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3bb3f266ee
The J721E DDR subsystem comprises DDR controller, DDR PHY and wrapper logic to integrate these blocks in the device. The DDR subsystem is used to provide an interface to external SDRAM devices which can be utilized for storing program or data. Introduce support for the DDR controller and DDR phy within the DDR subsystem. Signed-off-by: Kevin Scholz <k-scholz@ti.com Signed-off-by: Lokesh Vutla <lokeshvutla@ti.com>
121 lines
4.1 KiB
C
121 lines
4.1 KiB
C
/* SPDX-License-Identifier: BSD-3-Clause */
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/**********************************************************************
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* Copyright (C) 2012-2019 Cadence Design Systems, Inc.
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**********************************************************************
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* WARNING: This file is auto-generated using api-generator utility.
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* api-generator: 12.02.13bb8d5
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* Do not edit it manually.
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**********************************************************************
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* Cadence Core Driver for LPDDR4.
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**********************************************************************
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*/
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#ifndef LPDDR4_STRUCTS_IF_H
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#define LPDDR4_STRUCTS_IF_H
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#include <linux/types.h>
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#include "lpddr4_if.h"
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/** @defgroup DataStructure Dynamic Data Structures
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* This section defines the data structures used by the driver to provide
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* hardware information, modification and dynamic operation of the driver.
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* These data structures are defined in the header file of the core driver
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* and utilized by the API.
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* @{
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*/
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/**********************************************************************
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* Structures and unions
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**********************************************************************/
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/**
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* Configuration of device.
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* Object of this type is used for probe and init functions.
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*/
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struct lpddr4_config_s
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{
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/** Base address of controller registers */
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struct lpddr4_ctlregs_s* ctlbase;
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/** Information/warning handler */
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lpddr4_infocallback infohandler;
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/** Controller interrupt handler */
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lpddr4_ctlcallback ctlinterrupthandler;
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/** PHY Independent Module interrupt handler */
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lpddr4_phyindepcallback phyindepinterrupthandler;
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};
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/**
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* Structure contains private data for Core Driver that should not be used by
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* upper layers. This is not a part of API and manipulating of those data may cause
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* unpredictable behavior of Core Driver.
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*/
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struct lpddr4_privatedata_s
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{
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/** Base address of controller registers */
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struct lpddr4_ctlregs_s* ctlbase;
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/** Information/warning handler */
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lpddr4_infocallback infohandler;
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/** Controller interrupt handler */
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lpddr4_ctlcallback ctlinterrupthandler;
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/** PHY Independent Module interrupt handler */
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lpddr4_phyindepcallback phyindepinterrupthandler;
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};
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/** Structure to contain debug information reported by the driver. */
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struct lpddr4_debuginfo_s
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{
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/** PLL Lock error. */
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bool pllerror;
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/** I/O calibration error. */
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bool iocaliberror;
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/** RX offset error. */
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bool rxoffseterror;
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/** CA training error. */
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bool catraingerror;
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/** Write levelling error. */
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bool wrlvlerror;
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/** Gate Level error. */
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bool gatelvlerror;
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/** Read Level error. */
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bool readlvlerror;
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/** Write DQ training error. */
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bool dqtrainingerror;
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};
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/** Frequency Set Point mode register values */
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struct lpddr4_fspmoderegs_s
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{
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/** MR1 register data for the FSP. */
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uint8_t mr1data_fn[LPDDR4_MAX_CS];
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/** MR2 register data for the FSP. */
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uint8_t mr2data_fn[LPDDR4_MAX_CS];
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/** MR3 register data for the FSP. */
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uint8_t mr3data_fn[LPDDR4_MAX_CS];
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/** MR11 register data for the FSP. */
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uint8_t mr11data_fn[LPDDR4_MAX_CS];
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/** MR12 register data for the FSP. */
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uint8_t mr12data_fn[LPDDR4_MAX_CS];
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/** MR13 register data for the FSP. */
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uint8_t mr13data_fn[LPDDR4_MAX_CS];
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/** MR14 register data for the FSP. */
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uint8_t mr14data_fn[LPDDR4_MAX_CS];
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/** MR22 register data for the selected frequency. */
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uint8_t mr22data_fn[LPDDR4_MAX_CS];
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};
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/** Structure to hold data set to initalise registers. */
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struct lpddr4_reginitdata_s
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{
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/** Register initialisation data for the Controller. */
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uint32_t denalictlreg[LPDDR4_CTL_REG_COUNT];
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/** Should be set to true, if the corresponding denaliCtlReg element has been updated. */
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bool updatectlreg[LPDDR4_CTL_REG_COUNT];
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/** Register initialisation data for PHY independent module. */
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uint32_t denaliphyindepreg[LPDDR4_PHY_INDEP_REG_COUNT];
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/** Should be set to true, if the corresponding denaliPhyIndepReg element has been updated. */
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bool updatephyindepreg[LPDDR4_PHY_INDEP_REG_COUNT];
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/** Register initialisation data for the PHY. */
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uint32_t denaliphyreg[LPDDR4_PHY_REG_COUNT];
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/** Should be set to true, if the corresponding denaliPhyReg element has been updated. */
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bool updatephyreg[LPDDR4_PHY_REG_COUNT];
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};
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#endif /* LPDDR4_STRUCTS_IF_H */
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