1701189e3SRoman Kagan /* 2701189e3SRoman Kagan * Hyper-V guest/hypervisor interaction 3701189e3SRoman Kagan * 4701189e3SRoman Kagan * Copyright (c) 2015-2018 Virtuozzo International GmbH. 5701189e3SRoman Kagan * 6701189e3SRoman Kagan * This work is licensed under the terms of the GNU GPL, version 2 or later. 7701189e3SRoman Kagan * See the COPYING file in the top-level directory. 8701189e3SRoman Kagan */ 9701189e3SRoman Kagan 10701189e3SRoman Kagan #include "qemu/osdep.h" 11701189e3SRoman Kagan #include "qemu/main-loop.h" 12606c34bfSRoman Kagan #include "qapi/error.h" 13267e071bSRoman Kagan #include "exec/address-spaces.h" 14701189e3SRoman Kagan #include "sysemu/kvm.h" 15f5642f8bSRoman Kagan #include "qemu/bitops.h" 16*e6ea9f45SRoman Kagan #include "qemu/queue.h" 17*e6ea9f45SRoman Kagan #include "qemu/rcu.h" 18*e6ea9f45SRoman Kagan #include "qemu/rcu_queue.h" 19701189e3SRoman Kagan #include "hw/hyperv/hyperv.h" 20701189e3SRoman Kagan 21606c34bfSRoman Kagan typedef struct SynICState { 22606c34bfSRoman Kagan DeviceState parent_obj; 23606c34bfSRoman Kagan 24606c34bfSRoman Kagan CPUState *cs; 25606c34bfSRoman Kagan 26606c34bfSRoman Kagan bool enabled; 27606c34bfSRoman Kagan hwaddr msg_page_addr; 28606c34bfSRoman Kagan hwaddr event_page_addr; 29267e071bSRoman Kagan MemoryRegion msg_page_mr; 30267e071bSRoman Kagan MemoryRegion event_page_mr; 31267e071bSRoman Kagan struct hyperv_message_page *msg_page; 32267e071bSRoman Kagan struct hyperv_event_flags_page *event_page; 33606c34bfSRoman Kagan } SynICState; 34606c34bfSRoman Kagan 35606c34bfSRoman Kagan #define TYPE_SYNIC "hyperv-synic" 36606c34bfSRoman Kagan #define SYNIC(obj) OBJECT_CHECK(SynICState, (obj), TYPE_SYNIC) 37606c34bfSRoman Kagan 38606c34bfSRoman Kagan static SynICState *get_synic(CPUState *cs) 39606c34bfSRoman Kagan { 40606c34bfSRoman Kagan return SYNIC(object_resolve_path_component(OBJECT(cs), "synic")); 41606c34bfSRoman Kagan } 42606c34bfSRoman Kagan 43606c34bfSRoman Kagan static void synic_update(SynICState *synic, bool enable, 44606c34bfSRoman Kagan hwaddr msg_page_addr, hwaddr event_page_addr) 45606c34bfSRoman Kagan { 46606c34bfSRoman Kagan 47606c34bfSRoman Kagan synic->enabled = enable; 48267e071bSRoman Kagan if (synic->msg_page_addr != msg_page_addr) { 49267e071bSRoman Kagan if (synic->msg_page_addr) { 50267e071bSRoman Kagan memory_region_del_subregion(get_system_memory(), 51267e071bSRoman Kagan &synic->msg_page_mr); 52267e071bSRoman Kagan } 53267e071bSRoman Kagan if (msg_page_addr) { 54267e071bSRoman Kagan memory_region_add_subregion(get_system_memory(), msg_page_addr, 55267e071bSRoman Kagan &synic->msg_page_mr); 56267e071bSRoman Kagan } 57606c34bfSRoman Kagan synic->msg_page_addr = msg_page_addr; 58267e071bSRoman Kagan } 59267e071bSRoman Kagan if (synic->event_page_addr != event_page_addr) { 60267e071bSRoman Kagan if (synic->event_page_addr) { 61267e071bSRoman Kagan memory_region_del_subregion(get_system_memory(), 62267e071bSRoman Kagan &synic->event_page_mr); 63267e071bSRoman Kagan } 64267e071bSRoman Kagan if (event_page_addr) { 65267e071bSRoman Kagan memory_region_add_subregion(get_system_memory(), event_page_addr, 66267e071bSRoman Kagan &synic->event_page_mr); 67267e071bSRoman Kagan } 68606c34bfSRoman Kagan synic->event_page_addr = event_page_addr; 69606c34bfSRoman Kagan } 70267e071bSRoman Kagan } 71606c34bfSRoman Kagan 72606c34bfSRoman Kagan void hyperv_synic_update(CPUState *cs, bool enable, 73606c34bfSRoman Kagan hwaddr msg_page_addr, hwaddr event_page_addr) 74606c34bfSRoman Kagan { 75606c34bfSRoman Kagan SynICState *synic = get_synic(cs); 76606c34bfSRoman Kagan 77606c34bfSRoman Kagan if (!synic) { 78606c34bfSRoman Kagan return; 79606c34bfSRoman Kagan } 80606c34bfSRoman Kagan 81606c34bfSRoman Kagan synic_update(synic, enable, msg_page_addr, event_page_addr); 82606c34bfSRoman Kagan } 83606c34bfSRoman Kagan 84606c34bfSRoman Kagan static void synic_realize(DeviceState *dev, Error **errp) 85606c34bfSRoman Kagan { 86267e071bSRoman Kagan Object *obj = OBJECT(dev); 87267e071bSRoman Kagan SynICState *synic = SYNIC(dev); 88267e071bSRoman Kagan char *msgp_name, *eventp_name; 89267e071bSRoman Kagan uint32_t vp_index; 90606c34bfSRoman Kagan 91267e071bSRoman Kagan /* memory region names have to be globally unique */ 92267e071bSRoman Kagan vp_index = hyperv_vp_index(synic->cs); 93267e071bSRoman Kagan msgp_name = g_strdup_printf("synic-%u-msg-page", vp_index); 94267e071bSRoman Kagan eventp_name = g_strdup_printf("synic-%u-event-page", vp_index); 95267e071bSRoman Kagan 96267e071bSRoman Kagan memory_region_init_ram(&synic->msg_page_mr, obj, msgp_name, 97267e071bSRoman Kagan sizeof(*synic->msg_page), &error_abort); 98267e071bSRoman Kagan memory_region_init_ram(&synic->event_page_mr, obj, eventp_name, 99267e071bSRoman Kagan sizeof(*synic->event_page), &error_abort); 100267e071bSRoman Kagan synic->msg_page = memory_region_get_ram_ptr(&synic->msg_page_mr); 101267e071bSRoman Kagan synic->event_page = memory_region_get_ram_ptr(&synic->event_page_mr); 102267e071bSRoman Kagan 103267e071bSRoman Kagan g_free(msgp_name); 104267e071bSRoman Kagan g_free(eventp_name); 105267e071bSRoman Kagan } 106606c34bfSRoman Kagan static void synic_reset(DeviceState *dev) 107606c34bfSRoman Kagan { 108606c34bfSRoman Kagan SynICState *synic = SYNIC(dev); 109267e071bSRoman Kagan memset(synic->msg_page, 0, sizeof(*synic->msg_page)); 110267e071bSRoman Kagan memset(synic->event_page, 0, sizeof(*synic->event_page)); 111606c34bfSRoman Kagan synic_update(synic, false, 0, 0); 112606c34bfSRoman Kagan } 113606c34bfSRoman Kagan 114606c34bfSRoman Kagan static void synic_class_init(ObjectClass *klass, void *data) 115606c34bfSRoman Kagan { 116606c34bfSRoman Kagan DeviceClass *dc = DEVICE_CLASS(klass); 117606c34bfSRoman Kagan 118606c34bfSRoman Kagan dc->realize = synic_realize; 119606c34bfSRoman Kagan dc->reset = synic_reset; 120606c34bfSRoman Kagan dc->user_creatable = false; 121606c34bfSRoman Kagan } 122606c34bfSRoman Kagan 123606c34bfSRoman Kagan void hyperv_synic_add(CPUState *cs) 124606c34bfSRoman Kagan { 125606c34bfSRoman Kagan Object *obj; 126606c34bfSRoman Kagan SynICState *synic; 127606c34bfSRoman Kagan 128606c34bfSRoman Kagan obj = object_new(TYPE_SYNIC); 129606c34bfSRoman Kagan synic = SYNIC(obj); 130606c34bfSRoman Kagan synic->cs = cs; 131606c34bfSRoman Kagan object_property_add_child(OBJECT(cs), "synic", obj, &error_abort); 132606c34bfSRoman Kagan object_unref(obj); 133606c34bfSRoman Kagan object_property_set_bool(obj, true, "realized", &error_abort); 134606c34bfSRoman Kagan } 135606c34bfSRoman Kagan 136606c34bfSRoman Kagan void hyperv_synic_reset(CPUState *cs) 137606c34bfSRoman Kagan { 138606c34bfSRoman Kagan device_reset(DEVICE(get_synic(cs))); 139606c34bfSRoman Kagan } 140606c34bfSRoman Kagan 141606c34bfSRoman Kagan static const TypeInfo synic_type_info = { 142606c34bfSRoman Kagan .name = TYPE_SYNIC, 143606c34bfSRoman Kagan .parent = TYPE_DEVICE, 144606c34bfSRoman Kagan .instance_size = sizeof(SynICState), 145606c34bfSRoman Kagan .class_init = synic_class_init, 146606c34bfSRoman Kagan }; 147606c34bfSRoman Kagan 148606c34bfSRoman Kagan static void synic_register_types(void) 149606c34bfSRoman Kagan { 150606c34bfSRoman Kagan type_register_static(&synic_type_info); 151606c34bfSRoman Kagan } 152606c34bfSRoman Kagan 153606c34bfSRoman Kagan type_init(synic_register_types) 154606c34bfSRoman Kagan 1554cbaf3c1SRoman Kagan /* 1564cbaf3c1SRoman Kagan * KVM has its own message producers (SynIC timers). To guarantee 1574cbaf3c1SRoman Kagan * serialization with both KVM vcpu and the guest cpu, the messages are first 1584cbaf3c1SRoman Kagan * staged in an intermediate area and then posted to the SynIC message page in 1594cbaf3c1SRoman Kagan * the vcpu thread. 1604cbaf3c1SRoman Kagan */ 1614cbaf3c1SRoman Kagan typedef struct HvSintStagedMessage { 1624cbaf3c1SRoman Kagan /* message content staged by hyperv_post_msg */ 1634cbaf3c1SRoman Kagan struct hyperv_message msg; 1644cbaf3c1SRoman Kagan /* callback + data (r/o) to complete the processing in a BH */ 1654cbaf3c1SRoman Kagan HvSintMsgCb cb; 1664cbaf3c1SRoman Kagan void *cb_data; 1674cbaf3c1SRoman Kagan /* message posting status filled by cpu_post_msg */ 1684cbaf3c1SRoman Kagan int status; 1694cbaf3c1SRoman Kagan /* passing the buck: */ 1704cbaf3c1SRoman Kagan enum { 1714cbaf3c1SRoman Kagan /* initial state */ 1724cbaf3c1SRoman Kagan HV_STAGED_MSG_FREE, 1734cbaf3c1SRoman Kagan /* 1744cbaf3c1SRoman Kagan * hyperv_post_msg (e.g. in main loop) grabs the staged area (FREE -> 1754cbaf3c1SRoman Kagan * BUSY), copies msg, and schedules cpu_post_msg on the assigned cpu 1764cbaf3c1SRoman Kagan */ 1774cbaf3c1SRoman Kagan HV_STAGED_MSG_BUSY, 1784cbaf3c1SRoman Kagan /* 1794cbaf3c1SRoman Kagan * cpu_post_msg (vcpu thread) tries to copy staged msg to msg slot, 1804cbaf3c1SRoman Kagan * notify the guest, records the status, marks the posting done (BUSY 1814cbaf3c1SRoman Kagan * -> POSTED), and schedules sint_msg_bh BH 1824cbaf3c1SRoman Kagan */ 1834cbaf3c1SRoman Kagan HV_STAGED_MSG_POSTED, 1844cbaf3c1SRoman Kagan /* 1854cbaf3c1SRoman Kagan * sint_msg_bh (BH) verifies that the posting is done, runs the 1864cbaf3c1SRoman Kagan * callback, and starts over (POSTED -> FREE) 1874cbaf3c1SRoman Kagan */ 1884cbaf3c1SRoman Kagan } state; 1894cbaf3c1SRoman Kagan } HvSintStagedMessage; 1904cbaf3c1SRoman Kagan 191701189e3SRoman Kagan struct HvSintRoute { 192701189e3SRoman Kagan uint32_t sint; 193606c34bfSRoman Kagan SynICState *synic; 194701189e3SRoman Kagan int gsi; 195701189e3SRoman Kagan EventNotifier sint_set_notifier; 196701189e3SRoman Kagan EventNotifier sint_ack_notifier; 1974cbaf3c1SRoman Kagan 1984cbaf3c1SRoman Kagan HvSintStagedMessage *staged_msg; 1994cbaf3c1SRoman Kagan 200701189e3SRoman Kagan unsigned refcount; 201701189e3SRoman Kagan }; 202701189e3SRoman Kagan 203701189e3SRoman Kagan static CPUState *hyperv_find_vcpu(uint32_t vp_index) 204701189e3SRoman Kagan { 205701189e3SRoman Kagan CPUState *cs = qemu_get_cpu(vp_index); 206701189e3SRoman Kagan assert(hyperv_vp_index(cs) == vp_index); 207701189e3SRoman Kagan return cs; 208701189e3SRoman Kagan } 209701189e3SRoman Kagan 2104cbaf3c1SRoman Kagan /* 2114cbaf3c1SRoman Kagan * BH to complete the processing of a staged message. 2124cbaf3c1SRoman Kagan */ 2134cbaf3c1SRoman Kagan static void sint_msg_bh(void *opaque) 2144cbaf3c1SRoman Kagan { 2154cbaf3c1SRoman Kagan HvSintRoute *sint_route = opaque; 2164cbaf3c1SRoman Kagan HvSintStagedMessage *staged_msg = sint_route->staged_msg; 2174cbaf3c1SRoman Kagan 2184cbaf3c1SRoman Kagan if (atomic_read(&staged_msg->state) != HV_STAGED_MSG_POSTED) { 2194cbaf3c1SRoman Kagan /* status nor ready yet (spurious ack from guest?), ignore */ 2204cbaf3c1SRoman Kagan return; 2214cbaf3c1SRoman Kagan } 2224cbaf3c1SRoman Kagan 2234cbaf3c1SRoman Kagan staged_msg->cb(staged_msg->cb_data, staged_msg->status); 2244cbaf3c1SRoman Kagan staged_msg->status = 0; 2254cbaf3c1SRoman Kagan 2264cbaf3c1SRoman Kagan /* staged message processing finished, ready to start over */ 2274cbaf3c1SRoman Kagan atomic_set(&staged_msg->state, HV_STAGED_MSG_FREE); 2284cbaf3c1SRoman Kagan /* drop the reference taken in hyperv_post_msg */ 2294cbaf3c1SRoman Kagan hyperv_sint_route_unref(sint_route); 2304cbaf3c1SRoman Kagan } 2314cbaf3c1SRoman Kagan 2324cbaf3c1SRoman Kagan /* 2334cbaf3c1SRoman Kagan * Worker to transfer the message from the staging area into the SynIC message 2344cbaf3c1SRoman Kagan * page in vcpu context. 2354cbaf3c1SRoman Kagan */ 2364cbaf3c1SRoman Kagan static void cpu_post_msg(CPUState *cs, run_on_cpu_data data) 2374cbaf3c1SRoman Kagan { 2384cbaf3c1SRoman Kagan HvSintRoute *sint_route = data.host_ptr; 2394cbaf3c1SRoman Kagan HvSintStagedMessage *staged_msg = sint_route->staged_msg; 2404cbaf3c1SRoman Kagan SynICState *synic = sint_route->synic; 2414cbaf3c1SRoman Kagan struct hyperv_message *dst_msg; 2424cbaf3c1SRoman Kagan bool wait_for_sint_ack = false; 2434cbaf3c1SRoman Kagan 2444cbaf3c1SRoman Kagan assert(staged_msg->state == HV_STAGED_MSG_BUSY); 2454cbaf3c1SRoman Kagan 2464cbaf3c1SRoman Kagan if (!synic->enabled || !synic->msg_page_addr) { 2474cbaf3c1SRoman Kagan staged_msg->status = -ENXIO; 2484cbaf3c1SRoman Kagan goto posted; 2494cbaf3c1SRoman Kagan } 2504cbaf3c1SRoman Kagan 2514cbaf3c1SRoman Kagan dst_msg = &synic->msg_page->slot[sint_route->sint]; 2524cbaf3c1SRoman Kagan 2534cbaf3c1SRoman Kagan if (dst_msg->header.message_type != HV_MESSAGE_NONE) { 2544cbaf3c1SRoman Kagan dst_msg->header.message_flags |= HV_MESSAGE_FLAG_PENDING; 2554cbaf3c1SRoman Kagan staged_msg->status = -EAGAIN; 2564cbaf3c1SRoman Kagan wait_for_sint_ack = true; 2574cbaf3c1SRoman Kagan } else { 2584cbaf3c1SRoman Kagan memcpy(dst_msg, &staged_msg->msg, sizeof(*dst_msg)); 2594cbaf3c1SRoman Kagan staged_msg->status = hyperv_sint_route_set_sint(sint_route); 2604cbaf3c1SRoman Kagan } 2614cbaf3c1SRoman Kagan 2624cbaf3c1SRoman Kagan memory_region_set_dirty(&synic->msg_page_mr, 0, sizeof(*synic->msg_page)); 2634cbaf3c1SRoman Kagan 2644cbaf3c1SRoman Kagan posted: 2654cbaf3c1SRoman Kagan atomic_set(&staged_msg->state, HV_STAGED_MSG_POSTED); 2664cbaf3c1SRoman Kagan /* 2674cbaf3c1SRoman Kagan * Notify the msg originator of the progress made; if the slot was busy we 2684cbaf3c1SRoman Kagan * set msg_pending flag in it so it will be the guest who will do EOM and 2694cbaf3c1SRoman Kagan * trigger the notification from KVM via sint_ack_notifier 2704cbaf3c1SRoman Kagan */ 2714cbaf3c1SRoman Kagan if (!wait_for_sint_ack) { 2724cbaf3c1SRoman Kagan aio_bh_schedule_oneshot(qemu_get_aio_context(), sint_msg_bh, 2734cbaf3c1SRoman Kagan sint_route); 2744cbaf3c1SRoman Kagan } 2754cbaf3c1SRoman Kagan } 2764cbaf3c1SRoman Kagan 2774cbaf3c1SRoman Kagan /* 2784cbaf3c1SRoman Kagan * Post a Hyper-V message to the staging area, for delivery to guest in the 2794cbaf3c1SRoman Kagan * vcpu thread. 2804cbaf3c1SRoman Kagan */ 2814cbaf3c1SRoman Kagan int hyperv_post_msg(HvSintRoute *sint_route, struct hyperv_message *src_msg) 2824cbaf3c1SRoman Kagan { 2834cbaf3c1SRoman Kagan HvSintStagedMessage *staged_msg = sint_route->staged_msg; 2844cbaf3c1SRoman Kagan 2854cbaf3c1SRoman Kagan assert(staged_msg); 2864cbaf3c1SRoman Kagan 2874cbaf3c1SRoman Kagan /* grab the staging area */ 2884cbaf3c1SRoman Kagan if (atomic_cmpxchg(&staged_msg->state, HV_STAGED_MSG_FREE, 2894cbaf3c1SRoman Kagan HV_STAGED_MSG_BUSY) != HV_STAGED_MSG_FREE) { 2904cbaf3c1SRoman Kagan return -EAGAIN; 2914cbaf3c1SRoman Kagan } 2924cbaf3c1SRoman Kagan 2934cbaf3c1SRoman Kagan memcpy(&staged_msg->msg, src_msg, sizeof(*src_msg)); 2944cbaf3c1SRoman Kagan 2954cbaf3c1SRoman Kagan /* hold a reference on sint_route until the callback is finished */ 2964cbaf3c1SRoman Kagan hyperv_sint_route_ref(sint_route); 2974cbaf3c1SRoman Kagan 2984cbaf3c1SRoman Kagan /* schedule message posting attempt in vcpu thread */ 2994cbaf3c1SRoman Kagan async_run_on_cpu(sint_route->synic->cs, cpu_post_msg, 3004cbaf3c1SRoman Kagan RUN_ON_CPU_HOST_PTR(sint_route)); 3014cbaf3c1SRoman Kagan return 0; 3024cbaf3c1SRoman Kagan } 3034cbaf3c1SRoman Kagan 3044cbaf3c1SRoman Kagan static void sint_ack_handler(EventNotifier *notifier) 305701189e3SRoman Kagan { 306701189e3SRoman Kagan HvSintRoute *sint_route = container_of(notifier, HvSintRoute, 307701189e3SRoman Kagan sint_ack_notifier); 308701189e3SRoman Kagan event_notifier_test_and_clear(notifier); 3094cbaf3c1SRoman Kagan 3104cbaf3c1SRoman Kagan /* 3114cbaf3c1SRoman Kagan * the guest consumed the previous message so complete the current one with 3124cbaf3c1SRoman Kagan * -EAGAIN and let the msg originator retry 3134cbaf3c1SRoman Kagan */ 3144cbaf3c1SRoman Kagan aio_bh_schedule_oneshot(qemu_get_aio_context(), sint_msg_bh, sint_route); 315701189e3SRoman Kagan } 316701189e3SRoman Kagan 317f5642f8bSRoman Kagan /* 318f5642f8bSRoman Kagan * Set given event flag for a given sint on a given vcpu, and signal the sint. 319f5642f8bSRoman Kagan */ 320f5642f8bSRoman Kagan int hyperv_set_event_flag(HvSintRoute *sint_route, unsigned eventno) 321f5642f8bSRoman Kagan { 322f5642f8bSRoman Kagan int ret; 323f5642f8bSRoman Kagan SynICState *synic = sint_route->synic; 324f5642f8bSRoman Kagan unsigned long *flags, set_mask; 325f5642f8bSRoman Kagan unsigned set_idx; 326f5642f8bSRoman Kagan 327f5642f8bSRoman Kagan if (eventno > HV_EVENT_FLAGS_COUNT) { 328f5642f8bSRoman Kagan return -EINVAL; 329f5642f8bSRoman Kagan } 330f5642f8bSRoman Kagan if (!synic->enabled || !synic->event_page_addr) { 331f5642f8bSRoman Kagan return -ENXIO; 332f5642f8bSRoman Kagan } 333f5642f8bSRoman Kagan 334f5642f8bSRoman Kagan set_idx = BIT_WORD(eventno); 335f5642f8bSRoman Kagan set_mask = BIT_MASK(eventno); 336f5642f8bSRoman Kagan flags = synic->event_page->slot[sint_route->sint].flags; 337f5642f8bSRoman Kagan 338f5642f8bSRoman Kagan if ((atomic_fetch_or(&flags[set_idx], set_mask) & set_mask) != set_mask) { 339f5642f8bSRoman Kagan memory_region_set_dirty(&synic->event_page_mr, 0, 340f5642f8bSRoman Kagan sizeof(*synic->event_page)); 341f5642f8bSRoman Kagan ret = hyperv_sint_route_set_sint(sint_route); 342f5642f8bSRoman Kagan } else { 343f5642f8bSRoman Kagan ret = 0; 344f5642f8bSRoman Kagan } 345f5642f8bSRoman Kagan return ret; 346f5642f8bSRoman Kagan } 347f5642f8bSRoman Kagan 348701189e3SRoman Kagan HvSintRoute *hyperv_sint_route_new(uint32_t vp_index, uint32_t sint, 3494cbaf3c1SRoman Kagan HvSintMsgCb cb, void *cb_data) 350701189e3SRoman Kagan { 351701189e3SRoman Kagan HvSintRoute *sint_route; 352701189e3SRoman Kagan EventNotifier *ack_notifier; 353701189e3SRoman Kagan int r, gsi; 354701189e3SRoman Kagan CPUState *cs; 355606c34bfSRoman Kagan SynICState *synic; 356701189e3SRoman Kagan 357701189e3SRoman Kagan cs = hyperv_find_vcpu(vp_index); 358701189e3SRoman Kagan if (!cs) { 359701189e3SRoman Kagan return NULL; 360701189e3SRoman Kagan } 361701189e3SRoman Kagan 362606c34bfSRoman Kagan synic = get_synic(cs); 363606c34bfSRoman Kagan if (!synic) { 364606c34bfSRoman Kagan return NULL; 365606c34bfSRoman Kagan } 366606c34bfSRoman Kagan 367701189e3SRoman Kagan sint_route = g_new0(HvSintRoute, 1); 368701189e3SRoman Kagan r = event_notifier_init(&sint_route->sint_set_notifier, false); 369701189e3SRoman Kagan if (r) { 370701189e3SRoman Kagan goto err; 371701189e3SRoman Kagan } 372701189e3SRoman Kagan 3734cbaf3c1SRoman Kagan 3744cbaf3c1SRoman Kagan ack_notifier = cb ? &sint_route->sint_ack_notifier : NULL; 375701189e3SRoman Kagan if (ack_notifier) { 3764cbaf3c1SRoman Kagan sint_route->staged_msg = g_new0(HvSintStagedMessage, 1); 3774cbaf3c1SRoman Kagan sint_route->staged_msg->cb = cb; 3784cbaf3c1SRoman Kagan sint_route->staged_msg->cb_data = cb_data; 3794cbaf3c1SRoman Kagan 380701189e3SRoman Kagan r = event_notifier_init(ack_notifier, false); 381701189e3SRoman Kagan if (r) { 382701189e3SRoman Kagan goto err_sint_set_notifier; 383701189e3SRoman Kagan } 384701189e3SRoman Kagan 3854cbaf3c1SRoman Kagan event_notifier_set_handler(ack_notifier, sint_ack_handler); 386701189e3SRoman Kagan } 387701189e3SRoman Kagan 388701189e3SRoman Kagan gsi = kvm_irqchip_add_hv_sint_route(kvm_state, vp_index, sint); 389701189e3SRoman Kagan if (gsi < 0) { 390701189e3SRoman Kagan goto err_gsi; 391701189e3SRoman Kagan } 392701189e3SRoman Kagan 393701189e3SRoman Kagan r = kvm_irqchip_add_irqfd_notifier_gsi(kvm_state, 394701189e3SRoman Kagan &sint_route->sint_set_notifier, 395701189e3SRoman Kagan ack_notifier, gsi); 396701189e3SRoman Kagan if (r) { 397701189e3SRoman Kagan goto err_irqfd; 398701189e3SRoman Kagan } 399701189e3SRoman Kagan sint_route->gsi = gsi; 400606c34bfSRoman Kagan sint_route->synic = synic; 401701189e3SRoman Kagan sint_route->sint = sint; 402701189e3SRoman Kagan sint_route->refcount = 1; 403701189e3SRoman Kagan 404701189e3SRoman Kagan return sint_route; 405701189e3SRoman Kagan 406701189e3SRoman Kagan err_irqfd: 407701189e3SRoman Kagan kvm_irqchip_release_virq(kvm_state, gsi); 408701189e3SRoman Kagan err_gsi: 409701189e3SRoman Kagan if (ack_notifier) { 410701189e3SRoman Kagan event_notifier_set_handler(ack_notifier, NULL); 411701189e3SRoman Kagan event_notifier_cleanup(ack_notifier); 4124cbaf3c1SRoman Kagan g_free(sint_route->staged_msg); 413701189e3SRoman Kagan } 414701189e3SRoman Kagan err_sint_set_notifier: 415701189e3SRoman Kagan event_notifier_cleanup(&sint_route->sint_set_notifier); 416701189e3SRoman Kagan err: 417701189e3SRoman Kagan g_free(sint_route); 418701189e3SRoman Kagan 419701189e3SRoman Kagan return NULL; 420701189e3SRoman Kagan } 421701189e3SRoman Kagan 422701189e3SRoman Kagan void hyperv_sint_route_ref(HvSintRoute *sint_route) 423701189e3SRoman Kagan { 424701189e3SRoman Kagan sint_route->refcount++; 425701189e3SRoman Kagan } 426701189e3SRoman Kagan 427701189e3SRoman Kagan void hyperv_sint_route_unref(HvSintRoute *sint_route) 428701189e3SRoman Kagan { 429701189e3SRoman Kagan if (!sint_route) { 430701189e3SRoman Kagan return; 431701189e3SRoman Kagan } 432701189e3SRoman Kagan 433701189e3SRoman Kagan assert(sint_route->refcount > 0); 434701189e3SRoman Kagan 435701189e3SRoman Kagan if (--sint_route->refcount) { 436701189e3SRoman Kagan return; 437701189e3SRoman Kagan } 438701189e3SRoman Kagan 439701189e3SRoman Kagan kvm_irqchip_remove_irqfd_notifier_gsi(kvm_state, 440701189e3SRoman Kagan &sint_route->sint_set_notifier, 441701189e3SRoman Kagan sint_route->gsi); 442701189e3SRoman Kagan kvm_irqchip_release_virq(kvm_state, sint_route->gsi); 4434cbaf3c1SRoman Kagan if (sint_route->staged_msg) { 444701189e3SRoman Kagan event_notifier_set_handler(&sint_route->sint_ack_notifier, NULL); 445701189e3SRoman Kagan event_notifier_cleanup(&sint_route->sint_ack_notifier); 4464cbaf3c1SRoman Kagan g_free(sint_route->staged_msg); 447701189e3SRoman Kagan } 448701189e3SRoman Kagan event_notifier_cleanup(&sint_route->sint_set_notifier); 449701189e3SRoman Kagan g_free(sint_route); 450701189e3SRoman Kagan } 451701189e3SRoman Kagan 452701189e3SRoman Kagan int hyperv_sint_route_set_sint(HvSintRoute *sint_route) 453701189e3SRoman Kagan { 454701189e3SRoman Kagan return event_notifier_set(&sint_route->sint_set_notifier); 455701189e3SRoman Kagan } 456*e6ea9f45SRoman Kagan 457*e6ea9f45SRoman Kagan typedef struct EventFlagHandler { 458*e6ea9f45SRoman Kagan struct rcu_head rcu; 459*e6ea9f45SRoman Kagan QLIST_ENTRY(EventFlagHandler) link; 460*e6ea9f45SRoman Kagan uint32_t conn_id; 461*e6ea9f45SRoman Kagan EventNotifier *notifier; 462*e6ea9f45SRoman Kagan } EventFlagHandler; 463*e6ea9f45SRoman Kagan 464*e6ea9f45SRoman Kagan static QLIST_HEAD(, EventFlagHandler) event_flag_handlers; 465*e6ea9f45SRoman Kagan static QemuMutex handlers_mutex; 466*e6ea9f45SRoman Kagan 467*e6ea9f45SRoman Kagan static void __attribute__((constructor)) hv_init(void) 468*e6ea9f45SRoman Kagan { 469*e6ea9f45SRoman Kagan QLIST_INIT(&event_flag_handlers); 470*e6ea9f45SRoman Kagan qemu_mutex_init(&handlers_mutex); 471*e6ea9f45SRoman Kagan } 472*e6ea9f45SRoman Kagan 473*e6ea9f45SRoman Kagan int hyperv_set_event_flag_handler(uint32_t conn_id, EventNotifier *notifier) 474*e6ea9f45SRoman Kagan { 475*e6ea9f45SRoman Kagan int ret; 476*e6ea9f45SRoman Kagan EventFlagHandler *handler; 477*e6ea9f45SRoman Kagan 478*e6ea9f45SRoman Kagan qemu_mutex_lock(&handlers_mutex); 479*e6ea9f45SRoman Kagan QLIST_FOREACH(handler, &event_flag_handlers, link) { 480*e6ea9f45SRoman Kagan if (handler->conn_id == conn_id) { 481*e6ea9f45SRoman Kagan if (notifier) { 482*e6ea9f45SRoman Kagan ret = -EEXIST; 483*e6ea9f45SRoman Kagan } else { 484*e6ea9f45SRoman Kagan QLIST_REMOVE_RCU(handler, link); 485*e6ea9f45SRoman Kagan g_free_rcu(handler, rcu); 486*e6ea9f45SRoman Kagan ret = 0; 487*e6ea9f45SRoman Kagan } 488*e6ea9f45SRoman Kagan goto unlock; 489*e6ea9f45SRoman Kagan } 490*e6ea9f45SRoman Kagan } 491*e6ea9f45SRoman Kagan 492*e6ea9f45SRoman Kagan if (notifier) { 493*e6ea9f45SRoman Kagan handler = g_new(EventFlagHandler, 1); 494*e6ea9f45SRoman Kagan handler->conn_id = conn_id; 495*e6ea9f45SRoman Kagan handler->notifier = notifier; 496*e6ea9f45SRoman Kagan QLIST_INSERT_HEAD_RCU(&event_flag_handlers, handler, link); 497*e6ea9f45SRoman Kagan ret = 0; 498*e6ea9f45SRoman Kagan } else { 499*e6ea9f45SRoman Kagan ret = -ENOENT; 500*e6ea9f45SRoman Kagan } 501*e6ea9f45SRoman Kagan unlock: 502*e6ea9f45SRoman Kagan qemu_mutex_unlock(&handlers_mutex); 503*e6ea9f45SRoman Kagan return ret; 504*e6ea9f45SRoman Kagan } 505*e6ea9f45SRoman Kagan 506*e6ea9f45SRoman Kagan uint16_t hyperv_hcall_signal_event(uint64_t param, bool fast) 507*e6ea9f45SRoman Kagan { 508*e6ea9f45SRoman Kagan uint16_t ret; 509*e6ea9f45SRoman Kagan EventFlagHandler *handler; 510*e6ea9f45SRoman Kagan 511*e6ea9f45SRoman Kagan if (unlikely(!fast)) { 512*e6ea9f45SRoman Kagan hwaddr addr = param; 513*e6ea9f45SRoman Kagan 514*e6ea9f45SRoman Kagan if (addr & (__alignof__(addr) - 1)) { 515*e6ea9f45SRoman Kagan return HV_STATUS_INVALID_ALIGNMENT; 516*e6ea9f45SRoman Kagan } 517*e6ea9f45SRoman Kagan 518*e6ea9f45SRoman Kagan param = ldq_phys(&address_space_memory, addr); 519*e6ea9f45SRoman Kagan } 520*e6ea9f45SRoman Kagan 521*e6ea9f45SRoman Kagan /* 522*e6ea9f45SRoman Kagan * Per spec, bits 32-47 contain the extra "flag number". However, we 523*e6ea9f45SRoman Kagan * have no use for it, and in all known usecases it is zero, so just 524*e6ea9f45SRoman Kagan * report lookup failure if it isn't. 525*e6ea9f45SRoman Kagan */ 526*e6ea9f45SRoman Kagan if (param & 0xffff00000000ULL) { 527*e6ea9f45SRoman Kagan return HV_STATUS_INVALID_PORT_ID; 528*e6ea9f45SRoman Kagan } 529*e6ea9f45SRoman Kagan /* remaining bits are reserved-zero */ 530*e6ea9f45SRoman Kagan if (param & ~HV_CONNECTION_ID_MASK) { 531*e6ea9f45SRoman Kagan return HV_STATUS_INVALID_HYPERCALL_INPUT; 532*e6ea9f45SRoman Kagan } 533*e6ea9f45SRoman Kagan 534*e6ea9f45SRoman Kagan ret = HV_STATUS_INVALID_CONNECTION_ID; 535*e6ea9f45SRoman Kagan rcu_read_lock(); 536*e6ea9f45SRoman Kagan QLIST_FOREACH_RCU(handler, &event_flag_handlers, link) { 537*e6ea9f45SRoman Kagan if (handler->conn_id == param) { 538*e6ea9f45SRoman Kagan event_notifier_set(handler->notifier); 539*e6ea9f45SRoman Kagan ret = 0; 540*e6ea9f45SRoman Kagan break; 541*e6ea9f45SRoman Kagan } 542*e6ea9f45SRoman Kagan } 543*e6ea9f45SRoman Kagan rcu_read_unlock(); 544*e6ea9f45SRoman Kagan return ret; 545*e6ea9f45SRoman Kagan } 546