4em;
676 }
677
678 </style>
679 <meta charset="UTF-8">
680 <style type="text/css">
681 .highlight .hll { background-color: #ffffcc }
682 .highlight { background: #f8f8f8; }
683 .highlight .c { color: #408080; font-style: italic } /* Comment */
684 .highlight .err { border: 1px solid #FF0000 } /* Error */
685 .highlight .k { color: #008000; font-weight: bold } /* Keyword */
686 .highlight .o { color: #666666 } /* Operator */
687 .highlight .cm { color: #408080; font-style: italic } /* Comment.Multiline */
688 .highlight .cp { color: #BC7A00 } /* Comment.Preproc */
689 .highlight .c1 { color: #408080; font-style: italic } /* Comment.Single */
690 .highlight .cs { color: #408080; font-style: italic } /* Comment.Special */
691 .highlight .gd { color: #A00000 } /* Generic.Deleted */
692 .highlight .ge { font-style: italic } /* Generic.Emph */
693 .highlight .gr { color: #FF0000 } /* Generic.Error */
694 .highlight .gh { color: #000080; font-weight: bold } /* Generic.Heading */
695 .highlight .gi { color: #00A000 } /* Generic.Inserted */
696 .highlight .go { color: #808080 } /* Generic.Output */
697 .highlight .gp { color: #000080; font-weight: bold } /* Generic.Prompt */
698 .highlight .gs { font-weight: bold } /* Generic.Strong */
699 .highlight .gu { color: #800080; font-weight: bold } /* Generic.Subheading */
700 .highlight .gt { color: #0040D0 } /* Generic.Traceback */
701 .highlight .kc { color: #008000; font-weight: bold } /* Keyword.Constant */
702 .highlight .kd { color: #008000; font-weight: bold } /* Keyword.Declaration */
703 .highlight .kn { color: #008000; font-weight: bold } /* Keyword.Namespace */
704 .highlight .kp { color: #008000 } /* Keyword.Pseudo */
705 .highlight .kr { color: #008000; font-weight: bold } /* Keyword.Reserved */
706 .highlight .kt { color: #B00040 } /* Keyword.Type */
707 .highlight .m { color: #666666 } /* Literal.Number */
708 .highlight .s { color: #BA2121 } /* Literal.String */
709 .highlight .na { color: #7D9029 } /* Name.Attribute */
710 .highlight .nb { color: #008000 } /* Name.Builtin */
711 .highlight .nc { color: #0000FF; font-weight: bold } /* Name.Class */
712 .highlight .no { color: #880000 } /* Name.Constant */
713 .highlight .nd { color: #AA22FF } /* Name.Decorator */
714 .highlight .ni { color: #999999; font-weight: bold } /* Name.Entity */
715 .highlight .ne { color: #D2413A; font-weight: bold } /* Name.Exception */
716 .highlight .nf { color: #0000FF } /* Name.Function */
717 .highlight .nl { color: #A0A000 } /* Name.Label */
718 .highlight .nn { color: #0000FF; font-weight: bold } /* Name.Namespace */
719 .highlight .nt { color: #008000; font-weight: bold } /* Name.Tag */
720 .highlight .nv { color: #19177C } /* Name.Variable */
721 .highlight .ow { color: #AA22FF; font-weight: bold } /* Operator.Word */
722 .highlight .w { color: #bbbbbb } /* Text.Whitespace */
723 .highlight .mf { color: #666666 } /* Literal.Number.Float */
724 .highlight .mh { color: #666666 } /* Literal.Number.Hex */
725 .highlight .mi { color: #666666 } /* Literal.Number.Integer */
726 .highlight .mo { color: #666666 } /* Literal.Number.Oct */
727 .highlight .sb { color: #BA2121 } /* Literal.String.Backtick */
728 .highlight .sc { color: #BA2121 } /* Literal.String.Char */
729 .highlight .sd { color: #BA2121; font-style: italic } /* Literal.String.Doc */
730 .highlight .s2 { color: #BA2121 } /* Literal.String.Double */
731 .highlight .se { color: #BB6622; font-weight: bold } /* Literal.String.Escape */
732 .highlight .sh { color: #BA2121 } /* Literal.String.Heredoc */
733 .highlight .si { color: #BB6688; font-weight: bold } /* Literal.String.Interpol */
734 .highlight .sx { color: #008000 } /* Literal.String.Other */
735 .highlight .sr { color: #BB6688 } /* Literal.String.Regex */
736 .highlight .s1 { color: #BA2121 } /* Literal.String.Single */
737 .highlight .ss { color: #19177C } /* Literal.String.Symbol */
738 .highlight .bp { color: #008000 } /* Name.Builtin.Pseudo */
739 .highlight .vc { color: #19177C } /* Name.Variable.Class */
740 .highlight .vg { color: #19177C } /* Name.Variable.Global */
741 .highlight .vi { color: #19177C } /* Name.Variable.Instance */
742 .highlight .il { color: #666666 } /* Literal.Number.Integer.Long */
743 </style>
744 <script src="https://c328740.ssl.cf1.rackcdn.com/mathjax/latest/MathJax.js?config=TeX-AMS_HTML" type="text/javascript">
745
746 </script>
747 <script type="text/javascript">
748 init_mathjax = function() {
749 if (window.MathJax) {
750 // MathJax loaded
751 MathJax.Hub.Config({
752 tex2jax: {
753 inlineMath: [ ['$','$'], ["\\(","\\)"] ],
754 displayMath: [ ['$$','$$'], ["\\[","\\]"] ]
755 },
756 displayAlign: 'left', // Change this to 'center' to center equations.
757 "HTML-CSS": {
758 styles: {'.MathJax_Display': {"margin": 0}}
759 }
760 });
761 MathJax.Hub.Queue(["Typeset",MathJax.Hub]);
762 }
763 }
764 init_mathjax();
765 </script>
766 </head>
767 <body>
768 <div class="text_cell_render border-box-sizing rendered_html">
769 <h1>A brief tour of the IPython notebook</h1>
770 <p>This document will give you a brief tour of the capabilities of the IPython notebook.<br />
771 You can view its contents by scrolling around, or execute each cell by typing <code>Shift-Enter</code>.
772 After you conclude this brief high-level tour, you should read the accompanying notebook
773 titled <code>01_notebook_introduction</code>, which takes a more step-by-step approach to the features of the
774 system.<br />
775 </p>
776 <p>The rest of the notebooks in this directory illustrate various other aspects and
777 capabilities of the IPython notebook; some of them may require additional libraries to be executed.</p>
778 <p><strong>NOTE:</strong> This notebook <em>must</em> be run from its own directory, so you must <code>cd</code>
779 to this directory and then start the notebook, but do <em>not</em> use the <code>--notebook-dir</code>
780 option to run it from another location.</p>
781 <p>The first thing you need to know is that you are still controlling the same old IPython you're used to,
782 so things like shell aliases and magic commands still work:</p>
783 </div>
784 <div class="cell border-box-sizing code_cell vbox">
785 <div class="input hbox">
786 <div class="prompt input_prompt">In&nbsp;[1]:</div>
787 <div class="input_area box-flex1">
788 <div class="highlight"><pre><span class="n">pwd</span>
789 </pre></div>
790
791 </div>
792 </div>
793 <div class="vbox output_wrapper">
794 <div class="output vbox">
795 <div class="hbox output_area">
796 <div class="prompt output_prompt">Out[1]:</div>
797 <div class="output_subarea output_pyout">
798 <pre>u&apos;/Users/minrk/dev/ip/mine/docs/examples/notebooks&apos;</pre>
799 </div>
800 </div>
801 </div>
802 </div>
803 </div>
804 <div class="cell border-box-sizing code_cell vbox">
805 <div class="input hbox">
806 <div class="prompt input_prompt">In&nbsp;[2]:</div>
807 <div class="input_area box-flex1">
808 <div class="highlight"><pre><span class="n">ls</span>
809 </pre></div>
810
811 </div>
812 </div>
813 <div class="vbox output_wrapper">
814 <div class="output vbox">
815 <div class="hbox output_area">
816 <div class="prompt output_prompt"></div>
817 <div class="output_subarea output_stream output_stdout">
818 <pre>00_notebook_tour.ipynb callbacks.ipynb python-logo.svg
819 01_notebook_introduction.ipynb cython_extension.ipynb rmagic_extension.ipynb
820 Animations_and_Progress.ipynb display_protocol.ipynb sympy.ipynb
821 Capturing Output.ipynb formatting.ipynb sympy_quantum_computing.ipynb
822 Script Magics.ipynb octavemagic_extension.ipynb trapezoid_rule.ipynb
823 animation.m4v progbar.ipynb
824 </pre>
825 </div>
826 </div>
827 </div>
828 </div>
829 </div>
830 <div class="cell border-box-sizing code_cell vbox">
831 <div class="input hbox">
832 <div class="prompt input_prompt">In&nbsp;[3]:</div>
833 <div class="input_area box-flex1">
834 <div class="highlight"><pre><span class="n">message</span> <span class="o">=</span> <span class="s">&#39;The IPython notebook is great!&#39;</span>
835 <span class="c"># note: the echo command does not run on Windows, it&#39;s a unix command.</span>
836 <span class="o">!</span><span class="nb">echo</span> <span class="nv">$message</span>
837 </pre></div>
838
839 </div>
840 </div>
841 <div class="vbox output_wrapper">
842 <div class="output vbox">
843 <div class="hbox output_area">
844 <div class="prompt output_prompt"></div>
845 <div class="output_subarea output_stream output_stdout">
846 <pre>The IPython notebook is great!
847 </pre>
848 </div>
849 </div>
850 </div>
851 </div>
852 </div>
853 <div class="text_cell_render border-box-sizing rendered_html">
854 <h2>
855 Plots with matplotlib
856 </h2>
857 </div>
858 <div class="text_cell_render border-box-sizing rendered_html">
859 <p>IPython adds an 'inline' matplotlib backend,
860 which embeds any matplotlib figures into the notebook.</p>
861 </div>
862 <div class="cell border-box-sizing code_cell vbox">
863 <div class="input hbox">
864 <div class="prompt input_prompt">In&nbsp;[4]:</div>
865 <div class="input_area box-flex1">
866 <div class="highlight"><pre><span class="o">%</span><span class="k">pylab</span> <span class="n">inline</span>
867 </pre></div>
868
869 </div>
870 </div>
871 <div class="vbox output_wrapper">
872 <div class="output vbox">
873 <div class="hbox output_area">
874 <div class="prompt output_prompt"></div>
875 <div class="output_subarea output_stream output_stdout">
876 <pre>
877 Welcome to pylab, a matplotlib-based Python environment [backend: module://IPython.zmq.pylab.backend_inline].
878 For more information, type &apos;help(pylab)&apos;.
879 </pre>
880 </div>
881 </div>
882 </div>
883 </div>
884 </div>
885 <div class="cell border-box-sizing code_cell vbox">
886 <div class="input hbox">
887 <div class="prompt input_prompt">In&nbsp;[5]:</div>
888 <div class="input_area box-flex1">
889 <div class="highlight"><pre><span class="n">x</span> <span class="o">=</span> <span class="n">linspace</span><span class="p">(</span><span class="mi">0</span><span class="p">,</span> <span class="mi">3</span><span class="o">*</span><span class="n">pi</span><span class="p">,</span> <span class="mi">500</span><span class="p">)</span>
890 <span class="n">plot</span><span class="p">(</span><span class="n">x</span><span class="p">,</span> <span class="n">sin</span><span class="p">(</span><span class="n">x</span><span class="o">**</span><span class="mi">2</span><span class="p">))</span>
891 <span class="n">title</span><span class="p">(</span><span class="s">&#39;A simple chirp&#39;</span><span class="p">);</span>
892 </pre></div>
893
894 </div>
895 </div>
896 <div class="vbox output_wrapper">
897 <div class="output vbox">
898 <div class="hbox output_area">
899 <div class="prompt output_prompt"></div>
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1255 "></img>
1256 </div>
1257 </div>
1258 </div>
1259 </div>
1260 </div>
1261 <div class="text_cell_render border-box-sizing rendered_html">
1262 <p>You can paste blocks of input with prompt markers, such as those from
1263 <a href="http://docs.python.org/tutorial/interpreter.html#interactive-mode">the official Python tutorial</a></p>
1264 </div>
1265 <div class="cell border-box-sizing code_cell vbox">
1266 <div class="input hbox">
1267 <div class="prompt input_prompt">In&nbsp;[6]:</div>
1268 <div class="input_area box-flex1">
1269 <div class="highlight"><pre><span class="o">&gt;&gt;&gt;</span> <span class="n">the_world_is_flat</span> <span class="o">=</span> <span class="mi">1</span>
1270 <span class="o">&gt;&gt;&gt;</span> <span class="k">if</span> <span class="n">the_world_is_flat</span><span class="p">:</span>
1271 <span class="o">...</span> <span class="k">print</span> <span class="s">&quot;Be careful not to fall off!&quot;</span>
1272 </pre></div>
1273
1274 </div>
1275 </div>
1276 <div class="vbox output_wrapper">
1277 <div class="output vbox">
1278 <div class="hbox output_area">
1279 <div class="prompt output_prompt"></div>
1280 <div class="output_subarea output_stream output_stdout">
1281 <pre>Be careful not to fall off!
1282 </pre>
1283 </div>
1284 </div>
1285 </div>
1286 </div>
1287 </div>
1288 <div class="text_cell_render border-box-sizing rendered_html">
1289 <p>Errors are shown in informative ways:</p>
1290 </div>
1291 <div class="cell border-box-sizing code_cell vbox">
1292 <div class="input hbox">
1293 <div class="prompt input_prompt">In&nbsp;[7]:</div>
1294 <div class="input_area box-flex1">
1295 <div class="highlight"><pre><span class="o">%</span><span class="k">run</span> <span class="n">non_existent_file</span>
1296 </pre></div>
1297
1298 </div>
1299 </div>
1300 <div class="vbox output_wrapper">
1301 <div class="output vbox">
1302 <div class="hbox output_area">
1303 <div class="prompt output_prompt"></div>
1304 <div class="output_subarea output_stream output_stderr">
1305 <pre>ERROR: File &#96;u&apos;non_existent_file.py&apos;&#96; not found.</pre>
1306 </div>
1307 </div>
1308 </div>
1309 </div>
1310 </div>
1311 <div class="cell border-box-sizing code_cell vbox">
1312 <div class="input hbox">
1313 <div class="prompt input_prompt">In&nbsp;[8]:</div>
1314 <div class="input_area box-flex1">
1315 <div class="highlight"><pre><span class="n">x</span> <span class="o">=</span> <span class="mi">1</span>
1316 <span class="n">y</span> <span class="o">=</span> <span class="mi">4</span>
1317 <span class="n">z</span> <span class="o">=</span> <span class="n">y</span><span class="o">/</span><span class="p">(</span><span class="mi">1</span><span class="o">-</span><span class="n">x</span><span class="p">)</span>
1318 </pre></div>
1319
1320 </div>
1321 </div>
1322 <div class="vbox output_wrapper">
1323 <div class="output vbox">
1324 <div class="hbox output_area">
1325 <div class="prompt output_prompt"></div>
1326 <div class="output_subarea output_pyerr">
1327 <pre><span class="ansired">---------------------------------------------------------------------------</span>
1328 <span class="ansired">ZeroDivisionError</span> Traceback (most recent call last)
1329 <span class="ansigreen">&lt;ipython-input-8-dc39888fd1d2&gt;</span> in <span class="ansicyan">&lt;module&gt;</span><span class="ansiblue">()</span>
1330 <span class="ansigreen"> 1</span> x <span class="ansiyellow">=</span> <span class="ansicyan">1</span><span class="ansiyellow"></span>
1331 <span class="ansigreen"> 2</span> y <span class="ansiyellow">=</span> <span class="ansicyan">4</span><span class="ansiyellow"></span>
1332 <span class="ansigreen">----&gt; 3</span><span class="ansiyellow"> </span>z <span class="ansiyellow">=</span> y<span class="ansiyellow">/</span><span class="ansiyellow">(</span><span class="ansicyan">1</span><span class="ansiyellow">-</span>x<span class="ansiyellow">)</span><span class="ansiyellow"></span>
1333
1334 <span class="ansired">ZeroDivisionError</span>: integer division or modulo by zero</pre>
1335 </div>
1336 </div>
1337 </div>
1338 </div>
1339 </div>
1340 <div class="text_cell_render border-box-sizing rendered_html">
1341 <p>When IPython needs to display additional information (such as providing details on an object via <code>x?</code>
1342 it will automatically invoke a pager at the bottom of the screen:</p>
1343 </div>
1344 <div class="cell border-box-sizing code_cell vbox">
1345 <div class="input hbox">
1346 <div class="prompt input_prompt">In&nbsp;[18]:</div>
1347 <div class="input_area box-flex1">
1348 <div class="highlight"><pre><span class="n">magic</span>
1349 </pre></div>
1350
1351 </div>
1352 </div>
1353 </div>
1354 <div class="text_cell_render border-box-sizing rendered_html">
1355 <h2>Non-blocking output of kernel</h2>
1356 <p>If you execute the next cell, you will see the output arriving as it is generated, not all at the end.</p>
1357 </div>
1358 <div class="cell border-box-sizing code_cell vbox">
1359 <div class="input hbox">
1360 <div class="prompt input_prompt">In&nbsp;[19]:</div>
1361 <div class="input_area box-flex1">
1362 <div class="highlight"><pre><span class="kn">import</span> <span class="nn">time</span><span class="o">,</span> <span class="nn">sys</span>
1363 <span class="k">for</span> <span class="n">i</span> <span class="ow">in</span> <span class="nb">range</span><span class="p">(</span><span class="mi">8</span><span class="p">):</span>
1364 <span class="k">print</span> <span class="n">i</span><span class="p">,</span>
1365 <span class="n">time</span><span class="o">.</span><span class="n">sleep</span><span class="p">(</span><span class="mf">0.5</span><span class="p">)</span>
1366 </pre></div>
1367
1368 </div>
1369 </div>
1370 <div class="vbox output_wrapper">
1371 <div class="output vbox">
1372 <div class="hbox output_area">
1373 <div class="prompt output_prompt"></div>
1374 <div class="output_subarea output_stream output_stdout">
1375 <pre>0 1 2 3 4 5 6 7
1376 </pre>
1377 </div>
1378 </div>
1379 </div>
1380 </div>
1381 </div>
1382 <div class="text_cell_render border-box-sizing rendered_html">
1383 <h2>Clean crash and restart</h2>
1384 <p>We call the low-level system libc.time routine with the wrong argument via
1385 ctypes to segfault the Python interpreter:</p>
1386 </div>
1387 <div class="cell border-box-sizing code_cell vbox">
1388 <div class="input hbox">
1389 <div class="prompt input_prompt">In&nbsp;[*]:</div>
1390 <div class="input_area box-flex1">
1391 <div class="highlight"><pre><span class="kn">import</span> <span class="nn">sys</span>
1392 <span class="kn">from</span> <span class="nn">ctypes</span> <span class="kn">import</span> <span class="n">CDLL</span>
1393 <span class="c"># This will crash a Linux or Mac system; equivalent calls can be made on Windows</span>
1394 <span class="n">dll</span> <span class="o">=</span> <span class="s">&#39;dylib&#39;</span> <span class="k">if</span> <span class="n">sys</span><span class="o">.</span><span class="n">platform</span> <span class="o">==</span> <span class="s">&#39;darwin&#39;</span> <span class="k">else</span> <span class="s">&#39;.so.6&#39;</span>
1395 <span class="n">libc</span> <span class="o">=</span> <span class="n">CDLL</span><span class="p">(</span><span class="s">&quot;libc.</span><span class="si">%s</span><span class="s">&quot;</span> <span class="o">%</span> <span class="n">dll</span><span class="p">)</span>
1396 <span class="n">libc</span><span class="o">.</span><span class="n">time</span><span class="p">(</span><span class="o">-</span><span class="mi">1</span><span class="p">)</span> <span class="c"># BOOM!!</span>
1397 </pre></div>
1398
1399 </div>
1400 </div>
1401 </div>
1402 <div class="text_cell_render border-box-sizing rendered_html">
1403 <h2>Markdown cells can contain formatted text and code</h2>
1404 <p>You can <em>italicize</em>, <strong>boldface</strong></p>
1405 <ul>
1406 <li>build</li>
1407 <li>lists</li>
1408 </ul>
1409 <p>and embed code meant for illustration instead of execution in Python:</p>
1410 <pre><code>def f(x):
1411 """a docstring"""
1412 return x**2
1413 </code></pre>
1414 <p>or other languages:</p>
1415 <pre><code>if (i=0; i&lt;n; i++) {
1416 printf("hello %d\n", i);
1417 x += 4;
1418 }
1419 </code></pre>
1420 </div>
1421 <div class="text_cell_render border-box-sizing rendered_html">
1422 <p>Courtesy of MathJax, you can include mathematical expressions both inline:
1423 $e^{i\pi} + 1 = 0$ and displayed:</p>
1424 <p>$$e^x=\sum_{i=0}^\infty \frac{1}{i!}x^i$$</p>
1425 </div>
1426 <div class="text_cell_render border-box-sizing rendered_html">
1427 <h2>Rich displays: include anyting a browser can show</h2>
1428 <p>Note that we have an actual protocol for this, see the <code>display_protocol</code> notebook for further details.</p>
1429 <h3>Images</h3>
1430 </div>
1431 <div class="cell border-box-sizing code_cell vbox">
1432 <div class="input hbox">
1433 <div class="prompt input_prompt">In&nbsp;[1]:</div>
1434 <div class="input_area box-flex1">
1435 <div class="highlight"><pre><span class="kn">from</span> <span class="nn">IPython.display</span> <span class="kn">import</span> <span class="n">Image</span>
1436 <span class="n">Image</span><span class="p">(</span><span class="n">filename</span><span class="o">=</span><span class="s">&#39;../../source/_static/logo.png&#39;</span><span class="p">)</span>
1437 </pre></div>
1438
1439 </div>
1440 </div>
1441 <div class="vbox output_wrapper">
1442 <div class="output vbox">
1443 <div class="hbox output_area">
1444 <div class="prompt output_prompt">Out[1]:</div>
1445 <div class="output_subarea output_pyout">
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1609 </div>
1610 </div>
1611 </div>
1612 </div>
1613 </div>
1614 <div class="text_cell_render border-box-sizing rendered_html">
1615 <p>An image can also be displayed from raw data or a url</p>
1616 </div>
1617 <div class="cell border-box-sizing code_cell vbox">
1618 <div class="input hbox">
1619 <div class="prompt input_prompt">In&nbsp;[2]:</div>
1620 <div class="input_area box-flex1">
1621 <div class="highlight"><pre><span class="n">Image</span><span class="p">(</span><span class="n">url</span><span class="o">=</span><span class="s">&#39;http://python.org/images/python-logo.gif&#39;</span><span class="p">)</span>
1622 </pre></div>
1623
1624 </div>
1625 </div>
1626 <div class="vbox output_wrapper">
1627 <div class="output vbox">
1628 <div class="hbox output_area">
1629 <div class="prompt output_prompt">Out[2]:</div>
1630 <div class="output_subarea output_pyout output_html rendered_html">
1631 <img src="http://python.org/images/python-logo.gif" />
1632 </div>
1633 </div>
1634 </div>
1635 </div>
1636 </div>
1637 <div class="text_cell_render border-box-sizing rendered_html">
1638 <p>SVG images are also supported out of the box (since modern browsers do a good job of rendering them):</p>
1639 </div>
1640 <div class="cell border-box-sizing code_cell vbox">
1641 <div class="input hbox">
1642 <div class="prompt input_prompt">In&nbsp;[3]:</div>
1643 <div class="input_area box-flex1">
1644 <div class="highlight"><pre><span class="kn">from</span> <span class="nn">IPython.display</span> <span class="kn">import</span> <span class="n">SVG</span>
1645 <span class="n">SVG</span><span class="p">(</span><span class="n">filename</span><span class="o">=</span><span class="s">&#39;python-logo.svg&#39;</span><span class="p">)</span>
1646 </pre></div>
1647
1648 </div>
1649 </div>
1650 <div class="vbox output_wrapper">
1651 <div class="output vbox">
1652 <div class="hbox output_area">
1653 <div class="prompt output_prompt">Out[3]:</div>
1654 <div class="output_subarea output_pyout">
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1716 </div>
1717 </div>
1718 </div>
1719 </div>
1720 </div>
1721 <div class="text_cell_render border-box-sizing rendered_html">
1722 <h4>Embedded vs Non-embedded Images</h4>
1723 </div>
1724 <div class="text_cell_render border-box-sizing rendered_html">
1725 <p>As of IPython 0.13, images are embedded by default for compatibility with QtConsole, and the ability to still be displayed offline.</p>
1726 <p>Let's look at the differences:</p>
1727 </div>
1728 <div class="cell border-box-sizing code_cell vbox">
1729 <div class="input hbox">
1730 <div class="prompt input_prompt">In&nbsp;[4]:</div>
1731 <div class="input_area box-flex1">
1732 <div class="highlight"><pre><span class="c"># by default Image data are embedded</span>
1733 <span class="n">Embed</span> <span class="o">=</span> <span class="n">Image</span><span class="p">(</span> <span class="s">&#39;http://scienceview.berkeley.edu/view/images/newview.jpg&#39;</span><span class="p">)</span>
1734
1735 <span class="c"># if kwarg `url` is given, the embedding is assumed to be false</span>
1736 <span class="n">SoftLinked</span> <span class="o">=</span> <span class="n">Image</span><span class="p">(</span><span class="n">url</span><span class="o">=</span><span class="s">&#39;http://scienceview.berkeley.edu/view/images/newview.jpg&#39;</span><span class="p">)</span>
1737
1738 <span class="c"># In each case, embed can be specified explicitly with the `embed` kwarg</span>
1739 <span class="c"># ForceEmbed = Image(url=&#39;http://scienceview.berkeley.edu/view/images/newview.jpg&#39;, embed=True)</span>
1740 </pre></div>
1741
1742 </div>
1743 </div>
1744 </div>
1745 <div class="text_cell_render border-box-sizing rendered_html">
1746 <p>Today's image from a webcam at Berkeley, (at the time I created this notebook). This should also work in the Qtconsole.
1747 Drawback is that the saved notebook will be larger, but the image will still be present offline.</p>
1748 </div>
1749 <div class="cell border-box-sizing code_cell vbox">
1750 <div class="input hbox">
1751 <div class="prompt input_prompt">In&nbsp;[5]:</div>
1752 <div class="input_area box-flex1">
1753 <div class="highlight"><pre><span class="n">Embed</span>
1754 </pre></div>
1755
1756 </div>
1757 </div>
1758 <div class="vbox output_wrapper">
1759 <div class="output vbox">
1760 <div class="hbox output_area">
1761 <div class="prompt output_prompt">Out[5]:</div>
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2956 "></img>
2957 </div>
2958 </div>
2959 </div>
2960 </div>
2961 </div>
2962 <div class="text_cell_render border-box-sizing rendered_html">
2963 <p>Today's image from same webcam at Berkeley, (refreshed every minutes, if you reload the notebook), visible only with an active internet connexion, that should be different from the previous one. This will not work on Qtconsole.
2964 Notebook saved with this kind of image will be lighter and always reflect the current version of the source, but the image won't display offline.</p>
2965 </div>
2966 <div class="cell border-box-sizing code_cell vbox">
2967 <div class="input hbox">
2968 <div class="prompt input_prompt">In&nbsp;[6]:</div>
2969 <div class="input_area box-flex1">
2970 <div class="highlight"><pre><span class="n">SoftLinked</span>
2971 </pre></div>
2972
2973 </div>
2974 </div>
2975 <div class="vbox output_wrapper">
2976 <div class="output vbox">
2977 <div class="hbox output_area">
2978 <div class="prompt output_prompt">Out[6]:</div>
2979 <div class="output_subarea output_pyout output_html rendered_html">
2980 <img src="http://scienceview.berkeley.edu/view/images/newview.jpg" />
2981 </div>
2982 </div>
2983 </div>
2984 </div>
2985 </div>
2986 <div class="text_cell_render border-box-sizing rendered_html">
2987 <p>Of course, if you re-run the all notebook, the two images will be the same again.</p>
2988 </div>
2989 <div class="text_cell_render border-box-sizing rendered_html">
2990 <h3>Video</h3>
2991 </div>
2992 <div class="text_cell_render border-box-sizing rendered_html">
2993 <p>And more exotic objects can also be displayed, as long as their representation supports
2994 the IPython display protocol.</p>
2995 <p>For example, videos hosted externally on YouTube are easy to load (and writing a similar wrapper for other
2996 hosted content is trivial):</p>
2997 </div>
2998 <div class="cell border-box-sizing code_cell vbox">
2999 <div class="input hbox">
3000 <div class="prompt input_prompt">In&nbsp;[7]:</div>
3001 <div class="input_area box-flex1">
3002 <div class="highlight"><pre><span class="kn">from</span> <span class="nn">IPython.display</span> <span class="kn">import</span> <span class="n">YouTubeVideo</span>
3003 <span class="c"># a talk about IPython at Sage Days at U. Washington, Seattle.</span>
3004 <span class="c"># Video credit: William Stein.</span>
3005 <span class="n">YouTubeVideo</span><span class="p">(</span><span class="s">&#39;1j_HxD4iLn8&#39;</span><span class="p">)</span>
3006 </pre></div>
3007
3008 </div>
3009 </div>
3010 <div class="vbox output_wrapper">
3011 <div class="output vbox">
3012 <div class="hbox output_area">
3013 <div class="prompt output_prompt">Out[7]:</div>
3014 <div class="output_subarea output_pyout output_html rendered_html">
3015
3016 <iframe
3017 width="400"
3018 height="300"
3019 src="http://www.youtube.com/embed/1j_HxD4iLn8"
3020 frameborder="0"
3021 allowfullscreen
3022 ></iframe>
3023
3024 </div>
3025 </div>
3026 </div>
3027 </div>
3028 </div>
3029 <div class="text_cell_render border-box-sizing rendered_html">
3030 <p>Using the nascent video capabilities of modern browsers, you may also be able to display local
3031 videos. At the moment this doesn't work very well in all browsers, so it may or may not work for you;
3032 we will continue testing this and looking for ways to make it more robust.<br />
3033 </p>
3034 <p>The following cell loads a local file called <code>animation.m4v</code>, encodes the raw video as base64 for http
3035 transport, and uses the HTML5 video tag to load it. On Chrome 15 it works correctly, displaying a control
3036 bar at the bottom with a play/pause button and a location slider.</p>
3037 </div>
3038 <div class="cell border-box-sizing code_cell vbox">
3039 <div class="input hbox">
3040 <div class="prompt input_prompt">In&nbsp;[8]:</div>
3041 <div class="input_area box-flex1">
3042 <div class="highlight"><pre><span class="kn">from</span> <span class="nn">IPython.display</span> <span class="kn">import</span> <span class="n">HTML</span>
3043 <span class="n">video</span> <span class="o">=</span> <span class="nb">open</span><span class="p">(</span><span class="s">&quot;animation.m4v&quot;</span><span class="p">,</span> <span class="s">&quot;rb&quot;</span><span class="p">)</span><span class="o">.</span><span class="n">read</span><span class="p">()</span>
3044 <span class="n">video_encoded</span> <span class="o">=</span> <span class="n">video</span><span class="o">.</span><span class="n">encode</span><span class="p">(</span><span class="s">&quot;base64&quot;</span><span class="p">)</span>
3045 <span class="n">video_tag</span> <span class="o">=</span> <span class="s">&#39;&lt;video controls alt=&quot;test&quot; src=&quot;data:video/x-m4v;base64,{0}&quot;&gt;&#39;</span><span class="o">.</span><span class="n">format</span><span class="p">(</span><span class="n">video_encoded</span><span class="p">)</span>
3046 <span class="n">HTML</span><span class="p">(</span><span class="n">data</span><span class="o">=</span><span class="n">video_tag</span><span class="p">)</span>
3047 </pre></div>
3048
3049 </div>
3050 </div>
3051 <div class="vbox output_wrapper">
3052 <div class="output vbox">
3053 <div class="hbox output_area">
3054 <div class="prompt output_prompt">Out[8]:</div>
3055 <div class="output_subarea output_pyout output_html rendered_html">
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3265 ">
3266 </div>
3267 </div>
3268 </div>
3269 </div>
3270 </div>
3271 <div class="text_cell_render border-box-sizing rendered_html">
3272 <h2>Local Files</h2>
3273 <p>The above examples embed images and video from the notebook filesystem in the output
3274 areas of code cells. It is also possible to request these files directly in markdown cells
3275 if they reside in the notebook directory via relative urls prefixed with <code>files/</code>:</p>
3276 <pre><code>files/[subdirectory/]&lt;filename&gt;
3277 </code></pre>
3278 <p>For example, in the example notebook folder, we have the Python logo, addressed as:</p>
3279 <pre><code>&lt;img src="files/python-logo.svg" /&gt;
3280 </code></pre>
3281 <p><img src="python-logo.svg" /></p>
3282 <p>and a video with the HTML5 video tag:</p>
3283 <pre><code>&lt;video controls src="files/animation.m4v" /&gt;
3284 </code></pre>
3285 <video controls src="animation.m4v" />
3286
3287 These do not embed the data into the notebook file,
3288 and require that the files exist when you are viewing the notebook.
3289
3290 ### Security of local files
3291
3292 Note that this means that the IPython notebook server also acts as a generic file server
3293 for files inside the same tree as your notebooks. Access is not granted outside the
3294 notebook folder so you have strict control over what files are visible, but for this
3295 reason it is highly recommended that you do not run the notebook server with a notebook
3296 directory at a high level in your filesystem (e.g. your home directory).
3297
3298 When you run the notebook in a password-protected manner, local file access is restricted
3299 to authenticated users unless read-only views are active.
3300 </div>
3301 <div class="text_cell_render border-box-sizing rendered_html">
3302 <h2>Linking to files and directories for viewing in the browser</h2>
3303 <p>It is also possible to link directly to files or directories so they can be opened in the browser. This is especially convenient if you're interacting with a tool within IPython that generates HTML pages, and you'd like to easily be able to open those in a new browser window. Alternatively, if your IPython notebook server is on a remote system, creating links provides an easy way to download any files that get generated.</p>
3304 <p>As we saw above, there are a bunch of <code>.ipynb</code> files in our current directory.</p>
3305 </div>
3306 <div class="cell border-box-sizing code_cell vbox">
3307 <div class="input hbox">
3308 <div class="prompt input_prompt">In&nbsp;[1]:</div>
3309 <div class="input_area box-flex1">
3310 <div class="highlight"><pre><span class="n">ls</span>
3311 </pre></div>
3312
3313 </div>
3314 </div>
3315 <div class="vbox output_wrapper">
3316 <div class="output vbox">
3317 <div class="hbox output_area">
3318 <div class="prompt output_prompt"></div>
3319 <div class="output_subarea output_stream output_stdout">
3320 <pre>00_notebook_tour.ipynb formatting.ipynb
3321 01_notebook_introduction.ipynb octavemagic_extension.ipynb
3322 Animations_and_Progress.ipynb publish_data.ipynb
3323 Capturing Output.ipynb python-logo.svg
3324 Script Magics.ipynb rmagic_extension.ipynb
3325 animation.m4v sympy.ipynb
3326 cython_extension.ipynb sympy_quantum_computing.ipynb
3327 display_protocol.ipynb trapezoid_rule.ipynb
3328 </pre>
3329 </div>
3330 </div>
3331 </div>
3332 </div>
3333 </div>
3334 <div class="text_cell_render border-box-sizing rendered_html">
3335 <p>If we want to create a link to one of them, we can call use the <code>FileLink</code> object.</p>
3336 </div>
3337 <div class="cell border-box-sizing code_cell vbox">
3338 <div class="input hbox">
3339 <div class="prompt input_prompt">In&nbsp;[2]:</div>
3340 <div class="input_area box-flex1">
3341 <div class="highlight"><pre><span class="kn">from</span> <span class="nn">IPython.display</span> <span class="kn">import</span> <span class="n">FileLink</span>
3342 <span class="n">FileLink</span><span class="p">(</span><span class="s">&#39;00_notebook_tour.ipynb&#39;</span><span class="p">)</span>
3343 </pre></div>
3344
3345 </div>
3346 </div>
3347 <div class="vbox output_wrapper">
3348 <div class="output vbox">
3349 <div class="hbox output_area">
3350 <div class="prompt output_prompt">Out[2]:</div>
3351 <div class="output_subarea output_pyout output_html rendered_html">
3352 <a href='files/00_notebook_tour.ipynb' target='_blank'>00_notebook_tour.ipynb</a><br>
3353 </div>
3354 </div>
3355 </div>
3356 </div>
3357 </div>
3358 <div class="text_cell_render border-box-sizing rendered_html">
3359 <p>Alternatively, if we want to link to all of them, we can use the <code>FileLinks</code> object, passing <code>'.'</code> to indicate that we want links generated for the current working directory. Note that if there were other directories under the current directory, <code>FileLinks</code> would work in a recursive manner creating links to files in all sub-directories as well.</p>
3360 </div>
3361 <div class="cell border-box-sizing code_cell vbox">
3362 <div class="input hbox">
3363 <div class="prompt input_prompt">In&nbsp;[7]:</div>
3364 <div class="input_area box-flex1">
3365 <div class="highlight"><pre><span class="kn">from</span> <span class="nn">IPython.display</span> <span class="kn">import</span> <span class="n">FileLinks</span>
3366 <span class="n">FileLinks</span><span class="p">(</span><span class="s">&#39;.&#39;</span><span class="p">)</span>
3367 </pre></div>
3368
3369 </div>
3370 </div>
3371 <div class="vbox output_wrapper">
3372 <div class="output vbox">
3373 <div class="hbox output_area">
3374 <div class="prompt output_prompt">Out[7]:</div>
3375 <div class="output_subarea output_pyout output_html rendered_html">
3376 <a href='files/./00_notebook_tour.ipynb' target='_blank'>00_notebook_tour.ipynb</a><br>
3377 <a href='files/./01_notebook_introduction.ipynb' target='_blank'>01_notebook_introduction.ipynb</a><br>
3378 <a href='files/./animation.m4v' target='_blank'>animation.m4v</a><br>
3379 <a href='files/./Animations_and_Progress.ipynb' target='_blank'>Animations_and_Progress.ipynb</a><br>
3380 <a href='files/./Capturing Output.ipynb' target='_blank'>Capturing Output.ipynb</a><br>
3381 <a href='files/./cython_extension.ipynb' target='_blank'>cython_extension.ipynb</a><br>
3382 <a href='files/./display_protocol.ipynb' target='_blank'>display_protocol.ipynb</a><br>
3383 <a href='files/./formatting.ipynb' target='_blank'>formatting.ipynb</a><br>
3384 <a href='files/./octavemagic_extension.ipynb' target='_blank'>octavemagic_extension.ipynb</a><br>
3385 <a href='files/./publish_data.ipynb' target='_blank'>publish_data.ipynb</a><br>
3386 <a href='files/./python-logo.svg' target='_blank'>python-logo.svg</a><br>
3387 <a href='files/./rmagic_extension.ipynb' target='_blank'>rmagic_extension.ipynb</a><br>
3388 <a href='files/./Script Magics.ipynb' target='_blank'>Script Magics.ipynb</a><br>
3389 <a href='files/./sympy.ipynb' target='_blank'>sympy.ipynb</a><br>
3390 <a href='files/./sympy_quantum_computing.ipynb' target='_blank'>sympy_quantum_computing.ipynb</a><br>
3391 <a href='files/./trapezoid_rule.ipynb' target='_blank'>trapezoid_rule.ipynb</a><br>
3392 </div>
3393 </div>
3394 </div>
3395 </div>
3396 </div>
3397 <div class="text_cell_render border-box-sizing rendered_html">
3398 <h3>External sites</h3>
3399 <p>You can even embed an entire page from another site in an iframe; for example this is today's Wikipedia
3400 page for mobile users:</p>
3401 </div>
3402 <div class="cell border-box-sizing code_cell vbox">
3403 <div class="input hbox">
3404 <div class="prompt input_prompt">In&nbsp;[9]:</div>
3405 <div class="input_area box-flex1">
3406 <div class="highlight"><pre><span class="n">HTML</span><span class="p">(</span><span class="s">&#39;&lt;iframe src=http://en.mobile.wikipedia.org/?useformat=mobile width=700 height=350&gt;&lt;/iframe&gt;&#39;</span><span class="p">)</span>
3407 </pre></div>
3408
3409 </div>
3410 </div>
3411 <div class="vbox output_wrapper">
3412 <div class="output vbox">
3413 <div class="hbox output_area">
3414 <div class="prompt output_prompt">Out[9]:</div>
3415 <div class="output_subarea output_pyout output_html rendered_html">
3416 <iframe src=http://en.mobile.wikipedia.org/?useformat=mobile width=700 height=350></iframe>
3417 </div>
3418 </div>
3419 </div>
3420 </div>
3421 </div>
3422 <div class="text_cell_render border-box-sizing rendered_html">
3423 <h3>Mathematics</h3>
3424 <p>And we also support the display of mathematical expressions typeset in LaTeX, which is rendered
3425 in the browser thanks to the <a href="http://mathjax.org">MathJax library</a>.<br />
3426 </p>
3427 <p>Note that this is <em>different</em> from the above examples. Above we were typing mathematical expressions
3428 in Markdown cells (along with normal text) and letting the browser render them; now we are displaying
3429 the output of a Python computation as a LaTeX expression wrapped by the <code>Math()</code> object so the browser
3430 renders it. The <code>Math</code> object will add the needed LaTeX delimiters (<code>$$</code>) if they are not provided:</p>
3431 </div>
3432 <div class="cell border-box-sizing code_cell vbox">
3433 <div class="input hbox">
3434 <div class="prompt input_prompt">In&nbsp;[10]:</div>
3435 <div class="input_area box-flex1">
3436 <div class="highlight"><pre><span class="kn">from</span> <span class="nn">IPython.display</span> <span class="kn">import</span> <span class="n">Math</span>
3437 <span class="n">Math</span><span class="p">(</span><span class="s">r&#39;F(k) = \int_{-\infty}^{\infty} f(x) e^{2\pi i k} dx&#39;</span><span class="p">)</span>
3438 </pre></div>
3439
3440 </div>
3441 </div>
3442 <div class="vbox output_wrapper">
3443 <div class="output vbox">
3444 <div class="hbox output_area">
3445 <div class="prompt output_prompt">Out[10]:</div>
3446 <div class="output_subarea output_pyout">
3447 $$F(k) = \int_{-\infty}^{\infty} f(x) e^{2\pi i k} dx$$
3448 </div>
3449 </div>
3450 </div>
3451 </div>
3452 </div>
3453 <div class="text_cell_render border-box-sizing rendered_html">
3454 <p>With the <code>Latex</code> class, you have to include the delimiters yourself. This allows you to use other LaTeX modes such as <code>eqnarray</code>:</p>
3455 </div>
3456 <div class="cell border-box-sizing code_cell vbox">
3457 <div class="input hbox">
3458 <div class="prompt input_prompt">In&nbsp;[11]:</div>
3459 <div class="input_area box-flex1">
3460 <div class="highlight"><pre><span class="kn">from</span> <span class="nn">IPython.display</span> <span class="kn">import</span> <span class="n">Latex</span>
3461 <span class="n">Latex</span><span class="p">(</span><span class="s">r&quot;&quot;&quot;\begin{eqnarray}</span>
3462 <span class="s">\nabla \times \vec{\mathbf{B}} -\, \frac1c\, \frac{\partial\vec{\mathbf{E}}}{\partial t} &amp; = \frac{4\pi}{c}\vec{\mathbf{j}} \\</span>
3463 <span class="s">\nabla \cdot \vec{\mathbf{E}} &amp; = 4 \pi \rho \\</span>
3464 <span class="s">\nabla \times \vec{\mathbf{E}}\, +\, \frac1c\, \frac{\partial\vec{\mathbf{B}}}{\partial t} &amp; = \vec{\mathbf{0}} \\</span>
3465 <span class="s">\nabla \cdot \vec{\mathbf{B}} &amp; = 0 </span>
3466 <span class="s">\end{eqnarray}&quot;&quot;&quot;</span><span class="p">)</span>
3467 </pre></div>
3468
3469 </div>
3470 </div>
3471 <div class="vbox output_wrapper">
3472 <div class="output vbox">
3473 <div class="hbox output_area">
3474 <div class="prompt output_prompt">Out[11]:</div>
3475 <div class="output_subarea output_pyout">
3476 \begin{eqnarray}
3477 \nabla \times \vec{\mathbf{B}} -\, \frac1c\, \frac{\partial\vec{\mathbf{E}}}{\partial t} & = \frac{4\pi}{c}\vec{\mathbf{j}} \\
3478 \nabla \cdot \vec{\mathbf{E}} & = 4 \pi \rho \\
3479 \nabla \times \vec{\mathbf{E}}\, +\, \frac1c\, \frac{\partial\vec{\mathbf{B}}}{\partial t} & = \vec{\mathbf{0}} \\
3480 \nabla \cdot \vec{\mathbf{B}} & = 0
3481 \end{eqnarray}
3482 </div>
3483 </div>
3484 </div>
3485 </div>
3486 </div>
3487 <div class="text_cell_render border-box-sizing rendered_html">
3488 <p>Or you can enter latex directly with the <code>%%latex</code> cell magic:</p>
3489 </div>
3490 <div class="cell border-box-sizing code_cell vbox">
3491 <div class="input hbox">
3492 <div class="prompt input_prompt">In&nbsp;[12]:</div>
3493 <div class="input_area box-flex1">
3494 <div class="highlight"><pre><span class="o">%%</span><span class="k">latex</span>
3495 \<span class="n">begin</span><span class="p">{</span><span class="n">aligned</span><span class="p">}</span>
3496 \<span class="n">nabla</span> \<span class="n">times</span> \<span class="n">vec</span><span class="p">{</span>\<span class="n">mathbf</span><span class="p">{</span><span class="n">B</span><span class="p">}}</span> <span class="o">-</span>\<span class="p">,</span> \<span class="n">frac1c</span>\<span class="p">,</span> \<span class="n">frac</span><span class="p">{</span>\<span class="n">partial</span>\<span class="n">vec</span><span class="p">{</span>\<span class="n">mathbf</span><span class="p">{</span><span class="n">E</span><span class="p">}}}{</span>\<span class="n">partial</span> <span class="n">t</span><span class="p">}</span> <span class="o">&amp;</span> <span class="o">=</span> \<span class="n">frac</span><span class="p">{</span><span class="mi">4</span>\<span class="n">pi</span><span class="p">}{</span><span class="n">c</span><span class="p">}</span>\<span class="n">vec</span><span class="p">{</span>\<span class="n">mathbf</span><span class="p">{</span><span class="n">j</span><span class="p">}}</span> \\
3497 \<span class="n">nabla</span> \<span class="n">cdot</span> \<span class="n">vec</span><span class="p">{</span>\<span class="n">mathbf</span><span class="p">{</span><span class="n">E</span><span class="p">}}</span> <span class="o">&amp;</span> <span class="o">=</span> <span class="mi">4</span> \<span class="n">pi</span> \<span class="n">rho</span> \\
3498 \<span class="n">nabla</span> \<span class="n">times</span> \<span class="n">vec</span><span class="p">{</span>\<span class="n">mathbf</span><span class="p">{</span><span class="n">E</span><span class="p">}}</span>\<span class="p">,</span> <span class="o">+</span>\<span class="p">,</span> \<span class="n">frac1c</span>\<span class="p">,</span> \<span class="n">frac</span><span class="p">{</span>\<span class="n">partial</span>\<span class="n">vec</span><span class="p">{</span>\<span class="n">mathbf</span><span class="p">{</span><span class="n">B</span><span class="p">}}}{</span>\<span class="n">partial</span> <span class="n">t</span><span class="p">}</span> <span class="o">&amp;</span> <span class="o">=</span> \<span class="n">vec</span><span class="p">{</span>\<span class="n">mathbf</span><span class="p">{</span><span class="mi">0</span><span class="p">}}</span> \\
3499 \<span class="n">nabla</span> \<span class="n">cdot</span> \<span class="n">vec</span><span class="p">{</span>\<span class="n">mathbf</span><span class="p">{</span><span class="n">B</span><span class="p">}}</span> <span class="o">&amp;</span> <span class="o">=</span> <span class="mi">0</span>
3500 \<span class="n">end</span><span class="p">{</span><span class="n">aligned</span><span class="p">}</span>
3501 </pre></div>
3502
3503 </div>
3504 </div>
3505 <div class="vbox output_wrapper">
3506 <div class="output vbox">
3507 <div class="hbox output_area">
3508 <div class="prompt output_prompt"></div>
3509 <div class="output_subarea output_display_data">
3510 \begin{aligned}
3511 \nabla \times \vec{\mathbf{B}} -\, \frac1c\, \frac{\partial\vec{\mathbf{E}}}{\partial t} & = \frac{4\pi}{c}\vec{\mathbf{j}} \\
3512 \nabla \cdot \vec{\mathbf{E}} & = 4 \pi \rho \\
3513 \nabla \times \vec{\mathbf{E}}\, +\, \frac1c\, \frac{\partial\vec{\mathbf{B}}}{\partial t} & = \vec{\mathbf{0}} \\
3514 \nabla \cdot \vec{\mathbf{B}} & = 0
3515 \end{aligned}
3516 </div>
3517 </div>
3518 </div>
3519 </div>
3520 </div>
3521 <div class="text_cell_render border-box-sizing rendered_html">
3522 <p>There is also a <code>%%javascript</code> cell magic for running javascript directly,
3523 and <code>%%svg</code> for manually entering SVG content.</p>
3524 </div>
3525 <div class="text_cell_render border-box-sizing rendered_html">
3526 <h1>Loading external codes</h1>
3527 <ul>
3528 <li>Drag and drop a <code>.py</code> in the dashboard</li>
3529 <li>Use <code>%load</code> with any local or remote url: <a href="http://matplotlib.sourceforge.net/gallery.html">the Matplotlib Gallery!</a></li>
3530 </ul>
3531 <p>In this notebook we've kept the output saved so you can see the result, but you should run the next
3532 cell yourself (with an active internet connection).</p>
3533 </div>
3534 <div class="text_cell_render border-box-sizing rendered_html">
3535 <p>Let's make sure we have pylab again, in case we have restarted the kernel due to the crash demo above</p>
3536 </div>
3537 <div class="cell border-box-sizing code_cell vbox">
3538 <div class="input hbox">
3539 <div class="prompt input_prompt">In&nbsp;[12]:</div>
3540 <div class="input_area box-flex1">
3541 <div class="highlight"><pre><span class="o">%</span><span class="k">pylab</span> <span class="n">inline</span>
3542 </pre></div>
3543
3544 </div>
3545 </div>
3546 <div class="vbox output_wrapper">
3547 <div class="output vbox">
3548 <div class="hbox output_area">
3549 <div class="prompt output_prompt"></div>
3550 <div class="output_subarea output_stream output_stdout">
3551 <pre>
3552 Welcome to pylab, a matplotlib-based Python environment [backend: module://IPython.zmq.pylab.backend_inline].
3553 For more information, type &apos;help(pylab)&apos;.
3554 </pre>
3555 </div>
3556 </div>
3557 </div>
3558 </div>
3559 </div>
3560 <div class="cell border-box-sizing code_cell vbox">
3561 <div class="input hbox">
3562 <div class="prompt input_prompt">In&nbsp;[15]:</div>
3563 <div class="input_area box-flex1">
3564 <div class="highlight"><pre><span class="o">%</span><span class="k">load</span> <span class="n">http</span><span class="p">:</span><span class="o">//</span><span class="n">matplotlib</span><span class="o">.</span><span class="n">sourceforge</span><span class="o">.</span><span class="n">net</span><span class="o">/</span><span class="n">mpl_examples</span><span class="o">/</span><span class="n">pylab_examples</span><span class="o">/</span><span class="n">integral_demo</span><span class="o">.</span><span class="n">py</span>
3565 </pre></div>
3566
3567 </div>
3568 </div>
3569 </div>
3570 <div class="cell border-box-sizing code_cell vbox">
3571 <div class="input hbox">
3572 <div class="prompt input_prompt">In&nbsp;[16]:</div>
3573 <div class="input_area box-flex1">
3574 <div class="highlight"><pre><span class="c">#!/usr/bin/env python</span>
3575
3576 <span class="c"># implement the example graphs/integral from pyx</span>
3577 <span class="kn">from</span> <span class="nn">pylab</span> <span class="kn">import</span> <span class="o">*</span>
3578 <span class="kn">from</span> <span class="nn">matplotlib.patches</span> <span class="kn">import</span> <span class="n">Polygon</span>
3579
3580 <span class="k">def</span> <span class="nf">func</span><span class="p">(</span><span class="n">x</span><span class="p">):</span>
3581 <span class="k">return</span> <span class="p">(</span><span class="n">x</span><span class="o">-</span><span class="mi">3</span><span class="p">)</span><span class="o">*</span><span class="p">(</span><span class="n">x</span><span class="o">-</span><span class="mi">5</span><span class="p">)</span><span class="o">*</span><span class="p">(</span><span class="n">x</span><span class="o">-</span><span class="mi">7</span><span class="p">)</span><span class="o">+</span><span class="mi">85</span>
3582
3583 <span class="n">ax</span> <span class="o">=</span> <span class="n">subplot</span><span class="p">(</span><span class="mi">111</span><span class="p">)</span>
3584
3585 <span class="n">a</span><span class="p">,</span> <span class="n">b</span> <span class="o">=</span> <span class="mi">2</span><span class="p">,</span> <span class="mi">9</span> <span class="c"># integral area</span>
3586 <span class="n">x</span> <span class="o">=</span> <span class="n">arange</span><span class="p">(</span><span class="mi">0</span><span class="p">,</span> <span class="mi">10</span><span class="p">,</span> <span class="mf">0.01</span><span class="p">)</span>
3587 <span class="n">y</span> <span class="o">=</span> <span class="n">func</span><span class="p">(</span><span class="n">x</span><span class="p">)</span>
3588 <span class="n">plot</span><span class="p">(</span><span class="n">x</span><span class="p">,</span> <span class="n">y</span><span class="p">,</span> <span class="n">linewidth</span><span class="o">=</span><span class="mi">1</span><span class="p">)</span>
3589
3590 <span class="c"># make the shaded region</span>
3591 <span class="n">ix</span> <span class="o">=</span> <span class="n">arange</span><span class="p">(</span><span class="n">a</span><span class="p">,</span> <span class="n">b</span><span class="p">,</span> <span class="mf">0.01</span><span class="p">)</span>
3592 <span class="n">iy</span> <span class="o">=</span> <span class="n">func</span><span class="p">(</span><span class="n">ix</span><span class="p">)</span>
3593 <span class="n">verts</span> <span class="o">=</span> <span class="p">[(</span><span class="n">a</span><span class="p">,</span><span class="mi">0</span><span class="p">)]</span> <span class="o">+</span> <span class="nb">zip</span><span class="p">(</span><span class="n">ix</span><span class="p">,</span><span class="n">iy</span><span class="p">)</span> <span class="o">+</span> <span class="p">[(</span><span class="n">b</span><span class="p">,</span><span class="mi">0</span><span class="p">)]</span>
3594 <span class="n">poly</span> <span class="o">=</span> <span class="n">Polygon</span><span class="p">(</span><span class="n">verts</span><span class="p">,</span> <span class="n">facecolor</span><span class="o">=</span><span class="s">&#39;0.8&#39;</span><span class="p">,</span> <span class="n">edgecolor</span><span class="o">=</span><span class="s">&#39;k&#39;</span><span class="p">)</span>
3595 <span class="n">ax</span><span class="o">.</span><span class="n">add_patch</span><span class="p">(</span><span class="n">poly</span><span class="p">)</span>
3596
3597 <span class="n">text</span><span class="p">(</span><span class="mf">0.5</span> <span class="o">*</span> <span class="p">(</span><span class="n">a</span> <span class="o">+</span> <span class="n">b</span><span class="p">),</span> <span class="mi">30</span><span class="p">,</span>
3598 <span class="s">r&quot;$\int_a^b f(x)\mathrm{d}x$&quot;</span><span class="p">,</span> <span class="n">horizontalalignment</span><span class="o">=</span><span class="s">&#39;center&#39;</span><span class="p">,</span>
3599 <span class="n">fontsize</span><span class="o">=</span><span class="mi">20</span><span class="p">)</span>
3600
3601 <span class="n">axis</span><span class="p">([</span><span class="mi">0</span><span class="p">,</span><span class="mi">10</span><span class="p">,</span> <span class="mi">0</span><span class="p">,</span> <span class="mi">180</span><span class="p">])</span>
3602 <span class="n">figtext</span><span class="p">(</span><span class="mf">0.9</span><span class="p">,</span> <span class="mf">0.05</span><span class="p">,</span> <span class="s">&#39;x&#39;</span><span class="p">)</span>
3603 <span class="n">figtext</span><span class="p">(</span><span class="mf">0.1</span><span class="p">,</span> <span class="mf">0.9</span><span class="p">,</span> <span class="s">&#39;y&#39;</span><span class="p">)</span>
3604 <span class="n">ax</span><span class="o">.</span><span class="n">set_xticks</span><span class="p">((</span><span class="n">a</span><span class="p">,</span><span class="n">b</span><span class="p">))</span>
3605 <span class="n">ax</span><span class="o">.</span><span class="n">set_xticklabels</span><span class="p">((</span><span class="s">&#39;a&#39;</span><span class="p">,</span><span class="s">&#39;b&#39;</span><span class="p">))</span>
3606 <span class="n">ax</span><span class="o">.</span><span class="n">set_yticks</span><span class="p">([])</span>
3607 <span class="n">show</span><span class="p">()</span>
3608 </pre></div>
3609
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3778 </html> No newline at end of file
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1 {
2 "metadata": {
3 "name": "00_notebook_tour"
4 },
5 "nbformat": 3,
6 "nbformat_minor": 0,
7 "worksheets": [
8 {
9 "cells": [
10 {
11 "cell_type": "markdown",
12 "metadata": {},
13 "source": [
14 "# A brief tour of the IPython notebook\n",
15 "\n",
16 "This document will give you a brief tour of the capabilities of the IPython notebook. \n",
17 "You can view its contents by scrolling around, or execute each cell by typing `Shift-Enter`.\n",
18 "After you conclude this brief high-level tour, you should read the accompanying notebook \n",
19 "titled `01_notebook_introduction`, which takes a more step-by-step approach to the features of the\n",
20 "system. \n",
21 "\n",
22 "The rest of the notebooks in this directory illustrate various other aspects and \n",
23 "capabilities of the IPython notebook; some of them may require additional libraries to be executed.\n",
24 "\n",
25 "**NOTE:** This notebook *must* be run from its own directory, so you must ``cd``\n",
26 "to this directory and then start the notebook, but do *not* use the ``--notebook-dir``\n",
27 "option to run it from another location.\n",
28 "\n",
29 "The first thing you need to know is that you are still controlling the same old IPython you're used to,\n",
30 "so things like shell aliases and magic commands still work:"
31 ]
32 },
33 {
34 "cell_type": "code",
35 "collapsed": false,
36 "input": [
37 "pwd"
38 ],
39 "language": "python",
40 "metadata": {},
41 "outputs": [
42 {
43 "output_type": "pyout",
44 "prompt_number": 1,
45 "text": [
46 "u'/Users/minrk/dev/ip/mine/docs/examples/notebooks'"
47 ]
48 }
49 ],
50 "prompt_number": 1
51 },
52 {
53 "cell_type": "code",
54 "collapsed": false,
55 "input": [
56 "ls"
57 ],
58 "language": "python",
59 "metadata": {},
60 "outputs": [
61 {
62 "output_type": "stream",
63 "stream": "stdout",
64 "text": [
65 "00_notebook_tour.ipynb callbacks.ipynb python-logo.svg\r\n",
66 "01_notebook_introduction.ipynb cython_extension.ipynb rmagic_extension.ipynb\r\n",
67 "Animations_and_Progress.ipynb display_protocol.ipynb sympy.ipynb\r\n",
68 "Capturing Output.ipynb formatting.ipynb sympy_quantum_computing.ipynb\r\n",
69 "Script Magics.ipynb octavemagic_extension.ipynb trapezoid_rule.ipynb\r\n",
70 "animation.m4v progbar.ipynb\r\n"
71 ]
72 }
73 ],
74 "prompt_number": 2
75 },
76 {
77 "cell_type": "code",
78 "collapsed": false,
79 "input": [
80 "message = 'The IPython notebook is great!'\n",
81 "# note: the echo command does not run on Windows, it's a unix command.\n",
82 "!echo $message"
83 ],
84 "language": "python",
85 "metadata": {},
86 "outputs": [
87 {
88 "output_type": "stream",
89 "stream": "stdout",
90 "text": [
91 "The IPython notebook is great!\r\n"
92 ]
93 }
94 ],
95 "prompt_number": 3
96 },
97 {
98 "cell_type": "heading",
99 "level": 2,
100 "metadata": {},
101 "source": [
102 "Plots with matplotlib"
103 ]
104 },
105 {
106 "cell_type": "markdown",
107 "metadata": {},
108 "source": [
109 "IPython adds an 'inline' matplotlib backend,\n",
110 "which embeds any matplotlib figures into the notebook."
111 ]
112 },
113 {
114 "cell_type": "code",
115 "collapsed": false,
116 "input": [
117 "%pylab inline"
118 ],
119 "language": "python",
120 "metadata": {},
121 "outputs": [
122 {
123 "output_type": "stream",
124 "stream": "stdout",
125 "text": [
126 "\n",
127 "Welcome to pylab, a matplotlib-based Python environment [backend: module://IPython.zmq.pylab.backend_inline].\n",
128 "For more information, type 'help(pylab)'.\n"
129 ]
130 }
131 ],
132 "prompt_number": 4
133 },
134 {
135 "cell_type": "code",
136 "collapsed": false,
137 "input": [
138 "x = linspace(0, 3*pi, 500)\n",
139 "plot(x, sin(x**2))\n",
140 "title('A simple chirp');"
141 ],
142 "language": "python",
143 "metadata": {},
144 "outputs": [
145 {
146 "output_type": "display_data",
147 "png": 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AvfZOHEif98nAzd7RrfRlITV8VlYWNmzYgCuvvBLJZBJ33XUX5s+fj40bNwIA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\nkL6BgYHBGML/B3suibfww4xPAAAAAElFTkSuQmCC\n"
148 }
149 ],
150 "prompt_number": 5
151 },
152 {
153 "cell_type": "markdown",
154 "metadata": {},
155 "source": [
156 "You can paste blocks of input with prompt markers, such as those from\n",
157 "[the official Python tutorial](http://docs.python.org/tutorial/interpreter.html#interactive-mode)"
158 ]
159 },
160 {
161 "cell_type": "code",
162 "collapsed": false,
163 "input": [
164 ">>> the_world_is_flat = 1\n",
165 ">>> if the_world_is_flat:\n",
166 "... print \"Be careful not to fall off!\""
167 ],
168 "language": "python",
169 "metadata": {},
170 "outputs": [
171 {
172 "output_type": "stream",
173 "stream": "stdout",
174 "text": [
175 "Be careful not to fall off!\n"
176 ]
177 }
178 ],
179 "prompt_number": 6
180 },
181 {
182 "cell_type": "markdown",
183 "metadata": {},
184 "source": [
185 "Errors are shown in informative ways:"
186 ]
187 },
188 {
189 "cell_type": "code",
190 "collapsed": false,
191 "input": [
192 "%run non_existent_file"
193 ],
194 "language": "python",
195 "metadata": {},
196 "outputs": [
197 {
198 "output_type": "stream",
199 "stream": "stderr",
200 "text": [
201 "ERROR: File `u'non_existent_file.py'` not found."
202 ]
203 }
204 ],
205 "prompt_number": 7
206 },
207 {
208 "cell_type": "code",
209 "collapsed": false,
210 "input": [
211 "x = 1\n",
212 "y = 4\n",
213 "z = y/(1-x)"
214 ],
215 "language": "python",
216 "metadata": {},
217 "outputs": [
218 {
219 "ename": "ZeroDivisionError",
220 "evalue": "integer division or modulo by zero",
221 "output_type": "pyerr",
222 "traceback": [
223 "\u001b[1;31m---------------------------------------------------------------------------\u001b[0m\n\u001b[1;31mZeroDivisionError\u001b[0m Traceback (most recent call last)",
224 "\u001b[1;32m<ipython-input-8-dc39888fd1d2>\u001b[0m in \u001b[0;36m<module>\u001b[1;34m()\u001b[0m\n\u001b[0;32m 1\u001b[0m \u001b[0mx\u001b[0m \u001b[1;33m=\u001b[0m \u001b[1;36m1\u001b[0m\u001b[1;33m\u001b[0m\u001b[0m\n\u001b[0;32m 2\u001b[0m \u001b[0my\u001b[0m \u001b[1;33m=\u001b[0m \u001b[1;36m4\u001b[0m\u001b[1;33m\u001b[0m\u001b[0m\n\u001b[1;32m----> 3\u001b[1;33m \u001b[0mz\u001b[0m \u001b[1;33m=\u001b[0m \u001b[0my\u001b[0m\u001b[1;33m/\u001b[0m\u001b[1;33m(\u001b[0m\u001b[1;36m1\u001b[0m\u001b[1;33m-\u001b[0m\u001b[0mx\u001b[0m\u001b[1;33m)\u001b[0m\u001b[1;33m\u001b[0m\u001b[0m\n\u001b[0m",
225 "\u001b[1;31mZeroDivisionError\u001b[0m: integer division or modulo by zero"
226 ]
227 }
228 ],
229 "prompt_number": 8
230 },
231 {
232 "cell_type": "markdown",
233 "metadata": {},
234 "source": [
235 "When IPython needs to display additional information (such as providing details on an object via `x?`\n",
236 "it will automatically invoke a pager at the bottom of the screen:"
237 ]
238 },
239 {
240 "cell_type": "code",
241 "collapsed": false,
242 "input": [
243 "magic"
244 ],
245 "language": "python",
246 "metadata": {},
247 "outputs": [],
248 "prompt_number": 18
249 },
250 {
251 "cell_type": "markdown",
252 "metadata": {},
253 "source": [
254 "## Non-blocking output of kernel\n",
255 "\n",
256 "If you execute the next cell, you will see the output arriving as it is generated, not all at the end."
257 ]
258 },
259 {
260 "cell_type": "code",
261 "collapsed": false,
262 "input": [
263 "import time, sys\n",
264 "for i in range(8):\n",
265 " print i,\n",
266 " time.sleep(0.5)"
267 ],
268 "language": "python",
269 "metadata": {},
270 "outputs": [
271 {
272 "output_type": "stream",
273 "stream": "stdout",
274 "text": [
275 "0 "
276 ]
277 },
278 {
279 "output_type": "stream",
280 "stream": "stdout",
281 "text": [
282 "1 "
283 ]
284 },
285 {
286 "output_type": "stream",
287 "stream": "stdout",
288 "text": [
289 "2 "
290 ]
291 },
292 {
293 "output_type": "stream",
294 "stream": "stdout",
295 "text": [
296 "3 "
297 ]
298 },
299 {
300 "output_type": "stream",
301 "stream": "stdout",
302 "text": [
303 "4 "
304 ]
305 },
306 {
307 "output_type": "stream",
308 "stream": "stdout",
309 "text": [
310 "5 "
311 ]
312 },
313 {
314 "output_type": "stream",
315 "stream": "stdout",
316 "text": [
317 "6 "
318 ]
319 },
320 {
321 "output_type": "stream",
322 "stream": "stdout",
323 "text": [
324 "7\n"
325 ]
326 }
327 ],
328 "prompt_number": 19
329 },
330 {
331 "cell_type": "markdown",
332 "metadata": {},
333 "source": [
334 "## Clean crash and restart\n",
335 "\n",
336 "We call the low-level system libc.time routine with the wrong argument via\n",
337 "ctypes to segfault the Python interpreter:"
338 ]
339 },
340 {
341 "cell_type": "code",
342 "collapsed": false,
343 "input": [
344 "import sys\n",
345 "from ctypes import CDLL\n",
346 "# This will crash a Linux or Mac system; equivalent calls can be made on Windows\n",
347 "dll = 'dylib' if sys.platform == 'darwin' else '.so.6'\n",
348 "libc = CDLL(\"libc.%s\" % dll) \n",
349 "libc.time(-1) # BOOM!!"
350 ],
351 "language": "python",
352 "metadata": {},
353 "outputs": [],
354 "prompt_number": "*"
355 },
356 {
357 "cell_type": "markdown",
358 "metadata": {},
359 "source": [
360 "## Markdown cells can contain formatted text and code\n",
361 "\n",
362 "You can *italicize*, **boldface**\n",
363 "\n",
364 "* build\n",
365 "* lists\n",
366 "\n",
367 "and embed code meant for illustration instead of execution in Python:\n",
368 "\n",
369 " def f(x):\n",
370 " \"\"\"a docstring\"\"\"\n",
371 " return x**2\n",
372 "\n",
373 "or other languages:\n",
374 "\n",
375 " if (i=0; i<n; i++) {\n",
376 " printf(\"hello %d\\n\", i);\n",
377 " x += 4;\n",
378 " }"
379 ]
380 },
381 {
382 "cell_type": "markdown",
383 "metadata": {},
384 "source": [
385 "Courtesy of MathJax, you can include mathematical expressions both inline: \n",
386 "$e^{i\\pi} + 1 = 0$ and displayed:\n",
387 "\n",
388 "$$e^x=\\sum_{i=0}^\\infty \\frac{1}{i!}x^i$$"
389 ]
390 },
391 {
392 "cell_type": "markdown",
393 "metadata": {},
394 "source": [
395 "## Rich displays: include anyting a browser can show\n",
396 "\n",
397 "Note that we have an actual protocol for this, see the `display_protocol` notebook for further details.\n",
398 "\n",
399 "### Images"
400 ]
401 },
402 {
403 "cell_type": "code",
404 "collapsed": false,
405 "input": [
406 "from IPython.display import Image\n",
407 "Image(filename='../../source/_static/logo.png')"
408 ],
409 "language": "python",
410 "metadata": {},
411 "outputs": [
412 {
413 "output_type": "pyout",
414 "png": 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415 "prompt_number": 1,
416 "text": [
417 "<IPython.core.display.Image at 0x10faeafd0>"
418 ]
419 }
420 ],
421 "prompt_number": 1
422 },
423 {
424 "cell_type": "markdown",
425 "metadata": {},
426 "source": [
427 "An image can also be displayed from raw data or a url"
428 ]
429 },
430 {
431 "cell_type": "code",
432 "collapsed": false,
433 "input": [
434 "Image(url='http://python.org/images/python-logo.gif')"
435 ],
436 "language": "python",
437 "metadata": {},
438 "outputs": [
439 {
440 "html": [
441 "<img src=\"http://python.org/images/python-logo.gif\" />"
442 ],
443 "output_type": "pyout",
444 "prompt_number": 2,
445 "text": [
446 "<IPython.core.display.Image at 0x1060e7410>"
447 ]
448 }
449 ],
450 "prompt_number": 2
451 },
452 {
453 "cell_type": "markdown",
454 "metadata": {},
455 "source": [
456 "SVG images are also supported out of the box (since modern browsers do a good job of rendering them):"
457 ]
458 },
459 {
460 "cell_type": "code",
461 "collapsed": false,
462 "input": [
463 "from IPython.display import SVG\n",
464 "SVG(filename='python-logo.svg')"
465 ],
466 "language": "python",
467 "metadata": {},
468 "outputs": [
469 {
470 "output_type": "pyout",
471 "prompt_number": 3,
472 "svg": [
473 "<svg height=\"115.02pt\" id=\"svg2\" inkscape:version=\"0.43\" sodipodi:docbase=\"/home/sdeibel\" sodipodi:docname=\"logo-python-generic.svg\" sodipodi:version=\"0.32\" version=\"1.0\" width=\"388.84pt\" xmlns=\"http://www.w3.org/2000/svg\" xmlns:cc=\"http://web.resource.org/cc/\" xmlns:dc=\"http://purl.org/dc/elements/1.1/\" xmlns:inkscape=\"http://www.inkscape.org/namespaces/inkscape\" xmlns:rdf=\"http://www.w3.org/1999/02/22-rdf-syntax-ns#\" xmlns:sodipodi=\"http://inkscape.sourceforge.net/DTD/sodipodi-0.dtd\" xmlns:svg=\"http://www.w3.org/2000/svg\" xmlns:xlink=\"http://www.w3.org/1999/xlink\">\n",
474 " <metadata id=\"metadata2193\">\n",
475 " <rdf:RDF>\n",
476 " <cc:Work rdf:about=\"\">\n",
477 " <dc:format>image/svg+xml</dc:format>\n",
478 " <dc:type rdf:resource=\"http://purl.org/dc/dcmitype/StillImage\"/>\n",
479 " </cc:Work>\n",
480 " </rdf:RDF>\n",
481 " </metadata>\n",
482 " <sodipodi:namedview bordercolor=\"#666666\" borderopacity=\"1.0\" id=\"base\" inkscape:current-layer=\"svg2\" inkscape:cx=\"243.02499\" inkscape:cy=\"71.887497\" inkscape:pageopacity=\"0.0\" inkscape:pageshadow=\"2\" inkscape:window-height=\"543\" inkscape:window-width=\"791\" inkscape:window-x=\"0\" inkscape:window-y=\"0\" inkscape:zoom=\"1.4340089\" pagecolor=\"#ffffff\"/>\n",
483 " <defs id=\"defs4\">\n",
484 " <linearGradient id=\"linearGradient2795\">\n",
485 " <stop id=\"stop2797\" offset=\"0\" style=\"stop-color:#b8b8b8;stop-opacity:0.49803922\"/>\n",
486 " <stop id=\"stop2799\" offset=\"1\" style=\"stop-color:#7f7f7f;stop-opacity:0\"/>\n",
487 " </linearGradient>\n",
488 " <linearGradient id=\"linearGradient2787\">\n",
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490 " <stop id=\"stop2791\" offset=\"1\" style=\"stop-color:#7f7f7f;stop-opacity:0\"/>\n",
491 " </linearGradient>\n",
492 " <linearGradient id=\"linearGradient3676\">\n",
493 " <stop id=\"stop3678\" offset=\"0\" style=\"stop-color:#b2b2b2;stop-opacity:0.5\"/>\n",
494 " <stop id=\"stop3680\" offset=\"1\" style=\"stop-color:#b3b3b3;stop-opacity:0\"/>\n",
495 " </linearGradient>\n",
496 " <linearGradient id=\"linearGradient3236\">\n",
497 " <stop id=\"stop3244\" offset=\"0\" style=\"stop-color:#f4f4f4;stop-opacity:1\"/>\n",
498 " <stop id=\"stop3240\" offset=\"1\" style=\"stop-color:#ffffff;stop-opacity:1\"/>\n",
499 " </linearGradient>\n",
500 " <linearGradient id=\"linearGradient4671\">\n",
501 " <stop id=\"stop4673\" offset=\"0\" style=\"stop-color:#ffd43b;stop-opacity:1\"/>\n",
502 " <stop id=\"stop4675\" offset=\"1\" style=\"stop-color:#ffe873;stop-opacity:1\"/>\n",
503 " </linearGradient>\n",
504 " <linearGradient id=\"linearGradient4689\">\n",
505 " <stop id=\"stop4691\" offset=\"0\" style=\"stop-color:#5a9fd4;stop-opacity:1\"/>\n",
506 " <stop id=\"stop4693\" offset=\"1\" style=\"stop-color:#306998;stop-opacity:1\"/>\n",
507 " </linearGradient>\n",
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533 "</svg>"
534 ],
535 "text": [
536 "<IPython.core.display.SVG at 0x10fb998d0>"
537 ]
538 }
539 ],
540 "prompt_number": 3
541 },
542 {
543 "cell_type": "markdown",
544 "metadata": {},
545 "source": [
546 "#### Embedded vs Non-embedded Images"
547 ]
548 },
549 {
550 "cell_type": "markdown",
551 "metadata": {},
552 "source": [
553 "As of IPython 0.13, images are embedded by default for compatibility with QtConsole, and the ability to still be displayed offline.\n",
554 "\n",
555 "Let's look at the differences:"
556 ]
557 },
558 {
559 "cell_type": "code",
560 "collapsed": false,
561 "input": [
562 "# by default Image data are embedded\n",
563 "Embed = Image( 'http://scienceview.berkeley.edu/view/images/newview.jpg')\n",
564 "\n",
565 "# if kwarg `url` is given, the embedding is assumed to be false\n",
566 "SoftLinked = Image(url='http://scienceview.berkeley.edu/view/images/newview.jpg')\n",
567 "\n",
568 "# In each case, embed can be specified explicitly with the `embed` kwarg\n",
569 "# ForceEmbed = Image(url='http://scienceview.berkeley.edu/view/images/newview.jpg', embed=True)"
570 ],
571 "language": "python",
572 "metadata": {},
573 "outputs": [],
574 "prompt_number": 4
575 },
576 {
577 "cell_type": "markdown",
578 "metadata": {},
579 "source": [
580 "Today's image from a webcam at Berkeley, (at the time I created this notebook). This should also work in the Qtconsole.\n",
581 "Drawback is that the saved notebook will be larger, but the image will still be present offline."
582 ]
583 },
584 {
585 "cell_type": "code",
586 "collapsed": false,
587 "input": [
588 "Embed"
589 ],
590 "language": "python",
591 "metadata": {},
592 "outputs": [
593 {
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+lASoKhSUc4oCA1M0AM+tDNAHPGaG6oAbsVCc1RQpNAmhAZoE0KLm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JsEjY4wSD5ZrN0s+s9D9PaXqHQ/Ul3rd9ds/i313vAgg+nw8Rs7qAQSuMHO0epxzknJKK/3Nc1D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\nfwpJIyi7nVphszkjeCo54rKUor2g7esdX/Grqbpq66YurnqC60m+s7Sxu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595 "output_type": "pyout",
596 "prompt_number": 5,
597 "text": [
598 "<IPython.core.display.Image at 0x10fb99b50>"
599 ]
600 }
601 ],
602 "prompt_number": 5
603 },
604 {
605 "cell_type": "markdown",
606 "metadata": {},
607 "source": [
608 "Today's image from same webcam at Berkeley, (refreshed every minutes, if you reload the notebook), visible only with an active internet connexion, that should be different from the previous one. This will not work on Qtconsole.\n",
609 "Notebook saved with this kind of image will be lighter and always reflect the current version of the source, but the image won't display offline."
610 ]
611 },
612 {
613 "cell_type": "code",
614 "collapsed": false,
615 "input": [
616 "SoftLinked"
617 ],
618 "language": "python",
619 "metadata": {},
620 "outputs": [
621 {
622 "html": [
623 "<img src=\"http://scienceview.berkeley.edu/view/images/newview.jpg\" />"
624 ],
625 "output_type": "pyout",
626 "prompt_number": 6,
627 "text": [
628 "<IPython.core.display.Image at 0x10fb99b10>"
629 ]
630 }
631 ],
632 "prompt_number": 6
633 },
634 {
635 "cell_type": "markdown",
636 "metadata": {},
637 "source": [
638 "Of course, if you re-run the all notebook, the two images will be the same again."
639 ]
640 },
641 {
642 "cell_type": "markdown",
643 "metadata": {},
644 "source": [
645 "### Video"
646 ]
647 },
648 {
649 "cell_type": "markdown",
650 "metadata": {},
651 "source": [
652 "And more exotic objects can also be displayed, as long as their representation supports \n",
653 "the IPython display protocol.\n",
654 "\n",
655 "For example, videos hosted externally on YouTube are easy to load (and writing a similar wrapper for other\n",
656 "hosted content is trivial):"
657 ]
658 },
659 {
660 "cell_type": "code",
661 "collapsed": false,
662 "input": [
663 "from IPython.display import YouTubeVideo\n",
664 "# a talk about IPython at Sage Days at U. Washington, Seattle.\n",
665 "# Video credit: William Stein.\n",
666 "YouTubeVideo('1j_HxD4iLn8')"
667 ],
668 "language": "python",
669 "metadata": {},
670 "outputs": [
671 {
672 "html": [
673 "\n",
674 " <iframe\n",
675 " width=\"400\"\n",
676 " height=\"300\"\n",
677 " src=\"http://www.youtube.com/embed/1j_HxD4iLn8\"\n",
678 " frameborder=\"0\"\n",
679 " allowfullscreen\n",
680 " ></iframe>\n",
681 " "
682 ],
683 "output_type": "pyout",
684 "prompt_number": 7,
685 "text": [
686 "<IPython.lib.display.YouTubeVideo at 0x10fba2190>"
687 ]
688 }
689 ],
690 "prompt_number": 7
691 },
692 {
693 "cell_type": "markdown",
694 "metadata": {},
695 "source": [
696 "Using the nascent video capabilities of modern browsers, you may also be able to display local\n",
697 "videos. At the moment this doesn't work very well in all browsers, so it may or may not work for you;\n",
698 "we will continue testing this and looking for ways to make it more robust. \n",
699 "\n",
700 "The following cell loads a local file called `animation.m4v`, encodes the raw video as base64 for http\n",
701 "transport, and uses the HTML5 video tag to load it. On Chrome 15 it works correctly, displaying a control\n",
702 "bar at the bottom with a play/pause button and a location slider."
703 ]
704 },
705 {
706 "cell_type": "code",
707 "collapsed": false,
708 "input": [
709 "from IPython.display import HTML\n",
710 "video = open(\"animation.m4v\", \"rb\").read()\n",
711 "video_encoded = video.encode(\"base64\")\n",
712 "video_tag = '<video controls alt=\"test\" src=\"data:video/x-m4v;base64,{0}\">'.format(video_encoded)\n",
713 "HTML(data=video_tag)"
714 ],
715 "language": "python",
716 "metadata": {},
717 "outputs": [
718 {
719 "html": [
720 "<video controls alt=\"test\" src=\"data:video/x-m4v;base64,AAAAHGZ0eXBNNFYgAAACAGlzb21pc28yYXZjMQAAAAhmcmVlAAAqiW1kYXQAAAKMBgX//4jcRem9\n",
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929 "\">"
930 ],
931 "output_type": "pyout",
932 "prompt_number": 8,
933 "text": [
934 "<IPython.core.display.HTML at 0x10fba28d0>"
935 ]
936 }
937 ],
938 "prompt_number": 8
939 },
940 {
941 "cell_type": "markdown",
942 "metadata": {},
943 "source": [
944 "## Local Files\n",
945 "\n",
946 "The above examples embed images and video from the notebook filesystem in the output\n",
947 "areas of code cells. It is also possible to request these files directly in markdown cells\n",
948 "if they reside in the notebook directory via relative urls prefixed with `files/`:\n",
949 "\n",
950 " files/[subdirectory/]<filename>\n",
951 "\n",
952 "\n",
953 "For example, in the example notebook folder, we have the Python logo, addressed as:\n",
954 "\n",
955 " <img src=\"files/python-logo.svg\" />\n",
956 "\n",
957 "<img src=\"/files/python-logo.svg\" />\n",
958 "\n",
959 "and a video with the HTML5 video tag:\n",
960 "\n",
961 " <video controls src=\"files/animation.m4v\" />\n",
962 "\n",
963 "<video controls src=\"/files/animation.m4v\" />\n",
964 "\n",
965 "These do not embed the data into the notebook file,\n",
966 "and require that the files exist when you are viewing the notebook.\n",
967 "\n",
968 "### Security of local files\n",
969 "\n",
970 "Note that this means that the IPython notebook server also acts as a generic file server\n",
971 "for files inside the same tree as your notebooks. Access is not granted outside the\n",
972 "notebook folder so you have strict control over what files are visible, but for this\n",
973 "reason it is highly recommended that you do not run the notebook server with a notebook\n",
974 "directory at a high level in your filesystem (e.g. your home directory).\n",
975 "\n",
976 "When you run the notebook in a password-protected manner, local file access is restricted\n",
977 "to authenticated users unless read-only views are active."
978 ]
979 },
980 {
981 "cell_type": "markdown",
982 "metadata": {},
983 "source": [
984 "## Linking to files and directories for viewing in the browser\n",
985 "\n",
986 "It is also possible to link directly to files or directories so they can be opened in the browser. This is especially convenient if you're interacting with a tool within IPython that generates HTML pages, and you'd like to easily be able to open those in a new browser window. Alternatively, if your IPython notebook server is on a remote system, creating links provides an easy way to download any files that get generated.\n",
987 "\n",
988 "As we saw above, there are a bunch of `.ipynb` files in our current directory."
989 ]
990 },
991 {
992 "cell_type": "code",
993 "collapsed": false,
994 "input": [
995 "ls"
996 ],
997 "language": "python",
998 "metadata": {},
999 "outputs": [
1000 {
1001 "output_type": "stream",
1002 "stream": "stdout",
1003 "text": [
1004 "00_notebook_tour.ipynb formatting.ipynb\r\n",
1005 "01_notebook_introduction.ipynb octavemagic_extension.ipynb\r\n",
1006 "Animations_and_Progress.ipynb publish_data.ipynb\r\n",
1007 "Capturing Output.ipynb python-logo.svg\r\n",
1008 "Script Magics.ipynb rmagic_extension.ipynb\r\n",
1009 "animation.m4v sympy.ipynb\r\n",
1010 "cython_extension.ipynb sympy_quantum_computing.ipynb\r\n",
1011 "display_protocol.ipynb trapezoid_rule.ipynb\r\n"
1012 ]
1013 }
1014 ],
1015 "prompt_number": 1
1016 },
1017 {
1018 "cell_type": "markdown",
1019 "metadata": {},
1020 "source": [
1021 "If we want to create a link to one of them, we can call use the `FileLink` object."
1022 ]
1023 },
1024 {
1025 "cell_type": "code",
1026 "collapsed": false,
1027 "input": [
1028 "from IPython.display import FileLink\n",
1029 "FileLink('00_notebook_tour.ipynb')"
1030 ],
1031 "language": "python",
1032 "metadata": {},
1033 "outputs": [
1034 {
1035 "html": [
1036 "<a href='files/00_notebook_tour.ipynb' target='_blank'>00_notebook_tour.ipynb</a><br>"
1037 ],
1038 "output_type": "pyout",
1039 "prompt_number": 2,
1040 "text": [
1041 "<IPython.lib.display.FileLink at 0x10f7ea3d0>"
1042 ]
1043 }
1044 ],
1045 "prompt_number": 2
1046 },
1047 {
1048 "cell_type": "markdown",
1049 "metadata": {},
1050 "source": [
1051 "Alternatively, if we want to link to all of them, we can use the `FileLinks` object, passing `'.'` to indicate that we want links generated for the current working directory. Note that if there were other directories under the current directory, `FileLinks` would work in a recursive manner creating links to files in all sub-directories as well."
1052 ]
1053 },
1054 {
1055 "cell_type": "code",
1056 "collapsed": false,
1057 "input": [
1058 "from IPython.display import FileLinks\n",
1059 "FileLinks('.')"
1060 ],
1061 "language": "python",
1062 "metadata": {},
1063 "outputs": [
1064 {
1065 "html": [
1066 "<a href='files/./00_notebook_tour.ipynb' target='_blank'>00_notebook_tour.ipynb</a><br>\n",
1067 "<a href='files/./01_notebook_introduction.ipynb' target='_blank'>01_notebook_introduction.ipynb</a><br>\n",
1068 "<a href='files/./animation.m4v' target='_blank'>animation.m4v</a><br>\n",
1069 "<a href='files/./Animations_and_Progress.ipynb' target='_blank'>Animations_and_Progress.ipynb</a><br>\n",
1070 "<a href='files/./Capturing Output.ipynb' target='_blank'>Capturing Output.ipynb</a><br>\n",
1071 "<a href='files/./cython_extension.ipynb' target='_blank'>cython_extension.ipynb</a><br>\n",
1072 "<a href='files/./display_protocol.ipynb' target='_blank'>display_protocol.ipynb</a><br>\n",
1073 "<a href='files/./formatting.ipynb' target='_blank'>formatting.ipynb</a><br>\n",
1074 "<a href='files/./octavemagic_extension.ipynb' target='_blank'>octavemagic_extension.ipynb</a><br>\n",
1075 "<a href='files/./publish_data.ipynb' target='_blank'>publish_data.ipynb</a><br>\n",
1076 "<a href='files/./python-logo.svg' target='_blank'>python-logo.svg</a><br>\n",
1077 "<a href='files/./rmagic_extension.ipynb' target='_blank'>rmagic_extension.ipynb</a><br>\n",
1078 "<a href='files/./Script Magics.ipynb' target='_blank'>Script Magics.ipynb</a><br>\n",
1079 "<a href='files/./sympy.ipynb' target='_blank'>sympy.ipynb</a><br>\n",
1080 "<a href='files/./sympy_quantum_computing.ipynb' target='_blank'>sympy_quantum_computing.ipynb</a><br>\n",
1081 "<a href='files/./trapezoid_rule.ipynb' target='_blank'>trapezoid_rule.ipynb</a><br>"
1082 ],
1083 "output_type": "pyout",
1084 "prompt_number": 7,
1085 "text": [
1086 "<IPython.lib.display.FileLinks at 0x10f7eaad0>"
1087 ]
1088 }
1089 ],
1090 "prompt_number": 7
1091 },
1092 {
1093 "cell_type": "markdown",
1094 "metadata": {},
1095 "source": [
1096 "### External sites\n",
1097 "\n",
1098 "You can even embed an entire page from another site in an iframe; for example this is today's Wikipedia\n",
1099 "page for mobile users:"
1100 ]
1101 },
1102 {
1103 "cell_type": "code",
1104 "collapsed": false,
1105 "input": [
1106 "HTML('<iframe src=http://en.mobile.wikipedia.org/?useformat=mobile width=700 height=350></iframe>')"
1107 ],
1108 "language": "python",
1109 "metadata": {},
1110 "outputs": [
1111 {
1112 "html": [
1113 "<iframe src=http://en.mobile.wikipedia.org/?useformat=mobile width=700 height=350></iframe>"
1114 ],
1115 "output_type": "pyout",
1116 "prompt_number": 9,
1117 "text": [
1118 "<IPython.core.display.HTML at 0x1094900d0>"
1119 ]
1120 }
1121 ],
1122 "prompt_number": 9
1123 },
1124 {
1125 "cell_type": "markdown",
1126 "metadata": {},
1127 "source": [
1128 "### Mathematics\n",
1129 "\n",
1130 "And we also support the display of mathematical expressions typeset in LaTeX, which is rendered\n",
1131 "in the browser thanks to the [MathJax library](http://mathjax.org). \n",
1132 "\n",
1133 "Note that this is *different* from the above examples. Above we were typing mathematical expressions\n",
1134 "in Markdown cells (along with normal text) and letting the browser render them; now we are displaying\n",
1135 "the output of a Python computation as a LaTeX expression wrapped by the `Math()` object so the browser\n",
1136 "renders it. The `Math` object will add the needed LaTeX delimiters (`$$`) if they are not provided:"
1137 ]
1138 },
1139 {
1140 "cell_type": "code",
1141 "collapsed": false,
1142 "input": [
1143 "from IPython.display import Math\n",
1144 "Math(r'F(k) = \\int_{-\\infty}^{\\infty} f(x) e^{2\\pi i k} dx')"
1145 ],
1146 "language": "python",
1147 "metadata": {},
1148 "outputs": [
1149 {
1150 "latex": [
1151 "$$F(k) = \\int_{-\\infty}^{\\infty} f(x) e^{2\\pi i k} dx$$"
1152 ],
1153 "output_type": "pyout",
1154 "prompt_number": 10,
1155 "text": [
1156 "<IPython.core.display.Math at 0x10fba26d0>"
1157 ]
1158 }
1159 ],
1160 "prompt_number": 10
1161 },
1162 {
1163 "cell_type": "markdown",
1164 "metadata": {},
1165 "source": [
1166 "With the `Latex` class, you have to include the delimiters yourself. This allows you to use other LaTeX modes such as `eqnarray`:"
1167 ]
1168 },
1169 {
1170 "cell_type": "code",
1171 "collapsed": false,
1172 "input": [
1173 "from IPython.display import Latex\n",
1174 "Latex(r\"\"\"\\begin{eqnarray}\n",
1175 "\\nabla \\times \\vec{\\mathbf{B}} -\\, \\frac1c\\, \\frac{\\partial\\vec{\\mathbf{E}}}{\\partial t} & = \\frac{4\\pi}{c}\\vec{\\mathbf{j}} \\\\\n",
1176 "\\nabla \\cdot \\vec{\\mathbf{E}} & = 4 \\pi \\rho \\\\\n",
1177 "\\nabla \\times \\vec{\\mathbf{E}}\\, +\\, \\frac1c\\, \\frac{\\partial\\vec{\\mathbf{B}}}{\\partial t} & = \\vec{\\mathbf{0}} \\\\\n",
1178 "\\nabla \\cdot \\vec{\\mathbf{B}} & = 0 \n",
1179 "\\end{eqnarray}\"\"\")"
1180 ],
1181 "language": "python",
1182 "metadata": {},
1183 "outputs": [
1184 {
1185 "latex": [
1186 "\\begin{eqnarray}\n",
1187 "\\nabla \\times \\vec{\\mathbf{B}} -\\, \\frac1c\\, \\frac{\\partial\\vec{\\mathbf{E}}}{\\partial t} & = \\frac{4\\pi}{c}\\vec{\\mathbf{j}} \\\\\n",
1188 "\\nabla \\cdot \\vec{\\mathbf{E}} & = 4 \\pi \\rho \\\\\n",
1189 "\\nabla \\times \\vec{\\mathbf{E}}\\, +\\, \\frac1c\\, \\frac{\\partial\\vec{\\mathbf{B}}}{\\partial t} & = \\vec{\\mathbf{0}} \\\\\n",
1190 "\\nabla \\cdot \\vec{\\mathbf{B}} & = 0 \n",
1191 "\\end{eqnarray}"
1192 ],
1193 "output_type": "pyout",
1194 "prompt_number": 11,
1195 "text": [
1196 "<IPython.core.display.Latex at 0x10fba2c10>"
1197 ]
1198 }
1199 ],
1200 "prompt_number": 11
1201 },
1202 {
1203 "cell_type": "markdown",
1204 "metadata": {},
1205 "source": [
1206 "Or you can enter latex directly with the `%%latex` cell magic:"
1207 ]
1208 },
1209 {
1210 "cell_type": "code",
1211 "collapsed": false,
1212 "input": [
1213 "%%latex\n",
1214 "\\begin{aligned}\n",
1215 "\\nabla \\times \\vec{\\mathbf{B}} -\\, \\frac1c\\, \\frac{\\partial\\vec{\\mathbf{E}}}{\\partial t} & = \\frac{4\\pi}{c}\\vec{\\mathbf{j}} \\\\\n",
1216 "\\nabla \\cdot \\vec{\\mathbf{E}} & = 4 \\pi \\rho \\\\\n",
1217 "\\nabla \\times \\vec{\\mathbf{E}}\\, +\\, \\frac1c\\, \\frac{\\partial\\vec{\\mathbf{B}}}{\\partial t} & = \\vec{\\mathbf{0}} \\\\\n",
1218 "\\nabla \\cdot \\vec{\\mathbf{B}} & = 0\n",
1219 "\\end{aligned}"
1220 ],
1221 "language": "python",
1222 "metadata": {},
1223 "outputs": [
1224 {
1225 "latex": [
1226 "\\begin{aligned}\n",
1227 "\\nabla \\times \\vec{\\mathbf{B}} -\\, \\frac1c\\, \\frac{\\partial\\vec{\\mathbf{E}}}{\\partial t} & = \\frac{4\\pi}{c}\\vec{\\mathbf{j}} \\\\\n",
1228 "\\nabla \\cdot \\vec{\\mathbf{E}} & = 4 \\pi \\rho \\\\\n",
1229 "\\nabla \\times \\vec{\\mathbf{E}}\\, +\\, \\frac1c\\, \\frac{\\partial\\vec{\\mathbf{B}}}{\\partial t} & = \\vec{\\mathbf{0}} \\\\\n",
1230 "\\nabla \\cdot \\vec{\\mathbf{B}} & = 0\n",
1231 "\\end{aligned}"
1232 ],
1233 "output_type": "display_data",
1234 "text": [
1235 "<IPython.core.display.Latex at 0x10a617c90>"
1236 ]
1237 }
1238 ],
1239 "prompt_number": 12
1240 },
1241 {
1242 "cell_type": "markdown",
1243 "metadata": {},
1244 "source": [
1245 "There is also a `%%javascript` cell magic for running javascript directly,\n",
1246 "and `%%svg` for manually entering SVG content."
1247 ]
1248 },
1249 {
1250 "cell_type": "markdown",
1251 "metadata": {},
1252 "source": [
1253 "# Loading external codes\n",
1254 "* Drag and drop a ``.py`` in the dashboard\n",
1255 "* Use ``%load`` with any local or remote url: [the Matplotlib Gallery!](http://matplotlib.sourceforge.net/gallery.html)\n",
1256 "\n",
1257 "In this notebook we've kept the output saved so you can see the result, but you should run the next\n",
1258 "cell yourself (with an active internet connection)."
1259 ]
1260 },
1261 {
1262 "cell_type": "markdown",
1263 "metadata": {},
1264 "source": [
1265 "Let's make sure we have pylab again, in case we have restarted the kernel due to the crash demo above"
1266 ]
1267 },
1268 {
1269 "cell_type": "code",
1270 "collapsed": false,
1271 "input": [
1272 "%pylab inline"
1273 ],
1274 "language": "python",
1275 "metadata": {},
1276 "outputs": [
1277 {
1278 "output_type": "stream",
1279 "stream": "stdout",
1280 "text": [
1281 "\n",
1282 "Welcome to pylab, a matplotlib-based Python environment [backend: module://IPython.zmq.pylab.backend_inline].\n",
1283 "For more information, type 'help(pylab)'.\n"
1284 ]
1285 }
1286 ],
1287 "prompt_number": 12
1288 },
1289 {
1290 "cell_type": "code",
1291 "collapsed": false,
1292 "input": [
1293 "%load http://matplotlib.sourceforge.net/mpl_examples/pylab_examples/integral_demo.py"
1294 ],
1295 "language": "python",
1296 "metadata": {},
1297 "outputs": [],
1298 "prompt_number": 15
1299 },
1300 {
1301 "cell_type": "code",
1302 "collapsed": false,
1303 "input": [
1304 "#!/usr/bin/env python\n",
1305 "\n",
1306 "# implement the example graphs/integral from pyx\n",
1307 "from pylab import *\n",
1308 "from matplotlib.patches import Polygon\n",
1309 "\n",
1310 "def func(x):\n",
1311 " return (x-3)*(x-5)*(x-7)+85\n",
1312 "\n",
1313 "ax = subplot(111)\n",
1314 "\n",
1315 "a, b = 2, 9 # integral area\n",
1316 "x = arange(0, 10, 0.01)\n",
1317 "y = func(x)\n",
1318 "plot(x, y, linewidth=1)\n",
1319 "\n",
1320 "# make the shaded region\n",
1321 "ix = arange(a, b, 0.01)\n",
1322 "iy = func(ix)\n",
1323 "verts = [(a,0)] + zip(ix,iy) + [(b,0)]\n",
1324 "poly = Polygon(verts, facecolor='0.8', edgecolor='k')\n",
1325 "ax.add_patch(poly)\n",
1326 "\n",
1327 "text(0.5 * (a + b), 30,\n",
1328 " r\"$\\int_a^b f(x)\\mathrm{d}x$\", horizontalalignment='center',\n",
1329 " fontsize=20)\n",
1330 "\n",
1331 "axis([0,10, 0, 180])\n",
1332 "figtext(0.9, 0.05, 'x')\n",
1333 "figtext(0.1, 0.9, 'y')\n",
1334 "ax.set_xticks((a,b))\n",
1335 "ax.set_xticklabels(('a','b'))\n",
1336 "ax.set_yticks([])\n",
1337 "show()\n"
1338 ],
1339 "language": "python",
1340 "metadata": {},
1341 "outputs": [
1342 {
1343 "output_type": "display_data",
1344 "png": 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1345 }
1346 ],
1347 "prompt_number": 16
1348 }
1349 ],
1350 "metadata": {}
1351 }
1352 ]
1353 } No newline at end of file
@@ -0,0 +1,464 b''
1 # # A brief tour of the IPython notebook
2 #
3 # This document will give you a brief tour of the capabilities of the IPython notebook.
4 # You can view its contents by scrolling around, or execute each cell by typing `Shift-Enter`.
5 # After you conclude this brief high-level tour, you should read the accompanying notebook
6 # titled `01_notebook_introduction`, which takes a more step-by-step approach to the features of the
7 # system.
8 #
9 # The rest of the notebooks in this directory illustrate various other aspects and
10 # capabilities of the IPython notebook; some of them may require additional libraries to be executed.
11 #
12 # **NOTE:** This notebook *must* be run from its own directory, so you must ``cd``
13 # to this directory and then start the notebook, but do *not* use the ``--notebook-dir``
14 # option to run it from another location.
15 #
16 # The first thing you need to know is that you are still controlling the same old IPython you're used to,
17 # so things like shell aliases and magic commands still work:
18
19 # In[1]:
20 pwd
21
22 # Out[1]:
23 # u'/Users/minrk/dev/ip/mine/docs/examples/notebooks'
24
25
26 # In[2]:
27 ls
28
29 # Out[2]:
30 # 00_notebook_tour.ipynb callbacks.ipynb python-logo.svg
31 # 01_notebook_introduction.ipynb cython_extension.ipynb rmagic_extension.ipynb
32 # Animations_and_Progress.ipynb display_protocol.ipynb sympy.ipynb
33 # Capturing Output.ipynb formatting.ipynb sympy_quantum_computing.ipynb
34 # Script Magics.ipynb octavemagic_extension.ipynb trapezoid_rule.ipynb
35 # animation.m4v progbar.ipynb
36 #
37 # In[3]:
38 message = 'The IPython notebook is great!'
39 # note: the echo command does not run on Windows, it's a unix command.
40 !echo $message
41
42 # Out[3]:
43 # The IPython notebook is great!
44 #
45 ### Plots with matplotlib
46
47 # IPython adds an 'inline' matplotlib backend,
48 # which embeds any matplotlib figures into the notebook.
49
50 # In[4]:
51 %pylab inline
52
53 # Out[4]:
54 #
55 # Welcome to pylab, a matplotlib-based Python environment [backend: module://IPython.zmq.pylab.backend_inline].
56 # For more information, type 'help(pylab)'.
57 #
58 # In[5]:
59 x = linspace(0, 3*pi, 500)
60 plot(x, sin(x**2))
61 title('A simple chirp');
62
63 # Out[5]:
64 # image file: tests/ipynbref/00_notebook_tour_orig_files/00_notebook_tour_orig_fig_00.png
65
66 # You can paste blocks of input with prompt markers, such as those from
67 # [the official Python tutorial](http://docs.python.org/tutorial/interpreter.html#interactive-mode)
68
69 # In[6]:
70 >>> the_world_is_flat = 1
71 >>> if the_world_is_flat:
72 ... print "Be careful not to fall off!"
73
74 # Out[6]:
75 # Be careful not to fall off!
76 #
77 # Errors are shown in informative ways:
78
79 # In[7]:
80 %run non_existent_file
81
82 # Out[7]:
83 # ERROR: File `u'non_existent_file.py'` not found.
84 # In[8]:
85 x = 1
86 y = 4
87 z = y/(1-x)
88
89 # Out[8]:
90 ---------------------------------------------------------------------------
91 ZeroDivisionError Traceback (most recent call last)
92 <ipython-input-8-dc39888fd1d2> in <module>()
93 1 x = 1
94 2 y = 4
95 ----> 3 z = y/(1-x)
96
97 ZeroDivisionError: integer division or modulo by zero
98
99 # When IPython needs to display additional information (such as providing details on an object via `x?`
100 # it will automatically invoke a pager at the bottom of the screen:
101
102 # In[18]:
103 magic
104
105 # ## Non-blocking output of kernel
106 #
107 # If you execute the next cell, you will see the output arriving as it is generated, not all at the end.
108
109 # In[19]:
110 import time, sys
111 for i in range(8):
112 print i,
113 time.sleep(0.5)
114
115 # Out[19]:
116 # 0
117 # 1
118 # 2
119 # 3
120 # 4
121 # 5
122 # 6
123 # 7
124 #
125 # ## Clean crash and restart
126 #
127 # We call the low-level system libc.time routine with the wrong argument via
128 # ctypes to segfault the Python interpreter:
129
130 # In[*]:
131 import sys
132 from ctypes import CDLL
133 # This will crash a Linux or Mac system; equivalent calls can be made on Windows
134 dll = 'dylib' if sys.platform == 'darwin' else '.so.6'
135 libc = CDLL("libc.%s" % dll)
136 libc.time(-1) # BOOM!!
137
138 # ## Markdown cells can contain formatted text and code
139 #
140 # You can *italicize*, **boldface**
141 #
142 # * build
143 # * lists
144 #
145 # and embed code meant for illustration instead of execution in Python:
146 #
147 # def f(x):
148 # """a docstring"""
149 # return x**2
150 #
151 # or other languages:
152 #
153 # if (i=0; i<n; i++) {
154 # printf("hello %d\n", i);
155 # x += 4;
156 # }
157
158 # Courtesy of MathJax, you can include mathematical expressions both inline:
159 # $e^{i\pi} + 1 = 0$ and displayed:
160 #
161 # $$e^x=\sum_{i=0}^\infty \frac{1}{i!}x^i$$
162
163 # ## Rich displays: include anyting a browser can show
164 #
165 # Note that we have an actual protocol for this, see the `display_protocol` notebook for further details.
166 #
167 # ### Images
168
169 # In[1]:
170 from IPython.display import Image
171 Image(filename='../../source/_static/logo.png')
172
173 # Out[1]:
174 # <IPython.core.display.Image at 0x10faeafd0>
175
176
177 # An image can also be displayed from raw data or a url
178
179 # In[2]:
180 Image(url='http://python.org/images/python-logo.gif')
181
182 # Out[2]:
183 # <IPython.core.display.Image at 0x1060e7410>
184
185
186 # SVG images are also supported out of the box (since modern browsers do a good job of rendering them):
187
188 # In[3]:
189 from IPython.display import SVG
190 SVG(filename='python-logo.svg')
191
192 # Out[3]:
193 # <IPython.core.display.SVG at 0x10fb998d0>
194
195
196 # #### Embedded vs Non-embedded Images
197
198 # As of IPython 0.13, images are embedded by default for compatibility with QtConsole, and the ability to still be displayed offline.
199 #
200 # Let's look at the differences:
201
202 # In[4]:
203 # by default Image data are embedded
204 Embed = Image( 'http://scienceview.berkeley.edu/view/images/newview.jpg')
205
206 # if kwarg `url` is given, the embedding is assumed to be false
207 SoftLinked = Image(url='http://scienceview.berkeley.edu/view/images/newview.jpg')
208
209 # In each case, embed can be specified explicitly with the `embed` kwarg
210 # ForceEmbed = Image(url='http://scienceview.berkeley.edu/view/images/newview.jpg', embed=True)
211
212 # Today's image from a webcam at Berkeley, (at the time I created this notebook). This should also work in the Qtconsole.
213 # Drawback is that the saved notebook will be larger, but the image will still be present offline.
214
215 # In[5]:
216 Embed
217
218 # Out[5]:
219 # <IPython.core.display.Image at 0x10fb99b50>
220
221
222 # Today's image from same webcam at Berkeley, (refreshed every minutes, if you reload the notebook), visible only with an active internet connexion, that should be different from the previous one. This will not work on Qtconsole.
223 # Notebook saved with this kind of image will be lighter and always reflect the current version of the source, but the image won't display offline.
224
225 # In[6]:
226 SoftLinked
227
228 # Out[6]:
229 # <IPython.core.display.Image at 0x10fb99b10>
230
231
232 # Of course, if you re-run the all notebook, the two images will be the same again.
233
234 # ### Video
235
236 # And more exotic objects can also be displayed, as long as their representation supports
237 # the IPython display protocol.
238 #
239 # For example, videos hosted externally on YouTube are easy to load (and writing a similar wrapper for other
240 # hosted content is trivial):
241
242 # In[7]:
243 from IPython.display import YouTubeVideo
244 # a talk about IPython at Sage Days at U. Washington, Seattle.
245 # Video credit: William Stein.
246 YouTubeVideo('1j_HxD4iLn8')
247
248 # Out[7]:
249 # <IPython.lib.display.YouTubeVideo at 0x10fba2190>
250
251
252 # Using the nascent video capabilities of modern browsers, you may also be able to display local
253 # videos. At the moment this doesn't work very well in all browsers, so it may or may not work for you;
254 # we will continue testing this and looking for ways to make it more robust.
255 #
256 # The following cell loads a local file called `animation.m4v`, encodes the raw video as base64 for http
257 # transport, and uses the HTML5 video tag to load it. On Chrome 15 it works correctly, displaying a control
258 # bar at the bottom with a play/pause button and a location slider.
259
260 # In[8]:
261 from IPython.display import HTML
262 video = open("animation.m4v", "rb").read()
263 video_encoded = video.encode("base64")
264 video_tag = '<video controls alt="test" src="data:video/x-m4v;base64,{0}">'.format(video_encoded)
265 HTML(data=video_tag)
266
267 # Out[8]:
268 # <IPython.core.display.HTML at 0x10fba28d0>
269
270
271 # ## Local Files
272 #
273 # The above examples embed images and video from the notebook filesystem in the output
274 # areas of code cells. It is also possible to request these files directly in markdown cells
275 # if they reside in the notebook directory via relative urls prefixed with `files/`:
276 #
277 # files/[subdirectory/]<filename>
278 #
279 #
280 # For example, in the example notebook folder, we have the Python logo, addressed as:
281 #
282 # <img src="files/python-logo.svg" />
283 #
284 # <img src="python-logo.svg" />
285 #
286 # and a video with the HTML5 video tag:
287 #
288 # <video controls src="files/animation.m4v" />
289 #
290 # <video controls src="animation.m4v" />
291 #
292 # These do not embed the data into the notebook file,
293 # and require that the files exist when you are viewing the notebook.
294 #
295 # ### Security of local files
296 #
297 # Note that this means that the IPython notebook server also acts as a generic file server
298 # for files inside the same tree as your notebooks. Access is not granted outside the
299 # notebook folder so you have strict control over what files are visible, but for this
300 # reason it is highly recommended that you do not run the notebook server with a notebook
301 # directory at a high level in your filesystem (e.g. your home directory).
302 #
303 # When you run the notebook in a password-protected manner, local file access is restricted
304 # to authenticated users unless read-only views are active.
305
306 # ## Linking to files and directories for viewing in the browser
307 #
308 # It is also possible to link directly to files or directories so they can be opened in the browser. This is especially convenient if you're interacting with a tool within IPython that generates HTML pages, and you'd like to easily be able to open those in a new browser window. Alternatively, if your IPython notebook server is on a remote system, creating links provides an easy way to download any files that get generated.
309 #
310 # As we saw above, there are a bunch of `.ipynb` files in our current directory.
311
312 # In[1]:
313 ls
314
315 # Out[1]:
316 # 00_notebook_tour.ipynb formatting.ipynb
317 # 01_notebook_introduction.ipynb octavemagic_extension.ipynb
318 # Animations_and_Progress.ipynb publish_data.ipynb
319 # Capturing Output.ipynb python-logo.svg
320 # Script Magics.ipynb rmagic_extension.ipynb
321 # animation.m4v sympy.ipynb
322 # cython_extension.ipynb sympy_quantum_computing.ipynb
323 # display_protocol.ipynb trapezoid_rule.ipynb
324 #
325 # If we want to create a link to one of them, we can call use the `FileLink` object.
326
327 # In[2]:
328 from IPython.display import FileLink
329 FileLink('00_notebook_tour.ipynb')
330
331 # Out[2]:
332 # <IPython.lib.display.FileLink at 0x10f7ea3d0>
333
334
335 # Alternatively, if we want to link to all of them, we can use the `FileLinks` object, passing `'.'` to indicate that we want links generated for the current working directory. Note that if there were other directories under the current directory, `FileLinks` would work in a recursive manner creating links to files in all sub-directories as well.
336
337 # In[7]:
338 from IPython.display import FileLinks
339 FileLinks('.')
340
341 # Out[7]:
342 # <IPython.lib.display.FileLinks at 0x10f7eaad0>
343
344
345 # ### External sites
346 #
347 # You can even embed an entire page from another site in an iframe; for example this is today's Wikipedia
348 # page for mobile users:
349
350 # In[9]:
351 HTML('<iframe src=http://en.mobile.wikipedia.org/?useformat=mobile width=700 height=350></iframe>')
352
353 # Out[9]:
354 # <IPython.core.display.HTML at 0x1094900d0>
355
356
357 # ### Mathematics
358 #
359 # And we also support the display of mathematical expressions typeset in LaTeX, which is rendered
360 # in the browser thanks to the [MathJax library](http://mathjax.org).
361 #
362 # Note that this is *different* from the above examples. Above we were typing mathematical expressions
363 # in Markdown cells (along with normal text) and letting the browser render them; now we are displaying
364 # the output of a Python computation as a LaTeX expression wrapped by the `Math()` object so the browser
365 # renders it. The `Math` object will add the needed LaTeX delimiters (`$$`) if they are not provided:
366
367 # In[10]:
368 from IPython.display import Math
369 Math(r'F(k) = \int_{-\infty}^{\infty} f(x) e^{2\pi i k} dx')
370
371 # Out[10]:
372 # <IPython.core.display.Math at 0x10fba26d0>
373
374
375 # With the `Latex` class, you have to include the delimiters yourself. This allows you to use other LaTeX modes such as `eqnarray`:
376
377 # In[11]:
378 from IPython.display import Latex
379 Latex(r"""\begin{eqnarray}
380 \nabla \times \vec{\mathbf{B}} -\, \frac1c\, \frac{\partial\vec{\mathbf{E}}}{\partial t} & = \frac{4\pi}{c}\vec{\mathbf{j}} \\
381 \nabla \cdot \vec{\mathbf{E}} & = 4 \pi \rho \\
382 \nabla \times \vec{\mathbf{E}}\, +\, \frac1c\, \frac{\partial\vec{\mathbf{B}}}{\partial t} & = \vec{\mathbf{0}} \\
383 \nabla \cdot \vec{\mathbf{B}} & = 0
384 \end{eqnarray}""")
385
386 # Out[11]:
387 # <IPython.core.display.Latex at 0x10fba2c10>
388
389
390 # Or you can enter latex directly with the `%%latex` cell magic:
391
392 # In[12]:
393 %%latex
394 \begin{aligned}
395 \nabla \times \vec{\mathbf{B}} -\, \frac1c\, \frac{\partial\vec{\mathbf{E}}}{\partial t} & = \frac{4\pi}{c}\vec{\mathbf{j}} \\
396 \nabla \cdot \vec{\mathbf{E}} & = 4 \pi \rho \\
397 \nabla \times \vec{\mathbf{E}}\, +\, \frac1c\, \frac{\partial\vec{\mathbf{B}}}{\partial t} & = \vec{\mathbf{0}} \\
398 \nabla \cdot \vec{\mathbf{B}} & = 0
399 \end{aligned}
400
401 # Out[12]:
402 # <IPython.core.display.Latex at 0x10a617c90>
403 # There is also a `%%javascript` cell magic for running javascript directly,
404 # and `%%svg` for manually entering SVG content.
405
406 # # Loading external codes
407 # * Drag and drop a ``.py`` in the dashboard
408 # * Use ``%load`` with any local or remote url: [the Matplotlib Gallery!](http://matplotlib.sourceforge.net/gallery.html)
409 #
410 # In this notebook we've kept the output saved so you can see the result, but you should run the next
411 # cell yourself (with an active internet connection).
412
413 # Let's make sure we have pylab again, in case we have restarted the kernel due to the crash demo above
414
415 # In[12]:
416 %pylab inline
417
418 # Out[12]:
419 #
420 # Welcome to pylab, a matplotlib-based Python environment [backend: module://IPython.zmq.pylab.backend_inline].
421 # For more information, type 'help(pylab)'.
422 #
423 # In[15]:
424 %load http://matplotlib.sourceforge.net/mpl_examples/pylab_examples/integral_demo.py
425
426 # In[16]:
427 #!/usr/bin/env python
428
429 # implement the example graphs/integral from pyx
430 from pylab import *
431 from matplotlib.patches import Polygon
432
433 def func(x):
434 return (x-3)*(x-5)*(x-7)+85
435
436 ax = subplot(111)
437
438 a, b = 2, 9 # integral area
439 x = arange(0, 10, 0.01)
440 y = func(x)
441 plot(x, y, linewidth=1)
442
443 # make the shaded region
444 ix = arange(a, b, 0.01)
445 iy = func(ix)
446 verts = [(a,0)] + zip(ix,iy) + [(b,0)]
447 poly = Polygon(verts, facecolor='0.8', edgecolor='k')
448 ax.add_patch(poly)
449
450 text(0.5 * (a + b), 30,
451 r"$\int_a^b f(x)\mathrm{d}x$", horizontalalignment='center',
452 fontsize=20)
453
454 axis([0,10, 0, 180])
455 figtext(0.9, 0.05, 'x')
456 figtext(0.1, 0.9, 'y')
457 ax.set_xticks((a,b))
458 ax.set_xticklabels(('a','b'))
459 ax.set_yticks([])
460 show()
461
462
463 # Out[16]:
464 # image file: tests/ipynbref/00_notebook_tour_orig_files/00_notebook_tour_orig_fig_01.png
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