2022-05-09 22:18:59 +02:00
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/*******************************************************************************
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Copyright (c) 2022 NVIDIA Corporation
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Permission is hereby granted, free of charge, to any person obtaining a copy
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of this software and associated documentation files (the "Software"), to
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deal in the Software without restriction, including without limitation the
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rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
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sell copies of the Software, and to permit persons to whom the Software is
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furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be
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included in all copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
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THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
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DEALINGS IN THE SOFTWARE.
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*******************************************************************************/
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#ifndef __UVM_VA_POLICY_H__
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#define __UVM_VA_POLICY_H__
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#include "uvm_linux.h"
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#include "uvm_forward_decl.h"
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#include "uvm_processors.h"
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#include "uvm_range_tree.h"
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2022-10-10 23:59:24 +02:00
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#include "uvm_va_block_types.h"
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2022-05-09 22:18:59 +02:00
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// This enum must be kept in sync with UVM_TEST_READ_DUPLICATION_POLICY in
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// uvm_test_ioctl.h
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typedef enum
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{
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UVM_READ_DUPLICATION_UNSET = 0,
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UVM_READ_DUPLICATION_ENABLED,
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UVM_READ_DUPLICATION_DISABLED,
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UVM_READ_DUPLICATION_MAX
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} uvm_read_duplication_policy_t;
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typedef enum
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{
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UVM_VA_POLICY_PREFERRED_LOCATION = 0,
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UVM_VA_POLICY_ACCESSED_BY,
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UVM_VA_POLICY_READ_DUPLICATION,
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} uvm_va_policy_type_t;
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//
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// A policy covers one or more contiguous Linux VMAs or portion of a VMA and
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// does not cover non-existant VMAs.
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// The VA range is determined from either the uvm_va_range_t for UVM managed
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// allocations or the uvm_va_policy_node_t for HMM allocations.
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//
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typedef struct uvm_va_policy_struct
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{
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// Read duplication policy for this VA range (unset, enabled, or disabled).
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uvm_read_duplication_policy_t read_duplication;
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// Processor ID of the preferred location for this VA range.
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// This is set to UVM_ID_INVALID if no preferred location is set.
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uvm_processor_id_t preferred_location;
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// Mask of processors that are accessing this VA range and should have
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// their page tables updated to access the (possibly remote) pages.
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uvm_processor_mask_t accessed_by;
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} uvm_va_policy_t;
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// Policy nodes are used for storing policies in HMM va_blocks.
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// The va_block lock protects the tree so that invalidation callbacks can
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// update the VA policy tree.
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typedef struct uvm_va_policy_node_struct
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{
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// Storage for the policy tree node. It also contains the range start and
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// end. Start and end + 1 have to be PAGE_SIZED aligned.
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uvm_range_tree_node_t node;
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uvm_va_policy_t policy;
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} uvm_va_policy_node_t;
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// Function pointer prototype for uvm_hmm_split_as_needed() callback.
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typedef bool (*uvm_va_policy_is_split_needed_t)(uvm_va_policy_t *policy, void *data);
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// Default policy to save uvm_va_policy_node_t space in HMM va_blocks.
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extern uvm_va_policy_t uvm_va_policy_default;
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bool uvm_va_policy_is_read_duplicate(uvm_va_policy_t *policy, uvm_va_space_t *va_space);
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// Returns the uvm_va_policy_t containing addr or default policy if not found.
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// The va_block can be either a UVM or HMM va_block.
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// Locking: The va_block lock must be held.
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uvm_va_policy_t *uvm_va_policy_get(uvm_va_block_t *va_block, NvU64 addr);
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#if UVM_IS_CONFIG_HMM()
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// Module load/exit
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NV_STATUS uvm_va_policy_init(void);
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void uvm_va_policy_exit(void);
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// Returns the uvm_va_policy_node_t containing addr or NULL if not found.
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// The va_block must be a HMM va_block.
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// Locking: The va_block lock must be held.
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uvm_va_policy_node_t *uvm_va_policy_node_find(uvm_va_block_t *va_block, NvU64 addr);
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// Split the old node. The old node will end at 'new_end' and the new node will
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// start at 'new_end' + 1 and end at old end.
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// The va_block must be a HMM va_block.
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// Locking: The va_block lock must be held.
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NV_STATUS uvm_va_policy_node_split(uvm_va_block_t *va_block,
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uvm_va_policy_node_t *old,
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NvU64 new_end,
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uvm_va_policy_node_t **new_ptr);
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// Move hints from 'old' to 'new' which must both be HMM va_blocks.
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// The old va_block policies should have been pre-split and since we don't
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// merge policy ranges, they should still be split after locking/unlocking
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// 'old'. This should be called after splitting a block.
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// TODO: Bug 1707562: Add support for merging policy ranges.
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// Locking: The va_block lock must be held for both old and new.
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void uvm_va_policy_node_split_move(uvm_va_block_t *old_va_block,
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uvm_va_block_t *new_va_block);
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// Remove all policy in the given range start/end where 'end' is inclusive.
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// This function may clear a range larger than start/end if clearing the range
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// requires memory allocation and the memory allocation fails.
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// The va_block must be a HMM va_block.
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// Locking: The va_block lock must be held.
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void uvm_va_policy_clear(uvm_va_block_t *va_block, NvU64 start, NvU64 end);
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// Fill in any missing policy nodes for the given range and set the policy
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// to the given value. The caller is expected to split any policy nodes
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// before calling this function so the range being set does not.
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// The va_block must be a HMM va_block.
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// Note that start and end + 1 must be page aligned, 'end' is inclusive.
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// TODO: Bug 1707562: Add support for merging policy ranges.
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// Locking: The va_block lock must be held.
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NV_STATUS uvm_va_policy_set_range(uvm_va_block_t *va_block,
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NvU64 start,
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NvU64 end,
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uvm_va_policy_type_t which,
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bool is_default,
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uvm_processor_id_t processor_id,
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uvm_read_duplication_policy_t new_policy);
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// Iterators for specific VA policy ranges.
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// Returns the first policy node in the range [start, end], if any.
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// The va_block must be a HMM va_block.
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// Locking: The va_block lock must be held.
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uvm_va_policy_node_t *uvm_va_policy_node_iter_first(uvm_va_block_t *va_block, NvU64 start, NvU64 end);
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// Returns the next VA policy following the provided policy in address order,
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// if that policy's start <= the provided end.
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// The va_block must be a HMM va_block.
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// Locking: The va_block lock must be held.
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uvm_va_policy_node_t *uvm_va_policy_node_iter_next(uvm_va_block_t *va_block, uvm_va_policy_node_t *node, NvU64 end);
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#define uvm_for_each_va_policy_node_in(node, va_block, start, end) \
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for ((node) = uvm_va_policy_node_iter_first((va_block), (start), (end)); \
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(node); \
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(node) = uvm_va_policy_node_iter_next((va_block), (node), (end)))
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#define uvm_for_each_va_policy_node_in_safe(node, next, va_block, start, end) \
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for ((node) = uvm_va_policy_node_iter_first((va_block), (start), (end)), \
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(next) = uvm_va_policy_node_iter_next((va_block), (node), (end)); \
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(node); \
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(node) = (next))
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2022-10-10 23:59:24 +02:00
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// Returns the first policy in the range [start, end], if any.
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// Locking: The va_block lock must be held.
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uvm_va_policy_t *uvm_va_policy_iter_first(uvm_va_block_t *va_block,
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NvU64 start,
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NvU64 end,
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uvm_va_policy_node_t **out_node,
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uvm_va_block_region_t *out_region);
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// Returns the next VA policy following the provided policy in address order,
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// if that policy's start <= the provided end.
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// Locking: The va_block lock must be held.
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uvm_va_policy_t *uvm_va_policy_iter_next(uvm_va_block_t *va_block,
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uvm_va_policy_t *policy,
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NvU64 end,
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uvm_va_policy_node_t **inout_node,
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uvm_va_block_region_t *inout_region);
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// Note that policy and region are set and usable in the loop body.
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// The 'node' variable is used to retain loop state and 'policy' doesn't
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// necessarily match &node->policy.
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#define uvm_for_each_va_policy_in(policy, va_block, start, end, node, region) \
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for ((policy) = uvm_va_policy_iter_first((va_block), (start), (end), &(node), &(region)); \
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(policy); \
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(policy) = uvm_va_policy_iter_next((va_block), (policy), (end), &(node), &(region)))
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2022-05-09 22:18:59 +02:00
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#else // UVM_IS_CONFIG_HMM()
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static NV_STATUS uvm_va_policy_init(void)
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{
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return NV_OK;
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}
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static void uvm_va_policy_exit(void)
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{
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}
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static uvm_va_policy_node_t *uvm_va_policy_node_find(uvm_va_block_t *va_block, NvU64 addr)
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{
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UVM_ASSERT(0);
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return NULL;
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}
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static NV_STATUS uvm_va_policy_node_split(uvm_va_block_t *va_block,
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uvm_va_policy_node_t *old,
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NvU64 new_end,
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uvm_va_policy_node_t **new_ptr)
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{
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return NV_OK;
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}
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static void uvm_va_policy_node_split_move(uvm_va_block_t *old_va_block,
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uvm_va_block_t *new_va_block)
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{
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}
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static void uvm_va_policy_clear(uvm_va_block_t *va_block, NvU64 start, NvU64 end)
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{
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}
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static NV_STATUS uvm_va_policy_set_range(uvm_va_block_t *va_block,
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NvU64 start,
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NvU64 end,
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uvm_va_policy_type_t which,
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bool is_default,
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uvm_processor_id_t processor_id,
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uvm_read_duplication_policy_t new_policy)
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{
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return NV_OK;
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}
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#endif // UVM_IS_CONFIG_HMM()
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#endif // __UVM_VA_POLICY_H__
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