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X-Received-From: 2607:f8b0:4864:20::443 Subject: [Qemu-devel] [PATCH v6 4/7] libvhost-user: Support tracking inflight I/O in shared memory X-BeenThere: qemu-devel@nongnu.org X-Mailman-Version: 2.1.21 Precedence: list List-Id: List-Unsubscribe: , List-Archive: List-Post: List-Help: List-Subscribe: , Cc: nixun@baidu.com, qemu-devel@nongnu.org, lilin24@baidu.com, zhangyu31@baidu.com, chaiwen@baidu.com, Xie Yongji Errors-To: qemu-devel-bounces+patchwork-qemu-devel=patchwork.kernel.org@nongnu.org Sender: "Qemu-devel" X-Virus-Scanned: ClamAV using ClamSMTP From: Xie Yongji This patch adds support for VHOST_USER_GET_INFLIGHT_FD and VHOST_USER_SET_INFLIGHT_FD message to set/get shared buffer to/from qemu. Then backend can track inflight I/O in this buffer. Signed-off-by: Xie Yongji Signed-off-by: Zhang Yu --- Makefile | 2 +- contrib/libvhost-user/libvhost-user.c | 300 ++++++++++++++++++++++++-- contrib/libvhost-user/libvhost-user.h | 58 +++++ 3 files changed, 339 insertions(+), 21 deletions(-) diff --git a/Makefile b/Makefile index 3658310b95..8469bd94fb 100644 --- a/Makefile +++ b/Makefile @@ -477,7 +477,7 @@ Makefile: $(version-obj-y) # Build libraries libqemuutil.a: $(util-obj-y) $(trace-obj-y) $(stub-obj-y) -libvhost-user.a: $(libvhost-user-obj-y) +libvhost-user.a: $(libvhost-user-obj-y) $(util-obj-y) $(stub-obj-y) ###################################################################### diff --git a/contrib/libvhost-user/libvhost-user.c b/contrib/libvhost-user/libvhost-user.c index ea0f414b6d..c20850e890 100644 --- a/contrib/libvhost-user/libvhost-user.c +++ b/contrib/libvhost-user/libvhost-user.c @@ -41,6 +41,8 @@ #endif #include "qemu/atomic.h" +#include "qemu/osdep.h" +#include "qemu/memfd.h" #include "libvhost-user.h" @@ -53,6 +55,18 @@ _min1 < _min2 ? _min1 : _min2; }) #endif +/* Round number down to multiple */ +#define ALIGN_DOWN(n, m) ((n) / (m) * (m)) + +/* Round number up to multiple */ +#define ALIGN_UP(n, m) ALIGN_DOWN((n) + (m) - 1, (m)) + +/* Align each region to cache line size in inflight buffer */ +#define INFLIGHT_ALIGNMENT 64 + +/* The version of inflight buffer */ +#define INFLIGHT_VERSION 1 + #define VHOST_USER_HDR_SIZE offsetof(VhostUserMsg, payload.u64) /* The version of the protocol we support */ @@ -66,6 +80,20 @@ } \ } while (0) +static inline +bool has_feature(uint64_t features, unsigned int fbit) +{ + assert(fbit < 64); + return !!(features & (1ULL << fbit)); +} + +static inline +bool vu_has_feature(VuDev *dev, + unsigned int fbit) +{ + return has_feature(dev->features, fbit); +} + static const char * vu_request_to_string(unsigned int req) { @@ -100,6 +128,8 @@ vu_request_to_string(unsigned int req) REQ(VHOST_USER_POSTCOPY_ADVISE), REQ(VHOST_USER_POSTCOPY_LISTEN), REQ(VHOST_USER_POSTCOPY_END), + REQ(VHOST_USER_GET_INFLIGHT_FD), + REQ(VHOST_USER_SET_INFLIGHT_FD), REQ(VHOST_USER_MAX), }; #undef REQ @@ -890,6 +920,55 @@ vu_check_queue_msg_file(VuDev *dev, VhostUserMsg *vmsg) return true; } +static int +vu_check_queue_inflights(VuDev *dev, VuVirtq *vq) +{ + int i = 0; + + if (!has_feature(dev->protocol_features, + VHOST_USER_PROTOCOL_F_INFLIGHT_SHMFD)) { + return 0; + } + + if (unlikely(!vq->inflight)) { + return -1; + } + + if (unlikely(!vq->inflight->version)) { + /* initialize the buffer */ + vq->inflight->version = INFLIGHT_VERSION; + return 0; + } + + vq->used_idx = vq->vring.used->idx; + vq->inflight_num = 0; + + if (unlikely(vq->inflight->used_idx != vq->used_idx)) { + vq->inflight->desc[vq->inflight->process_head].inflight = 0; + + barrier(); + + vq->inflight->used_idx = vq->used_idx; + } + + for (i = 0; i < vq->inflight->desc_num; i++) { + if (vq->inflight->desc[i].inflight == 0) { + continue; + } + + vq->inflight_desc[vq->inflight_num++] = i; + vq->inuse++; + } + vq->shadow_avail_idx = vq->last_avail_idx = vq->inuse + vq->used_idx; + + /* in case of I/O hang after reconnecting */ + if (eventfd_write(vq->kick_fd, 1)) { + return -1; + } + + return 0; +} + static bool vu_set_vring_kick_exec(VuDev *dev, VhostUserMsg *vmsg) { @@ -923,6 +1002,10 @@ vu_set_vring_kick_exec(VuDev *dev, VhostUserMsg *vmsg) dev->vq[index].kick_fd, index); } + if (vu_check_queue_inflights(dev, &dev->vq[index])) { + vu_panic(dev, "Failed to check inflights for vq: %d\n", index); + } + return false; } @@ -995,6 +1078,11 @@ vu_set_vring_call_exec(VuDev *dev, VhostUserMsg *vmsg) dev->vq[index].call_fd = vmsg->fds[0]; + /* in case of I/O hang after reconnecting */ + if (eventfd_write(vmsg->fds[0], 1)) { + return -1; + } + DPRINT("Got call_fd: %d for vq: %d\n", vmsg->fds[0], index); return false; @@ -1209,6 +1297,116 @@ vu_set_postcopy_end(VuDev *dev, VhostUserMsg *vmsg) return true; } +static inline uint64_t +vu_inflight_queue_size(uint16_t queue_size) +{ + return ALIGN_UP(sizeof(VuDescStateSplit) * queue_size + + sizeof(uint16_t), INFLIGHT_ALIGNMENT); +} + +static bool +vu_get_inflight_fd(VuDev *dev, VhostUserMsg *vmsg) +{ + int fd; + void *addr; + uint64_t mmap_size; + uint16_t num_queues, queue_size; + + if (vmsg->size != sizeof(vmsg->payload.inflight)) { + vu_panic(dev, "Invalid get_inflight_fd message:%d", vmsg->size); + vmsg->payload.inflight.mmap_size = 0; + return true; + } + + num_queues = vmsg->payload.inflight.num_queues; + queue_size = vmsg->payload.inflight.queue_size; + + DPRINT("set_inflight_fd num_queues: %"PRId16"\n", num_queues); + DPRINT("set_inflight_fd queue_size: %"PRId16"\n", queue_size); + + mmap_size = vu_inflight_queue_size(queue_size) * num_queues; + + addr = qemu_memfd_alloc("vhost-inflight", mmap_size, + F_SEAL_GROW | F_SEAL_SHRINK | F_SEAL_SEAL, + &fd, NULL); + + if (!addr) { + vu_panic(dev, "Failed to alloc vhost inflight area"); + vmsg->payload.inflight.mmap_size = 0; + return true; + } + + memset(addr, 0, mmap_size); + + dev->inflight_info.addr = addr; + dev->inflight_info.size = vmsg->payload.inflight.mmap_size = mmap_size; + dev->inflight_info.fd = vmsg->fds[0] = fd; + vmsg->fd_num = 1; + vmsg->payload.inflight.mmap_offset = 0; + + DPRINT("send inflight mmap_size: %"PRId64"\n", + vmsg->payload.inflight.mmap_size); + DPRINT("send inflight mmap offset: %"PRId64"\n", + vmsg->payload.inflight.mmap_offset); + + return true; +} + +static bool +vu_set_inflight_fd(VuDev *dev, VhostUserMsg *vmsg) +{ + int fd, i; + uint64_t mmap_size, mmap_offset; + uint16_t num_queues, queue_size; + void *rc; + + if (vmsg->fd_num != 1 || + vmsg->size != sizeof(vmsg->payload.inflight)) { + vu_panic(dev, "Invalid set_inflight_fd message size:%d fds:%d", + vmsg->size, vmsg->fd_num); + return false; + } + + fd = vmsg->fds[0]; + mmap_size = vmsg->payload.inflight.mmap_size; + mmap_offset = vmsg->payload.inflight.mmap_offset; + num_queues = vmsg->payload.inflight.num_queues; + queue_size = vmsg->payload.inflight.queue_size; + + DPRINT("set_inflight_fd mmap_size: %"PRId64"\n", mmap_size); + DPRINT("set_inflight_fd mmap_offset: %"PRId64"\n", mmap_offset); + DPRINT("set_inflight_fd num_queues: %"PRId16"\n", num_queues); + DPRINT("set_inflight_fd queue_size: %"PRId16"\n", queue_size); + + rc = mmap(0, mmap_size, PROT_READ | PROT_WRITE, MAP_SHARED, + fd, mmap_offset); + + if (rc == MAP_FAILED) { + vu_panic(dev, "set_inflight_fd mmap error: %s", strerror(errno)); + return false; + } + + if (dev->inflight_info.fd) { + close(dev->inflight_info.fd); + } + + if (dev->inflight_info.addr) { + munmap(dev->inflight_info.addr, dev->inflight_info.size); + } + + dev->inflight_info.fd = fd; + dev->inflight_info.addr = rc; + dev->inflight_info.size = mmap_size; + + for (i = 0; i < num_queues; i++) { + dev->vq[i].inflight = (VuVirtqInflight *)rc; + dev->vq[i].inflight->desc_num = queue_size; + rc = (void *)((char *)rc + vu_inflight_queue_size(queue_size)); + } + + return false; +} + static bool vu_process_message(VuDev *dev, VhostUserMsg *vmsg) { @@ -1286,6 +1484,10 @@ vu_process_message(VuDev *dev, VhostUserMsg *vmsg) return vu_set_postcopy_listen(dev, vmsg); case VHOST_USER_POSTCOPY_END: return vu_set_postcopy_end(dev, vmsg); + case VHOST_USER_GET_INFLIGHT_FD: + return vu_get_inflight_fd(dev, vmsg); + case VHOST_USER_SET_INFLIGHT_FD: + return vu_set_inflight_fd(dev, vmsg); default: vmsg_close_fds(vmsg); vu_panic(dev, "Unhandled request: %d", vmsg->request); @@ -1353,8 +1555,18 @@ vu_deinit(VuDev *dev) close(vq->err_fd); vq->err_fd = -1; } + vq->inflight = NULL; + } + + if (dev->inflight_info.addr) { + munmap(dev->inflight_info.addr, dev->inflight_info.size); + dev->inflight_info.addr = NULL; } + if (dev->inflight_info.fd > 0) { + close(dev->inflight_info.fd); + dev->inflight_info.fd = -1; + } vu_close_log(dev); if (dev->slave_fd != -1) { @@ -1681,20 +1893,6 @@ vu_queue_empty(VuDev *dev, VuVirtq *vq) return vring_avail_idx(vq) == vq->last_avail_idx; } -static inline -bool has_feature(uint64_t features, unsigned int fbit) -{ - assert(fbit < 64); - return !!(features & (1ULL << fbit)); -} - -static inline -bool vu_has_feature(VuDev *dev, - unsigned int fbit) -{ - return has_feature(dev->features, fbit); -} - static bool vring_notify(VuDev *dev, VuVirtq *vq) { @@ -1823,12 +2021,6 @@ virtqueue_map_desc(VuDev *dev, *p_num_sg = num_sg; } -/* Round number down to multiple */ -#define ALIGN_DOWN(n, m) ((n) / (m) * (m)) - -/* Round number up to multiple */ -#define ALIGN_UP(n, m) ALIGN_DOWN((n) + (m) - 1, (m)) - static void * virtqueue_alloc_element(size_t sz, unsigned out_num, unsigned in_num) @@ -1929,9 +2121,67 @@ vu_queue_map_desc(VuDev *dev, VuVirtq *vq, unsigned int idx, size_t sz) return elem; } +static int +vu_queue_inflight_get(VuDev *dev, VuVirtq *vq, int desc_idx) +{ + if (!has_feature(dev->protocol_features, + VHOST_USER_PROTOCOL_F_INFLIGHT_SHMFD)) { + return 0; + } + + if (unlikely(!vq->inflight)) { + return -1; + } + + vq->inflight->desc[desc_idx].inflight = 1; + + return 0; +} + +static int +vu_queue_inflight_pre_put(VuDev *dev, VuVirtq *vq, int desc_idx) +{ + if (!has_feature(dev->protocol_features, + VHOST_USER_PROTOCOL_F_INFLIGHT_SHMFD)) { + return 0; + } + + if (unlikely(!vq->inflight)) { + return -1; + } + + vq->inflight->process_head = desc_idx; + + return 0; +} + +static int +vu_queue_inflight_post_put(VuDev *dev, VuVirtq *vq, int desc_idx) +{ + if (!has_feature(dev->protocol_features, + VHOST_USER_PROTOCOL_F_INFLIGHT_SHMFD)) { + return 0; + } + + if (unlikely(!vq->inflight)) { + return -1; + } + + barrier(); + + vq->inflight->desc[desc_idx].inflight = 0; + + barrier(); + + vq->inflight->used_idx = vq->used_idx; + + return 0; +} + void * vu_queue_pop(VuDev *dev, VuVirtq *vq, size_t sz) { + int i; unsigned int head; VuVirtqElement *elem; @@ -1940,6 +2190,12 @@ vu_queue_pop(VuDev *dev, VuVirtq *vq, size_t sz) return NULL; } + if (unlikely(vq->inflight_num > 0)) { + i = (--vq->inflight_num); + elem = vu_queue_map_desc(dev, vq, vq->inflight_desc[i], sz); + return elem; + } + if (vu_queue_empty(dev, vq)) { return NULL; } @@ -1970,6 +2226,8 @@ vu_queue_pop(VuDev *dev, VuVirtq *vq, size_t sz) vq->inuse++; + vu_queue_inflight_get(dev, vq, head); + return elem; } @@ -2114,5 +2372,7 @@ vu_queue_push(VuDev *dev, VuVirtq *vq, const VuVirtqElement *elem, unsigned int len) { vu_queue_fill(dev, vq, elem, len, 0); + vu_queue_inflight_pre_put(dev, vq, elem->index); vu_queue_flush(dev, vq, 1); + vu_queue_inflight_post_put(dev, vq, elem->index); } diff --git a/contrib/libvhost-user/libvhost-user.h b/contrib/libvhost-user/libvhost-user.h index 4aa55b4d2d..b1ca7fc5c1 100644 --- a/contrib/libvhost-user/libvhost-user.h +++ b/contrib/libvhost-user/libvhost-user.h @@ -53,6 +53,7 @@ enum VhostUserProtocolFeature { VHOST_USER_PROTOCOL_F_CONFIG = 9, VHOST_USER_PROTOCOL_F_SLAVE_SEND_FD = 10, VHOST_USER_PROTOCOL_F_HOST_NOTIFIER = 11, + VHOST_USER_PROTOCOL_F_INFLIGHT_SHMFD = 12, VHOST_USER_PROTOCOL_F_MAX }; @@ -91,6 +92,8 @@ typedef enum VhostUserRequest { VHOST_USER_POSTCOPY_ADVISE = 28, VHOST_USER_POSTCOPY_LISTEN = 29, VHOST_USER_POSTCOPY_END = 30, + VHOST_USER_GET_INFLIGHT_FD = 31, + VHOST_USER_SET_INFLIGHT_FD = 32, VHOST_USER_MAX } VhostUserRequest; @@ -138,6 +141,13 @@ typedef struct VhostUserVringArea { uint64_t offset; } VhostUserVringArea; +typedef struct VhostUserInflight { + uint64_t mmap_size; + uint64_t mmap_offset; + uint16_t num_queues; + uint16_t queue_size; +} VhostUserInflight; + #if defined(_WIN32) # define VU_PACKED __attribute__((gcc_struct, packed)) #else @@ -163,6 +173,7 @@ typedef struct VhostUserMsg { VhostUserLog log; VhostUserConfig config; VhostUserVringArea area; + VhostUserInflight inflight; } payload; int fds[VHOST_MEMORY_MAX_NREGIONS]; @@ -234,9 +245,49 @@ typedef struct VuRing { uint32_t flags; } VuRing; +typedef struct VuDescStateSplit { + /* Indicate whether this descriptor is inflight or not. + * Only available for head-descriptor. */ + uint8_t inflight; + + /* Padding */ + uint8_t padding; + + /* Link to the last processed entry */ + uint16_t next; +} VuDescStateSplit; + +typedef struct VuVirtqInflight { + /* The feature flags of this region. Now it's initialized to 0. */ + uint64_t features; + + /* The version of this region. It's 1 currently. + * Zero value indicates a vm reset happened. */ + uint16_t version; + + /* The size of VuDescStateSplit array. It's equal to the virtqueue + * size. Slave could get it from queue size field of VhostUserInflight. */ + uint16_t desc_num; + + /* The head of processed VuDescStateSplit entry list */ + uint16_t process_head; + + /* Storing the idx value of used ring */ + uint16_t used_idx; + + /* Used to track the state of each descriptor in descriptor table */ + VuDescStateSplit desc[0]; +} VuVirtqInflight; + typedef struct VuVirtq { VuRing vring; + VuVirtqInflight *inflight; + + uint16_t inflight_desc[VIRTQUEUE_MAX_SIZE]; + + uint16_t inflight_num; + /* Next head to pop */ uint16_t last_avail_idx; @@ -279,11 +330,18 @@ typedef void (*vu_set_watch_cb) (VuDev *dev, int fd, int condition, vu_watch_cb cb, void *data); typedef void (*vu_remove_watch_cb) (VuDev *dev, int fd); +typedef struct VuDevInflightInfo { + int fd; + void *addr; + uint64_t size; +} VuDevInflightInfo; + struct VuDev { int sock; uint32_t nregions; VuDevRegion regions[VHOST_MEMORY_MAX_NREGIONS]; VuVirtq vq[VHOST_MAX_NR_VIRTQUEUE]; + VuDevInflightInfo inflight_info; int log_call_fd; int slave_fd; uint64_t log_size;