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_rcsid="$Id: fitting_toolkit.py,v 1.9 2003-10-03 17:45:40 mendenhall Exp $"
_rcsid="$Id: fitting_toolkit.py,v 1.10 2005-12-31 15:03:22 mendenhall Exp $"
def derivs(self): #analytic derivatives for a 2-d gaussian #z0+a*exp( -(x-xmu)**2/(2*xsig**2) -(y-ymu)**2/(2.0*ysig**2)) z0, a, xmu, xsigma, ymu, ysigma = self.funcparams n=self.pointcount x=self.xarray[0,:n] y=self.xarray[1,:n] xsigi=-1.0/(2.0*xsigma**2) ysigi=-1.0/(2.0*ysigma**2) dx=x-xmu dx2=dx*dx dy=y-ymu dy2=dy*dy...
sumarray=Numeric.zeros(len(x), self.atype)
sumarray=Numeric.zeros(x.shape[-1], self.atype)
def function(self, p, x): if self.firstpass: #first call from hessian_fit is meaningless, all coefficients zero, save time return 0.0
kx, ky, kz=self.beam.local_direction theta=math.atan2(kx, kz)
dot=Numeric.dot tr=Numeric.transpose deg=math.pi/180.0 kx, ky, kz = v1 = self.beam.local_direction v2 = cross(v1, (0,1,0)) v2 /= vec_mag(v2) v3 = cross(v1, v2) v3 /= vec_mag(v3) coord=Numeric.array((v1,v2,v3)) cinv=tr(coord) print "**grating**" print Numeric.array_str(coord, precision=4) theta=math.atan2(kx, math.s...
def local_transform(self): kx, ky, kz=self.beam.local_direction theta=math.atan2(kx, kz) littrow, out=self.angles(theta, self.beam.get_lambda()) #remember, outgoing angle is _not_ outgoing direction... beam has changed from incoming to outgoing, too dtheta=out+theta s,c=math.sin(dtheta), math.cos(dtheta) #this funn...
s,c=math.sin(dtheta), math.cos(dtheta)
s,c=-math.sin(dtheta), math.cos(dtheta)
def local_transform(self): kx, ky, kz=self.beam.local_direction theta=math.atan2(kx, kz) littrow, out=self.angles(theta, self.beam.get_lambda()) #remember, outgoing angle is _not_ outgoing direction... beam has changed from incoming to outgoing, too dtheta=out+theta s,c=math.sin(dtheta), math.cos(dtheta) #this funn...
self.beam.transform(self.globalize_transform(Numeric.array(((c,0,-s),(0,1,0),(-s,0,-c)))))
rot1=dot(Numeric.array(((1,0,0),(0,1,0),(0,0,-1))), dot(cinv, dot(Numeric.array(((c,s,0),(-s,c,0),(0,0,1))), coord ))) print Numeric.array_str(rot1, precision=4) self.beam.transform(self.globalize_transform(rot1))
def local_transform(self): kx, ky, kz=self.beam.local_direction theta=math.atan2(kx, kz) littrow, out=self.angles(theta, self.beam.get_lambda()) #remember, outgoing angle is _not_ outgoing direction... beam has changed from incoming to outgoing, too dtheta=out+theta s,c=math.sin(dtheta), math.cos(dtheta) #this funn...
self.__highspeed=0
def __init__(self, port_name, highspeed=0): init_port_memory() self.setup_serial(port_name) self.__highspeed=0 self.__saved_realtime_frag='' if port_name in _highspeedports: self.high_speed_serial() elif highspeed: self.high_speed_setup() remember_highspeed_port(port_name) self.wake() self.wake()
def reset_highspeed_serial(self): self.__highspeed=0
def reset_highspeed_serial(self): self.__highspeed=0
self.serial_write_port=port=open(port_name,"r+" , 16384) self.serial_read_port=self.serial_write_port
self.serial_write_port=port=open(port_name,"r+" , 0) self.serial_read_port=self.serial_write_port
def setup_serial(self, port_name): self.serial_write_port=port=open(port_name,"r+" , 16384) self.serial_read_port=self.serial_write_port self.set_port_params() #setup default port
"use this if you now the LabPro is already running at high speed" if self.__highspeed: return try: self.set_port_params(baud=termios.B115200) except: return
"use this if you know the LabPro is already running at high speed"
def high_speed_serial(self): "use this if you now the LabPro is already running at high speed" if self.__highspeed: return #already did this try: self.set_port_params(baud=termios.B115200) #see if this is allowed! except: return #if this isn't an error, try to do it for real! self.set_port_params(baud=termios.B115200)...
self.__highspeed=1
def high_speed_serial(self): "use this if you now the LabPro is already running at high speed" if self.__highspeed: return #already did this try: self.set_port_params(baud=termios.B115200) #see if this is allowed! except: return #if this isn't an error, try to do it for real! self.set_port_params(baud=termios.B115200)...
self.wake()
self.serial_write_port.write('s\rs\rs\rs\r') self.command('baudrate',115) self.command('baudrate',115)
def high_speed_setup(self): "use this to command the LabPro up to high speed, then switch the serial up. Do not use if it has already been commanded!" self.wake() self.command('baudrate',115) time.sleep(0.5) self.serial_read_port.read() self.high_speed_serial()
raise MeasurementComputingError("Lost data from Server")
return None
def read(self, maxlen=8, feature=0, send_command=1): "read data from USB" self.check_usb_status() if feature: maxlen=104 if send_command: self.usb_send.write("FEAT %d %d\n" %(maxlen,0)); elif send_command: self.usb_send.write("READ %d\n" % maxlen); res='' tries=0 actmax=maxlen+16 while len(res)<actmax and tries < 20...
dt=self.packet_dt*0.5-(time.time()-self.last_packet_time)
dt=self.packet_dt*0.8-(time.time()-self.last_packet_time)
def get_continuous_scan_packet(self, resync=0): dt=self.packet_dt*0.5-(time.time()-self.last_packet_time) if dt>0.1: time.sleep(dt-0.09) res=self.read(feature=1, send_command=self.got_last_packet) if not res: self.got_last_packet=0 return None, None self.last_packet_time=time.time() self.got_last_packet=1 trailer=re...
mcc.setup_analog_scan(sweeps=-1, channels=(0,), gains=mcc.GAIN2_DIFF, rate=2000)
mcc.setup_analog_scan(sweeps=-1, channels=(0,), gains=mcc.GAIN2_DIFF, rate=1000)
def stop_analog_scan(self): self.write((self.CBAINSTOP,)) self.scanning=0
if sys.exc_info()[1].args==(35,):
if sys.exc_info()[1].args[0]==35:
def read(self, maxlen=None, mode=None): "read data from USB. If mode is None or 0, strip trailing nulls for ASCII, otherwise leave alone" self.check_usb_status() try: if maxlen is None: res=self.usb_recv.read() else: res=self.usb_recv.read(maxlen) if not mode: zp=res.find('\0') if zp>=0: res=res[:zp] #trim any nulls r...
fcntl.fcntl(self.serial_read_port, fcntl.F_SETFL, os.O_NONBLOCK)
def set_port_params(self, baud=termios.B38400): port=self.serial_read_port attrs=termios.tcgetattr(port) attrs[4]=attrs[5]=baud #set 38.4kbaud attrs[2] = attrs[2] | termios.CLOCAL #ignore connection indicators cc=attrs[6]; cc[termios.VMIN]=0; cc[termios.VTIME]=0 #non-blocking reads termios.tcsetattr(port, termios.TCSAD...
self.serial_write_port=port=open(port_name,"r+" , 0)
self.serial_write_port=port=open(port_name,"r+" , 8192)
def setup_serial(self, port_name): self.serial_write_port=port=open(port_name,"r+" , 0) self.serial_read_port=self.serial_write_port self.set_port_params() #setup default port
try: self.serial_read_port.seek(0) self.__allow_serial_seek=1 except: self.__allow_serial_seek=0
def setup_serial(self, port_name): self.serial_write_port=port=open(port_name,"r+" , 0) self.serial_read_port=self.serial_write_port self.set_port_params() #setup default port
self.serial_read_port.seek(0) if maxlen is None: return self.serial_read_port.read() else: return self.serial_read_port.read(maxlen)
if self.__allow_serial_seek: self.serial_read_port.seek(0) try: if maxlen is None: return self.serial_read_port.read() else: return self.serial_read_port.read(maxlen) except IOError: return ''
def read(self, maxlen=None): "override this as for write()" self.serial_read_port.seek(0) #try to clear EOF if maxlen is None: return self.serial_read_port.read() else: return self.serial_read_port.read(maxlen)
graphite.genOutput(q,'PDF', size=(800,500))
graphite.genOutput(g,'PDF', size=(800,500))
def splint(xa, ya, y2a, x): """splint(x_vals, y_vals, y2_vals, x) returns the interpolated from from the spline x can either be a scalar or a listable item, in which case a Numeric Float array will be returned and the multiple interpolations will be done somewhat more efficiently if the array is in reasonable order""" ...
if (ep>15) return 0;
if (ep>31) return 0;
def printSource(opts): global strings, serialNumberIndex, usb_data_t devDesc=genDeviceDesc(opts) configDescs,configDescCount=genConfigDescs(opts) stringDescs,stringDescCount=genStringDescs(opts) epConfigs=genEPConfigStructs(opts) if dataFormat=='u16': dataOffset=1 ucw=u16len(opts['ctlWriteBufLen']) else: dataOffset=2 u...
return FALSE
return dataobjs
def getServicesInfo(self): dataobjs = list() args = list() args.append("/sbin/clustat") args.append("-x") cmdstr = ' '.join(args) try: out,err,res = rhpl.executil.execWithCaptureErrorStatus("/sbin/clustat",args) except RuntimeError, e: return FALSE
self.be_patient_dialog.set_modal(True)
def showDialog(self,message): global SIGCHLD_RECIEVED if(SIGCHLD_RECIEVED == 1): return self.cleanup()
def __on_delete_event(self, *args): return True
def cleanup(self): global SIGCHLD_RECIEVED signal.signal(signal.SIGCHLD, signal.SIG_DFL) SIGCHLD_RECIEVED = 0 if(self.timeout_id != 0): gobject.source_remove(self.timeout_id) if(self.pbar_timer != 0): gobject.source_remove(self.pbar_timer) if(self.be_patient_dialog): self.be_patient_dialog.destroy() signal.signal(sig...
self.pack_start (gtk.Label ('-'), False, False, 0)
self.pack_start (gtk.Label ('.'), False, False, 0)
def __init__ (self): gtk.HBox.__init__ (self) self.set_spacing (3)
args = ['/sbin/ccs_test', 'get', descr, '/cluster/\@name']
args = ['/sbin/ccs_test', 'get', descr, '/cluster/@name']
def getClusterName(self): #Use [root@link-08 ~]# ccs_test connect # Connect successful. #Connection descriptor = 0 # [root@link-08 ~]# ccs_test get 0 /cluster/\@name #Get successful. # Value = <link-cluster>
self.model_builder.exportModel(CLUSTER_CONF_PATH)
if self.model_builder.exportModel(CLUSTER_CONF_PATH) == False: return
def propagate(self, button): retval = MessageLibrary.warningMessage(CONFIRM_PROPAGATE) if retval == gtk.RESPONSE_NO: return #1 save file to /etc/cluster/cluster.conf self.model_builder.exportModel(CLUSTER_CONF_PATH) #2 call ccs_tool try: self.command_handler.propagateConfig(CLUSTER_CONF_PATH) except CommandError, e: Me...
self.rsa_fd_name.set_text("") self.rsa_fd_login.set_text("") self.rsa_fd_passwd.set_text("") self.rsa_fd_ip.set_text("")
def clear_fd_forms(self): self.apc_fd_name.set_text("") self.apc_fd_ip.set_text("") self.apc_fd_login.set_text("") self.apc_fd_passwd.set_text("") self.apc_snmp_fd_name.set_text("") self.apc_snmp_fd_ip.set_text("") self.apc_snmp_fd_login.set_text("") self.apc_snmp_fd_passwd.set_text("") self.wti_fd_ip.set_text("") self...
def pop_rsa_fd(self, attrs): self.rsa_fd_name.set_text(attrs["name"]) self.rsa_fd_login.set_text(attrs["login"]) self.rsa_fd_passwd.set_text(attrs["passwd"]) self.rsa_fd_ip.set_text(attrs["ipaddr"])
def pop_rsa_fd(self, attrs): self.rsa_fd_name.set_text(attrs["name"]) self.rsa_fd_login.set_text(attrs["login"]) self.rsa_fd_passwd.set_text(attrs["passwd"]) self.rsa_fd_ip.set_text(attrs["ipaddr"])
self.rsa_fd_name = self.fence_xml.get_widget('entry64') self.rsa_fd_login = self.fence_xml.get_widget('entry66') self.rsa_fd_passwd = self.fence_xml.get_widget('entry67') self.rsa_fd_ip = self.fence_xml.get_widget('entry65')
def process_widgets(self): ##Fence Instance Form Fields self.apc_port = self.fence_xml.get_widget('entry1') self.apc_switch = self.fence_xml.get_widget('entry2') self.apc_snmp_port = self.fence_xml.get_widget('apc_snmp_entry1') self.apc_snmp_switch = self.fence_xml.get_widget('apc_snmp_entry2') self.wti_port = self.fen...
def val_rsa_fd(self, name): rectify_fence_name = False if self.rsa_fd_name.get_text() == "": raise ValidationError('FATAL', FD_PROVIDE_NAME) self.validateNCName(self.rsa_fd_name) if name != self.rsa_fd_name.get_text(): res = self.check_unique_fd_name(self.rsa_fd_name.get_text()) if res == False: raise ValidationError('...
def val_drac_fd(self, name): rectify_fence_name = False if self.drac_fd_name.get_text() == "": raise ValidationError('FATAL', FD_PROVIDE_NAME) self.validateNCName(self.drac_fd_name) if name != self.drac_fd_name.get_text(): res = self.check_unique_fd_name(self.drac_fd_name.get_text()) if res == False: #name is already ...
text_str = "<span size=\"10000\">" + prop_list + "</span>"
for item in prop_list: amended_prop_list = amended_prop_list + item if item == "_": amended_prop_list = amended_prop_list + "_" text_str = "<span size=\"10000\">" + amended_prop_list + "</span>"
def prepare_prop_layout(self, prop_list,type): if prop_list == None: return pc = self.pango_context desc = pc.get_font_description() desc.set_stretch(pango.STRETCH_NORMAL) desc.set_size(PROPERTY_SIZE) #pc.set_font_description(desc)
self.fd_delete.connect("delete_event",self.fd_delete_delete)
def setupDialogsandButtons(self):
self.glade_xml.get_widget('okbutton15').connect('clicked',self.on_fd_delete_ok) self.glade_xml.get_widget('cancelbutton15').connect('clicked',self.on_fd_delete_cancel)
def setupDialogsandButtons(self):
self.fd_delete.set_title(FD_DELETION_WARNING) self.fd_delete_treeview.get_column(0).set_title(AFFECTED_CLUSTER_NODES)
def on_fd_delete(self, button): ref_hash = {} selection = self.treeview.get_selection() model,iter = selection.get_selected() obj = model.get_value(iter, OBJ_COL) fd_name = obj.getName().strip() nodes = self.model_builder.getNodes() for node in nodes: flevels = node.getFenceLevels() for flevel in flevels: kids = flevel...
self.fd_delete.show() def on_fd_delete_ok(self, button): selection = self.treeview.get_selection() outer_model,outer_iter = selection.get_selected() obj = outer_model.get_value(outer_iter, OBJ_COL) fd_ptr = self.model_builder.getFenceDevicePtr() fd_ptr.removeChild(obj) model = self.fd_delete_treeview.get_model() model...
response = self.fd_delete.run() self.fd_delete.hide() if response == gtk.RESPONSE_YES: fd_ptr = self.model_builder.getFenceDevicePtr() fd_ptr.removeChild(obj) for node in kees: for fence_level in node.getFenceLevels(): for fence in fence_level.getChildren()[:]: if fence.getName().strip() == obj.getName().strip(): fen...
def on_fd_delete(self, button): ref_hash = {} selection = self.treeview.get_selection() model,iter = selection.get_selected() obj = model.get_value(iter, OBJ_COL) fd_name = obj.getName().strip() nodes = self.model_builder.getNodes() for node in nodes: flevels = node.getFenceLevels() for flevel in flevels: kids = flevel...
obj = model.get_value(iter, OBJ_COL) retval = self.warningMessage(CONFIRM_FAILDOM_REMOVE % obj.getName()) if (retval == gtk.RESPONSE_NO): return
faildom = model.get_value(iter, OBJ_COL) services = [] for service in self.model_builder.getServices(): domain = service.getAttribute('domain') if domain == faildom.getName(): services.append(service) if len(services) == 0: retval = self.warningMessage(CONFIRM_FAILDOM_REMOVE % faildom.getName()) if retval != gtk.RE...
def on_faildom_delete(self, button): selection = self.treeview.get_selection() model,iter = selection.get_selected() obj = model.get_value(iter, OBJ_COL) retval = self.warningMessage(CONFIRM_FAILDOM_REMOVE % obj.getName()) if (retval == gtk.RESPONSE_NO): return ###XXX-FIX should be wrapped in exception handler faildoms...
faildoms_ptr.removeChild(obj)
faildoms_ptr.removeChild(faildom) for service in services: service.removeAttribute('domain')
def on_faildom_delete(self, button): selection = self.treeview.get_selection() model,iter = selection.get_selected() obj = model.get_value(iter, OBJ_COL) retval = self.warningMessage(CONFIRM_FAILDOM_REMOVE % obj.getName()) if (retval == gtk.RESPONSE_NO): return ###XXX-FIX should be wrapped in exception handler faildoms...
obj = model.get_value(iter, OBJ_COL) retval = self.warningMessage(CONFIRM_RC_REMOVE % obj.getName()) if (retval == gtk.RESPONSE_NO): return rc_ptr = self.model_builder.getResourcesPtr() self.model_builder.removeReferences(obj) rc_ptr.removeChild(obj)
rc = model.get_value(iter, OBJ_COL) services = [] for service in self.model_builder.getServices(): if self.__on_rc_delete_recurse(rc, service): services.append(service) if len(services) == 0: retval = self.warningMessage(CONFIRM_RC_REMOVE % rc.getName()) if retval != gtk.RESPONSE_YES: return else: treemodel = self....
def on_rc_delete(self, button): selection = self.treeview.get_selection() model,iter = selection.get_selected() obj = model.get_value(iter, OBJ_COL) retval = self.warningMessage(CONFIRM_RC_REMOVE % obj.getName()) if (retval == gtk.RESPONSE_NO): return rc_ptr = self.model_builder.getResourcesPtr() self.model_builder.rem...
def __on_rc_delete_recurse(self, tagobj, level): for t in level.getChildren(): if t.isRefObject(): if t.getObj() == tagobj: return True if self.__on_rc_delete_recurse(tagobj, t): return True return False
def on_rc_delete(self, button): selection = self.treeview.get_selection() model,iter = selection.get_selected() obj = model.get_value(iter, OBJ_COL) retval = self.warningMessage(CONFIRM_RC_REMOVE % obj.getName()) if (retval == gtk.RESPONSE_NO): return rc_ptr = self.model_builder.getResourcesPtr() self.model_builder.rem...
def fd_delete_delete(self, *args): self.fd_delete.hide() return gtk.TRUE
def on_svc_add_delete(self, *args): self.svc_add_dlg.hide() return gtk.TRUE
fs_name = self.fs_name.get_text()
fs_name = self.fs_name.get_text().strip()
def val_fs(self, *argname): name = argname[0] fs_name = self.fs_name.get_text() if fs_name == "": raise ValidationError('FATAL', RESOURCE_PROVIDE_NAME)
if name != gfs_name:
if name != fs_name:
def val_fs(self, *argname): name = argname[0] fs_name = self.fs_name.get_text() if fs_name == "": raise ValidationError('FATAL', RESOURCE_PROVIDE_NAME)
"fence_rsa":self.pop_rsa,
def __init__(self, fi_proxy_widget, fd_proxy_widget, model_builder): self.fi_proxy_widget = fi_proxy_widget self.fd_proxy_widget = fd_proxy_widget self.model_builder = model_builder gladepath = "fence.glade" if not os.path.exists(gladepath): gladepath = "%s/%s" % (INSTALLDIR,gladepath) #gtk.glade.bindtextdomain(PROGNA...
"fence_rsa":self.pop_rsa_fd,
def __init__(self, fi_proxy_widget, fd_proxy_widget, model_builder): self.fi_proxy_widget = fi_proxy_widget self.fd_proxy_widget = fd_proxy_widget self.model_builder = model_builder gladepath = "fence.glade" if not os.path.exists(gladepath): gladepath = "%s/%s" % (INSTALLDIR,gladepath) #gtk.glade.bindtextdomain(PROGNA...
"fence_rsa":self.val_rsa,
def __init__(self, fi_proxy_widget, fd_proxy_widget, model_builder): self.fi_proxy_widget = fi_proxy_widget self.fd_proxy_widget = fd_proxy_widget self.model_builder = model_builder gladepath = "fence.glade" if not os.path.exists(gladepath): gladepath = "%s/%s" % (INSTALLDIR,gladepath) #gtk.glade.bindtextdomain(PROGNA...
"fence_rsa":self.val_rsa_fd,
def __init__(self, fi_proxy_widget, fd_proxy_widget, model_builder): self.fi_proxy_widget = fi_proxy_widget self.fd_proxy_widget = fd_proxy_widget self.model_builder = model_builder gladepath = "fence.glade" if not os.path.exists(gladepath): gladepath = "%s/%s" % (INSTALLDIR,gladepath) #gtk.glade.bindtextdomain(PROGNA...
def pop_rsa(self, attrs): pass
def pop_drac(self, attrs): try: self.drac_modulename.set_sensitive(True) self.drac_modulename.set_text(attrs["modulename"]) self.drac_mc_cbox.set_active(True) self.drac_modname_label.set_sensitive(True) except KeyError, e: self.drac_mc_cbox.set_active(False) self.drac_modulename.set_text("") self.drac_modulename.set_se...
self.rsa_fd_hostname.set_text("")
self.rsa_fd_ip.set_text("")
def clear_fd_forms(self): self.apc_fd_name.set_text("") self.apc_fd_ip.set_text("") self.apc_fd_login.set_text("") self.apc_fd_passwd.set_text("") self.apc_snmp_fd_name.set_text("") self.apc_snmp_fd_ip.set_text("") self.apc_snmp_fd_login.set_text("") self.apc_snmp_fd_passwd.set_text("") self.wti_fd_ip.set_text("") self...
self.rsa_fd_hostname.set_text(attrs["hostname"])
self.rsa_fd_ip.set_text(attrs["ipaddr"])
def pop_rsa_fd(self, attrs): self.rsa_fd_name.set_text(attrs["name"]) self.rsa_fd_login.set_text(attrs["login"]) self.rsa_fd_passwd.set_text(attrs["passwd"]) self.rsa_fd_hostname.set_text(attrs["hostname"])
self.rsa_fd_hostname = self.fence_xml.get_widget('rsa_entry5')
self.rsa_fd_ip = self.fence_xml.get_widget('rsa_entry5')
def process_widgets(self): ##Fence Instance Form Fields self.apc_port = self.fence_xml.get_widget('entry1') self.apc_switch = self.fence_xml.get_widget('entry2') self.apc_snmp_port = self.fence_xml.get_widget('apc_snmp_entry1') self.apc_snmp_switch = self.fence_xml.get_widget('apc_snmp_entry2') self.wti_port = self.fen...
if self.rsa_fd_hostname.get_text() == "": raise ValidationError('FATAL', FD_PROVIDE_HOSTNAME)
if self.rsa_fd_ip.get_text() == "": raise ValidationError('FATAL', FD_PROVIDE_IP)
def val_rsa_fd(self, name): rectify_fence_name = False if self.rsa_fd_name.get_text() == "": raise ValidationError('FATAL', FD_PROVIDE_NAME) self.validateNCName(self.rsa_fd_name) if name != self.rsa_fd_name.get_text(): res = self.check_unique_fd_name(self.rsa_fd_name.get_text()) if res == False: #name is already used ...
fields["hostname"] = self.rsa_fd_hostname.get_text()
fields["ipaddr"] = self.rsa_fd_ip.get_text()
def val_rsa_fd(self, name): rectify_fence_name = False if self.rsa_fd_name.get_text() == "": raise ValidationError('FATAL', FD_PROVIDE_NAME) self.validateNCName(self.rsa_fd_name) if name != self.rsa_fd_name.get_text(): res = self.check_unique_fd_name(self.rsa_fd_name.get_text()) if res == False: #name is already used ...
args = list() args.append("/sbin/cman_tool") args.append("status") cmdstr = ' '.join(args) try: out,err,res = rhpl.executil.execWithCaptureErrorStatus("/sbin/cman_tool",args)
try: out, err, res = rhpl.executil.execWithCaptureErrorStatus('/sbin/ccs_test', ['/sbin/ccs_test', 'connect'])
def getClusterName(self): #Use [root@link-08 ~]# ccs_test connect # Connect successful. #Connection descriptor = 0 # [root@link-08 ~]# ccs_test get 0 /cluster/\@name #Get successful. # Value = <link-cluster> args = list() args.append("/sbin/cman_tool") args.append("status") cmdstr = ' '.join(args) try: out,err,res = ...
lines = out.splitlines() for line in lines: val = line.find("Cluster name:") if val != (-1): v = line.find(":") return line[(v+1):].strip() return ""
lines = out.splitlines() descr = '' for line in lines: if line.find('Connection descriptor = ') != -1: words = line.split('=') if len(words) != 2: return '' descr = words[1].strip() break if descr == '': return '' try: args = ['/sbin/ccs_test', 'get', descr, '/cluster/\@name'] out, err, res = rhpl.executil.execWithCa...
def getClusterName(self): #Use [root@link-08 ~]# ccs_test connect # Connect successful. #Connection descriptor = 0 # [root@link-08 ~]# ccs_test get 0 /cluster/\@name #Get successful. # Value = <link-cluster> args = list() args.append("/sbin/cman_tool") args.append("status") cmdstr = ' '.join(args) try: out,err,res = ...
self.validateNCName(self.sanbox2_fd_name)
def val_sanbox2_fd(self, name): rectify_fence_name = FALSE if self.sanbox2_fd_name.get_text() == "": raise ValidationError('FATAL', FD_PROVIDE_NAME)
self.validateNCName(self.bladecenter_fd_name)
def val_bladecenter_fd(self, name): rectify_fence_name = FALSE if self.bladecenter_fd_name.get_text() == "": raise ValidationError('FATAL', FD_PROVIDE_NAME)
raise CommandError("FATAL",PROPAGATE_ERROR % (err)) if res != 0: raise CommandError("FATAL",PROPAGATE_ERROR % (err))
raise CommandError("FATAL",PROPAGATE_ERROR2 % (err)) if res != 0: raise CommandError("FATAL",PROPAGATE_ERROR2 % (err))
def propagateConfig(self, file): args = list() args.append("/sbin/ccs_tool") args.append("update") args.append(file) cmdstr = ' '.join(args) try: out,err,res = rhpl.executil.execWithCaptureErrorStatus("/sbin/ccs_tool",args) except RuntimeError, e: raise CommandError("FATAL",PROPAGATE_ERROR % (err))
raise CommandError("FATAL",PROPAGATE_ERROR2 % (version, err))
raise CommandError("FATAL",PROPAGATE_ERROR % (version, err))
def propagateCmanConfig(self, version): args = list() args.append("/sbin/cman_tool") args.append("version") args.append("-r") args.append(version) cmdstr = ' '.join(args) try: out,err,res = rhpl.executil.execWithCaptureErrorStatus("/sbin/cman_tool",args) except RuntimeError, e: raise CommandError("FATAL",PROPAGATE_ERRO...
self.timer_id = 0
def __init__(self, glade_xml, model_builder,winmain):
gtk.timeout_add(10000,self.onTimer)
if self.timer_id == 0: self.timer_id = gtk.timeout_add(10000, self.onTimer) return True
def onTimer(self): if self.model_builder.isClusterMember(): self.glade_xml.get_widget('label90').set_text(MEMBER) self.prep_tree() self.prep_service_tree() else: self.glade_xml.get_widget('label90').set_text(UNKNOWN) self.nodetree.get_model().clear() self.servicetree.get_model().clear()
if True:
s_name, s_state = selection_data.data.split(' -- ') if s_name.strip() == '' or s_state.strip() == '': return if s_state.strip().lower() == 'disabled':
def dest_drag_data_received(self,w, context, x, y, selection_data, info, time): errorstring1 = "" errorstring2 = "" #row = w.get_path_at_pos(x,y-25)[0][0] drop_info = w.get_dest_row_at_pos(x,y) if drop_info == None: return row = w.get_path_at_pos(x,y-25)[0][0] model=w.get_model() iter=model.get_iter_first() for i in ra...
commandstring = "clusvcadm -e " + selection_data.data + " -m " + m_name
commandstring = "clusvcadm -e \"" + s_name + "\" -m " + m_name
def dest_drag_data_received(self,w, context, x, y, selection_data, info, time): errorstring1 = "" errorstring2 = "" #row = w.get_path_at_pos(x,y-25)[0][0] drop_info = w.get_dest_row_at_pos(x,y) if drop_info == None: return row = w.get_path_at_pos(x,y-25)[0][0] model=w.get_model() iter=model.get_iter_first() for i in ra...
commandstring = "clusvcadm -r \"" + selection_data.data + "\" -m " + m_name
commandstring = "clusvcadm -r \"" + s_name + "\" -m " + m_name
def dest_drag_data_received(self,w, context, x, y, selection_data, info, time): errorstring1 = "" errorstring2 = "" #row = w.get_path_at_pos(x,y-25)[0][0] drop_info = w.get_dest_row_at_pos(x,y) if drop_info == None: return row = w.get_path_at_pos(x,y-25)[0][0] model=w.get_model() iter=model.get_iter_first() for i in ra...
try: force = attrs["force_unmount"] if force == "1" or force == "yes": self.gfs_force_unmount.set_active(True) else: self.gfs_force_unmount.set_active(False) except KeyError, e: self.gfs_force_unmount.set_active(False)
def pop_clusterfs(self, attrs): try: self.gfs_name.set_text(attrs["name"]) except KeyError, e: self.gfs_name.set_text("")
y = (-1) menu = self.fs_optionmenu.get_menu() for item in menu.get_children(): y = y + 1 children = item.get_children() if children: if item.get_children()[0].get_text() == type: break self.fs_optionmenu.set_history(y)
model = self.fs_combo.get_model() iter = model.get_iter_first() while iter != None: if model.get_value(iter, 0) == type: self.fs_combo.set_active_iter(iter) break iter = model.iter_next(iter) try: force = attrs["force_unmount"] if force == "1" or force == "yes": self.fs_force_unmount.set_active(True) else: self.fs_for...
def pop_fs(self, attrs): self.fs_name.set_text(attrs["name"]) self.fs_mnt.set_text(attrs["mountpoint"]) self.fs_device.set_text(attrs["device"]) type = attrs["fstype"] y = (-1) menu = self.fs_optionmenu.get_menu() for item in menu.get_children(): y = y + 1 children = item.get_children() if children: if item.get_childr...
self.fs_combo.set_active_iter(self.fs_combo.get_model().get_iter_first()) self.fs_force_unmount.set_active(False) self.fs_options.set_text('')
def clear_rc_forms(self):
if self.gfs_force_unmount.get_active(): force = '1' else: force = '0' fields['force_unmount'] = force
def val_clusterfs(self, *argname): name = argname[0] gfs_name = self.gfs_name.get_text() if gfs_name == "": raise ValidationError('FATAL', RESOURCE_PROVIDE_NAME)
fstypelabel = self.fs_optionmenu.get_children()[0] fstype = fstypelabel.get_text()
iter = self.fs_combo.get_active_iter() fstype = self.fs_combo.get_model().get_value(iter, 0)
def val_fs(self, *argname): name = argname[0] fs_name = self.fs_name.get_text().strip() if fs_name == "": raise ValidationError('FATAL', RESOURCE_PROVIDE_NAME)
if self.fs_force_unmount.get_active(): force = '1' else: force = '0' fields['force_unmount'] = force options = self.fs_options.get_text().strip() fields['options'] = options
def val_fs(self, *argname): name = argname[0] fs_name = self.fs_name.get_text().strip() if fs_name == "": raise ValidationError('FATAL', RESOURCE_PROVIDE_NAME)
self.gfs_options = self.rc_xml.get_widget('entry21')
self.gfs_options = self.rc_xml.get_widget('gfs_options') self.gfs_force_unmount = self.rc_xml.get_widget('gfs_force_unmount')
def process_widgets(self): #self.fileselector = self.rc_xml.get_widget('fileselection1')
self.fs_optionmenu = self.rc_xml.get_widget('optionmenu2')
def process_widgets(self): #self.fileselector = self.rc_xml.get_widget('fileselection1')
self.fs_combo = self.rc_xml.get_widget('combobox1') self.fs_force_unmount = self.rc_xml.get_widget('fs_force_unmount') self.fs_options = self.rc_xml.get_widget('fs_options')
def process_widgets(self): #self.fileselector = self.rc_xml.get_widget('fileselection1')
namestr = words[1] start = namestr.find("\"") end = namestr.rfind("\"") name = namestr[start+1:end]
namedex = service.find(NAMESTR) start = namedex + len(NAMESTR) name = self.extract_attr(start, service)
def getServicesInfo(self):
statestr = words[3] start = statestr.find("\"") end = statestr.rfind("\"") state = statestr[start+1:end]
statedex = service.find(STATESTR) start = statedex + len(STATESTR) state = self.extract_attr(start, service)
def getServicesInfo(self):
ownstr = words[4] start = ownstr.find("\"") end = ownstr.rfind("\"") owner = ownstr[start+1:end]
ownerdex = service.find(OWNERSTR) start = ownerdex + len(OWNERSTR) owner = self.extract_attr(start, service)
def getServicesInfo(self):
lownstr = words[5] start = lownstr.find("\"") end = lownstr.rfind("\"") lastowner = lownstr[start+1:end]
lownerdex = service.find(LOWNERSTR) start = lownerdex + len(LOWNERSTR) lastowner = self.extract_attr(start, service)
def getServicesInfo(self):
resstr = words[6] start = resstr.find("\"") end = resstr.rfind("\"") restarts = resstr[start+1:end]
resdex = service.find(RESTARTSSTR) start = resdex + len(RESTARTSSTR) restarts = self.extract_attr(start, service)
def getServicesInfo(self):
rectify_fence_name = FALSE
rectify_fence_name = False
def val_drac_fd(self, name): rectify_fence_name = FALSE if self.drac_fd_name.get_text() == "": raise ValidationError('FATAL', FD_PROVIDE_NAME) self.validateNCName(self.drac_fd_name) if name != self.drac_fd_name.get_text(): res = self.check_unique_fd_name(self.drac_fd_name.get_text()) if res == FALSE: #name is already ...
if res == FALSE: raise ValidationError('FATAL', FD_PROVIDE_NAME) rectify_fence_name = TRUE
if res == False: raise ValidationError('FATAL', FD_PROVIDE_NAME) rectify_fence_name = True
def val_drac_fd(self, name): rectify_fence_name = FALSE if self.drac_fd_name.get_text() == "": raise ValidationError('FATAL', FD_PROVIDE_NAME) self.validateNCName(self.drac_fd_name) if name != self.drac_fd_name.get_text(): res = self.check_unique_fd_name(self.drac_fd_name.get_text()) if res == FALSE: #name is already ...
if rectify_fence_name == TRUE:
if rectify_fence_name == True:
def val_drac_fd(self, name): rectify_fence_name = FALSE if self.drac_fd_name.get_text() == "": raise ValidationError('FATAL', FD_PROVIDE_NAME) self.validateNCName(self.drac_fd_name) if name != self.drac_fd_name.get_text(): res = self.check_unique_fd_name(self.drac_fd_name.get_text()) if res == FALSE: #name is already ...
if (monitor == None) or (monitor == False) or (monitor == "no"):
if (monitor == None) or (monitor == False) or (monitor == "no") or (monitor == "0"):
def pop_ip(self, attrs): addr = attrs["address"] self.ip.setAddrFromString(addr) monitor = attrs["monitor_link"] if (monitor == None) or (monitor == False) or (monitor == "no"): self.monitor_link.set_active(False) else: self.monitor_link.set_active(True)
self.prepset = True
def populate_fdom_optionmenu(self): menu = gtk.Menu() faildoms = self.model_builder.getFailoverDomains() if len(faildoms) == 0: m = gtk.MenuItem(NONE_PLACEHOLDER) m.show() menu.append(m) else: m = gtk.MenuItem(NONE_PLACEHOLDER) m.show() menu.append(m) for fdom in faildoms: m = gtk.MenuItem(fdom.getName()) m.show() menu...
self.prepset = False
def on_fdom_option_changed(self, *args): if self.prepset == True: self.prepset = False return else: if self.svc_fdom_optionmenu.get_history() == 0: retval = self.current_service.removeAttribute("domain") return lbl = self.svc_fdom_optionmenu.get_children()[0] self.current_service.addAttribute("domain",lbl.get_text()) s...
return lbl = self.svc_fdom_optionmenu.get_children()[0] self.current_service.addAttribute("domain",lbl.get_text())
else: lbl = self.svc_fdom_optionmenu.get_children()[0] self.current_service.addAttribute("domain",lbl.get_text())
def on_fdom_option_changed(self, *args): if self.prepset == True: self.prepset = False return else: if self.svc_fdom_optionmenu.get_history() == 0: retval = self.current_service.removeAttribute("domain") return lbl = self.svc_fdom_optionmenu.get_children()[0] self.current_service.addAttribute("domain",lbl.get_text()) s...
self.prepset = False
def prep_service_panel(self, svc): self.current_service = svc if self.current_service != None: self.service_name_label.set_markup("<span><b>" + svc.getName() + "</b></span>")
if (autostart_state == None) or (autostart_state == "0"):
if (autostart_state == "0"):
def prep_service_panel(self, svc): self.prepset = True self.current_service = svc if self.current_service != None: self.service_name_label.set_markup("<span><b>" + svc.getName() + "</b></span>")
if self.autostart_cbox.get_active() == True: self.current_service.addAttribute(AUTOSTART_STR,"1")
if self.autostart_cbox.get_active() == False: self.current_service.addAttribute(AUTOSTART_STR,"0")
def on_autostart_cbox_changed(self, *args): if self.prepset == True: return self.model_builder.setModified() if self.autostart_cbox.get_active() == True: self.current_service.addAttribute(AUTOSTART_STR,"1") else: retval = self.current_service.getAttribute(AUTOSTART_STR) if retval != None: self.current_service.removeAtt...
self.perform_final_check()
if self.perform_final_error_check() == FALSE: return self.dual_power_fence_check()
def exportModel(self, filename=None):
def perform_final_check(self): self.dual_power_fence_check()
def perform_final_error_check(self): if self.perform_gulm_count_check() == FALSE: return FALSE return TRUE def perform_gulm_count_check(self): if self.getLockType() == GULM_TYPE: gulm_count = len(self.getGULMPtr().getChildren()) if not (gulm_count in (1, 3, 4, 5)): MessageLibrary.errorMessage(INVALID_GULM_COUNT % gu...
def perform_final_check(self): self.dual_power_fence_check()
def on_fdom_option_changed(self, *args): if self.prepset == TRUE: self.prepset = FALSE return else: if self.svc_fdom_optionmenu.get_history() == 0: retval = self.current_service.removeAttribute("domain") return lbl = self.svc_fdom_optionmenu.get_children()[0] self.current_service.addAttribute("domain",lbl.get_text()) s...
def on_fdom_option_changed(self, *args): if self.prepset == TRUE: self.prepset = FALSE return else: if self.svc_fdom_optionmenu.get_history() == 0: retval = self.current_service.removeAttribute("domain") return lbl = self.svc_fdom_optionmenu.get_children()[0] self.current_service.addAttribute("domain",lbl.get_text()) s...
self.prepset = TRUE
def prep_service_tree(self): resources = self.current_service.getChildren() treemodel = self.svc_treeview.get_model() treemodel.clear() for child in resources: iter = treemodel.append(None) self.add_tree_children(child, iter)
model, iter = selection.get_selected() robj = model.get_value(iter, R_OBJ_COL) self.current_service.removeChild(robj)
model, riter = selection.get_selected() robj = model.get_value(riter, R_OBJ_COL) rfrom_iter = model.iter_parent(riter) if rfrom_iter == None: self.current_service.removeChild(robj) else: rfrom_obj = model.get_value(rfrom_iter, R_OBJ_COL) rfrom_obj.removeChild(robj)
def on_del_resource(self, button): selection = self.svc_treeview.get_selection() model, iter = selection.get_selected() robj = model.get_value(iter, R_OBJ_COL) self.current_service.removeChild(robj) self.model_builder.setModified() self.prep_service_tree()
self.del_rc_button.set_sensitive(FALSE)
def on_list_selection_changed(self, *args): self.all_buttons_on() selection = self.svc_treeview.get_selection() model,iter = selection.get_selected() if iter == None: self.attach_new_rc.set_sensitive(FALSE) self.attach_shared_rc.set_sensitive(FALSE) self.del_rc_button.set_sensitive(FALSE) self.edit_rc_button.set_sensit...
self.del_rc_button.set_sensitive(TRUE)
def on_list_selection_changed(self, *args): self.all_buttons_on() selection = self.svc_treeview.get_selection() model,iter = selection.get_selected() if iter == None: self.attach_new_rc.set_sensitive(FALSE) self.attach_shared_rc.set_sensitive(FALSE) self.del_rc_button.set_sensitive(FALSE) self.edit_rc_button.set_sensit...
self.svc_mgmt.hide()
self.service_controller_close()
def on_svc_mgmt_delete(self, *args): self.svc_mgmt.hide() return gtk.TRUE
self.gnbd_ip.set_text(attrs["ipaddress"])
pass
def pop_gnbd(self, attrs): self.gnbd_ip.set_text(attrs["ipaddress"])
self.gnbd_ip.set_text("")
def clear_fi_forms(self): self.apc_port.set_text("") self.apc_switch.set_text("") self.wti_port.set_text("") self.brocade_port.set_text("") self.vixel_port.set_text("") self.gnbd_ip.set_text("") self.sanbox2_port.set_text("") self.bladecenter_blade.set_text("") self.mcdata_port.set_text("") self.egenera_lpan.set_text("...
self.gnbd_fd_server.set_text("")
self.gnbd_fd_servers.set_text("")
def clear_fd_forms(self): self.apc_fd_name.set_text("") self.apc_fd_ip.set_text("") self.apc_fd_login.set_text("") self.apc_fd_passwd.set_text("") self.wti_fd_ip.set_text("") self.wti_fd_name.set_text("") self.wti_fd_passwd.set_text("") self.brocade_fd_name.set_text("") self.brocade_fd_ip.set_text("") self.brocade_fd_l...
self.gnbd_fd_server.set_text(attrs["server"])
self.gnbd_fd_servers.set_text(attrs["servers"])
def pop_gnbd_fd(self, attrs): self.gnbd_fd_name.set_text(attrs["name"]) self.gnbd_fd_server.set_text(attrs["server"])