1 // SPDX-License-Identifier: GPL-2.0
3 #include <linux/atomic.h>
4 #include <linux/bitfield.h>
5 #include <linux/delay.h>
6 #include <linux/dma-mapping.h>
7 #include <linux/interrupt.h>
9 #include <linux/iopoll.h>
10 #include <linux/io-pgtable.h>
11 #include <linux/iommu.h>
12 #include <linux/platform_device.h>
13 #include <linux/pm_runtime.h>
14 #include <linux/shmem_fs.h>
15 #include <linux/sizes.h>
17 #include "panfrost_device.h"
18 #include "panfrost_mmu.h"
19 #include "panfrost_gem.h"
20 #include "panfrost_features.h"
21 #include "panfrost_regs.h"
23 #define mmu_write(dev, reg, data) writel(data, dev->iomem + reg)
24 #define mmu_read(dev, reg) readl(dev->iomem + reg)
26 static int wait_ready(struct panfrost_device *pfdev, u32 as_nr)
31 /* Wait for the MMU status to indicate there is no active command, in
32 * case one is pending. */
33 ret = readl_relaxed_poll_timeout_atomic(pfdev->iomem + AS_STATUS(as_nr),
34 val, !(val & AS_STATUS_AS_ACTIVE), 10, 1000);
37 dev_err(pfdev->dev, "AS_ACTIVE bit stuck\n");
42 static int write_cmd(struct panfrost_device *pfdev, u32 as_nr, u32 cmd)
46 /* write AS_COMMAND when MMU is ready to accept another command */
47 status = wait_ready(pfdev, as_nr);
49 mmu_write(pfdev, AS_COMMAND(as_nr), cmd);
54 static void lock_region(struct panfrost_device *pfdev, u32 as_nr,
55 u64 iova, size_t size)
58 u64 region = iova & PAGE_MASK;
64 * results in the range (11 .. 42)
67 size = round_up(size, PAGE_SIZE);
69 region_width = 10 + fls(size >> PAGE_SHIFT);
70 if ((size >> PAGE_SHIFT) != (1ul << (region_width - 11))) {
71 /* not pow2, so must go up to the next pow2 */
74 region |= region_width;
76 /* Lock the region that needs to be updated */
77 mmu_write(pfdev, AS_LOCKADDR_LO(as_nr), region & 0xFFFFFFFFUL);
78 mmu_write(pfdev, AS_LOCKADDR_HI(as_nr), (region >> 32) & 0xFFFFFFFFUL);
79 write_cmd(pfdev, as_nr, AS_COMMAND_LOCK);
83 static int mmu_hw_do_operation_locked(struct panfrost_device *pfdev, int as_nr,
84 u64 iova, size_t size, u32 op)
89 if (op != AS_COMMAND_UNLOCK)
90 lock_region(pfdev, as_nr, iova, size);
92 /* Run the MMU operation */
93 write_cmd(pfdev, as_nr, op);
95 /* Wait for the flush to complete */
96 return wait_ready(pfdev, as_nr);
99 static int mmu_hw_do_operation(struct panfrost_device *pfdev,
100 struct panfrost_mmu *mmu,
101 u64 iova, size_t size, u32 op)
105 spin_lock(&pfdev->as_lock);
106 ret = mmu_hw_do_operation_locked(pfdev, mmu->as, iova, size, op);
107 spin_unlock(&pfdev->as_lock);
111 static void panfrost_mmu_enable(struct panfrost_device *pfdev, struct panfrost_mmu *mmu)
114 struct io_pgtable_cfg *cfg = &mmu->pgtbl_cfg;
115 u64 transtab = cfg->arm_mali_lpae_cfg.transtab;
116 u64 memattr = cfg->arm_mali_lpae_cfg.memattr;
118 mmu_hw_do_operation_locked(pfdev, as_nr, 0, ~0UL, AS_COMMAND_FLUSH_MEM);
120 mmu_write(pfdev, AS_TRANSTAB_LO(as_nr), transtab & 0xffffffffUL);
121 mmu_write(pfdev, AS_TRANSTAB_HI(as_nr), transtab >> 32);
123 /* Need to revisit mem attrs.
124 * NC is the default, Mali driver is inner WT.
126 mmu_write(pfdev, AS_MEMATTR_LO(as_nr), memattr & 0xffffffffUL);
127 mmu_write(pfdev, AS_MEMATTR_HI(as_nr), memattr >> 32);
129 write_cmd(pfdev, as_nr, AS_COMMAND_UPDATE);
132 static void panfrost_mmu_disable(struct panfrost_device *pfdev, u32 as_nr)
134 mmu_hw_do_operation_locked(pfdev, as_nr, 0, ~0UL, AS_COMMAND_FLUSH_MEM);
136 mmu_write(pfdev, AS_TRANSTAB_LO(as_nr), 0);
137 mmu_write(pfdev, AS_TRANSTAB_HI(as_nr), 0);
139 mmu_write(pfdev, AS_MEMATTR_LO(as_nr), 0);
140 mmu_write(pfdev, AS_MEMATTR_HI(as_nr), 0);
142 write_cmd(pfdev, as_nr, AS_COMMAND_UPDATE);
145 u32 panfrost_mmu_as_get(struct panfrost_device *pfdev, struct panfrost_mmu *mmu)
149 spin_lock(&pfdev->as_lock);
153 int en = atomic_inc_return(&mmu->as_count);
156 * AS can be retained by active jobs or a perfcnt context,
157 * hence the '+ 1' here.
159 WARN_ON(en >= (NUM_JOB_SLOTS + 1));
161 list_move(&mmu->list, &pfdev->as_lru_list);
165 /* Check for a free AS */
166 as = ffz(pfdev->as_alloc_mask);
167 if (!(BIT(as) & pfdev->features.as_present)) {
168 struct panfrost_mmu *lru_mmu;
170 list_for_each_entry_reverse(lru_mmu, &pfdev->as_lru_list, list) {
171 if (!atomic_read(&lru_mmu->as_count))
174 WARN_ON(&lru_mmu->list == &pfdev->as_lru_list);
176 list_del_init(&lru_mmu->list);
183 /* Assign the free or reclaimed AS to the FD */
185 set_bit(as, &pfdev->as_alloc_mask);
186 atomic_set(&mmu->as_count, 1);
187 list_add(&mmu->list, &pfdev->as_lru_list);
189 dev_dbg(pfdev->dev, "Assigned AS%d to mmu %p, alloc_mask=%lx", as, mmu, pfdev->as_alloc_mask);
191 panfrost_mmu_enable(pfdev, mmu);
194 spin_unlock(&pfdev->as_lock);
198 void panfrost_mmu_as_put(struct panfrost_device *pfdev, struct panfrost_mmu *mmu)
200 atomic_dec(&mmu->as_count);
201 WARN_ON(atomic_read(&mmu->as_count) < 0);
204 void panfrost_mmu_reset(struct panfrost_device *pfdev)
206 struct panfrost_mmu *mmu, *mmu_tmp;
208 spin_lock(&pfdev->as_lock);
210 pfdev->as_alloc_mask = 0;
212 list_for_each_entry_safe(mmu, mmu_tmp, &pfdev->as_lru_list, list) {
214 atomic_set(&mmu->as_count, 0);
215 list_del_init(&mmu->list);
218 spin_unlock(&pfdev->as_lock);
220 mmu_write(pfdev, MMU_INT_CLEAR, ~0);
221 mmu_write(pfdev, MMU_INT_MASK, ~0);
224 static size_t get_pgsize(u64 addr, size_t size)
226 if (addr & (SZ_2M - 1) || size < SZ_2M)
232 static void panfrost_mmu_flush_range(struct panfrost_device *pfdev,
233 struct panfrost_mmu *mmu,
234 u64 iova, size_t size)
239 pm_runtime_get_noresume(pfdev->dev);
241 /* Flush the PTs only if we're already awake */
242 if (pm_runtime_active(pfdev->dev))
243 mmu_hw_do_operation(pfdev, mmu, iova, size, AS_COMMAND_FLUSH_PT);
245 pm_runtime_put_sync_autosuspend(pfdev->dev);
248 static int mmu_map_sg(struct panfrost_device *pfdev, struct panfrost_mmu *mmu,
249 u64 iova, int prot, struct sg_table *sgt)
252 struct scatterlist *sgl;
253 struct io_pgtable_ops *ops = mmu->pgtbl_ops;
254 u64 start_iova = iova;
256 for_each_sgtable_dma_sg(sgt, sgl, count) {
257 unsigned long paddr = sg_dma_address(sgl);
258 size_t len = sg_dma_len(sgl);
260 dev_dbg(pfdev->dev, "map: as=%d, iova=%llx, paddr=%lx, len=%zx", mmu->as, iova, paddr, len);
263 size_t pgsize = get_pgsize(iova | paddr, len);
265 ops->map(ops, iova, paddr, pgsize, prot, GFP_KERNEL);
272 panfrost_mmu_flush_range(pfdev, mmu, start_iova, iova - start_iova);
277 int panfrost_mmu_map(struct panfrost_gem_mapping *mapping)
279 struct panfrost_gem_object *bo = mapping->obj;
280 struct drm_gem_object *obj = &bo->base.base;
281 struct panfrost_device *pfdev = to_panfrost_device(obj->dev);
282 struct sg_table *sgt;
283 int prot = IOMMU_READ | IOMMU_WRITE;
285 if (WARN_ON(mapping->active))
289 prot |= IOMMU_NOEXEC;
291 sgt = drm_gem_shmem_get_pages_sgt(obj);
292 if (WARN_ON(IS_ERR(sgt)))
295 mmu_map_sg(pfdev, mapping->mmu, mapping->mmnode.start << PAGE_SHIFT,
297 mapping->active = true;
302 void panfrost_mmu_unmap(struct panfrost_gem_mapping *mapping)
304 struct panfrost_gem_object *bo = mapping->obj;
305 struct drm_gem_object *obj = &bo->base.base;
306 struct panfrost_device *pfdev = to_panfrost_device(obj->dev);
307 struct io_pgtable_ops *ops = mapping->mmu->pgtbl_ops;
308 u64 iova = mapping->mmnode.start << PAGE_SHIFT;
309 size_t len = mapping->mmnode.size << PAGE_SHIFT;
310 size_t unmapped_len = 0;
312 if (WARN_ON(!mapping->active))
315 dev_dbg(pfdev->dev, "unmap: as=%d, iova=%llx, len=%zx",
316 mapping->mmu->as, iova, len);
318 while (unmapped_len < len) {
319 size_t unmapped_page;
320 size_t pgsize = get_pgsize(iova, len - unmapped_len);
322 if (ops->iova_to_phys(ops, iova)) {
323 unmapped_page = ops->unmap(ops, iova, pgsize, NULL);
324 WARN_ON(unmapped_page != pgsize);
327 unmapped_len += pgsize;
330 panfrost_mmu_flush_range(pfdev, mapping->mmu,
331 mapping->mmnode.start << PAGE_SHIFT, len);
332 mapping->active = false;
335 static void mmu_tlb_inv_context_s1(void *cookie)
338 static void mmu_tlb_sync_context(void *cookie)
340 //struct panfrost_device *pfdev = cookie;
341 // TODO: Wait 1000 GPU cycles for HW_ISSUE_6367/T60X
344 static void mmu_tlb_flush_walk(unsigned long iova, size_t size, size_t granule,
347 mmu_tlb_sync_context(cookie);
350 static const struct iommu_flush_ops mmu_tlb_ops = {
351 .tlb_flush_all = mmu_tlb_inv_context_s1,
352 .tlb_flush_walk = mmu_tlb_flush_walk,
355 int panfrost_mmu_pgtable_alloc(struct panfrost_file_priv *priv)
357 struct panfrost_mmu *mmu = &priv->mmu;
358 struct panfrost_device *pfdev = priv->pfdev;
360 INIT_LIST_HEAD(&mmu->list);
363 mmu->pgtbl_cfg = (struct io_pgtable_cfg) {
364 .pgsize_bitmap = SZ_4K | SZ_2M,
365 .ias = FIELD_GET(0xff, pfdev->features.mmu_features),
366 .oas = FIELD_GET(0xff00, pfdev->features.mmu_features),
367 .coherent_walk = pfdev->coherent,
369 .iommu_dev = pfdev->dev,
372 mmu->pgtbl_ops = alloc_io_pgtable_ops(ARM_MALI_LPAE, &mmu->pgtbl_cfg,
380 void panfrost_mmu_pgtable_free(struct panfrost_file_priv *priv)
382 struct panfrost_device *pfdev = priv->pfdev;
383 struct panfrost_mmu *mmu = &priv->mmu;
385 spin_lock(&pfdev->as_lock);
387 pm_runtime_get_noresume(pfdev->dev);
388 if (pm_runtime_active(pfdev->dev))
389 panfrost_mmu_disable(pfdev, mmu->as);
390 pm_runtime_put_autosuspend(pfdev->dev);
392 clear_bit(mmu->as, &pfdev->as_alloc_mask);
393 clear_bit(mmu->as, &pfdev->as_in_use_mask);
394 list_del(&mmu->list);
396 spin_unlock(&pfdev->as_lock);
398 free_io_pgtable_ops(mmu->pgtbl_ops);
401 static struct panfrost_gem_mapping *
402 addr_to_mapping(struct panfrost_device *pfdev, int as, u64 addr)
404 struct panfrost_gem_mapping *mapping = NULL;
405 struct panfrost_file_priv *priv;
406 struct drm_mm_node *node;
407 u64 offset = addr >> PAGE_SHIFT;
408 struct panfrost_mmu *mmu;
410 spin_lock(&pfdev->as_lock);
411 list_for_each_entry(mmu, &pfdev->as_lru_list, list) {
418 priv = container_of(mmu, struct panfrost_file_priv, mmu);
420 spin_lock(&priv->mm_lock);
422 drm_mm_for_each_node(node, &priv->mm) {
423 if (offset >= node->start &&
424 offset < (node->start + node->size)) {
425 mapping = drm_mm_node_to_panfrost_mapping(node);
427 kref_get(&mapping->refcount);
432 spin_unlock(&priv->mm_lock);
434 spin_unlock(&pfdev->as_lock);
438 #define NUM_FAULT_PAGES (SZ_2M / PAGE_SIZE)
440 static int panfrost_mmu_map_fault_addr(struct panfrost_device *pfdev, int as,
444 struct panfrost_gem_mapping *bomapping;
445 struct panfrost_gem_object *bo;
446 struct address_space *mapping;
448 struct sg_table *sgt;
451 bomapping = addr_to_mapping(pfdev, as, addr);
457 dev_WARN(pfdev->dev, "matching BO is not heap type (GPU VA = %llx)",
458 bomapping->mmnode.start << PAGE_SHIFT);
462 WARN_ON(bomapping->mmu->as != as);
464 /* Assume 2MB alignment and size multiple */
465 addr &= ~((u64)SZ_2M - 1);
466 page_offset = addr >> PAGE_SHIFT;
467 page_offset -= bomapping->mmnode.start;
469 mutex_lock(&bo->base.pages_lock);
471 if (!bo->base.pages) {
472 bo->sgts = kvmalloc_array(bo->base.base.size / SZ_2M,
473 sizeof(struct sg_table), GFP_KERNEL | __GFP_ZERO);
475 mutex_unlock(&bo->base.pages_lock);
480 pages = kvmalloc_array(bo->base.base.size >> PAGE_SHIFT,
481 sizeof(struct page *), GFP_KERNEL | __GFP_ZERO);
485 mutex_unlock(&bo->base.pages_lock);
489 bo->base.pages = pages;
490 bo->base.pages_use_count = 1;
492 pages = bo->base.pages;
493 if (pages[page_offset]) {
494 /* Pages are already mapped, bail out. */
495 mutex_unlock(&bo->base.pages_lock);
500 mapping = bo->base.base.filp->f_mapping;
501 mapping_set_unevictable(mapping);
503 for (i = page_offset; i < page_offset + NUM_FAULT_PAGES; i++) {
504 pages[i] = shmem_read_mapping_page(mapping, i);
505 if (IS_ERR(pages[i])) {
506 mutex_unlock(&bo->base.pages_lock);
507 ret = PTR_ERR(pages[i]);
512 mutex_unlock(&bo->base.pages_lock);
514 sgt = &bo->sgts[page_offset / (SZ_2M / PAGE_SIZE)];
515 ret = sg_alloc_table_from_pages(sgt, pages + page_offset,
516 NUM_FAULT_PAGES, 0, SZ_2M, GFP_KERNEL);
520 ret = dma_map_sgtable(pfdev->dev, sgt, DMA_BIDIRECTIONAL, 0);
524 mmu_map_sg(pfdev, bomapping->mmu, addr,
525 IOMMU_WRITE | IOMMU_READ | IOMMU_NOEXEC, sgt);
527 bomapping->active = true;
529 dev_dbg(pfdev->dev, "mapped page fault @ AS%d %llx", as, addr);
532 panfrost_gem_mapping_put(bomapping);
539 drm_gem_shmem_put_pages(&bo->base);
541 drm_gem_object_put(&bo->base.base);
545 static const char *access_type_name(struct panfrost_device *pfdev,
548 switch (fault_status & AS_FAULTSTATUS_ACCESS_TYPE_MASK) {
549 case AS_FAULTSTATUS_ACCESS_TYPE_ATOMIC:
550 if (panfrost_has_hw_feature(pfdev, HW_FEATURE_AARCH64_MMU))
554 case AS_FAULTSTATUS_ACCESS_TYPE_READ:
556 case AS_FAULTSTATUS_ACCESS_TYPE_WRITE:
558 case AS_FAULTSTATUS_ACCESS_TYPE_EX:
566 static irqreturn_t panfrost_mmu_irq_handler(int irq, void *data)
568 struct panfrost_device *pfdev = data;
570 if (!mmu_read(pfdev, MMU_INT_STAT))
573 mmu_write(pfdev, MMU_INT_MASK, 0);
574 return IRQ_WAKE_THREAD;
577 static irqreturn_t panfrost_mmu_irq_handler_thread(int irq, void *data)
579 struct panfrost_device *pfdev = data;
580 u32 status = mmu_read(pfdev, MMU_INT_RAWSTAT);
584 u32 as = ffs(status | (status >> 16)) - 1;
585 u32 mask = BIT(as) | BIT(as + 16);
592 fault_status = mmu_read(pfdev, AS_FAULTSTATUS(as));
593 addr = mmu_read(pfdev, AS_FAULTADDRESS_LO(as));
594 addr |= (u64)mmu_read(pfdev, AS_FAULTADDRESS_HI(as)) << 32;
596 /* decode the fault status */
597 exception_type = fault_status & 0xFF;
598 access_type = (fault_status >> 8) & 0x3;
599 source_id = (fault_status >> 16);
601 mmu_write(pfdev, MMU_INT_CLEAR, mask);
603 /* Page fault only */
605 if ((status & mask) == BIT(as) && (exception_type & 0xF8) == 0xC0)
606 ret = panfrost_mmu_map_fault_addr(pfdev, as, addr);
609 /* terminal fault, print info about the fault */
611 "Unhandled Page fault in AS%d at VA 0x%016llX\n"
613 "raw fault status: 0x%X\n"
614 "decoded fault status: %s\n"
615 "exception type 0x%X: %s\n"
616 "access type 0x%X: %s\n"
621 (fault_status & (1 << 10) ? "DECODER FAULT" : "SLAVE FAULT"),
622 exception_type, panfrost_exception_name(pfdev, exception_type),
623 access_type, access_type_name(pfdev, fault_status),
628 /* If we received new MMU interrupts, process them before returning. */
630 status = mmu_read(pfdev, MMU_INT_RAWSTAT);
633 mmu_write(pfdev, MMU_INT_MASK, ~0);
637 int panfrost_mmu_init(struct panfrost_device *pfdev)
641 irq = platform_get_irq_byname(to_platform_device(pfdev->dev), "mmu");
645 err = devm_request_threaded_irq(pfdev->dev, irq,
646 panfrost_mmu_irq_handler,
647 panfrost_mmu_irq_handler_thread,
648 IRQF_SHARED, KBUILD_MODNAME "-mmu",
652 dev_err(pfdev->dev, "failed to request mmu irq");
659 void panfrost_mmu_fini(struct panfrost_device *pfdev)
661 mmu_write(pfdev, MMU_INT_MASK, 0);