Files
Mozilla/mozilla/widget/src/xpwidgets/nsTransferable.cpp
sfraser%netscape.com e2a8691944 Remove an extraneous char* from mac widgets in non-debug builds. r=pinkerton
git-svn-id: svn://10.0.0.236/trunk@63613 18797224-902f-48f8-a5cc-f745e15eee43
2000-03-21 21:36:33 +00:00

579 lines
16 KiB
C++

/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*-
*
* The contents of this file are subject to the Netscape Public
* License Version 1.1 (the "License"); you may not use this file
* except in compliance with the License. You may obtain a copy of
* the License at http://www.mozilla.org/NPL/
*
* Software distributed under the License is distributed on an "AS
* IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
* implied. See the License for the specific language governing
* rights and limitations under the License.
*
* The Original Code is mozilla.org code.
*
* The Initial Developer of the Original Code is Netscape
* Communications Corporation. Portions created by Netscape are
* Copyright (C) 1998 Netscape Communications Corporation. All
* Rights Reserved.
*
* Contributor(s):
*/
/*
Notes to self:
- fix QI
- should DataStruct.mFlavor be a string or a nsISupportsString internally? Would save
on having to recreate it each time it is asked for externally. Would complicate things
if this the list is used internally a lot
*/
#include "nsTransferable.h"
#include "nsString.h"
#include "nsVoidArray.h"
#include "nsIFormatConverter.h"
#include "nsVoidArray.h"
#include "nsIComponentManager.h"
#include "nsCOMPtr.h"
#include "nsISupportsPrimitives.h"
#include "nsIAllocator.h"
#include "nsPrimitiveHelpers.h"
#include "nsIFileSpec.h"
#include "nsIOutputStream.h"
#include "nsIInputStream.h"
#include "nsSpecialSystemDirectory.h"
NS_IMPL_ADDREF(nsTransferable)
NS_IMPL_RELEASE(nsTransferable)
NS_IMPL_QUERY_INTERFACE1(nsTransferable, nsITransferable)
// million bytes
#define LARGE_DATASET_SIZE 1000000
//#define LARGE_DATASET_SIZE 10
struct DataStruct
{
DataStruct ( const char* aFlavor )
: mFlavor(aFlavor), mDataLen(0), mCacheFileName(nsnull) { }
~DataStruct();
void SetData( nsISupports* inData, PRUint32 inDataLen );
void GetData( nsISupports** outData, PRUint32 *outDataLen );
nsIFileSpec * GetFileSpec(const char * aFileName);
PRBool IsDataAvilable() { return (mData && mDataLen > 0) || (!mData && mCacheFileName); }
nsCAutoString mFlavor;
protected:
nsresult WriteCache(nsISupports* aData, PRUint32 aDataLen );
nsresult ReadCache(nsISupports** aData, PRUint32* aDataLen );
nsCOMPtr<nsISupports> mData; // OWNER - some varient of primitive wrapper
PRUint32 mDataLen;
char * mCacheFileName;
};
//-------------------------------------------------------------------------
DataStruct::~DataStruct()
{
delete [] mCacheFileName;
//nsIFileSpec * cacheFile = GetFileSpec(mCacheFileName);
//cacheFile->Remove();
}
//-------------------------------------------------------------------------
void
DataStruct::SetData ( nsISupports* aData, PRUint32 aDataLen )
{
// Now, check to see if we consider the data to be "too large"
if (aDataLen > LARGE_DATASET_SIZE) {
// if so, cache it to disk instead of memory
if ( NS_SUCCEEDED(WriteCache(aData, aDataLen)) ) {
printf("->>>>>>>>>>>>>> Wrote Clipboard to cache file\n");
return;
}
else
printf("->>>>>>>>>>>>>> Writing Clipboard to cache file FAILED\n");
} else {
printf("->>>>>>>>>>>>>> Write Clipboard to memory\n");
}
mData = aData;
mDataLen = aDataLen;
}
//-------------------------------------------------------------------------
void
DataStruct::GetData ( nsISupports** aData, PRUint32 *aDataLen )
{
// check here to see if the data is cached on disk
if ( !mData && mCacheFileName ) {
// if so, read it in and pass it back
// ReadCache creates memory and copies the data into it.
if ( NS_SUCCEEDED(ReadCache(aData, aDataLen)) ) {
printf("->>>>>>>>>>>>>> Read Clipboard from cache file\n");
return;
}
else {
// oh shit, something went horribly wrong here.
NS_WARNING("Oh no, couldn't read data in from the cache file");
*aData = nsnull;
*aDataLen = 0;
return;
}
} else {
printf("->>>>>>>>>>>>>> Read Clipboard from memory\n");
}
*aData = mData;
if ( mData )
NS_ADDREF(*aData);
*aDataLen = mDataLen;
}
//-------------------------------------------------------------------------
nsIFileSpec*
DataStruct::GetFileSpec(const char * aFileName)
{
nsIFileSpec* cacheFile = nsnull;
nsresult rv = nsComponentManager::CreateInstance( NS_FILESPEC_PROGID, nsnull, NS_GET_IID(nsIFileSpec),
NS_REINTERPRET_CAST(void**,&cacheFile));
NS_ASSERTION(NS_SUCCEEDED(rv), "ERROR: Could not make a Clipboard Cache file spec.");
// Get the system temp directory path
nsSpecialSystemDirectory *sysCacheFile =
new nsSpecialSystemDirectory(nsSpecialSystemDirectory::OS_TemporaryDirectory);
// if the param aFileName contains a name we should use that
// because the file probably already exists
// otherwise create a unique name
if (!aFileName) {
*sysCacheFile += "clipboardcache";
sysCacheFile->MakeUnique();
} else {
*sysCacheFile += aFileName;
}
// now set the entire path for the nsIFileSpec
cacheFile->SetFromFileSpec(*sysCacheFile);
// delete the temp for getting the system info
delete sysCacheFile;
// return the nsIFileSpec. The addref comes from CreateInstance()
return cacheFile;
}
//-------------------------------------------------------------------------
nsresult
DataStruct::WriteCache(nsISupports* aData, PRUint32 aDataLen)
{
// Get a new path and file to the temp directory
nsCOMPtr<nsIFileSpec> cacheFile ( getter_AddRefs(GetFileSpec(mCacheFileName)) );
if (cacheFile) {
// remember the file name
if (!mCacheFileName)
cacheFile->GetLeafName(&mCacheFileName);
// write out the contents of the clipboard
// to the file
//PRUint32 bytes;
nsCOMPtr<nsIOutputStream> outStr;
cacheFile->GetOutputStream( getter_AddRefs(outStr) );
void* buff = nsnull;
nsPrimitiveHelpers::CreateDataFromPrimitive ( mFlavor.GetBuffer(), aData, &buff, aDataLen );
if ( buff ) {
PRUint32 ignored;
outStr->Write(NS_REINTERPRET_CAST(char*, buff), aDataLen, &ignored);
nsAllocator::Free(buff);
return NS_OK;
}
}
return NS_ERROR_FAILURE;
}
//-------------------------------------------------------------------------
nsresult
DataStruct::ReadCache(nsISupports** aData, PRUint32* aDataLen)
{
// if we don't have a cache filename we are out of luck
if (!mCacheFileName)
return NS_ERROR_FAILURE;
// get the path and file name
nsCOMPtr<nsIFileSpec> cacheFile ( getter_AddRefs(GetFileSpec(mCacheFileName)) );
if ( cacheFile && Exists(cacheFile)) {
// get the size of the file
PRUint32 fileSize;
cacheFile->GetFileSize(&fileSize);
// create new memory for the large clipboard data
char * data = (char *)nsAllocator::Alloc(fileSize);
if ( !data )
return NS_ERROR_OUT_OF_MEMORY;
// now read it all in
nsCOMPtr<nsIInputStream> inStr;
cacheFile->GetInputStream( getter_AddRefs(inStr) );
nsresult rv = inStr->Read(data, fileSize, aDataLen);
// make sure we got all the data ok
if ( NS_SUCCEEDED(rv) && *aDataLen == (PRUint32)fileSize) {
*aDataLen = fileSize;
nsPrimitiveHelpers::CreatePrimitiveForData ( mFlavor.GetBuffer(), data, fileSize, aData );
return *aData ? NS_OK : NS_ERROR_FAILURE;
}
// delete the buffer because we got an error
// and zero the return params
nsAllocator::Free(data);
*aData = nsnull;
*aDataLen = 0;
}
return NS_ERROR_FAILURE;
}
#ifdef XP_MAC
#pragma mark -
#endif
//-------------------------------------------------------------------------
//
// Transferable constructor
//
//-------------------------------------------------------------------------
nsTransferable::nsTransferable()
{
NS_INIT_REFCNT();
mDataArray = new nsVoidArray();
}
//-------------------------------------------------------------------------
//
// Transferable destructor
//
//-------------------------------------------------------------------------
nsTransferable::~nsTransferable()
{
PRInt32 i;
for (i=0;i<mDataArray->Count();i++) {
DataStruct * data = (DataStruct *)mDataArray->ElementAt(i);
delete data;
}
delete mDataArray;
}
//
// GetTransferDataFlavors
//
// Returns a copy of the internal list of flavors. This does NOT take into
// account any converter that may be registered. This list consists of
// nsISupportsString objects so that the flavor list can be accessed from JS.
//
NS_IMETHODIMP
nsTransferable :: GetTransferDataFlavors(nsISupportsArray ** aDataFlavorList)
{
if (!aDataFlavorList)
return NS_ERROR_INVALID_ARG;
nsresult rv = NS_OK;
NS_NewISupportsArray ( aDataFlavorList );
if ( *aDataFlavorList ) {
for ( PRInt32 i=0; i<mDataArray->Count(); ++i ) {
DataStruct * data = (DataStruct *)mDataArray->ElementAt(i);
nsCOMPtr<nsISupportsString> flavorWrapper;
rv = nsComponentManager::CreateInstance(NS_SUPPORTS_STRING_PROGID, nsnull,
NS_GET_IID(nsISupportsString), getter_AddRefs(flavorWrapper));
if ( flavorWrapper ) {
flavorWrapper->SetData ( NS_CONST_CAST(char*, data->mFlavor.GetBuffer()) );
nsCOMPtr<nsISupports> genericWrapper ( do_QueryInterface(flavorWrapper) );
(*aDataFlavorList)->AppendElement( genericWrapper );
}
}
}
else
rv = NS_ERROR_OUT_OF_MEMORY;
return rv;
}
//
// GetTransferData
//
// Returns the data of the requested flavor, obtained from either having the data on hand or
// using a converter to get it. The data is wrapped in a nsISupports primitive so that it is
// accessable from JS.
//
NS_IMETHODIMP
nsTransferable :: GetTransferData(const char *aFlavor, nsISupports **aData, PRUint32 *aDataLen)
{
if ( !aFlavor || !aData ||!aDataLen )
return NS_ERROR_INVALID_ARG;
PRBool found = PR_FALSE;
// first look and see if the data is present in one of the intrinsic flavors
PRInt32 i;
for ( i=0; i<mDataArray->Count(); ++i ) {
DataStruct * data = (DataStruct *)mDataArray->ElementAt(i);
if ( data->mFlavor.Equals(aFlavor) ) {
data->GetData(aData, aDataLen);
if (*aData && *aDataLen > 0)
found = PR_TRUE;
}
}
// if not, try using a format converter to get the requested flavor
if ( !found && mFormatConv ) {
for (i=0;i<mDataArray->Count();i++) {
DataStruct * data = (DataStruct *)mDataArray->ElementAt(i);
PRBool canConvert = PR_FALSE;
mFormatConv->CanConvert(data->mFlavor.GetBuffer(), aFlavor, &canConvert);
if ( canConvert ) {
nsCOMPtr<nsISupports> dataBytes;
PRUint32 len;
data->GetData(getter_AddRefs(dataBytes), &len);
mFormatConv->Convert(data->mFlavor.GetBuffer(), dataBytes, len, aFlavor, aData, aDataLen);
found = PR_TRUE;
}
}
}
return found ? NS_OK : NS_ERROR_FAILURE;
}
//
// GetAnyTransferData
//
// Returns the data of the first flavor found. Caller is responsible for deleting the
// flavor string.
//
NS_IMETHODIMP
nsTransferable::GetAnyTransferData(char **aFlavor, nsISupports **aData, PRUint32 *aDataLen)
{
if ( !aFlavor || !aData || !aDataLen )
return NS_ERROR_FAILURE;
for ( PRInt32 i=0; i < mDataArray->Count(); ++i ) {
DataStruct * data = (DataStruct *)mDataArray->ElementAt(i);
if (data->IsDataAvilable()) {
*aFlavor = data->mFlavor.ToNewCString();
data->GetData(aData, aDataLen);
return NS_OK;
}
}
return NS_ERROR_FAILURE;
}
//
// SetTransferData
//
//
//
NS_IMETHODIMP
nsTransferable::SetTransferData(const char *aFlavor, nsISupports *aData, PRUint32 aDataLen)
{
if ( !aFlavor )
return NS_ERROR_FAILURE;
for ( PRInt32 i=0; i<mDataArray->Count(); ++i ) {
DataStruct * data = (DataStruct *)mDataArray->ElementAt(i);
if ( data->mFlavor.Equals(aFlavor) ) {
data->SetData ( aData, aDataLen );
return NS_OK;
}
}
return NS_OK;
}
//
// AddDataFlavor
//
// Adds a data flavor to our list with no data. Error if it already exists.
//
NS_IMETHODIMP
nsTransferable :: AddDataFlavor(const char *aDataFlavor)
{
// Do we have the data flavor already?
PRInt32 i;
for (i=0;i<mDataArray->Count();i++) {
DataStruct * data = (DataStruct *)mDataArray->ElementAt(i);
if ( data->mFlavor.Equals(aDataFlavor) )
return NS_ERROR_FAILURE;
}
// Create a new "slot" for the data
DataStruct * data = new DataStruct ( aDataFlavor ) ;
mDataArray->AppendElement((void *)data);
return NS_OK;
}
//
// RemoveDataFlavor
//
// Removes a data flavor (and causes the data to be destroyed). Error if
// the requested flavor is not present.
//
NS_IMETHODIMP
nsTransferable::RemoveDataFlavor(const char *aDataFlavor)
{
// Do we have the data flavor already?
for ( PRInt32 i=0; i<mDataArray->Count(); ++i ) {
DataStruct * data = (DataStruct *)mDataArray->ElementAt(i);
if ( data->mFlavor.Equals(aDataFlavor) ) {
mDataArray->RemoveElementAt(i);
delete data;
return NS_OK;
}
}
return NS_ERROR_FAILURE;
}
/**
*
*
*/
NS_IMETHODIMP
nsTransferable::IsLargeDataSet(PRBool *_retval)
{
if ( !_retval )
return NS_ERROR_FAILURE;
*_retval = PR_FALSE;
return NS_OK;
}
/**
*
*
*/
NS_IMETHODIMP nsTransferable::SetConverter(nsIFormatConverter * aConverter)
{
mFormatConv = dont_QueryInterface(aConverter);
return NS_OK;
}
/**
*
*
*/
NS_IMETHODIMP nsTransferable::GetConverter(nsIFormatConverter * *aConverter)
{
if ( !aConverter )
return NS_ERROR_FAILURE;
if ( mFormatConv ) {
*aConverter = mFormatConv;
NS_ADDREF(*aConverter);
} else
*aConverter = nsnull;
return NS_OK;
}
//
// FlavorsTransferableCanImport
//
// Computes a list of flavors that the transferable can accept into it, either through
// intrinsic knowledge or input data converters.
//
NS_IMETHODIMP
nsTransferable :: FlavorsTransferableCanImport(nsISupportsArray **_retval)
{
if ( !_retval )
return NS_ERROR_INVALID_ARG;
// Get the flavor list, and on to the end of it, append the list of flavors we
// can also get to through a converter. This is so that we can just walk the list
// in one go, looking for the desired flavor.
GetTransferDataFlavors(_retval); // addrefs
nsCOMPtr<nsIFormatConverter> converter;
GetConverter(getter_AddRefs(converter));
if ( converter ) {
nsCOMPtr<nsISupportsArray> convertedList;
converter->GetInputDataFlavors(getter_AddRefs(convertedList));
if ( convertedList ) {
PRUint32 importListLen;
convertedList->Count(&importListLen);
for ( PRUint32 i=0; i < importListLen; ++i ) {
nsCOMPtr<nsISupports> genericFlavor;
convertedList->GetElementAt ( i, getter_AddRefs(genericFlavor) );
(*_retval)->AppendElement(genericFlavor);
} // foreach flavor that can be converted to
}
} // if a converter exists
return NS_OK;
} // FlavorsTransferableCanImport
//
// FlavorsTransferableCanExport
//
// Computes a list of flavors that the transferable can export, either through
// intrinsic knowledge or output data converters.
//
NS_IMETHODIMP
nsTransferable :: FlavorsTransferableCanExport(nsISupportsArray **_retval)
{
if ( !_retval )
return NS_ERROR_INVALID_ARG;
// Get the flavor list, and on to the end of it, append the list of flavors we
// can also get to through a converter. This is so that we can just walk the list
// in one go, looking for the desired flavor.
GetTransferDataFlavors(_retval); // addrefs
nsCOMPtr<nsIFormatConverter> converter;
GetConverter(getter_AddRefs(converter));
if ( converter ) {
nsCOMPtr<nsISupportsArray> convertedList;
converter->GetOutputDataFlavors(getter_AddRefs(convertedList));
PRUint32 importListLen;
if ( convertedList ) {
convertedList->Count(&importListLen);
for ( PRUint32 i=0; i < importListLen; ++i ) {
nsCOMPtr<nsISupports> genericFlavor;
convertedList->GetElementAt ( i, getter_AddRefs(genericFlavor) );
(*_retval)->AppendElement(genericFlavor);
} // foreach flavor that can be converted to
}
} // if a converter exists
return NS_OK;
} // FlavorsTransferableCanImport