/* $NoKeywords:$ */ /** * @file * * Family specific PCIe complex initialization services * * * * @xrefitem bom "File Content Label" "Release Content" * @e project: AGESA * @e sub-project: GNB * @e \$Revision: 63425 $ @e \$Date: 2011-12-22 11:24:10 -0600 (Thu, 22 Dec 2011) $ * */ /* ***************************************************************************** * * Copyright (c) 2008 - 2012, Advanced Micro Devices, Inc. * All rights reserved. * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions are met: * * Redistributions of source code must retain the above copyright * notice, this list of conditions and the following disclaimer. * * Redistributions in binary form must reproduce the above copyright * notice, this list of conditions and the following disclaimer in the * documentation and/or other materials provided with the distribution. * * Neither the name of Advanced Micro Devices, Inc. nor the names of * its contributors may be used to endorse or promote products derived * from this software without specific prior written permission. * * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE * DISCLAIMED. IN NO EVENT SHALL ADVANCED MICRO DEVICES, INC. BE LIABLE FOR ANY * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. * *************************************************************************** * */ /*---------------------------------------------------------------------------------------- * M O D U L E S U S E D *---------------------------------------------------------------------------------------- */ #include "AGESA.h" #include "Ids.h" #include "amdlib.h" #include "Gnb.h" #include "GnbPcie.h" #include "GnbCommonLib.h" #include "GnbPcieConfig.h" #include "GnbPcieInitLibV1.h" #include "GnbRegistersLN.h" #include "Filecode.h" #define FILECODE PROC_GNB_MODULES_GNBPCIEINITLIBV1_PCIESILICONSERVICES_FILECODE /*---------------------------------------------------------------------------------------- * D E F I N I T I O N S A N D M A C R O S *---------------------------------------------------------------------------------------- */ /*---------------------------------------------------------------------------------------- * T Y P E D E F S A N D S T R U C T U R E S *---------------------------------------------------------------------------------------- */ /*---------------------------------------------------------------------------------------- * P R O T O T Y P E S O F L O C A L F U N C T I O N S *---------------------------------------------------------------------------------------- */ /*----------------------------------------------------------------------------------------*/ /** * Get Gen1 voltage Index * * * * * @param[in] StdHeader Standard configuration header */ UINT8 PcieSiliconGetGen1VoltageIndex ( IN AMD_CONFIG_PARAMS *StdHeader ) { UINT8 Index; UINT8 Gen1VidIndex; UINT8 SclkVidArray[4]; GnbLibPciRead ( MAKE_SBDFO ( 0, 0, 0x18, 3, 0x15c ), AccessWidth32, &SclkVidArray[0], StdHeader ); Gen1VidIndex = 0; for (Index = 0; Index < 4; Index++) { if (SclkVidArray[Index] > SclkVidArray[Gen1VidIndex]) { Gen1VidIndex = Index; } } return Gen1VidIndex; } /*----------------------------------------------------------------------------------------*/ /** * Request Pcie voltage change * * * * @param[in] VidIndex The request VID index * @param[in] StdHeader Standard configuration header */ VOID PcieSiliconRequestVoltage ( IN UINT8 VidIndex, IN AMD_CONFIG_PARAMS *StdHeader ) { ex488_STRUCT ex488 ; ex489_STRUCT ex489 ; //Enable voltage client GnbLibPciIndirectRead ( MAKE_SBDFO (0, 0, 0, 0, D0F0x60_ADDRESS), 0x6a | IOC_WRITE_ENABLE, AccessS3SaveWidth32, &ex488.Value, StdHeader ); ex488.Field.VoltageChangeEn = 0x1; GnbLibPciIndirectWrite ( MAKE_SBDFO (0, 0, 0, 0, D0F0x60_ADDRESS), 0x6a | IOC_WRITE_ENABLE, AccessS3SaveWidth32, &ex488.Value, StdHeader ); ex488.Field.VoltageLevel = VidIndex; ex488.Field.VoltageChangeReq = !ex488.Field.VoltageChangeReq; GnbLibPciIndirectWrite ( MAKE_SBDFO (0, 0, 0, 0, D0F0x60_ADDRESS), 0x6a | IOC_WRITE_ENABLE, AccessS3SaveWidth32, &ex488.Value, StdHeader ); do { GnbLibPciIndirectRead ( MAKE_SBDFO (0, 0, 0, 0, D0F0x60_ADDRESS), 0x6b | IOC_WRITE_ENABLE, AccessS3SaveWidth32, &ex489.Value, StdHeader ); } while (ex488.Field.VoltageChangeReq != ex489.Field.VoltageChangeAck); } /*----------------------------------------------------------------------------------------*/ /** * Unhide all ports * * * * @param[in] Silicon Pointer to silicon configuration descriptor * @param[in] Pcie Pointer to global PCIe configuration */ VOID PcieSiliconUnHidePorts ( IN PCIe_SILICON_CONFIG *Silicon, IN PCIe_PLATFORM_CONFIG *Pcie ) { GnbLibPciIndirectRMW ( Silicon->Address.AddressValue | D0F0x60_ADDRESS, D0F0x64_x0C_ADDRESS | IOC_WRITE_ENABLE, AccessS3SaveWidth32, (UINT32)~(BIT2 | BIT3 | BIT4 | BIT5 | BIT6 | BIT7), 0x0, GnbLibGetHeader (Pcie) ); GnbLibPciIndirectRMW ( Silicon->Address.AddressValue | D0F0x60_ADDRESS, D0F0x64_x00_ADDRESS | IOC_WRITE_ENABLE, AccessS3SaveWidth32, (UINT32)~BIT6, BIT6, GnbLibGetHeader (Pcie) ); } /*----------------------------------------------------------------------------------------*/ /** * Hide unused ports * * * * @param[in] Silicon Pointer to silicon configuration data area * @param[in] Pcie Pointer to data area up to 256 byte */ VOID PcieSiliconHidePorts ( IN PCIe_SILICON_CONFIG *Silicon, IN PCIe_PLATFORM_CONFIG *Pcie ) { D0F0x64_x0C_STRUCT D0F0x64_x0C; PCIe_WRAPPER_CONFIG *WrapperList; D0F0x64_x0C.Value = 0; IDS_HDT_CONSOLE (GNB_TRACE, "PcieSiliconHidePorts Enter\n"); D0F0x64_x0C.Value = BIT2 | BIT3 | BIT4 | BIT5 | BIT6 | BIT7; WrapperList = PcieConfigGetChildWrapper (Silicon); while (WrapperList != NULL) { PCIe_ENGINE_CONFIG *EngineList; EngineList = PcieConfigGetChildEngine (WrapperList); while (EngineList != NULL) { if (PcieConfigIsPcieEngine (EngineList)) { if (PcieConfigIsActivePcieEngine (EngineList) && !PcieConfigIsSbPcieEngine (EngineList)) { D0F0x64_x0C.Value &= ~(1 << EngineList->Type.Port.Address.Address.Device); } } EngineList = PcieLibGetNextDescriptor (EngineList); } WrapperList = PcieLibGetNextDescriptor (WrapperList); } GnbLibPciIndirectRMW ( Silicon->Address.AddressValue | D0F0x60_ADDRESS, D0F0x64_x0C_ADDRESS | IOC_WRITE_ENABLE, AccessS3SaveWidth32, (UINT32)~(BIT2 | BIT3 | BIT4 | BIT5 | BIT6 | BIT7), D0F0x64_x0C.Value, GnbLibGetHeader (Pcie) ); GnbLibPciIndirectRMW ( Silicon->Address.AddressValue | D0F0x60_ADDRESS, D0F0x64_x00_ADDRESS | IOC_WRITE_ENABLE, AccessS3SaveWidth32, (UINT32)~BIT6, 0x0, GnbLibGetHeader (Pcie) ); IDS_HDT_CONSOLE (GNB_TRACE, "Write D0F0x64_x0C.Value = %x\n", D0F0x64_x0C.Value); IDS_HDT_CONSOLE (GNB_TRACE, "PcieSiliconHidePorts Exit\n"); }