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01583602a9
The bulk of this commit was generated with a script, executed at the top level of a typical source code checkout. The only non-machine-generated part was modifying MFBT's moz.build to reflect the new naming. CLOSED TREE makes big refactorings like this a piece of cake. # The main substitution. find . -name '*.cpp' -o -name '*.cc' -o -name '*.h' -o -name '*.mm' -o -name '*.idl'| \ xargs perl -p -i -e ' s/nsRefPtr\.h/RefPtr\.h/g; # handle includes s/nsRefPtr ?</RefPtr</g; # handle declarations and variables ' # Handle a special friend declaration in gfx/layers/AtomicRefCountedWithFinalize.h. perl -p -i -e 's/::nsRefPtr;/::RefPtr;/' gfx/layers/AtomicRefCountedWithFinalize.h # Handle nsRefPtr.h itself, a couple places that define constructors # from nsRefPtr, and code generators specially. We do this here, rather # than indiscriminantly s/nsRefPtr/RefPtr/, because that would rename # things like nsRefPtrHashtable. perl -p -i -e 's/nsRefPtr/RefPtr/g' \ mfbt/nsRefPtr.h \ xpcom/glue/nsCOMPtr.h \ xpcom/base/OwningNonNull.h \ ipc/ipdl/ipdl/lower.py \ ipc/ipdl/ipdl/builtin.py \ dom/bindings/Codegen.py \ python/lldbutils/lldbutils/utils.py # In our indiscriminate substitution above, we renamed # nsRefPtrGetterAddRefs, the class behind getter_AddRefs. Fix that up. find . -name '*.cpp' -o -name '*.h' -o -name '*.idl' | \ xargs perl -p -i -e 's/nsRefPtrGetterAddRefs/RefPtrGetterAddRefs/g' if [ -d .git ]; then git mv mfbt/nsRefPtr.h mfbt/RefPtr.h else hg mv mfbt/nsRefPtr.h mfbt/RefPtr.h fi --HG-- rename : mfbt/nsRefPtr.h => mfbt/RefPtr.h
168 lines
7.0 KiB
C++
168 lines
7.0 KiB
C++
/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*- */
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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 "nsCookie.h"
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#include "nsUTF8ConverterService.h"
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#include <stdlib.h>
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#include "nsAutoPtr.h"
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static const int64_t kCookieStaleThreshold = 60 * PR_USEC_PER_SEC; // 1 minute in microseconds
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/******************************************************************************
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* nsCookie:
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* string helper impl
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******************************************************************************/
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// copy aSource strings into contiguous storage provided in aDest1,
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// providing terminating nulls for each destination string.
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static inline void
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StrBlockCopy(const nsACString &aSource1,
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const nsACString &aSource2,
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const nsACString &aSource3,
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const nsACString &aSource4,
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char *&aDest1,
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char *&aDest2,
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char *&aDest3,
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char *&aDest4,
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char *&aDestEnd)
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{
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char *toBegin = aDest1;
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nsACString::const_iterator fromBegin, fromEnd;
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*copy_string(aSource1.BeginReading(fromBegin), aSource1.EndReading(fromEnd), toBegin) = char(0);
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aDest2 = ++toBegin;
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*copy_string(aSource2.BeginReading(fromBegin), aSource2.EndReading(fromEnd), toBegin) = char(0);
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aDest3 = ++toBegin;
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*copy_string(aSource3.BeginReading(fromBegin), aSource3.EndReading(fromEnd), toBegin) = char(0);
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aDest4 = ++toBegin;
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*copy_string(aSource4.BeginReading(fromBegin), aSource4.EndReading(fromEnd), toBegin) = char(0);
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aDestEnd = toBegin;
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}
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/******************************************************************************
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* nsCookie:
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* creation helper
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******************************************************************************/
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// This is a counter that keeps track of the last used creation time, each time
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// we create a new nsCookie. This is nominally the time (in microseconds) the
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// cookie was created, but is guaranteed to be monotonically increasing for
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// cookies added at runtime after the database has been read in. This is
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// necessary to enforce ordering among cookies whose creation times would
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// otherwise overlap, since it's possible two cookies may be created at the same
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// time, or that the system clock isn't monotonic.
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static int64_t gLastCreationTime;
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int64_t
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nsCookie::GenerateUniqueCreationTime(int64_t aCreationTime)
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{
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// Check if the creation time given to us is greater than the running maximum
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// (it should always be monotonically increasing).
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if (aCreationTime > gLastCreationTime) {
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gLastCreationTime = aCreationTime;
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return aCreationTime;
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}
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// Make up our own.
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return ++gLastCreationTime;
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}
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nsCookie *
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nsCookie::Create(const nsACString &aName,
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const nsACString &aValue,
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const nsACString &aHost,
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const nsACString &aPath,
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int64_t aExpiry,
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int64_t aLastAccessed,
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int64_t aCreationTime,
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bool aIsSession,
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bool aIsSecure,
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bool aIsHttpOnly)
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{
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// Ensure mValue contains a valid UTF-8 sequence. Otherwise XPConnect will
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// truncate the string after the first invalid octet.
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RefPtr<nsUTF8ConverterService> converter = new nsUTF8ConverterService();
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nsAutoCString aUTF8Value;
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converter->ConvertStringToUTF8(aValue, "UTF-8", false, true, 1, aUTF8Value);
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// find the required string buffer size, adding 4 for the terminating nulls
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const uint32_t stringLength = aName.Length() + aUTF8Value.Length() +
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aHost.Length() + aPath.Length() + 4;
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// allocate contiguous space for the nsCookie and its strings -
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// we store the strings in-line with the nsCookie to save allocations
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void *place = ::operator new(sizeof(nsCookie) + stringLength);
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if (!place)
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return nullptr;
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// assign string members
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char *name, *value, *host, *path, *end;
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name = static_cast<char *>(place) + sizeof(nsCookie);
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StrBlockCopy(aName, aUTF8Value, aHost, aPath,
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name, value, host, path, end);
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// If the creationTime given to us is higher than the running maximum, update
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// our maximum.
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if (aCreationTime > gLastCreationTime)
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gLastCreationTime = aCreationTime;
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// construct the cookie. placement new, oh yeah!
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return new (place) nsCookie(name, value, host, path, end,
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aExpiry, aLastAccessed, aCreationTime,
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aIsSession, aIsSecure, aIsHttpOnly);
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}
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size_t
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nsCookie::SizeOfIncludingThis(mozilla::MallocSizeOf aMallocSizeOf) const
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{
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// There is no need to measure the sizes of the individual string
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// members, since the strings are stored in-line with the nsCookie.
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return aMallocSizeOf(this);
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}
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bool
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nsCookie::IsStale() const
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{
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int64_t currentTimeInUsec = PR_Now();
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return currentTimeInUsec - LastAccessed() > kCookieStaleThreshold;
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}
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/******************************************************************************
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* nsCookie:
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* xpcom impl
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******************************************************************************/
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// xpcom getters
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NS_IMETHODIMP nsCookie::GetName(nsACString &aName) { aName = Name(); return NS_OK; }
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NS_IMETHODIMP nsCookie::GetValue(nsACString &aValue) { aValue = Value(); return NS_OK; }
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NS_IMETHODIMP nsCookie::GetHost(nsACString &aHost) { aHost = Host(); return NS_OK; }
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NS_IMETHODIMP nsCookie::GetRawHost(nsACString &aHost) { aHost = RawHost(); return NS_OK; }
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NS_IMETHODIMP nsCookie::GetPath(nsACString &aPath) { aPath = Path(); return NS_OK; }
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NS_IMETHODIMP nsCookie::GetExpiry(int64_t *aExpiry) { *aExpiry = Expiry(); return NS_OK; }
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NS_IMETHODIMP nsCookie::GetIsSession(bool *aIsSession) { *aIsSession = IsSession(); return NS_OK; }
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NS_IMETHODIMP nsCookie::GetIsDomain(bool *aIsDomain) { *aIsDomain = IsDomain(); return NS_OK; }
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NS_IMETHODIMP nsCookie::GetIsSecure(bool *aIsSecure) { *aIsSecure = IsSecure(); return NS_OK; }
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NS_IMETHODIMP nsCookie::GetIsHttpOnly(bool *aHttpOnly) { *aHttpOnly = IsHttpOnly(); return NS_OK; }
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NS_IMETHODIMP nsCookie::GetStatus(nsCookieStatus *aStatus) { *aStatus = 0; return NS_OK; }
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NS_IMETHODIMP nsCookie::GetPolicy(nsCookiePolicy *aPolicy) { *aPolicy = 0; return NS_OK; }
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NS_IMETHODIMP nsCookie::GetCreationTime(int64_t *aCreation){ *aCreation = CreationTime(); return NS_OK; }
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NS_IMETHODIMP nsCookie::GetLastAccessed(int64_t *aTime) { *aTime = LastAccessed(); return NS_OK; }
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// compatibility method, for use with the legacy nsICookie interface.
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// here, expires == 0 denotes a session cookie.
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NS_IMETHODIMP
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nsCookie::GetExpires(uint64_t *aExpires)
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{
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if (IsSession()) {
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*aExpires = 0;
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} else {
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*aExpires = Expiry() > 0 ? Expiry() : 1;
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}
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return NS_OK;
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}
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NS_IMPL_ISUPPORTS(nsCookie, nsICookie2, nsICookie)
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