1e860c299SDavid Rientjes // SPDX-License-Identifier: GPL-2.0 2e860c299SDavid Rientjes /* 3e860c299SDavid Rientjes * Copyright (C) 2012 ARM Ltd. 4e860c299SDavid Rientjes * Copyright (C) 2020 Google LLC 5e860c299SDavid Rientjes */ 6d7e673ecSNicolas Saenz Julienne #include <linux/cma.h> 72edc5bb3SDavid Rientjes #include <linux/debugfs.h> 8d7e673ecSNicolas Saenz Julienne #include <linux/dma-contiguous.h> 9e860c299SDavid Rientjes #include <linux/dma-direct.h> 10e860c299SDavid Rientjes #include <linux/dma-noncoherent.h> 11e860c299SDavid Rientjes #include <linux/init.h> 12e860c299SDavid Rientjes #include <linux/genalloc.h> 1376a19940SDavid Rientjes #include <linux/set_memory.h> 14e860c299SDavid Rientjes #include <linux/slab.h> 1554adadf9SDavid Rientjes #include <linux/workqueue.h> 16e860c299SDavid Rientjes 17c84dc6e6SDavid Rientjes static struct gen_pool *atomic_pool_dma __ro_after_init; 182edc5bb3SDavid Rientjes static unsigned long pool_size_dma; 19c84dc6e6SDavid Rientjes static struct gen_pool *atomic_pool_dma32 __ro_after_init; 202edc5bb3SDavid Rientjes static unsigned long pool_size_dma32; 21c84dc6e6SDavid Rientjes static struct gen_pool *atomic_pool_kernel __ro_after_init; 222edc5bb3SDavid Rientjes static unsigned long pool_size_kernel; 23e860c299SDavid Rientjes 241d659236SDavid Rientjes /* Size can be defined by the coherent_pool command line */ 251d659236SDavid Rientjes static size_t atomic_pool_size; 2654adadf9SDavid Rientjes 2754adadf9SDavid Rientjes /* Dynamic background expansion when the atomic pool is near capacity */ 2854adadf9SDavid Rientjes static struct work_struct atomic_pool_work; 29e860c299SDavid Rientjes 30e860c299SDavid Rientjes static int __init early_coherent_pool(char *p) 31e860c299SDavid Rientjes { 32e860c299SDavid Rientjes atomic_pool_size = memparse(p, &p); 33e860c299SDavid Rientjes return 0; 34e860c299SDavid Rientjes } 35e860c299SDavid Rientjes early_param("coherent_pool", early_coherent_pool); 36e860c299SDavid Rientjes 372edc5bb3SDavid Rientjes static void __init dma_atomic_pool_debugfs_init(void) 382edc5bb3SDavid Rientjes { 392edc5bb3SDavid Rientjes struct dentry *root; 402edc5bb3SDavid Rientjes 412edc5bb3SDavid Rientjes root = debugfs_create_dir("dma_pools", NULL); 422edc5bb3SDavid Rientjes if (IS_ERR_OR_NULL(root)) 432edc5bb3SDavid Rientjes return; 442edc5bb3SDavid Rientjes 452edc5bb3SDavid Rientjes debugfs_create_ulong("pool_size_dma", 0400, root, &pool_size_dma); 462edc5bb3SDavid Rientjes debugfs_create_ulong("pool_size_dma32", 0400, root, &pool_size_dma32); 472edc5bb3SDavid Rientjes debugfs_create_ulong("pool_size_kernel", 0400, root, &pool_size_kernel); 482edc5bb3SDavid Rientjes } 492edc5bb3SDavid Rientjes 502edc5bb3SDavid Rientjes static void dma_atomic_pool_size_add(gfp_t gfp, size_t size) 512edc5bb3SDavid Rientjes { 522edc5bb3SDavid Rientjes if (gfp & __GFP_DMA) 532edc5bb3SDavid Rientjes pool_size_dma += size; 542edc5bb3SDavid Rientjes else if (gfp & __GFP_DMA32) 552edc5bb3SDavid Rientjes pool_size_dma32 += size; 562edc5bb3SDavid Rientjes else 572edc5bb3SDavid Rientjes pool_size_kernel += size; 582edc5bb3SDavid Rientjes } 592edc5bb3SDavid Rientjes 60d7e673ecSNicolas Saenz Julienne static bool cma_in_zone(gfp_t gfp) 61d7e673ecSNicolas Saenz Julienne { 62d7e673ecSNicolas Saenz Julienne unsigned long size; 63d7e673ecSNicolas Saenz Julienne phys_addr_t end; 64d7e673ecSNicolas Saenz Julienne struct cma *cma; 65d7e673ecSNicolas Saenz Julienne 66d7e673ecSNicolas Saenz Julienne cma = dev_get_cma_area(NULL); 67d7e673ecSNicolas Saenz Julienne if (!cma) 68d7e673ecSNicolas Saenz Julienne return false; 69d7e673ecSNicolas Saenz Julienne 70d7e673ecSNicolas Saenz Julienne size = cma_get_size(cma); 71d7e673ecSNicolas Saenz Julienne if (!size) 72d7e673ecSNicolas Saenz Julienne return false; 73d7e673ecSNicolas Saenz Julienne 74d7e673ecSNicolas Saenz Julienne /* CMA can't cross zone boundaries, see cma_activate_area() */ 75d7e673ecSNicolas Saenz Julienne end = cma_get_base(cma) + size - 1; 76d7e673ecSNicolas Saenz Julienne if (IS_ENABLED(CONFIG_ZONE_DMA) && (gfp & GFP_DMA)) 77d7e673ecSNicolas Saenz Julienne return end <= DMA_BIT_MASK(zone_dma_bits); 78d7e673ecSNicolas Saenz Julienne if (IS_ENABLED(CONFIG_ZONE_DMA32) && (gfp & GFP_DMA32)) 79d7e673ecSNicolas Saenz Julienne return end <= DMA_BIT_MASK(32); 80d7e673ecSNicolas Saenz Julienne return true; 81d7e673ecSNicolas Saenz Julienne } 82d7e673ecSNicolas Saenz Julienne 8354adadf9SDavid Rientjes static int atomic_pool_expand(struct gen_pool *pool, size_t pool_size, 8454adadf9SDavid Rientjes gfp_t gfp) 85e860c299SDavid Rientjes { 8654adadf9SDavid Rientjes unsigned int order; 87892fc9f6SDan Carpenter struct page *page = NULL; 88e860c299SDavid Rientjes void *addr; 8954adadf9SDavid Rientjes int ret = -ENOMEM; 9054adadf9SDavid Rientjes 9154adadf9SDavid Rientjes /* Cannot allocate larger than MAX_ORDER-1 */ 9254adadf9SDavid Rientjes order = min(get_order(pool_size), MAX_ORDER-1); 9354adadf9SDavid Rientjes 9454adadf9SDavid Rientjes do { 9554adadf9SDavid Rientjes pool_size = 1 << (PAGE_SHIFT + order); 96d7e673ecSNicolas Saenz Julienne if (cma_in_zone(gfp)) 97d7e673ecSNicolas Saenz Julienne page = dma_alloc_from_contiguous(NULL, 1 << order, 98d7e673ecSNicolas Saenz Julienne order, false); 99d7e673ecSNicolas Saenz Julienne if (!page) 100c84dc6e6SDavid Rientjes page = alloc_pages(gfp, order); 10154adadf9SDavid Rientjes } while (!page && order-- > 0); 102e860c299SDavid Rientjes if (!page) 103e860c299SDavid Rientjes goto out; 104e860c299SDavid Rientjes 105c84dc6e6SDavid Rientjes arch_dma_prep_coherent(page, pool_size); 106e860c299SDavid Rientjes 10776a19940SDavid Rientjes #ifdef CONFIG_DMA_DIRECT_REMAP 108c84dc6e6SDavid Rientjes addr = dma_common_contiguous_remap(page, pool_size, 109e860c299SDavid Rientjes pgprot_dmacoherent(PAGE_KERNEL), 110e860c299SDavid Rientjes __builtin_return_address(0)); 111e860c299SDavid Rientjes if (!addr) 11254adadf9SDavid Rientjes goto free_page; 11376a19940SDavid Rientjes #else 11476a19940SDavid Rientjes addr = page_to_virt(page); 11576a19940SDavid Rientjes #endif 11676a19940SDavid Rientjes /* 11776a19940SDavid Rientjes * Memory in the atomic DMA pools must be unencrypted, the pools do not 118*2f5388a2SChristoph Hellwig * shrink so no re-encryption occurs in dma_direct_free(). 11976a19940SDavid Rientjes */ 12076a19940SDavid Rientjes ret = set_memory_decrypted((unsigned long)page_to_virt(page), 12176a19940SDavid Rientjes 1 << order); 12276a19940SDavid Rientjes if (ret) 12376a19940SDavid Rientjes goto remove_mapping; 12454adadf9SDavid Rientjes ret = gen_pool_add_virt(pool, (unsigned long)addr, page_to_phys(page), 12554adadf9SDavid Rientjes pool_size, NUMA_NO_NODE); 126e860c299SDavid Rientjes if (ret) 12776a19940SDavid Rientjes goto encrypt_mapping; 128e860c299SDavid Rientjes 1292edc5bb3SDavid Rientjes dma_atomic_pool_size_add(gfp, pool_size); 130e860c299SDavid Rientjes return 0; 131e860c299SDavid Rientjes 13276a19940SDavid Rientjes encrypt_mapping: 13376a19940SDavid Rientjes ret = set_memory_encrypted((unsigned long)page_to_virt(page), 13476a19940SDavid Rientjes 1 << order); 13576a19940SDavid Rientjes if (WARN_ON_ONCE(ret)) { 13676a19940SDavid Rientjes /* Decrypt succeeded but encrypt failed, purposely leak */ 13776a19940SDavid Rientjes goto out; 13876a19940SDavid Rientjes } 139e860c299SDavid Rientjes remove_mapping: 14076a19940SDavid Rientjes #ifdef CONFIG_DMA_DIRECT_REMAP 141c84dc6e6SDavid Rientjes dma_common_free_remap(addr, pool_size); 14276a19940SDavid Rientjes #endif 14376a19940SDavid Rientjes free_page: __maybe_unused 144c84dc6e6SDavid Rientjes __free_pages(page, order); 145e860c299SDavid Rientjes out: 14654adadf9SDavid Rientjes return ret; 14754adadf9SDavid Rientjes } 14854adadf9SDavid Rientjes 14954adadf9SDavid Rientjes static void atomic_pool_resize(struct gen_pool *pool, gfp_t gfp) 15054adadf9SDavid Rientjes { 15154adadf9SDavid Rientjes if (pool && gen_pool_avail(pool) < atomic_pool_size) 15254adadf9SDavid Rientjes atomic_pool_expand(pool, gen_pool_size(pool), gfp); 15354adadf9SDavid Rientjes } 15454adadf9SDavid Rientjes 15554adadf9SDavid Rientjes static void atomic_pool_work_fn(struct work_struct *work) 15654adadf9SDavid Rientjes { 15754adadf9SDavid Rientjes if (IS_ENABLED(CONFIG_ZONE_DMA)) 15854adadf9SDavid Rientjes atomic_pool_resize(atomic_pool_dma, 15954adadf9SDavid Rientjes GFP_KERNEL | GFP_DMA); 16054adadf9SDavid Rientjes if (IS_ENABLED(CONFIG_ZONE_DMA32)) 16154adadf9SDavid Rientjes atomic_pool_resize(atomic_pool_dma32, 16254adadf9SDavid Rientjes GFP_KERNEL | GFP_DMA32); 16354adadf9SDavid Rientjes atomic_pool_resize(atomic_pool_kernel, GFP_KERNEL); 16454adadf9SDavid Rientjes } 16554adadf9SDavid Rientjes 16654adadf9SDavid Rientjes static __init struct gen_pool *__dma_atomic_pool_init(size_t pool_size, 16754adadf9SDavid Rientjes gfp_t gfp) 16854adadf9SDavid Rientjes { 16954adadf9SDavid Rientjes struct gen_pool *pool; 17054adadf9SDavid Rientjes int ret; 17154adadf9SDavid Rientjes 17254adadf9SDavid Rientjes pool = gen_pool_create(PAGE_SHIFT, NUMA_NO_NODE); 17354adadf9SDavid Rientjes if (!pool) 17454adadf9SDavid Rientjes return NULL; 17554adadf9SDavid Rientjes 17654adadf9SDavid Rientjes gen_pool_set_algo(pool, gen_pool_first_fit_order_align, NULL); 17754adadf9SDavid Rientjes 17854adadf9SDavid Rientjes ret = atomic_pool_expand(pool, pool_size, gfp); 17954adadf9SDavid Rientjes if (ret) { 18054adadf9SDavid Rientjes gen_pool_destroy(pool); 181c84dc6e6SDavid Rientjes pr_err("DMA: failed to allocate %zu KiB %pGg pool for atomic allocation\n", 182c84dc6e6SDavid Rientjes pool_size >> 10, &gfp); 18354adadf9SDavid Rientjes return NULL; 18454adadf9SDavid Rientjes } 18554adadf9SDavid Rientjes 18654adadf9SDavid Rientjes pr_info("DMA: preallocated %zu KiB %pGg pool for atomic allocations\n", 18754adadf9SDavid Rientjes gen_pool_size(pool) >> 10, &gfp); 18854adadf9SDavid Rientjes return pool; 189e860c299SDavid Rientjes } 190c84dc6e6SDavid Rientjes 191c84dc6e6SDavid Rientjes static int __init dma_atomic_pool_init(void) 192c84dc6e6SDavid Rientjes { 193c84dc6e6SDavid Rientjes int ret = 0; 194c84dc6e6SDavid Rientjes 1951d659236SDavid Rientjes /* 1961d659236SDavid Rientjes * If coherent_pool was not used on the command line, default the pool 1971d659236SDavid Rientjes * sizes to 128KB per 1GB of memory, min 128KB, max MAX_ORDER-1. 1981d659236SDavid Rientjes */ 1991d659236SDavid Rientjes if (!atomic_pool_size) { 2003ee06a6dSGeert Uytterhoeven unsigned long pages = totalram_pages() / (SZ_1G / SZ_128K); 2013ee06a6dSGeert Uytterhoeven pages = min_t(unsigned long, pages, MAX_ORDER_NR_PAGES); 2023ee06a6dSGeert Uytterhoeven atomic_pool_size = max_t(size_t, pages << PAGE_SHIFT, SZ_128K); 2031d659236SDavid Rientjes } 20454adadf9SDavid Rientjes INIT_WORK(&atomic_pool_work, atomic_pool_work_fn); 20554adadf9SDavid Rientjes 20654adadf9SDavid Rientjes atomic_pool_kernel = __dma_atomic_pool_init(atomic_pool_size, 207c84dc6e6SDavid Rientjes GFP_KERNEL); 20854adadf9SDavid Rientjes if (!atomic_pool_kernel) 20954adadf9SDavid Rientjes ret = -ENOMEM; 210c84dc6e6SDavid Rientjes if (IS_ENABLED(CONFIG_ZONE_DMA)) { 21154adadf9SDavid Rientjes atomic_pool_dma = __dma_atomic_pool_init(atomic_pool_size, 21254adadf9SDavid Rientjes GFP_KERNEL | GFP_DMA); 21354adadf9SDavid Rientjes if (!atomic_pool_dma) 21454adadf9SDavid Rientjes ret = -ENOMEM; 215c84dc6e6SDavid Rientjes } 216c84dc6e6SDavid Rientjes if (IS_ENABLED(CONFIG_ZONE_DMA32)) { 21754adadf9SDavid Rientjes atomic_pool_dma32 = __dma_atomic_pool_init(atomic_pool_size, 21854adadf9SDavid Rientjes GFP_KERNEL | GFP_DMA32); 21954adadf9SDavid Rientjes if (!atomic_pool_dma32) 22054adadf9SDavid Rientjes ret = -ENOMEM; 221c84dc6e6SDavid Rientjes } 2222edc5bb3SDavid Rientjes 2232edc5bb3SDavid Rientjes dma_atomic_pool_debugfs_init(); 224c84dc6e6SDavid Rientjes return ret; 225c84dc6e6SDavid Rientjes } 226e860c299SDavid Rientjes postcore_initcall(dma_atomic_pool_init); 227e860c299SDavid Rientjes 2289420139fSChristoph Hellwig static inline struct gen_pool *dma_guess_pool(struct gen_pool *prev, gfp_t gfp) 229e860c299SDavid Rientjes { 2309420139fSChristoph Hellwig if (prev == NULL) { 2319420139fSChristoph Hellwig if (IS_ENABLED(CONFIG_ZONE_DMA32) && (gfp & GFP_DMA32)) 232c84dc6e6SDavid Rientjes return atomic_pool_dma32; 2339420139fSChristoph Hellwig if (IS_ENABLED(CONFIG_ZONE_DMA) && (gfp & GFP_DMA)) 2349420139fSChristoph Hellwig return atomic_pool_dma; 235c84dc6e6SDavid Rientjes return atomic_pool_kernel; 236e860c299SDavid Rientjes } 2379420139fSChristoph Hellwig if (prev == atomic_pool_kernel) 2389420139fSChristoph Hellwig return atomic_pool_dma32 ? atomic_pool_dma32 : atomic_pool_dma; 2399420139fSChristoph Hellwig if (prev == atomic_pool_dma32) 24048b67038SNicolas Saenz Julienne return atomic_pool_dma; 24148b67038SNicolas Saenz Julienne return NULL; 24248b67038SNicolas Saenz Julienne } 24348b67038SNicolas Saenz Julienne 2449420139fSChristoph Hellwig static struct page *__dma_alloc_from_pool(struct device *dev, size_t size, 2459420139fSChristoph Hellwig struct gen_pool *pool, void **cpu_addr, 2469420139fSChristoph Hellwig bool (*phys_addr_ok)(struct device *, phys_addr_t, size_t)) 24748b67038SNicolas Saenz Julienne { 2489420139fSChristoph Hellwig unsigned long addr; 24981e9d894SNicolas Saenz Julienne phys_addr_t phys; 250e860c299SDavid Rientjes 2519420139fSChristoph Hellwig addr = gen_pool_alloc(pool, size); 2529420139fSChristoph Hellwig if (!addr) 2539420139fSChristoph Hellwig return NULL; 2549420139fSChristoph Hellwig 2559420139fSChristoph Hellwig phys = gen_pool_virt_to_phys(pool, addr); 2569420139fSChristoph Hellwig if (phys_addr_ok && !phys_addr_ok(dev, phys, size)) { 2579420139fSChristoph Hellwig gen_pool_free(pool, addr, size); 2589420139fSChristoph Hellwig return NULL; 259e860c299SDavid Rientjes } 260e860c299SDavid Rientjes 26154adadf9SDavid Rientjes if (gen_pool_avail(pool) < atomic_pool_size) 26254adadf9SDavid Rientjes schedule_work(&atomic_pool_work); 2639420139fSChristoph Hellwig 2649420139fSChristoph Hellwig *cpu_addr = (void *)addr; 2659420139fSChristoph Hellwig memset(*cpu_addr, 0, size); 2669420139fSChristoph Hellwig return pfn_to_page(__phys_to_pfn(phys)); 26781e9d894SNicolas Saenz Julienne } 268e860c299SDavid Rientjes 2699420139fSChristoph Hellwig struct page *dma_alloc_from_pool(struct device *dev, size_t size, 2709420139fSChristoph Hellwig void **cpu_addr, gfp_t gfp, 2719420139fSChristoph Hellwig bool (*phys_addr_ok)(struct device *, phys_addr_t, size_t)) 2729420139fSChristoph Hellwig { 2739420139fSChristoph Hellwig struct gen_pool *pool = NULL; 2749420139fSChristoph Hellwig struct page *page; 2759420139fSChristoph Hellwig 2769420139fSChristoph Hellwig while ((pool = dma_guess_pool(pool, gfp))) { 2779420139fSChristoph Hellwig page = __dma_alloc_from_pool(dev, size, pool, cpu_addr, 2789420139fSChristoph Hellwig phys_addr_ok); 2799420139fSChristoph Hellwig if (page) 2809420139fSChristoph Hellwig return page; 2819420139fSChristoph Hellwig } 2829420139fSChristoph Hellwig 2839420139fSChristoph Hellwig WARN(1, "Failed to get suitable pool for %s\n", dev_name(dev)); 2849420139fSChristoph Hellwig return NULL; 285e860c299SDavid Rientjes } 286e860c299SDavid Rientjes 287c84dc6e6SDavid Rientjes bool dma_free_from_pool(struct device *dev, void *start, size_t size) 288e860c299SDavid Rientjes { 28981e9d894SNicolas Saenz Julienne struct gen_pool *pool = NULL; 290c84dc6e6SDavid Rientjes 2919420139fSChristoph Hellwig while ((pool = dma_guess_pool(pool, 0))) { 2929420139fSChristoph Hellwig if (!gen_pool_has_addr(pool, (unsigned long)start, size)) 2939420139fSChristoph Hellwig continue; 294c84dc6e6SDavid Rientjes gen_pool_free(pool, (unsigned long)start, size); 295e860c299SDavid Rientjes return true; 296e860c299SDavid Rientjes } 2979420139fSChristoph Hellwig 2989420139fSChristoph Hellwig return false; 29981e9d894SNicolas Saenz Julienne } 300