struct vcpu *v;
uint32_t offset = 0;
-#define PV_XSAVE_SIZE(xcr0) (2 * sizeof(uint64_t) + xstate_ctxt_size(xcr0))
+#define PV_XSAVE_HDR_SIZE (2 * sizeof(uint64_t))
+#define PV_XSAVE_SIZE(xcr0) (PV_XSAVE_HDR_SIZE + xstate_ctxt_size(xcr0))
ret = -ESRCH;
if ( (evc->vcpu >= d->max_vcpus) ||
}
expand_xsave_states(v, xsave_area,
- size - 2 * sizeof(uint64_t));
+ size - PV_XSAVE_HDR_SIZE);
if ( copy_to_guest_offset(evc->buffer, offset, xsave_area,
- size - 2 * sizeof(uint64_t)) )
+ size - PV_XSAVE_HDR_SIZE) )
ret = -EFAULT;
xfree(xsave_area);
}
const struct xsave_struct *_xsave_area;
ret = -EINVAL;
- if ( evc->size < 2 * sizeof(uint64_t) ||
- evc->size > 2 * sizeof(uint64_t) +
- xstate_ctxt_size(xfeature_mask) )
+ if ( evc->size < PV_XSAVE_HDR_SIZE ||
+ evc->size > PV_XSAVE_SIZE(xfeature_mask) )
goto vcpuextstate_out;
receive_buf = xmalloc_bytes(evc->size);
_xcr0 = *(uint64_t *)receive_buf;
_xcr0_accum = *(uint64_t *)(receive_buf + sizeof(uint64_t));
- _xsave_area = receive_buf + 2 * sizeof(uint64_t);
+ _xsave_area = receive_buf + PV_XSAVE_HDR_SIZE;
if ( _xcr0_accum )
{
- if ( evc->size >= 2 * sizeof(uint64_t) + XSTATE_AREA_MIN_SIZE )
+ if ( evc->size >= PV_XSAVE_HDR_SIZE + XSTATE_AREA_MIN_SIZE )
ret = validate_xstate(_xcr0, _xcr0_accum,
&_xsave_area->xsave_hdr);
}
if ( _xcr0_accum & XSTATE_NONLAZY )
v->arch.nonlazy_xstate_used = 1;
compress_xsave_states(v, _xsave_area,
- evc->size - 2 * sizeof(uint64_t));
+ evc->size - PV_XSAVE_HDR_SIZE);
vcpu_unpause(v);
}
else
xfree(receive_buf);
}
+#undef PV_XSAVE_HDR_SIZE
+#undef PV_XSAVE_SIZE
+
vcpuextstate_out:
if ( domctl->cmd == XEN_DOMCTL_getvcpuextstate )
copyback = 1;