coreboot-kgpe-d16/src/soc/intel/cannonlake/fsp_params.c
Lijian Zhao 79152f3c81 soc/intel/cannonlake: Add options for pcie ltr
FSP can support enable/disable Pci express LTR (Latency Tolerance
Reporting) mechanism through upd interface. Include that into coreboot
side.

BUG=N/A
TEST=N/A

Change-Id: I69b423afa4f81a2d58375734bba07792e08931d5
Signed-off-by: Lijian Zhao <lijian.zhao@intel.com>
Reviewed-on: https://review.coreboot.org/29642
Reviewed-by: Pratikkumar V Prajapati <pratikkumar.v.prajapati@intel.com>
Tested-by: build bot (Jenkins) <no-reply@coreboot.org>
2018-11-17 07:25:54 +00:00

219 lines
6.6 KiB
C

/*
* This file is part of the coreboot project.
*
* Copyright (C) 2018 Intel Corporation.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; version 2 of the License.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include <chip.h>
#include <console/console.h>
#include <device/device.h>
#include <device/pci.h>
#include <fsp/api.h>
#include <fsp/util.h>
#include <intelblocks/xdci.h>
#include <soc/intel/common/vbt.h>
#include <soc/pci_devs.h>
#include <soc/ramstage.h>
#include <string.h>
static void parse_devicetree(FSP_S_CONFIG *params)
{
struct device *dev = SA_DEV_ROOT;
if (!dev) {
printk(BIOS_ERR, "Could not find root device\n");
return;
}
const config_t *config = dev->chip_info;
const int SerialIoDev[] = {
PCH_DEVFN_I2C0,
PCH_DEVFN_I2C1,
PCH_DEVFN_I2C2,
PCH_DEVFN_I2C3,
PCH_DEVFN_I2C4,
PCH_DEVFN_I2C5,
PCH_DEVFN_GSPI0,
PCH_DEVFN_GSPI1,
PCH_DEVFN_GSPI2,
PCH_DEVFN_UART0,
PCH_DEVFN_UART1,
PCH_DEVFN_UART2
};
for (int i = 0; i < ARRAY_SIZE(SerialIoDev); i++) {
dev = dev_find_slot(0, SerialIoDev[i]);
if (!dev->enabled) {
params->SerialIoDevMode[i] = PchSerialIoDisabled;
continue;
}
params->SerialIoDevMode[i] = PchSerialIoPci;
if (config->SerialIoDevMode[i] == PchSerialIoAcpi ||
config->SerialIoDevMode[i] == PchSerialIoHidden)
params->SerialIoDevMode[i] = config->SerialIoDevMode[i];
}
}
/* UPD parameters to be initialized before SiliconInit */
void platform_fsp_silicon_init_params_cb(FSPS_UPD *supd)
{
int i;
FSP_S_CONFIG *params = &supd->FspsConfig;
struct device *dev = SA_DEV_ROOT;
config_t *config = dev->chip_info;
/* Parse device tree and enable/disable devices */
parse_devicetree(params);
/* Load VBT before devicetree-specific config. */
params->GraphicsConfigPtr = (uintptr_t)vbt_get();
/* Set USB OC pin to 0 first */
for (i = 0; i < ARRAY_SIZE(params->Usb2OverCurrentPin); i++) {
params->Usb2OverCurrentPin[i] = 0;
}
for (i = 0; i < ARRAY_SIZE(params->Usb3OverCurrentPin); i++) {
params->Usb3OverCurrentPin[i] = 0;
}
mainboard_silicon_init_params(params);
/* Unlock upper 8 bytes of RTC RAM */
params->PchLockDownRtcMemoryLock = 0;
/* SATA */
dev = dev_find_slot(0, PCH_DEVFN_SATA);
if (!dev)
params->SataEnable = 0;
else {
params->SataEnable = dev->enabled;
params->SataMode = config->SataMode;
params->SataSalpSupport = config->SataSalpSupport;
memcpy(params->SataPortsEnable, config->SataPortsEnable,
sizeof(params->SataPortsEnable));
memcpy(params->SataPortsDevSlp, config->SataPortsDevSlp,
sizeof(params->SataPortsDevSlp));
}
/* Lan */
dev = dev_find_slot(0, PCH_DEVFN_GBE);
if (!dev)
params->PchLanEnable = 0;
else
params->PchLanEnable = dev->enabled;
/* Audio */
params->PchHdaDspEnable = config->PchHdaDspEnable;
params->PchHdaAudioLinkHda = config->PchHdaAudioLinkHda;
params->PchHdaAudioLinkDmic0 = config->PchHdaAudioLinkDmic0;
params->PchHdaAudioLinkDmic1 = config->PchHdaAudioLinkDmic1;
params->PchHdaAudioLinkSsp0 = config->PchHdaAudioLinkSsp0;
params->PchHdaAudioLinkSsp1 = config->PchHdaAudioLinkSsp1;
params->PchHdaAudioLinkSsp2 = config->PchHdaAudioLinkSsp2;
params->PchHdaAudioLinkSndw1 = config->PchHdaAudioLinkSndw1;
params->PchHdaAudioLinkSndw2 = config->PchHdaAudioLinkSndw2;
params->PchHdaAudioLinkSndw3 = config->PchHdaAudioLinkSndw3;
params->PchHdaAudioLinkSndw4 = config->PchHdaAudioLinkSndw4;
/* S0ix */
params->PchPmSlpS0Enable = config->s0ix_enable;
/* disable Legacy PME */
memset(params->PcieRpPmSci, 0, sizeof(params->PcieRpPmSci));
/* USB */
for (i = 0; i < ARRAY_SIZE(config->usb2_ports); i++) {
params->PortUsb20Enable[i] = config->usb2_ports[i].enable;
params->Usb2OverCurrentPin[i] = config->usb2_ports[i].ocpin;
params->Usb2AfePetxiset[i] = config->usb2_ports[i].pre_emp_bias;
params->Usb2AfeTxiset[i] = config->usb2_ports[i].tx_bias;
params->Usb2AfePredeemp[i] =
config->usb2_ports[i].tx_emp_enable;
params->Usb2AfePehalfbit[i] = config->usb2_ports[i].pre_emp_bit;
}
for (i = 0; i < ARRAY_SIZE(config->usb3_ports); i++) {
params->PortUsb30Enable[i] = config->usb3_ports[i].enable;
params->Usb3OverCurrentPin[i] = config->usb3_ports[i].ocpin;
if (config->usb3_ports[i].tx_de_emp) {
params->Usb3HsioTxDeEmphEnable[i] = 1;
params->Usb3HsioTxDeEmph[i] =
config->usb3_ports[i].tx_de_emp;
}
if (config->usb3_ports[i].tx_downscale_amp) {
params->Usb3HsioTxDownscaleAmpEnable[i] = 1;
params->Usb3HsioTxDownscaleAmp[i] =
config->usb3_ports[i].tx_downscale_amp;
}
}
/* Enable xDCI controller if enabled in devicetree and allowed */
dev = dev_find_slot(0, PCH_DEVFN_USBOTG);
if (!xdci_can_enable())
dev->enabled = 0;
params->XdciEnable = dev->enabled;
/* PCI Express */
for (i = 0; i < ARRAY_SIZE(config->PcieClkSrcUsage); i++) {
if (config->PcieClkSrcUsage[i] == 0)
config->PcieClkSrcUsage[i] = PCIE_CLK_NOTUSED;
}
memcpy(params->PcieClkSrcUsage, config->PcieClkSrcUsage,
sizeof(config->PcieClkSrcUsage));
memcpy(params->PcieClkSrcClkReq, config->PcieClkSrcClkReq,
sizeof(config->PcieClkSrcClkReq));
memcpy(params->PcieRpLtrEnable, config->PcieRpLtrEnable,
sizeof(config->PcieRpLtrEnable));
/* eMMC and SD */
dev = dev_find_slot(0, PCH_DEVFN_EMMC);
if (!dev)
params->ScsEmmcEnabled = 0;
else {
params->ScsEmmcEnabled = dev->enabled;
params->ScsEmmcHs400Enabled = config->ScsEmmcHs400Enabled;
params->PchScsEmmcHs400DllDataValid = config->EmmcHs400DllNeed;
if (config->EmmcHs400DllNeed == 1) {
params->PchScsEmmcHs400RxStrobeDll1 =
config->EmmcHs400RxStrobeDll1;
params->PchScsEmmcHs400TxDataDll =
config->EmmcHs400TxDataDll;
}
}
dev = dev_find_slot(0, PCH_DEVFN_SDCARD);
if (!dev)
params->ScsSdCardEnabled = 0;
else
params->ScsSdCardEnabled = dev->enabled;
dev = dev_find_slot(0, PCH_DEVFN_UFS);
if (!dev)
params->ScsUfsEnabled = 0;
else
params->ScsUfsEnabled = dev->enabled;
params->Heci3Enabled = config->Heci3Enabled;
params->Device4Enable = config->Device4Enable;
/* VrConfig Settings for 5 domains
* 0 = System Agent, 1 = IA Core, 2 = Ring,
* 3 = GT unsliced, 4 = GT sliced */
for (i = 0; i < ARRAY_SIZE(config->domain_vr_config); i++)
fill_vr_domain_config(params, i, &config->domain_vr_config[i]);
}
/* Mainboard GPIO Configuration */
__weak void mainboard_silicon_init_params(FSP_S_CONFIG *params)
{
printk(BIOS_DEBUG, "WEAK: %s/%s called\n", __FILE__, __func__);
}