Update web-platform-tests to revision 00fa50687cab43b660296389acad6cc48717f1d1

This commit is contained in:
WPT Sync Bot 2019-01-28 20:36:36 -05:00
parent 07d53e32c4
commit 28bbe1473c
58 changed files with 2119 additions and 360 deletions

View file

@ -113293,6 +113293,18 @@
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View file

@ -6,6 +6,3 @@
[Instant scrolling while doing history navigation.]
expected: FAIL
[Smooth scrolling while doing history navigation.]
expected: FAIL

View file

@ -2,3 +2,9 @@
[EventListener::handleEvent()]
expected: FAIL
[throws if `handleEvent` is not callable]
expected: FAIL
[calls `handleEvent` method of `EventListener`]
expected: FAIL

View file

@ -0,0 +1,4 @@
[javascript-url-abort-return-value-string.tentative.html]
[Aborting fetch for javascript:string navigation]
expected: FAIL

View file

@ -0,0 +1,10 @@
[non-active-document.html]
[DOMParser]
expected: FAIL
[createHTMLDocument]
expected: FAIL
[<template>]
expected: FAIL

View file

@ -12,3 +12,6 @@
[Verifies the resolution of entry.startTime is at least 5 microseconds.]
expected: TIMEOUT
[Verifies the resolution of performance.now() is at least 5 microseconds.]
expected: FAIL

View file

@ -5,6 +5,9 @@
[No imports]
expected: FAIL
[exports and imports]
expected: FAIL
[constructor.any.worker.html]
[exports]
@ -13,3 +16,6 @@
[No imports]
expected: FAIL
[exports and imports]
expected: FAIL

View file

@ -1,4 +1,5 @@
[get-set.any.worker.html]
expected: ERROR
[Setting out-of-range argument: NaN]
expected: FAIL
@ -74,8 +75,12 @@
[Setting non-function]
expected: FAIL
[Stray argument]
expected: FAIL
[get-set.any.html]
expected: ERROR
[Setting out-of-range argument: NaN]
expected: FAIL
@ -151,3 +156,6 @@
[Setting non-function]
expected: FAIL
[Stray argument]
expected: FAIL

View file

@ -8,3 +8,15 @@
[# AUDIT TASK RUNNER FINISHED: 1 out of 1 tasks were failed.]
expected: FAIL
[# AUDIT TASK RUNNER FINISHED: 2 out of 2 tasks were failed.]
expected: FAIL
[< [subsample start with playback rate 0\] 2 out of 2 assertions were failed.]
expected: FAIL
[X output[0:27\]: Expected 0 for all values but found 1 unexpected values: \n\tIndex\tActual\n\t[27\]\t5]
expected: FAIL
[X output[28:\]: Expected 5 for all values but found 8164 unexpected values: \n\tIndex\tActual\n\t[0\]\t6\n\t[1\]\t7\n\t[2\]\t8\n\t[3\]\t9\n\t...and 8160 more errors.]
expected: FAIL

View file

@ -11,3 +11,9 @@
[< [test\] 2 out of 4 assertions were failed.]
expected: FAIL
[X Right SNR (in dB) is not greater than or equal to 148.71. Got NaN.]
expected: FAIL
[X Left SNR (in dB) is not greater than or equal to 148.71. Got NaN.]
expected: FAIL

View file

@ -0,0 +1,2 @@
[panner-azimuth.html]
expected: ERROR

View file

@ -1,4 +1,5 @@
[005.html]
expected: ERROR
[dedicated worker in shared worker in dedicated worker]
expected: FAIL

View file

@ -61,7 +61,7 @@ tasks:
owner: ${event.pusher.email}
source: ${event.repository.url}
payload:
image: harjgam/web-platform-tests:0.26
image: harjgam/web-platform-tests:0.29
maxRunTime: 7200
artifacts:
public/results:
@ -136,7 +136,7 @@ tasks:
owner: ${event.pull_request.user.login}@users.noreply.github.com
source: ${event.repository.url}
payload:
image: harjgam/web-platform-tests:0.26
image: harjgam/web-platform-tests:0.29
maxRunTime: 7200
artifacts:
public/results:

View file

@ -0,0 +1,29 @@
<!doctype html>
<meta charset=utf-8>
<meta name="viewport" content="width=device-width minimum-scale=0.5">
<link rel="help" href="https://drafts.csswg.org/css-device-adapt/">
<style>
html {
overflow: hidden;
}
body {
margin: 0;
}
div {
height: 200%;
position: absolute;
}
</style>
<title></title>
<div style="width: 200%;"></div>
<div id="reference" style="width: 100%;"></div>
<script src=/resources/testharness.js></script>
<script src=/resources/testharnessreport.js></script>
<script>
'use strict';
test(() => {
assert_equals(document.documentElement.clientWidth, reference.clientWidth,
'documentElement clientWidth should be 100%');
}, 'documentElement clientWidth should be equal to device-width even if ' +
'overflow:hidden region is visible');
</script>

View file

@ -0,0 +1,46 @@
<!DOCTYPE html>
<meta charset="utf-8">
<title>CSS Test Reference</title>
<link rel="author" title="Vladimir Levin" href="mailto:vmpstr@chromium.org">
<style>
.carousel {
position: relative;
overflow: hidden;
height: 300px;
}
.scroller {
position: absolute;
top: 0;
left: 0;
right: 0;
bottom: 0;
overflow: auto;
}
.slides {
width: 200%;
display: flex;
}
.slide {
flex: 0 0 50%;
contain: paint;
}
img {
width: 300px;
height: 250px;
}
</style>
<div class="carousel">
<div class="scroller">
<div class="slides">
<div class="slide">
<img id="image" src="/images/green-256x256.png">
</div>
</div>
</div>
</div>

View file

@ -0,0 +1,70 @@
<!DOCTYPE html>
<meta charset="utf-8">
<title>CSS Test: display: none then inline on img</title>
<link rel="author" title="Vladimir Levin" href="mailto:vmpstr@chromium.org">
<link rel="help" href="https://drafts.csswg.org/css-display-3/#valdef-display-inline">
<link rel="match" href="display-none-inline-img-ref.html">
<html class="reftest-wait">
<style>
.carousel {
position: relative;
overflow: hidden;
height: 300px;
}
.scroller {
position: absolute;
top: 0;
left: 0;
right: 0;
bottom: 0;
overflow: auto;
}
.slides {
width: 200%;
display: flex;
}
.slide {
flex: 0 0 50%;
contain: paint;
}
img {
width: 300px;
height: 250px;
}
</style>
<div class="carousel">
<div class="scroller">
<div class="slides">
<div class="slide">
<img id="image" src="/images/green-256x256.png">
</div>
<div class="slide">
<img>
</div>
</div>
</div>
</div>
<script>
function toggleDisplay() {
var img = document.getElementById("image");
img.style.display = img.style.display == 'none' ? 'inline' : 'none';
}
window.onload = () => {
requestAnimationFrame(() => {
toggleDisplay();
requestAnimationFrame(() => {
toggleDisplay();
document.documentElement.classList.remove("reftest-wait");
});
});
};
</script>
</html>

View file

@ -0,0 +1,328 @@
<!DOCTYPE html>
<title>CSS Position: absolute position, replaced elements, and minmax</title>
<link rel="author" title="mailto:atotic@google.com">
<script src="/resources/testharness.js"></script>
<script src="/resources/testharnessreport.js"></script>
<link rel="help" href="https://www.w3.org/TR/CSS2/visudet.html#min-max-widths">
<meta name="assert" content="Min/max width and height interact properly with abspos replaced elements">
<style>
.container {
position: relative;
display: inline-block;
width: 400px;
height: 200px;
border: 1px solid black;
}
.target {
position: absolute;
padding: 10px;
bottom: 0;
right: 0;
border-width: 3px 7px 9px 11px;
border-color: yellow;
border-style: solid;
}
</style>
<!-- test all combinations of minmax from section 10.4 table at
https://www.w3.org/TR/CSS2/visudet.html#min-max-widths -->
<!-- IFRAME tests -->
<!-- iframe: intrinsic size is 300x150, no aspect ratio -->
<div class="container">
<iframe class="target"
data-expected-width="338" data-expected-height="182" data-offset-y="18" data-offset-x="62"
>
</iframe>
</div>
<!-- spec 1: w > max-width -->
<div class="container">
<iframe class="target" style="max-width:100px"
data-expected-width="138" data-expected-height="182" data-offset-y="18" data-offset-x="262"
>
</iframe>
</div>
<!-- spec 2: w < min-width -->
<div class="container">
<iframe class="target" style="min-width: 350px"
data-expected-width="388" data-expected-height="182" data-offset-y="18" data-offset-x="12"
>
</iframe>
</div>
<!-- spec 3: h > max-height -->
<div class="container">
<iframe class="target" style="max-height: 150px"
data-expected-width="338" data-expected-height="182" data-offset-y="18" data-offset-x="62"
>
</iframe>
</div>
<!-- spec 4: h < min-height -->
<div class="container">
<iframe class="target" style="min-height: 165px"
data-expected-width="338" data-expected-height="197" data-offset-y="3" data-offset-x="62"
>
</iframe>
</div>
<!-- spec 5: (w > max-width) and (h > max-height), where (max-width/w ≤ max-height/h) -->
<div class="container">
<iframe class="target" style="max-width: 240px; max-height: 135px"
data-expected-width="278" data-expected-height="167" data-offset-y="33" data-offset-x="122"
>
</iframe>
</div>
<!-- spec 6: (w > max-width) and (h > max-height), where (max-width/w > max-height/h) -->
<div class="container">
<iframe class="target" style="max-width: 270px; max-height: 120px"
data-expected-width="308" data-expected-height="152" data-offset-y="48" data-offset-x="92"
>
</iframe>
</div>
<!-- spec 7: (w < min-width) and (h < min-height), where (min-width/w ≤ min-height/h) -->
<div class="container">
<iframe class="target" style="min-width: 360px; min-height: 165px"
data-expected-width="398" data-expected-height="197" data-offset-y="3" data-offset-x="2"
>
</iframe>
</div>
<!-- spec 8: (w < min-width) and (h < min-height), where (min-width/w > min-height/h) -->
<div class="container">
<iframe class="target" style="min-width: 330px; min-height: 180px"
data-expected-width="368" data-expected-height="212" data-offset-y="-12" data-offset-x="32"
>
</iframe>
</div>
<!-- spec 9: (w < min-width) and (h > max-height) -->
<div class="container">
<iframe class="target" style="min-width: 330px; max-height: 135px"
data-expected-width="368" data-expected-height="167" data-offset-y="33" data-offset-x="32"
>
</iframe>
</div>
<!-- spec 10: (w > max-width) and (h < min-height) -->
<div class="container">
<iframe class="target" style="max-width: 240px; min-height: 165px"
data-expected-width="278" data-expected-height="197" data-offset-y="3" data-offset-x="122"
>
</iframe>
</div>
<!-- IMG png tests -->
<!-- image dimensions: 200x150. images has intrinic size and aspect ratio -->
<div class="container">
<img class="target png"
data-expected-width="238" data-expected-height="182" data-offset-y="18" data-offset-x="162"
>
</div>
<!-- spec 1: w > max-width -->
<div class="container">
<img class="target png" style="max-width: 180px"
data-expected-width="218" data-expected-height="167" data-offset-y="33" data-offset-x="182"
>
</div>
<!-- spec 2: w < min-width -->
<div class="container">
<img class="target png" style="min-width: 220px"
data-expected-width="258" data-expected-height="197" data-offset-y="3" data-offset-x="142"
>
</div>
<!-- spec 3: h > max-height -->
<div class="container">
<img class="target png" style="max-height: 135px"
data-expected-width="218" data-expected-height="167" data-offset-y="33" data-offset-x="182"
>
</div>
<!-- spec 4: h < min-height -->
<div class="container">
<img class="target png" style="min-height: 165px"
data-expected-width="258" data-expected-height="197" data-offset-y="3" data-offset-x="142"
>
</div>
<!-- spec 5: (w > max-width) and (h > max-height), where (max-width/w ≤ max-height/h) -->
<div class="container">
<img class="target png" style="max-width: 160px; max-height: 135px"
data-expected-width="198" data-expected-height="152" data-offset-y="48" data-offset-x="202"
>
</div>
<!-- spec 6: (w > max-width) and (h > max-height), where (max-width/w > max-height/h) -->
<div class="container">
<img class="target png" style="max-width: 180px; max-height: 120px"
data-expected-width="198" data-expected-height="152" data-offset-y="48" data-offset-x="202"
>
</div>
<!-- spec 7: (w < min-width) and (h < min-height), where (min-width/w ≤ min-height/h) -->
<div class="container">
<img class="target png" style="min-width: 240px;min-height: 165px"
data-expected-width="278" data-expected-height="212" data-offset-y="-12" data-offset-x="122"
>
</div>
<!-- spec 8: (w < min-width) and (h < min-height), where (min-width/w > min-height/h) -->
<div class="container">
<img class="target png" style="min-width: 220px;min-height: 180px"
data-expected-width="278" data-expected-height="212" data-offset-y="-12" data-offset-x="122"
>
</div>
<!-- spec 9: (w < min-width) and (h > max-height) -->
<div class="container">
<img class="target png" style="min-width: 220px; max-height: 130px"
data-expected-width="258" data-expected-height="162" data-offset-y="38" data-offset-x="142"
>
</div>
<!-- spec 10: (w > max-width) and (h < min-height) -->
<div class="container">
<img class="target png" style="max-width: 180px; min-height: 165px"
data-expected-width="218" data-expected-height="197" data-offset-y="3" data-offset-x="182"
>
</div>
<!-- IMG SVG tests -->
<!-- image dimensions: 200x150. images has no intrinic size and no aspect ratio -->
<div class="container">
<img class="target svg"
data-expected-width="338" data-expected-height="182" data-offset-y="18" data-offset-x="62"
>
</div>
<!-- spec 1: w > max-width -->
<div class="container">
<img class="target svg" style="max-width: 180px"
data-expected-width="218" data-expected-height="182" data-offset-y="18" data-offset-x="182"
>
</div>
<!-- spec 2: w < min-width -->
<div class="container">
<img class="target svg" style="min-width: 220px"
data-expected-width="338" data-expected-height="182" data-offset-y="18" data-offset-x="62"
>
</div>
<!-- spec 3: h > max-height -->
<div class="container">
<img class="target svg" style="max-height: 135px"
data-expected-width="338" data-expected-height="167" data-offset-y="33" data-offset-x="62"
>
</div>
<!-- spec 4: h < min-height -->
<div class="container">
<img class="target svg" style="min-height: 165px"
data-expected-width="338" data-expected-height="197" data-offset-y="3" data-offset-x="62"
>
</div>
<!-- spec 5: (w > max-width) and (h > max-height), where (max-width/w ≤ max-height/h) -->
<div class="container">
<img class="target svg" style="max-width: 160px; max-height: 135px"
data-expected-width="198" data-expected-height="167" data-offset-y="33" data-offset-x="202"
>
</div>
<!-- spec 6: (w > max-width) and (h > max-height), where (max-width/w > max-height/h) -->
<div class="container">
<img class="target svg" style="max-width: 180px; max-height: 120px"
data-expected-width="218" data-expected-height="152" data-offset-y="48" data-offset-x="182"
>
</div>
<!-- spec 7: (w < min-width) and (h < min-height), where (min-width/w ≤ min-height/h) -->
<div class="container">
<img class="target svg" style="min-width: 240px;min-height: 165px"
data-expected-width="338" data-expected-height="197" data-offset-y="3" data-offset-x="62"
>
</div>
<!-- spec 8: (w < min-width) and (h < min-height), where (min-width/w > min-height/h) -->
<div class="container">
<img class="target svg" style="min-width: 220px;min-height: 180px"
data-expected-width="338" data-expected-height="212" data-offset-y="-12" data-offset-x="62"
>
</div>
<!-- spec 9: (w < min-width) and (h > max-height) -->
<div class="container">
<img class="target svg" style="min-width: 220px; max-height: 130px"
data-expected-width="338" data-expected-height="162" data-offset-y="38" data-offset-x="62"
>
</div>
<!-- spec 10: (w > max-width) and (h < min-height) -->
<div class="container">
<img class="target svg" style="max-width: 180px; min-height: 165px"
data-expected-width="218" data-expected-height="197" data-offset-y="3" data-offset-x="182"
>
</div>
<!-- SVG tests -->
<!-- SVGs are special: any combination of intrinsic_size and aspect_ratio
can happen. -->
<!-- Just viewbox. Has intrinsic aspect ratio, but no width/height -->
<div class="container">
<img class="target" src="data:image/svg+xml,%3Csvg xmlns='http://www.w3.org/2000/svg' %3E%3Crect width='100%' height='100%' style='fill:rgb(0,255,0);'/%3E%3C/svg%3E" style=""
data-expected-width="338" data-expected-height="182" data-offset-y="18" data-offset-x="62"
>
</div>
<!-- Just viewbox. Has aspect_ration, but no intrinsic size
inline_width defaults to container width -->
<div class="container">
<img class="target" src="data:image/svg+xml,%3Csvg viewBox='0 0 100 10' xmlns='http://www.w3.org/2000/svg' %3E%3Crect width='100%' height='100%' style='fill:rgb(0,255,0);'/%3E%3C/svg%3E"
data-expected-width="400" data-expected-height="68" data-offset-y="132" data-offset-x="0"
>
</div>
<!-- Viewbox + svg width. Has aspect_ratio and width. Height is scaled -->
<div class="container">
<img class="target" src="data:image/svg+xml,%3Csvg viewBox='0 0 100 10' width='100px' xmlns='http://www.w3.org/2000/svg' %3E%3Crect width='100%' height='100%' style='fill:rgb(0,255,0);'/%3E%3C/svg%3E"
data-expected-width="138" data-expected-height="42" data-offset-y="158" data-offset-x="262"
>
</div>
<!-- Viewbox + svg height. Has aspect_ratio and height. Width is scaled -->
<div class="container">
<img class="target" src="data:image/svg+xml,%3Csvg viewBox='0 0 100 10' height='20px' xmlns='http://www.w3.org/2000/svg' %3E%3Crect width='100%' height='100%' style='fill:rgb(0,255,0);'/%3E%3C/svg%3E"
data-expected-width="238" data-expected-height="52" data-offset-y="148" data-offset-x="162"
>
</div>
<script>
// initialize png images with 200x150 green png
let pngSrc="data:image/png;base64,iVBORw0KGgoAAAANSUhEUgAAAMgAAACWAQMAAAChElVaAAAABGdBTUEAALGPC/xhBQAAACBjSFJNAAB6JgAAgIQAAPoAAACA6AAAdTAAAOpgAAA6mAAAF3CculE8AAAABlBMVEUAgAD///8UPy9PAAAAAWJLR0QB/wIt3gAAAAd0SU1FB+MBDwkdA1Cz/EMAAAAbSURBVEjH7cGBAAAAAMOg+VPf4ARVAQAAAM8ADzwAAeM8wQsAAAAldEVYdGRhdGU6Y3JlYXRlADIwMTktMDEtMTVUMTc6Mjk6MDMtMDg6MDCYDy9IAAAAJXRFWHRkYXRlOm1vZGlmeQAyMDE5LTAxLTE1VDE3OjI5OjAzLTA4OjAw6VKX9AAAAABJRU5ErkJggg=="
;
let images = document.querySelectorAll("img.png");
for (let i=0; i<images.length; ++i) {
images[i].src = pngSrc;
}
// SVG with no intrinsic width/height
let svgSrc="data:image/svg+xml,%3Csvg xmlns='http://www.w3.org/2000/svg' %3E%3Crect width='100%' height='100%' style='fill:rgb(0,255,0);'/%3E%3C/svg%3E ";
images = document.querySelectorAll("img.svg");
for (let i=0; i<images.length; ++i) {
images[i].src = svgSrc;
}
function makeTest(el) {
return function() {
if (!el.getAttribute("data-expected-width")) {
// This code is used to generate reference data for the tests.
let text = `data-expected-width="${el.offsetWidth}" data-expected-height="${el.offsetHeight}" data-offset-y="${el.offsetTop}" data-offset-x="${el.offsetLeft}"`;
el.parentElement.innerText = text;
return;
}
assert_equals(el.offsetWidth + "", el.getAttribute("data-expected-width"), "incorrect offsetWidth");
assert_equals(el.offsetHeight + "", el.getAttribute("data-expected-height"), "incorrect offsetHeight");
assert_equals(el.offsetTop + "", el.getAttribute("data-offset-y"), "incorrect offsetTop");
assert_equals(el.offsetLeft + "", el.getAttribute("data-offset-x"), "incorrect offsetLeft");
}
};
let testNameIndex = 1;
function getTestName(el) {
let svg = el.classList.contains("svg") ? " svg" : "";
return "minmax replaced " + el.nodeName + svg + " " + testNameIndex++;
};
function testAfterImageLoads(img, test) {
let asyncTest = async_test(getTestName(img));
img.addEventListener("load", _ => {
asyncTest.step(test);
asyncTest.done();
});
};
let testElements = document.querySelectorAll(".target");
for (let i=0; i<testElements.length; ++i) {
let myTest = makeTest(testElements[i]);
if (testElements[i].nodeName == "IMG" && !testElements[i].complete) {
testAfterImageLoads(testElements[i], myTest);
} else {
test(myTest, getTestName(testElements[i]));
}
}
</script>

View file

@ -15,7 +15,7 @@
<script>
test(()=>{
assert_throws(new SyntaxError, ()=>{document.querySelector("#123");}, "numeric hash token is invalid in a selector");
assert_throws("SyntaxError", ()=>{document.querySelector("#123");}, "numeric hash token is invalid in a selector");
document.querySelector("#foo\\"); // escaped-EOF in a hash token is valid in a selector
}, "Escaped EOF turns into a U+FFFD in a hash token, makes it 'ID' type.");

View file

@ -0,0 +1,26 @@
<!DOCTYPE html>
<html>
<link rel="help" href="https://drafts.csswg.org/css-tables-3/">
<meta name="assert" content="Table cell margins do not contribute to layout overflow.">
<script src="/resources/testharness.js"></script>
<script src="/resources/testharnessreport.js"></script>
<style>
html {
display: table;
width: 100%;
height: 100%;
}
body {
display: table-cell;
width: 100%;
}
</style>
<body></body>
<script>
test(() => {
const scroller = document.scrollingElement;
// There shouldn't be any layout overflow on the root scrollable element.
assert_equals(scroller.clientHeight, scroller.scrollHeight);
});
</script>

View file

@ -0,0 +1,75 @@
<!DOCTYPE html>
<meta charset="UTF-8">
<title>CSS Values and Units Test: computed value of 'letter-spacing' when specified with calc() function</title>
<!--
Original test is:
https://chromium.googlesource.com/chromium/src/+/c825d655f6aaf73484f9d56e9012793f5b9668cc/third_party/WebKit/LayoutTests/css3/calc/letter-spacing.html
-->
<link rel="author" title="Gérard Talbot" href="http://www.gtalbot.org/BrowserBugsSection/css21testsuite/">
<link rel="help" href="https://www.w3.org/TR/css3-values/#calc-computed-value">
<meta name="flags" content="invalid">
<meta content="This test verifies how 6 calc() functions are computed for 'letter-spacing'." name="assert">
<script src="/resources/testharness.js"></script>
<script src="/resources/testharnessreport.js"></script>
<div id="target"></div>
<script>
function startTesting()
{
function verifyComputedStyle(property_name, initial_value, specified_value, expected_value, description)
{
var elemTarget = document.getElementById("target");
test(function()
{
elemTarget.style.setProperty(property_name, initial_value);
/*
In exactly 5 out of the 6 sub-tests, the initial_value will
act as a fallback value because the calc() function in the
specified value generates an invalid value. Since we are
running 6 consecutive tests on the same element, then
it is necessary to 'reset' its property to an initial
value.
*/
elemTarget.style.setProperty(property_name, specified_value);
assert_equals(getComputedStyle(elemTarget)[property_name], expected_value, specified_value + ' should compute to ' + expected_value);
}, description);
}
/* verifyComputedStyle(property_name, initial_value, specified_value, expected_value, description) */
verifyComputedStyle("letter-spacing", "20px", "calc(1 + 1px)", "20px", "testing letter-spacing: calc(1 + 1px)");
verifyComputedStyle("letter-spacing", "20px", "calc(1 + 100%)", "20px", "testing letter-spacing: calc(1 + 100%)");
verifyComputedStyle("letter-spacing", "20px", "calc(100%)", "20px", "testing letter-spacing: calc(100%)");
verifyComputedStyle("letter-spacing", "20px", "calc(10px) bla", "20px", "testing letter-spacing: calc(10px) bla");
verifyComputedStyle("letter-spacing", "20px", "calc(bla) 10px", "20px", "testing letter-spacing: calc(bla) 10px");
verifyComputedStyle("letter-spacing", "initial", "calc(10px)", "10px", "testing letter-spacing: calc(10px)");
}
startTesting();
</script>

View file

@ -0,0 +1,19 @@
<!DOCTYPE html>
<meta charset="UTF-8">
<title>CSS Values and Units Test Reference File</title>
<style>
body {
margin: 0;
height: 100vh;
}
div {
width: 60%;
height: 60%;
background-color: green;
}
</style>
<div>
</div>

View file

@ -0,0 +1,29 @@
<!DOCTYPE html>
<meta charset="UTF-8">
<title>CSS Values and Units Test: vh unit and vw unit (basic)</title>
<!--
Original test is:
https://chromium.googlesource.com/chromium/src/+/c825d655f6aaf73484f9d56e9012793f5b9668cc/third_party/WebKit/LayoutTests/css3/calc/viewport-unit.html
-->
<link rel="author" title="Gérard Talbot" href="http://www.gtalbot.org/BrowserBugsSection/css21testsuite/">
<link rel="help" href="https://www.w3.org/TR/css3-values/#viewport-relative-lengths">
<link rel="match" href="reference/viewport-unit-011-ref.html">
<style>
body {
margin: 0;
height: 100vh;
}
div {
width: calc(50vw + 10%);
height: calc(50vh + 10%);
background-color: green;
}
</style>
<div>
</div>

View file

@ -3,40 +3,83 @@
<title>EventListener::handleEvent()</title>
<script src="/resources/testharness.js"></script>
<script src="/resources/testharnessreport.js"></script>
<link rel="help" href="https://dom.spec.whatwg.org/#callbackdef-eventlistener">
<div id=log></div>
<table id="table" border="1" style="display: none">
<tbody id="table-body">
<tr id="table-row">
<td id="table-cell">Shady Grove</td>
<td>Aeolian</td>
</tr>
<tr id="parent">
<td id="target">Over the river, Charlie</td>
<td>Dorian</td>
</tr>
</tbody>
</table>
<div id=target></div>
<script>
test(function(t) {
var event = "foo";
var target = document.getElementById("target");
setup({ allow_uncaught_exception: true });
var event_listener = {
"handleEvent": function(evt) {
test(function(t) {
var type = "foo";
var target = document.getElementById("target");
var eventListener = {
handleEvent: function(evt) {
var that = this;
t.step(function() {
assert_equals(evt.type, event);
assert_equals(evt.type, type);
assert_equals(evt.target, target);
assert_equals(evt.srcElement, target);
assert_equals(that, event_listener);
assert_equals(that, eventListener);
});
}
},
};
var evt = document.createEvent("Event");
evt.initEvent(event, true, true);
target.addEventListener(type, eventListener);
target.dispatchEvent(new Event(type));
}, "calls `handleEvent` method of `EventListener`");
target.addEventListener(event, event_listener, true);
target.dispatchEvent(evt);
});
test(function(t) {
var type = "foo";
var target = document.getElementById("target");
var thrownError = new Error();
var uncaughtError;
window.addEventListener("error", function(event) {
uncaughtError = event.error;
});
target.addEventListener(type, {
get handleEvent() {
throw thrownError;
},
});
target.dispatchEvent(new Event(type));
assert_equals(thrownError, uncaughtError);
}, "rethrows errors when getting `handleEvent`");
test(function(t) {
var type = "foo";
var target = document.getElementById("target");
var calls = 0;
target.addEventListener(type, {
get handleEvent() {
calls++;
return function() {};
},
});
assert_equals(calls, 0);
target.dispatchEvent(new Event(type));
target.dispatchEvent(new Event(type));
assert_equals(calls, 2);
}, "performs `Get` every time event is dispatched");
test(function(t) {
var type = "foo";
var target = document.getElementById("target");
var uncaughtError;
window.addEventListener("error", function(event) {
uncaughtError = event.error;
});
target.addEventListener(type, {
handleEvent: null,
});
target.dispatchEvent(new Event(type));
assert_true(uncaughtError instanceof TypeError);
}, "throws if `handleEvent` is not callable");
</script>

View file

@ -17,7 +17,9 @@ handlersListPromise.then(({ shadowedHandlers, notShadowedHandlers }) => {
add_completion_callback(() => {
const log_elem = document.getElementById("log");
const frame_elem = document.querySelector("frame");
frame_elem.contentDocument.body.innerHTML = log_elem.innerHTML;
if (log_elem) {
frame_elem.contentDocument.body.innerHTML = log_elem.innerHTML;
}
});
done();

View file

@ -28,12 +28,10 @@ enum XREnvironmentBlendMode {
readonly attribute XRSessionMode mode;
readonly attribute XRPresentationContext? outputContext;
readonly attribute XREnvironmentBlendMode environmentBlendMode;
attribute double depthNear;
attribute double depthFar;
attribute XRLayer? baseLayer;
readonly attribute XRRenderState renderState;
// Methods
void updateRenderState(optional XRRenderStateInit state);
Promise<XRReferenceSpace> requestReferenceSpace(XRReferenceSpaceOptions options);
FrozenArray<XRInputSource> getInputSources();
@ -64,6 +62,18 @@ dictionary XRSessionCreationOptions {
XRPresentationContext? outputContext = null;
};
dictionary XRRenderStateInit {
double depthNear;
double depthFar;
XRLayer? baseLayer;
};
[SecureContext, Exposed=Window] interface XRRenderState {
readonly attribute double depthNear;
readonly attribute double depthFar;
readonly attribute XRLayer? baseLayer;
};
callback XRFrameRequestCallback = void (DOMHighResTimeStamp time, XRFrame frame);
[SecureContext, Exposed=Window] interface XRFrame {

View file

@ -9,8 +9,8 @@
<script nonce="abc">
window.addEventListener('load', t.step_func(function() {
verifyPreloadAndRTSupport();
verifyNumberOfDownloads("resources/dummy.js?from-header&without-nonce", 0);
verifyNumberOfDownloads("resources/dummy.js?from-header&with-nonce", 1);
verifyNumberOfResourceTimingEntries("resources/dummy.js?from-header&without-nonce", 0);
verifyNumberOfResourceTimingEntries("resources/dummy.js?from-header&with-nonce", 1);
t.done();
}));
</script>

View file

@ -11,16 +11,16 @@
<script>
window.addEventListener("load", t.step_func(function() {
verifyPreloadAndRTSupport();
verifyNumberOfDownloads('resources/square.png?from-header&1x', 1);
verifyNumberOfDownloads('resources/square.png?from-header&2x', 0);
verifyNumberOfDownloads('resources/square.png?from-header&3x', 0);
verifyNumberOfDownloads('resources/square.png?from-header&base', 0);
verifyNumberOfDownloads('resources/square.png?from-header&200', 0);
verifyNumberOfDownloads('resources/square.png?from-header&400', 1);
verifyNumberOfDownloads('resources/square.png?from-header&800', 0);
verifyNumberOfDownloads('resources/square.png?from-header&150', 0);
verifyNumberOfDownloads('resources/square.png?from-header&300', 1);
verifyNumberOfDownloads('resources/square.png?from-header&600', 0);
verifyNumberOfResourceTimingEntries('resources/square.png?from-header&1x', 1);
verifyNumberOfResourceTimingEntries('resources/square.png?from-header&2x', 0);
verifyNumberOfResourceTimingEntries('resources/square.png?from-header&3x', 0);
verifyNumberOfResourceTimingEntries('resources/square.png?from-header&base', 0);
verifyNumberOfResourceTimingEntries('resources/square.png?from-header&200', 0);
verifyNumberOfResourceTimingEntries('resources/square.png?from-header&400', 1);
verifyNumberOfResourceTimingEntries('resources/square.png?from-header&800', 0);
verifyNumberOfResourceTimingEntries('resources/square.png?from-header&150', 0);
verifyNumberOfResourceTimingEntries('resources/square.png?from-header&300', 1);
verifyNumberOfResourceTimingEntries('resources/square.png?from-header&600', 0);
t.done();
}));
</script>

View file

@ -20,3 +20,9 @@ function verifyNumberOfDownloads(url, number)
});
assert_equals(numDownloads, number, url);
}
function verifyNumberOfResourceTimingEntries(url, number)
{
var numEntries = performance.getEntriesByName(getAbsoluteURL(url)).length;
assert_equals(numEntries, number, url);
}

View file

@ -56,7 +56,8 @@ def main(product, commit_range, wpt_args):
"--no-pause",
"--no-restart-on-unexpected",
"--install-fonts",
"--no-headless"
"--no-headless",
"--verify-log-full"
]
wpt_args += browser_specific_args.get(product, [])

View file

@ -66,9 +66,13 @@ WORKDIR /home/test
RUN sudo echo ""
RUN mkdir -p /home/test/artifacts
RUN mkdir -p /home/test/bin
ENV PATH="/home/test/bin:${PATH}"
WORKDIR /home/test/
COPY .bashrc /home/test/.bashrc
COPY start.sh /home/test/start.sh
COPY retry.py /home/test/bin/retry

View file

@ -0,0 +1,58 @@
#! /usr/bin/env python
import argparse
import subprocess
import time
import sys
def get_args():
parser = argparse.ArgumentParser()
parser.add_argument("--delay", action="store", type=float, default=3, help="Initial delay before retry, in seconds")
parser.add_argument("--count", action="store", type=int, default=5, help="Total number of tries")
parser.add_argument("--factor", action="store", type=float, default=2, help="Exponential backoff factor")
parser.add_argument("cmd", nargs=argparse.REMAINDER)
return parser
def iter_range(n):
i = 0
while i < n:
yield i
i += 1
def main():
args = get_args().parse_args()
if not args.cmd:
print("No command supplied")
sys.exit(1)
retcode = None
for n in iter_range(args.count):
try:
print("Running %s [try %d/%d]" % (" ".join(args.cmd), (n+1), args.count))
subprocess.check_call(args.cmd)
except subprocess.CalledProcessError as e:
retcode = e.returncode
else:
print("Command succeeded")
retcode = 0
break
if args.factor == 0:
wait_time = (n+1) * args.delay
else:
wait_time = args.factor**n * args.delay
if n < args.count - 1:
print("Command failed, waiting %s seconds to retry" % wait_time)
time.sleep(wait_time)
else:
print("Command failed, out of retries")
sys.exit(retcode)
if __name__ == "__main__":
main()

View file

@ -26,13 +26,13 @@ git init
git remote add origin ${REMOTE}
# Initially we just fetch 50 commits in order to save several minutes of fetching
git fetch --quiet --depth=50 --tags origin ${REF}
retry git fetch --quiet --depth=50 --tags origin ${REF}
if [[ ! `git rev-parse --verify -q ${REVISION}` ]];
then
# But if for some reason the commit under test isn't in that range, we give in and
# fetch everything
git fetch -q --unshallow ${REMOTE}
retry git fetch -q --unshallow ${REMOTE}
git rev-parse --verify ${REVISION}
fi
git checkout -b build ${REVISION}

View file

@ -82,7 +82,7 @@ def browser_kwargs(test_type, run_info_data, config, **kwargs):
"timeout_multiplier": get_timeout_multiplier(test_type,
run_info_data,
**kwargs),
"leak_check": kwargs["leak_check"],
"leak_check": run_info_data["debug"] and (kwargs["leak_check"] is not False),
"asan": run_info_data.get("asan"),
"stylo_threads": kwargs["stylo_threads"],
"chaos_mode_flags": kwargs["chaos_mode_flags"],
@ -214,6 +214,8 @@ class FirefoxBrowser(Browser):
self.lsan_dir = lsan_dir
self.lsan_allowed = None
self.lsan_max_stack_depth = None
self.mozleak_allowed = None
self.mozleak_thresholds = None
self.leak_check = leak_check
self.leak_report_file = None
self.lsan_handler = None
@ -222,21 +224,27 @@ class FirefoxBrowser(Browser):
self.headless = headless
def settings(self, test):
self.lsan_allowed = test.lsan_allowed
self.lsan_max_stack_depth = test.lsan_max_stack_depth
return {"check_leaks": self.leak_check and not test.leaks,
"lsan_allowed": test.lsan_allowed}
"lsan_allowed": test.lsan_allowed,
"lsan_max_stack_depth": test.lsan_max_stack_depth,
"mozleak_allowed": self.leak_check and test.mozleak_allowed,
"mozleak_thresholds": self.leak_check and test.mozleak_threshold}
def start(self, group_metadata=None, **kwargs):
if group_metadata is None:
group_metadata = {}
self.group_metadata = group_metadata
self.lsan_allowed = kwargs.get("lsan_allowed")
self.lsan_max_stack_depth = kwargs.get("lsan_max_stack_depth")
self.mozleak_allowed = kwargs.get("mozleak_allowed")
self.mozleak_thresholds = kwargs.get("mozleak_thresholds")
if self.marionette_port is None:
self.marionette_port = get_free_port(2828, exclude=self.used_ports)
self.used_ports.add(self.marionette_port)
if self.asan:
print "Setting up LSAN"
self.lsan_handler = mozleak.LSANLeaks(self.logger,
scope=group_metadata.get("scope", "/"),
allowed=self.lsan_allowed,
@ -357,21 +365,18 @@ class FirefoxBrowser(Browser):
self.logger.debug("stopped")
def process_leaks(self):
self.logger.debug("PROCESS LEAKS %s" % self.leak_report_file)
self.logger.info("PROCESS LEAKS %s" % self.leak_report_file)
if self.lsan_handler:
self.lsan_handler.process()
if self.leak_report_file is not None:
mozleak.process_leak_log(
self.leak_report_file,
leak_thresholds={
"default": 0,
"tab": 10000, # See dependencies of bug 1051230.
# GMP rarely gets a log, but when it does, it leaks a little.
"geckomediaplugin": 20000,
},
ignore_missing_leaks=["geckomediaplugin"],
leak_thresholds=self.mozleak_thresholds,
ignore_missing_leaks=["gmplugin"],
log=self.logger,
stack_fixer=self.stack_fixer
stack_fixer=self.stack_fixer,
scope=self.group_metadata.get("scope"),
allowed=self.mozleak_allowed
)
def pid(self):

View file

@ -595,6 +595,7 @@ class ExecuteAsyncScriptRun(object):
if self.protocol.is_alive:
self.result = False, ("INTERNAL-ERROR", None)
else:
self.logger.info("Browser not responding, setting status to CRASH")
self.result = False, ("CRASH", None)
return self.result
@ -608,15 +609,21 @@ class ExecuteAsyncScriptRun(object):
# This can happen on a crash
# Also, should check after the test if the firefox process is still running
# and otherwise ignore any other result and set it to crash
self.logger.info("IOError on command, setting status to CRASH")
self.result = False, ("CRASH", None)
except errors.NoSuchWindowException:
self.logger.info("NoSuchWindowException on command, setting status to CRASH")
self.result = False, ("CRASH", None)
except Exception as e:
message = getattr(e, "message", "")
if message:
message += "\n"
message += traceback.format_exc(e)
self.logger.warning(message)
self.result = False, ("INTERNAL-ERROR", None)
if isinstance(e, errors.JavascriptException) and e.message.startswith("Document was unloaded"):
message = "Document unloaded; maybe test navigated the top-level-browsing context?"
else:
message = getattr(e, "message", "")
if message:
message += "\n"
message += traceback.format_exc(e)
self.logger.warning(traceback.format_exc())
self.result = False, ("INTERNAL-ERROR", message)
finally:
self.result_flag.set()

View file

@ -123,3 +123,32 @@ class WptreportFormatter(BaseFormatter):
"min": data["min_expected"],
"max": data["max_expected"]
}
def lsan_leak(self, data):
if "lsan_leaks" not in self.results:
self.results["lsan_leaks"] = []
lsan_leaks = self.results["lsan_leaks"]
lsan_leaks.append({"frames": data["frames"],
"scope": data["scope"],
"allowed_match": data.get("allowed_match")})
def find_or_create_mozleak(self, data):
if "mozleak" not in self.results:
self.results["mozleak"] = {}
scope = data["scope"]
if scope not in self.results["mozleak"]:
self.results["mozleak"][scope] = {"objects": [], "total": []}
return self.results["mozleak"][scope]
def mozleak_object(self, data):
scope_data = self.find_or_create_mozleak(data)
scope_data["objects"].append({"process": data["process"],
"name": data["name"],
"allowed": data.get("allowed", False),
"bytes": data["bytes"]})
def mozleak_total(self, data):
scope_data = self.find_or_create_mozleak(data)
scope_data["total"].append({"bytes": data["bytes"],
"threshold": data.get("threshold", 0),
"process": data["process"]})

View file

@ -70,9 +70,9 @@ def prefs(node):
return rv
def lsan_allowed(node):
def set_prop(name, node):
try:
node_items = node.get("lsan-allowed")
node_items = node.get(name)
if isinstance(node_items, (str, unicode)):
rv = {node_items}
else:
@ -82,6 +82,20 @@ def lsan_allowed(node):
return rv
def leak_threshold(node):
rv = {}
try:
node_items = node.get("leak-threshold")
if isinstance(node_items, (str, unicode)):
node_items = [node_items]
for item in node_items:
process, value = item.rsplit(":", 1)
rv[process.strip()] = int(value.strip())
except KeyError:
pass
return rv
class ExpectedManifest(ManifestItem):
def __init__(self, name, test_path, url_base):
"""Object representing all the tests in a particular manifest
@ -154,7 +168,15 @@ class ExpectedManifest(ManifestItem):
@property
def lsan_allowed(self):
return lsan_allowed(self)
return set_prop("lsan-allowed", self)
@property
def leak_allowed(self):
return set_prop("leak-allowed", self)
@property
def leak_threshold(self):
return leak_threshold(self)
@property
def lsan_max_stack_depth(self):
@ -192,7 +214,15 @@ class DirectoryManifest(ManifestItem):
@property
def lsan_allowed(self):
return lsan_allowed(self)
return set_prop("lsan-allowed", self)
@property
def leak_allowed(self):
return set_prop("leak-allowed", self)
@property
def leak_threshold(self):
return leak_threshold(self)
@property
def lsan_max_stack_depth(self):
@ -256,7 +286,15 @@ class TestNode(ManifestItem):
@property
def lsan_allowed(self):
return lsan_allowed(self)
return set_prop("lsan-allowed", self)
@property
def leak_allowed(self):
return set_prop("leak-allowed", self)
@property
def leak_threshold(self):
return leak_threshold(self)
@property
def lsan_max_stack_depth(self):

View file

@ -2,6 +2,7 @@ import itertools
import os
import urlparse
from collections import namedtuple, defaultdict
from math import ceil
from wptmanifest.node import (DataNode, ConditionalNode, BinaryExpressionNode,
BinaryOperatorNode, VariableNode, StringNode, NumberNode,
@ -81,6 +82,8 @@ class ExpectedManifest(ManifestItem):
self.property_order = property_order
self.update_properties = {
"lsan": LsanUpdate(self),
"leak-object": LeakObjectUpdate(self),
"leak-threshold": LeakThresholdUpdate(self),
}
def append(self, child):
@ -122,6 +125,24 @@ class ExpectedManifest(ManifestItem):
self.update_properties["lsan"].set(run_info, result)
def set_leak_object(self, run_info, result):
"""Set the result of the test in a particular run
:param run_info: Dictionary of run_info parameters corresponding
to this run
:param result: Leaked objects deletec"""
self.update_properties["leak-object"].set(run_info, result)
def set_leak_threshold(self, run_info, result):
"""Set the result of the test in a particular run
:param run_info: Dictionary of run_info parameters corresponding
to this run
:param result: Total number of bytes leaked"""
self.update_properties["leak-threshold"].set(run_info, result)
def coalesce_properties(self, stability):
for prop_update in self.update_properties.itervalues():
prop_update.coalesce(stability)
@ -432,6 +453,10 @@ class ExpectedUpdate(PropertyUpdate):
class MaxAssertsUpdate(PropertyUpdate):
"""For asserts we always update the default value and never add new conditionals.
The value we set as the default is the maximum the current default or one more than the
number of asserts we saw in any configuration."""
property_name = "max-asserts"
cls_default_value = 0
value_type = int
@ -447,9 +472,6 @@ class MaxAssertsUpdate(PropertyUpdate):
return old_value
def update_default(self):
"""For asserts we always update the default value and never add new conditionals.
The value we set as the default is the maximum the current default or one more than the
number of asserts we saw in any configuration."""
# Current values
values = []
current_default = None
@ -501,20 +523,11 @@ class MinAssertsUpdate(PropertyUpdate):
return True, new_value
class LsanUpdate(PropertyUpdate):
property_name = "lsan-allowed"
class AppendOnlyListUpdate(PropertyUpdate):
cls_default_value = None
def get_value(self, result):
# If we have an allowed_match that matched, return None
# This value is ignored later (because it matches the default)
# We do that because then if we allow a failure in foo/__dir__.ini
# we don't want to update foo/bar/__dir__.ini with the same rule
if result[1]:
return None
# Otherwise return the topmost stack frame
# TODO: there is probably some improvement to be made by looking for a "better" stack frame
return result[0][0]
raise NotImplementedError
def update_value(self, old_value, new_value):
if isinstance(new_value, (str, unicode)):
@ -539,6 +552,96 @@ class LsanUpdate(PropertyUpdate):
return True, new_value if new_value else None
class LsanUpdate(AppendOnlyListUpdate):
property_name = "lsan-allowed"
def get_value(self, result):
# If we have an allowed_match that matched, return None
# This value is ignored later (because it matches the default)
# We do that because then if we allow a failure in foo/__dir__.ini
# we don't want to update foo/bar/__dir__.ini with the same rule
if result[1]:
return None
# Otherwise return the topmost stack frame
# TODO: there is probably some improvement to be made by looking for a "better" stack frame
return result[0][0]
class LeakObjectUpdate(AppendOnlyListUpdate):
property_name = "leak-allowed"
def get_value(self, result):
# If we have an allowed_match that matched, return None
if result[1]:
return None
# Otherwise return the process/object name
return result[0]
class LeakThresholdUpdate(PropertyUpdate):
property_name = "leak-threshold"
cls_default_value = []
def __init__(self, node):
PropertyUpdate.__init__(self, node)
self.thresholds = {}
def get_value(self, value):
threshold = value[2]
key = value[0]
self.thresholds[key] = threshold
return value[:2]
def value_type(self, data):
if all(isinstance(item, tuple) for item in data):
return data
values = [item.rsplit(":", 1) for item in data]
return [(key, int(float(value))) for key, value in values]
def update_value(self, old_value, new_value, allow_buffer=True):
rv = []
old_value = dict(old_value)
new_value = dict(self.value_type(new_value))
for key in set(new_value.keys()) | set(old_value.keys()):
old = old_value.get(key, 0)
new = new_value.get(key, 0)
threshold = self.thresholds.get(key, 0)
# If the value is less than the threshold but there isn't
# an old value we must have inherited the threshold from
# a parent ini file so don't any anything to this one
if not old and new < threshold:
continue
if old >= new:
updated = old
else:
if allow_buffer:
# Round up to nearest 50 kb
boundary = 50 * 1024
updated = int(boundary * ceil(float(new) / boundary))
else:
updated = new
rv.append((key, updated))
return ["%s:%s" % item for item in sorted(rv)]
def update_default(self):
# Current values
current_default = []
if self.property_name in self.node._data:
current_default = [item for item in
self.node._data[self.property_name]
if item.condition_node is None]
current_default = current_default[0].value_as(self.value_type)
max_new = {}
for item in self.new:
key, value = item.value
if value > max_new.get(key, 0):
max_new[key] = value
new_value = self.update_value(current_default,
max_new.items(),
allow_buffer=False)
return True, new_value
def group_conditionals(values, property_order=None, boolean_properties=None):
"""Given a list of Value objects, return a list of
(conditional_node, status) pairs representing the conditional

View file

@ -289,7 +289,9 @@ class ExpectedUpdater(object):
"test_status": self.test_status,
"test_end": self.test_end,
"assertion_count": self.assertion_count,
"lsan_leak": self.lsan_leak}
"lsan_leak": self.lsan_leak,
"mozleak_object": self.mozleak_object,
"mozleak_total": self.mozleak_total}
self.tests_visited = {}
def update_from_log(self, log_file):
@ -340,6 +342,15 @@ class ExpectedUpdater(object):
for item in data.get("lsan_leaks", []):
action_map["lsan_leak"](item)
mozleak_data = data.get("mozleak", {})
for scope, scope_data in mozleak_data.iteritems():
for key, action in [("objects", "mozleak_object"),
("total", "mozleak_total")]:
for item in scope_data.get(key, []):
item_data = {"scope": scope}
item_data.update(item)
action_map[action](item_data)
def suite_start(self, data):
self.run_info = run_info_intern.store(data["run_info"])
@ -397,17 +408,36 @@ class ExpectedUpdater(object):
if data["count"] < data["min_expected"] or data["count"] > data["max_expected"]:
test_data.set_requires_update()
def lsan_leak(self, data):
def test_for_scope(self, data):
dir_path = data.get("scope", "/")
dir_id = intern(os.path.join(dir_path, "__dir__").replace(os.path.sep, "/").encode("utf8"))
if dir_id.startswith("/"):
dir_id = dir_id[1:]
test_data = self.id_test_map[dir_id]
return dir_id, self.id_test_map[dir_id]
def lsan_leak(self, data):
dir_id, test_data = self.test_for_scope(data)
test_data.set(dir_id, None, "lsan",
self.run_info, (data["frames"], data.get("allowed_match")))
if not data.get("allowed_match"):
test_data.set_requires_update()
def mozleak_object(self, data):
dir_id, test_data = self.test_for_scope(data)
test_data.set(dir_id, None, "leak-object",
self.run_info, ("%s:%s", (data["process"], data["name"]),
data.get("allowed")))
if not data.get("allowed"):
test_data.set_requires_update()
def mozleak_total(self, data):
if data["bytes"]:
dir_id, test_data = self.test_for_scope(data)
test_data.set(dir_id, None, "leak-threshold",
self.run_info, (data["process"], data["bytes"], data["threshold"]))
if data["bytes"] > data["threshold"] or data["bytes"] < 0:
test_data.set_requires_update()
def create_test_tree(metadata_path, test_manifest):
"""Create a map of test_id to TestFileData for that test.
@ -552,6 +582,10 @@ class TestFileData(object):
if subtest_id is None and test_id.endswith("__dir__"):
if prop == "lsan":
expected.set_lsan(run_info, value)
elif prop == "leak-object":
expected.set_leak_object(run_info, value)
elif prop == "leak-threshold":
expected.set_leak_threshold(run_info, value)
continue
if prop == "status":

View file

@ -606,3 +606,98 @@ def test_update_wptreport_1():
assert len(updated) == 1
assert updated[0][1].get("lsan-allowed") == ["baz"]
def test_update_leak_total_0():
test_id = "/path/to/test.htm"
dir_id = "path/to/__dir__"
tests = [("path/to/test.htm", [test_id], "testharness", ""),
("path/to/__dir__", [dir_id], None, "")]
log_0 = suite_log([("mozleak_total", {"scope": "path/to/",
"process": "default",
"bytes": 100,
"threshold": 0,
"objects": []})])
updated = update(tests, log_0)
new_manifest = updated[0][1]
assert not new_manifest.is_empty
assert new_manifest.get("leak-threshold") == ['default:51200']
def test_update_leak_total_1():
test_id = "/path/to/test.htm"
dir_id = "path/to/__dir__"
tests = [("path/to/test.htm", [test_id], "testharness", ""),
("path/to/__dir__", [dir_id], None, "")]
log_0 = suite_log([("mozleak_total", {"scope": "path/to/",
"process": "default",
"bytes": 100,
"threshold": 1000,
"objects": []})])
updated = update(tests, log_0)
assert not updated
def test_update_leak_total_2():
test_id = "/path/to/test.htm"
dir_id = "path/to/__dir__"
tests = [("path/to/test.htm", [test_id], "testharness", ""),
("path/to/__dir__", [dir_id], None, """
leak-total: 110""")]
log_0 = suite_log([("mozleak_total", {"scope": "path/to/",
"process": "default",
"bytes": 100,
"threshold": 110,
"objects": []})])
updated = update(tests, log_0)
assert not updated
def test_update_leak_total_3():
test_id = "/path/to/test.htm"
dir_id = "path/to/__dir__"
tests = [("path/to/test.htm", [test_id], "testharness", ""),
("path/to/__dir__", [dir_id], None, """
leak-total: 100""")]
log_0 = suite_log([("mozleak_total", {"scope": "path/to/",
"process": "default",
"bytes": 1000,
"threshold": 100,
"objects": []})])
updated = update(tests, log_0)
new_manifest = updated[0][1]
assert not new_manifest.is_empty
assert new_manifest.get("leak-threshold") == ['default:51200']
def test_update_leak_total_4():
test_id = "/path/to/test.htm"
dir_id = "path/to/__dir__"
tests = [("path/to/test.htm", [test_id], "testharness", ""),
("path/to/__dir__", [dir_id], None, """
leak-total: 110""")]
log_0 = suite_log([
("lsan_leak", {"scope": "path/to/",
"frames": ["foo", "bar"]}),
("mozleak_total", {"scope": "path/to/",
"process": "default",
"bytes": 100,
"threshold": 110,
"objects": []})])
updated = update(tests, log_0)
new_manifest = updated[0][1]
assert not new_manifest.is_empty
assert new_manifest.has_key("leak-threshold") is False

View file

@ -261,8 +261,11 @@ scheme host and port.""")
gecko_group.add_argument("--setpref", dest="extra_prefs", action='append',
default=[], metavar="PREF=VALUE",
help="Defines an extra user preference (overrides those in prefs_root)")
gecko_group.add_argument("--leak-check", dest="leak_check", action="store_true",
help="Enable leak checking")
gecko_group.add_argument("--leak-check", dest="leak_check", action="store_true", default=None,
help="Enable leak checking (enabled by default for debug builds, "
"silently ignored for opt)")
gecko_group.add_argument("--no-leak-check", dest="leak_check", action="store_false", default=None,
help="Disable leak checking")
gecko_group.add_argument("--stylo-threads", action="store", type=int, default=1,
help="Number of parallel threads to use for stylo")
gecko_group.add_argument("--reftest-internal", dest="reftest_internal", action="store_true",
@ -270,7 +273,7 @@ scheme host and port.""")
gecko_group.add_argument("--reftest-external", dest="reftest_internal", action="store_false",
help="Disable reftest runner implemented inside Marionette")
gecko_group.add_argument("--reftest-screenshot", dest="reftest_screenshot", action="store",
choices=["always", "fail", "unexpected"], default="unexpected",
choices=["always", "fail", "unexpected"], default=None,
help="With --reftest-internal, when to take a screenshot")
gecko_group.add_argument("--chaos", dest="chaos_mode_flags", action="store",
nargs="?", const=0xFFFFFFFF, type=int,
@ -532,6 +535,9 @@ def check_args(kwargs):
if kwargs["lsan_dir"] is None:
kwargs["lsan_dir"] = kwargs["prefs_root"]
if kwargs["reftest_screenshot"] is None:
kwargs["reftest_screenshot"] = "unexpected"
return kwargs

View file

@ -242,6 +242,26 @@ class Test(object):
return depth
return None
@property
def mozleak_allowed(self):
mozleak_allowed = set()
for meta in self.itermeta():
mozleak_allowed |= meta.leak_allowed
if atom_reset in mozleak_allowed:
mozleak_allowed.remove(atom_reset)
break
return mozleak_allowed
@property
def mozleak_threshold(self):
rv = {}
for meta in self.itermeta(None):
threshold = meta.leak_threshold
for key, value in threshold.iteritems():
if key not in rv:
rv[key] = value
return rv
@property
def tags(self):
tags = set()

View file

@ -28,6 +28,7 @@ var kWasmV3 = 0;
var kHeaderSize = 8;
var kPageSize = 65536;
var kSpecMaxPages = 65535;
function bytesWithHeader() {
var buffer = new ArrayBuffer(kHeaderSize + arguments.length);
@ -52,18 +53,17 @@ let kDeclNoLocals = 0;
// Section declaration constants
let kUnknownSectionCode = 0;
let kTypeSectionCode = 1; // Function signature declarations
let kImportSectionCode = 2; // Import declarations
let kFunctionSectionCode = 3; // Function declarations
let kTableSectionCode = 4; // Indirect function table and other tables
let kMemorySectionCode = 5; // Memory attributes
let kGlobalSectionCode = 6; // Global declarations
let kExportSectionCode = 7; // Exports
let kStartSectionCode = 8; // Start function declaration
let kElementSectionCode = 9; // Elements section
let kCodeSectionCode = 10; // Function code
let kDataSectionCode = 11; // Data segments
let kNameSectionCode = 12; // Name section (encoded as string)
let kTypeSectionCode = 1; // Function signature declarations
let kImportSectionCode = 2; // Import declarations
let kFunctionSectionCode = 3; // Function declarations
let kTableSectionCode = 4; // Indirect function table and other tables
let kMemorySectionCode = 5; // Memory attributes
let kGlobalSectionCode = 6; // Global declarations
let kExportSectionCode = 7; // Exports
let kStartSectionCode = 8; // Start function declaration
let kElementSectionCode = 9; // Elements section
let kCodeSectionCode = 10; // Function code
let kDataSectionCode = 11; // Data segments
// Name section types
let kModuleNameCode = 0;
@ -74,6 +74,7 @@ let kWasmFunctionTypeForm = 0x60;
let kWasmAnyFunctionTypeForm = 0x70;
let kHasMaximumFlag = 1;
let kResizableMaximumFlag = 1;
// Function declaration flags
let kDeclFunctionName = 0x01;
@ -87,6 +88,7 @@ let kWasmI32 = 0x7f;
let kWasmI64 = 0x7e;
let kWasmF32 = 0x7d;
let kWasmF64 = 0x7c;
let kWasmS128 = 0x7b;
let kExternalFunction = 0;
let kExternalTable = 1;
@ -102,6 +104,8 @@ let kSig_l_l = makeSig([kWasmI64], [kWasmI64]);
let kSig_i_l = makeSig([kWasmI64], [kWasmI32]);
let kSig_i_ii = makeSig([kWasmI32, kWasmI32], [kWasmI32]);
let kSig_i_iii = makeSig([kWasmI32, kWasmI32, kWasmI32], [kWasmI32]);
let kSig_v_iiii = makeSig([kWasmI32, kWasmI32, kWasmI32, kWasmI32], []);
let kSig_f_ff = makeSig([kWasmF32, kWasmF32], [kWasmF32]);
let kSig_d_dd = makeSig([kWasmF64, kWasmF64], [kWasmF64]);
let kSig_l_ll = makeSig([kWasmI64, kWasmI64], [kWasmI64]);
let kSig_i_dd = makeSig([kWasmF64, kWasmF64], [kWasmI32]);
@ -118,6 +122,11 @@ let kSig_v_d = makeSig([kWasmF64], []);
let kSig_v_dd = makeSig([kWasmF64, kWasmF64], []);
let kSig_v_ddi = makeSig([kWasmF64, kWasmF64, kWasmI32], []);
let kSig_v_f = makeSig([kWasmF32], []);
let kSig_f_f = makeSig([kWasmF32], [kWasmF32]);
let kSig_f_d = makeSig([kWasmF64], [kWasmF32]);
let kSig_d_d = makeSig([kWasmF64], [kWasmF64]);
function makeSig(params, results) {
return {params: params, results: results};
}
@ -357,19 +366,19 @@ function assertTraps(trap, code) {
throw new MjsUnitAssertionError('Did not trap, expected: ' + kTrapMsgs[trap]);
}
function assertWasmThrows(value, code) {
assertEquals('number', typeof value);
try {
if (typeof code === 'function') {
code();
} else {
eval(code);
}
} catch (e) {
assertEquals('number', typeof e);
assertEquals(value, e);
// Success.
return;
function wasmI32Const(val) {
let bytes = [kExprI32Const];
for (let i = 0; i < 4; ++i) {
bytes.push(0x80 | ((val >> (7 * i)) & 0x7f));
}
throw new MjsUnitAssertionError('Did not throw, expected: ' + value);
bytes.push((val >> (7 * 4)) & 0x7f);
return bytes;
}
function wasmF32Const(f) {
return [kExprF32Const].concat(Array.from(new Uint8Array((new Float32Array([f])).buffer)));
}
function wasmF64Const(f) {
return [kExprF64Const].concat(Array.from(new Uint8Array((new Float64Array([f])).buffer)));
}

View file

@ -69,14 +69,13 @@ class Binary extends Array {
// Emit section name.
this.emit_u8(section_code);
// Emit the section to a temporary buffer: its full length isn't know yet.
const section = new Binary;
let section = new Binary;
content_generator(section);
// Emit section length.
this.emit_u32v(section.length);
// Copy the temporary buffer.
for (const b of section) {
this.push(b);
}
// Avoid spread because {section} can be huge.
for (let b of section) this.push(b);
}
}
@ -88,15 +87,6 @@ class WasmFunctionBuilder {
this.body = [];
}
numLocalNames() {
if (this.local_names === undefined) return 0;
let num_local_names = 0;
for (let loc_name of this.local_names) {
if (loc_name !== undefined) ++num_local_names;
}
return num_local_names;
}
exportAs(name) {
this.module.addExport(name, this.index);
return this;
@ -108,40 +98,12 @@ class WasmFunctionBuilder {
}
addBody(body) {
for (let b of body) {
if (typeof b !== 'number' || (b & (~0xFF)) !== 0 )
throw new Error('invalid body (entries must be 8 bit numbers): ' + body);
}
this.body = body.slice();
// Automatically add the end for the function block to the body.
this.body.push(kExprEnd);
return this;
}
addBodyWithEnd(body) {
this.body = body;
return this;
}
getNumLocals() {
let total_locals = 0;
for (let l of this.locals || []) {
for (let type of ["i32", "i64", "f32", "f64"]) {
total_locals += l[type + "_count"] || 0;
}
}
return total_locals;
}
addLocals(locals, names) {
const old_num_locals = this.getNumLocals();
if (!this.locals) this.locals = []
this.locals.push(locals);
if (names) {
if (!this.local_names) this.local_names = [];
const missing_names = old_num_locals - this.local_names.length;
this.local_names.push(...new Array(missing_names), ...names);
}
addLocals(locals) {
this.locals = locals;
return this;
}
@ -176,6 +138,7 @@ class WasmModuleBuilder {
this.table_length_max = undefined;
this.element_segments = [];
this.data_segments = [];
this.segments = [];
this.explicit = [];
this.num_imported_funcs = 0;
this.num_imported_globals = 0;
@ -197,22 +160,6 @@ class WasmModuleBuilder {
return this;
}
stringToBytes(name) {
var result = new Binary();
result.emit_u32v(name.length);
for (var i = 0; i < name.length; i++) {
result.emit_u8(name.charCodeAt(i));
}
return result;
}
addCustomSection(name, bytes) {
name = this.stringToBytes(name);
var length = new Binary();
length.emit_u32v(name.length + bytes.length);
this.explicit.push([0, ...length, ...name, ...bytes]);
}
addType(type) {
// TODO: canonicalize types?
this.types.push(type);
@ -235,21 +182,15 @@ class WasmModuleBuilder {
}
addImport(module = "", name, type) {
if (this.functions.length != 0) {
throw new Error('Imported functions must be declared before local ones');
}
let type_index = (typeof type) == "number" ? type : this.addType(type);
this.imports.push({module: module, name: name, kind: kExternalFunction,
type: type_index});
return this.num_imported_funcs++;
}
addImportedGlobal(module = "", name, type, mutable = false) {
if (this.globals.length != 0) {
throw new Error('Imported globals must be declared before local ones');
}
addImportedGlobal(module = "", name, type) {
let o = {module: module, name: name, kind: kExternalGlobal, type: type,
mutable: mutable};
mutable: false}
this.imports.push(o);
return this.num_imported_globals++;
}
@ -278,7 +219,8 @@ class WasmModuleBuilder {
}
addDataSegment(addr, data, is_global = false) {
this.data_segments.push({addr: addr, data: data, is_global: is_global});
this.data_segments.push(
{addr: addr, data: data, is_global: is_global});
return this.data_segments.length - 1;
}
@ -309,21 +251,15 @@ class WasmModuleBuilder {
return this.addElementSegment(this.table_length_min, false, array);
}
setTableBounds(min, max) {
setTableBounds(min, max = undefined) {
this.table_length_min = min;
this.table_length_max = max;
return this;
}
setTableLength(length) {
this.table_length_min = length;
this.table_length_max = length;
return this;
}
setName(name) {
this.name = name;
return this;
// TODO(ssauleau): legacy, remove this
setFunctionTableLength(length) {
return this.setTableBounds(length);
}
toArray(debug = false) {
@ -385,11 +321,15 @@ class WasmModuleBuilder {
}
// Add functions declarations
let has_names = false;
let names = false;
if (wasm.functions.length > 0) {
if (debug) print("emitting function decls @ " + binary.length);
binary.emit_section(kFunctionSectionCode, section => {
section.emit_u32v(wasm.functions.length);
for (let func of wasm.functions) {
has_names = has_names || (func.name != undefined &&
func.name.length > 0);
section.emit_u32v(func.type_index);
}
});
@ -415,7 +355,7 @@ class WasmModuleBuilder {
binary.emit_section(kMemorySectionCode, section => {
section.emit_u8(1); // one memory entry
const has_max = wasm.memory.max !== undefined;
section.emit_u8(has_max ? kHasMaximumFlag : 0);
section.emit_u8(has_max ? 1 : 0);
section.emit_u32v(wasm.memory.min);
if (has_max) section.emit_u32v(wasm.memory.max);
});
@ -438,7 +378,7 @@ class WasmModuleBuilder {
break;
case kWasmI64:
section.emit_u8(kExprI64Const);
section.emit_u32v(global.init);
section.emit_u8(global.init);
break;
case kWasmF32:
section.emit_u8(kExprF32Const);
@ -492,7 +432,7 @@ class WasmModuleBuilder {
}
// Add start function section.
if (wasm.start_index !== undefined) {
if (wasm.start_index != undefined) {
if (debug) print("emitting start function @ " + binary.length);
binary.emit_section(kStartSectionCode, section => {
section.emit_u32v(wasm.start_index);
@ -507,7 +447,7 @@ class WasmModuleBuilder {
section.emit_u32v(inits.length);
for (let init of inits) {
section.emit_u8(0); // table index
section.emit_u8(0); // table index / flags
if (init.is_global) {
section.emit_u8(kExprGetGlobal);
} else {
@ -532,7 +472,9 @@ class WasmModuleBuilder {
for (let func of wasm.functions) {
// Function body length will be patched later.
let local_decls = [];
for (let l of func.locals || []) {
let l = func.locals;
if (l != undefined) {
let local_decls_count = 0;
if (l.i32_count > 0) {
local_decls.push({count: l.i32_count, type: kWasmI32});
}
@ -567,7 +509,7 @@ class WasmModuleBuilder {
binary.emit_section(kDataSectionCode, section => {
section.emit_u32v(wasm.data_segments.length);
for (let seg of wasm.data_segments) {
section.emit_u8(0); // linear memory index 0
section.emit_u8(0); // linear memory index 0 / flags
if (seg.is_global) {
// initializer is a global variable
section.emit_u8(kExprGetGlobal);
@ -590,50 +532,21 @@ class WasmModuleBuilder {
binary.emit_bytes(exp);
}
// Add names.
let num_function_names = 0;
let num_functions_with_local_names = 0;
for (let func of wasm.functions) {
if (func.name !== undefined) ++num_function_names;
if (func.numLocalNames() > 0) ++num_functions_with_local_names;
}
if (num_function_names > 0 || num_functions_with_local_names > 0 ||
wasm.name !== undefined) {
if (debug) print('emitting names @ ' + binary.length);
// Add function names.
if (has_names) {
if (debug) print("emitting names @ " + binary.length);
binary.emit_section(kUnknownSectionCode, section => {
section.emit_string('name');
// Emit module name.
if (wasm.name !== undefined) {
section.emit_section(kModuleNameCode, name_section => {
name_section.emit_string(wasm.name);
});
section.emit_string("name");
var count = wasm.functions.length + wasm.num_imported_funcs;
section.emit_u32v(count);
for (var i = 0; i < wasm.num_imported_funcs; i++) {
section.emit_u8(0); // empty string
section.emit_u8(0); // local names count == 0
}
// Emit function names.
if (num_function_names > 0) {
section.emit_section(kFunctionNamesCode, name_section => {
name_section.emit_u32v(num_function_names);
for (let func of wasm.functions) {
if (func.name === undefined) continue;
name_section.emit_u32v(func.index);
name_section.emit_string(func.name);
}
});
}
// Emit local names.
if (num_functions_with_local_names > 0) {
section.emit_section(kLocalNamesCode, name_section => {
name_section.emit_u32v(num_functions_with_local_names);
for (let func of wasm.functions) {
if (func.numLocalNames() == 0) continue;
name_section.emit_u32v(func.index);
name_section.emit_u32v(func.numLocalNames());
for (let i = 0; i < func.local_names.length; ++i) {
if (func.local_names[i] === undefined) continue;
name_section.emit_u32v(i);
name_section.emit_string(func.local_names[i]);
}
}
});
for (let func of wasm.functions) {
var name = func.name == undefined ? "" : func.name;
section.emit_string(name);
section.emit_u8(0); // local names count == 0
}
});
}
@ -650,21 +563,12 @@ class WasmModuleBuilder {
if ((typeof val) == "string") val = val.charCodeAt(0);
view[i] = val | 0;
}
return buffer;
return new Uint8Array(buffer);
}
instantiate(ffi) {
instantiate(...args) {
let module = new WebAssembly.Module(this.toBuffer());
let instance = new WebAssembly.Instance(module, ffi);
let instance = new WebAssembly.Instance(module, ...args);
return instance;
}
asyncInstantiate(ffi) {
return WebAssembly.instantiate(this.toBuffer(), ffi)
.then(({module, instance}) => instance);
}
toModule(debug = false) {
return new WebAssembly.Module(this.toBuffer(debug));
}
}

View file

@ -5,15 +5,16 @@ let signal;
let renderedBuffer;
let renderedData;
let sampleRate = 44100.0;
// Use a power of two to eliminate round-off in converting frame to time
let sampleRate = 32768;
let pulseLengthFrames = .1 * sampleRate;
// Maximum allowed error for the test to succeed. Experimentally determined.
let maxAllowedError = 5.9e-8;
// This must be large enough so that the filtered result is
// essentially zero. See comments for createTestAndRun.
let timeStep = .1;
// This must be large enough so that the filtered result is essentially zero.
// See comments for createTestAndRun. This must be a whole number of frames.
let timeStep = Math.ceil(.1 * sampleRate) / sampleRate;
// Maximum number of filters we can process (mostly for setting the
// render length correctly.)

View file

@ -1,10 +1,13 @@
let sampleRate = 44100.0;
// Use a power of two to eliminate round-off when converting frames to time and
// vice versa.
let sampleRate = 32768;
// How many panner nodes to create for the test.
let nodesToCreate = 100;
// Time step when each panner node starts.
let timeStep = 0.001;
// Time step when each panner node starts. Make sure it starts on a frame
// boundary.
let timeStep = Math.floor(0.001 * sampleRate) / sampleRate;
// Make sure we render long enough to get all of our nodes.
let renderLengthSeconds = timeStep * (nodesToCreate + 1);
@ -134,7 +137,7 @@ function checkDistanceResult(renderedBuffer, model, should) {
// The max allowed error between the actual gain and the expected
// value. This is determined experimentally. Set to 0 to see
// what the actual errors are.
let maxAllowedError = 3.3e-6;
let maxAllowedError = 2.2720e-6;
let success = true;

View file

@ -1,17 +1,23 @@
let sampleRate = 44100.0;
// Use a power of two to eliminate round-off converting from frames to time.
let sampleRate = 32768;
// How many grains to play.
let numberOfTests = 100;
// Duration of each grain to be played
let duration = 0.01;
// Duration of each grain to be played. Make a whole number of frames
let duration = Math.floor(0.01 * sampleRate) / sampleRate;
// A little extra bit of silence between grain boundaries. Must be a whole
// number of frames.
let grainGap = Math.floor(0.005 * sampleRate) / sampleRate;
// Time step between the start of each grain. We need to add a little
// bit of silence so we can detect grain boundaries
let timeStep = duration + .005;
let timeStep = duration + grainGap;
// Time step between the start for each grain.
let grainOffsetStep = 0.001;
// Time step between the start for each grain. Must be a whole number of
// frames.
let grainOffsetStep = Math.floor(0.001 * sampleRate) / sampleRate;
// How long to render to cover all of the grains.
let renderTime = (numberOfTests + 1) * timeStep;

View file

@ -1,9 +1,12 @@
let sampleRate = 44100.0;
// Use a power of two to eliminate round-off when converting frames to time and
// vice versa.
let sampleRate = 32768;
let numberOfChannels = 1;
// Time step when each panner node starts.
let timeStep = 0.001;
// Time step when each panner node starts. Make sure it starts on a frame
// boundary.
let timeStep = Math.floor(0.001 * sampleRate) / sampleRate;
// Length of the impulse signal.
let pulseLengthFrames = Math.round(timeStep * sampleRate);
@ -114,7 +117,7 @@ function checkResult(renderedBuffer, should) {
// The max error we allow between the rendered impulse and the
// expected value. This value is experimentally determined. Set
// to 0 to make the test fail to see what the actual error is.
let maxAllowedError = 1.3e-6;
let maxAllowedError = 1.1597e-6;
let success = true;

View file

@ -3,10 +3,12 @@ let StereoPannerTest = (function() {
// Constants
let PI_OVER_TWO = Math.PI * 0.5;
let gSampleRate = 44100;
// Use a power of two to eliminate any round-off when converting frames to
// time.
let gSampleRate = 32768;
// Time step when each panner node starts.
let gTimeStep = 0.001;
// Time step when each panner node starts. Make sure this is on a frame boundary.
let gTimeStep = Math.floor(0.001 * gSampleRate) / gSampleRate;
// How many panner nodes to create for the test
let gNodesToCreate = 100;
@ -77,7 +79,7 @@ let StereoPannerTest = (function() {
// The max error we allow between the rendered impulse and the
// expected value. This value is experimentally determined. Set
// to 0 to make the test fail to see what the actual error is.
this.maxAllowedError = 1.3e-6;
this.maxAllowedError = 9.8015e-8;
// Max (absolute) error and the index of the maxima for the left
// and right channels.

View file

@ -74,6 +74,42 @@
.then(() => task.done());
});
audit.define('subsample start with playback rate 0', (task, should) => {
let context = new OfflineAudioContext(1, renderLength, sampleRate);
let rampBuffer = new AudioBuffer(
{length: renderLength, sampleRate: context.sampleRate});
let data = new Float32Array(renderLength);
let startValue = 5;
for (let k = 0; k < data.length; ++k) {
data[k] = k + startValue;
}
rampBuffer.copyToChannel(data, 0);
let src = new AudioBufferSourceNode(
context, {buffer: rampBuffer, playbackRate: 0});
src.connect(context.destination);
// Purposely start the source between frame boundaries
let startFrame = 27.3;
src.start(startFrame / context.sampleRate);
context.startRendering()
.then(audioBuffer => {
let actualStartFrame = Math.ceil(startFrame);
let audio = audioBuffer.getChannelData(0);
should(
audio.slice(0, actualStartFrame),
`output[0:${actualStartFrame - 1}]`)
.beConstantValueOf(0);
should(
audio.slice(actualStartFrame), `output[${actualStartFrame}:]`)
.beConstantValueOf(startValue);
})
.then(() => task.done());
});
audit.run();
</script>
</body>

View file

@ -0,0 +1,423 @@
<!doctype html>
<html>
<head>
<title>
Test Sub-Sample Accurate Scheduling for ABSN
</title>
<script src="/resources/testharness.js"></script>
<script src="/resources/testharnessreport.js"></script>
<script src="/webaudio/resources/audit-util.js"></script>
<script src="/webaudio/resources/audit.js"></script>
</head>
<body>
<script>
// Power of two so there's no roundoff converting from integer frames to
// time.
let sampleRate = 32768;
let audit = Audit.createTaskRunner();
audit.define('sub-sample accurate start', (task, should) => {
// There are two channels, one for each source. Only need to render
// quanta for this test.
let context = new OfflineAudioContext(
{numberOfChannels: 2, length: 8192, sampleRate: sampleRate});
let merger = new ChannelMergerNode(
context, {numberOfInputs: context.destination.channelCount});
merger.connect(context.destination);
// Use a simple linear ramp for the sources with integer steps starting
// at 1 to make it easy to verify and test that have sub-sample accurate
// start. Ramp starts at 1 so we can easily tell when the source
// starts.
let rampBuffer = new AudioBuffer(
{length: context.length, sampleRate: context.sampleRate});
let r = rampBuffer.getChannelData(0);
for (let k = 0; k < r.length; ++k) {
r[k] = k + 1;
}
const src0 = new AudioBufferSourceNode(context, {buffer: rampBuffer});
const src1 = new AudioBufferSourceNode(context, {buffer: rampBuffer});
// Frame where sources should start. This is pretty arbitrary, but one
// should be close to an integer and the other should be close to the
// next integer. We do this to catch the case where rounding of the
// start frame is being done. Rounding is incorrect.
const startFrame = 33;
const startFrame0 = startFrame + 0.1;
const startFrame1 = startFrame + 0.9;
src0.connect(merger, 0, 0);
src1.connect(merger, 0, 1);
src0.start(startFrame0 / context.sampleRate);
src1.start(startFrame1 / context.sampleRate);
context.startRendering()
.then(audioBuffer => {
const output0 = audioBuffer.getChannelData(0);
const output1 = audioBuffer.getChannelData(1);
// Compute the expected output by interpolating the ramp buffer of
// the sources if they started at the given frame.
const ramp = rampBuffer.getChannelData(0);
const expected0 = interpolateRamp(ramp, startFrame0);
const expected1 = interpolateRamp(ramp, startFrame1);
// Verify output0 has the correct values
// For information only
should(startFrame0, 'src0 start frame').beEqualTo(startFrame0);
// Output must be zero before the source start frame, and it must
// be interpolated correctly after the start frame. The
// absoluteThreshold below is currently set for Chrome which does
// linear interpolation. This needs to be updated eventually if
// other browsers do not user interpolation.
should(
output0.slice(0, startFrame + 1), `output0[0:${startFrame}]`)
.beConstantValueOf(0);
should(
output0.slice(startFrame + 1, expected0.length),
`output0[${startFrame + 1}:${expected0.length - 1}]`)
.beCloseToArray(
expected0.slice(startFrame + 1), {absoluteThreshold: 0});
// Verify output1 has the correct values. Same approach as for
// output0.
should(startFrame1, 'src1 start frame').beEqualTo(startFrame1);
should(
output1.slice(0, startFrame + 1), `output1[0:${startFrame}]`)
.beConstantValueOf(0);
should(
output1.slice(startFrame + 1, expected1.length),
`output1[${startFrame + 1}:${expected1.length - 1}]`)
.beCloseToArray(
expected1.slice(startFrame + 1), {absoluteThreshold: 0});
})
.then(() => task.done());
});
audit.define('sub-sample accurate stop', (task, should) => {
// There are threes channesl, one for each source. Only need to render
// quanta for this test.
let context = new OfflineAudioContext(
{numberOfChannels: 3, length: 128, sampleRate: sampleRate});
let merger = new ChannelMergerNode(
context, {numberOfInputs: context.destination.channelCount});
merger.connect(context.destination);
// The source can be as simple constant for this test.
let buffer = new AudioBuffer(
{length: context.length, sampleRate: context.sampleRate});
buffer.getChannelData(0).fill(1);
const src0 = new AudioBufferSourceNode(context, {buffer: buffer});
const src1 = new AudioBufferSourceNode(context, {buffer: buffer});
const src2 = new AudioBufferSourceNode(context, {buffer: buffer});
// Frame where sources should start. This is pretty arbitrary, but one
// should be an integer, one should be close to an integer and the other
// should be close to the next integer. This is to catch the case where
// rounding is used for the end frame. Rounding is incorrect.
const endFrame = 33;
const endFrame1 = endFrame + 0.1;
const endFrame2 = endFrame + 0.9;
src0.connect(merger, 0, 0);
src1.connect(merger, 0, 1);
src2.connect(merger, 0, 2);
src0.start(0);
src1.start(0);
src2.start(0);
src0.stop(endFrame / context.sampleRate);
src1.stop(endFrame1 / context.sampleRate);
src2.stop(endFrame2 / context.sampleRate);
context.startRendering()
.then(audioBuffer => {
let actual0 = audioBuffer.getChannelData(0);
let actual1 = audioBuffer.getChannelData(1);
let actual2 = audioBuffer.getChannelData(2);
// Just verify that we stopped at the right time.
// This is case where the end frame is an integer. Since the first
// output ends on an exact frame, the output must be zero at that
// frame number. We print the end frame for information only; it
// makes interpretation of the rest easier.
should(endFrame - 1, 'src0 end frame')
.beEqualTo(endFrame - 1);
should(actual0[endFrame - 1], `output0[${endFrame - 1}]`)
.notBeEqualTo(0);
should(actual0.slice(endFrame),
`output0[${endFrame}:]`)
.beConstantValueOf(0);
// The case where the end frame is just a little above an integer.
// The output must not be zero just before the end and must be zero
// after.
should(endFrame1, 'src1 end frame')
.beEqualTo(endFrame1);
should(actual1[endFrame], `output1[${endFrame}]`)
.notBeEqualTo(0);
should(actual1.slice(endFrame + 1),
`output1[${endFrame + 1}:]`)
.beConstantValueOf(0);
// The case where the end frame is just a little below an integer.
// The output must not be zero just before the end and must be zero
// after.
should(endFrame2, 'src2 end frame')
.beEqualTo(endFrame2);
should(actual2[endFrame], `output2[${endFrame}]`)
.notBeEqualTo(0);
should(actual2.slice(endFrame + 1),
`output2[${endFrame + 1}:]`)
.beConstantValueOf(0);
})
.then(() => task.done());
});
audit.define('sub-sample-grain', (task, should) => {
let context = new OfflineAudioContext(
{numberOfChannels: 2, length: 128, sampleRate: sampleRate});
let merger = new ChannelMergerNode(
context, {numberOfInputs: context.destination.channelCount});
merger.connect(context.destination);
// The source can be as simple constant for this test.
let buffer = new AudioBuffer(
{length: context.length, sampleRate: context.sampleRate});
buffer.getChannelData(0).fill(1);
let src0 = new AudioBufferSourceNode(context, {buffer: buffer});
let src1 = new AudioBufferSourceNode(context, {buffer: buffer});
src0.connect(merger, 0, 0);
src1.connect(merger, 0, 1);
// Start a short grain.
const src0StartGrain = 3.1;
const src0EndGrain = 37.2;
src0.start(
src0StartGrain / context.sampleRate, 0,
(src0EndGrain - src0StartGrain) / context.sampleRate);
const src1StartGrain = 5.8;
const src1EndGrain = 43.9;
src1.start(
src1StartGrain / context.sampleRate, 0,
(src1EndGrain - src1StartGrain) / context.sampleRate);
context.startRendering()
.then(audioBuffer => {
let output0 = audioBuffer.getChannelData(0);
let output1 = audioBuffer.getChannelData(1);
let expected = new Float32Array(context.length);
// Compute the expected output for output0 and verify the actual
// output matches.
expected.fill(1);
for (let k = 0; k <= Math.floor(src0StartGrain); ++k) {
expected[k] = 0;
}
for (let k = Math.ceil(src0EndGrain); k < expected.length; ++k) {
expected[k] = 0;
}
verifyGrain(should, output0, {
startGrain: src0StartGrain,
endGrain: src0EndGrain,
sourceName: 'src0',
outputName: 'output0'
});
verifyGrain(should, output1, {
startGrain: src1StartGrain,
endGrain: src1EndGrain,
sourceName: 'src1',
outputName: 'output1'
});
})
.then(() => task.done());
});
audit.define(
'sub-sample accurate start with playbackRate', (task, should) => {
// There are two channels, one for each source. Only need to render
// quanta for this test.
let context = new OfflineAudioContext(
{numberOfChannels: 2, length: 8192, sampleRate: sampleRate});
let merger = new ChannelMergerNode(
context, {numberOfInputs: context.destination.channelCount});
merger.connect(context.destination);
// Use a simple linear ramp for the sources with integer steps
// starting at 1 to make it easy to verify and test that have
// sub-sample accurate start. Ramp starts at 1 so we can easily
// tell when the source starts.
let buffer = new AudioBuffer(
{length: context.length, sampleRate: context.sampleRate});
let r = buffer.getChannelData(0);
for (let k = 0; k < r.length; ++k) {
r[k] = k + 1;
}
// Two sources with different playback rates
const src0 = new AudioBufferSourceNode(
context, {buffer: buffer, playbackRate: .25});
const src1 = new AudioBufferSourceNode(
context, {buffer: buffer, playbackRate: 4});
// Frame where sources start. Pretty arbitrary but should not be an
// integer.
const startFrame = 17.8;
src0.connect(merger, 0, 0);
src1.connect(merger, 0, 1);
src0.start(startFrame / context.sampleRate);
src1.start(startFrame / context.sampleRate);
context.startRendering()
.then(audioBuffer => {
const output0 = audioBuffer.getChannelData(0);
const output1 = audioBuffer.getChannelData(1);
const frameBefore = Math.floor(startFrame);
const frameAfter = frameBefore + 1;
// Informative message so we know what the following output
// indices really mean.
should(startFrame, 'Source start frame')
.beEqualTo(startFrame);
// Verify the output
// With a startFrame of 17.8, the first output is at frame 18,
// but the actual start is at 17.8. So we would interpolate
// the output 0.2 fraction of the way between 17.8 and 18, for
// an output of 1.2 for our ramp. But the playback rate is
// 0.25, so we're really only 1/4 as far along as we think so
// the output is .2*0.25 of the way between 1 and 2 or 1.05.
const ramp0 = buffer.getChannelData(0)[0];
const ramp1 = buffer.getChannelData(0)[1];
const src0Output = ramp0 +
(ramp1 - ramp0) * (frameAfter - startFrame) *
src0.playbackRate.value;
let playbackMessage =
`With playbackRate ${src0.playbackRate.value}:`;
should(
output0[frameBefore],
`${playbackMessage} output0[${frameBefore}]`)
.beEqualTo(0);
should(
output0[frameAfter],
`${playbackMessage} output0[${frameAfter}]`)
.beCloseTo(src0Output, {threshold: 4.542e-8});
const src1Output = ramp0 +
(ramp1 - ramp0) * (frameAfter - startFrame) *
src1.playbackRate.value;
playbackMessage =
`With playbackRate ${src1.playbackRate.value}:`;
should(
output1[frameBefore],
`${playbackMessage} output1[${frameBefore}]`)
.beEqualTo(0);
should(
output1[frameAfter],
`${playbackMessage} output1[${frameAfter}]`)
.beCloseTo(src1Output, {threshold: 4.542e-8});
})
.then(() => task.done());
});
audit.run();
// Given an input ramp in |rampBuffer|, interpolate the signal assuming
// this ramp is used for an ABSN that starts at frame |startFrame|, which
// is not necessarily an integer. For simplicity we just use linear
// interpolation here. The interpolation is not part of the spec but
// this should be pretty close to whatever interpolation is being done.
function interpolateRamp(rampBuffer, startFrame) {
// |start| is the last zero sample before the ABSN actually starts.
const start = Math.floor(startFrame);
// One less than the rampBuffer because we can't linearly interpolate
// the last frame.
let result = new Float32Array(rampBuffer.length - 1);
for (let k = 0; k <= start; ++k) {
result[k] = 0;
}
// Now start linear interpolation.
let frame = startFrame;
let index = 1;
for (let k = start + 1; k < result.length; ++k) {
let s0 = rampBuffer[index];
let s1 = rampBuffer[index - 1];
let delta = frame - k;
let s = s1 - delta * (s0 - s1);
result[k] = s;
++frame;
++index;
}
return result;
}
function verifyGrain(should, output, options) {
let {startGrain, endGrain, sourceName, outputName} = options;
let expected = new Float32Array(output.length);
// Compute the expected output for output and verify the actual
// output matches.
expected.fill(1);
for (let k = 0; k <= Math.floor(startGrain); ++k) {
expected[k] = 0;
}
for (let k = Math.ceil(endGrain); k < expected.length; ++k) {
expected[k] = 0;
}
should(startGrain, `${sourceName} grain start`).beEqualTo(startGrain);
should(endGrain - startGrain, `${sourceName} grain duration`)
.beEqualTo(endGrain - startGrain);
should(endGrain, `${sourceName} grain end`).beEqualTo(endGrain);
should(output, outputName).beEqualToArray(expected);
should(
output[Math.floor(startGrain)],
`${outputName}[${Math.floor(startGrain)}]`)
.beEqualTo(0);
should(
output[1 + Math.floor(startGrain)],
`${outputName}[${1 + Math.floor(startGrain)}]`)
.notBeEqualTo(0);
should(
output[Math.floor(endGrain)],
`${outputName}[${Math.floor(endGrain)}]`)
.notBeEqualTo(0);
should(
output[1 + Math.floor(endGrain)],
`${outputName}[${1 + Math.floor(endGrain)}]`)
.beEqualTo(0);
}
</script>
</body>
</html>

View file

@ -14,7 +14,8 @@
<script id="layout-test-code">
let audit = Audit.createTaskRunner();
let context = 0;
let sampleRate = 44100;
// Use a power of two to eliminate round-off converting frames to time.
let sampleRate = 32768;
let renderNumberOfChannels = 8;
let singleTestFrameLength = 8;
let testBuffers;

View file

@ -131,16 +131,20 @@
// Set listener properties to "random" values so that motion on one of
// the attributes actually changes things relative to the panner
// location.
// location. And the up and forward directions should have a simple
// relationship between them.
listener.positionX.value = -1;
listener.positionY.value = 1;
listener.positionZ.value = -1;
listener.forwardX.value = -1;
listener.forwardY.value = 1;
listener.forwardZ.value = -1;
// Make the up vector not parallel or perpendicular to the forward and
// position vectors so that automations of the up vector produce
// noticeable differences.
listener.upX.value = 1;
listener.upY.value = 1;
listener.upZ.value = 1;
listener.upZ.value = 2;
let audioParam = listener[options.param];
audioParam.automationRate = 'k-rate';

View file

@ -34,7 +34,7 @@
createTestAndRun(context, 'lowpass', {
should: should,
threshold: 9.7869e-8,
threshold: 4.6943e-8,
filterParameters: filterParameters
}).then(task.done.bind(task));
});

View file

@ -18,11 +18,19 @@
let audit = Audit.createTaskRunner();
let sampleRate = 44100.0;
let bufferDurationSeconds = 0.125;
// Use a power of two to eliminate any round-off when converting frame to
// time.
let sampleRate = 32768;
// Make sure the buffer duration and spacing are all exact frame lengths
// so that the note spacing is also on frame boundaries to eliminate
// sub-sample accurate start of a ABSN.
let bufferDurationSeconds = Math.floor(0.125 * sampleRate) / sampleRate;
let numberOfNotes = 11;
let noteSpacing = bufferDurationSeconds +
0.020; // leave 20ms of silence between each "note"
// Leave about 20ms of silence, being sure this is an exact frame
// duration.
let noteSilence = Math.floor(0.020 * sampleRate) / sampleRate;
let noteSpacing = bufferDurationSeconds + noteSilence;
let lengthInSeconds = numberOfNotes * noteSpacing;
let context = 0;
@ -131,18 +139,18 @@
// Verify the channels are clsoe to the reference.
should(actual0, 'Left output from gain node')
.beCloseToArray(
reference0, {relativeThreshold: 1.1908e-7});
reference0, {relativeThreshold: 1.1877e-7});
should(actual1, 'Right output from gain node')
.beCloseToArray(
reference1, {relativeThreshold: 1.1908e-7});
reference1, {relativeThreshold: 1.1877e-7});
// Test the SNR too for both channels.
let snr0 = 10 * Math.log10(computeSNR(actual0, reference0));
let snr1 = 10 * Math.log10(computeSNR(actual1, reference1));
should(snr0, 'Left SNR (in dB)')
.beGreaterThanOrEqualTo(148.69);
.beGreaterThanOrEqualTo(148.71);
should(snr1, 'Right SNR (in dB)')
.beGreaterThanOrEqualTo(148.69);
.beGreaterThanOrEqualTo(148.71);
})
.then(() => task.done());
;

View file

@ -0,0 +1,51 @@
<!DOCTYPE html>
<html>
<head>
<title>Test Panner Azimuth Calculation</title>
<script src="/resources/testharness.js"></script>
<script src="/resources/testharnessreport.js"></script>
<script src="../../resources/audit.js"></script>
</head>
<body>
<script>
const audit = Audit.createTaskRunner();
// Fairly arbitrary sample rate
const sampleRate = 16000;
audit.define('Azimuth calculation', (task, should) => {
// Two channels for the context so we can see each channel of the
// panner node.
let context = new OfflineAudioContext(2, sampleRate, sampleRate);
let src = new ConstantSourceNode(context);
let panner = new PannerNode(context);
src.connect(panner).connect(context.destination);
// The source is still pointed directly at the listener, but is now
// directly above. The audio should be the same in both the left and
// right channels.
panner.positionY.value = 1;
src.start();
context.startRendering()
.then(audioBuffer => {
// The left and right channels should contain the same signal.
let c0 = audioBuffer.getChannelData(0);
let c1 = audioBuffer.getChannelData(1);
let expected = Math.fround(Math.SQRT1_2);
should(c0, 'Left channel').beConstantValueOf(expected);
should(c1, 'Righteft channel').beConstantValueOf(expected);
})
.then(() => task.done());
});
audit.run();
</script>
</body>
</html>

View file

@ -187,6 +187,17 @@ def test_height_width(session):
})
def test_height_width_smaller_than_minimum_browser_size(session):
original = session.window.rect
response = set_window_rect(session, {"width": 10, "height": 10})
rect = assert_success(response)
assert rect["width"] < original["width"]
assert rect["width"] > 10
assert rect["height"] < original["height"]
assert rect["height"] > 10
def test_height_width_larger_than_max(session):
screen_width, screen_height = screen_size(session)
avail_width, avail_height = available_screen_size(session)
@ -215,6 +226,36 @@ def test_height_width_as_current(session):
})
def test_height_as_current(session):
original = session.window.rect
response = set_window_rect(session, {
"width": original["width"] + 10,
"height": original["height"]
})
assert_success(response, {
"x": original["x"],
"y": original["y"],
"width": original["width"] + 10,
"height": original["height"]
})
def test_width_as_current(session):
original = session.window.rect
response = set_window_rect(session, {
"width": original["width"],
"height": original["height"] + 10
})
assert_success(response, {
"x": original["x"],
"y": original["y"],
"width": original["width"],
"height": original["height"] + 10
})
def test_x_y(session):
original = session.window.rect
response = set_window_rect(session, {
@ -267,40 +308,49 @@ def test_negative_x_y(session):
"height": original["height"]})
def test_move_to_same_position(session):
original_position = session.window.position
position = session.window.position = original_position
assert position == original_position
def test_x_y_as_current(session):
original = session.window.rect
response = set_window_rect(session, {
"x": original["x"],
"y": original["y"]
})
assert_success(response, {
"x": original["x"],
"y": original["y"],
"width": original["width"],
"height": original["height"]
})
def test_move_to_same_x(session):
original_x = session.window.position[0]
position = session.window.position = (original_x, 345)
assert position == (original_x, 345)
def test_x_as_current(session):
original = session.window.rect
response = set_window_rect(session, {
"x": original["x"],
"y": original["y"] + 10
})
assert_success(response, {
"x": original["x"],
"y": original["y"] + 10,
"width": original["width"],
"height": original["height"]
})
def test_move_to_same_y(session):
original_y = session.window.position[1]
position = session.window.position = (456, original_y)
assert position == (456, original_y)
def test_y_as_current(session):
original = session.window.rect
def test_resize_to_same_size(session):
original_size = session.window.size
size = session.window.size = original_size
assert size == original_size
def test_resize_to_same_width(session):
original_width = session.window.size[0]
size = session.window.size = (original_width, 345)
assert size == (original_width, 345)
def test_resize_to_same_height(session):
original_height = session.window.size[1]
size = session.window.size = (456, original_height)
assert size == (456, original_height)
response = set_window_rect(session, {
"x": original["x"] + 10,
"y": original["y"]
})
assert_success(response, {
"x": original["x"] + 10,
"y": original["y"],
"width": original["width"],
"height": original["height"]
})
"""

View file

@ -2,6 +2,7 @@ SCRIPT_TIMEOUT = 30
PAGE_LOAD_TIMEOUT = 300
IMPLICIT_WAIT_TIMEOUT = 0
WINDOW_POSITION = (100, 100)
WINDOW_SIZE = (800, 600)
DRIVER_HOST = '127.0.0.1'

View file

@ -152,8 +152,9 @@ def session(capabilities, configuration, request):
if not _current_session.session_id:
raise
# Enforce a fixed default window size
# Enforce a fixed default window size and position
_current_session.window.size = defaults.WINDOW_SIZE
_current_session.window.position = defaults.WINDOW_POSITION
yield _current_session