11e09f52fSYi Liu /* 21e09f52fSYi Liu * low level and IOMMU backend agnostic helpers used by VFIO devices, 31e09f52fSYi Liu * related to regions, interrupts, capabilities 41e09f52fSYi Liu * 51e09f52fSYi Liu * Copyright Red Hat, Inc. 2012 61e09f52fSYi Liu * 71e09f52fSYi Liu * Authors: 81e09f52fSYi Liu * Alex Williamson <alex.williamson@redhat.com> 91e09f52fSYi Liu * 101e09f52fSYi Liu * This work is licensed under the terms of the GNU GPL, version 2. See 111e09f52fSYi Liu * the COPYING file in the top-level directory. 121e09f52fSYi Liu * 131e09f52fSYi Liu * Based on qemu-kvm device-assignment: 141e09f52fSYi Liu * Adapted for KVM by Qumranet. 151e09f52fSYi Liu * Copyright (c) 2007, Neocleus, Alex Novik (alex@neocleus.com) 161e09f52fSYi Liu * Copyright (c) 2007, Neocleus, Guy Zana (guy@neocleus.com) 171e09f52fSYi Liu * Copyright (C) 2008, Qumranet, Amit Shah (amit.shah@qumranet.com) 181e09f52fSYi Liu * Copyright (C) 2008, Red Hat, Amit Shah (amit.shah@redhat.com) 191e09f52fSYi Liu * Copyright (C) 2008, IBM, Muli Ben-Yehuda (muli@il.ibm.com) 201e09f52fSYi Liu */ 211e09f52fSYi Liu 221e09f52fSYi Liu #include "qemu/osdep.h" 231e09f52fSYi Liu #include <sys/ioctl.h> 241e09f52fSYi Liu 251e09f52fSYi Liu #include "hw/vfio/vfio-common.h" 261e09f52fSYi Liu #include "hw/hw.h" 271e09f52fSYi Liu #include "trace.h" 281e09f52fSYi Liu #include "qapi/error.h" 291e09f52fSYi Liu #include "qemu/error-report.h" 30*00b519c0SAlex Williamson #include "qemu/units.h" 31da3e04b2SZhenzhong Duan #include "monitor/monitor.h" 321e09f52fSYi Liu 331e09f52fSYi Liu /* 341e09f52fSYi Liu * Common VFIO interrupt disable 351e09f52fSYi Liu */ 361e09f52fSYi Liu void vfio_disable_irqindex(VFIODevice *vbasedev, int index) 371e09f52fSYi Liu { 381e09f52fSYi Liu struct vfio_irq_set irq_set = { 391e09f52fSYi Liu .argsz = sizeof(irq_set), 401e09f52fSYi Liu .flags = VFIO_IRQ_SET_DATA_NONE | VFIO_IRQ_SET_ACTION_TRIGGER, 411e09f52fSYi Liu .index = index, 421e09f52fSYi Liu .start = 0, 431e09f52fSYi Liu .count = 0, 441e09f52fSYi Liu }; 451e09f52fSYi Liu 461e09f52fSYi Liu ioctl(vbasedev->fd, VFIO_DEVICE_SET_IRQS, &irq_set); 471e09f52fSYi Liu } 481e09f52fSYi Liu 491e09f52fSYi Liu void vfio_unmask_single_irqindex(VFIODevice *vbasedev, int index) 501e09f52fSYi Liu { 511e09f52fSYi Liu struct vfio_irq_set irq_set = { 521e09f52fSYi Liu .argsz = sizeof(irq_set), 531e09f52fSYi Liu .flags = VFIO_IRQ_SET_DATA_NONE | VFIO_IRQ_SET_ACTION_UNMASK, 541e09f52fSYi Liu .index = index, 551e09f52fSYi Liu .start = 0, 561e09f52fSYi Liu .count = 1, 571e09f52fSYi Liu }; 581e09f52fSYi Liu 591e09f52fSYi Liu ioctl(vbasedev->fd, VFIO_DEVICE_SET_IRQS, &irq_set); 601e09f52fSYi Liu } 611e09f52fSYi Liu 621e09f52fSYi Liu void vfio_mask_single_irqindex(VFIODevice *vbasedev, int index) 631e09f52fSYi Liu { 641e09f52fSYi Liu struct vfio_irq_set irq_set = { 651e09f52fSYi Liu .argsz = sizeof(irq_set), 661e09f52fSYi Liu .flags = VFIO_IRQ_SET_DATA_NONE | VFIO_IRQ_SET_ACTION_MASK, 671e09f52fSYi Liu .index = index, 681e09f52fSYi Liu .start = 0, 691e09f52fSYi Liu .count = 1, 701e09f52fSYi Liu }; 711e09f52fSYi Liu 721e09f52fSYi Liu ioctl(vbasedev->fd, VFIO_DEVICE_SET_IRQS, &irq_set); 731e09f52fSYi Liu } 741e09f52fSYi Liu 751e09f52fSYi Liu static inline const char *action_to_str(int action) 761e09f52fSYi Liu { 771e09f52fSYi Liu switch (action) { 781e09f52fSYi Liu case VFIO_IRQ_SET_ACTION_MASK: 791e09f52fSYi Liu return "MASK"; 801e09f52fSYi Liu case VFIO_IRQ_SET_ACTION_UNMASK: 811e09f52fSYi Liu return "UNMASK"; 821e09f52fSYi Liu case VFIO_IRQ_SET_ACTION_TRIGGER: 831e09f52fSYi Liu return "TRIGGER"; 841e09f52fSYi Liu default: 851e09f52fSYi Liu return "UNKNOWN ACTION"; 861e09f52fSYi Liu } 871e09f52fSYi Liu } 881e09f52fSYi Liu 891e09f52fSYi Liu static const char *index_to_str(VFIODevice *vbasedev, int index) 901e09f52fSYi Liu { 911e09f52fSYi Liu if (vbasedev->type != VFIO_DEVICE_TYPE_PCI) { 921e09f52fSYi Liu return NULL; 931e09f52fSYi Liu } 941e09f52fSYi Liu 951e09f52fSYi Liu switch (index) { 961e09f52fSYi Liu case VFIO_PCI_INTX_IRQ_INDEX: 971e09f52fSYi Liu return "INTX"; 981e09f52fSYi Liu case VFIO_PCI_MSI_IRQ_INDEX: 991e09f52fSYi Liu return "MSI"; 1001e09f52fSYi Liu case VFIO_PCI_MSIX_IRQ_INDEX: 1011e09f52fSYi Liu return "MSIX"; 1021e09f52fSYi Liu case VFIO_PCI_ERR_IRQ_INDEX: 1031e09f52fSYi Liu return "ERR"; 1041e09f52fSYi Liu case VFIO_PCI_REQ_IRQ_INDEX: 1051e09f52fSYi Liu return "REQ"; 1061e09f52fSYi Liu default: 1071e09f52fSYi Liu return NULL; 1081e09f52fSYi Liu } 1091e09f52fSYi Liu } 1101e09f52fSYi Liu 11184e37d02SZhenzhong Duan bool vfio_set_irq_signaling(VFIODevice *vbasedev, int index, int subindex, 1121e09f52fSYi Liu int action, int fd, Error **errp) 1131e09f52fSYi Liu { 11489a8a2e9SZhao Liu ERRP_GUARD(); 11550b632b6SZhenzhong Duan g_autofree struct vfio_irq_set *irq_set = NULL; 11684e37d02SZhenzhong Duan int argsz; 1171e09f52fSYi Liu const char *name; 1181e09f52fSYi Liu int32_t *pfd; 1191e09f52fSYi Liu 1201e09f52fSYi Liu argsz = sizeof(*irq_set) + sizeof(*pfd); 1211e09f52fSYi Liu 1221e09f52fSYi Liu irq_set = g_malloc0(argsz); 1231e09f52fSYi Liu irq_set->argsz = argsz; 1241e09f52fSYi Liu irq_set->flags = VFIO_IRQ_SET_DATA_EVENTFD | action; 1251e09f52fSYi Liu irq_set->index = index; 1261e09f52fSYi Liu irq_set->start = subindex; 1271e09f52fSYi Liu irq_set->count = 1; 1281e09f52fSYi Liu pfd = (int32_t *)&irq_set->data; 1291e09f52fSYi Liu *pfd = fd; 1301e09f52fSYi Liu 13184e37d02SZhenzhong Duan if (!ioctl(vbasedev->fd, VFIO_DEVICE_SET_IRQS, irq_set)) { 13284e37d02SZhenzhong Duan return true; 1331e09f52fSYi Liu } 1341e09f52fSYi Liu 13584e37d02SZhenzhong Duan error_setg_errno(errp, errno, "VFIO_DEVICE_SET_IRQS failure"); 1361e09f52fSYi Liu 1371e09f52fSYi Liu name = index_to_str(vbasedev, index); 1381e09f52fSYi Liu if (name) { 1391e09f52fSYi Liu error_prepend(errp, "%s-%d: ", name, subindex); 1401e09f52fSYi Liu } else { 1411e09f52fSYi Liu error_prepend(errp, "index %d-%d: ", index, subindex); 1421e09f52fSYi Liu } 1431e09f52fSYi Liu error_prepend(errp, 1441e09f52fSYi Liu "Failed to %s %s eventfd signaling for interrupt ", 1451e09f52fSYi Liu fd < 0 ? "tear down" : "set up", action_to_str(action)); 14684e37d02SZhenzhong Duan return false; 1471e09f52fSYi Liu } 1481e09f52fSYi Liu 1491e09f52fSYi Liu /* 1501e09f52fSYi Liu * IO Port/MMIO - Beware of the endians, VFIO is always little endian 1511e09f52fSYi Liu */ 1521e09f52fSYi Liu void vfio_region_write(void *opaque, hwaddr addr, 1531e09f52fSYi Liu uint64_t data, unsigned size) 1541e09f52fSYi Liu { 1551e09f52fSYi Liu VFIORegion *region = opaque; 1561e09f52fSYi Liu VFIODevice *vbasedev = region->vbasedev; 1571e09f52fSYi Liu union { 1581e09f52fSYi Liu uint8_t byte; 1591e09f52fSYi Liu uint16_t word; 1601e09f52fSYi Liu uint32_t dword; 1611e09f52fSYi Liu uint64_t qword; 1621e09f52fSYi Liu } buf; 1631e09f52fSYi Liu 1641e09f52fSYi Liu switch (size) { 1651e09f52fSYi Liu case 1: 1661e09f52fSYi Liu buf.byte = data; 1671e09f52fSYi Liu break; 1681e09f52fSYi Liu case 2: 1691e09f52fSYi Liu buf.word = cpu_to_le16(data); 1701e09f52fSYi Liu break; 1711e09f52fSYi Liu case 4: 1721e09f52fSYi Liu buf.dword = cpu_to_le32(data); 1731e09f52fSYi Liu break; 1741e09f52fSYi Liu case 8: 1751e09f52fSYi Liu buf.qword = cpu_to_le64(data); 1761e09f52fSYi Liu break; 1771e09f52fSYi Liu default: 1781e09f52fSYi Liu hw_error("vfio: unsupported write size, %u bytes", size); 1791e09f52fSYi Liu break; 1801e09f52fSYi Liu } 1811e09f52fSYi Liu 1821e09f52fSYi Liu if (pwrite(vbasedev->fd, &buf, size, region->fd_offset + addr) != size) { 1831e09f52fSYi Liu error_report("%s(%s:region%d+0x%"HWADDR_PRIx", 0x%"PRIx64 1841e09f52fSYi Liu ",%d) failed: %m", 1851e09f52fSYi Liu __func__, vbasedev->name, region->nr, 1861e09f52fSYi Liu addr, data, size); 1871e09f52fSYi Liu } 1881e09f52fSYi Liu 1891e09f52fSYi Liu trace_vfio_region_write(vbasedev->name, region->nr, addr, data, size); 1901e09f52fSYi Liu 1911e09f52fSYi Liu /* 1921e09f52fSYi Liu * A read or write to a BAR always signals an INTx EOI. This will 1931e09f52fSYi Liu * do nothing if not pending (including not in INTx mode). We assume 1941e09f52fSYi Liu * that a BAR access is in response to an interrupt and that BAR 1951e09f52fSYi Liu * accesses will service the interrupt. Unfortunately, we don't know 1961e09f52fSYi Liu * which access will service the interrupt, so we're potentially 1971e09f52fSYi Liu * getting quite a few host interrupts per guest interrupt. 1981e09f52fSYi Liu */ 1991e09f52fSYi Liu vbasedev->ops->vfio_eoi(vbasedev); 2001e09f52fSYi Liu } 2011e09f52fSYi Liu 2021e09f52fSYi Liu uint64_t vfio_region_read(void *opaque, 2031e09f52fSYi Liu hwaddr addr, unsigned size) 2041e09f52fSYi Liu { 2051e09f52fSYi Liu VFIORegion *region = opaque; 2061e09f52fSYi Liu VFIODevice *vbasedev = region->vbasedev; 2071e09f52fSYi Liu union { 2081e09f52fSYi Liu uint8_t byte; 2091e09f52fSYi Liu uint16_t word; 2101e09f52fSYi Liu uint32_t dword; 2111e09f52fSYi Liu uint64_t qword; 2121e09f52fSYi Liu } buf; 2131e09f52fSYi Liu uint64_t data = 0; 2141e09f52fSYi Liu 2151e09f52fSYi Liu if (pread(vbasedev->fd, &buf, size, region->fd_offset + addr) != size) { 2161e09f52fSYi Liu error_report("%s(%s:region%d+0x%"HWADDR_PRIx", %d) failed: %m", 2171e09f52fSYi Liu __func__, vbasedev->name, region->nr, 2181e09f52fSYi Liu addr, size); 2191e09f52fSYi Liu return (uint64_t)-1; 2201e09f52fSYi Liu } 2211e09f52fSYi Liu switch (size) { 2221e09f52fSYi Liu case 1: 2231e09f52fSYi Liu data = buf.byte; 2241e09f52fSYi Liu break; 2251e09f52fSYi Liu case 2: 2261e09f52fSYi Liu data = le16_to_cpu(buf.word); 2271e09f52fSYi Liu break; 2281e09f52fSYi Liu case 4: 2291e09f52fSYi Liu data = le32_to_cpu(buf.dword); 2301e09f52fSYi Liu break; 2311e09f52fSYi Liu case 8: 2321e09f52fSYi Liu data = le64_to_cpu(buf.qword); 2331e09f52fSYi Liu break; 2341e09f52fSYi Liu default: 2351e09f52fSYi Liu hw_error("vfio: unsupported read size, %u bytes", size); 2361e09f52fSYi Liu break; 2371e09f52fSYi Liu } 2381e09f52fSYi Liu 2391e09f52fSYi Liu trace_vfio_region_read(vbasedev->name, region->nr, addr, size, data); 2401e09f52fSYi Liu 2411e09f52fSYi Liu /* Same as write above */ 2421e09f52fSYi Liu vbasedev->ops->vfio_eoi(vbasedev); 2431e09f52fSYi Liu 2441e09f52fSYi Liu return data; 2451e09f52fSYi Liu } 2461e09f52fSYi Liu 2471e09f52fSYi Liu const MemoryRegionOps vfio_region_ops = { 2481e09f52fSYi Liu .read = vfio_region_read, 2491e09f52fSYi Liu .write = vfio_region_write, 2501e09f52fSYi Liu .endianness = DEVICE_LITTLE_ENDIAN, 2511e09f52fSYi Liu .valid = { 2521e09f52fSYi Liu .min_access_size = 1, 2531e09f52fSYi Liu .max_access_size = 8, 2541e09f52fSYi Liu }, 2551e09f52fSYi Liu .impl = { 2561e09f52fSYi Liu .min_access_size = 1, 2571e09f52fSYi Liu .max_access_size = 8, 2581e09f52fSYi Liu }, 2591e09f52fSYi Liu }; 2601e09f52fSYi Liu 2611e09f52fSYi Liu int vfio_bitmap_alloc(VFIOBitmap *vbmap, hwaddr size) 2621e09f52fSYi Liu { 2631e09f52fSYi Liu vbmap->pages = REAL_HOST_PAGE_ALIGN(size) / qemu_real_host_page_size(); 2641e09f52fSYi Liu vbmap->size = ROUND_UP(vbmap->pages, sizeof(__u64) * BITS_PER_BYTE) / 2651e09f52fSYi Liu BITS_PER_BYTE; 2661e09f52fSYi Liu vbmap->bitmap = g_try_malloc0(vbmap->size); 2671e09f52fSYi Liu if (!vbmap->bitmap) { 2681e09f52fSYi Liu return -ENOMEM; 2691e09f52fSYi Liu } 2701e09f52fSYi Liu 2711e09f52fSYi Liu return 0; 2721e09f52fSYi Liu } 2731e09f52fSYi Liu 2741e09f52fSYi Liu struct vfio_info_cap_header * 2751e09f52fSYi Liu vfio_get_cap(void *ptr, uint32_t cap_offset, uint16_t id) 2761e09f52fSYi Liu { 2771e09f52fSYi Liu struct vfio_info_cap_header *hdr; 2781e09f52fSYi Liu 2791e09f52fSYi Liu for (hdr = ptr + cap_offset; hdr != ptr; hdr = ptr + hdr->next) { 2801e09f52fSYi Liu if (hdr->id == id) { 2811e09f52fSYi Liu return hdr; 2821e09f52fSYi Liu } 2831e09f52fSYi Liu } 2841e09f52fSYi Liu 2851e09f52fSYi Liu return NULL; 2861e09f52fSYi Liu } 2871e09f52fSYi Liu 2881e09f52fSYi Liu struct vfio_info_cap_header * 2891e09f52fSYi Liu vfio_get_region_info_cap(struct vfio_region_info *info, uint16_t id) 2901e09f52fSYi Liu { 2911e09f52fSYi Liu if (!(info->flags & VFIO_REGION_INFO_FLAG_CAPS)) { 2921e09f52fSYi Liu return NULL; 2931e09f52fSYi Liu } 2941e09f52fSYi Liu 2951e09f52fSYi Liu return vfio_get_cap((void *)info, info->cap_offset, id); 2961e09f52fSYi Liu } 2971e09f52fSYi Liu 2981e09f52fSYi Liu struct vfio_info_cap_header * 2991e09f52fSYi Liu vfio_get_device_info_cap(struct vfio_device_info *info, uint16_t id) 3001e09f52fSYi Liu { 3011e09f52fSYi Liu if (!(info->flags & VFIO_DEVICE_FLAGS_CAPS)) { 3021e09f52fSYi Liu return NULL; 3031e09f52fSYi Liu } 3041e09f52fSYi Liu 3051e09f52fSYi Liu return vfio_get_cap((void *)info, info->cap_offset, id); 3061e09f52fSYi Liu } 3071e09f52fSYi Liu 3081e09f52fSYi Liu static int vfio_setup_region_sparse_mmaps(VFIORegion *region, 3091e09f52fSYi Liu struct vfio_region_info *info) 3101e09f52fSYi Liu { 3111e09f52fSYi Liu struct vfio_info_cap_header *hdr; 3121e09f52fSYi Liu struct vfio_region_info_cap_sparse_mmap *sparse; 3131e09f52fSYi Liu int i, j; 3141e09f52fSYi Liu 3151e09f52fSYi Liu hdr = vfio_get_region_info_cap(info, VFIO_REGION_INFO_CAP_SPARSE_MMAP); 3161e09f52fSYi Liu if (!hdr) { 3171e09f52fSYi Liu return -ENODEV; 3181e09f52fSYi Liu } 3191e09f52fSYi Liu 3201e09f52fSYi Liu sparse = container_of(hdr, struct vfio_region_info_cap_sparse_mmap, header); 3211e09f52fSYi Liu 3221e09f52fSYi Liu trace_vfio_region_sparse_mmap_header(region->vbasedev->name, 3231e09f52fSYi Liu region->nr, sparse->nr_areas); 3241e09f52fSYi Liu 3251e09f52fSYi Liu region->mmaps = g_new0(VFIOMmap, sparse->nr_areas); 3261e09f52fSYi Liu 3271e09f52fSYi Liu for (i = 0, j = 0; i < sparse->nr_areas; i++) { 3281e09f52fSYi Liu if (sparse->areas[i].size) { 3291e09f52fSYi Liu trace_vfio_region_sparse_mmap_entry(i, sparse->areas[i].offset, 3301e09f52fSYi Liu sparse->areas[i].offset + 3311e09f52fSYi Liu sparse->areas[i].size - 1); 3321e09f52fSYi Liu region->mmaps[j].offset = sparse->areas[i].offset; 3331e09f52fSYi Liu region->mmaps[j].size = sparse->areas[i].size; 3341e09f52fSYi Liu j++; 3351e09f52fSYi Liu } 3361e09f52fSYi Liu } 3371e09f52fSYi Liu 3381e09f52fSYi Liu region->nr_mmaps = j; 3391e09f52fSYi Liu region->mmaps = g_realloc(region->mmaps, j * sizeof(VFIOMmap)); 3401e09f52fSYi Liu 3411e09f52fSYi Liu return 0; 3421e09f52fSYi Liu } 3431e09f52fSYi Liu 3441e09f52fSYi Liu int vfio_region_setup(Object *obj, VFIODevice *vbasedev, VFIORegion *region, 3451e09f52fSYi Liu int index, const char *name) 3461e09f52fSYi Liu { 3470d3e89beSZhenzhong Duan g_autofree struct vfio_region_info *info = NULL; 3481e09f52fSYi Liu int ret; 3491e09f52fSYi Liu 3501e09f52fSYi Liu ret = vfio_get_region_info(vbasedev, index, &info); 3511e09f52fSYi Liu if (ret) { 3521e09f52fSYi Liu return ret; 3531e09f52fSYi Liu } 3541e09f52fSYi Liu 3551e09f52fSYi Liu region->vbasedev = vbasedev; 3561e09f52fSYi Liu region->flags = info->flags; 3571e09f52fSYi Liu region->size = info->size; 3581e09f52fSYi Liu region->fd_offset = info->offset; 3591e09f52fSYi Liu region->nr = index; 3601e09f52fSYi Liu 3611e09f52fSYi Liu if (region->size) { 3621e09f52fSYi Liu region->mem = g_new0(MemoryRegion, 1); 3631e09f52fSYi Liu memory_region_init_io(region->mem, obj, &vfio_region_ops, 3641e09f52fSYi Liu region, name, region->size); 3651e09f52fSYi Liu 3661e09f52fSYi Liu if (!vbasedev->no_mmap && 3671e09f52fSYi Liu region->flags & VFIO_REGION_INFO_FLAG_MMAP) { 3681e09f52fSYi Liu 3691e09f52fSYi Liu ret = vfio_setup_region_sparse_mmaps(region, info); 3701e09f52fSYi Liu 3711e09f52fSYi Liu if (ret) { 3721e09f52fSYi Liu region->nr_mmaps = 1; 3731e09f52fSYi Liu region->mmaps = g_new0(VFIOMmap, region->nr_mmaps); 3741e09f52fSYi Liu region->mmaps[0].offset = 0; 3751e09f52fSYi Liu region->mmaps[0].size = region->size; 3761e09f52fSYi Liu } 3771e09f52fSYi Liu } 3781e09f52fSYi Liu } 3791e09f52fSYi Liu 3801e09f52fSYi Liu trace_vfio_region_setup(vbasedev->name, index, name, 3811e09f52fSYi Liu region->flags, region->fd_offset, region->size); 3821e09f52fSYi Liu return 0; 3831e09f52fSYi Liu } 3841e09f52fSYi Liu 3851e09f52fSYi Liu static void vfio_subregion_unmap(VFIORegion *region, int index) 3861e09f52fSYi Liu { 3871e09f52fSYi Liu trace_vfio_region_unmap(memory_region_name(®ion->mmaps[index].mem), 3881e09f52fSYi Liu region->mmaps[index].offset, 3891e09f52fSYi Liu region->mmaps[index].offset + 3901e09f52fSYi Liu region->mmaps[index].size - 1); 3911e09f52fSYi Liu memory_region_del_subregion(region->mem, ®ion->mmaps[index].mem); 3921e09f52fSYi Liu munmap(region->mmaps[index].mmap, region->mmaps[index].size); 3931e09f52fSYi Liu object_unparent(OBJECT(®ion->mmaps[index].mem)); 3941e09f52fSYi Liu region->mmaps[index].mmap = NULL; 3951e09f52fSYi Liu } 3961e09f52fSYi Liu 3971e09f52fSYi Liu int vfio_region_mmap(VFIORegion *region) 3981e09f52fSYi Liu { 39949915c0dSAlex Williamson int i, ret, prot = 0; 4001e09f52fSYi Liu char *name; 4011e09f52fSYi Liu 4021e09f52fSYi Liu if (!region->mem) { 4031e09f52fSYi Liu return 0; 4041e09f52fSYi Liu } 4051e09f52fSYi Liu 4061e09f52fSYi Liu prot |= region->flags & VFIO_REGION_INFO_FLAG_READ ? PROT_READ : 0; 4071e09f52fSYi Liu prot |= region->flags & VFIO_REGION_INFO_FLAG_WRITE ? PROT_WRITE : 0; 4081e09f52fSYi Liu 4091e09f52fSYi Liu for (i = 0; i < region->nr_mmaps; i++) { 410*00b519c0SAlex Williamson size_t align = MIN(1ULL << ctz64(region->mmaps[i].size), 1 * GiB); 411*00b519c0SAlex Williamson void *map_base, *map_align; 412*00b519c0SAlex Williamson 413*00b519c0SAlex Williamson /* 414*00b519c0SAlex Williamson * Align the mmap for more efficient mapping in the kernel. Ideally 415*00b519c0SAlex Williamson * we'd know the PMD and PUD mapping sizes to use as discrete alignment 416*00b519c0SAlex Williamson * intervals, but we don't. As of Linux v6.12, the largest PUD size 417*00b519c0SAlex Williamson * supporting huge pfnmap is 1GiB (ARCH_SUPPORTS_PUD_PFNMAP is only set 418*00b519c0SAlex Williamson * on x86_64). Align by power-of-two size, capped at 1GiB. 419*00b519c0SAlex Williamson * 420*00b519c0SAlex Williamson * NB. qemu_memalign() and friends actually allocate memory, whereas 421*00b519c0SAlex Williamson * the region size here can exceed host memory, therefore we manually 422*00b519c0SAlex Williamson * create an oversized anonymous mapping and clean it up for alignment. 423*00b519c0SAlex Williamson */ 424*00b519c0SAlex Williamson map_base = mmap(0, region->mmaps[i].size + align, PROT_NONE, 425*00b519c0SAlex Williamson MAP_PRIVATE | MAP_ANONYMOUS, -1, 0); 426*00b519c0SAlex Williamson if (map_base == MAP_FAILED) { 427*00b519c0SAlex Williamson ret = -errno; 428*00b519c0SAlex Williamson goto no_mmap; 429*00b519c0SAlex Williamson } 430*00b519c0SAlex Williamson 431*00b519c0SAlex Williamson map_align = (void *)ROUND_UP((uintptr_t)map_base, (uintptr_t)align); 432*00b519c0SAlex Williamson munmap(map_base, map_align - map_base); 433*00b519c0SAlex Williamson munmap(map_align + region->mmaps[i].size, 434*00b519c0SAlex Williamson align - (map_align - map_base)); 435*00b519c0SAlex Williamson 436*00b519c0SAlex Williamson region->mmaps[i].mmap = mmap(map_align, region->mmaps[i].size, prot, 437*00b519c0SAlex Williamson MAP_SHARED | MAP_FIXED, 438*00b519c0SAlex Williamson region->vbasedev->fd, 4391e09f52fSYi Liu region->fd_offset + 4401e09f52fSYi Liu region->mmaps[i].offset); 4411e09f52fSYi Liu if (region->mmaps[i].mmap == MAP_FAILED) { 44249915c0dSAlex Williamson ret = -errno; 44349915c0dSAlex Williamson goto no_mmap; 4441e09f52fSYi Liu } 4451e09f52fSYi Liu 4461e09f52fSYi Liu name = g_strdup_printf("%s mmaps[%d]", 4471e09f52fSYi Liu memory_region_name(region->mem), i); 4481e09f52fSYi Liu memory_region_init_ram_device_ptr(®ion->mmaps[i].mem, 4491e09f52fSYi Liu memory_region_owner(region->mem), 4501e09f52fSYi Liu name, region->mmaps[i].size, 4511e09f52fSYi Liu region->mmaps[i].mmap); 4521e09f52fSYi Liu g_free(name); 4531e09f52fSYi Liu memory_region_add_subregion(region->mem, region->mmaps[i].offset, 4541e09f52fSYi Liu ®ion->mmaps[i].mem); 4551e09f52fSYi Liu 4561e09f52fSYi Liu trace_vfio_region_mmap(memory_region_name(®ion->mmaps[i].mem), 4571e09f52fSYi Liu region->mmaps[i].offset, 4581e09f52fSYi Liu region->mmaps[i].offset + 4591e09f52fSYi Liu region->mmaps[i].size - 1); 4601e09f52fSYi Liu } 4611e09f52fSYi Liu 4621e09f52fSYi Liu return 0; 46349915c0dSAlex Williamson 46449915c0dSAlex Williamson no_mmap: 46549915c0dSAlex Williamson trace_vfio_region_mmap_fault(memory_region_name(region->mem), i, 46649915c0dSAlex Williamson region->fd_offset + region->mmaps[i].offset, 46749915c0dSAlex Williamson region->fd_offset + region->mmaps[i].offset + 46849915c0dSAlex Williamson region->mmaps[i].size - 1, ret); 46949915c0dSAlex Williamson 47049915c0dSAlex Williamson region->mmaps[i].mmap = NULL; 47149915c0dSAlex Williamson 47249915c0dSAlex Williamson for (i--; i >= 0; i--) { 47349915c0dSAlex Williamson vfio_subregion_unmap(region, i); 47449915c0dSAlex Williamson } 47549915c0dSAlex Williamson 47649915c0dSAlex Williamson return ret; 4771e09f52fSYi Liu } 4781e09f52fSYi Liu 4791e09f52fSYi Liu void vfio_region_unmap(VFIORegion *region) 4801e09f52fSYi Liu { 4811e09f52fSYi Liu int i; 4821e09f52fSYi Liu 4831e09f52fSYi Liu if (!region->mem) { 4841e09f52fSYi Liu return; 4851e09f52fSYi Liu } 4861e09f52fSYi Liu 4871e09f52fSYi Liu for (i = 0; i < region->nr_mmaps; i++) { 4881e09f52fSYi Liu if (region->mmaps[i].mmap) { 4891e09f52fSYi Liu vfio_subregion_unmap(region, i); 4901e09f52fSYi Liu } 4911e09f52fSYi Liu } 4921e09f52fSYi Liu } 4931e09f52fSYi Liu 4941e09f52fSYi Liu void vfio_region_exit(VFIORegion *region) 4951e09f52fSYi Liu { 4961e09f52fSYi Liu int i; 4971e09f52fSYi Liu 4981e09f52fSYi Liu if (!region->mem) { 4991e09f52fSYi Liu return; 5001e09f52fSYi Liu } 5011e09f52fSYi Liu 5021e09f52fSYi Liu for (i = 0; i < region->nr_mmaps; i++) { 5031e09f52fSYi Liu if (region->mmaps[i].mmap) { 5041e09f52fSYi Liu memory_region_del_subregion(region->mem, ®ion->mmaps[i].mem); 5051e09f52fSYi Liu } 5061e09f52fSYi Liu } 5071e09f52fSYi Liu 5081e09f52fSYi Liu trace_vfio_region_exit(region->vbasedev->name, region->nr); 5091e09f52fSYi Liu } 5101e09f52fSYi Liu 5111e09f52fSYi Liu void vfio_region_finalize(VFIORegion *region) 5121e09f52fSYi Liu { 5131e09f52fSYi Liu int i; 5141e09f52fSYi Liu 5151e09f52fSYi Liu if (!region->mem) { 5161e09f52fSYi Liu return; 5171e09f52fSYi Liu } 5181e09f52fSYi Liu 5191e09f52fSYi Liu for (i = 0; i < region->nr_mmaps; i++) { 5201e09f52fSYi Liu if (region->mmaps[i].mmap) { 5211e09f52fSYi Liu munmap(region->mmaps[i].mmap, region->mmaps[i].size); 5221e09f52fSYi Liu object_unparent(OBJECT(®ion->mmaps[i].mem)); 5231e09f52fSYi Liu } 5241e09f52fSYi Liu } 5251e09f52fSYi Liu 5261e09f52fSYi Liu object_unparent(OBJECT(region->mem)); 5271e09f52fSYi Liu 5281e09f52fSYi Liu g_free(region->mem); 5291e09f52fSYi Liu g_free(region->mmaps); 5301e09f52fSYi Liu 5311e09f52fSYi Liu trace_vfio_region_finalize(region->vbasedev->name, region->nr); 5321e09f52fSYi Liu 5331e09f52fSYi Liu region->mem = NULL; 5341e09f52fSYi Liu region->mmaps = NULL; 5351e09f52fSYi Liu region->nr_mmaps = 0; 5361e09f52fSYi Liu region->size = 0; 5371e09f52fSYi Liu region->flags = 0; 5381e09f52fSYi Liu region->nr = 0; 5391e09f52fSYi Liu } 5401e09f52fSYi Liu 5411e09f52fSYi Liu void vfio_region_mmaps_set_enabled(VFIORegion *region, bool enabled) 5421e09f52fSYi Liu { 5431e09f52fSYi Liu int i; 5441e09f52fSYi Liu 5451e09f52fSYi Liu if (!region->mem) { 5461e09f52fSYi Liu return; 5471e09f52fSYi Liu } 5481e09f52fSYi Liu 5491e09f52fSYi Liu for (i = 0; i < region->nr_mmaps; i++) { 5501e09f52fSYi Liu if (region->mmaps[i].mmap) { 5511e09f52fSYi Liu memory_region_set_enabled(®ion->mmaps[i].mem, enabled); 5521e09f52fSYi Liu } 5531e09f52fSYi Liu } 5541e09f52fSYi Liu 5551e09f52fSYi Liu trace_vfio_region_mmaps_set_enabled(memory_region_name(region->mem), 5561e09f52fSYi Liu enabled); 5571e09f52fSYi Liu } 5581e09f52fSYi Liu 5591e09f52fSYi Liu int vfio_get_region_info(VFIODevice *vbasedev, int index, 5601e09f52fSYi Liu struct vfio_region_info **info) 5611e09f52fSYi Liu { 5621e09f52fSYi Liu size_t argsz = sizeof(struct vfio_region_info); 5631e09f52fSYi Liu 5641e09f52fSYi Liu *info = g_malloc0(argsz); 5651e09f52fSYi Liu 5661e09f52fSYi Liu (*info)->index = index; 5671e09f52fSYi Liu retry: 5681e09f52fSYi Liu (*info)->argsz = argsz; 5691e09f52fSYi Liu 5701e09f52fSYi Liu if (ioctl(vbasedev->fd, VFIO_DEVICE_GET_REGION_INFO, *info)) { 5711e09f52fSYi Liu g_free(*info); 5721e09f52fSYi Liu *info = NULL; 5731e09f52fSYi Liu return -errno; 5741e09f52fSYi Liu } 5751e09f52fSYi Liu 5761e09f52fSYi Liu if ((*info)->argsz > argsz) { 5771e09f52fSYi Liu argsz = (*info)->argsz; 5781e09f52fSYi Liu *info = g_realloc(*info, argsz); 5791e09f52fSYi Liu 5801e09f52fSYi Liu goto retry; 5811e09f52fSYi Liu } 5821e09f52fSYi Liu 5831e09f52fSYi Liu return 0; 5841e09f52fSYi Liu } 5851e09f52fSYi Liu 5861e09f52fSYi Liu int vfio_get_dev_region_info(VFIODevice *vbasedev, uint32_t type, 5871e09f52fSYi Liu uint32_t subtype, struct vfio_region_info **info) 5881e09f52fSYi Liu { 5891e09f52fSYi Liu int i; 5901e09f52fSYi Liu 5911e09f52fSYi Liu for (i = 0; i < vbasedev->num_regions; i++) { 5921e09f52fSYi Liu struct vfio_info_cap_header *hdr; 5931e09f52fSYi Liu struct vfio_region_info_cap_type *cap_type; 5941e09f52fSYi Liu 5951e09f52fSYi Liu if (vfio_get_region_info(vbasedev, i, info)) { 5961e09f52fSYi Liu continue; 5971e09f52fSYi Liu } 5981e09f52fSYi Liu 5991e09f52fSYi Liu hdr = vfio_get_region_info_cap(*info, VFIO_REGION_INFO_CAP_TYPE); 6001e09f52fSYi Liu if (!hdr) { 6011e09f52fSYi Liu g_free(*info); 6021e09f52fSYi Liu continue; 6031e09f52fSYi Liu } 6041e09f52fSYi Liu 6051e09f52fSYi Liu cap_type = container_of(hdr, struct vfio_region_info_cap_type, header); 6061e09f52fSYi Liu 6071e09f52fSYi Liu trace_vfio_get_dev_region(vbasedev->name, i, 6081e09f52fSYi Liu cap_type->type, cap_type->subtype); 6091e09f52fSYi Liu 6101e09f52fSYi Liu if (cap_type->type == type && cap_type->subtype == subtype) { 6111e09f52fSYi Liu return 0; 6121e09f52fSYi Liu } 6131e09f52fSYi Liu 6141e09f52fSYi Liu g_free(*info); 6151e09f52fSYi Liu } 6161e09f52fSYi Liu 6171e09f52fSYi Liu *info = NULL; 6181e09f52fSYi Liu return -ENODEV; 6191e09f52fSYi Liu } 6201e09f52fSYi Liu 6211e09f52fSYi Liu bool vfio_has_region_cap(VFIODevice *vbasedev, int region, uint16_t cap_type) 6221e09f52fSYi Liu { 6230d3e89beSZhenzhong Duan g_autofree struct vfio_region_info *info = NULL; 6241e09f52fSYi Liu bool ret = false; 6251e09f52fSYi Liu 6261e09f52fSYi Liu if (!vfio_get_region_info(vbasedev, region, &info)) { 6271e09f52fSYi Liu if (vfio_get_region_info_cap(info, cap_type)) { 6281e09f52fSYi Liu ret = true; 6291e09f52fSYi Liu } 6301e09f52fSYi Liu } 6311e09f52fSYi Liu 6321e09f52fSYi Liu return ret; 6331e09f52fSYi Liu } 634da3e04b2SZhenzhong Duan 635c6c6cf91SZhenzhong Duan bool vfio_device_get_name(VFIODevice *vbasedev, Error **errp) 636da3e04b2SZhenzhong Duan { 63789a8a2e9SZhao Liu ERRP_GUARD(); 638da3e04b2SZhenzhong Duan struct stat st; 639da3e04b2SZhenzhong Duan 640da3e04b2SZhenzhong Duan if (vbasedev->fd < 0) { 641da3e04b2SZhenzhong Duan if (stat(vbasedev->sysfsdev, &st) < 0) { 642da3e04b2SZhenzhong Duan error_setg_errno(errp, errno, "no such host device"); 643da3e04b2SZhenzhong Duan error_prepend(errp, VFIO_MSG_PREFIX, vbasedev->sysfsdev); 644c6c6cf91SZhenzhong Duan return false; 645da3e04b2SZhenzhong Duan } 646da3e04b2SZhenzhong Duan /* User may specify a name, e.g: VFIO platform device */ 647da3e04b2SZhenzhong Duan if (!vbasedev->name) { 648da3e04b2SZhenzhong Duan vbasedev->name = g_path_get_basename(vbasedev->sysfsdev); 649da3e04b2SZhenzhong Duan } 650da3e04b2SZhenzhong Duan } else { 651da3e04b2SZhenzhong Duan if (!vbasedev->iommufd) { 652da3e04b2SZhenzhong Duan error_setg(errp, "Use FD passing only with iommufd backend"); 653c6c6cf91SZhenzhong Duan return false; 654da3e04b2SZhenzhong Duan } 655da3e04b2SZhenzhong Duan /* 656da3e04b2SZhenzhong Duan * Give a name with fd so any function printing out vbasedev->name 657da3e04b2SZhenzhong Duan * will not break. 658da3e04b2SZhenzhong Duan */ 659da3e04b2SZhenzhong Duan if (!vbasedev->name) { 660da3e04b2SZhenzhong Duan vbasedev->name = g_strdup_printf("VFIO_FD%d", vbasedev->fd); 661da3e04b2SZhenzhong Duan } 662da3e04b2SZhenzhong Duan } 663da3e04b2SZhenzhong Duan 664c6c6cf91SZhenzhong Duan return true; 665da3e04b2SZhenzhong Duan } 666da3e04b2SZhenzhong Duan 667da3e04b2SZhenzhong Duan void vfio_device_set_fd(VFIODevice *vbasedev, const char *str, Error **errp) 668da3e04b2SZhenzhong Duan { 66989a8a2e9SZhao Liu ERRP_GUARD(); 670da3e04b2SZhenzhong Duan int fd = monitor_fd_param(monitor_cur(), str, errp); 671da3e04b2SZhenzhong Duan 672da3e04b2SZhenzhong Duan if (fd < 0) { 673da3e04b2SZhenzhong Duan error_prepend(errp, "Could not parse remote object fd %s:", str); 674da3e04b2SZhenzhong Duan return; 675da3e04b2SZhenzhong Duan } 676da3e04b2SZhenzhong Duan vbasedev->fd = fd; 677da3e04b2SZhenzhong Duan } 6786106a329SZhenzhong Duan 6796106a329SZhenzhong Duan void vfio_device_init(VFIODevice *vbasedev, int type, VFIODeviceOps *ops, 6806106a329SZhenzhong Duan DeviceState *dev, bool ram_discard) 6816106a329SZhenzhong Duan { 6826106a329SZhenzhong Duan vbasedev->type = type; 6836106a329SZhenzhong Duan vbasedev->ops = ops; 6846106a329SZhenzhong Duan vbasedev->dev = dev; 6856106a329SZhenzhong Duan vbasedev->fd = -1; 6866106a329SZhenzhong Duan 6876106a329SZhenzhong Duan vbasedev->ram_block_discard_allowed = ram_discard; 6886106a329SZhenzhong Duan } 689d441e05eSZhenzhong Duan 690d441e05eSZhenzhong Duan int vfio_device_get_aw_bits(VFIODevice *vdev) 691d441e05eSZhenzhong Duan { 692d441e05eSZhenzhong Duan /* 693d441e05eSZhenzhong Duan * iova_ranges is a sorted list. For old kernels that support 694d441e05eSZhenzhong Duan * VFIO but not support query of iova ranges, iova_ranges is NULL, 695d441e05eSZhenzhong Duan * in this case HOST_IOMMU_DEVICE_CAP_AW_BITS_MAX(64) is returned. 696d441e05eSZhenzhong Duan */ 697d441e05eSZhenzhong Duan GList *l = g_list_last(vdev->bcontainer->iova_ranges); 698d441e05eSZhenzhong Duan 699d441e05eSZhenzhong Duan if (l) { 700d441e05eSZhenzhong Duan Range *range = l->data; 701d441e05eSZhenzhong Duan return range_get_last_bit(range) + 1; 702d441e05eSZhenzhong Duan } 703d441e05eSZhenzhong Duan 704d441e05eSZhenzhong Duan return HOST_IOMMU_DEVICE_CAP_AW_BITS_MAX; 705d441e05eSZhenzhong Duan } 70613e522f6SJoao Martins 70713e522f6SJoao Martins bool vfio_device_is_mdev(VFIODevice *vbasedev) 70813e522f6SJoao Martins { 70913e522f6SJoao Martins g_autofree char *subsys = NULL; 71013e522f6SJoao Martins g_autofree char *tmp = NULL; 71113e522f6SJoao Martins 71213e522f6SJoao Martins if (!vbasedev->sysfsdev) { 71313e522f6SJoao Martins return false; 71413e522f6SJoao Martins } 71513e522f6SJoao Martins 71613e522f6SJoao Martins tmp = g_strdup_printf("%s/subsystem", vbasedev->sysfsdev); 71713e522f6SJoao Martins subsys = realpath(tmp, NULL); 71813e522f6SJoao Martins return subsys && (strcmp(subsys, "/sys/bus/mdev") == 0); 71913e522f6SJoao Martins } 72083a4d596SJoao Martins 72183a4d596SJoao Martins bool vfio_device_hiod_realize(VFIODevice *vbasedev, Error **errp) 72283a4d596SJoao Martins { 72383a4d596SJoao Martins HostIOMMUDevice *hiod = vbasedev->hiod; 72483a4d596SJoao Martins 72583a4d596SJoao Martins if (!hiod) { 72683a4d596SJoao Martins return true; 72783a4d596SJoao Martins } 72883a4d596SJoao Martins 72983a4d596SJoao Martins return HOST_IOMMU_DEVICE_GET_CLASS(hiod)->realize(hiod, vbasedev, errp); 73083a4d596SJoao Martins } 731