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2 commits

Author SHA1 Message Date
Tobias Diedrich
7f5efd90e5 intel/bd82x6x: Use generated ACPI PIRQ
Enable change Ic6b8ce4a9db50211a9c26221ca10105c5a0829a0
(sb/intel/common: Automatically generate ACPI PIRQ) for BD82X6X.

This generates the main ACPI _PRT table automatically based on the
chipset registers.

Tested on Intel NUC DCP847SKE with Linux 4.13.14:
$ cat /proc/interrupts
           CPU0       CPU1
  0:         23          0   IO-APIC   2-edge      timer
  8:          1          0   IO-APIC   8-edge      rtc0
  9:          0          0   IO-APIC   9-fasteoi   acpi
 19:         86          0   IO-APIC  19-fasteoi   ehci_hcd:usb1
 23:          0          0   IO-APIC  23-fasteoi   i801_smbus
[...MSI and other interrupts skipped...]

Log messages:
ACPI_PIRQ_GEN PCI: 00:02.0: pin=1 pirq=1
ACPI_PIRQ_GEN PCI: 00:1b.0: pin=1 pirq=1
ACPI_PIRQ_GEN PCI: 00:1c.0: pin=1 pirq=2
ACPI_PIRQ_GEN PCI: 00:1c.1: pin=2 pirq=6
ACPI_PIRQ_GEN PCI: 00:1c.2: pin=3 pirq=4
ACPI_PIRQ_GEN PCI: 00:1d.0: pin=1 pirq=4
ACPI_PIRQ_GEN PCI: 00:1f.2: pin=1 pirq=2
ACPI_PIRQ_GEN PCI: 00:1f.3: pin=2 pirq=8
ACPI_PIRQ_GEN PCI: 00:04.0: pin=1 pirq=1

Generated _PRT:
    Scope (\_SB.PCI0)
    {
        Method (_PRT, 0, NotSerialized)  // _PRT: PCI Routing Table
        {
            If (PICM)
            {
                Return (Package (0x09)
                {
                    Package (0x04)
                    {
                        0x0002FFFF,
                        0x00000000,
                        0x00000000,
                        0x00000010
                    },

                    Package (0x04)
                    {
                        0x001BFFFF,
                        0x00000000,
                        0x00000000,
                        0x00000010
                    },

                    Package (0x04)
                    {
                        0x001CFFFF,
                        0x00000000,
                        0x00000000,
                        0x00000011
                    },

                    Package (0x04)
                    {
                        0x001CFFFF,
                        0x00000001,
                        0x00000000,
                        0x00000015
                    },

                    Package (0x04)
                    {
                        0x001CFFFF,
                        0x00000002,
                        0x00000000,
                        0x00000013
                    },

                    Package (0x04)
                    {
                        0x001DFFFF,
                        0x00000000,
                        0x00000000,
                        0x00000013
                    },

                    Package (0x04)
                    {
                        0x001FFFFF,
                        0x00000000,
                        0x00000000,
                        0x00000011
                    },

                    Package (0x04)
                    {
                        0x001FFFFF,
                        0x00000001,
                        0x00000000,
                        0x00000017
                    },

                    Package (0x04)
                    {
                        0x0004FFFF,
                        0x00000000,
                        0x00000000,
                        0x00000010
                    }
                })
            }
            Else
            {
                Return (Package (0x09)
                {
                    Package (0x04)
                    {
                        0x0002FFFF,
                        0x00000000,
                        \_SB.PCI0.LPCB.LNKA,
                        0x00000000
                    },

                    Package (0x04)
                    {
                        0x001BFFFF,
                        0x00000000,
                        \_SB.PCI0.LPCB.LNKA,
                        0x00000000
                    },

                    Package (0x04)
                    {
                        0x001CFFFF,
                        0x00000000,
                        \_SB.PCI0.LPCB.LNKB,
                        0x00000000
                    },

                    Package (0x04)
                    {
                        0x001CFFFF,
                        0x00000001,
                        \_SB.PCI0.LPCB.LNKF,
                        0x00000000
                    },

                    Package (0x04)
                    {
                        0x001CFFFF,
                        0x00000002,
                        \_SB.PCI0.LPCB.LNKD,
                        0x00000000
                    },

                    Package (0x04)
                    {
                        0x001DFFFF,
                        0x00000000,
                        \_SB.PCI0.LPCB.LNKD,
                        0x00000000
                    },

                    Package (0x04)
                    {
                        0x001FFFFF,
                        0x00000000,
                        \_SB.PCI0.LPCB.LNKB,
                        0x00000000
                    },

                    Package (0x04)
                    {
                        0x001FFFFF,
                        0x00000001,
                        \_SB.PCI0.LPCB.LNKH,
                        0x00000000
                    },

                    Package (0x04)
                    {
                        0x0004FFFF,
                        0x00000000,
                        \_SB.PCI0.LPCB.LNKA,
                        0x00000000
                    }
                })
            }
        }
    }

Change-Id: I832a86925283d61b64b8268246d9e6f11994c120
Signed-off-by: Tobias Diedrich <ranma+coreboot@tdiedrich.de>
Reviewed-on: https://review.coreboot.org/22859
Tested-by: build bot (Jenkins) <no-reply@coreboot.org>
Reviewed-by: Arthur Heymans <arthur@aheymans.xyz>
2017-12-20 16:48:23 +00:00
Dennis Wassenberg
bd10516643 mb/roda/rv11: Add new boards Lizard RV11 and RW11
The Roda Lizard RV11 is a comparatively lightweight, full-rugged
notebook. It's based on a 17W TDP dual core Ivy Bridge CPU.

The Lizard RW11 is its bigger brother (45W TDP quad core, more i/o
options).

The RV11 is the first board to use the native graphics initialization
by libgfxinit. Tested so far, are the internal eDP port, DP and VGA.

Change-Id: Iea283059ce3402dc36184baf16928b55285a9eeb
Signed-off-by: Dennis Wassenberg <dennis.wassenberg@secunet.com>
Signed-off-by: Nico Huber <nico.huber@secunet.com>
Reviewed-on: https://review.coreboot.org/17446
Tested-by: build bot (Jenkins)
Reviewed-by: Martin Roth <martinroth@google.com>
2016-12-15 23:56:53 +01:00