Files
haiku-beta6/src/kits/app/MessageUtils.cpp
T
Axel Dörfler 4ceb1e519c * reverted Adi's premature changes to BWindow and restored _DetermineTarget() and
task_looper() again.
* removed BMessenger::fPreferred - whenever you had to specify "usePreferred" separately,
  you don't have to do that anymore - use B_PREFERRED_TOKEN instead.
* fixed BTokenSpace::GetToken() semantics: it will no longer touch the "object" argument
  in case of failure.
* Introduced a BWindow::_DistributeMessage() that will be part of the event dispatcher
  counterpart to the app_server (the other will be _DetermineTarget()).
* Made it easier to use Michael's Message4 implementation: just add the following line
  to your UserBuildConfig:
	AppendToConfigVar DEFINES : HAIKU_TOP src : USING_MESSAGE4 : global ;
* Introduced ServerWindow::HandlerMessenger() and FocusMessenger() - the first will
  target the client handler, while the other will target the preferred handler of the
  client looper (usually the view having focus).
* Fixed dano message unflattening in the Message4 code.
* Changed BMessage::PrintToStream() to no longer use macros in the Message4 implementation.
* I hope that's all - it's a huge change, but it's all connected.


git-svn-id: file:///srv/svn/repos/haiku/haiku/trunk@15046 a95241bf-73f2-0310-859d-f6bbb57e9c96
2005-11-20 16:24:23 +00:00

136 lines
2.4 KiB
C++

/*
* Copyright 2001-2005, Haiku.
* Distributed under the terms of the MIT License.
*
* Authors:
* Erik Jaesler ([email protected])
*/
#ifdef USING_MESSAGE4
# include "MessageUtils4.cpp"
#else
/** Extra messaging utility functions */
#include <string.h>
#include <ByteOrder.h>
#include <MessageUtils.h>
uint32
_checksum_(const uchar* buf, int32 size)
{
uint32 sum = 0;
uint32 temp = 0;
while (size > 3) {
#if defined(__INTEL__)
sum += B_SWAP_INT32(*(int*)buf);
#else
sum += *(int*)buf;
#endif
buf += 4;
size -= 4;
}
while (size > 0) {
temp = (temp << 8) + *buf++;
size -= 1;
}
return sum + temp;
}
namespace BPrivate { // Only putting these here because Be did
status_t
entry_ref_flatten(char* buffer, size_t* size, const entry_ref* ref)
{
memcpy((void*)buffer, (const void*)&ref->device, sizeof (ref->device));
buffer += sizeof (ref->device);
memcpy((void*)buffer, (const void*)&ref->directory, sizeof (ref->directory));
buffer += sizeof (ref->directory);
size_t len = 0;
if (ref->name) {
len = strlen(ref->name) + 1; // extra for NULL terminator
memcpy((void*)buffer, (const void*)ref->name, len);
}
*size = sizeof (ref->device) + sizeof (ref->directory) + len;
return B_OK;
}
status_t
entry_ref_unflatten(entry_ref* ref, const char* buffer, size_t size)
{
if (size < (sizeof (ref->device) + sizeof (ref->directory))) {
*ref = entry_ref();
return B_BAD_VALUE;
}
memcpy((void*)&ref->device, (const void*)buffer, sizeof (ref->device));
buffer += sizeof (ref->device);
memcpy((void*)&ref->directory, (const void*)buffer,
sizeof (ref->directory));
buffer += sizeof (ref->directory);
if (ref->device != -1
&& size > (sizeof (ref->device) + sizeof (ref->directory))) {
ref->set_name(buffer);
if (ref->name == NULL) {
*ref = entry_ref();
return B_NO_MEMORY;
}
} else
ref->set_name(NULL);
return B_OK;
}
status_t
entry_ref_swap(char* buffer, size_t size)
{
if (size < (sizeof (dev_t) + sizeof (ino_t)))
return B_BAD_DATA;
dev_t* dev = (dev_t*)buffer;
*dev = B_SWAP_INT32(*dev);
buffer += sizeof (dev_t);
ino_t* ino = (ino_t*)buffer;
*ino = B_SWAP_INT64(*ino);
return B_OK;
}
size_t
calc_padding(size_t size, size_t boundary)
{
size_t pad = size % boundary;
if (pad)
pad = boundary - pad;
return pad;
}
} // namespace BPrivate
// #pragma mark -
int32
TChecksumHelper::CheckSum()
{
return _checksum_(fBuffer, fBufPtr - fBuffer);
}
#endif // USING_MESSAGE4