提交 cd427485 编写于 作者: B Benjamin Herrenschmidt

Merge remote-tracking branch 'scott/next' into next

Freescale updates from Scott. Mostly support for critical
and machine check exceptions on 64-bit BookE, some new
PCI suspend/resume work and misc bits.
Freescale L2 Cache Controller
L2 cache is present in Freescale's QorIQ and QorIQ Qonverge platforms.
The cache bindings explained below are ePAPR compliant
Required Properties:
- compatible : Should include "fsl,chip-l2-cache-controller" and "cache"
where chip is the processor (bsc9132, npc8572 etc.)
- reg : Address and size of L2 cache controller registers
- cache-size : Size of the entire L2 cache
- interrupts : Error interrupt of L2 controller
- cache-line-size : Size of L2 cache lines
Example:
L2: l2-cache-controller@20000 {
compatible = "fsl,bsc9132-l2-cache-controller", "cache";
reg = <0x20000 0x1000>;
cache-line-size = <32>; // 32 bytes
cache-size = <0x40000>; // L2,256K
interrupts = <16 2 1 0>;
};
Freescale DDR memory controller
Properties:
- compatible : Should include "fsl,chip-memory-controller" where
chip is the processor (bsc9132, mpc8572 etc.), or
"fsl,qoriq-memory-controller".
- reg : Address and size of DDR controller registers
- interrupts : Error interrupt of DDR controller
Example 1:
memory-controller@2000 {
compatible = "fsl,bsc9132-memory-controller";
reg = <0x2000 0x1000>;
interrupts = <16 2 1 8>;
};
Example 2:
ddr1: memory-controller@8000 {
compatible = "fsl,qoriq-memory-controller-v4.7",
"fsl,qoriq-memory-controller";
reg = <0x8000 0x1000>;
interrupts = <16 2 1 23>;
};
......@@ -8,7 +8,9 @@ and additions :
Required properties :
- compatible : Should be "fsl-usb2-mph" for multi port host USB
controllers, or "fsl-usb2-dr" for dual role USB controllers
or "fsl,mpc5121-usb2-dr" for dual role USB controllers of MPC5121
or "fsl,mpc5121-usb2-dr" for dual role USB controllers of MPC5121.
Wherever applicable, the IP version of the USB controller should
also be mentioned (for eg. fsl-usb2-dr-v2.2 for bsc9132).
- phy_type : For multi port host USB controllers, should be one of
"ulpi", or "serial". For dual role USB controllers, should be
one of "ulpi", "utmi", "utmi_wide", or "serial".
......
......@@ -86,6 +86,42 @@
clockgen: global-utilities@e1000 {
compatible = "fsl,b4420-clockgen", "fsl,qoriq-clockgen-2.0";
ranges = <0x0 0xe1000 0x1000>;
#address-cells = <1>;
#size-cells = <1>;
sysclk: sysclk {
#clock-cells = <0>;
compatible = "fsl,qoriq-sysclk-2.0";
clock-output-names = "sysclk";
};
pll0: pll0@800 {
#clock-cells = <1>;
reg = <0x800 0x4>;
compatible = "fsl,qoriq-core-pll-2.0";
clocks = <&sysclk>;
clock-output-names = "pll0", "pll0-div2", "pll0-div4";
};
pll1: pll1@820 {
#clock-cells = <1>;
reg = <0x820 0x4>;
compatible = "fsl,qoriq-core-pll-2.0";
clocks = <&sysclk>;
clock-output-names = "pll1", "pll1-div2", "pll1-div4";
};
mux0: mux0@0 {
#clock-cells = <0>;
reg = <0x0 0x4>;
compatible = "fsl,qoriq-core-mux-2.0";
clocks = <&pll0 0>, <&pll0 1>, <&pll0 2>,
<&pll1 0>, <&pll1 1>, <&pll1 2>;
clock-names = "pll0", "pll0-div2", "pll0-div4",
"pll1", "pll1-div2", "pll1-div4";
clock-output-names = "cmux0";
};
};
rcpm: global-utilities@e2000 {
......
......@@ -64,11 +64,13 @@
cpu0: PowerPC,e6500@0 {
device_type = "cpu";
reg = <0 1>;
clocks = <&mux0>;
next-level-cache = <&L2>;
};
cpu1: PowerPC,e6500@2 {
device_type = "cpu";
reg = <2 3>;
clocks = <&mux0>;
next-level-cache = <&L2>;
};
};
......
......@@ -130,6 +130,42 @@
clockgen: global-utilities@e1000 {
compatible = "fsl,b4860-clockgen", "fsl,qoriq-clockgen-2.0";
ranges = <0x0 0xe1000 0x1000>;
#address-cells = <1>;
#size-cells = <1>;
sysclk: sysclk {
#clock-cells = <0>;
compatible = "fsl,qoriq-sysclk-2.0";
clock-output-names = "sysclk";
};
pll0: pll0@800 {
#clock-cells = <1>;
reg = <0x800 0x4>;
compatible = "fsl,qoriq-core-pll-2.0";
clocks = <&sysclk>;
clock-output-names = "pll0", "pll0-div2", "pll0-div4";
};
pll1: pll1@820 {
#clock-cells = <1>;
reg = <0x820 0x4>;
compatible = "fsl,qoriq-core-pll-2.0";
clocks = <&sysclk>;
clock-output-names = "pll1", "pll1-div2", "pll1-div4";
};
mux0: mux0@0 {
#clock-cells = <0>;
reg = <0x0 0x4>;
compatible = "fsl,qoriq-core-mux-2.0";
clocks = <&pll0 0>, <&pll0 1>, <&pll0 2>,
<&pll1 0>, <&pll1 1>, <&pll1 2>;
clock-names = "pll0", "pll0-div2", "pll0-div4",
"pll1", "pll1-div2", "pll1-div4";
clock-output-names = "cmux0";
};
};
rcpm: global-utilities@e2000 {
......
......@@ -64,21 +64,25 @@
cpu0: PowerPC,e6500@0 {
device_type = "cpu";
reg = <0 1>;
clocks = <&mux0>;
next-level-cache = <&L2>;
};
cpu1: PowerPC,e6500@2 {
device_type = "cpu";
reg = <2 3>;
clocks = <&mux0>;
next-level-cache = <&L2>;
};
cpu2: PowerPC,e6500@4 {
device_type = "cpu";
reg = <4 5>;
clocks = <&mux0>;
next-level-cache = <&L2>;
};
cpu3: PowerPC,e6500@6 {
device_type = "cpu";
reg = <6 7>;
clocks = <&mux0>;
next-level-cache = <&L2>;
};
};
......
......@@ -306,8 +306,68 @@
clockgen: global-utilities@e1000 {
compatible = "fsl,p2041-clockgen", "fsl,qoriq-clockgen-1.0";
ranges = <0x0 0xe1000 0x1000>;
reg = <0xe1000 0x1000>;
clock-frequency = <0>;
#address-cells = <1>;
#size-cells = <1>;
sysclk: sysclk {
#clock-cells = <0>;
compatible = "fsl,qoriq-sysclk-1.0";
clock-output-names = "sysclk";
};
pll0: pll0@800 {
#clock-cells = <1>;
reg = <0x800 0x4>;
compatible = "fsl,qoriq-core-pll-1.0";
clocks = <&sysclk>;
clock-output-names = "pll0", "pll0-div2";
};
pll1: pll1@820 {
#clock-cells = <1>;
reg = <0x820 0x4>;
compatible = "fsl,qoriq-core-pll-1.0";
clocks = <&sysclk>;
clock-output-names = "pll1", "pll1-div2";
};
mux0: mux0@0 {
#clock-cells = <0>;
reg = <0x0 0x4>;
compatible = "fsl,qoriq-core-mux-1.0";
clocks = <&pll0 0>, <&pll0 1>, <&pll1 0>, <&pll1 1>;
clock-names = "pll0", "pll0-div2", "pll1", "pll1-div2";
clock-output-names = "cmux0";
};
mux1: mux1@20 {
#clock-cells = <0>;
reg = <0x20 0x4>;
compatible = "fsl,qoriq-core-mux-1.0";
clocks = <&pll0 0>, <&pll0 1>, <&pll1 0>, <&pll1 1>;
clock-names = "pll0", "pll0-div2", "pll1", "pll1-div2";
clock-output-names = "cmux1";
};
mux2: mux2@40 {
#clock-cells = <0>;
reg = <0x40 0x4>;
compatible = "fsl,qoriq-core-mux-1.0";
clocks = <&pll0 0>, <&pll0 1>, <&pll1 0>, <&pll1 1>;
clock-names = "pll0", "pll0-div2", "pll1", "pll1-div2";
};
mux3: mux3@60 {
#clock-cells = <0>;
reg = <0x60 0x4>;
compatible = "fsl,qoriq-core-mux-1.0";
clocks = <&pll0 0>, <&pll0 1>, <&pll1 0>, <&pll1 1>;
clock-names = "pll0", "pll0-div2", "pll1", "pll1-div2";
clock-output-names = "cmux3";
};
};
rcpm: global-utilities@e2000 {
......
......@@ -81,6 +81,7 @@
cpu0: PowerPC,e500mc@0 {
device_type = "cpu";
reg = <0>;
clocks = <&mux0>;
next-level-cache = <&L2_0>;
L2_0: l2-cache {
next-level-cache = <&cpc>;
......@@ -89,6 +90,7 @@
cpu1: PowerPC,e500mc@1 {
device_type = "cpu";
reg = <1>;
clocks = <&mux1>;
next-level-cache = <&L2_1>;
L2_1: l2-cache {
next-level-cache = <&cpc>;
......@@ -97,6 +99,7 @@
cpu2: PowerPC,e500mc@2 {
device_type = "cpu";
reg = <2>;
clocks = <&mux2>;
next-level-cache = <&L2_2>;
L2_2: l2-cache {
next-level-cache = <&cpc>;
......@@ -105,6 +108,7 @@
cpu3: PowerPC,e500mc@3 {
device_type = "cpu";
reg = <3>;
clocks = <&mux3>;
next-level-cache = <&L2_3>;
L2_3: l2-cache {
next-level-cache = <&cpc>;
......
......@@ -333,8 +333,69 @@
clockgen: global-utilities@e1000 {
compatible = "fsl,p3041-clockgen", "fsl,qoriq-clockgen-1.0";
ranges = <0x0 0xe1000 0x1000>;
reg = <0xe1000 0x1000>;
clock-frequency = <0>;
#address-cells = <1>;
#size-cells = <1>;
sysclk: sysclk {
#clock-cells = <0>;
compatible = "fsl,qoriq-sysclk-1.0";
clock-output-names = "sysclk";
};
pll0: pll0@800 {
#clock-cells = <1>;
reg = <0x800 0x4>;
compatible = "fsl,qoriq-core-pll-1.0";
clocks = <&sysclk>;
clock-output-names = "pll0", "pll0-div2";
};
pll1: pll1@820 {
#clock-cells = <1>;
reg = <0x820 0x4>;
compatible = "fsl,qoriq-core-pll-1.0";
clocks = <&sysclk>;
clock-output-names = "pll1", "pll1-div2";
};
mux0: mux0@0 {
#clock-cells = <0>;
reg = <0x0 0x4>;
compatible = "fsl,qoriq-core-mux-1.0";
clocks = <&pll0 0>, <&pll0 1>, <&pll1 0>, <&pll1 1>;
clock-names = "pll0", "pll0-div2", "pll1", "pll1-div2";
clock-output-names = "cmux0";
};
mux1: mux1@20 {
#clock-cells = <0>;
reg = <0x20 0x4>;
compatible = "fsl,qoriq-core-mux-1.0";
clocks = <&pll0 0>, <&pll0 1>, <&pll1 0>, <&pll1 1>;
clock-names = "pll0", "pll0-div2", "pll1", "pll1-div2";
clock-output-names = "cmux1";
};
mux2: mux2@40 {
#clock-cells = <0>;
reg = <0x40 0x4>;
compatible = "fsl,qoriq-core-mux-1.0";
clocks = <&pll0 0>, <&pll0 1>, <&pll1 0>, <&pll1 1>;
clock-names = "pll0", "pll0-div2", "pll1", "pll1-div2";
clock-output-names = "cmux2";
};
mux3: mux3@60 {
#clock-cells = <0>;
reg = <0x60 0x4>;
compatible = "fsl,qoriq-core-mux-1.0";
clocks = <&pll0 0>, <&pll0 1>, <&pll1 0>, <&pll1 1>;
clock-names = "pll0", "pll0-div2", "pll1", "pll1-div2";
clock-output-names = "cmux3";
};
};
rcpm: global-utilities@e2000 {
......
......@@ -82,6 +82,7 @@
cpu0: PowerPC,e500mc@0 {
device_type = "cpu";
reg = <0>;
clocks = <&mux0>;
next-level-cache = <&L2_0>;
L2_0: l2-cache {
next-level-cache = <&cpc>;
......@@ -90,6 +91,7 @@
cpu1: PowerPC,e500mc@1 {
device_type = "cpu";
reg = <1>;
clocks = <&mux1>;
next-level-cache = <&L2_1>;
L2_1: l2-cache {
next-level-cache = <&cpc>;
......@@ -98,6 +100,7 @@
cpu2: PowerPC,e500mc@2 {
device_type = "cpu";
reg = <2>;
clocks = <&mux2>;
next-level-cache = <&L2_2>;
L2_2: l2-cache {
next-level-cache = <&cpc>;
......@@ -106,6 +109,7 @@
cpu3: PowerPC,e500mc@3 {
device_type = "cpu";
reg = <3>;
clocks = <&mux3>;
next-level-cache = <&L2_3>;
L2_3: l2-cache {
next-level-cache = <&cpc>;
......
......@@ -353,8 +353,121 @@
clockgen: global-utilities@e1000 {
compatible = "fsl,p4080-clockgen", "fsl,qoriq-clockgen-1.0";
ranges = <0x0 0xe1000 0x1000>;
reg = <0xe1000 0x1000>;
clock-frequency = <0>;
#address-cells = <1>;
#size-cells = <1>;
sysclk: sysclk {
#clock-cells = <0>;
compatible = "fsl,qoriq-sysclk-1.0";
clock-output-names = "sysclk";
};
pll0: pll0@800 {
#clock-cells = <1>;
reg = <0x800 0x4>;
compatible = "fsl,qoriq-core-pll-1.0";
clocks = <&sysclk>;
clock-output-names = "pll0", "pll0-div2";
};
pll1: pll1@820 {
#clock-cells = <1>;
reg = <0x820 0x4>;
compatible = "fsl,qoriq-core-pll-1.0";
clocks = <&sysclk>;
clock-output-names = "pll1", "pll1-div2";
};
pll2: pll2@840 {
#clock-cells = <1>;
reg = <0x840 0x4>;
compatible = "fsl,qoriq-core-pll-1.0";
clocks = <&sysclk>;
clock-output-names = "pll2", "pll2-div2";
};
pll3: pll3@860 {
#clock-cells = <1>;
reg = <0x860 0x4>;
compatible = "fsl,qoriq-core-pll-1.0";
clocks = <&sysclk>;
clock-output-names = "pll3", "pll3-div2";
};
mux0: mux0@0 {
#clock-cells = <0>;
reg = <0x0 0x4>;
compatible = "fsl,qoriq-core-mux-1.0";
clocks = <&pll0 0>, <&pll0 1>, <&pll1 0>, <&pll1 1>;
clock-names = "pll0", "pll0-div2", "pll1", "pll1-div2";
clock-output-names = "cmux0";
};
mux1: mux1@20 {
#clock-cells = <0>;
reg = <0x20 0x4>;
compatible = "fsl,qoriq-core-mux-1.0";
clocks = <&pll0 0>, <&pll0 1>, <&pll1 0>, <&pll1 1>;
clock-names = "pll0", "pll0-div2", "pll1", "pll1-div2";
clock-output-names = "cmux1";
};
mux2: mux2@40 {
#clock-cells = <0>;
reg = <0x40 0x4>;
compatible = "fsl,qoriq-core-mux-1.0";
clocks = <&pll0 0>, <&pll0 1>, <&pll1 0>, <&pll1 1>;
clock-names = "pll0", "pll0-div2", "pll1", "pll1-div2";
clock-output-names = "cmux2";
};
mux3: mux3@60 {
#clock-cells = <0>;
reg = <0x60 0x4>;
compatible = "fsl,qoriq-core-mux-1.0";
clocks = <&pll0 0>, <&pll0 1>, <&pll1 0>, <&pll1 1>;
clock-names = "pll0", "pll0-div2", "pll1", "pll1-div2";
clock-output-names = "cmux3";
};
mux4: mux4@80 {
#clock-cells = <0>;
reg = <0x80 0x4>;
compatible = "fsl,qoriq-core-mux-1.0";
clocks = <&pll2 0>, <&pll2 1>, <&pll3 0>, <&pll3 1>;
clock-names = "pll2", "pll2-div2", "pll3", "pll3-div2";
clock-output-names = "cmux4";
};
mux5: mux5@a0 {
#clock-cells = <0>;
reg = <0xa0 0x4>;
compatible = "fsl,qoriq-core-mux-1.0";
clocks = <&pll2 0>, <&pll2 1>, <&pll3 0>, <&pll3 1>;
clock-names = "pll2", "pll2-div2", "pll3", "pll3-div2";
clock-output-names = "cmux5";
};
mux6: mux6@c0 {
#clock-cells = <0>;
reg = <0xc0 0x4>;
compatible = "fsl,qoriq-core-mux-1.0";
clocks = <&pll2 0>, <&pll2 1>, <&pll3 0>, <&pll3 1>;
clock-names = "pll2", "pll2-div2", "pll3", "pll3-div2";
clock-output-names = "cmux6";
};
mux7: mux7@e0 {
#clock-cells = <0>;
reg = <0xe0 0x4>;
compatible = "fsl,qoriq-core-mux-1.0";
clocks = <&pll2 0>, <&pll2 1>, <&pll3 0>, <&pll3 1>;
clock-names = "pll2", "pll2-div2", "pll3", "pll3-div2";
clock-output-names = "cmux7";
};
};
rcpm: global-utilities@e2000 {
......
......@@ -81,6 +81,7 @@
cpu0: PowerPC,e500mc@0 {
device_type = "cpu";
reg = <0>;
clocks = <&mux0>;
next-level-cache = <&L2_0>;
L2_0: l2-cache {
next-level-cache = <&cpc>;
......@@ -89,6 +90,7 @@
cpu1: PowerPC,e500mc@1 {
device_type = "cpu";
reg = <1>;
clocks = <&mux1>;
next-level-cache = <&L2_1>;
L2_1: l2-cache {
next-level-cache = <&cpc>;
......@@ -97,6 +99,7 @@
cpu2: PowerPC,e500mc@2 {
device_type = "cpu";
reg = <2>;
clocks = <&mux2>;
next-level-cache = <&L2_2>;
L2_2: l2-cache {
next-level-cache = <&cpc>;
......@@ -105,6 +108,7 @@
cpu3: PowerPC,e500mc@3 {
device_type = "cpu";
reg = <3>;
clocks = <&mux3>;
next-level-cache = <&L2_3>;
L2_3: l2-cache {
next-level-cache = <&cpc>;
......@@ -113,6 +117,7 @@
cpu4: PowerPC,e500mc@4 {
device_type = "cpu";
reg = <4>;
clocks = <&mux4>;
next-level-cache = <&L2_4>;
L2_4: l2-cache {
next-level-cache = <&cpc>;
......@@ -121,6 +126,7 @@
cpu5: PowerPC,e500mc@5 {
device_type = "cpu";
reg = <5>;
clocks = <&mux5>;
next-level-cache = <&L2_5>;
L2_5: l2-cache {
next-level-cache = <&cpc>;
......@@ -129,6 +135,7 @@
cpu6: PowerPC,e500mc@6 {
device_type = "cpu";
reg = <6>;
clocks = <&mux6>;
next-level-cache = <&L2_6>;
L2_6: l2-cache {
next-level-cache = <&cpc>;
......@@ -137,6 +144,7 @@
cpu7: PowerPC,e500mc@7 {
device_type = "cpu";
reg = <7>;
clocks = <&mux7>;
next-level-cache = <&L2_7>;
L2_7: l2-cache {
next-level-cache = <&cpc>;
......
......@@ -338,8 +338,51 @@
clockgen: global-utilities@e1000 {
compatible = "fsl,p5020-clockgen", "fsl,qoriq-clockgen-1.0";
ranges = <0x0 0xe1000 0x1000>;
reg = <0xe1000 0x1000>;
clock-frequency = <0>;
#address-cells = <1>;
#size-cells = <1>;
sysclk: sysclk {
#clock-cells = <0>;
compatible = "fsl,qoriq-sysclk-1.0";
clock-output-names = "sysclk";
};
pll0: pll0@800 {
#clock-cells = <1>;
reg = <0x800 0x4>;
compatible = "fsl,qoriq-core-pll-1.0";
clocks = <&sysclk>;
clock-output-names = "pll0", "pll0-div2";
};
pll1: pll1@820 {
#clock-cells = <1>;
reg = <0x820 0x4>;
compatible = "fsl,qoriq-core-pll-1.0";
clocks = <&sysclk>;
clock-output-names = "pll1", "pll1-div2";
};
mux0: mux0@0 {
#clock-cells = <0>;
reg = <0x0 0x4>;
compatible = "fsl,qoriq-core-mux-1.0";
clocks = <&pll0 0>, <&pll0 1>, <&pll1 0>, <&pll1 1>;
clock-names = "pll0", "pll0-div2", "pll1", "pll1-div2";
clock-output-names = "cmux0";
};
mux1: mux1@20 {
#clock-cells = <0>;
reg = <0x20 0x4>;
compatible = "fsl,qoriq-core-mux-1.0";
clocks = <&pll0 0>, <&pll0 1>, <&pll1 0>, <&pll1 1>;
clock-names = "pll0", "pll0-div2", "pll1", "pll1-div2";
clock-output-names = "cmux1";
};
};
rcpm: global-utilities@e2000 {
......
......@@ -88,6 +88,7 @@
cpu0: PowerPC,e5500@0 {
device_type = "cpu";
reg = <0>;
clocks = <&mux0>;
next-level-cache = <&L2_0>;
L2_0: l2-cache {
next-level-cache = <&cpc>;
......@@ -96,6 +97,7 @@
cpu1: PowerPC,e5500@1 {
device_type = "cpu";
reg = <1>;
clocks = <&mux1>;
next-level-cache = <&L2_1>;
L2_1: l2-cache {
next-level-cache = <&cpc>;
......
......@@ -298,8 +298,69 @@
clockgen: global-utilities@e1000 {
compatible = "fsl,p5040-clockgen", "fsl,qoriq-clockgen-1.0";
ranges = <0x0 0xe1000 0x1000>;
reg = <0xe1000 0x1000>;
clock-frequency = <0>;
#address-cells = <1>;
#size-cells = <1>;
sysclk: sysclk {
#clock-cells = <0>;
compatible = "fsl,qoriq-sysclk-1.0";
clock-output-names = "sysclk";
};
pll0: pll0@800 {
#clock-cells = <1>;
reg = <0x800 0x4>;
compatible = "fsl,qoriq-core-pll-1.0";
clocks = <&sysclk>;
clock-output-names = "pll0", "pll0-div2";
};
pll1: pll1@820 {
#clock-cells = <1>;
reg = <0x820 0x4>;
compatible = "fsl,qoriq-core-pll-1.0";
clocks = <&sysclk>;
clock-output-names = "pll1", "pll1-div2";
};
mux0: mux0@0 {
#clock-cells = <0>;
reg = <0x0 0x4>;
compatible = "fsl,qoriq-core-mux-1.0";
clocks = <&pll0 0>, <&pll0 1>, <&pll1 0>, <&pll1 1>;
clock-names = "pll0", "pll0-div2", "pll1", "pll1-div2";
clock-output-names = "cmux0";
};
mux1: mux1@20 {
#clock-cells = <0>;
reg = <0x20 0x4>;
compatible = "fsl,qoriq-core-mux-1.0";
clocks = <&pll0 0>, <&pll0 1>, <&pll1 0>, <&pll1 1>;
clock-names = "pll0", "pll0-div2", "pll1", "pll1-div2";
clock-output-names = "cmux1";
};
mux2: mux2@40 {
#clock-cells = <0>;
reg = <0x40 0x4>;
compatible = "fsl,qoriq-core-mux-1.0";
clocks = <&pll0 0>, <&pll0 1>, <&pll1 0>, <&pll1 1>;
clock-names = "pll0", "pll0-div2", "pll1", "pll1-div2";
clock-output-names = "cmux2";
};
mux3: mux3@60 {
#clock-cells = <0>;
reg = <0x60 0x4>;
compatible = "fsl,qoriq-core-mux-1.0";
clocks = <&pll0 0>, <&pll0 1>, <&pll1 0>, <&pll1 1>;
clock-names = "pll0", "pll0-div2", "pll1", "pll1-div2";
clock-output-names = "cmux3";
};
};
rcpm: global-utilities@e2000 {
......
......@@ -81,6 +81,7 @@
cpu0: PowerPC,e5500@0 {
device_type = "cpu";
reg = <0>;
clocks = <&mux0>;
next-level-cache = <&L2_0>;
L2_0: l2-cache {
next-level-cache = <&cpc>;
......@@ -89,6 +90,7 @@
cpu1: PowerPC,e5500@1 {
device_type = "cpu";
reg = <1>;
clocks = <&mux1>;
next-level-cache = <&L2_1>;
L2_1: l2-cache {
next-level-cache = <&cpc>;
......@@ -97,6 +99,7 @@
cpu2: PowerPC,e5500@2 {
device_type = "cpu";
reg = <2>;
clocks = <&mux2>;
next-level-cache = <&L2_2>;
L2_2: l2-cache {
next-level-cache = <&cpc>;
......@@ -105,6 +108,7 @@
cpu3: PowerPC,e5500@3 {
device_type = "cpu";
reg = <3>;
clocks = <&mux3>;
next-level-cache = <&L2_3>;
L2_3: l2-cache {
next-level-cache = <&cpc>;
......
......@@ -369,7 +369,93 @@
clockgen: global-utilities@e1000 {
compatible = "fsl,t4240-clockgen", "fsl,qoriq-clockgen-2.0";
ranges = <0x0 0xe1000 0x1000>;
reg = <0xe1000 0x1000>;
#address-cells = <1>;
#size-cells = <1>;
sysclk: sysclk {
#clock-cells = <0>;
compatible = "fsl,qoriq-sysclk-2.0";
clock-output-names = "sysclk";
};
pll0: pll0@800 {
#clock-cells = <1>;
reg = <0x800 0x4>;
compatible = "fsl,qoriq-core-pll-2.0";
clocks = <&sysclk>;
clock-output-names = "pll0", "pll0-div2", "pll0-div4";
};
pll1: pll1@820 {
#clock-cells = <1>;
reg = <0x820 0x4>;
compatible = "fsl,qoriq-core-pll-2.0";
clocks = <&sysclk>;
clock-output-names = "pll1", "pll1-div2", "pll1-div4";
};
pll2: pll2@840 {
#clock-cells = <1>;
reg = <0x840 0x4>;
compatible = "fsl,qoriq-core-pll-2.0";
clocks = <&sysclk>;
clock-output-names = "pll2", "pll2-div2", "pll2-div4";
};
pll3: pll3@860 {
#clock-cells = <1>;
reg = <0x860 0x4>;
compatible = "fsl,qoriq-core-pll-2.0";
clocks = <&sysclk>;
clock-output-names = "pll3", "pll3-div2", "pll3-div4";
};
pll4: pll4@880 {
#clock-cells = <1>;
reg = <0x880 0x4>;
compatible = "fsl,qoriq-core-pll-2.0";
clocks = <&sysclk>;
clock-output-names = "pll4", "pll4-div2", "pll4-div4";
};
mux0: mux0@0 {
#clock-cells = <0>;
reg = <0x0 0x4>;
compatible = "fsl,qoriq-core-mux-2.0";
clocks = <&pll0 0>, <&pll0 1>, <&pll0 2>,
<&pll1 0>, <&pll1 1>, <&pll1 2>,
<&pll2 0>, <&pll2 1>, <&pll2 2>;
clock-names = "pll0", "pll0-div2", "pll0-div4",
"pll1", "pll1-div2", "pll1-div4",
"pll2", "pll2-div2", "pll2-div4";
clock-output-names = "cmux0";
};
mux1: mux1@20 {
#clock-cells = <0>;
reg = <0x20 0x4>;
compatible = "fsl,qoriq-core-mux-2.0";
clocks = <&pll0 0>, <&pll0 1>, <&pll0 2>,
<&pll1 0>, <&pll1 1>, <&pll1 2>,
<&pll2 0>, <&pll2 1>, <&pll2 2>;
clock-names = "pll0", "pll0-div2", "pll0-div4",
"pll1", "pll1-div2", "pll1-div4",
"pll2", "pll2-div2", "pll2-div4";
clock-output-names = "cmux1";
};
mux2: mux2@40 {
#clock-cells = <0>;
reg = <0x40 0x4>;
compatible = "fsl,qoriq-core-mux-2.0";
clocks = <&pll3 0>, <&pll3 1>, <&pll3 2>,
<&pll4 0>, <&pll4 1>, <&pll4 2>;
clock-names = "pll3", "pll3-div2", "pll3-div4",
"pll4", "pll4-div2", "pll4-div4";
clock-output-names = "cmux2";
};
};
rcpm: global-utilities@e2000 {
......
......@@ -67,61 +67,73 @@
cpu0: PowerPC,e6500@0 {
device_type = "cpu";
reg = <0 1>;
clocks = <&mux0>;
next-level-cache = <&L2_1>;
};
cpu1: PowerPC,e6500@2 {
device_type = "cpu";
reg = <2 3>;
clocks = <&mux0>;
next-level-cache = <&L2_1>;
};
cpu2: PowerPC,e6500@4 {
device_type = "cpu";
reg = <4 5>;
clocks = <&mux0>;
next-level-cache = <&L2_1>;
};
cpu3: PowerPC,e6500@6 {
device_type = "cpu";
reg = <6 7>;
clocks = <&mux0>;
next-level-cache = <&L2_1>;
};
cpu4: PowerPC,e6500@8 {
device_type = "cpu";
reg = <8 9>;
clocks = <&mux1>;
next-level-cache = <&L2_2>;
};
cpu5: PowerPC,e6500@10 {
device_type = "cpu";
reg = <10 11>;
clocks = <&mux1>;
next-level-cache = <&L2_2>;
};
cpu6: PowerPC,e6500@12 {
device_type = "cpu";
reg = <12 13>;
clocks = <&mux1>;
next-level-cache = <&L2_2>;
};
cpu7: PowerPC,e6500@14 {
device_type = "cpu";
reg = <14 15>;
clocks = <&mux1>;
next-level-cache = <&L2_2>;
};
cpu8: PowerPC,e6500@16 {
device_type = "cpu";
reg = <16 17>;
clocks = <&mux2>;
next-level-cache = <&L2_3>;
};
cpu9: PowerPC,e6500@18 {
device_type = "cpu";
reg = <18 19>;
clocks = <&mux2>;
next-level-cache = <&L2_3>;
};
cpu10: PowerPC,e6500@20 {
device_type = "cpu";
reg = <20 21>;
clocks = <&mux2>;
next-level-cache = <&L2_3>;
};
cpu11: PowerPC,e6500@22 {
device_type = "cpu";
reg = <22 23>;
clocks = <&mux2>;
next-level-cache = <&L2_3>;
};
};
......
......@@ -159,6 +159,48 @@
interrupts = <0x1 0x1 0 0>;
};
};
i2c@2 {
#address-cells = <1>;
#size-cells = <0>;
reg = <0x2>;
ina220@40 {
compatible = "ti,ina220";
reg = <0x40>;
shunt-resistor = <1000>;
};
ina220@41 {
compatible = "ti,ina220";
reg = <0x41>;
shunt-resistor = <1000>;
};
ina220@44 {
compatible = "ti,ina220";
reg = <0x44>;
shunt-resistor = <1000>;
};
ina220@45 {
compatible = "ti,ina220";
reg = <0x45>;
shunt-resistor = <1000>;
};
ina220@46 {
compatible = "ti,ina220";
reg = <0x46>;
shunt-resistor = <1000>;
};
ina220@47 {
compatible = "ti,ina220";
reg = <0x47>;
shunt-resistor = <1000>;
};
};
};
};
......
......@@ -26,7 +26,6 @@ CONFIG_CORENET_GENERIC=y
CONFIG_BINFMT_MISC=m
CONFIG_MATH_EMULATION=y
CONFIG_MATH_EMULATION_HW_UNIMPLEMENTED=y
CONFIG_FSL_IFC=y
CONFIG_PCIEPORTBUS=y
CONFIG_PCI_MSI=y
CONFIG_RAPIDIO=y
......
......@@ -49,7 +49,6 @@ CONFIG_HIGHMEM=y
CONFIG_BINFMT_MISC=m
CONFIG_MATH_EMULATION=y
CONFIG_FORCE_MAX_ZONEORDER=12
CONFIG_FSL_IFC=y
CONFIG_PCI=y
CONFIG_PCI_MSI=y
CONFIG_RAPIDIO=y
......
......@@ -52,7 +52,6 @@ CONFIG_HIGHMEM=y
CONFIG_BINFMT_MISC=m
CONFIG_MATH_EMULATION=y
CONFIG_FORCE_MAX_ZONEORDER=12
CONFIG_FSL_IFC=y
CONFIG_PCI=y
CONFIG_PCI_MSI=y
CONFIG_RAPIDIO=y
......
......@@ -46,9 +46,8 @@
#define EX_CR (1 * 8)
#define EX_R10 (2 * 8)
#define EX_R11 (3 * 8)
#define EX_R13 (4 * 8)
#define EX_R14 (5 * 8)
#define EX_R15 (6 * 8)
#define EX_R14 (4 * 8)
#define EX_R15 (5 * 8)
/*
* The TLB miss exception uses different slots.
......@@ -173,16 +172,6 @@ exc_##label##_book3e:
ld r9,EX_TLB_R9(r12); \
ld r8,EX_TLB_R8(r12); \
mtlr r16;
#define TLB_MISS_PROLOG_STATS_BOLTED \
mflr r10; \
std r8,PACA_EXTLB+EX_TLB_R8(r13); \
std r9,PACA_EXTLB+EX_TLB_R9(r13); \
std r10,PACA_EXTLB+EX_TLB_LR(r13);
#define TLB_MISS_RESTORE_STATS_BOLTED \
ld r16,PACA_EXTLB+EX_TLB_LR(r13); \
ld r9,PACA_EXTLB+EX_TLB_R9(r13); \
ld r8,PACA_EXTLB+EX_TLB_R8(r13); \
mtlr r16;
#define TLB_MISS_STATS_D(name) \
addi r9,r13,MMSTAT_DSTATS+name; \
bl .tlb_stat_inc;
......
......@@ -36,26 +36,21 @@
* *(r8 + GPR11) = saved r11
*
* 64-bit host
* Expected inputs (GEN/GDBELL/DBG/MC exception types):
* Expected inputs (GEN/GDBELL/DBG/CRIT/MC exception types):
* r10 = saved CR
* r13 = PACA_POINTER
* *(r13 + PACA_EX##type + EX_R10) = saved r10
* *(r13 + PACA_EX##type + EX_R11) = saved r11
* SPRN_SPRG_##type##_SCRATCH = saved r13
*
* Expected inputs (CRIT exception type):
* r10 = saved CR
* r13 = PACA_POINTER
* *(r13 + PACA_EX##type + EX_R10) = saved r10
* *(r13 + PACA_EX##type + EX_R11) = saved r11
* *(r13 + PACA_EX##type + EX_R13) = saved r13
*
* Expected inputs (TLB exception type):
* r10 = saved CR
* r12 = extlb pointer
* r13 = PACA_POINTER
* *(r13 + PACA_EX##type + EX_TLB_R10) = saved r10
* *(r13 + PACA_EX##type + EX_TLB_R11) = saved r11
* SPRN_SPRG_GEN_SCRATCH = saved r13
* *(r12 + EX_TLB_R10) = saved r10
* *(r12 + EX_TLB_R11) = saved r11
* *(r12 + EX_TLB_R13) = saved r13
* SPRN_SPRG_GEN_SCRATCH = saved r12
*
* Only the bolted version of TLB miss exception handlers is supported now.
*/
......
......@@ -287,11 +287,14 @@ extern int mmu_linear_psize;
extern int mmu_vmemmap_psize;
struct tlb_core_data {
/*
* Per-core spinlock for e6500 TLB handlers (no tlbsrx.)
* Must be the first struct element.
*/
u8 lock;
/* For software way selection, as on Freescale TLB1 */
u8 esel_next, esel_max, esel_first;
/* Per-core spinlock for e6500 TLB handlers (no tlbsrx.) */
u8 lock;
};
#ifdef CONFIG_PPC64
......
......@@ -116,8 +116,11 @@ struct paca_struct {
/* Shared by all threads of a core -- points to tcd of first thread */
struct tlb_core_data *tcd_ptr;
/* We can have up to 3 levels of reentrancy in the TLB miss handler */
u64 extlb[3][EX_TLB_SIZE / sizeof(u64)];
/*
* We can have up to 3 levels of reentrancy in the TLB miss handler,
* in each of four exception levels (normal, crit, mcheck, debug).
*/
u64 extlb[12][EX_TLB_SIZE / sizeof(u64)];
u64 exmc[8]; /* used for machine checks */
u64 excrit[8]; /* used for crit interrupts */
u64 exdbg[8]; /* used for debug interrupts */
......@@ -146,7 +149,7 @@ struct paca_struct {
u8 io_sync; /* writel() needs spin_unlock sync */
u8 irq_work_pending; /* IRQ_WORK interrupt while soft-disable */
u8 nap_state_lost; /* NV GPR values lost in power7_idle */
u64 sprg3; /* Saved user-visible sprg */
u64 sprg_vdso; /* Saved user-visible sprg */
#ifdef CONFIG_PPC_TRANSACTIONAL_MEM
u64 tm_scratch; /* TM scratch area for reclaim */
#endif
......
......@@ -577,9 +577,13 @@
#define SPRN_SPRG3 0x113 /* Special Purpose Register General 3 */
#define SPRN_USPRG3 0x103 /* SPRG3 userspace read */
#define SPRN_SPRG4 0x114 /* Special Purpose Register General 4 */
#define SPRN_USPRG4 0x104 /* SPRG4 userspace read */
#define SPRN_SPRG5 0x115 /* Special Purpose Register General 5 */
#define SPRN_USPRG5 0x105 /* SPRG5 userspace read */
#define SPRN_SPRG6 0x116 /* Special Purpose Register General 6 */
#define SPRN_USPRG6 0x106 /* SPRG6 userspace read */
#define SPRN_SPRG7 0x117 /* Special Purpose Register General 7 */
#define SPRN_USPRG7 0x107 /* SPRG7 userspace read */
#define SPRN_SRR0 0x01A /* Save/Restore Register 0 */
#define SPRN_SRR1 0x01B /* Save/Restore Register 1 */
#define SRR1_ISI_NOPT 0x40000000 /* ISI: Not found in hash */
......@@ -882,11 +886,10 @@
* 64-bit embedded
* - SPRG0 generic exception scratch
* - SPRG2 TLB exception stack
* - SPRG3 critical exception scratch and
* CPU and NUMA node for VDSO getcpu (user visible)
* - SPRG3 critical exception scratch (user visible, sorry!)
* - SPRG4 unused (user visible)
* - SPRG6 TLB miss scratch (user visible, sorry !)
* - SPRG7 critical exception scratch
* - SPRG7 CPU and NUMA node for VDSO getcpu (user visible)
* - SPRG8 machine check exception scratch
* - SPRG9 debug exception scratch
*
......@@ -943,6 +946,8 @@
#define SPRN_SPRG_SCRATCH0 SPRN_SPRG2
#define SPRN_SPRG_HPACA SPRN_HSPRG0
#define SPRN_SPRG_HSCRATCH0 SPRN_HSPRG1
#define SPRN_SPRG_VDSO_READ SPRN_USPRG3
#define SPRN_SPRG_VDSO_WRITE SPRN_SPRG3
#define GET_PACA(rX) \
BEGIN_FTR_SECTION_NESTED(66); \
......@@ -986,6 +991,8 @@
#define SPRN_SPRG_TLB_SCRATCH SPRN_SPRG6
#define SPRN_SPRG_GEN_SCRATCH SPRN_SPRG0
#define SPRN_SPRG_GDBELL_SCRATCH SPRN_SPRG_GEN_SCRATCH
#define SPRN_SPRG_VDSO_READ SPRN_USPRG7
#define SPRN_SPRG_VDSO_WRITE SPRN_SPRG7
#define SET_PACA(rX) mtspr SPRN_SPRG_PACA,rX
#define GET_PACA(rX) mfspr rX,SPRN_SPRG_PACA
......@@ -1105,6 +1112,8 @@
#define PVR_8560 0x80200000
#define PVR_VER_E500V1 0x8020
#define PVR_VER_E500V2 0x8021
#define PVR_VER_E500MC 0x8023
#define PVR_VER_E5500 0x8024
#define PVR_VER_E6500 0x8040
/*
......
......@@ -253,7 +253,7 @@ int main(void)
DEFINE(PACA_SYSTEM_TIME, offsetof(struct paca_struct, system_time));
DEFINE(PACA_TRAP_SAVE, offsetof(struct paca_struct, trap_save));
DEFINE(PACA_NAPSTATELOST, offsetof(struct paca_struct, nap_state_lost));
DEFINE(PACA_SPRG3, offsetof(struct paca_struct, sprg3));
DEFINE(PACA_SPRG_VDSO, offsetof(struct paca_struct, sprg_vdso));
#endif /* CONFIG_PPC64 */
/* RTAS */
......
......@@ -102,6 +102,8 @@ static void setup_tlb_core_data(void)
{
int cpu;
BUILD_BUG_ON(offsetof(struct tlb_core_data, lock) != 0);
for_each_possible_cpu(cpu) {
int first = cpu_first_thread_sibling(cpu);
......@@ -552,14 +554,20 @@ static void __init irqstack_early_init(void)
static void __init exc_lvl_early_init(void)
{
unsigned int i;
unsigned long sp;
for_each_possible_cpu(i) {
critirq_ctx[i] = (struct thread_info *)
__va(memblock_alloc(THREAD_SIZE, THREAD_SIZE));
dbgirq_ctx[i] = (struct thread_info *)
__va(memblock_alloc(THREAD_SIZE, THREAD_SIZE));
mcheckirq_ctx[i] = (struct thread_info *)
__va(memblock_alloc(THREAD_SIZE, THREAD_SIZE));
sp = memblock_alloc(THREAD_SIZE, THREAD_SIZE);
critirq_ctx[i] = (struct thread_info *)__va(sp);
paca[i].crit_kstack = __va(sp + THREAD_SIZE);
sp = memblock_alloc(THREAD_SIZE, THREAD_SIZE);
dbgirq_ctx[i] = (struct thread_info *)__va(sp);
paca[i].dbg_kstack = __va(sp + THREAD_SIZE);
sp = memblock_alloc(THREAD_SIZE, THREAD_SIZE);
mcheckirq_ctx[i] = (struct thread_info *)__va(sp);
paca[i].mc_kstack = __va(sp + THREAD_SIZE);
}
if (cpu_has_feature(CPU_FTR_DEBUG_LVL_EXC))
......
......@@ -715,8 +715,8 @@ int vdso_getcpu_init(void)
unsigned long cpu, node, val;
/*
* SPRG3 contains the CPU in the bottom 16 bits and the NUMA node in
* the next 16 bits. The VDSO uses this to implement getcpu().
* SPRG_VDSO contains the CPU in the bottom 16 bits and the NUMA node
* in the next 16 bits. The VDSO uses this to implement getcpu().
*/
cpu = get_cpu();
WARN_ON_ONCE(cpu > 0xffff);
......@@ -725,8 +725,8 @@ int vdso_getcpu_init(void)
WARN_ON_ONCE(node > 0xffff);
val = (cpu & 0xfff) | ((node & 0xffff) << 16);
mtspr(SPRN_SPRG3, val);
get_paca()->sprg3 = val;
mtspr(SPRN_SPRG_VDSO_WRITE, val);
get_paca()->sprg_vdso = val;
put_cpu();
......
......@@ -29,7 +29,7 @@
*/
V_FUNCTION_BEGIN(__kernel_getcpu)
.cfi_startproc
mfspr r5,SPRN_USPRG3
mfspr r5,SPRN_SPRG_VDSO_READ
cmpdi cr0,r3,0
cmpdi cr1,r4,0
clrlwi r6,r5,16
......
......@@ -29,7 +29,7 @@
*/
V_FUNCTION_BEGIN(__kernel_getcpu)
.cfi_startproc
mfspr r5,SPRN_USPRG3
mfspr r5,SPRN_SPRG_VDSO_READ
cmpdi cr0,r3,0
cmpdi cr1,r4,0
clrlwi r6,r5,16
......
......@@ -75,8 +75,8 @@ BEGIN_FTR_SECTION
END_FTR_SECTION_IFCLR(CPU_FTR_ARCH_207S)
/* Restore SPRG3 */
ld r3,PACA_SPRG3(r13)
mtspr SPRN_SPRG3,r3
ld r3,PACA_SPRG_VDSO(r13)
mtspr SPRN_SPRG_VDSO_WRITE,r3
/* Reload the host's PMU registers */
ld r3, PACALPPACAPTR(r13) /* is the host using the PMU? */
......
......@@ -153,8 +153,8 @@ kvm_start_lightweight:
* Reload kernel SPRG3 value.
* No need to save guest value as usermode can't modify SPRG3.
*/
ld r3, PACA_SPRG3(r13)
mtspr SPRN_SPRG3, r3
ld r3, PACA_SPRG_VDSO(r13)
mtspr SPRN_SPRG_VDSO_WRITE, r3
#endif /* CONFIG_PPC_BOOK3S_64 */
/* R7 = vcpu */
......
......@@ -229,17 +229,20 @@
stw r10, VCPU_CR(r4)
PPC_STL r11, VCPU_GPR(R4)(r4)
PPC_STL r5, VCPU_GPR(R5)(r4)
.if \type == EX_CRIT
PPC_LL r5, (\paca_ex + EX_R13)(r13)
.else
mfspr r5, \scratch
.endif
PPC_STL r6, VCPU_GPR(R6)(r4)
PPC_STL r8, VCPU_GPR(R8)(r4)
PPC_STL r9, VCPU_GPR(R9)(r4)
PPC_STL r5, VCPU_GPR(R13)(r4)
.if \type == EX_TLB
PPC_LL r5, EX_TLB_R13(r12)
PPC_LL r6, EX_TLB_R10(r12)
PPC_LL r8, EX_TLB_R11(r12)
mfspr r12, \scratch
.else
mfspr r5, \scratch
PPC_LL r6, (\paca_ex + \ex_r10)(r13)
PPC_LL r8, (\paca_ex + \ex_r11)(r13)
.endif
PPC_STL r5, VCPU_GPR(R13)(r4)
PPC_STL r3, VCPU_GPR(R3)(r4)
PPC_STL r7, VCPU_GPR(R7)(r4)
PPC_STL r12, VCPU_GPR(R12)(r4)
......@@ -435,10 +438,16 @@ _GLOBAL(kvmppc_resume_host)
PPC_STL r5, VCPU_LR(r4)
mfspr r7, SPRN_SPRG5
stw r3, VCPU_VRSAVE(r4)
#ifdef CONFIG_64BIT
PPC_LL r3, PACA_SPRG_VDSO(r13)
#endif
PPC_STD(r6, VCPU_SHARED_SPRG4, r11)
mfspr r8, SPRN_SPRG6
PPC_STD(r7, VCPU_SHARED_SPRG5, r11)
mfspr r9, SPRN_SPRG7
#ifdef CONFIG_64BIT
mtspr SPRN_SPRG_VDSO_WRITE, r3
#endif
PPC_STD(r8, VCPU_SHARED_SPRG6, r11)
mfxer r3
PPC_STD(r9, VCPU_SHARED_SPRG7, r11)
......
......@@ -39,37 +39,49 @@
* *
**********************************************************************/
/*
* Note that, unlike non-bolted handlers, TLB_EXFRAME is not
* modified by the TLB miss handlers themselves, since the TLB miss
* handler code will not itself cause a recursive TLB miss.
*
* TLB_EXFRAME will be modified when crit/mc/debug exceptions are
* entered/exited.
*/
.macro tlb_prolog_bolted intnum addr
mtspr SPRN_SPRG_GEN_SCRATCH,r13
mtspr SPRN_SPRG_GEN_SCRATCH,r12
mfspr r12,SPRN_SPRG_TLB_EXFRAME
std r13,EX_TLB_R13(r12)
std r10,EX_TLB_R10(r12)
mfspr r13,SPRN_SPRG_PACA
std r10,PACA_EXTLB+EX_TLB_R10(r13)
mfcr r10
std r11,PACA_EXTLB+EX_TLB_R11(r13)
std r11,EX_TLB_R11(r12)
#ifdef CONFIG_KVM_BOOKE_HV
BEGIN_FTR_SECTION
mfspr r11, SPRN_SRR1
END_FTR_SECTION_IFSET(CPU_FTR_EMB_HV)
#endif
DO_KVM \intnum, SPRN_SRR1
std r16,PACA_EXTLB+EX_TLB_R16(r13)
std r16,EX_TLB_R16(r12)
mfspr r16,\addr /* get faulting address */
std r14,PACA_EXTLB+EX_TLB_R14(r13)
std r14,EX_TLB_R14(r12)
ld r14,PACAPGD(r13)
std r15,PACA_EXTLB+EX_TLB_R15(r13)
std r10,PACA_EXTLB+EX_TLB_CR(r13)
TLB_MISS_PROLOG_STATS_BOLTED
std r15,EX_TLB_R15(r12)
std r10,EX_TLB_CR(r12)
TLB_MISS_PROLOG_STATS
.endm
.macro tlb_epilog_bolted
ld r14,PACA_EXTLB+EX_TLB_CR(r13)
ld r10,PACA_EXTLB+EX_TLB_R10(r13)
ld r11,PACA_EXTLB+EX_TLB_R11(r13)
ld r14,EX_TLB_CR(r12)
ld r10,EX_TLB_R10(r12)
ld r11,EX_TLB_R11(r12)
ld r13,EX_TLB_R13(r12)
mtcr r14
ld r14,PACA_EXTLB+EX_TLB_R14(r13)
ld r15,PACA_EXTLB+EX_TLB_R15(r13)
TLB_MISS_RESTORE_STATS_BOLTED
ld r16,PACA_EXTLB+EX_TLB_R16(r13)
mfspr r13,SPRN_SPRG_GEN_SCRATCH
ld r14,EX_TLB_R14(r12)
ld r15,EX_TLB_R15(r12)
TLB_MISS_RESTORE_STATS
ld r16,EX_TLB_R16(r12)
mfspr r12,SPRN_SPRG_GEN_SCRATCH
.endm
/* Data TLB miss */
......@@ -284,7 +296,7 @@ itlb_miss_fault_bolted:
* r14 = page table base
* r13 = PACA
* r11 = tlb_per_core ptr
* r10 = crap (free to use)
* r10 = cpu number
*/
tlb_miss_common_e6500:
/*
......@@ -293,15 +305,18 @@ tlb_miss_common_e6500:
*
* MAS6:IND should be already set based on MAS4
*/
addi r10,r11,TCD_LOCK
1: lbarx r15,0,r10
1: lbarx r15,0,r11
lhz r10,PACAPACAINDEX(r13)
cmpdi r15,0
cmpdi cr1,r15,1 /* set cr1.eq = 0 for non-recursive */
bne 2f
li r15,1
stbcx. r15,0,r10
stbcx. r10,0,r11
bne 1b
3:
.subsection 1
2: lbz r15,0(r10)
2: cmpd cr1,r15,r10 /* recursive lock due to mcheck/crit/etc? */
beq cr1,3b /* unlock will happen if cr1.eq = 0 */
lbz r15,0(r11)
cmpdi r15,0
bne 2b
b 1b
......@@ -379,9 +394,11 @@ tlb_miss_common_e6500:
tlb_miss_done_e6500:
.macro tlb_unlock_e6500
beq cr1,1f /* no unlock if lock was recursively grabbed */
li r15,0
isync
stb r15,TCD_LOCK(r11)
stb r15,0(r11)
1:
.endm
tlb_unlock_e6500
......
......@@ -144,6 +144,15 @@ int mmu_vmemmap_psize; /* Page size used for the virtual mem map */
int book3e_htw_mode; /* HW tablewalk? Value is PPC_HTW_* */
unsigned long linear_map_top; /* Top of linear mapping */
/*
* Number of bytes to add to SPRN_SPRG_TLB_EXFRAME on crit/mcheck/debug
* exceptions. This is used for bolted and e6500 TLB miss handlers which
* do not modify this SPRG in the TLB miss code; for other TLB miss handlers,
* this is set to zero.
*/
int extlb_level_exc;
#endif /* CONFIG_PPC64 */
#ifdef CONFIG_PPC_FSL_BOOK3E
......@@ -559,6 +568,7 @@ static void setup_mmu_htw(void)
break;
#ifdef CONFIG_PPC_FSL_BOOK3E
case PPC_HTW_E6500:
extlb_level_exc = EX_TLB_SIZE;
patch_exception(0x1c0, exc_data_tlb_miss_e6500_book3e);
patch_exception(0x1e0, exc_instruction_tlb_miss_e6500_book3e);
break;
......@@ -652,6 +662,7 @@ static void __early_init_mmu(int boot_cpu)
memblock_enforce_memory_limit(linear_map_top);
if (book3e_htw_mode == PPC_HTW_NONE) {
extlb_level_exc = EX_TLB_SIZE;
patch_exception(0x1c0, exc_data_tlb_miss_bolted_book3e);
patch_exception(0x1e0,
exc_instruction_tlb_miss_bolted_book3e);
......
......@@ -68,6 +68,7 @@ define_machine(c293_pcie) {
.init_IRQ = c293_pcie_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_irq,
.restart = fsl_rstcr_restart,
......
......@@ -107,6 +107,12 @@ void __init mpc85xx_qe_init(void)
qe_reset();
of_node_put(np);
}
void __init mpc85xx_qe_par_io_init(void)
{
struct device_node *np;
np = of_find_node_by_name(NULL, "par_io");
if (np) {
struct device_node *ucc;
......
......@@ -26,11 +26,13 @@
#include <asm/udbg.h>
#include <asm/mpic.h>
#include <asm/ehv_pic.h>
#include <asm/qe_ic.h>
#include <linux/of_platform.h>
#include <sysdev/fsl_soc.h>
#include <sysdev/fsl_pci.h>
#include "smp.h"
#include "mpc85xx.h"
void __init corenet_gen_pic_init(void)
{
......@@ -38,6 +40,8 @@ void __init corenet_gen_pic_init(void)
unsigned int flags = MPIC_BIG_ENDIAN | MPIC_SINGLE_DEST_CPU |
MPIC_NO_RESET;
struct device_node *np;
if (ppc_md.get_irq == mpic_get_coreint_irq)
flags |= MPIC_ENABLE_COREINT;
......@@ -45,6 +49,13 @@ void __init corenet_gen_pic_init(void)
BUG_ON(mpic == NULL);
mpic_init(mpic);
np = of_find_compatible_node(NULL, NULL, "fsl,qe-ic");
if (np) {
qe_ic_init(np, 0, qe_ic_cascade_low_mpic,
qe_ic_cascade_high_mpic);
of_node_put(np);
}
}
/*
......@@ -57,6 +68,8 @@ void __init corenet_gen_setup_arch(void)
swiotlb_detect_4g();
pr_info("%s board from Freescale Semiconductor\n", ppc_md.name);
mpc85xx_qe_init();
}
static const struct of_device_id of_device_ids[] = {
......@@ -81,6 +94,9 @@ static const struct of_device_id of_device_ids[] = {
{
.compatible = "fsl,qoriq-pcie-v3.0",
},
{
.compatible = "fsl,qe",
},
/* The following two are for the Freescale hypervisor */
{
.name = "hypervisor",
......@@ -163,6 +179,7 @@ define_machine(corenet_generic) {
.init_IRQ = corenet_gen_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_coreint_irq,
.restart = fsl_rstcr_restart,
......
......@@ -215,6 +215,7 @@ define_machine(ge_imp3a) {
.show_cpuinfo = ge_imp3a_show_cpuinfo,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_irq,
.restart = fsl_rstcr_restart,
......
......@@ -76,6 +76,7 @@ define_machine(mpc8536_ds) {
.init_IRQ = mpc8536_ds_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_irq,
.restart = fsl_rstcr_restart,
......
......@@ -10,8 +10,10 @@ static inline void __init mpc85xx_cpm2_pic_init(void) {}
#ifdef CONFIG_QUICC_ENGINE
extern void mpc85xx_qe_init(void);
extern void mpc85xx_qe_par_io_init(void);
#else
static inline void __init mpc85xx_qe_init(void) {}
static inline void __init mpc85xx_qe_par_io_init(void) {}
#endif
#endif
......@@ -385,6 +385,7 @@ define_machine(mpc85xx_cds) {
#ifdef CONFIG_PCI
.restart = mpc85xx_cds_restart,
.pcibios_fixup_bus = mpc85xx_cds_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#else
.restart = fsl_rstcr_restart,
#endif
......
......@@ -209,6 +209,7 @@ define_machine(mpc8544_ds) {
.init_IRQ = mpc85xx_ds_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_irq,
.restart = fsl_rstcr_restart,
......@@ -223,6 +224,7 @@ define_machine(mpc8572_ds) {
.init_IRQ = mpc85xx_ds_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_irq,
.restart = fsl_rstcr_restart,
......@@ -237,6 +239,7 @@ define_machine(p2020_ds) {
.init_IRQ = mpc85xx_ds_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_irq,
.restart = fsl_rstcr_restart,
......
......@@ -239,6 +239,7 @@ static void __init mpc85xx_mds_qe_init(void)
struct device_node *np;
mpc85xx_qe_init();
mpc85xx_qe_par_io_init();
mpc85xx_mds_reset_ucc_phys();
if (machine_is(p1021_mds)) {
......@@ -391,6 +392,7 @@ define_machine(mpc8568_mds) {
.progress = udbg_progress,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
};
......@@ -412,6 +414,7 @@ define_machine(mpc8569_mds) {
.progress = udbg_progress,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
};
......@@ -434,6 +437,7 @@ define_machine(p1021_mds) {
.progress = udbg_progress,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
};
......@@ -86,10 +86,6 @@ void __init mpc85xx_rdb_pic_init(void)
*/
static void __init mpc85xx_rdb_setup_arch(void)
{
#ifdef CONFIG_QUICC_ENGINE
struct device_node *np;
#endif
if (ppc_md.progress)
ppc_md.progress("mpc85xx_rdb_setup_arch()", 0);
......@@ -99,8 +95,10 @@ static void __init mpc85xx_rdb_setup_arch(void)
#ifdef CONFIG_QUICC_ENGINE
mpc85xx_qe_init();
mpc85xx_qe_par_io_init();
#if defined(CONFIG_UCC_GETH) || defined(CONFIG_SERIAL_QE)
if (machine_is(p1025_rdb)) {
struct device_node *np;
struct ccsr_guts __iomem *guts;
......@@ -233,6 +231,7 @@ define_machine(p2020_rdb) {
.init_IRQ = mpc85xx_rdb_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_irq,
.restart = fsl_rstcr_restart,
......@@ -247,6 +246,7 @@ define_machine(p1020_rdb) {
.init_IRQ = mpc85xx_rdb_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_irq,
.restart = fsl_rstcr_restart,
......@@ -261,6 +261,7 @@ define_machine(p1021_rdb_pc) {
.init_IRQ = mpc85xx_rdb_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_irq,
.restart = fsl_rstcr_restart,
......@@ -275,6 +276,7 @@ define_machine(p2020_rdb_pc) {
.init_IRQ = mpc85xx_rdb_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_irq,
.restart = fsl_rstcr_restart,
......@@ -289,6 +291,7 @@ define_machine(p1025_rdb) {
.init_IRQ = mpc85xx_rdb_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_irq,
.restart = fsl_rstcr_restart,
......@@ -303,6 +306,7 @@ define_machine(p1020_mbg_pc) {
.init_IRQ = mpc85xx_rdb_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_irq,
.restart = fsl_rstcr_restart,
......@@ -317,6 +321,7 @@ define_machine(p1020_utm_pc) {
.init_IRQ = mpc85xx_rdb_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_irq,
.restart = fsl_rstcr_restart,
......@@ -331,6 +336,7 @@ define_machine(p1020_rdb_pc) {
.init_IRQ = mpc85xx_rdb_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_irq,
.restart = fsl_rstcr_restart,
......@@ -345,6 +351,7 @@ define_machine(p1020_rdb_pd) {
.init_IRQ = mpc85xx_rdb_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_irq,
.restart = fsl_rstcr_restart,
......@@ -359,6 +366,7 @@ define_machine(p1024_rdb) {
.init_IRQ = mpc85xx_rdb_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_irq,
.restart = fsl_rstcr_restart,
......
......@@ -78,6 +78,7 @@ define_machine(p1010_rdb) {
.init_IRQ = p1010_rdb_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_irq,
.restart = fsl_rstcr_restart,
......
......@@ -567,6 +567,7 @@ define_machine(p1022_ds) {
.init_IRQ = p1022_ds_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_irq,
.restart = fsl_rstcr_restart,
......
......@@ -147,6 +147,7 @@ define_machine(p1022_rdk) {
.init_IRQ = p1022_rdk_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_irq,
.restart = fsl_rstcr_restart,
......
......@@ -126,6 +126,7 @@ define_machine(p1023_rds) {
.progress = udbg_progress,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
};
......@@ -140,5 +141,6 @@ define_machine(p1023_rdb) {
.progress = udbg_progress,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
};
......@@ -66,6 +66,7 @@ define_machine(qemu_e500) {
.init_IRQ = qemu_e500_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_coreint_irq,
.restart = fsl_rstcr_restart,
......
......@@ -135,6 +135,7 @@ define_machine(sbc8548) {
.restart = fsl_rstcr_restart,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.calibrate_decr = generic_calibrate_decr,
.progress = udbg_progress,
......
......@@ -77,6 +77,7 @@ static void __init twr_p1025_setup_arch(void)
#ifdef CONFIG_QUICC_ENGINE
mpc85xx_qe_init();
mpc85xx_qe_par_io_init();
#if defined(CONFIG_UCC_GETH) || defined(CONFIG_SERIAL_QE)
if (machine_is(twr_p1025)) {
......
......@@ -170,6 +170,7 @@ define_machine(xes_mpc8572) {
.init_IRQ = xes_mpc85xx_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_irq,
.restart = fsl_rstcr_restart,
......@@ -184,6 +185,7 @@ define_machine(xes_mpc8548) {
.init_IRQ = xes_mpc85xx_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_irq,
.restart = fsl_rstcr_restart,
......@@ -198,6 +200,7 @@ define_machine(xes_mpc8540) {
.init_IRQ = xes_mpc85xx_pic_init,
#ifdef CONFIG_PCI
.pcibios_fixup_bus = fsl_pcibios_fixup_bus,
.pcibios_fixup_phb = fsl_pcibios_fixup_phb,
#endif
.get_irq = mpic_get_irq,
.restart = fsl_rstcr_restart,
......
......@@ -34,7 +34,6 @@ config MPC7448HPC2
select TSI108_BRIDGE
select DEFAULT_UIMAGE
select PPC_UDBG_16550
select TSI108_BRIDGE
help
Select MPC7448HPC2 if configuring for Freescale MPC7448HPC2 (Taiga)
platform
......@@ -44,7 +43,6 @@ config PPC_HOLLY
depends on EMBEDDED6xx
select TSI108_BRIDGE
select PPC_UDBG_16550
select TSI108_BRIDGE
help
Select PPC_HOLLY if configuring for an IBM 750GX/CL Eval
Board with TSI108/9 bridge (Hickory/Holly)
......
......@@ -22,10 +22,13 @@
#include <linux/delay.h>
#include <linux/string.h>
#include <linux/init.h>
#include <linux/interrupt.h>
#include <linux/bootmem.h>
#include <linux/memblock.h>
#include <linux/log2.h>
#include <linux/slab.h>
#include <linux/suspend.h>
#include <linux/syscore_ops.h>
#include <linux/uaccess.h>
#include <asm/io.h>
......@@ -868,6 +871,14 @@ u64 fsl_pci_immrbar_base(struct pci_controller *hose)
pci_bus_read_config_dword(hose->bus,
PCI_DEVFN(0, 0), PCI_BASE_ADDRESS_0, &base);
/*
* For PEXCSRBAR, bit 3-0 indicate prefetchable and
* address type. So when getting base address, these
* bits should be masked
*/
base &= PCI_BASE_ADDRESS_MEM_MASK;
return base;
}
#endif
......@@ -1086,55 +1097,171 @@ void fsl_pci_assign_primary(void)
}
}
static int fsl_pci_probe(struct platform_device *pdev)
#ifdef CONFIG_PM_SLEEP
static irqreturn_t fsl_pci_pme_handle(int irq, void *dev_id)
{
int ret;
struct device_node *node;
struct pci_controller *hose = dev_id;
struct ccsr_pci __iomem *pci = hose->private_data;
u32 dr;
node = pdev->dev.of_node;
ret = fsl_add_bridge(pdev, fsl_pci_primary == node);
dr = in_be32(&pci->pex_pme_mes_dr);
if (!dr)
return IRQ_NONE;
mpc85xx_pci_err_probe(pdev);
out_be32(&pci->pex_pme_mes_dr, dr);
return 0;
return IRQ_HANDLED;
}
#ifdef CONFIG_PM
static int fsl_pci_resume(struct device *dev)
static int fsl_pci_pme_probe(struct pci_controller *hose)
{
struct pci_controller *hose;
struct resource pci_rsrc;
struct ccsr_pci __iomem *pci;
struct pci_dev *dev;
int pme_irq;
int res;
u16 pms;
hose = pci_find_hose_for_OF_device(dev->of_node);
if (!hose)
return -ENODEV;
/* Get hose's pci_dev */
dev = list_first_entry(&hose->bus->devices, typeof(*dev), bus_list);
/* PME Disable */
pci_read_config_word(dev, dev->pm_cap + PCI_PM_CTRL, &pms);
pms &= ~PCI_PM_CTRL_PME_ENABLE;
pci_write_config_word(dev, dev->pm_cap + PCI_PM_CTRL, pms);
pme_irq = irq_of_parse_and_map(hose->dn, 0);
if (!pme_irq) {
dev_err(&dev->dev, "Failed to map PME interrupt.\n");
return -ENXIO;
}
res = devm_request_irq(hose->parent, pme_irq,
fsl_pci_pme_handle,
IRQF_SHARED,
"[PCI] PME", hose);
if (res < 0) {
dev_err(&dev->dev, "Unable to requiest irq %d for PME\n", pme_irq);
irq_dispose_mapping(pme_irq);
if (of_address_to_resource(dev->of_node, 0, &pci_rsrc)) {
dev_err(dev, "Get pci register base failed.");
return -ENODEV;
}
setup_pci_atmu(hose);
pci = hose->private_data;
/* Enable PTOD, ENL23D & EXL23D */
out_be32(&pci->pex_pme_mes_disr, 0);
setbits32(&pci->pex_pme_mes_disr,
PME_DISR_EN_PTOD | PME_DISR_EN_ENL23D | PME_DISR_EN_EXL23D);
out_be32(&pci->pex_pme_mes_ier, 0);
setbits32(&pci->pex_pme_mes_ier,
PME_DISR_EN_PTOD | PME_DISR_EN_ENL23D | PME_DISR_EN_EXL23D);
/* PME Enable */
pci_read_config_word(dev, dev->pm_cap + PCI_PM_CTRL, &pms);
pms |= PCI_PM_CTRL_PME_ENABLE;
pci_write_config_word(dev, dev->pm_cap + PCI_PM_CTRL, pms);
return 0;
}
static const struct dev_pm_ops pci_pm_ops = {
.resume = fsl_pci_resume,
};
static void send_pme_turnoff_message(struct pci_controller *hose)
{
struct ccsr_pci __iomem *pci = hose->private_data;
u32 dr;
int i;
#define PCI_PM_OPS (&pci_pm_ops)
/* Send PME_Turn_Off Message Request */
setbits32(&pci->pex_pmcr, PEX_PMCR_PTOMR);
#else
/* Wait trun off done */
for (i = 0; i < 150; i++) {
dr = in_be32(&pci->pex_pme_mes_dr);
if (dr) {
out_be32(&pci->pex_pme_mes_dr, dr);
break;
}
udelay(1000);
}
}
static void fsl_pci_syscore_do_suspend(struct pci_controller *hose)
{
send_pme_turnoff_message(hose);
}
static int fsl_pci_syscore_suspend(void)
{
struct pci_controller *hose, *tmp;
#define PCI_PM_OPS NULL
list_for_each_entry_safe(hose, tmp, &hose_list, list_node)
fsl_pci_syscore_do_suspend(hose);
return 0;
}
static void fsl_pci_syscore_do_resume(struct pci_controller *hose)
{
struct ccsr_pci __iomem *pci = hose->private_data;
u32 dr;
int i;
/* Send Exit L2 State Message */
setbits32(&pci->pex_pmcr, PEX_PMCR_EXL2S);
/* Wait exit done */
for (i = 0; i < 150; i++) {
dr = in_be32(&pci->pex_pme_mes_dr);
if (dr) {
out_be32(&pci->pex_pme_mes_dr, dr);
break;
}
udelay(1000);
}
setup_pci_atmu(hose);
}
static void fsl_pci_syscore_resume(void)
{
struct pci_controller *hose, *tmp;
list_for_each_entry_safe(hose, tmp, &hose_list, list_node)
fsl_pci_syscore_do_resume(hose);
}
static struct syscore_ops pci_syscore_pm_ops = {
.suspend = fsl_pci_syscore_suspend,
.resume = fsl_pci_syscore_resume,
};
#endif
void fsl_pcibios_fixup_phb(struct pci_controller *phb)
{
#ifdef CONFIG_PM_SLEEP
fsl_pci_pme_probe(phb);
#endif
}
static int fsl_pci_probe(struct platform_device *pdev)
{
struct device_node *node;
int ret;
node = pdev->dev.of_node;
ret = fsl_add_bridge(pdev, fsl_pci_primary == node);
mpc85xx_pci_err_probe(pdev);
return 0;
}
static struct platform_driver fsl_pci_driver = {
.driver = {
.name = "fsl-pci",
.pm = PCI_PM_OPS,
.of_match_table = pci_ids,
},
.probe = fsl_pci_probe,
......@@ -1142,6 +1269,9 @@ static struct platform_driver fsl_pci_driver = {
static int __init fsl_pci_init(void)
{
#ifdef CONFIG_PM_SLEEP
register_syscore_ops(&pci_syscore_pm_ops);
#endif
return platform_driver_register(&fsl_pci_driver);
}
arch_initcall(fsl_pci_init);
......
......@@ -32,6 +32,13 @@ struct platform_device;
#define PIWAR_WRITE_SNOOP 0x00005000
#define PIWAR_SZ_MASK 0x0000003f
#define PEX_PMCR_PTOMR 0x1
#define PEX_PMCR_EXL2S 0x2
#define PME_DISR_EN_PTOD 0x00008000
#define PME_DISR_EN_ENL23D 0x00002000
#define PME_DISR_EN_EXL23D 0x00001000
/* PCI/PCI Express outbound window reg */
struct pci_outbound_window_regs {
__be32 potar; /* 0x.0 - Outbound translation address register */
......@@ -111,6 +118,7 @@ struct ccsr_pci {
extern int fsl_add_bridge(struct platform_device *pdev, int is_primary);
extern void fsl_pcibios_fixup_bus(struct pci_bus *bus);
extern void fsl_pcibios_fixup_phb(struct pci_controller *phb);
extern int mpc83xx_add_bridge(struct device_node *dev);
u64 fsl_pci_immrbar_base(struct pci_controller *hose);
......
......@@ -138,14 +138,6 @@ static void __booke_wdt_enable(void *data)
val &= ~WDTP_MASK;
val |= (TCR_WIE|TCR_WRC(WRC_CHIP)|WDTP(booke_wdt_period));
#ifdef CONFIG_PPC_BOOK3E_64
/*
* Crit ints are currently broken on PPC64 Book-E, so
* just disable them for now.
*/
val &= ~TCR_WIE;
#endif
mtspr(SPRN_TCR, val);
}
......
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