846f0e9e74
In ARM ACPI systems, IOMMU components are specified through static IORT table entries. In order to create platform devices for the corresponding ARM SMMU components, IORT kernel code should be made able to parse IORT table entries and create platform devices dynamically. This patch adds the generic IORT infrastructure required to create platform devices for ARM SMMUs. ARM SMMU versions have different resources requirement therefore this patch also introduces an IORT specific structure (ie iort_iommu_config) that contains hooks (to be defined when the corresponding ARM SMMU driver support is added to the kernel) to be used to define the platform devices names, init the IOMMUs, count their resources and finally initialize them. Signed-off-by: Lorenzo Pieralisi <lorenzo.pieralisi@arm.com> Reviewed-by: Tomasz Nowicki <tn@semihalf.com> Tested-by: Hanjun Guo <hanjun.guo@linaro.org> Tested-by: Tomasz Nowicki <tn@semihalf.com> Acked-by: Hanjun Guo <hanjun.guo@linaro.org> Cc: Hanjun Guo <hanjun.guo@linaro.org> Cc: Tomasz Nowicki <tn@semihalf.com> Cc: "Rafael J. Wysocki" <rjw@rjwysocki.net> Signed-off-by: Will Deacon <will.deacon@arm.com>
628 lines
15 KiB
C
628 lines
15 KiB
C
/*
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* Copyright (C) 2016, Semihalf
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* Author: Tomasz Nowicki <tn@semihalf.com>
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms and conditions of the GNU General Public License,
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* version 2, as published by the Free Software Foundation.
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*
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* This program is distributed in the hope it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
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* more details.
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*
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* This file implements early detection/parsing of I/O mapping
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* reported to OS through firmware via I/O Remapping Table (IORT)
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* IORT document number: ARM DEN 0049A
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*/
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#define pr_fmt(fmt) "ACPI: IORT: " fmt
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#include <linux/acpi_iort.h>
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#include <linux/iommu.h>
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#include <linux/kernel.h>
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#include <linux/list.h>
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#include <linux/pci.h>
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#include <linux/platform_device.h>
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#include <linux/slab.h>
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struct iort_its_msi_chip {
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struct list_head list;
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struct fwnode_handle *fw_node;
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u32 translation_id;
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};
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struct iort_fwnode {
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struct list_head list;
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struct acpi_iort_node *iort_node;
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struct fwnode_handle *fwnode;
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};
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static LIST_HEAD(iort_fwnode_list);
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static DEFINE_SPINLOCK(iort_fwnode_lock);
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/**
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* iort_set_fwnode() - Create iort_fwnode and use it to register
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* iommu data in the iort_fwnode_list
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*
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* @node: IORT table node associated with the IOMMU
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* @fwnode: fwnode associated with the IORT node
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*
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* Returns: 0 on success
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* <0 on failure
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*/
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static inline int iort_set_fwnode(struct acpi_iort_node *iort_node,
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struct fwnode_handle *fwnode)
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{
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struct iort_fwnode *np;
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np = kzalloc(sizeof(struct iort_fwnode), GFP_ATOMIC);
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if (WARN_ON(!np))
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return -ENOMEM;
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INIT_LIST_HEAD(&np->list);
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np->iort_node = iort_node;
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np->fwnode = fwnode;
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spin_lock(&iort_fwnode_lock);
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list_add_tail(&np->list, &iort_fwnode_list);
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spin_unlock(&iort_fwnode_lock);
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return 0;
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}
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/**
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* iort_get_fwnode() - Retrieve fwnode associated with an IORT node
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*
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* @node: IORT table node to be looked-up
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*
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* Returns: fwnode_handle pointer on success, NULL on failure
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*/
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static inline
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struct fwnode_handle *iort_get_fwnode(struct acpi_iort_node *node)
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{
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struct iort_fwnode *curr;
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struct fwnode_handle *fwnode = NULL;
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spin_lock(&iort_fwnode_lock);
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list_for_each_entry(curr, &iort_fwnode_list, list) {
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if (curr->iort_node == node) {
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fwnode = curr->fwnode;
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break;
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}
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}
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spin_unlock(&iort_fwnode_lock);
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return fwnode;
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}
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/**
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* iort_delete_fwnode() - Delete fwnode associated with an IORT node
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*
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* @node: IORT table node associated with fwnode to delete
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*/
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static inline void iort_delete_fwnode(struct acpi_iort_node *node)
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{
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struct iort_fwnode *curr, *tmp;
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spin_lock(&iort_fwnode_lock);
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list_for_each_entry_safe(curr, tmp, &iort_fwnode_list, list) {
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if (curr->iort_node == node) {
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list_del(&curr->list);
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kfree(curr);
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break;
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}
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}
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spin_unlock(&iort_fwnode_lock);
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}
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typedef acpi_status (*iort_find_node_callback)
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(struct acpi_iort_node *node, void *context);
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/* Root pointer to the mapped IORT table */
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static struct acpi_table_header *iort_table;
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static LIST_HEAD(iort_msi_chip_list);
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static DEFINE_SPINLOCK(iort_msi_chip_lock);
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/**
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* iort_register_domain_token() - register domain token and related ITS ID
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* to the list from where we can get it back later on.
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* @trans_id: ITS ID.
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* @fw_node: Domain token.
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*
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* Returns: 0 on success, -ENOMEM if no memory when allocating list element
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*/
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int iort_register_domain_token(int trans_id, struct fwnode_handle *fw_node)
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{
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struct iort_its_msi_chip *its_msi_chip;
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its_msi_chip = kzalloc(sizeof(*its_msi_chip), GFP_KERNEL);
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if (!its_msi_chip)
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return -ENOMEM;
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its_msi_chip->fw_node = fw_node;
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its_msi_chip->translation_id = trans_id;
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spin_lock(&iort_msi_chip_lock);
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list_add(&its_msi_chip->list, &iort_msi_chip_list);
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spin_unlock(&iort_msi_chip_lock);
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return 0;
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}
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/**
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* iort_deregister_domain_token() - Deregister domain token based on ITS ID
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* @trans_id: ITS ID.
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*
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* Returns: none.
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*/
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void iort_deregister_domain_token(int trans_id)
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{
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struct iort_its_msi_chip *its_msi_chip, *t;
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spin_lock(&iort_msi_chip_lock);
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list_for_each_entry_safe(its_msi_chip, t, &iort_msi_chip_list, list) {
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if (its_msi_chip->translation_id == trans_id) {
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list_del(&its_msi_chip->list);
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kfree(its_msi_chip);
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break;
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}
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}
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spin_unlock(&iort_msi_chip_lock);
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}
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/**
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* iort_find_domain_token() - Find domain token based on given ITS ID
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* @trans_id: ITS ID.
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*
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* Returns: domain token when find on the list, NULL otherwise
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*/
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struct fwnode_handle *iort_find_domain_token(int trans_id)
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{
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struct fwnode_handle *fw_node = NULL;
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struct iort_its_msi_chip *its_msi_chip;
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spin_lock(&iort_msi_chip_lock);
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list_for_each_entry(its_msi_chip, &iort_msi_chip_list, list) {
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if (its_msi_chip->translation_id == trans_id) {
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fw_node = its_msi_chip->fw_node;
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break;
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}
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}
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spin_unlock(&iort_msi_chip_lock);
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return fw_node;
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}
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static struct acpi_iort_node *iort_scan_node(enum acpi_iort_node_type type,
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iort_find_node_callback callback,
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void *context)
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{
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struct acpi_iort_node *iort_node, *iort_end;
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struct acpi_table_iort *iort;
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int i;
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if (!iort_table)
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return NULL;
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/* Get the first IORT node */
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iort = (struct acpi_table_iort *)iort_table;
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iort_node = ACPI_ADD_PTR(struct acpi_iort_node, iort,
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iort->node_offset);
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iort_end = ACPI_ADD_PTR(struct acpi_iort_node, iort_table,
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iort_table->length);
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for (i = 0; i < iort->node_count; i++) {
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if (WARN_TAINT(iort_node >= iort_end, TAINT_FIRMWARE_WORKAROUND,
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"IORT node pointer overflows, bad table!\n"))
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return NULL;
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if (iort_node->type == type &&
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ACPI_SUCCESS(callback(iort_node, context)))
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return iort_node;
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iort_node = ACPI_ADD_PTR(struct acpi_iort_node, iort_node,
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iort_node->length);
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}
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return NULL;
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}
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static acpi_status
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iort_match_type_callback(struct acpi_iort_node *node, void *context)
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{
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return AE_OK;
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}
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bool iort_node_match(u8 type)
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{
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struct acpi_iort_node *node;
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node = iort_scan_node(type, iort_match_type_callback, NULL);
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return node != NULL;
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}
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static acpi_status iort_match_node_callback(struct acpi_iort_node *node,
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void *context)
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{
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struct device *dev = context;
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acpi_status status;
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if (node->type == ACPI_IORT_NODE_NAMED_COMPONENT) {
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struct acpi_buffer buf = { ACPI_ALLOCATE_BUFFER, NULL };
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struct acpi_device *adev = to_acpi_device_node(dev->fwnode);
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struct acpi_iort_named_component *ncomp;
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if (!adev) {
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status = AE_NOT_FOUND;
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goto out;
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}
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status = acpi_get_name(adev->handle, ACPI_FULL_PATHNAME, &buf);
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if (ACPI_FAILURE(status)) {
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dev_warn(dev, "Can't get device full path name\n");
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goto out;
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}
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ncomp = (struct acpi_iort_named_component *)node->node_data;
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status = !strcmp(ncomp->device_name, buf.pointer) ?
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AE_OK : AE_NOT_FOUND;
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acpi_os_free(buf.pointer);
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} else if (node->type == ACPI_IORT_NODE_PCI_ROOT_COMPLEX) {
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struct acpi_iort_root_complex *pci_rc;
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struct pci_bus *bus;
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bus = to_pci_bus(dev);
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pci_rc = (struct acpi_iort_root_complex *)node->node_data;
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/*
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* It is assumed that PCI segment numbers maps one-to-one
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* with root complexes. Each segment number can represent only
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* one root complex.
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*/
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status = pci_rc->pci_segment_number == pci_domain_nr(bus) ?
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AE_OK : AE_NOT_FOUND;
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} else {
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status = AE_NOT_FOUND;
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}
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out:
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return status;
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}
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static int iort_id_map(struct acpi_iort_id_mapping *map, u8 type, u32 rid_in,
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u32 *rid_out)
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{
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/* Single mapping does not care for input id */
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if (map->flags & ACPI_IORT_ID_SINGLE_MAPPING) {
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if (type == ACPI_IORT_NODE_NAMED_COMPONENT ||
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type == ACPI_IORT_NODE_PCI_ROOT_COMPLEX) {
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*rid_out = map->output_base;
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return 0;
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}
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pr_warn(FW_BUG "[map %p] SINGLE MAPPING flag not allowed for node type %d, skipping ID map\n",
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map, type);
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return -ENXIO;
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}
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if (rid_in < map->input_base ||
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(rid_in >= map->input_base + map->id_count))
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return -ENXIO;
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*rid_out = map->output_base + (rid_in - map->input_base);
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return 0;
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}
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static struct acpi_iort_node *iort_node_map_rid(struct acpi_iort_node *node,
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u32 rid_in, u32 *rid_out,
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u8 type)
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{
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u32 rid = rid_in;
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/* Parse the ID mapping tree to find specified node type */
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while (node) {
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struct acpi_iort_id_mapping *map;
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int i;
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if (node->type == type) {
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if (rid_out)
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*rid_out = rid;
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return node;
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}
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if (!node->mapping_offset || !node->mapping_count)
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goto fail_map;
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map = ACPI_ADD_PTR(struct acpi_iort_id_mapping, node,
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node->mapping_offset);
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/* Firmware bug! */
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if (!map->output_reference) {
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pr_err(FW_BUG "[node %p type %d] ID map has NULL parent reference\n",
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node, node->type);
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goto fail_map;
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}
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/* Do the RID translation */
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for (i = 0; i < node->mapping_count; i++, map++) {
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if (!iort_id_map(map, node->type, rid, &rid))
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break;
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}
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if (i == node->mapping_count)
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goto fail_map;
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node = ACPI_ADD_PTR(struct acpi_iort_node, iort_table,
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map->output_reference);
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}
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fail_map:
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/* Map input RID to output RID unchanged on mapping failure*/
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if (rid_out)
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*rid_out = rid_in;
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return NULL;
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}
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static struct acpi_iort_node *iort_find_dev_node(struct device *dev)
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{
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struct pci_bus *pbus;
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if (!dev_is_pci(dev))
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return iort_scan_node(ACPI_IORT_NODE_NAMED_COMPONENT,
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iort_match_node_callback, dev);
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/* Find a PCI root bus */
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pbus = to_pci_dev(dev)->bus;
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while (!pci_is_root_bus(pbus))
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pbus = pbus->parent;
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return iort_scan_node(ACPI_IORT_NODE_PCI_ROOT_COMPLEX,
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iort_match_node_callback, &pbus->dev);
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}
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/**
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* iort_msi_map_rid() - Map a MSI requester ID for a device
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* @dev: The device for which the mapping is to be done.
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* @req_id: The device requester ID.
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*
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* Returns: mapped MSI RID on success, input requester ID otherwise
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*/
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u32 iort_msi_map_rid(struct device *dev, u32 req_id)
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{
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struct acpi_iort_node *node;
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u32 dev_id;
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node = iort_find_dev_node(dev);
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if (!node)
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return req_id;
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iort_node_map_rid(node, req_id, &dev_id, ACPI_IORT_NODE_ITS_GROUP);
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return dev_id;
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}
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/**
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* iort_dev_find_its_id() - Find the ITS identifier for a device
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* @dev: The device.
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* @idx: Index of the ITS identifier list.
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* @its_id: ITS identifier.
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*
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* Returns: 0 on success, appropriate error value otherwise
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*/
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static int iort_dev_find_its_id(struct device *dev, u32 req_id,
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unsigned int idx, int *its_id)
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{
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struct acpi_iort_its_group *its;
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struct acpi_iort_node *node;
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node = iort_find_dev_node(dev);
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if (!node)
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return -ENXIO;
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node = iort_node_map_rid(node, req_id, NULL, ACPI_IORT_NODE_ITS_GROUP);
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if (!node)
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return -ENXIO;
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/* Move to ITS specific data */
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its = (struct acpi_iort_its_group *)node->node_data;
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if (idx > its->its_count) {
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dev_err(dev, "requested ITS ID index [%d] is greater than available [%d]\n",
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idx, its->its_count);
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return -ENXIO;
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}
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*its_id = its->identifiers[idx];
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return 0;
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}
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/**
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* iort_get_device_domain() - Find MSI domain related to a device
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* @dev: The device.
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* @req_id: Requester ID for the device.
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*
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* Returns: the MSI domain for this device, NULL otherwise
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*/
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struct irq_domain *iort_get_device_domain(struct device *dev, u32 req_id)
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{
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struct fwnode_handle *handle;
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int its_id;
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if (iort_dev_find_its_id(dev, req_id, 0, &its_id))
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return NULL;
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handle = iort_find_domain_token(its_id);
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if (!handle)
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return NULL;
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return irq_find_matching_fwnode(handle, DOMAIN_BUS_PCI_MSI);
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}
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struct iort_iommu_config {
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const char *name;
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int (*iommu_init)(struct acpi_iort_node *node);
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bool (*iommu_is_coherent)(struct acpi_iort_node *node);
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int (*iommu_count_resources)(struct acpi_iort_node *node);
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void (*iommu_init_resources)(struct resource *res,
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struct acpi_iort_node *node);
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};
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static __init
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const struct iort_iommu_config *iort_get_iommu_cfg(struct acpi_iort_node *node)
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{
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return NULL;
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}
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/**
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* iort_add_smmu_platform_device() - Allocate a platform device for SMMU
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* @node: Pointer to SMMU ACPI IORT node
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*
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* Returns: 0 on success, <0 failure
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*/
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static int __init iort_add_smmu_platform_device(struct acpi_iort_node *node)
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{
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struct fwnode_handle *fwnode;
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struct platform_device *pdev;
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struct resource *r;
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enum dev_dma_attr attr;
|
|
int ret, count;
|
|
const struct iort_iommu_config *ops = iort_get_iommu_cfg(node);
|
|
|
|
if (!ops)
|
|
return -ENODEV;
|
|
|
|
pdev = platform_device_alloc(ops->name, PLATFORM_DEVID_AUTO);
|
|
if (!pdev)
|
|
return PTR_ERR(pdev);
|
|
|
|
count = ops->iommu_count_resources(node);
|
|
|
|
r = kcalloc(count, sizeof(*r), GFP_KERNEL);
|
|
if (!r) {
|
|
ret = -ENOMEM;
|
|
goto dev_put;
|
|
}
|
|
|
|
ops->iommu_init_resources(r, node);
|
|
|
|
ret = platform_device_add_resources(pdev, r, count);
|
|
/*
|
|
* Resources are duplicated in platform_device_add_resources,
|
|
* free their allocated memory
|
|
*/
|
|
kfree(r);
|
|
|
|
if (ret)
|
|
goto dev_put;
|
|
|
|
/*
|
|
* Add a copy of IORT node pointer to platform_data to
|
|
* be used to retrieve IORT data information.
|
|
*/
|
|
ret = platform_device_add_data(pdev, &node, sizeof(node));
|
|
if (ret)
|
|
goto dev_put;
|
|
|
|
/*
|
|
* We expect the dma masks to be equivalent for
|
|
* all SMMUs set-ups
|
|
*/
|
|
pdev->dev.dma_mask = &pdev->dev.coherent_dma_mask;
|
|
|
|
fwnode = iort_get_fwnode(node);
|
|
|
|
if (!fwnode) {
|
|
ret = -ENODEV;
|
|
goto dev_put;
|
|
}
|
|
|
|
pdev->dev.fwnode = fwnode;
|
|
|
|
attr = ops->iommu_is_coherent(node) ?
|
|
DEV_DMA_COHERENT : DEV_DMA_NON_COHERENT;
|
|
|
|
/* Configure DMA for the page table walker */
|
|
acpi_dma_configure(&pdev->dev, attr);
|
|
|
|
ret = platform_device_add(pdev);
|
|
if (ret)
|
|
goto dma_deconfigure;
|
|
|
|
return 0;
|
|
|
|
dma_deconfigure:
|
|
acpi_dma_deconfigure(&pdev->dev);
|
|
dev_put:
|
|
platform_device_put(pdev);
|
|
|
|
return ret;
|
|
}
|
|
|
|
static void __init iort_init_platform_devices(void)
|
|
{
|
|
struct acpi_iort_node *iort_node, *iort_end;
|
|
struct acpi_table_iort *iort;
|
|
struct fwnode_handle *fwnode;
|
|
int i, ret;
|
|
|
|
/*
|
|
* iort_table and iort both point to the start of IORT table, but
|
|
* have different struct types
|
|
*/
|
|
iort = (struct acpi_table_iort *)iort_table;
|
|
|
|
/* Get the first IORT node */
|
|
iort_node = ACPI_ADD_PTR(struct acpi_iort_node, iort,
|
|
iort->node_offset);
|
|
iort_end = ACPI_ADD_PTR(struct acpi_iort_node, iort,
|
|
iort_table->length);
|
|
|
|
for (i = 0; i < iort->node_count; i++) {
|
|
if (iort_node >= iort_end) {
|
|
pr_err("iort node pointer overflows, bad table\n");
|
|
return;
|
|
}
|
|
|
|
if ((iort_node->type == ACPI_IORT_NODE_SMMU) ||
|
|
(iort_node->type == ACPI_IORT_NODE_SMMU_V3)) {
|
|
|
|
fwnode = acpi_alloc_fwnode_static();
|
|
if (!fwnode)
|
|
return;
|
|
|
|
iort_set_fwnode(iort_node, fwnode);
|
|
|
|
ret = iort_add_smmu_platform_device(iort_node);
|
|
if (ret) {
|
|
iort_delete_fwnode(iort_node);
|
|
acpi_free_fwnode_static(fwnode);
|
|
return;
|
|
}
|
|
}
|
|
|
|
iort_node = ACPI_ADD_PTR(struct acpi_iort_node, iort_node,
|
|
iort_node->length);
|
|
}
|
|
}
|
|
|
|
void __init acpi_iort_init(void)
|
|
{
|
|
acpi_status status;
|
|
|
|
status = acpi_get_table(ACPI_SIG_IORT, 0, &iort_table);
|
|
if (ACPI_FAILURE(status)) {
|
|
if (status != AE_NOT_FOUND) {
|
|
const char *msg = acpi_format_exception(status);
|
|
|
|
pr_err("Failed to get table, %s\n", msg);
|
|
}
|
|
|
|
return;
|
|
}
|
|
|
|
iort_init_platform_devices();
|
|
|
|
acpi_probe_device_table(iort);
|
|
}
|