提交 18a68f7d 编写于 作者: T Taku Izumi 提交者: Daniel Veillard

python: add Python binding for virDomainPinVcpusFlags API

This patch adds the Python bindings for virDomainPinVcpuFlags API.
* python/generator.py: add it to the generator skip list
* python/libvirt-override-api.xml: provide override description
* python/libvirt-override.c: provide override bindings implementation
上级 9e4de118
......@@ -344,6 +344,7 @@ skip_impl = (
'virDomainGetMemoryParameters',
'virDomainGetVcpus',
'virDomainPinVcpu',
'virDomainPinVcpuFlags',
'virSecretGetValue',
'virSecretSetValue',
'virSecretGetUUID',
......
......@@ -174,6 +174,14 @@
<arg name='vcpu' type='unsigned int' info='virtual CPU number'/>
<arg name='cpumap' type='unsigned char *' info='pointer to a bit map of real CPUs (in 8-bit bytes) (IN) Each bit set to 1 means that corresponding CPU is usable. Bytes are stored in little-endian order: CPU0-7, 8-15... In each byte, lowest CPU number is least significant bit.'/>
</function>
<function name='virDomainPinVcpuFlags' file='python'>
<info>Dynamically change the real CPUs which can be allocated to a virtual CPU. This function requires privileged access to the hypervisor.</info>
<return type='int' info='0 in case of success, -1 in case of failure.'/>
<arg name='domain' type='virDomainPtr' info='pointer to domain object, or NULL for Domain0'/>
<arg name='vcpu' type='unsigned int' info='virtual CPU number'/>
<arg name='cpumap' type='unsigned char *' info='pointer to a bit map of real CPUs (in 8-bit bytes) (IN) Each bit set to 1 means that corresponding CPU is usable. Bytes are stored in little-endian order: CPU0-7, 8-15... In each byte, lowest CPU number is least significant bit.'/>
<arg name='flags' type='int' info='flags to specify'/>
</function>
<function name='virDomainSetSchedulerParameters' file='python'>
<info>Change the scheduler parameters</info>
<return type='int' info='-1 in case of error, 0 in case of success.'/>
......
......@@ -736,6 +736,53 @@ libvirt_virDomainPinVcpu(PyObject *self ATTRIBUTE_UNUSED,
return VIR_PY_INT_SUCCESS;
}
static PyObject *
libvirt_virDomainPinVcpuFlags(PyObject *self ATTRIBUTE_UNUSED,
PyObject *args) {
virDomainPtr domain;
PyObject *pyobj_domain, *pycpumap, *truth;
virNodeInfo nodeinfo;
unsigned char *cpumap;
int cpumaplen, i, vcpu;
unsigned int flags;
int i_retval;
if (!PyArg_ParseTuple(args, (char *)"OiOi:virDomainPinVcpuFlags",
&pyobj_domain, &vcpu, &pycpumap, &flags))
return(NULL);
domain = (virDomainPtr) PyvirDomain_Get(pyobj_domain);
LIBVIRT_BEGIN_ALLOW_THREADS;
i_retval = virNodeGetInfo(virDomainGetConnect(domain), &nodeinfo);
LIBVIRT_END_ALLOW_THREADS;
if (i_retval < 0)
return VIR_PY_INT_FAIL;
cpumaplen = VIR_CPU_MAPLEN(VIR_NODEINFO_MAXCPUS(nodeinfo));
if ((cpumap = malloc(cpumaplen)) == NULL)
return VIR_PY_INT_FAIL;
memset(cpumap, 0, cpumaplen);
truth = PyBool_FromLong(1);
for (i = 0 ; i < VIR_NODEINFO_MAXCPUS(nodeinfo) ; i++) {
PyObject *flag = PyTuple_GetItem(pycpumap, i);
if (flag == truth)
VIR_USE_CPU(cpumap, i);
else
VIR_UNUSE_CPU(cpumap, i);
}
LIBVIRT_BEGIN_ALLOW_THREADS;
i_retval = virDomainPinVcpuFlags(domain, vcpu, cpumap, cpumaplen, flags);
LIBVIRT_END_ALLOW_THREADS;
Py_DECREF(truth);
free(cpumap);
if (i_retval < 0)
return VIR_PY_INT_FAIL;
return VIR_PY_INT_SUCCESS;
}
/************************************************************************
* *
......@@ -4109,6 +4156,7 @@ static PyMethodDef libvirtMethods[] = {
{(char *) "virDomainGetMemoryParameters", libvirt_virDomainGetMemoryParameters, METH_VARARGS, NULL},
{(char *) "virDomainGetVcpus", libvirt_virDomainGetVcpus, METH_VARARGS, NULL},
{(char *) "virDomainPinVcpu", libvirt_virDomainPinVcpu, METH_VARARGS, NULL},
{(char *) "virDomainPinVcpuFlags", libvirt_virDomainPinVcpuFlags, METH_VARARGS, NULL},
{(char *) "virConnectListStoragePools", libvirt_virConnectListStoragePools, METH_VARARGS, NULL},
{(char *) "virConnectListDefinedStoragePools", libvirt_virConnectListDefinedStoragePools, METH_VARARGS, NULL},
{(char *) "virStoragePoolGetAutostart", libvirt_virStoragePoolGetAutostart, METH_VARARGS, NULL},
......
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