/******************************************************************************* @File @Title Server bridge for sync @Copyright Copyright (c) Imagination Technologies Ltd. All Rights Reserved @Description Implements the server side of the bridge for sync @License Dual MIT/GPLv2 The contents of this file are subject to the MIT license as set out below. Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions: The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software. Alternatively, the contents of this file may be used under the terms of the GNU General Public License Version 2 ("GPL") in which case the provisions of GPL are applicable instead of those above. If you wish to allow use of your version of this file only under the terms of GPL, and not to allow others to use your version of this file under the terms of the MIT license, indicate your decision by deleting the provisions above and replace them with the notice and other provisions required by GPL as set out in the file called "GPL-COPYING" included in this distribution. If you do not delete the provisions above, a recipient may use your version of this file under the terms of either the MIT license or GPL. This License is also included in this distribution in the file called "MIT-COPYING". EXCEPT AS OTHERWISE STATED IN A NEGOTIATED AGREEMENT: (A) THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT; AND (B) IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. *******************************************************************************/ #include #include "img_defs.h" #include "sync.h" #include "sync_server.h" #include "pdump.h" #include "pvrsrv_sync_km.h" #include "sync_fallback_server.h" #include "sync_checkpoint.h" #include "common_sync_bridge.h" #include "allocmem.h" #include "pvr_debug.h" #include "connection_server.h" #include "pvr_bridge.h" #if defined(SUPPORT_RGX) #include "rgx_bridge.h" #endif #include "srvcore.h" #include "handle.h" #include /* *************************************************************************** * Server-side bridge entry points */ static PVRSRV_ERROR _AllocSyncPrimitiveBlockpsSyncHandleIntRelease(void *pvData) { PVRSRV_ERROR eError; eError = PVRSRVFreeSyncPrimitiveBlockKM((SYNC_PRIMITIVE_BLOCK *) pvData); return eError; } static IMG_INT PVRSRVBridgeAllocSyncPrimitiveBlock(IMG_UINT32 ui32DispatchTableEntry, IMG_UINT8 * psAllocSyncPrimitiveBlockIN_UI8, IMG_UINT8 * psAllocSyncPrimitiveBlockOUT_UI8, CONNECTION_DATA * psConnection) { PVRSRV_BRIDGE_IN_ALLOCSYNCPRIMITIVEBLOCK *psAllocSyncPrimitiveBlockIN = (PVRSRV_BRIDGE_IN_ALLOCSYNCPRIMITIVEBLOCK *) IMG_OFFSET_ADDR(psAllocSyncPrimitiveBlockIN_UI8, 0); PVRSRV_BRIDGE_OUT_ALLOCSYNCPRIMITIVEBLOCK *psAllocSyncPrimitiveBlockOUT = (PVRSRV_BRIDGE_OUT_ALLOCSYNCPRIMITIVEBLOCK *) IMG_OFFSET_ADDR(psAllocSyncPrimitiveBlockOUT_UI8, 0); SYNC_PRIMITIVE_BLOCK *psSyncHandleInt = NULL; PMR *pshSyncPMRInt = NULL; PVR_UNREFERENCED_PARAMETER(psAllocSyncPrimitiveBlockIN); psAllocSyncPrimitiveBlockOUT->hSyncHandle = NULL; psAllocSyncPrimitiveBlockOUT->eError = PVRSRVAllocSyncPrimitiveBlockKM(psConnection, OSGetDevNode(psConnection), &psSyncHandleInt, &psAllocSyncPrimitiveBlockOUT->ui32SyncPrimVAddr, &psAllocSyncPrimitiveBlockOUT->ui32SyncPrimBlockSize, &pshSyncPMRInt); /* Exit early if bridged call fails */ if (unlikely(psAllocSyncPrimitiveBlockOUT->eError != PVRSRV_OK)) { goto AllocSyncPrimitiveBlock_exit; } /* Lock over handle creation. */ LockHandle(psConnection->psHandleBase); psAllocSyncPrimitiveBlockOUT->eError = PVRSRVAllocHandleUnlocked(psConnection->psHandleBase, &psAllocSyncPrimitiveBlockOUT-> hSyncHandle, (void *)psSyncHandleInt, PVRSRV_HANDLE_TYPE_SYNC_PRIMITIVE_BLOCK, PVRSRV_HANDLE_ALLOC_FLAG_MULTI, (PFN_HANDLE_RELEASE) & _AllocSyncPrimitiveBlockpsSyncHandleIntRelease); if (unlikely(psAllocSyncPrimitiveBlockOUT->eError != PVRSRV_OK)) { UnlockHandle(psConnection->psHandleBase); goto AllocSyncPrimitiveBlock_exit; } psAllocSyncPrimitiveBlockOUT->eError = PVRSRVAllocSubHandleUnlocked(psConnection->psHandleBase, &psAllocSyncPrimitiveBlockOUT->hhSyncPMR, (void *)pshSyncPMRInt, PVRSRV_HANDLE_TYPE_PMR_LOCAL_EXPORT_HANDLE, PVRSRV_HANDLE_ALLOC_FLAG_NONE, psAllocSyncPrimitiveBlockOUT->hSyncHandle); if (unlikely(psAllocSyncPrimitiveBlockOUT->eError != PVRSRV_OK)) { UnlockHandle(psConnection->psHandleBase); goto AllocSyncPrimitiveBlock_exit; } /* Release now we have created handles. */ UnlockHandle(psConnection->psHandleBase); AllocSyncPrimitiveBlock_exit: if (psAllocSyncPrimitiveBlockOUT->eError != PVRSRV_OK) { if (psAllocSyncPrimitiveBlockOUT->hSyncHandle) { PVRSRV_ERROR eError; /* Lock over handle creation cleanup. */ LockHandle(psConnection->psHandleBase); eError = PVRSRVDestroyHandleUnlocked(psConnection->psHandleBase, (IMG_HANDLE) psAllocSyncPrimitiveBlockOUT-> hSyncHandle, PVRSRV_HANDLE_TYPE_SYNC_PRIMITIVE_BLOCK); if (unlikely((eError != PVRSRV_OK) && (eError != PVRSRV_ERROR_RETRY))) { PVR_DPF((PVR_DBG_ERROR, "%s: %s", __func__, PVRSRVGetErrorString(eError))); } /* Releasing the handle should free/destroy/release the resource. * This should never fail... */ PVR_ASSERT((eError == PVRSRV_OK) || (eError == PVRSRV_ERROR_RETRY)); /* Avoid freeing/destroying/releasing the resource a second time below */ psSyncHandleInt = NULL; /* Release now we have cleaned up creation handles. */ UnlockHandle(psConnection->psHandleBase); } if (psSyncHandleInt) { PVRSRVFreeSyncPrimitiveBlockKM(psSyncHandleInt); } } return 0; } static IMG_INT PVRSRVBridgeFreeSyncPrimitiveBlock(IMG_UINT32 ui32DispatchTableEntry, IMG_UINT8 * psFreeSyncPrimitiveBlockIN_UI8, IMG_UINT8 * psFreeSyncPrimitiveBlockOUT_UI8, CONNECTION_DATA * psConnection) { PVRSRV_BRIDGE_IN_FREESYNCPRIMITIVEBLOCK *psFreeSyncPrimitiveBlockIN = (PVRSRV_BRIDGE_IN_FREESYNCPRIMITIVEBLOCK *) IMG_OFFSET_ADDR(psFreeSyncPrimitiveBlockIN_UI8, 0); PVRSRV_BRIDGE_OUT_FREESYNCPRIMITIVEBLOCK *psFreeSyncPrimitiveBlockOUT = (PVRSRV_BRIDGE_OUT_FREESYNCPRIMITIVEBLOCK *) IMG_OFFSET_ADDR(psFreeSyncPrimitiveBlockOUT_UI8, 0); /* Lock over handle destruction. */ LockHandle(psConnection->psHandleBase); psFreeSyncPrimitiveBlockOUT->eError = PVRSRVDestroyHandleStagedUnlocked(psConnection->psHandleBase, (IMG_HANDLE) psFreeSyncPrimitiveBlockIN->hSyncHandle, PVRSRV_HANDLE_TYPE_SYNC_PRIMITIVE_BLOCK); if (unlikely((psFreeSyncPrimitiveBlockOUT->eError != PVRSRV_OK) && (psFreeSyncPrimitiveBlockOUT->eError != PVRSRV_ERROR_KERNEL_CCB_FULL) && (psFreeSyncPrimitiveBlockOUT->eError != PVRSRV_ERROR_RETRY))) { PVR_DPF((PVR_DBG_ERROR, "%s: %s", __func__, PVRSRVGetErrorString(psFreeSyncPrimitiveBlockOUT->eError))); UnlockHandle(psConnection->psHandleBase); goto FreeSyncPrimitiveBlock_exit; } /* Release now we have destroyed handles. */ UnlockHandle(psConnection->psHandleBase); FreeSyncPrimitiveBlock_exit: return 0; } static IMG_INT PVRSRVBridgeSyncPrimSet(IMG_UINT32 ui32DispatchTableEntry, IMG_UINT8 * psSyncPrimSetIN_UI8, IMG_UINT8 * psSyncPrimSetOUT_UI8, CONNECTION_DATA * psConnection) { PVRSRV_BRIDGE_IN_SYNCPRIMSET *psSyncPrimSetIN = (PVRSRV_BRIDGE_IN_SYNCPRIMSET *) IMG_OFFSET_ADDR(psSyncPrimSetIN_UI8, 0); PVRSRV_BRIDGE_OUT_SYNCPRIMSET *psSyncPrimSetOUT = (PVRSRV_BRIDGE_OUT_SYNCPRIMSET *) IMG_OFFSET_ADDR(psSyncPrimSetOUT_UI8, 0); IMG_HANDLE hSyncHandle = psSyncPrimSetIN->hSyncHandle; SYNC_PRIMITIVE_BLOCK *psSyncHandleInt = NULL; /* Lock over handle lookup. */ LockHandle(psConnection->psHandleBase); /* Look up the address from the handle */ psSyncPrimSetOUT->eError = PVRSRVLookupHandleUnlocked(psConnection->psHandleBase, (void **)&psSyncHandleInt, hSyncHandle, PVRSRV_HANDLE_TYPE_SYNC_PRIMITIVE_BLOCK, IMG_TRUE); if (unlikely(psSyncPrimSetOUT->eError != PVRSRV_OK)) { UnlockHandle(psConnection->psHandleBase); goto SyncPrimSet_exit; } /* Release now we have looked up handles. */ UnlockHandle(psConnection->psHandleBase); psSyncPrimSetOUT->eError = PVRSRVSyncPrimSetKM(psSyncHandleInt, psSyncPrimSetIN->ui32Index, psSyncPrimSetIN->ui32Value); SyncPrimSet_exit: /* Lock over handle lookup cleanup. */ LockHandle(psConnection->psHandleBase); /* Unreference the previously looked up handle */ if (psSyncHandleInt) { PVRSRVReleaseHandleUnlocked(psConnection->psHandleBase, hSyncHandle, PVRSRV_HANDLE_TYPE_SYNC_PRIMITIVE_BLOCK); } /* Release now we have cleaned up look up handles. */ UnlockHandle(psConnection->psHandleBase); return 0; } #if defined(PDUMP) static IMG_INT PVRSRVBridgeSyncPrimPDump(IMG_UINT32 ui32DispatchTableEntry, IMG_UINT8 * psSyncPrimPDumpIN_UI8, IMG_UINT8 * psSyncPrimPDumpOUT_UI8, CONNECTION_DATA * psConnection) { PVRSRV_BRIDGE_IN_SYNCPRIMPDUMP *psSyncPrimPDumpIN = (PVRSRV_BRIDGE_IN_SYNCPRIMPDUMP *) IMG_OFFSET_ADDR(psSyncPrimPDumpIN_UI8, 0); PVRSRV_BRIDGE_OUT_SYNCPRIMPDUMP *psSyncPrimPDumpOUT = (PVRSRV_BRIDGE_OUT_SYNCPRIMPDUMP *) IMG_OFFSET_ADDR(psSyncPrimPDumpOUT_UI8, 0); IMG_HANDLE hSyncHandle = psSyncPrimPDumpIN->hSyncHandle; SYNC_PRIMITIVE_BLOCK *psSyncHandleInt = NULL; /* Lock over handle lookup. */ LockHandle(psConnection->psHandleBase); /* Look up the address from the handle */ psSyncPrimPDumpOUT->eError = PVRSRVLookupHandleUnlocked(psConnection->psHandleBase, (void **)&psSyncHandleInt, hSyncHandle, PVRSRV_HANDLE_TYPE_SYNC_PRIMITIVE_BLOCK, IMG_TRUE); if (unlikely(psSyncPrimPDumpOUT->eError != PVRSRV_OK)) { UnlockHandle(psConnection->psHandleBase); goto SyncPrimPDump_exit; } /* Release now we have looked up handles. */ UnlockHandle(psConnection->psHandleBase); psSyncPrimPDumpOUT->eError = PVRSRVSyncPrimPDumpKM(psSyncHandleInt, psSyncPrimPDumpIN->ui32Offset); SyncPrimPDump_exit: /* Lock over handle lookup cleanup. */ LockHandle(psConnection->psHandleBase); /* Unreference the previously looked up handle */ if (psSyncHandleInt) { PVRSRVReleaseHandleUnlocked(psConnection->psHandleBase, hSyncHandle, PVRSRV_HANDLE_TYPE_SYNC_PRIMITIVE_BLOCK); } /* Release now we have cleaned up look up handles. */ UnlockHandle(psConnection->psHandleBase); return 0; } #else #define PVRSRVBridgeSyncPrimPDump NULL #endif #if defined(PDUMP) static IMG_INT PVRSRVBridgeSyncPrimPDumpValue(IMG_UINT32 ui32DispatchTableEntry, IMG_UINT8 * psSyncPrimPDumpValueIN_UI8, IMG_UINT8 * psSyncPrimPDumpValueOUT_UI8, CONNECTION_DATA * psConnection) { PVRSRV_BRIDGE_IN_SYNCPRIMPDUMPVALUE *psSyncPrimPDumpValueIN = (PVRSRV_BRIDGE_IN_SYNCPRIMPDUMPVALUE *) IMG_OFFSET_ADDR(psSyncPrimPDumpValueIN_UI8, 0); PVRSRV_BRIDGE_OUT_SYNCPRIMPDUMPVALUE *psSyncPrimPDumpValueOUT = (PVRSRV_BRIDGE_OUT_SYNCPRIMPDUMPVALUE *) IMG_OFFSET_ADDR(psSyncPrimPDumpValueOUT_UI8, 0); IMG_HANDLE hSyncHandle = psSyncPrimPDumpValueIN->hSyncHandle; SYNC_PRIMITIVE_BLOCK *psSyncHandleInt = NULL; /* Lock over handle lookup. */ LockHandle(psConnection->psHandleBase); /* Look up the address from the handle */ psSyncPrimPDumpValueOUT->eError = PVRSRVLookupHandleUnlocked(psConnection->psHandleBase, (void **)&psSyncHandleInt, hSyncHandle, PVRSRV_HANDLE_TYPE_SYNC_PRIMITIVE_BLOCK, IMG_TRUE); if (unlikely(psSyncPrimPDumpValueOUT->eError != PVRSRV_OK)) { UnlockHandle(psConnection->psHandleBase); goto SyncPrimPDumpValue_exit; } /* Release now we have looked up handles. */ UnlockHandle(psConnection->psHandleBase); psSyncPrimPDumpValueOUT->eError = PVRSRVSyncPrimPDumpValueKM(psSyncHandleInt, psSyncPrimPDumpValueIN->ui32Offset, psSyncPrimPDumpValueIN->ui32Value); SyncPrimPDumpValue_exit: /* Lock over handle lookup cleanup. */ LockHandle(psConnection->psHandleBase); /* Unreference the previously looked up handle */ if (psSyncHandleInt) { PVRSRVReleaseHandleUnlocked(psConnection->psHandleBase, hSyncHandle, PVRSRV_HANDLE_TYPE_SYNC_PRIMITIVE_BLOCK); } /* Release now we have cleaned up look up handles. */ UnlockHandle(psConnection->psHandleBase); return 0; } #else #define PVRSRVBridgeSyncPrimPDumpValue NULL #endif #if defined(PDUMP) static IMG_INT PVRSRVBridgeSyncPrimPDumpPol(IMG_UINT32 ui32DispatchTableEntry, IMG_UINT8 * psSyncPrimPDumpPolIN_UI8, IMG_UINT8 * psSyncPrimPDumpPolOUT_UI8, CONNECTION_DATA * psConnection) { PVRSRV_BRIDGE_IN_SYNCPRIMPDUMPPOL *psSyncPrimPDumpPolIN = (PVRSRV_BRIDGE_IN_SYNCPRIMPDUMPPOL *) IMG_OFFSET_ADDR(psSyncPrimPDumpPolIN_UI8, 0); PVRSRV_BRIDGE_OUT_SYNCPRIMPDUMPPOL *psSyncPrimPDumpPolOUT = (PVRSRV_BRIDGE_OUT_SYNCPRIMPDUMPPOL *) IMG_OFFSET_ADDR(psSyncPrimPDumpPolOUT_UI8, 0); IMG_HANDLE hSyncHandle = psSyncPrimPDumpPolIN->hSyncHandle; SYNC_PRIMITIVE_BLOCK *psSyncHandleInt = NULL; /* Lock over handle lookup. */ LockHandle(psConnection->psHandleBase); /* Look up the address from the handle */ psSyncPrimPDumpPolOUT->eError = PVRSRVLookupHandleUnlocked(psConnection->psHandleBase, (void **)&psSyncHandleInt, hSyncHandle, PVRSRV_HANDLE_TYPE_SYNC_PRIMITIVE_BLOCK, IMG_TRUE); if (unlikely(psSyncPrimPDumpPolOUT->eError != PVRSRV_OK)) { UnlockHandle(psConnection->psHandleBase); goto SyncPrimPDumpPol_exit; } /* Release now we have looked up handles. */ UnlockHandle(psConnection->psHandleBase); psSyncPrimPDumpPolOUT->eError = PVRSRVSyncPrimPDumpPolKM(psSyncHandleInt, psSyncPrimPDumpPolIN->ui32Offset, psSyncPrimPDumpPolIN->ui32Value, psSyncPrimPDumpPolIN->ui32Mask, psSyncPrimPDumpPolIN->eOperator, psSyncPrimPDumpPolIN->uiPDumpFlags); SyncPrimPDumpPol_exit: /* Lock over handle lookup cleanup. */ LockHandle(psConnection->psHandleBase); /* Unreference the previously looked up handle */ if (psSyncHandleInt) { PVRSRVReleaseHandleUnlocked(psConnection->psHandleBase, hSyncHandle, PVRSRV_HANDLE_TYPE_SYNC_PRIMITIVE_BLOCK); } /* Release now we have cleaned up look up handles. */ UnlockHandle(psConnection->psHandleBase); return 0; } #else #define PVRSRVBridgeSyncPrimPDumpPol NULL #endif #if defined(PDUMP) static IMG_INT PVRSRVBridgeSyncPrimPDumpCBP(IMG_UINT32 ui32DispatchTableEntry, IMG_UINT8 * psSyncPrimPDumpCBPIN_UI8, IMG_UINT8 * psSyncPrimPDumpCBPOUT_UI8, CONNECTION_DATA * psConnection) { PVRSRV_BRIDGE_IN_SYNCPRIMPDUMPCBP *psSyncPrimPDumpCBPIN = (PVRSRV_BRIDGE_IN_SYNCPRIMPDUMPCBP *) IMG_OFFSET_ADDR(psSyncPrimPDumpCBPIN_UI8, 0); PVRSRV_BRIDGE_OUT_SYNCPRIMPDUMPCBP *psSyncPrimPDumpCBPOUT = (PVRSRV_BRIDGE_OUT_SYNCPRIMPDUMPCBP *) IMG_OFFSET_ADDR(psSyncPrimPDumpCBPOUT_UI8, 0); IMG_HANDLE hSyncHandle = psSyncPrimPDumpCBPIN->hSyncHandle; SYNC_PRIMITIVE_BLOCK *psSyncHandleInt = NULL; /* Lock over handle lookup. */ LockHandle(psConnection->psHandleBase); /* Look up the address from the handle */ psSyncPrimPDumpCBPOUT->eError = PVRSRVLookupHandleUnlocked(psConnection->psHandleBase, (void **)&psSyncHandleInt, hSyncHandle, PVRSRV_HANDLE_TYPE_SYNC_PRIMITIVE_BLOCK, IMG_TRUE); if (unlikely(psSyncPrimPDumpCBPOUT->eError != PVRSRV_OK)) { UnlockHandle(psConnection->psHandleBase); goto SyncPrimPDumpCBP_exit; } /* Release now we have looked up handles. */ UnlockHandle(psConnection->psHandleBase); psSyncPrimPDumpCBPOUT->eError = PVRSRVSyncPrimPDumpCBPKM(psSyncHandleInt, psSyncPrimPDumpCBPIN->ui32Offset, psSyncPrimPDumpCBPIN->uiWriteOffset, psSyncPrimPDumpCBPIN->uiPacketSize, psSyncPrimPDumpCBPIN->uiBufferSize); SyncPrimPDumpCBP_exit: /* Lock over handle lookup cleanup. */ LockHandle(psConnection->psHandleBase); /* Unreference the previously looked up handle */ if (psSyncHandleInt) { PVRSRVReleaseHandleUnlocked(psConnection->psHandleBase, hSyncHandle, PVRSRV_HANDLE_TYPE_SYNC_PRIMITIVE_BLOCK); } /* Release now we have cleaned up look up handles. */ UnlockHandle(psConnection->psHandleBase); return 0; } #else #define PVRSRVBridgeSyncPrimPDumpCBP NULL #endif static_assert(PVRSRV_SYNC_NAME_LENGTH <= IMG_UINT32_MAX, "PVRSRV_SYNC_NAME_LENGTH must not be larger than IMG_UINT32_MAX"); static IMG_INT PVRSRVBridgeSyncAllocEvent(IMG_UINT32 ui32DispatchTableEntry, IMG_UINT8 * psSyncAllocEventIN_UI8, IMG_UINT8 * psSyncAllocEventOUT_UI8, CONNECTION_DATA * psConnection) { PVRSRV_BRIDGE_IN_SYNCALLOCEVENT *psSyncAllocEventIN = (PVRSRV_BRIDGE_IN_SYNCALLOCEVENT *) IMG_OFFSET_ADDR(psSyncAllocEventIN_UI8, 0); PVRSRV_BRIDGE_OUT_SYNCALLOCEVENT *psSyncAllocEventOUT = (PVRSRV_BRIDGE_OUT_SYNCALLOCEVENT *) IMG_OFFSET_ADDR(psSyncAllocEventOUT_UI8, 0); IMG_CHAR *uiClassNameInt = NULL; IMG_UINT32 ui32NextOffset = 0; IMG_BYTE *pArrayArgsBuffer = NULL; #if !defined(INTEGRITY_OS) IMG_BOOL bHaveEnoughSpace = IMG_FALSE; #endif IMG_UINT32 ui32BufferSize = 0; IMG_UINT64 ui64BufferSize = ((IMG_UINT64) psSyncAllocEventIN->ui32ClassNameSize * sizeof(IMG_CHAR)) + 0; if (unlikely(psSyncAllocEventIN->ui32ClassNameSize > PVRSRV_SYNC_NAME_LENGTH)) { psSyncAllocEventOUT->eError = PVRSRV_ERROR_BRIDGE_ARRAY_SIZE_TOO_BIG; goto SyncAllocEvent_exit; } if (ui64BufferSize > IMG_UINT32_MAX) { psSyncAllocEventOUT->eError = PVRSRV_ERROR_BRIDGE_BUFFER_TOO_SMALL; goto SyncAllocEvent_exit; } ui32BufferSize = (IMG_UINT32) ui64BufferSize; if (ui32BufferSize != 0) { #if !defined(INTEGRITY_OS) /* Try to use remainder of input buffer for copies if possible, word-aligned for safety. */ IMG_UINT32 ui32InBufferOffset = PVR_ALIGN(sizeof(*psSyncAllocEventIN), sizeof(unsigned long)); IMG_UINT32 ui32InBufferExcessSize = ui32InBufferOffset >= PVRSRV_MAX_BRIDGE_IN_SIZE ? 0 : PVRSRV_MAX_BRIDGE_IN_SIZE - ui32InBufferOffset; bHaveEnoughSpace = ui32BufferSize <= ui32InBufferExcessSize; if (bHaveEnoughSpace) { IMG_BYTE *pInputBuffer = (IMG_BYTE *) (void *)psSyncAllocEventIN; pArrayArgsBuffer = &pInputBuffer[ui32InBufferOffset]; } else #endif { pArrayArgsBuffer = OSAllocMemNoStats(ui32BufferSize); if (!pArrayArgsBuffer) { psSyncAllocEventOUT->eError = PVRSRV_ERROR_OUT_OF_MEMORY; goto SyncAllocEvent_exit; } } } if (psSyncAllocEventIN->ui32ClassNameSize != 0) { uiClassNameInt = (IMG_CHAR *) IMG_OFFSET_ADDR(pArrayArgsBuffer, ui32NextOffset); ui32NextOffset += psSyncAllocEventIN->ui32ClassNameSize * sizeof(IMG_CHAR); } /* Copy the data over */ if (psSyncAllocEventIN->ui32ClassNameSize * sizeof(IMG_CHAR) > 0) { if (OSCopyFromUser (NULL, uiClassNameInt, (const void __user *)psSyncAllocEventIN->puiClassName, psSyncAllocEventIN->ui32ClassNameSize * sizeof(IMG_CHAR)) != PVRSRV_OK) { psSyncAllocEventOUT->eError = PVRSRV_ERROR_INVALID_PARAMS; goto SyncAllocEvent_exit; } ((IMG_CHAR *) uiClassNameInt)[(psSyncAllocEventIN->ui32ClassNameSize * sizeof(IMG_CHAR)) - 1] = '\0'; } psSyncAllocEventOUT->eError = PVRSRVSyncAllocEventKM(psConnection, OSGetDevNode(psConnection), psSyncAllocEventIN->bServerSync, psSyncAllocEventIN->ui32FWAddr, psSyncAllocEventIN->ui32ClassNameSize, uiClassNameInt); SyncAllocEvent_exit: /* Allocated space should be equal to the last updated offset */ #ifdef PVRSRV_NEED_PVR_ASSERT if (psSyncAllocEventOUT->eError == PVRSRV_OK) PVR_ASSERT(ui32BufferSize == ui32NextOffset); #endif /* PVRSRV_NEED_PVR_ASSERT */ #if defined(INTEGRITY_OS) if (pArrayArgsBuffer) #else if (!bHaveEnoughSpace && pArrayArgsBuffer) #endif OSFreeMemNoStats(pArrayArgsBuffer); return 0; } static IMG_INT PVRSRVBridgeSyncFreeEvent(IMG_UINT32 ui32DispatchTableEntry, IMG_UINT8 * psSyncFreeEventIN_UI8, IMG_UINT8 * psSyncFreeEventOUT_UI8, CONNECTION_DATA * psConnection) { PVRSRV_BRIDGE_IN_SYNCFREEEVENT *psSyncFreeEventIN = (PVRSRV_BRIDGE_IN_SYNCFREEEVENT *) IMG_OFFSET_ADDR(psSyncFreeEventIN_UI8, 0); PVRSRV_BRIDGE_OUT_SYNCFREEEVENT *psSyncFreeEventOUT = (PVRSRV_BRIDGE_OUT_SYNCFREEEVENT *) IMG_OFFSET_ADDR(psSyncFreeEventOUT_UI8, 0); psSyncFreeEventOUT->eError = PVRSRVSyncFreeEventKM(psConnection, OSGetDevNode(psConnection), psSyncFreeEventIN->ui32FWAddr); return 0; } #if defined(PDUMP) static IMG_INT PVRSRVBridgeSyncCheckpointSignalledPDumpPol(IMG_UINT32 ui32DispatchTableEntry, IMG_UINT8 * psSyncCheckpointSignalledPDumpPolIN_UI8, IMG_UINT8 * psSyncCheckpointSignalledPDumpPolOUT_UI8, CONNECTION_DATA * psConnection) { PVRSRV_BRIDGE_IN_SYNCCHECKPOINTSIGNALLEDPDUMPPOL *psSyncCheckpointSignalledPDumpPolIN = (PVRSRV_BRIDGE_IN_SYNCCHECKPOINTSIGNALLEDPDUMPPOL *) IMG_OFFSET_ADDR(psSyncCheckpointSignalledPDumpPolIN_UI8, 0); PVRSRV_BRIDGE_OUT_SYNCCHECKPOINTSIGNALLEDPDUMPPOL *psSyncCheckpointSignalledPDumpPolOUT = (PVRSRV_BRIDGE_OUT_SYNCCHECKPOINTSIGNALLEDPDUMPPOL *) IMG_OFFSET_ADDR(psSyncCheckpointSignalledPDumpPolOUT_UI8, 0); PVR_UNREFERENCED_PARAMETER(psConnection); psSyncCheckpointSignalledPDumpPolOUT->eError = PVRSRVSyncCheckpointSignalledPDumpPolKM(psSyncCheckpointSignalledPDumpPolIN->hFence); return 0; } #else #define PVRSRVBridgeSyncCheckpointSignalledPDumpPol NULL #endif /* *************************************************************************** * Server bridge dispatch related glue */ PVRSRV_ERROR InitSYNCBridge(void); void DeinitSYNCBridge(void); /* * Register all SYNC functions with services */ PVRSRV_ERROR InitSYNCBridge(void) { SetDispatchTableEntry(PVRSRV_BRIDGE_SYNC, PVRSRV_BRIDGE_SYNC_ALLOCSYNCPRIMITIVEBLOCK, PVRSRVBridgeAllocSyncPrimitiveBlock, NULL); SetDispatchTableEntry(PVRSRV_BRIDGE_SYNC, PVRSRV_BRIDGE_SYNC_FREESYNCPRIMITIVEBLOCK, PVRSRVBridgeFreeSyncPrimitiveBlock, NULL); SetDispatchTableEntry(PVRSRV_BRIDGE_SYNC, PVRSRV_BRIDGE_SYNC_SYNCPRIMSET, PVRSRVBridgeSyncPrimSet, NULL); SetDispatchTableEntry(PVRSRV_BRIDGE_SYNC, PVRSRV_BRIDGE_SYNC_SYNCPRIMPDUMP, PVRSRVBridgeSyncPrimPDump, NULL); SetDispatchTableEntry(PVRSRV_BRIDGE_SYNC, PVRSRV_BRIDGE_SYNC_SYNCPRIMPDUMPVALUE, PVRSRVBridgeSyncPrimPDumpValue, NULL); SetDispatchTableEntry(PVRSRV_BRIDGE_SYNC, PVRSRV_BRIDGE_SYNC_SYNCPRIMPDUMPPOL, PVRSRVBridgeSyncPrimPDumpPol, NULL); SetDispatchTableEntry(PVRSRV_BRIDGE_SYNC, PVRSRV_BRIDGE_SYNC_SYNCPRIMPDUMPCBP, PVRSRVBridgeSyncPrimPDumpCBP, NULL); SetDispatchTableEntry(PVRSRV_BRIDGE_SYNC, PVRSRV_BRIDGE_SYNC_SYNCALLOCEVENT, PVRSRVBridgeSyncAllocEvent, NULL); SetDispatchTableEntry(PVRSRV_BRIDGE_SYNC, PVRSRV_BRIDGE_SYNC_SYNCFREEEVENT, PVRSRVBridgeSyncFreeEvent, NULL); SetDispatchTableEntry(PVRSRV_BRIDGE_SYNC, PVRSRV_BRIDGE_SYNC_SYNCCHECKPOINTSIGNALLEDPDUMPPOL, PVRSRVBridgeSyncCheckpointSignalledPDumpPol, NULL); return PVRSRV_OK; } /* * Unregister all sync functions with services */ void DeinitSYNCBridge(void) { UnsetDispatchTableEntry(PVRSRV_BRIDGE_SYNC, PVRSRV_BRIDGE_SYNC_ALLOCSYNCPRIMITIVEBLOCK); UnsetDispatchTableEntry(PVRSRV_BRIDGE_SYNC, PVRSRV_BRIDGE_SYNC_FREESYNCPRIMITIVEBLOCK); UnsetDispatchTableEntry(PVRSRV_BRIDGE_SYNC, PVRSRV_BRIDGE_SYNC_SYNCPRIMSET); UnsetDispatchTableEntry(PVRSRV_BRIDGE_SYNC, PVRSRV_BRIDGE_SYNC_SYNCPRIMPDUMP); UnsetDispatchTableEntry(PVRSRV_BRIDGE_SYNC, PVRSRV_BRIDGE_SYNC_SYNCPRIMPDUMPVALUE); UnsetDispatchTableEntry(PVRSRV_BRIDGE_SYNC, PVRSRV_BRIDGE_SYNC_SYNCPRIMPDUMPPOL); UnsetDispatchTableEntry(PVRSRV_BRIDGE_SYNC, PVRSRV_BRIDGE_SYNC_SYNCPRIMPDUMPCBP); UnsetDispatchTableEntry(PVRSRV_BRIDGE_SYNC, PVRSRV_BRIDGE_SYNC_SYNCALLOCEVENT); UnsetDispatchTableEntry(PVRSRV_BRIDGE_SYNC, PVRSRV_BRIDGE_SYNC_SYNCFREEEVENT); UnsetDispatchTableEntry(PVRSRV_BRIDGE_SYNC, PVRSRV_BRIDGE_SYNC_SYNCCHECKPOINTSIGNALLEDPDUMPPOL); }