6db4831e98
Android 14
183 lines
5.4 KiB
C
183 lines
5.4 KiB
C
/*
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* VMware VMCI driver (vmciContext.h)
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*
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* Copyright (C) 2012 VMware, Inc. All rights reserved.
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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 of the GNU General Public License as published by the
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* Free Software Foundation version 2 and no later version.
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*
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* This program is distributed in the hope that it will be useful, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
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* or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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* for more details.
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*/
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#ifndef _VMCI_CONTEXT_H_
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#define _VMCI_CONTEXT_H_
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#include <linux/vmw_vmci_defs.h>
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#include <linux/atomic.h>
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#include <linux/kref.h>
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#include <linux/types.h>
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#include <linux/wait.h>
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#include "vmci_handle_array.h"
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#include "vmci_datagram.h"
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/* Used to determine what checkpoint state to get and set. */
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enum {
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VMCI_NOTIFICATION_CPT_STATE = 1,
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VMCI_WELLKNOWN_CPT_STATE = 2,
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VMCI_DG_OUT_STATE = 3,
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VMCI_DG_IN_STATE = 4,
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VMCI_DG_IN_SIZE_STATE = 5,
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VMCI_DOORBELL_CPT_STATE = 6,
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};
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/* Host specific struct used for signalling */
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struct vmci_host {
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wait_queue_head_t wait_queue;
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};
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struct vmci_handle_list {
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struct list_head node;
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struct vmci_handle handle;
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};
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struct vmci_ctx {
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struct list_head list_item; /* For global VMCI list. */
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u32 cid;
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struct kref kref;
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struct list_head datagram_queue; /* Head of per VM queue. */
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u32 pending_datagrams;
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size_t datagram_queue_size; /* Size of datagram queue in bytes. */
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/*
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* Version of the code that created
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* this context; e.g., VMX.
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*/
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int user_version;
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spinlock_t lock; /* Locks callQueue and handle_arrays. */
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/*
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* queue_pairs attached to. The array of
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* handles for queue pairs is accessed
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* from the code for QP API, and there
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* it is protected by the QP lock. It
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* is also accessed from the context
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* clean up path, which does not
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* require a lock. VMCILock is not
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* used to protect the QP array field.
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*/
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struct vmci_handle_arr *queue_pair_array;
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/* Doorbells created by context. */
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struct vmci_handle_arr *doorbell_array;
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/* Doorbells pending for context. */
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struct vmci_handle_arr *pending_doorbell_array;
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/* Contexts current context is subscribing to. */
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struct list_head notifier_list;
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unsigned int n_notifiers;
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struct vmci_host host_context;
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u32 priv_flags;
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const struct cred *cred;
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bool *notify; /* Notify flag pointer - hosted only. */
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struct page *notify_page; /* Page backing the notify UVA. */
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};
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/* VMCINotifyAddRemoveInfo: Used to add/remove remote context notifications. */
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struct vmci_ctx_info {
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u32 remote_cid;
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int result;
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};
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/* VMCICptBufInfo: Used to set/get current context's checkpoint state. */
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struct vmci_ctx_chkpt_buf_info {
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u64 cpt_buf;
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u32 cpt_type;
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u32 buf_size;
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s32 result;
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u32 _pad;
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};
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/*
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* VMCINotificationReceiveInfo: Used to recieve pending notifications
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* for doorbells and queue pairs.
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*/
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struct vmci_ctx_notify_recv_info {
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u64 db_handle_buf_uva;
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u64 db_handle_buf_size;
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u64 qp_handle_buf_uva;
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u64 qp_handle_buf_size;
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s32 result;
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u32 _pad;
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};
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/*
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* Utilility function that checks whether two entities are allowed
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* to interact. If one of them is restricted, the other one must
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* be trusted.
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*/
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static inline bool vmci_deny_interaction(u32 part_one, u32 part_two)
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{
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return ((part_one & VMCI_PRIVILEGE_FLAG_RESTRICTED) &&
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!(part_two & VMCI_PRIVILEGE_FLAG_TRUSTED)) ||
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((part_two & VMCI_PRIVILEGE_FLAG_RESTRICTED) &&
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!(part_one & VMCI_PRIVILEGE_FLAG_TRUSTED));
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}
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struct vmci_ctx *vmci_ctx_create(u32 cid, u32 flags,
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uintptr_t event_hnd, int version,
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const struct cred *cred);
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void vmci_ctx_destroy(struct vmci_ctx *context);
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bool vmci_ctx_supports_host_qp(struct vmci_ctx *context);
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int vmci_ctx_enqueue_datagram(u32 cid, struct vmci_datagram *dg);
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int vmci_ctx_dequeue_datagram(struct vmci_ctx *context,
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size_t *max_size, struct vmci_datagram **dg);
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int vmci_ctx_pending_datagrams(u32 cid, u32 *pending);
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struct vmci_ctx *vmci_ctx_get(u32 cid);
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void vmci_ctx_put(struct vmci_ctx *context);
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bool vmci_ctx_exists(u32 cid);
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int vmci_ctx_add_notification(u32 context_id, u32 remote_cid);
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int vmci_ctx_remove_notification(u32 context_id, u32 remote_cid);
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int vmci_ctx_get_chkpt_state(u32 context_id, u32 cpt_type,
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u32 *num_cids, void **cpt_buf_ptr);
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int vmci_ctx_set_chkpt_state(u32 context_id, u32 cpt_type,
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u32 num_cids, void *cpt_buf);
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int vmci_ctx_qp_create(struct vmci_ctx *context, struct vmci_handle handle);
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int vmci_ctx_qp_destroy(struct vmci_ctx *context, struct vmci_handle handle);
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bool vmci_ctx_qp_exists(struct vmci_ctx *context, struct vmci_handle handle);
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void vmci_ctx_check_signal_notify(struct vmci_ctx *context);
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void vmci_ctx_unset_notify(struct vmci_ctx *context);
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int vmci_ctx_dbell_create(u32 context_id, struct vmci_handle handle);
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int vmci_ctx_dbell_destroy(u32 context_id, struct vmci_handle handle);
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int vmci_ctx_dbell_destroy_all(u32 context_id);
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int vmci_ctx_notify_dbell(u32 cid, struct vmci_handle handle,
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u32 src_priv_flags);
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int vmci_ctx_rcv_notifications_get(u32 context_id, struct vmci_handle_arr
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**db_handle_array, struct vmci_handle_arr
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**qp_handle_array);
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void vmci_ctx_rcv_notifications_release(u32 context_id, struct vmci_handle_arr
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*db_handle_array, struct vmci_handle_arr
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*qp_handle_array, bool success);
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static inline u32 vmci_ctx_get_id(struct vmci_ctx *context)
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{
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if (!context)
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return VMCI_INVALID_ID;
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return context->cid;
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}
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#endif /* _VMCI_CONTEXT_H_ */
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