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// SPDX-License-Identifier: GPL-2.0 or MIT
/* Copyright 2019 Linaro, Ltd, Rob Herring <robh@kernel.org> */
/* Copyright 2023 Collabora ltd. */
#include <linux/cleanup.h>
#include <linux/dma-buf.h>
#include <linux/dma-mapping.h>
#include <linux/err.h>
#include <linux/slab.h>
#include <drm/panthor_drm.h>
#include "panthor_device.h"
#include "panthor_fw.h"
#include "panthor_gem.h"
#include "panthor_mmu.h"
#ifdef CONFIG_DEBUG_FS
static void panthor_gem_debugfs_bo_init(struct panthor_gem_object *bo)
{
INIT_LIST_HEAD(&bo->debugfs.node);
}
static void panthor_gem_debugfs_bo_add(struct panthor_gem_object *bo)
{
struct panthor_device *ptdev = container_of(bo->base.base.dev,
struct panthor_device, base);
bo->debugfs.creator.tgid = current->group_leader->pid;
get_task_comm(bo->debugfs.creator.process_name, current->group_leader);
mutex_lock(&ptdev->gems.lock);
list_add_tail(&bo->debugfs.node, &ptdev->gems.node);
mutex_unlock(&ptdev->gems.lock);
}
static void panthor_gem_debugfs_bo_rm(struct panthor_gem_object *bo)
{
struct panthor_device *ptdev = container_of(bo->base.base.dev,
struct panthor_device, base);
if (list_empty(&bo->debugfs.node))
return;
mutex_lock(&ptdev->gems.lock);
list_del_init(&bo->debugfs.node);
mutex_unlock(&ptdev->gems.lock);
}
static void panthor_gem_debugfs_set_usage_flags(struct panthor_gem_object *bo, u32 usage_flags)
{
bo->debugfs.flags = usage_flags;
panthor_gem_debugfs_bo_add(bo);
}
#else
static void panthor_gem_debugfs_bo_rm(struct panthor_gem_object *bo) {}
static void panthor_gem_debugfs_set_usage_flags(struct panthor_gem_object *bo, u32 usage_flags) {}
static void panthor_gem_debugfs_bo_init(struct panthor_gem_object *bo) {}
#endif
static void panthor_gem_free_object(struct drm_gem_object *obj)
{
struct panthor_gem_object *bo = to_panthor_bo(obj);
struct drm_gem_object *vm_root_gem = bo->exclusive_vm_root_gem;
panthor_gem_debugfs_bo_rm(bo);
/*
* Label might have been allocated with kstrdup_const(),
* we need to take that into account when freeing the memory
*/
kfree_const(bo->label.str);
mutex_destroy(&bo->label.lock);
drm_gem_free_mmap_offset(&bo->base.base);
mutex_destroy(&bo->gpuva_list_lock);
drm_gem_shmem_free(&bo->base);
drm_gem_object_put(vm_root_gem);
}
/**
* panthor_kernel_bo_destroy() - Destroy a kernel buffer object
* @bo: Kernel buffer object to destroy. If NULL or an ERR_PTR(), the destruction
* is skipped.
*/
void panthor_kernel_bo_destroy(struct panthor_kernel_bo *bo)
{
struct panthor_vm *vm;
int ret;
if (IS_ERR_OR_NULL(bo))
return;
vm = bo->vm;
panthor_kernel_bo_vunmap(bo);
if (drm_WARN_ON(bo->obj->dev,
to_panthor_bo(bo->obj)->exclusive_vm_root_gem != panthor_vm_root_gem(vm)))
goto out_free_bo;
ret = panthor_vm_unmap_range(vm, bo->va_node.start, bo->va_node.size);
if (ret)
goto out_free_bo;
panthor_vm_free_va(vm, &bo->va_node);
drm_gem_object_put(bo->obj);
out_free_bo:
panthor_vm_put(vm);
kfree(bo);
}
/**
* panthor_kernel_bo_create() - Create and map a GEM object to a VM
* @ptdev: Device.
* @vm: VM to map the GEM to. If NULL, the kernel object is not GPU mapped.
* @size: Size of the buffer object.
* @bo_flags: Combination of drm_panthor_bo_flags flags.
* @vm_map_flags: Combination of drm_panthor_vm_bind_op_flags (only those
* that are related to map operations).
* @gpu_va: GPU address assigned when mapping to the VM.
* If gpu_va == PANTHOR_VM_KERNEL_AUTO_VA, the virtual address will be
* automatically allocated.
* @name: Descriptive label of the BO's contents
*
* Return: A valid pointer in case of success, an ERR_PTR() otherwise.
*/
struct panthor_kernel_bo *
panthor_kernel_bo_create(struct panthor_device *ptdev, struct panthor_vm *vm,
size_t size, u32 bo_flags, u32 vm_map_flags,
u64 gpu_va, const char *name)
{
struct drm_gem_shmem_object *obj;
struct panthor_kernel_bo *kbo;
struct panthor_gem_object *bo;
u32 debug_flags = PANTHOR_DEBUGFS_GEM_USAGE_FLAG_KERNEL;
int ret;
if (drm_WARN_ON(&ptdev->base, !vm))
return ERR_PTR(-EINVAL);
kbo = kzalloc(sizeof(*kbo), GFP_KERNEL);
if (!kbo)
return ERR_PTR(-ENOMEM);
obj = drm_gem_shmem_create(&ptdev->base, size);
if (IS_ERR(obj)) {
ret = PTR_ERR(obj);
goto err_free_bo;
}
bo = to_panthor_bo(&obj->base);
kbo->obj = &obj->base;
bo->flags = bo_flags;
if (vm == panthor_fw_vm(ptdev))
debug_flags |= PANTHOR_DEBUGFS_GEM_USAGE_FLAG_FW_MAPPED;
panthor_gem_kernel_bo_set_label(kbo, name);
panthor_gem_debugfs_set_usage_flags(to_panthor_bo(kbo->obj), debug_flags);
/* The system and GPU MMU page size might differ, which becomes a
* problem for FW sections that need to be mapped at explicit address
* since our PAGE_SIZE alignment might cover a VA range that's
* expected to be used for another section.
* Make sure we never map more than we need.
*/
size = ALIGN(size, panthor_vm_page_size(vm));
ret = panthor_vm_alloc_va(vm, gpu_va, size, &kbo->va_node);
if (ret)
goto err_put_obj;
ret = panthor_vm_map_bo_range(vm, bo, 0, size, kbo->va_node.start, vm_map_flags);
if (ret)
goto err_free_va;
kbo->vm = panthor_vm_get(vm);
bo->exclusive_vm_root_gem = panthor_vm_root_gem(vm);
drm_gem_object_get(bo->exclusive_vm_root_gem);
bo->base.base.resv = bo->exclusive_vm_root_gem->resv;
return kbo;
err_free_va:
panthor_vm_free_va(vm, &kbo->va_node);
err_put_obj:
drm_gem_object_put(&obj->base);
err_free_bo:
kfree(kbo);
return ERR_PTR(ret);
}
static struct dma_buf *
panthor_gem_prime_export(struct drm_gem_object *obj, int flags)
{
/* We can't export GEMs that have an exclusive VM. */
if (to_panthor_bo(obj)->exclusive_vm_root_gem)
return ERR_PTR(-EINVAL);
return drm_gem_prime_export(obj, flags);
}
static enum drm_gem_object_status panthor_gem_status(struct drm_gem_object *obj)
{
struct panthor_gem_object *bo = to_panthor_bo(obj);
enum drm_gem_object_status res = 0;
if (drm_gem_is_imported(&bo->base.base) || bo->base.pages)
res |= DRM_GEM_OBJECT_RESIDENT;
return res;
}
static const struct drm_gem_object_funcs panthor_gem_funcs = {
.free = panthor_gem_free_object,
.print_info = drm_gem_shmem_object_print_info,
.pin = drm_gem_shmem_object_pin,
.unpin = drm_gem_shmem_object_unpin,
.get_sg_table = drm_gem_shmem_object_get_sg_table,
.vmap = drm_gem_shmem_object_vmap,
.vunmap = drm_gem_shmem_object_vunmap,
.mmap = drm_gem_shmem_object_mmap,
.status = panthor_gem_status,
.export = panthor_gem_prime_export,
.vm_ops = &drm_gem_shmem_vm_ops,
};
/**
* panthor_gem_create_object - Implementation of driver->gem_create_object.
* @ddev: DRM device
* @size: Size in bytes of the memory the object will reference
*
* This lets the GEM helpers allocate object structs for us, and keep
* our BO stats correct.
*/
struct drm_gem_object *panthor_gem_create_object(struct drm_device *ddev, size_t size)
{
struct panthor_device *ptdev = container_of(ddev, struct panthor_device, base);
struct panthor_gem_object *obj;
obj = kzalloc(sizeof(*obj), GFP_KERNEL);
if (!obj)
return ERR_PTR(-ENOMEM);
obj->base.base.funcs = &panthor_gem_funcs;
obj->base.map_wc = !ptdev->coherent;
mutex_init(&obj->gpuva_list_lock);
drm_gem_gpuva_set_lock(&obj->base.base, &obj->gpuva_list_lock);
mutex_init(&obj->label.lock);
panthor_gem_debugfs_bo_init(obj);
return &obj->base.base;
}
/**
* panthor_gem_create_with_handle() - Create a GEM object and attach it to a handle.
* @file: DRM file.
* @ddev: DRM device.
* @exclusive_vm: Exclusive VM. Not NULL if the GEM object can't be shared.
* @size: Size of the GEM object to allocate.
* @flags: Combination of drm_panthor_bo_flags flags.
* @handle: Pointer holding the handle pointing to the new GEM object.
*
* Return: Zero on success
*/
int
panthor_gem_create_with_handle(struct drm_file *file,
struct drm_device *ddev,
struct panthor_vm *exclusive_vm,
u64 *size, u32 flags, u32 *handle)
{
int ret;
struct drm_gem_shmem_object *shmem;
struct panthor_gem_object *bo;
shmem = drm_gem_shmem_create(ddev, *size);
if (IS_ERR(shmem))
return PTR_ERR(shmem);
bo = to_panthor_bo(&shmem->base);
bo->flags = flags;
if (exclusive_vm) {
bo->exclusive_vm_root_gem = panthor_vm_root_gem(exclusive_vm);
drm_gem_object_get(bo->exclusive_vm_root_gem);
bo->base.base.resv = bo->exclusive_vm_root_gem->resv;
}
panthor_gem_debugfs_set_usage_flags(bo, 0);
/*
* Allocate an id of idr table where the obj is registered
* and handle has the id what user can see.
*/
ret = drm_gem_handle_create(file, &shmem->base, handle);
if (!ret)
*size = bo->base.base.size;
/* drop reference from allocate - handle holds it now. */
drm_gem_object_put(&shmem->base);
return ret;
}
void
panthor_gem_bo_set_label(struct drm_gem_object *obj, const char *label)
{
struct panthor_gem_object *bo = to_panthor_bo(obj);
const char *old_label;
scoped_guard(mutex, &bo->label.lock) {
old_label = bo->label.str;
bo->label.str = label;
}
kfree_const(old_label);
}
void
panthor_gem_kernel_bo_set_label(struct panthor_kernel_bo *bo, const char *label)
{
const char *str;
/* We should never attempt labelling a UM-exposed GEM object */
if (drm_WARN_ON(bo->obj->dev, bo->obj->handle_count > 0))
return;
if (!label)
return;
str = kstrdup_const(label, GFP_KERNEL);
if (!str) {
/* Failing to allocate memory for a label isn't a fatal condition */
drm_warn(bo->obj->dev, "Not enough memory to allocate BO label");
return;
}
panthor_gem_bo_set_label(bo->obj, str);
}
#ifdef CONFIG_DEBUG_FS
struct gem_size_totals {
size_t size;
size_t resident;
size_t reclaimable;
};
static void panthor_gem_debugfs_print_flag_names(struct seq_file *m)
{
int len;
int i;
static const char * const gem_state_flags_names[] = {
[PANTHOR_DEBUGFS_GEM_STATE_IMPORTED_BIT] = "imported",
[PANTHOR_DEBUGFS_GEM_STATE_EXPORTED_BIT] = "exported",
};
static const char * const gem_usage_flags_names[] = {
[PANTHOR_DEBUGFS_GEM_USAGE_KERNEL_BIT] = "kernel",
[PANTHOR_DEBUGFS_GEM_USAGE_FW_MAPPED_BIT] = "fw-mapped",
};
seq_puts(m, "GEM state flags: ");
for (i = 0, len = ARRAY_SIZE(gem_state_flags_names); i < len; i++) {
if (!gem_state_flags_names[i])
continue;
seq_printf(m, "%s (0x%x)%s", gem_state_flags_names[i],
(u32)BIT(i), (i < len - 1) ? ", " : "\n");
}
seq_puts(m, "GEM usage flags: ");
for (i = 0, len = ARRAY_SIZE(gem_usage_flags_names); i < len; i++) {
if (!gem_usage_flags_names[i])
continue;
seq_printf(m, "%s (0x%x)%s", gem_usage_flags_names[i],
(u32)BIT(i), (i < len - 1) ? ", " : "\n\n");
}
}
static void panthor_gem_debugfs_bo_print(struct panthor_gem_object *bo,
struct seq_file *m,
struct gem_size_totals *totals)
{
unsigned int refcount = kref_read(&bo->base.base.refcount);
char creator_info[32] = {};
size_t resident_size;
u32 gem_usage_flags = bo->debugfs.flags;
u32 gem_state_flags = 0;
/* Skip BOs being destroyed. */
if (!refcount)
return;
resident_size = bo->base.pages ? bo->base.base.size : 0;
snprintf(creator_info, sizeof(creator_info),
"%s/%d", bo->debugfs.creator.process_name, bo->debugfs.creator.tgid);
seq_printf(m, "%-32s%-16d%-16d%-16zd%-16zd0x%-16lx",
creator_info,
bo->base.base.name,
refcount,
bo->base.base.size,
resident_size,
drm_vma_node_start(&bo->base.base.vma_node));
if (bo->base.base.import_attach)
gem_state_flags |= PANTHOR_DEBUGFS_GEM_STATE_FLAG_IMPORTED;
if (bo->base.base.dma_buf)
gem_state_flags |= PANTHOR_DEBUGFS_GEM_STATE_FLAG_EXPORTED;
seq_printf(m, "0x%-8x 0x%-10x", gem_state_flags, gem_usage_flags);
scoped_guard(mutex, &bo->label.lock) {
seq_printf(m, "%s\n", bo->label.str ? : "");
}
totals->size += bo->base.base.size;
totals->resident += resident_size;
if (bo->base.madv > 0)
totals->reclaimable += resident_size;
}
void panthor_gem_debugfs_print_bos(struct panthor_device *ptdev,
struct seq_file *m)
{
struct gem_size_totals totals = {0};
struct panthor_gem_object *bo;
panthor_gem_debugfs_print_flag_names(m);
seq_puts(m, "created-by global-name refcount size resident-size file-offset state usage label\n");
seq_puts(m, "----------------------------------------------------------------------------------------------------------------------------------------------\n");
scoped_guard(mutex, &ptdev->gems.lock) {
list_for_each_entry(bo, &ptdev->gems.node, debugfs.node) {
panthor_gem_debugfs_bo_print(bo, m, &totals);
}
}
seq_puts(m, "==============================================================================================================================================\n");
seq_printf(m, "Total size: %zd, Total resident: %zd, Total reclaimable: %zd\n",
totals.size, totals.resident, totals.reclaimable);
}
#endif
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