s390x/virtio-ccw: Adapter interrupt support.
Handle the new CCW_CMD_SET_IND_ADAPTER command enabling adapter interrupts on guest request. When active, host->guest notifications will be handled via global_indicator -> queue indicators instead of queue indicators + subchannel I/O interrupt. Indicators for virtqueues may be present at an offset. Acked-by: Christian Borntraeger <borntraeger@de.ibm.com> Signed-off-by: Cornelia Huck <cornelia.huck@de.ibm.com>
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@ -116,6 +116,15 @@ void css_conditional_io_interrupt(SubchDev *sch)
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}
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}
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void css_adapter_interrupt(uint8_t isc)
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{
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S390CPU *cpu = s390_cpu_addr2state(0);
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uint32_t io_int_word = (isc << 27) | IO_INT_WORD_AI;
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trace_css_adapter_interrupt(isc);
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s390_io_interrupt(cpu, 0, 0, 0, io_int_word);
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}
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static void sch_handle_clear_func(SubchDev *sch)
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{
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PMCW *p = &sch->curr_status.pmcw;
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@ -1259,6 +1268,7 @@ void css_reset_sch(SubchDev *sch)
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sch->channel_prog = 0x0;
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sch->last_cmd_valid = false;
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sch->orb = NULL;
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sch->thinint_active = false;
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}
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void css_reset(void)
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@ -77,6 +77,7 @@ struct SubchDev {
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CCW1 last_cmd;
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bool last_cmd_valid;
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ORB *orb;
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bool thinint_active;
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/* transport-provided data: */
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int (*ccw_cb) (SubchDev *, CCW1);
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SenseId id;
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@ -97,4 +98,5 @@ void css_queue_crw(uint8_t rsc, uint8_t erc, int chain, uint16_t rsid);
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void css_generate_sch_crws(uint8_t cssid, uint8_t ssid, uint16_t schid,
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int hotplugged, int add);
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void css_generate_chp_crws(uint8_t cssid, uint8_t chpid);
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void css_adapter_interrupt(uint8_t isc);
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#endif
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@ -1,7 +1,7 @@
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/*
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* virtio ccw target implementation
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*
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* Copyright 2012 IBM Corp.
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* Copyright 2012,2014 IBM Corp.
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* Author(s): Cornelia Huck <cornelia.huck@de.ibm.com>
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*
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* This work is licensed under the terms of the GNU GPL, version 2 or (at
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@ -188,6 +188,13 @@ typedef struct VirtioFeatDesc {
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uint8_t index;
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} QEMU_PACKED VirtioFeatDesc;
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typedef struct VirtioThinintInfo {
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hwaddr summary_indicator;
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hwaddr device_indicator;
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uint64_t ind_bit;
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uint8_t isc;
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} QEMU_PACKED VirtioThinintInfo;
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/* Specify where the virtqueues for the subchannel are in guest memory. */
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static int virtio_ccw_set_vqs(SubchDev *sch, uint64_t addr, uint32_t align,
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uint16_t index, uint16_t num)
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@ -237,6 +244,7 @@ static int virtio_ccw_cb(SubchDev *sch, CCW1 ccw)
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bool check_len;
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int len;
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hwaddr hw_len;
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VirtioThinintInfo *thinint;
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if (!dev) {
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return -EINVAL;
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@ -428,6 +436,11 @@ static int virtio_ccw_cb(SubchDev *sch, CCW1 ccw)
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ret = -EINVAL;
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break;
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}
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if (sch->thinint_active) {
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/* Trigger a command reject. */
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ret = -ENOSYS;
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break;
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}
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if (!ccw.cda) {
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ret = -EFAULT;
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} else {
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@ -480,6 +493,42 @@ static int virtio_ccw_cb(SubchDev *sch, CCW1 ccw)
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ret = 0;
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}
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break;
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case CCW_CMD_SET_IND_ADAPTER:
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if (check_len) {
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if (ccw.count != sizeof(*thinint)) {
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ret = -EINVAL;
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break;
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}
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} else if (ccw.count < sizeof(*thinint)) {
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/* Can't execute command. */
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ret = -EINVAL;
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break;
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}
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len = sizeof(*thinint);
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hw_len = len;
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if (!ccw.cda) {
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ret = -EFAULT;
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} else if (dev->indicators && !sch->thinint_active) {
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/* Trigger a command reject. */
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ret = -ENOSYS;
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} else {
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thinint = cpu_physical_memory_map(ccw.cda, &hw_len, 0);
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if (!thinint) {
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ret = -EFAULT;
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} else {
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len = hw_len;
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dev->summary_indicator = thinint->summary_indicator;
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dev->indicators = thinint->device_indicator;
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dev->thinint_isc = thinint->isc;
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dev->ind_bit = thinint->ind_bit;
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cpu_physical_memory_unmap(thinint, hw_len, 0, hw_len);
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sch->thinint_active = ((dev->indicators != 0) &&
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(dev->summary_indicator != 0));
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sch->curr_status.scsw.count = ccw.count - len;
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ret = 0;
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}
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}
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break;
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default:
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ret = -ENOSYS;
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break;
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@ -511,6 +560,7 @@ static int virtio_ccw_device_init(VirtioCcwDevice *dev, VirtIODevice *vdev)
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sch->channel_prog = 0x0;
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sch->last_cmd_valid = false;
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sch->orb = NULL;
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sch->thinint_active = false;
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/*
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* Use a device number if provided. Otherwise, fall back to subchannel
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* number.
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@ -858,6 +908,28 @@ static inline VirtioCcwDevice *to_virtio_ccw_dev_fast(DeviceState *d)
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return container_of(d, VirtioCcwDevice, parent_obj);
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}
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static uint8_t virtio_set_ind_atomic(SubchDev *sch, uint64_t ind_loc,
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uint8_t to_be_set)
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{
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uint8_t ind_old, ind_new;
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hwaddr len = 1;
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uint8_t *ind_addr;
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ind_addr = cpu_physical_memory_map(ind_loc, &len, 1);
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if (!ind_addr) {
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error_report("%s(%x.%x.%04x): unable to access indicator",
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__func__, sch->cssid, sch->ssid, sch->schid);
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return -1;
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}
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do {
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ind_old = *ind_addr;
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ind_new = ind_old | to_be_set;
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} while (atomic_cmpxchg(ind_addr, ind_old, ind_new) != ind_old);
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cpu_physical_memory_unmap(ind_addr, len, 1, len);
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return ind_old;
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}
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static void virtio_ccw_notify(DeviceState *d, uint16_t vector)
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{
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VirtioCcwDevice *dev = to_virtio_ccw_dev_fast(d);
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@ -872,9 +944,26 @@ static void virtio_ccw_notify(DeviceState *d, uint16_t vector)
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if (!dev->indicators) {
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return;
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}
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indicators = ldq_phys(&address_space_memory, dev->indicators);
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indicators |= 1ULL << vector;
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stq_phys(&address_space_memory, dev->indicators, indicators);
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if (sch->thinint_active) {
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/*
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* In the adapter interrupt case, indicators points to a
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* memory area that may be (way) larger than 64 bit and
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* ind_bit indicates the start of the indicators in a big
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* endian notation.
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*/
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virtio_set_ind_atomic(sch, dev->indicators +
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(dev->ind_bit + vector) / 8,
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0x80 >> ((dev->ind_bit + vector) % 8));
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if (!virtio_set_ind_atomic(sch, dev->summary_indicator,
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0x01)) {
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css_adapter_interrupt(dev->thinint_isc);
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}
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} else {
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indicators = ldq_phys(&address_space_memory, dev->indicators);
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indicators |= 1ULL << vector;
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stq_phys(&address_space_memory, dev->indicators, indicators);
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css_conditional_io_interrupt(sch);
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}
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} else {
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if (!dev->indicators2) {
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return;
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@ -883,10 +972,8 @@ static void virtio_ccw_notify(DeviceState *d, uint16_t vector)
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indicators = ldq_phys(&address_space_memory, dev->indicators2);
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indicators |= 1ULL << vector;
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stq_phys(&address_space_memory, dev->indicators2, indicators);
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css_conditional_io_interrupt(sch);
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}
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css_conditional_io_interrupt(sch);
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}
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static unsigned virtio_ccw_get_features(DeviceState *d)
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@ -907,6 +994,7 @@ static void virtio_ccw_reset(DeviceState *d)
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css_reset_sch(dev->sch);
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dev->indicators = 0;
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dev->indicators2 = 0;
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dev->summary_indicator = 0;
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}
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static void virtio_ccw_vmstate_change(DeviceState *d, bool running)
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@ -38,6 +38,7 @@
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#define CCW_CMD_SET_IND 0x43
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#define CCW_CMD_SET_CONF_IND 0x53
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#define CCW_CMD_READ_VQ_CONF 0x32
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#define CCW_CMD_SET_IND_ADAPTER 0x73
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#define TYPE_VIRTIO_CCW_DEVICE "virtio-ccw-device"
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#define VIRTIO_CCW_DEVICE(obj) \
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@ -83,9 +84,12 @@ struct VirtioCcwDevice {
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bool ioeventfd_started;
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bool ioeventfd_disabled;
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uint32_t flags;
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uint8_t thinint_isc;
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/* Guest provided values: */
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hwaddr indicators;
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hwaddr indicators2;
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hwaddr summary_indicator;
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uint64_t ind_bit;
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};
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/* virtual css bus type */
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@ -212,6 +212,8 @@ typedef struct IOIntCode {
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#define IO_INT_WORD_ISC(_int_word) ((_int_word & 0x38000000) >> 24)
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#define ISC_TO_ISC_BITS(_isc) ((0x80 >> _isc) << 24)
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#define IO_INT_WORD_AI 0x80000000
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int ioinst_disassemble_sch_ident(uint32_t value, int *m, int *cssid, int *ssid,
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int *schid);
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void ioinst_handle_xsch(S390CPU *cpu, uint64_t reg1);
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@ -891,8 +891,12 @@ void kvm_s390_io_interrupt(S390CPU *cpu, uint16_t subchannel_id,
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{
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uint32_t type;
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type = ((subchannel_id & 0xff00) << 24) |
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((subchannel_id & 0x00060) << 22) | (subchannel_nr << 16);
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if (io_int_word & IO_INT_WORD_AI) {
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type = KVM_S390_INT_IO(1, 0, 0, 0);
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} else {
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type = ((subchannel_id & 0xff00) << 24) |
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((subchannel_id & 0x00060) << 22) | (subchannel_nr << 16);
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}
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kvm_s390_interrupt_internal(cpu, type,
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((uint32_t)subchannel_id << 16) | subchannel_nr,
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((uint64_t)io_int_parm << 32) | io_int_word, 1);
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@ -1157,6 +1157,7 @@ css_chpid_add(uint8_t cssid, uint8_t chpid, uint8_t type) "CSS: add chpid %x.%02
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css_new_image(uint8_t cssid, const char *default_cssid) "CSS: add css image %02x %s"
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css_assign_subch(const char *do_assign, uint8_t cssid, uint8_t ssid, uint16_t schid, uint16_t devno) "CSS: %s %x.%x.%04x (devno %04x)"
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css_io_interrupt(int cssid, int ssid, int schid, uint32_t intparm, uint8_t isc, const char *conditional) "CSS: I/O interrupt on sch %x.%x.%04x (intparm %08x, isc %x) %s"
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css_adapter_interrupt(uint8_t isc) "CSS: adapter I/O interrupt (isc %x)"
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# hw/s390x/virtio-ccw.c
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virtio_ccw_interpret_ccw(int cssid, int ssid, int schid, int cmd_code) "VIRTIO-CCW: %x.%x.%04x: interpret command %x"
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