This example shows a startup of the monitor system BS2000 V21.0B on an SU /390. The output shown omits the parts which do not affect VM2000 (indicated by “...
”).
%P.NSI00E3 IPL-REPS READ: 0; EXECUTED: 0
%P.NSI1100 IPL DEVICE = 4IVV.0; IPL PATH = 9900 (MN=9900)
%P.NSI1106 *** BS2000 DIALOGUE STARTUP ***
?P.NSI1110 ENTER OPTIONS OR EOT. REPLY (UNLOCK,TEST,ALLDISK,DRV-SELECT,
CREATE-DRV,IPL-CONF)
p.
%P.NSI3135 IPL DISK-SETUP READ FROM IPL-CONF PREPARED <date> <time>%P.NSI1143 003 PUBVOLS OF HOME-PVS 4IVV WITH SYSID 174 ONLINE
%P.NSI1145 4IVV.0 <date> <time> ON 9900
%P.NSI1145 4IVV.1 <date> <time> ON 9901
%P.NSI1145 4IVV.2 <date> <time> ON 9902
%P.NSI1153 STATE OF PROCESSORS ONLINE:
%P.NSI1155 CPU 00 ONLINE, ATTACHED (IPL CPU)
%P.NSI1158 CPU 01 ONLINE, DETACHED
%P.NSI1158 CPU 02 ONLINE, DETACHED
%P.NSI1158 CPU 03 ONLINE, DETACHED
%P.NSI1158 CPU 04 ONLINE, DETACHED
%P.NSI1163 LOCAL DATE = <date>, TIME = <time> FROM SVP
%P.NSI1180 LOAD ADDRESS OF SYSPRG.STRT.210 = 0077E000
%P.NSI00E6 SYSREP.STRT.210 IS USED AS REP FILENAME
?P.NSI0050 SPECIFY PARAM FILE OR DEVICE.
REPLY (EOT (USE STANDARD FILE);FN=FILENAME(,VOL=VSN);CONS;END)
p.
%P.NSI00E6 SYSPAR.BS2.210.SU710001 IS USED AS PARAM FILENAME%P.NSI008A PROCESSING PARAMETER ADD FILE PARAMS.VM2000 ———————————————— (1)
?P.NSI0050 SPECIFY PARAM FILE OR DEVICE.
REPLY (EOT (USE STANDARD FILE);FN=FILENAME(,VOL=VSN);CONS;END)
p.end
?P.NSI1190 ENTER BS2000-FILENAME. REPLY (FILENAME(,VOL=VSN); EOT (USE STANDARD FILE))
p.
?P.NSI0050 SPECIFY BS2000 REP FILE OR DEVICE. REPLY (EOT (USE STANDARD FILE);FN=FILENAME(,VOL=VSN);CONS;END)
p.
%P.NSI00E6 SYSREP.BS2.210 IS USED AS REP FILENAME?P.NSI0050 SPECIFY BS2000 REP FILE OR DEVICE.
REPLY (EOT (END); FN=FILENAME(,VOL=VSN);CONS;END)
p.end ————————————————————————————————————————————————————————————————— (2)%P.NSI0028 AVAILABLE MEMORY = 15.5 GB. CPU = 30029001 36000000
%P.NSI5103 BS2000 : NAME = <name>, VERSION = 21.0B00, GEN-TIME = <date> <time>
?P.VMS5005 ENTER VM2000 HYPERVISOR FILE NAME. REPLY (<FILE NAME>; EOT(USE STANDARD FILE))
p. ———————————————————————————————————————————————————————————————————— (3)%P.VMS5015 VM2000 HYPERVISOR LOADED FROM FILE 'SYSPRG.VM2000-HPV.120'
?P.NSI0050 SPECIFY VM2000 HYPERVISORREP FILE OR DEVICE. REPLY (EOT (USE STANDARD FILE);FN=FILENAME(,VOL=VSN);CONS;END)
p. ———————————————————————————————————————————————————————————————————— (4)%P.NSI00E6 SYSREP.VM2000-HPV.120 IS USED AS REP FILENAME
?P.NSI0050 SPECIFY VM2000 HYPERVISORREP FILE OR DEVICE. REPLY (EOT (END); FN=FILENAME(,VOL=VSN);CONS;END)
p.end ————————————————————————————————————————————————————————————————— (5)?P.VMS5027 SPECIFY VM2000 CONFIGURATION FILE NAME.
REPLY (EOT(USE STANDARD FILE); FN=<FILE NAME>(,VOL=<VSN>); CONS(CONSOLE CMD INPUT); END(END OF INPUT)) ———————————————— (6)
p. ———————————————————————————————————————————————————————————————————— (7)
%P.VMS5014 FILE 'SYSPAR.VM2000-MON.120' IS USED AS VM2000 CONFIGURATION FILE —————————————————————————————————— (8)
?P.VMS5027 SPECIFY VM2000 CONFIGURATION FILE NAME. REPLY (EOT(USE STANDARD FILE); FN=<FILE NAME>(,VOL=<VSN>);
CONS(CONSOLE CMD INPUT); END(END OF INPUT))p.cons ———————————————————————————————————————————————————————————————— (9)
?P.VMS5021 ISSUE VM2000 COMMAND (MAX. 70 CHARACTERS) OR 'END'.
REPLY (DESIRED INPUT; EOT=END) ————————————————————————————— (10)p.add-vm-devices units=(fc10,fc11,fc12),vm-id=1 ——————————————————————— (11)
?P.VMS5021 ISSUE VM2000 COMMAND (MAX. 70 CHARACTERS) OR 'END'.
REPLY (DESIRED INPUT; EOT=END)p. ———————————————————————————————————————————————————————————————————— (12)
?P.VMS5027 SPECIFY VM2000 CONFIGURATION FILE NAME.
REPLY (EOT(USE STANDARD FILE); FN=<FILE NAME>(,VOL=<VSN>); CONS(CONSOLE CMD INPUT); END(END OF INPUT))
p.end ————————————————————————————————————————————————————————————————— (13)
%P.VMS5049 NUMBER OF REAL CPU(S) RUNNING: 4 —————————————————————————— (14)
%P.VMS5050 NUMBER OF AVAILABLE SPARE-CPU(S): 1%P.VMS5020 STARTUP OF THE MONITOR SYSTEM IN BIPROCESSOR MODE —————————— (15)
%P.VMS5016 TOTAL MAIN MEMORY FOR VM2000: 15872 MB;
MONITOR VM SIZE: 512 MB; HYPERVISOR SIZE: 16 MB ————————— (16)%P.EMM2960 EFFECTIVE SYSSIZE VALUE IS 240 MB
%P.NSI5150 CPU'S ONLINE: 2 CPU'S INSTALLED: 4
...%P.NSI3130 IPL-CONF SAVED ONTO DISK MN=9900 WITHOUT ERRORS
%E.EMM2301 PAGING AREA ON VOLUME 4IVV.0 SIZE = 00875.00 MB.
%E.EMM2301 PAGING AREA ON VOLUME 4IVV.1 SIZE = 00875.00 MB.
%E.EMM2301 PAGING AREA ON VOLUME 4IVV.2 SIZE = 00875.00 MB.
%E.EMM2850 THE SIZE OF THE PAGING-AREA IS 0002625.00 MB;
THE RESERVED SIZE OF THE PAGING-AREA IS 0000011.60 MB.
%P.NSI6102 BS2000 EXECUTIVE: CLASS2 ACTIVE
%E.EMM2310 THE SIZE OF MAIN MEMORY IS 00000512 MB;
THE MINIMAL SIZE OF MAIN MEMORY IS 00000512 MB
...
NMH1102 MESSAGE OUTPUT FILE ':4IVV:$TSOS.SYSMES.VM2000-UTIL.120',
ACCESS=ISAM, ACTION=ADD ——————————————————————————————————————— (17)
NMH1102 MESSAGE OUTPUT FILE ':4IVV:$TSOS.SYSMES.VM2000-MON.120',
ACCESS=ISAM, ACTION=ADD
...
BLS0990 PROCESSING OF REP FILE ':4IVV:$TSOS.SYSREP.VM2000-MON.120' STARTED
...
HLV0001 VMHEL FILE ':4IVV:$TSOS.SYS.VMHEL.<date> <time>' OPENED
WITH 'SPACE= 402' ———————————————————————————————————————————— (18)
VMS5541 *** VIRTUAL MACHINE SYSTEM VM2000 V12.0B READY *** ———————————— (19)
ESM0501 'VM2-MON /V12.0' COPYRIGHT (C)
'2023',FUJITSU TECHNOLOGY SOLUTIONS GMBH. ALL RIGHTS RESERVED
ESM0400 'CREATE' OR 'RESUME' SUBSYSTEM 'VM2-MON /V12.0' WITH
'SYNCHRONOUS=*YES' AND 'RESET=*NO' ———————————————————————————— (20)
VMS2023 CPU 01 OF VIRTUAL MACHINE (1,MONITOR) STARTED ————————————————— (21)
VMS2023 CPU 02 OF VIRTUAL MACHINE (1,MONITOR) STARTED ————————————————— (22)
VMS2037 NON-INTERRUPTIBLE WAIT STATE FOR VIRTUAL MACHINE (1,MONITOR),
CODE 80FFFFFF, CPU 02
VMS2011 CPU 02 OF VIRTUAL MACHINE (1,MONITOR) STOPPED
NSI0000 *** S Y S T E M R E A D Y *** ———————————————————————————— (23)
...
/dcs dcsof=sof.su390 —————————————————————————————————————————————————— (24)...
VMS1030 BCAM APPLICATION '$VMCONS' READY —————————————————————————————— (25)...
VMS2330 STORAGE FOR VM DEFINITIONS ACCESSIBLE ————————————————————————— (26)...
/show-vm-resources information=*configuration ————————————————————————— (27)MAX NUMBER OF VMS 15
MAX NUMBER OF VM-GROUPS 8MAX NUMBER OF CPU-POOLS 4
MAX NUMBER OF CPUS PER VM 4
TOTAL REAL MEMORY SIZE (MB) 15872
ASSIGNMENT SET DEFAULT VALUE: *NONE
NEW DEVICES : *NONE
CPU-ATTR CPU-POOL REAL CPUS
NORMAL *STDPOOL 00(ATT),01(ATT),02(ATT),03(ATT)
EXTRA NONE
SPARE 04(DET)
VMS3000 VM2000 COMMAND /SHOW-VM-RESOURCES FOR VIRTUAL MACHINE ( ,*VM2000)
PROCESSED SUCCESSFULLY
NBR0740 COMMAND COMPLETED 'SHOW-VM-RESOURCES';
(RESULT: SC2=000, SC1=000, MC=CMD0001); DATE: <date>
/show-vm-resources information=*all ——————————————————————————————————— (28) CPU-POOL(P)
VM-ID VM-GROUP(G) CPU-Q MAX-U PROC MEM-SIZE MAX-IO 1 MONITOR *STDPOOL(P) 20.00 100.00 2(+1) 512 (100)
VM-ID STATE VERSION PER ADMIN PRIV
1 MONITOR RUNNING V21.0B NO NO AS
F R E E VM: 14 LARGEST-DOMAIN(MB): 15344
VM-ID CPU-POOL GR-CPU-Q CPU-Q/ EFF-Q MAX-U/ EFF-U PROC
1 MONITOR *STDPOOL 20.00/ 50.00 100.00/ 50.00 2(+1)
VM-ID SCHED ACT-I VIRT CPUS
1 MONITOR DC NO 00(RUN),01(RUN),02(OFF)
CPU-ATTR CPU-POOL REAL CPUS
NORMAL *STDPOOL 00(ATT),01(ATT),02(ATT),03(ATT)
EXTRA NONE
SPARE 04(DET)
VM-ID VM-MONJV
NO VM-MONJV ASSIGNED
VM-ID UNITS
1 MONITOR ASSIGNED BY VM-ADMIN
EXCL: C2,C3,C4,C5,9900,9901,9902,CC40,CC41,CC80,
CC81,CD40,CD41,CD80,CD81,FC10,FC11,FC12——————————— (29)
SHARED: 990FDISPOSABLE UNASS: CA(VC),CB(VC),CC(VC),CH,CI,CJ,CK,CL,CM,CN,CO,
CS,CT,C0,C1,DH,DI,DJ,DK,DL,DM,DN,DO,DS,DT,N3,
N4,N8,TA,TB,TF,T0,T1,T2,9903,9904,9905,9906,
9907,9908,9909,990A,990B,990C,990D,990E,9910,
... FC19,FC1A,FC1B,FC1C,FC1D,FC1E,FC1F
SHARED: 990F
VM-ID LOC-BEGIN MEM-SIZE MIN-MEM-S MAX-MEM-S DEST-MEM-S
HYPERVISOR 00000000 16
1 MONITOR 00000010 512 512
NONE 00000210 15344
LARGEST FREE DOMAIN: 15344
VM-ID PRIV DETAILS
1 MONITOR AS
VMS3000 VM2000 COMMAND /SHOW-VM-RESOURCES FOR VIRTUAL MACHINE ( ,*VM2000)
PROCESSED SUCCESSFULLY
NBR0740 COMMAND COMPLETED 'SHOW-VM-RESOURCES';
(RESULT: SC2=000, SC1=000, MC=CMD0001); DATE: <date>
------------------------------------------------------------------------------------------------------------------
(1) | The VM2000 parameters are also read in the startup parameter service. |
(2) | The REP entry for BS2000 is terminated. |
(3) | The default hypervisor file is to be used. |
(4) | The default VM2000 hypervisor Rep file is to be used. |
(5) | The input for the VM2000 hypervisor REP file is concluded. |
(6) | Input is requested for VM2000. It is possible to specify the configuration file for the monitor VM or enter VM2000 commands for the monitor VM on the BS2000 console. |
(7) | The default configuration file is to be used. |
(8) | The specifications of the configuration file are logged (only) in the CONSLOG file. |
(9) | VM2000 commands are to be entered for the monitor VM on the BS2000 console. |
(10) | A VM2000 command is requested. |
(11) | The monitor VM is assigned further devices with |
(12) | The entry of VM2000 commands on the BS2000 console is to be terminated. |
(13) | Startup is to be continued. |
(14) | Outputs the number of real normal CPUs which are available for VM2000 operation. In addition, an spare CPU is available. |
(15) | The monitor VM is operated as a biprocessor system. |
(16) | VM2000 logs how much main memory is currently available. |
(17) | The message files of VM2000 are enabled. |
(18) | The global VMHEL file is opened. |
(19) | VM2000 is ready. |
(20) | The VM2-MON subsystem has been loaded and is ready. |
(21) | The second virtual CPU of the monitor VM was started by the monitor system. |
(22) | The virtual spare CPU of the monitor VM was placed in operational status by the monitor system and then stopped again. |
(23) | The system initialization of the monitor system is completed. |
(24) | The data communication system is started in the monitor system. |
(25) | $VMCONS is started automatically. |
(26) | The system disk for VM definitions is available. |
(27) | Command of the VM2000 administrator for outputting the VM2000 configuration information, see "SHOW-VM-RESOURCES (Output status of VM2000 resources)". |
(28) | Command of the VM2000 administrator for outputting the status information on all VM2000 resources, see "SHOW-VM-RESOURCES (Output status of VM2000 resources)". |
(29) | In addition to the devices from the configuration file, VM1 is automatically explicitly assigned the devices of the home pubset when it is started, see "Configuration via the VM2000 configuration file (SU /390)". |