Merge branch 'ipmi' (IPMI patches from Corey Minyard)
Merge emailed patches from Corey Minyard: "Remove some bogus docs, Fix ACPI/IPMI interactions, fix some warnings, and add register spacing detection for PCI interfaces." * ipmi: IPMI: Detect register spacing on PCI interfaces IPMI: Fix some uninitialized warning IPMI: Change link order ACPI: Reorder IPMI driver before any other ACPI drivers IPMI: Remove SMBus driver info from the docs
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@ -42,13 +42,7 @@ The driver interface depends on your hardware. If your system
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properly provides the SMBIOS info for IPMI, the driver will detect it
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and just work. If you have a board with a standard interface (These
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will generally be either "KCS", "SMIC", or "BT", consult your hardware
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manual), choose the 'IPMI SI handler' option. A driver also exists
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for direct I2C access to the IPMI management controller. Some boards
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support this, but it is unknown if it will work on every board. For
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this, choose 'IPMI SMBus handler', but be ready to try to do some
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figuring to see if it will work on your system if the SMBIOS/APCI
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information is wrong or not present. It is fairly safe to have both
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these enabled and let the drivers auto-detect what is present.
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manual), choose the 'IPMI SI handler' option.
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You should generally enable ACPI on your system, as systems with IPMI
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can have ACPI tables describing them.
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@ -58,8 +52,7 @@ their job correctly, the IPMI controller should be automatically
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detected (via ACPI or SMBIOS tables) and should just work. Sadly,
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many boards do not have this information. The driver attempts
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standard defaults, but they may not work. If you fall into this
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situation, you need to read the section below named 'The SI Driver' or
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"The SMBus Driver" on how to hand-configure your system.
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situation, you need to read the section below named 'The SI Driver'.
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IPMI defines a standard watchdog timer. You can enable this with the
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'IPMI Watchdog Timer' config option. If you compile the driver into
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@ -104,12 +97,7 @@ driver, each open file for this device ties in to the message handler
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as an IPMI user.
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ipmi_si - A driver for various system interfaces. This supports KCS,
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SMIC, and BT interfaces. Unless you have an SMBus interface or your
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own custom interface, you probably need to use this.
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ipmi_smb - A driver for accessing BMCs on the SMBus. It uses the
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I2C kernel driver's SMBus interfaces to send and receive IPMI messages
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over the SMBus.
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SMIC, and BT interfaces.
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ipmi_watchdog - IPMI requires systems to have a very capable watchdog
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timer. This driver implements the standard Linux watchdog timer
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@ -482,53 +470,6 @@ for specifying an interface. Note that when removing an interface,
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only the first three parameters (si type, address type, and address)
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are used for the comparison. Any options are ignored for removing.
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The SMBus Driver
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----------------
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The SMBus driver allows up to 4 SMBus devices to be configured in the
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system. By default, the driver will register any SMBus interfaces it finds
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in the I2C address range of 0x20 to 0x4f on any adapter. You can change this
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at module load time (for a module) with:
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modprobe ipmi_smb.o
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addr=<adapter1>,<i2caddr1>[,<adapter2>,<i2caddr2>[,...]]
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dbg=<flags1>,<flags2>...
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[defaultprobe=1] [dbg_probe=1]
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The addresses are specified in pairs, the first is the adapter ID and the
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second is the I2C address on that adapter.
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The debug flags are bit flags for each BMC found, they are:
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IPMI messages: 1, driver state: 2, timing: 4, I2C probe: 8
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Setting smb_defaultprobe to zero disabled the default probing of SMBus
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interfaces at address range 0x20 to 0x4f. This means that only the
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BMCs specified on the smb_addr line will be detected.
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Setting smb_dbg_probe to 1 will enable debugging of the probing and
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detection process for BMCs on the SMBusses.
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Discovering the IPMI compliant BMC on the SMBus can cause devices
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on the I2C bus to fail. The SMBus driver writes a "Get Device ID" IPMI
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message as a block write to the I2C bus and waits for a response.
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This action can be detrimental to some I2C devices. It is highly recommended
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that the known I2c address be given to the SMBus driver in the smb_addr
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parameter. The default address range will not be used when a smb_addr
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parameter is provided.
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When compiled into the kernel, the addresses can be specified on the
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kernel command line as:
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ipmb_smb.addr=<adapter1>,<i2caddr1>[,<adapter2>,<i2caddr2>[,...]]
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ipmi_smb.dbg=<flags1>,<flags2>...
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ipmi_smb.defaultprobe=0 ipmi_smb.dbg_probe=1
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These are the same options as on the module command line.
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Note that you might need some I2C changes if CONFIG_IPMI_PANIC_EVENT
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is enabled along with this, so the I2C driver knows to run to
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completion during sending a panic event.
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Other Pieces
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------------
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@ -17,6 +17,10 @@ obj-$(CONFIG_PARISC) += parisc/
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obj-$(CONFIG_RAPIDIO) += rapidio/
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obj-y += video/
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obj-y += idle/
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# IPMI must come before ACPI in order to provide IPMI opregion support
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obj-$(CONFIG_IPMI_HANDLER) += char/ipmi/
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obj-$(CONFIG_ACPI) += acpi/
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obj-$(CONFIG_SFI) += sfi/
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# PnP must come after ACPI since it will eventually need to check if acpi
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@ -47,6 +47,10 @@ acpi-y += video_detect.o
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endif
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# These are (potentially) separate modules
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# IPMI may be used by other drivers, so it has to initialise before them
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obj-$(CONFIG_ACPI_IPMI) += acpi_ipmi.o
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obj-$(CONFIG_ACPI_AC) += ac.o
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obj-$(CONFIG_ACPI_BUTTON) += button.o
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obj-$(CONFIG_ACPI_FAN) += fan.o
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@ -70,6 +74,5 @@ processor-y += processor_idle.o processor_thermal.o
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processor-$(CONFIG_CPU_FREQ) += processor_perflib.o
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obj-$(CONFIG_ACPI_PROCESSOR_AGGREGATOR) += acpi_pad.o
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obj-$(CONFIG_ACPI_IPMI) += acpi_ipmi.o
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obj-$(CONFIG_ACPI_APEI) += apei/
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@ -52,7 +52,6 @@ obj-$(CONFIG_TELCLOCK) += tlclk.o
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obj-$(CONFIG_MWAVE) += mwave/
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obj-$(CONFIG_AGP) += agp/
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obj-$(CONFIG_PCMCIA) += pcmcia/
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obj-$(CONFIG_IPMI_HANDLER) += ipmi/
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obj-$(CONFIG_HANGCHECK_TIMER) += hangcheck-timer.o
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obj-$(CONFIG_TCG_TPM) += tpm/
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@ -1880,7 +1880,7 @@ int ipmi_request_supply_msgs(ipmi_user_t user,
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struct ipmi_recv_msg *supplied_recv,
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int priority)
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{
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unsigned char saddr, lun;
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unsigned char saddr = 0, lun = 0;
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int rv;
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if (!user)
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@ -2424,6 +2424,38 @@ static void ipmi_pci_cleanup(struct smi_info *info)
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pci_disable_device(pdev);
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}
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static int __devinit ipmi_pci_probe_regspacing(struct smi_info *info)
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{
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if (info->si_type == SI_KCS) {
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unsigned char status;
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int regspacing;
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info->io.regsize = DEFAULT_REGSIZE;
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info->io.regshift = 0;
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info->io_size = 2;
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info->handlers = &kcs_smi_handlers;
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/* detect 1, 4, 16byte spacing */
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for (regspacing = DEFAULT_REGSPACING; regspacing <= 16;) {
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info->io.regspacing = regspacing;
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if (info->io_setup(info)) {
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dev_err(info->dev,
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"Could not setup I/O space\n");
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return DEFAULT_REGSPACING;
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}
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/* write invalid cmd */
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info->io.outputb(&info->io, 1, 0x10);
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/* read status back */
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status = info->io.inputb(&info->io, 1);
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info->io_cleanup(info);
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if (status)
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return regspacing;
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regspacing *= 4;
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}
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}
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return DEFAULT_REGSPACING;
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}
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static int __devinit ipmi_pci_probe(struct pci_dev *pdev,
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const struct pci_device_id *ent)
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{
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}
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info->io.addr_data = pci_resource_start(pdev, 0);
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info->io.regspacing = DEFAULT_REGSPACING;
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info->io.regsize = DEFAULT_REGSPACING;
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info->io.regspacing = ipmi_pci_probe_regspacing(info);
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info->io.regsize = DEFAULT_REGSIZE;
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info->io.regshift = 0;
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info->irq = pdev->irq;
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