forked from mirrors/gecko-dev
The goal of this patch is to reduce the number of memory reallocation during |MakePrefixSet|[1]. Here is the number of nsTArray memory reallocation occur during |MakePrefixSet| (test in my local platform): googpub-phish-proto: 58k times goog-malware-proto: 9k times goog-unwanted-proto: 25k times goog-badbinurl-proto: 6k times This patch improves the performance by: 1. For tables whose prefixes are less than 128*1024(malware, unwanted, badinurl). Store prefixes directly without dividing allocation into smaller chunks. Because the maximum size to store all the prefixes in a single array for these tables will be less than 512k, we can avoid Bug 1046038. This simplifies the internal prefixset data structure generation and total memory usage is also saved: goog-malware-proto : 437K -> 163k goog-unwanted-proto : 658k -> 446k goog-badbinurl-proto: 320k -> 110k The single largest allocated continuous memory size is: goog-malware-proto : 86k -> 163k goog-unwanted-proto : 86k -> 446k goog-badbinurl-proto: 77k -> 110k A further improvement can be done for this part is for tables with fewer prefixes, we can use an one-dimension delta array to reduce the size of a single continuous memory allocation. 2. For tables with more prefixes: According to experiment, when prefixes are more than 400k the delta arrays have very high chance that are full, in the case of phishing table, we can estimate the capacity accurately before applying delta algorithm. The shortcoming of this part is when prefixes are between 130k~400k, the capacity estimation is not accurate. [1] https://searchfox.org/mozilla-central/rev/b2015fdd464f598d645342614593d4ebda922d95/toolkit/components/url-classifier/nsUrlClassifierPrefixSet.cpp#99 Differential Revision: https://phabricator.services.mozilla.com/D30046 --HG-- extra : moz-landing-system : lando
584 lines
18 KiB
C++
584 lines
18 KiB
C++
/* -*- Mode: C++; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* vim: set ts=8 sts=2 et sw=2 tw=80: */
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/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#include "nsUrlClassifierPrefixSet.h"
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#include "nsIUrlClassifierPrefixSet.h"
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#include "nsCOMPtr.h"
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#include "nsDebug.h"
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#include "nsPrintfCString.h"
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#include "nsTArray.h"
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#include "nsString.h"
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#include "nsTArray.h"
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#include "nsThreadUtils.h"
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#include "nsNetUtil.h"
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#include "nsISeekableStream.h"
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#include "nsIBufferedStreams.h"
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#include "mozilla/MemoryReporting.h"
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#include "mozilla/StaticPrefs.h"
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#include "mozilla/Telemetry.h"
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#include "mozilla/Logging.h"
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#include "mozilla/Unused.h"
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#include <algorithm>
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using namespace mozilla;
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// MOZ_LOG=UrlClassifierPrefixSet:5
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static LazyLogModule gUrlClassifierPrefixSetLog("UrlClassifierPrefixSet");
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#define LOG(args) \
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MOZ_LOG(gUrlClassifierPrefixSetLog, mozilla::LogLevel::Debug, args)
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#define LOG_ENABLED() \
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MOZ_LOG_TEST(gUrlClassifierPrefixSetLog, mozilla::LogLevel::Debug)
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NS_IMPL_ISUPPORTS(nsUrlClassifierPrefixSet, nsIUrlClassifierPrefixSet,
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nsIMemoryReporter)
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nsUrlClassifierPrefixSet::nsUrlClassifierPrefixSet()
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: mLock("nsUrlClassifierPrefixSet.mLock"),
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mTotalPrefixes(0) {}
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NS_IMETHODIMP
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nsUrlClassifierPrefixSet::Init(const nsACString& aName) {
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mName = aName;
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mMemoryReportPath = nsPrintfCString(
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"explicit/storage/prefix-set/%s",
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(!aName.IsEmpty() ? PromiseFlatCString(aName).get() : "?!"));
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RegisterWeakMemoryReporter(this);
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return NS_OK;
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}
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nsUrlClassifierPrefixSet::~nsUrlClassifierPrefixSet() {
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UnregisterWeakMemoryReporter(this);
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}
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void nsUrlClassifierPrefixSet::Clear() {
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LOG(("[%s] Clearing PrefixSet", mName.get()));
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mIndexDeltas.Clear();
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mIndexPrefixes.Clear();
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mTotalPrefixes = 0;
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}
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NS_IMETHODIMP
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nsUrlClassifierPrefixSet::SetPrefixes(const uint32_t* aArray,
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uint32_t aLength) {
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MutexAutoLock lock(mLock);
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nsresult rv = NS_OK;
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Clear();
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if (aLength > 0) {
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rv = MakePrefixSet(aArray, aLength);
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if (NS_WARN_IF(NS_FAILED(rv))) {
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Clear(); // clear out any leftovers
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}
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}
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MOZ_ASSERT_IF(mIndexDeltas.IsEmpty(),
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mIndexPrefixes.Length() == mTotalPrefixes);
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MOZ_ASSERT_IF(!mIndexDeltas.IsEmpty(),
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mIndexPrefixes.Length() == mIndexDeltas.Length());
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return rv;
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}
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nsresult nsUrlClassifierPrefixSet::MakePrefixSet(const uint32_t* aPrefixes,
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uint32_t aLength) {
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mLock.AssertCurrentThreadOwns();
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MOZ_ASSERT(aPrefixes);
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MOZ_ASSERT(aLength > 0);
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#ifdef DEBUG
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for (uint32_t i = 1; i < aLength; i++) {
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MOZ_ASSERT(aPrefixes[i] >= aPrefixes[i - 1]);
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}
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#endif
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uint32_t totalDeltas = 0;
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// Request one memory space to store all the prefixes may lead to
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// memory allocation failure on certain platforms(See Bug 1046038).
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// So if required size to store all the prefixes exceeds defined
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// threshold(512k), we divide prefixes into delta chunks instead. Note that
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// the potential overhead of this approach is that it may reuqire more memory
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// compared to store all prefixes in one array because of jemalloc's
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// implementation.
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if (aLength * sizeof(uint32_t) <
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StaticPrefs::browser_safebrowsing_prefixset_max_array_size()) {
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// Not over the threshold, store all prefixes into mIndexPrefixes.
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// mIndexDeltas is empty in this case.
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mIndexPrefixes.SetCapacity(aLength);
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for (uint32_t i = 0; i < aLength; i++) {
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mIndexPrefixes.AppendElement(aPrefixes[i]);
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}
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} else {
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// Apply delta algorithm to split prefixes into smaller delta chunk.
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// We estimate the capacity of mIndexPrefixes & mIndexDeltas by assuming
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// each element in mIndexDeltas stores DELTAS_LIMITS deltas, so the
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// number of indexed prefixes is round up of
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// TotalPrefixes / (DELTA_LIMIT + 1)
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// The estimation only works when the number of prefixes are over a
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// certain limit, which means, arrays in mIndexDeltas are always full.
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uint32_t estimateCapacity =
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(aLength + (DELTAS_LIMIT + 1) - 1) / (DELTAS_LIMIT + 1);
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mIndexPrefixes.SetCapacity(estimateCapacity);
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mIndexDeltas.SetCapacity(estimateCapacity);
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mIndexPrefixes.AppendElement(aPrefixes[0]);
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mIndexDeltas.AppendElement();
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mIndexDeltas.LastElement().SetCapacity(DELTAS_LIMIT);
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uint32_t numOfDeltas = 0;
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uint32_t previousItem = aPrefixes[0];
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for (uint32_t i = 1; i < aLength; i++) {
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if ((numOfDeltas >= DELTAS_LIMIT) ||
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(aPrefixes[i] - previousItem >= MAX_INDEX_DIFF)) {
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// Compact the previous element.
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// Note there is always at least one element when we get here,
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// because we created the first element before the loop.
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mIndexDeltas.LastElement().Compact();
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if (!mIndexDeltas.AppendElement(fallible)) {
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return NS_ERROR_OUT_OF_MEMORY;
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}
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mIndexDeltas.LastElement().SetCapacity(DELTAS_LIMIT);
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if (!mIndexPrefixes.AppendElement(aPrefixes[i], fallible)) {
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return NS_ERROR_OUT_OF_MEMORY;
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}
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numOfDeltas = 0;
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} else {
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uint16_t delta = aPrefixes[i] - previousItem;
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if (!mIndexDeltas.LastElement().AppendElement(delta, fallible)) {
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return NS_ERROR_OUT_OF_MEMORY;
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}
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numOfDeltas++;
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totalDeltas++;
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}
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previousItem = aPrefixes[i];
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}
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mIndexDeltas.LastElement().Compact();
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mIndexDeltas.Compact();
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mIndexPrefixes.Compact();
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MOZ_ASSERT(mIndexPrefixes.Length() == mIndexDeltas.Length());
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}
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if (totalDeltas == 0) {
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// We have to clear mIndexDeltas here because it is still possible
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// that the delta generation algorithm produces no deltas at all. When that
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// happens, mIndexDeltas is not empty, which conflicts with the assumption
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// that when there is no delta, mIndexDeltas is empty.
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mIndexDeltas.Clear();
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}
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mTotalPrefixes = aLength;
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LOG(("Total number of indices: %d", aLength));
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LOG(("Total number of deltas: %d", totalDeltas));
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LOG(("Total number of delta chunks: %zu", mIndexDeltas.Length()));
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return NS_OK;
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}
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nsresult nsUrlClassifierPrefixSet::GetPrefixesNative(
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FallibleTArray<uint32_t>& outArray) {
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MutexAutoLock lock(mLock);
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if (!outArray.SetLength(mTotalPrefixes, fallible)) {
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return NS_ERROR_OUT_OF_MEMORY;
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}
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uint32_t prefixIdxLength = mIndexPrefixes.Length();
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uint32_t prefixCnt = 0;
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for (uint32_t i = 0; i < prefixIdxLength; i++) {
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uint32_t prefix = mIndexPrefixes[i];
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if (prefixCnt >= mTotalPrefixes) {
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return NS_ERROR_FAILURE;
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}
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outArray[prefixCnt++] = prefix;
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if (mIndexDeltas.IsEmpty()) {
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continue;
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}
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for (uint32_t j = 0; j < mIndexDeltas[i].Length(); j++) {
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prefix += mIndexDeltas[i][j];
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if (prefixCnt >= mTotalPrefixes) {
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return NS_ERROR_FAILURE;
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}
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outArray[prefixCnt++] = prefix;
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}
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}
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NS_ASSERTION(mTotalPrefixes == prefixCnt, "Lengths are inconsistent");
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return NS_OK;
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}
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NS_IMETHODIMP
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nsUrlClassifierPrefixSet::GetPrefixes(uint32_t* aCount, uint32_t** aPrefixes) {
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// No need to get mLock here because this function does not directly touch
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// the class's data members. (GetPrefixesNative() will get mLock, however.)
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NS_ENSURE_ARG_POINTER(aCount);
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*aCount = 0;
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NS_ENSURE_ARG_POINTER(aPrefixes);
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*aPrefixes = nullptr;
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FallibleTArray<uint32_t> prefixes;
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nsresult rv = GetPrefixesNative(prefixes);
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if (NS_FAILED(rv)) {
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return rv;
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}
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uint64_t itemCount = prefixes.Length();
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uint32_t* prefixArray =
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static_cast<uint32_t*>(moz_xmalloc(itemCount * sizeof(uint32_t)));
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memcpy(prefixArray, prefixes.Elements(), sizeof(uint32_t) * itemCount);
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*aCount = itemCount;
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*aPrefixes = prefixArray;
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return NS_OK;
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}
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uint32_t nsUrlClassifierPrefixSet::BinSearch(uint32_t start, uint32_t end,
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uint32_t target) const {
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mLock.AssertCurrentThreadOwns();
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while (start != end && end >= start) {
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uint32_t i = start + ((end - start) >> 1);
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uint32_t value = mIndexPrefixes[i];
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if (value < target) {
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start = i + 1;
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} else if (value > target) {
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end = i - 1;
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} else {
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return i;
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}
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}
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return end;
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}
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NS_IMETHODIMP
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nsUrlClassifierPrefixSet::Contains(uint32_t aPrefix, bool* aFound) {
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MutexAutoLock lock(mLock);
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*aFound = false;
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if (IsEmptyInternal()) {
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return NS_OK;
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}
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uint32_t target = aPrefix;
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// We want to do a "Price is Right" binary search, that is, we want to find
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// the index of the value either equal to the target or the closest value
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// that is less than the target.
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//
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if (target < mIndexPrefixes[0]) {
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return NS_OK;
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}
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// |binsearch| does not necessarily return the correct index (when the
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// target is not found) but rather it returns an index at least one away
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// from the correct index.
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// Because of this, we need to check if the target lies before the beginning
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// of the indices.
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uint32_t i = BinSearch(0, mIndexPrefixes.Length() - 1, target);
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if (mIndexPrefixes[i] > target && i > 0) {
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i--;
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}
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// Now search through the deltas for the target.
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uint32_t diff = target - mIndexPrefixes[i];
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if (!mIndexDeltas.IsEmpty()) {
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uint32_t deltaSize = mIndexDeltas[i].Length();
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uint32_t deltaIndex = 0;
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while (diff > 0 && deltaIndex < deltaSize) {
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diff -= mIndexDeltas[i][deltaIndex];
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deltaIndex++;
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}
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}
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if (diff == 0) {
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*aFound = true;
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}
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return NS_OK;
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}
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MOZ_DEFINE_MALLOC_SIZE_OF(UrlClassifierMallocSizeOf)
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NS_IMETHODIMP
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nsUrlClassifierPrefixSet::CollectReports(nsIHandleReportCallback* aHandleReport,
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nsISupports* aData, bool aAnonymize) {
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MOZ_ASSERT(NS_IsMainThread());
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// No need to get mLock here because this function does not directly touch
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// the class's data members. (SizeOfIncludingThis() will get mLock, however.)
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aHandleReport->Callback(
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EmptyCString(), mMemoryReportPath, KIND_HEAP, UNITS_BYTES,
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SizeOfIncludingThis(UrlClassifierMallocSizeOf),
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NS_LITERAL_CSTRING("Memory used by the prefix set for a URL classifier."),
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aData);
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return NS_OK;
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}
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size_t nsUrlClassifierPrefixSet::SizeOfIncludingThis(
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mozilla::MallocSizeOf aMallocSizeOf) const {
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MutexAutoLock lock(mLock);
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size_t n = 0;
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n += aMallocSizeOf(this);
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n += mIndexDeltas.ShallowSizeOfExcludingThis(aMallocSizeOf);
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for (uint32_t i = 0; i < mIndexDeltas.Length(); i++) {
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n += mIndexDeltas[i].ShallowSizeOfExcludingThis(aMallocSizeOf);
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}
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n += mIndexPrefixes.ShallowSizeOfExcludingThis(aMallocSizeOf);
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return n;
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}
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bool nsUrlClassifierPrefixSet::IsEmptyInternal() const {
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if (mIndexPrefixes.IsEmpty()) {
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MOZ_ASSERT(mIndexDeltas.IsEmpty() && mTotalPrefixes == 0,
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"If we're empty, there should be no leftovers.");
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return true;
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}
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MOZ_ASSERT(mTotalPrefixes >= mIndexPrefixes.Length());
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return false;
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}
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NS_IMETHODIMP
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nsUrlClassifierPrefixSet::IsEmpty(bool* aEmpty) {
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MutexAutoLock lock(mLock);
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*aEmpty = IsEmptyInternal();
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return NS_OK;
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}
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nsresult nsUrlClassifierPrefixSet::LoadPrefixes(nsCOMPtr<nsIInputStream>& in) {
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MutexAutoLock lock(mLock);
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mCanary.Check();
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Clear();
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uint32_t magic;
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uint32_t read;
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nsresult rv =
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in->Read(reinterpret_cast<char*>(&magic), sizeof(uint32_t), &read);
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NS_ENSURE_SUCCESS(rv, rv);
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NS_ENSURE_TRUE(read == sizeof(uint32_t), NS_ERROR_FAILURE);
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if (magic == PREFIXSET_VERSION_MAGIC) {
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// Read the number of indexed prefixes
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uint32_t indexSize;
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rv = in->Read(reinterpret_cast<char*>(&indexSize), sizeof(uint32_t), &read);
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NS_ENSURE_SUCCESS(rv, rv);
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NS_ENSURE_TRUE(read == sizeof(uint32_t), NS_ERROR_FAILURE);
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// Read the number of delta prefixes
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uint32_t deltaSize;
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rv = in->Read(reinterpret_cast<char*>(&deltaSize), sizeof(uint32_t), &read);
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NS_ENSURE_SUCCESS(rv, rv);
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NS_ENSURE_TRUE(read == sizeof(uint32_t), NS_ERROR_FAILURE);
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if (indexSize == 0) {
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LOG(("[%s] Stored PrefixSet is empty!", mName.get()));
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return NS_OK;
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}
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if (!mIndexPrefixes.SetLength(indexSize, fallible)) {
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return NS_ERROR_OUT_OF_MEMORY;
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}
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mTotalPrefixes = indexSize;
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if (deltaSize > (indexSize * DELTAS_LIMIT)) {
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return NS_ERROR_FILE_CORRUPTED;
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}
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// Read index prefixes
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uint32_t toRead = indexSize * sizeof(uint32_t);
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rv = in->Read(reinterpret_cast<char*>(mIndexPrefixes.Elements()), toRead,
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&read);
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NS_ENSURE_SUCCESS(rv, rv);
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NS_ENSURE_TRUE(read == toRead, NS_ERROR_FAILURE);
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if (deltaSize) {
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nsTArray<uint32_t> indexStarts;
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if (!indexStarts.SetLength(indexSize, fallible) ||
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!mIndexDeltas.SetLength(indexSize, fallible)) {
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return NS_ERROR_OUT_OF_MEMORY;
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}
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// Read index start array to construct mIndexDeltas
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rv = in->Read(reinterpret_cast<char*>(indexStarts.Elements()), toRead,
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&read);
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NS_ENSURE_SUCCESS(rv, rv);
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NS_ENSURE_TRUE(read == toRead, NS_ERROR_FAILURE);
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if (indexStarts[0] != 0) {
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return NS_ERROR_FILE_CORRUPTED;
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}
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for (uint32_t i = 0; i < indexSize; i++) {
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uint32_t numInDelta = i == indexSize - 1
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? deltaSize - indexStarts[i]
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: indexStarts[i + 1] - indexStarts[i];
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if (numInDelta > DELTAS_LIMIT) {
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return NS_ERROR_FILE_CORRUPTED;
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}
|
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if (numInDelta > 0) {
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if (!mIndexDeltas[i].SetLength(numInDelta, fallible)) {
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return NS_ERROR_OUT_OF_MEMORY;
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}
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mTotalPrefixes += numInDelta;
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toRead = numInDelta * sizeof(uint16_t);
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rv = in->Read(reinterpret_cast<char*>(mIndexDeltas[i].Elements()),
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toRead, &read);
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NS_ENSURE_SUCCESS(rv, rv);
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NS_ENSURE_TRUE(read == toRead, NS_ERROR_FAILURE);
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}
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}
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} else {
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mIndexDeltas.Clear();
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}
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} else {
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LOG(("[%s] Version magic mismatch, not loading", mName.get()));
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return NS_ERROR_FILE_CORRUPTED;
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}
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|
|
MOZ_ASSERT_IF(mIndexDeltas.IsEmpty(),
|
|
mIndexPrefixes.Length() == mTotalPrefixes);
|
|
MOZ_ASSERT_IF(!mIndexDeltas.IsEmpty(),
|
|
mIndexPrefixes.Length() == mIndexDeltas.Length());
|
|
LOG(("[%s] Loading PrefixSet successful (%u total prefixes)", mName.get(),
|
|
mTotalPrefixes));
|
|
|
|
return NS_OK;
|
|
}
|
|
|
|
uint32_t nsUrlClassifierPrefixSet::CalculatePreallocateSize() const {
|
|
uint32_t fileSize = 4 * sizeof(uint32_t);
|
|
MOZ_RELEASE_ASSERT(mTotalPrefixes >= mIndexPrefixes.Length());
|
|
uint32_t deltas = mTotalPrefixes - mIndexPrefixes.Length();
|
|
fileSize += mIndexPrefixes.Length() * sizeof(uint32_t);
|
|
if (deltas) {
|
|
MOZ_ASSERT(mIndexPrefixes.Length() == mIndexDeltas.Length());
|
|
|
|
fileSize += mIndexPrefixes.Length() * sizeof(uint32_t);
|
|
fileSize += mIndexDeltas.Length() * sizeof(uint32_t);
|
|
fileSize += deltas * sizeof(uint16_t);
|
|
}
|
|
return fileSize;
|
|
}
|
|
|
|
nsresult nsUrlClassifierPrefixSet::WritePrefixes(
|
|
nsCOMPtr<nsIOutputStream>& out) const {
|
|
MutexAutoLock lock(mLock);
|
|
|
|
MOZ_ASSERT_IF(mIndexDeltas.IsEmpty(),
|
|
mIndexPrefixes.Length() == mTotalPrefixes);
|
|
MOZ_ASSERT_IF(!mIndexDeltas.IsEmpty(),
|
|
mIndexPrefixes.Length() == mIndexDeltas.Length());
|
|
|
|
mCanary.Check();
|
|
|
|
uint32_t written;
|
|
uint32_t writelen = sizeof(uint32_t);
|
|
const uint32_t magic = PREFIXSET_VERSION_MAGIC;
|
|
nsresult rv =
|
|
out->Write(reinterpret_cast<const char*>(&magic), writelen, &written);
|
|
NS_ENSURE_SUCCESS(rv, rv);
|
|
NS_ENSURE_TRUE(written == writelen, NS_ERROR_FAILURE);
|
|
|
|
const uint32_t indexSize = mIndexPrefixes.Length();
|
|
if (mIndexDeltas.IsEmpty()) {
|
|
if (NS_WARN_IF(mTotalPrefixes != indexSize)) {
|
|
LOG(("[%s] mIndexPrefixes doesn't have the same length as mTotalPrefixes",
|
|
mName.get()));
|
|
return NS_ERROR_FAILURE;
|
|
}
|
|
} else {
|
|
if (NS_WARN_IF(mIndexDeltas.Length() != indexSize)) {
|
|
LOG(("[%s] mIndexPrefixes doesn't have the same length as mIndexDeltas",
|
|
mName.get()));
|
|
return NS_ERROR_FAILURE;
|
|
}
|
|
}
|
|
uint32_t totalDeltas = 0;
|
|
|
|
// Store the shape of mIndexDeltas by noting at which "count" of total
|
|
// indexes a new subarray starts. This is slightly cumbersome but keeps
|
|
// file format compatibility.
|
|
// If we ever update the format, we can gain space by storing the delta
|
|
// subarray sizes, which fit in bytes.
|
|
nsTArray<uint32_t> indexStarts;
|
|
if (!mIndexDeltas.IsEmpty()) {
|
|
if (!indexStarts.SetCapacity(indexSize + 1, fallible)) {
|
|
return NS_ERROR_OUT_OF_MEMORY;
|
|
}
|
|
indexStarts.AppendElement(0);
|
|
|
|
for (uint32_t i = 0; i < indexSize; i++) {
|
|
uint32_t deltaLength = mIndexDeltas[i].Length();
|
|
totalDeltas += deltaLength;
|
|
indexStarts.AppendElement(totalDeltas);
|
|
}
|
|
indexStarts.RemoveElementAt(indexSize); // we don't use the last element
|
|
MOZ_ASSERT(indexStarts.Length() == indexSize);
|
|
}
|
|
|
|
rv =
|
|
out->Write(reinterpret_cast<const char*>(&indexSize), writelen, &written);
|
|
NS_ENSURE_SUCCESS(rv, rv);
|
|
NS_ENSURE_TRUE(written == writelen, NS_ERROR_FAILURE);
|
|
|
|
rv = out->Write(reinterpret_cast<const char*>(&totalDeltas), writelen,
|
|
&written);
|
|
NS_ENSURE_SUCCESS(rv, rv);
|
|
NS_ENSURE_TRUE(written == writelen, NS_ERROR_FAILURE);
|
|
|
|
writelen = indexSize * sizeof(uint32_t);
|
|
rv = out->Write(reinterpret_cast<const char*>(mIndexPrefixes.Elements()),
|
|
writelen, &written);
|
|
NS_ENSURE_SUCCESS(rv, rv);
|
|
NS_ENSURE_TRUE(written == writelen, NS_ERROR_FAILURE);
|
|
|
|
if (!mIndexDeltas.IsEmpty()) {
|
|
MOZ_ASSERT(!indexStarts.IsEmpty() && totalDeltas > 0);
|
|
rv = out->Write(reinterpret_cast<const char*>(indexStarts.Elements()),
|
|
writelen, &written);
|
|
NS_ENSURE_SUCCESS(rv, rv);
|
|
NS_ENSURE_TRUE(written == writelen, NS_ERROR_FAILURE);
|
|
|
|
for (uint32_t i = 0; i < indexSize; i++) {
|
|
writelen = mIndexDeltas[i].Length() * sizeof(uint16_t);
|
|
rv = out->Write(reinterpret_cast<const char*>(mIndexDeltas[i].Elements()),
|
|
writelen, &written);
|
|
NS_ENSURE_SUCCESS(rv, rv);
|
|
NS_ENSURE_TRUE(written == writelen, NS_ERROR_FAILURE);
|
|
}
|
|
}
|
|
|
|
LOG(("[%s] Writing PrefixSet successful", mName.get()));
|
|
|
|
return NS_OK;
|
|
}
|