Intel PCI-X Bedienungsanleitung
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Richtige Gebrauchsanleitung
Die Vorschriften verpflichten den Verkäufer zur Übertragung der Gebrauchsanleitung Intel PCI-X an den Erwerber, zusammen mit der Ware. Eine fehlende Anleitung oder falsche Informationen, die dem Verbraucher übertragen werden, bilden eine Grundlage für eine Reklamation aufgrund Unstimmigkeit des Geräts mit dem Vertrag. Rechtsmäßig lässt man das Anfügen einer Gebrauchsanleitung in anderer Form als Papierform zu, was letztens sehr oft genutzt wird, indem man eine grafische oder elektronische Anleitung von Intel PCI-X, sowie Anleitungsvideos für Nutzer beifügt. Die Bedingung ist, dass ihre Form leserlich und verständlich ist.
Was ist eine Gebrauchsanleitung?
Das Wort kommt vom lateinischen „instructio”, d.h. ordnen. Demnach kann man in der Anleitung Intel PCI-X die Beschreibung der Etappen der Vorgehensweisen finden. Das Ziel der Anleitung ist die Belehrung, Vereinfachung des Starts, der Nutzung des Geräts oder auch der Ausführung bestimmter Tätigkeiten. Die Anleitung ist eine Sammlung von Informationen über ein Gegenstand/eine Dienstleistung, ein Hinweis.
Leider widmen nicht viele Nutzer ihre Zeit der Gebrauchsanleitung Intel PCI-X. Eine gute Gebrauchsanleitung erlaubt nicht nur eine Reihe zusätzlicher Funktionen des gekauften Geräts kennenzulernen, sondern hilft dabei viele Fehler zu vermeiden.
Was sollte also eine ideale Gebrauchsanleitung beinhalten?
Die Gebrauchsanleitung Intel PCI-X sollte vor allem folgendes enthalten:
- Informationen über technische Daten des Geräts Intel PCI-X
- Den Namen des Produzenten und das Produktionsjahr des Geräts Intel PCI-X
- Grundsätze der Bedienung, Regulierung und Wartung des Geräts Intel PCI-X
- Sicherheitszeichen und Zertifikate, die die Übereinstimmung mit entsprechenden Normen bestätigen
Warum lesen wir keine Gebrauchsanleitungen?
Der Grund dafür ist die fehlende Zeit und die Sicherheit, was die bestimmten Funktionen der gekauften Geräte angeht. Leider ist das Anschließen und Starten von Intel PCI-X zu wenig. Eine Anleitung beinhaltet eine Reihe von Hinweisen bezüglich bestimmter Funktionen, Sicherheitsgrundsätze, Wartungsarten (sogar das, welche Mittel man benutzen sollte), eventueller Fehler von Intel PCI-X und Lösungsarten für Probleme, die während der Nutzung auftreten könnten. Immerhin kann man in der Gebrauchsanleitung die Kontaktnummer zum Service Intel finden, wenn die vorgeschlagenen Lösungen nicht wirksam sind. Aktuell erfreuen sich Anleitungen in Form von interessanten Animationen oder Videoanleitungen an Popularität, die den Nutzer besser ansprechen als eine Broschüre. Diese Art von Anleitung gibt garantiert, dass der Nutzer sich das ganze Video anschaut, ohne die spezifizierten und komplizierten technischen Beschreibungen von Intel PCI-X zu überspringen, wie es bei der Papierform passiert.
Warum sollte man Gebrauchsanleitungen lesen?
In der Gebrauchsanleitung finden wir vor allem die Antwort über den Bau sowie die Möglichkeiten des Geräts Intel PCI-X, über die Nutzung bestimmter Accessoires und eine Reihe von Informationen, die erlauben, jegliche Funktionen und Bequemlichkeiten zu nutzen.
Nach dem gelungenen Kauf des Geräts, sollte man einige Zeit für das Kennenlernen jedes Teils der Anleitung von Intel PCI-X widmen. Aktuell sind sie genau vorbereitet oder übersetzt, damit sie nicht nur verständlich für die Nutzer sind, aber auch ihre grundliegende Hilfs-Informations-Funktion erfüllen.
Inhaltsverzeichnis der Gebrauchsanleitungen
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Seite 1
DSS NETWORKS GigMAC PMC & PCI/PCI-X Cards GigPMC Switch GigPCI-Express Switch Board and Driver Users Manual (Includes all Intel-based models 5164, 5261, 5262, 5263-SFP, 5264, 5468, 6162, 6267-SFP and 6468) (copper and fiber models) Document Version 2.6, P/N 131903 Sept 2007[...]
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Seite 2
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 2 1. INTRODUCTION ................................................................................................................ .. 4 1.1 SEE ALSO ..................................................................................................[...]
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Seite 3
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 3 12.1 ENVIRONMENTAL SPECIFICATIONS ....................................................................... 53 13. WARRANTEE AND SUPPORT INFO ............................................................................. 54[...]
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GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 4 1. INTRODUCTION The GigMAC and GigPMC-switch family of network adapter cards and switches are a high-performance, cost-effective solution for adding Gigabit Ethernet connectivity to any embedded or real-time network appliance or network a ccess [...]
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Seite 5
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 5 IEEE 802.3 (all sections applicable to 1000 Base T, 1000 Base SX , 1000 Base LX) IEEE 802.1D and IEEE 802.1Q as applicable for VLAN and priority queuing support PCI 2.2 and PCI-X 1.0 compliant PCI low-profile specification (as ap[...]
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Seite 6
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 6 3. KEY FEATURES The GigMAC (PMC and PCI), Gi gPMC-switch and GigPCI-E swit ches offer the following key features: • Sustained throughput of 245 Mbytes/sec (1.96 Gb) per port over PCI bus using 64-bit, 66 MHZ PCI • Sustained throughput of 118[...]
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GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 7 • Compatible with all 10/100/1000Ba seT hubs, switches and routers • Burst rate of up to 256 dwor ds (1024 bytes) over PCI bus • Jumbo frame support for up to 9K, 802.3x full duplex flow control with automatic pause and priority with multi[...]
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Seite 8
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 8 Driver Utilities (Linux) High-performance frame generator (wire and bus-speed capable) Transmit and receive callbacks (hooks) for driver-level application code Internal and external loopback capabilities Built-in performance [...]
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Seite 9
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 9 5. SYSTEM REQUIREMENTS Intel Platform (minimum) : Pentium III 800 MHZ or fast er with PC100 or PC133 SDRAM, 32-bit 33 MHZ PCI . Intel Platform (recommended) : Pentium4, Core Duo or Xeon at 1.8GHZ or faster, DDR SDRAM, 64-bit, 66 MHZ PCI or PCI-X[...]
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Seite 10
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 10 6. HARDWARE INFORMATION 6.1 BOARD PHOTOS Model 5164 - 4-port PMC Model 5468 GigPMC 8-port sw itch Model 6267-SFP PCI-X Model 5262-LC fiber PMC Model 5262-RJ PMC[...]
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Seite 11
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 11 Model 6468-RJ PCIe Model 5262-SC Model 5264-RJ Model 5263-SFP[...]
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Seite 12
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 12 6.2 BOARD LED INDICATORS PCI / PMC Boards LED Function Table Gigabit NIC Model LED # 1 Green LED # 2 Green LED #3 Yellow LED #4 Yellow PCI-X 6267 TX RX LINK N/A PMC 5468 LNK/ACT LNK/ ACT LNK/ACT LNK/ACT PMC 5164 LNK/ACT LNK/ ACT LNK/ACT LNK/ACT[...]
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Seite 13
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 13 LED_TX (transmit activity) LED_RX (receive activity) Model 5262-LC dual-port or 5261-LC single port PMC (fiber) The front panel has two onboard fiber LC con nectors that support the connection of singlemode or multimode fiber optics wit[...]
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Seite 14
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 14 The front panel has four onboard RJ-45 conn ectors that support the connection of Category 5e cabling with 1 LED indicator per port that provides both a “link” and “activity” indicator as follows: OFF (no link) ON (link) BLI[...]
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Seite 15
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 15 6.3 PMC CONNECTOR PIN/SIGNAL DEFINITIONS PMC Connectors Pin Assignments Pn1/Jn1 32 Bit PCI 1 TCK -12V NC 2 3 GND INITA# 4 5 INTB# INTC# NC 6 7 BUSMODE1# +5V 8 9 NC INTD# PCI-RSVD NC 10 11 GND PCI-RSVD NC 12 13 CLK GND 14 15 GND GNT# 16 17 REQ# [...]
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Seite 16
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 16 Pn2/Jn2 32 Bit PCI 1 NC +12V TRST# 2 3 TMS TDO 4 5 TDI GND 6 7 GND PCI-RSVD NC 8 9 NC PCI-RSVD PCI-RSVD NC 10 11 NC BUSMODE2# +3.3V 12 13 RST# BUSMODE3# PMC_1 14 15 3.3V BUSMODE4# NC 16 17 NC PCI-RSVD GND 18 19 AD[30] AD[29] 20 21 GND AD[26] 22[...]
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Seite 17
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 17 Pn3/Jn3 32 Bit PCI 1 NC PCI-RSVD GND 2 3 GND C/BE[7]# 4 5 C/BE[6]# C/BE[5]# 6 7 C/BE[4]# GND 8 9 NC VIO PAR64 10 11 AD[63] AD[62] 12 13 AD[61] GND 14 15 GND AD[60] 16 17 AD[59] AD[58] 18 19 AD[57] GND 20 21 NC VIO AD[56] 22 23 AD[55] AD[54] 24 [...]
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Seite 18
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 18 Pn4/Jn4 (optional I/O – Model 5468 only) 1 NC I/O I/O NC 2 3 NC I/O I/O NC 4 5 NC I/O I/O NC 6 7 NC I/O I/O NC 8 9 NC I/O I/O NC 10 11 NC I/O I/O NC 12 13 NC I/O I/O NC 14 15 NC I/O I/O NC 16 17 NC I/O I/O NC 18 19 NC I/O I/O NC 20 21 NC I/O [...]
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Seite 19
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 19 6.4 PCI CONFIGURATION REGISTERS in: unit: 0, bus: 16, dev: 1, func: 0, pci regs: device&vendor: 10108086 stsAndErrs: 02300017 membaseCsr: 00020004 flashbaseCsr: 00000000 iobaseCsr: 00001001 membaseUpper: 00000000 irq: 00ff0106 cfgLat/cache:[...]
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GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 20 6.4.1 VENDOR AND DEVICE IDS All Intel based models use the 82546GB chip which has the following vendor and device ID: Vendor ID: 8086 Device ID: 1010 6.5 EEPROM LISTINGS Model 5468 in: unit: 0, i82546 serial eeprom cfg: eeprom[0x00]: 5000 eepro[...]
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Seite 21
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 21 Model 5262-RJ in: unit: 0, i82546 serial eeprom cfg: eeprom[0x00]: 5000 eeprom[0x01]: 0cc2 eeprom[0x02]: 1e99 eeprom[0x03]: 0420 eeprom[0x08]: a921 eeprom[0x09]: 1104 eeprom[0x0a]: 460b (INIT_CTRL_1) eeprom[0x0b]: 5262 eeprom[0x0c]: dbad eeprom[...]
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GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 22 6.6 DEFAULT REGISTER SETTINGS The following lists the default register setti ngs for the Intel 82546 Gigabit controller on the cards (copper models): in: unit: 0, ioAddr: 40020000, mac regs: CTRL: (0x0000): 0x18f41ae1 (PRST: 0, TFCE: 1, RFCE: 1[...]
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Seite 23
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 23 The following lists the default register setti ngs for the Intel 82546 Gigabit controller on the cards (fiber models): in: unit: 0, ioAddr: e087c000, mac regs: CTRL: (0x0000): 0x18f40280 (PRST: 0, TFCE: 1, RFCE: 1, RST: 0, LRST: 0, FD: 0 (FRCD:[...]
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Seite 24
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 24 6.7 ETHERNET FRAME LATENCY The following table shows typical system le vel frame latencies me asured during high- performance testing using fram e generator including path fr om SDRAM to wire through system controller across PCI bus interface: [...]
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Seite 25
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 25 generate static. If you must leave the inst allation area before the installation is complete, be sure to ground yourself agai n before continuing the installation. Assess system power requirements . If you already have other PCI cards in your [...]
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GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 26 Step 2 – Remove the CompactPCI or Embedded Mainboard controller from the system, if necessary to access the PMC slot. This wil l allow the PMC adapter card to be more easily installed. Consult your User's Manual for assistance in opening[...]
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Seite 27
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 27 Connecting Fiber optic Model 6267-SFP, 5261-LC, 5262-LC, 5263-SFP This section explains how to connect the fi ber cards to the external network using standard fiber optic cables. Typically 50 or 62. 5 micron multimode fibe r optic cables with L[...]
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Seite 28
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 28 RJ-45 pinouts for CAT5 connectors and cabl es are shown in the follow ing table: Pin 10/100 Signal Gigabit Signal 1 Transmit+ Channel A+ 2 Transmit- Channel A- 3 Receive+ Channel B+ 4 Unused Channel C+ 5 Unused Channel C- 6 Receive- Channel B- [...]
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Seite 29
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 29 $ mkdir util $ cd util $ cp /mnt/cdrom/linux-dpm-driver/util/util*.tar.gz . $ gunzip util*.tar.gz $ tar vxf util*.tar To create a new utility programs: $ make clean $ make Note(1): If you are installing the adapter ca rds in an SMP machine, you[...]
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Seite 30
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 30 TYPE=Ethernet USERCTL=no NETMASK=255.255.255.0 NETWORK=192.168.0.0 BROADCAST=192.168.0.255 Note: You should also add a line to /etc/modules.conf for each interface as shown in the following example: SAMPLE MODULES.CONF FILE alias eth1 dpm alias[...]
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GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 31 TUNING THE INSTALLATION Interrupt holdoff (programmed latency) To increase (or decrease) the value of the programmed interrupt latency, insert the module and set the "IntrHold Off" parameter as follows: insmod ./dpm.o IntrHoldOff=1 # [...]
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Seite 32
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 32 ‘Insmod’ Command Line Parameters The following parameters are used by ent ering them on the command line with the modprobe or insmod command. Fo r example, with Intel based card model (ex. 5262, 5164, etc.) entering: insmod dpm [ChipSelecto[...]
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Seite 33
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 33 to receive all unicast frames (sometimes useful in frame generator testing). Do not enable for normal traffic. ChipSelector 0, 1 1 Sets the chip set sel ector (0=National, 1=Intel). Default is National chipset. FrameGenSize 60-MaxMtuSize 1500 S[...]
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Seite 34
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 34 dmUtil -m eth0 # displays DP83820 MAC controller registers dmUtil -p eth0 # displays gigabit (phy) transceiver registers dmUtil -e eth0 # displays eeprom dmUtil -a eth0 # displays mac address dmUtil -ms eth0 # displays mac stats (Intel only) LO[...]
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Seite 35
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 35 Using dmUtil dpm driver utility: The “dpm driver utility” is used to capture detailed board levels statistics, controller registers and to set loopback mode. Example usage of the “dmUtil” are as follows: dmUtil -s eth1 # get driver stat[...]
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Seite 36
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 36 10.3 DRIVER UTILITY COMMAND REFERENCE 10.3.1 STATISTICS SHOW FUNCTION vxWorks usage: inShow(unit) # unit = device index starting from 0 Linux usage: ./dmUtil –s eth1 # eth1, eth2, etc. Command output: in: unit: 2, ioAddr: 0xe087c000, intNum: [...]
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Seite 37
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 37 10.3.2 PCI REGISTERS SHOW FUNCTION vxWorks usage: inShowPciRegs(unit) # unit = device index starting from 0 Linux usage: n/a – use Linux “lsdev” command (see man page for command ‘lsdev’) Command output: in: unit: 0, bus: 16, dev: 1, [...]
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Seite 38
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 38 10.3.3 MAC REGISTERS SHOW FUNCTION vxWorks usage: inShowMacRegs(unit) # unit = device index starting from 0 Linux usage: ./dmUtil –m eth1 # eth1, eth2, etc. Command output: in: unit: 0, ioAddr: 40020000, mac regs: CTRL: (0x0000): 0x18f01ae1 ([...]
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Seite 39
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 39 10.3.4 MAC STATISTICS SHOW FUNCTION vxWorks usage: inShowMacStats(unit) # unit = device index starting from 0 Linux usage: ./dmUtil –ms eth1 # eth1, eth2, etc. Command output: in: unit: 0, ioAddr: 40020000, mac regs: CRCERRS: (0x4000): 0 ALGN[...]
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Seite 40
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 40 NODEF: (0x40c4): 27 NODEF: (0x40c8): 3384703584 NODEF: (0x40cc): 27 NODEF: (0x40d0): 79354269 NODEF: (0x40d4): 79354270 NODEF: (0x40d8): 0 NODEF: (0x40dc): 0 NODEF: (0x40e0): 0 NODEF: (0x40e4): 0 NODEF: (0x40e8): 0 NODEF: (0x40ec): 79354269 NOD[...]
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Seite 41
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 41 10.3.5 PHY REGISTERS SHOW FUNCTION vxWorks usage: inShowPhyRegs(unit) # unit = device index starting from 0 Linux usage: ./dmUtil –p eth1 # eth1, eth2, etc. Command output: in: unit: 0, phy regs: BMCR: (0x00): 0x4140 BMSR: (0x01): 0x7949 PHYI[...]
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Seite 42
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 42 10.3.6 EEPROM SHOW FUNCTION vxWorks usage: inShowEeprom(unit) # unit = device index starting from 0 Linux usage: ./dmUtil –e eth1 # eth1, eth2, etc. Command output: in: unit: 0, i82546 serial eeprom cfg: eeprom[0x00]: 5000 eeprom[0x01]: 0cc2 [...]
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Seite 43
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 43 10.3.7 MAC ADDRESS SHOW FUNCTION vxWorks usage: inShowMacAddr(unit) # unit = device index starting from 0 Linux usage: ./dmUtil –a eth1 # eth1, eth2, etc. Command output: in: unit: 0, current (applied) mac address: 00 50 c2 0c 99 1e 10.3.8 BU[...]
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Seite 44
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 44 10.3.9 STARTING FRAME GENERATOR vxWorks usage: inStrtFrmGen(unit, frmSize) # unit = device index starting from 0 Linux usage: ./dmUtil –l eth1 1 # eth1, eth2, etc. 10.3.10 STOPPING FRAME GENERATOR vxWorks usage: inStopFrmGen(unit) # unit = de[...]
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Seite 45
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 45 10.3.11 SWITCH STATUS SHOW FUNCTION Note: This function is applicable fo r Model 5468 GigPMC and Model 6468 GigPCIe switch/interface cards only. vxWorks usage: inShowSwitch(unit) # unit = device index starting from 0 Linux usage: ./dmUtil –sw[...]
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Seite 46
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 46 A. Opening a socket for management API int s; s = socket (PF_INET, SOCK_STREAM, 0); B. Create request block for driver ioctl struct ifreq ifr; int subCmd; NpkUserCtl myIoc; char myDataBuf[MAX_LINES * MAX_LINE_LEN]; /* set interface name */ strc[...]
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Seite 47
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 47 /* get driver trace buffer */ #define DM_IOCTL_GET_TRC 1 /* get driver statistics */ #define DM_IOCTL_GET_STATS 2 /* get phy registers */ #define DM_IOCTL_GET_PHY_REGS 3 /* get mac registers */ #define DM_IOCTL_GET_MAC_REGS 4 /* set loopback mo[...]
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Seite 48
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 48 Functions to read and write registers in the switch: STATUS inReadSpiReg(int unit, int page, int offset, int bCnt, UINT8 *pData); STATUS inWriteSpiReg8(int unit, int page, int offset, int val); STATUS inWriteSpiReg16(int unit, int page, int off[...]
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Seite 49
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 49 11. TESTING AND VERIFICATION There are several ways to test your adapt er on vxWorks and Linux platforms. This section provides suggestions on how you may test and veri fy your installation. Before you can proceed with any of the suggested te s[...]
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Seite 50
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 50 12. SPECIFICATIONS Connector (Models 5261-RJ, 5262-RJ, 5164, 5264, 5468, 6162, 6468, 6267-RJ): Gigabit Ethernet (1000BaseT, 100BaseTX, 10BaseT): RJ-45 CAT5e Connector (Model 5261-LC, 5262-LC, 5262-SC, 6267-SFP fiber): SFP, SC or LC connector ty[...]
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Seite 51
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 51 Burst Rate: Up to 256 dwords (1024 bytes) over PCI bus Host Offloading: IPv.4 checksum (UDP, TCP and IP) and optional statistics gathering for RFC 1213 (MIB II), RFC 1398 (Ether-like MIB), IEEE 802.3 LME Optional: Jumbo packets, 802.3x full dup[...]
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Seite 52
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 52 IEEE 802.3z Gigabit Ethernet ov er 1000 Base SX multimode fiber IEEE 802.1D and 802.1Q as applicable for VLAN priority queuing IEEE 802.3 Gigabit Ethernet over 4 pairs of UTP Category 5e 1000BaseTX). IEEE 802.3u Fast Ethernet ov[...]
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Seite 53
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 53 12.1 ENVIRONMENTAL SPECIFICATIONS Rugged Class Grade Operating Temp. Storage Temp Vibration Shock Humidity Other Specs C1 Commercial 0ºC to +65ºC 200 linear ft/minute air flow -50C to +100C N/A N/A Operating: Up to 90% Non- Condensing Conform[...]
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Seite 54
GigMAC-PMC and PCI GigPMC Switch Board and Driver Users Man u al DSS NETWORKS, INC. Version: 2.6 Page: 54 13. WARRANTEE AND SUPPORT INFO Technical Support and Warranty: Telephone technical support (Mon-Fri 8AM to 6PM, MST), 24-hour support via web email 1 year limited product warranty on controller hardware (contact support for warrantee/RMA inform[...]