* [PATCH] ARM: shmobile: Break out R-Car SYSC PM code
From: Magnus Damm @ 2014-01-15 7:43 UTC (permalink / raw)
To: linux-arm-kernel
From: Magnus Damm <damm@opensource.se>
Break out the R-Car SYSC power management code from
the r8a7779 SoC code. With this new shared R-Car SYSC
code base it is possible to hook in Generation 2 SoCs
as well.
Signed-off-by: Magnus Damm <damm@opensource.se>
---
Developed on top of renesas-devel-v3.13-rc8-20140115
arch/arm/mach-shmobile/Makefile | 2
arch/arm/mach-shmobile/include/mach/pm-rcar.h | 15 ++
arch/arm/mach-shmobile/include/mach/r8a7779.h | 13 --
arch/arm/mach-shmobile/pm-r8a7779.c | 131 +----------------------
arch/arm/mach-shmobile/pm-rcar.c | 142 +++++++++++++++++++++++++
arch/arm/mach-shmobile/smp-r8a7779.c | 17 +-
6 files changed, 177 insertions(+), 143 deletions(-)
--- 0001/arch/arm/mach-shmobile/Makefile
+++ work/arch/arm/mach-shmobile/Makefile 2014-01-15 13:30:37.000000000 +0900
@@ -52,7 +52,7 @@ obj-$(CONFIG_CPU_IDLE) += cpuidle.o
obj-$(CONFIG_ARCH_SH7372) += pm-sh7372.o sleep-sh7372.o pm-rmobile.o
obj-$(CONFIG_ARCH_SH73A0) += pm-sh73a0.o
obj-$(CONFIG_ARCH_R8A7740) += pm-r8a7740.o pm-rmobile.o
-obj-$(CONFIG_ARCH_R8A7779) += pm-r8a7779.o
+obj-$(CONFIG_ARCH_R8A7779) += pm-r8a7779.o pm-rcar.o
# Board objects
ifdef CONFIG_ARCH_SHMOBILE_MULTI
--- /dev/null
+++ work/arch/arm/mach-shmobile/include/mach/pm-rcar.h 2014-01-15 13:30:38.000000000 +0900
@@ -0,0 +1,15 @@
+#ifndef PM_RCAR_H
+#define PM_RCAR_H
+
+struct rcar_sysc_ch {
+ unsigned long chan_offs;
+ unsigned int chan_bit;
+ unsigned int isr_bit;
+};
+
+int rcar_sysc_power_down(struct rcar_sysc_ch *sysc_ch);
+int rcar_sysc_power_up(struct rcar_sysc_ch *sysc_ch);
+bool rcar_sysc_power_is_off(struct rcar_sysc_ch *sysc_ch);
+void __iomem *rcar_sysc_init(phys_addr_t base);
+
+#endif /* PM_RCAR_H */
--- 0001/arch/arm/mach-shmobile/include/mach/r8a7779.h
+++ work/arch/arm/mach-shmobile/include/mach/r8a7779.h 2014-01-15 13:30:37.000000000 +0900
@@ -3,6 +3,7 @@
#include <linux/sh_clk.h>
#include <linux/pm_domain.h>
+#include <mach/pm-rcar.h>
/* HPB-DMA slave IDs */
enum {
@@ -11,18 +12,12 @@ enum {
HPBDMA_SLAVE_SDHI0_RX,
};
-struct r8a7779_pm_ch {
- unsigned long chan_offs;
- unsigned int chan_bit;
- unsigned int isr_bit;
-};
-
struct r8a7779_pm_domain {
struct generic_pm_domain genpd;
- struct r8a7779_pm_ch ch;
+ struct rcar_sysc_ch ch;
};
-static inline struct r8a7779_pm_ch *to_r8a7779_ch(struct generic_pm_domain *d)
+static inline struct rcar_sysc_ch *to_r8a7779_ch(struct generic_pm_domain *d)
{
return &container_of(d, struct r8a7779_pm_domain, genpd)->ch;
}
@@ -41,8 +36,6 @@ extern void r8a7779_clock_init(void);
extern void r8a7779_pinmux_init(void);
extern void r8a7779_pm_init(void);
extern void r8a7779_register_twd(void);
-extern int r8a7779_sysc_power_down(struct r8a7779_pm_ch *r8a7779_ch);
-extern int r8a7779_sysc_power_up(struct r8a7779_pm_ch *r8a7779_ch);
#ifdef CONFIG_PM
extern void __init r8a7779_init_pm_domains(void);
--- 0001/arch/arm/mach-shmobile/pm-r8a7779.c
+++ work/arch/arm/mach-shmobile/pm-r8a7779.c 2014-01-15 13:30:37.000000000 +0900
@@ -20,132 +20,22 @@
#include <linux/console.h>
#include <asm/io.h>
#include <mach/common.h>
+#include <mach/pm-rcar.h>
#include <mach/r8a7779.h>
-static void __iomem *r8a7779_sysc_base;
-
/* SYSC */
-#define SYSCSR 0x00
-#define SYSCISR 0x04
-#define SYSCISCR 0x08
#define SYSCIER 0x0c
#define SYSCIMR 0x10
-#define PWRSR0 0x40
-#define PWRSR1 0x80
-#define PWRSR2 0xc0
-#define PWRSR3 0x100
-#define PWRSR4 0x140
-
-#define PWRSR_OFFS 0x00
-#define PWROFFCR_OFFS 0x04
-#define PWRONCR_OFFS 0x0c
-#define PWRER_OFFS 0x14
-
-#define SYSCSR_RETRIES 100
-#define SYSCSR_DELAY_US 1
-
-#define SYSCISR_RETRIES 1000
-#define SYSCISR_DELAY_US 1
#if defined(CONFIG_PM) || defined(CONFIG_SMP)
-static DEFINE_SPINLOCK(r8a7779_sysc_lock); /* SMP CPUs + I/O devices */
-
-static int r8a7779_sysc_pwr_on_off(struct r8a7779_pm_ch *r8a7779_ch,
- int sr_bit, int reg_offs)
-{
- int k;
-
- for (k = 0; k < SYSCSR_RETRIES; k++) {
- if (ioread32(r8a7779_sysc_base + SYSCSR) & (1 << sr_bit))
- break;
- udelay(SYSCSR_DELAY_US);
- }
-
- if (k == SYSCSR_RETRIES)
- return -EAGAIN;
-
- iowrite32(1 << r8a7779_ch->chan_bit,
- r8a7779_sysc_base + r8a7779_ch->chan_offs + reg_offs);
-
- return 0;
-}
-
-static int r8a7779_sysc_pwr_off(struct r8a7779_pm_ch *r8a7779_ch)
-{
- return r8a7779_sysc_pwr_on_off(r8a7779_ch, 0, PWROFFCR_OFFS);
-}
-
-static int r8a7779_sysc_pwr_on(struct r8a7779_pm_ch *r8a7779_ch)
-{
- return r8a7779_sysc_pwr_on_off(r8a7779_ch, 1, PWRONCR_OFFS);
-}
-
-static int r8a7779_sysc_update(struct r8a7779_pm_ch *r8a7779_ch,
- int (*on_off_fn)(struct r8a7779_pm_ch *))
-{
- unsigned int isr_mask = 1 << r8a7779_ch->isr_bit;
- unsigned int chan_mask = 1 << r8a7779_ch->chan_bit;
- unsigned int status;
- unsigned long flags;
- int ret = 0;
- int k;
-
- spin_lock_irqsave(&r8a7779_sysc_lock, flags);
-
- iowrite32(isr_mask, r8a7779_sysc_base + SYSCISCR);
-
- do {
- ret = on_off_fn(r8a7779_ch);
- if (ret)
- goto out;
-
- status = ioread32(r8a7779_sysc_base +
- r8a7779_ch->chan_offs + PWRER_OFFS);
- } while (status & chan_mask);
-
- for (k = 0; k < SYSCISR_RETRIES; k++) {
- if (ioread32(r8a7779_sysc_base + SYSCISR) & isr_mask)
- break;
- udelay(SYSCISR_DELAY_US);
- }
-
- if (k == SYSCISR_RETRIES)
- ret = -EIO;
-
- iowrite32(isr_mask, r8a7779_sysc_base + SYSCISCR);
-
- out:
- spin_unlock_irqrestore(&r8a7779_sysc_lock, flags);
-
- pr_debug("r8a7779 power domain %d: %02x %02x %02x %02x %02x -> %d\n",
- r8a7779_ch->isr_bit, ioread32(r8a7779_sysc_base + PWRSR0),
- ioread32(r8a7779_sysc_base + PWRSR1),
- ioread32(r8a7779_sysc_base + PWRSR2),
- ioread32(r8a7779_sysc_base + PWRSR3),
- ioread32(r8a7779_sysc_base + PWRSR4), ret);
- return ret;
-}
-
-int r8a7779_sysc_power_down(struct r8a7779_pm_ch *r8a7779_ch)
-{
- return r8a7779_sysc_update(r8a7779_ch, r8a7779_sysc_pwr_off);
-}
-
-int r8a7779_sysc_power_up(struct r8a7779_pm_ch *r8a7779_ch)
-{
- return r8a7779_sysc_update(r8a7779_ch, r8a7779_sysc_pwr_on);
-}
-
static void __init r8a7779_sysc_init(void)
{
- r8a7779_sysc_base = ioremap_nocache(0xffd85000, PAGE_SIZE);
- if (!r8a7779_sysc_base)
- panic("unable to ioremap r8a7779 SYSC hardware block\n");
+ void __iomem *base = rcar_sysc_init(0xffd85000);
/* enable all interrupt sources, but do not use interrupt handler */
- iowrite32(0x0131000e, r8a7779_sysc_base + SYSCIER);
- iowrite32(0, r8a7779_sysc_base + SYSCIMR);
+ iowrite32(0x0131000e, base + SYSCIER);
+ iowrite32(0, base + SYSCIMR);
}
#else /* CONFIG_PM || CONFIG_SMP */
@@ -158,24 +48,17 @@ static inline void r8a7779_sysc_init(voi
static int pd_power_down(struct generic_pm_domain *genpd)
{
- return r8a7779_sysc_power_down(to_r8a7779_ch(genpd));
+ return rcar_sysc_power_down(to_r8a7779_ch(genpd));
}
static int pd_power_up(struct generic_pm_domain *genpd)
{
- return r8a7779_sysc_power_up(to_r8a7779_ch(genpd));
+ return rcar_sysc_power_up(to_r8a7779_ch(genpd));
}
static bool pd_is_off(struct generic_pm_domain *genpd)
{
- struct r8a7779_pm_ch *r8a7779_ch = to_r8a7779_ch(genpd);
- unsigned int st;
-
- st = ioread32(r8a7779_sysc_base + r8a7779_ch->chan_offs + PWRSR_OFFS);
- if (st & (1 << r8a7779_ch->chan_bit))
- return true;
-
- return false;
+ return rcar_sysc_power_is_off(to_r8a7779_ch(genpd));
}
static bool pd_active_wakeup(struct device *dev)
--- /dev/null
+++ work/arch/arm/mach-shmobile/pm-rcar.c 2014-01-15 13:30:38.000000000 +0900
@@ -0,0 +1,142 @@
+/*
+ * R-Car SYSC Power management support
+ *
+ * Copyright (C) 2014 Magnus Damm
+ *
+ * This file is subject to the terms and conditions of the GNU General Public
+ * License. See the file "COPYING" in the main directory of this archive
+ * for more details.
+ */
+
+#include <linux/delay.h>
+#include <linux/err.h>
+#include <linux/mm.h>
+#include <linux/spinlock.h>
+#include <asm/io.h>
+#include <mach/pm-rcar.h>
+
+static void __iomem *rcar_sysc_base;
+
+/* SYSC */
+#define SYSCSR 0x00
+#define SYSCISR 0x04
+#define SYSCISCR 0x08
+
+#define PWRSR_OFFS 0x00
+#define PWROFFCR_OFFS 0x04
+#define PWRONCR_OFFS 0x0c
+#define PWRER_OFFS 0x14
+
+#define SYSCSR_RETRIES 100
+#define SYSCSR_DELAY_US 1
+
+#define SYSCISR_RETRIES 1000
+#define SYSCISR_DELAY_US 1
+
+#if defined(CONFIG_PM) || defined(CONFIG_SMP)
+
+static DEFINE_SPINLOCK(rcar_sysc_lock); /* SMP CPUs + I/O devices */
+
+static int rcar_sysc_pwr_on_off(struct rcar_sysc_ch *sysc_ch,
+ int sr_bit, int reg_offs)
+{
+ int k;
+
+ for (k = 0; k < SYSCSR_RETRIES; k++) {
+ if (ioread32(rcar_sysc_base + SYSCSR) & (1 << sr_bit))
+ break;
+ udelay(SYSCSR_DELAY_US);
+ }
+
+ if (k == SYSCSR_RETRIES)
+ return -EAGAIN;
+
+ iowrite32(1 << sysc_ch->chan_bit,
+ rcar_sysc_base + sysc_ch->chan_offs + reg_offs);
+
+ return 0;
+}
+
+static int rcar_sysc_pwr_off(struct rcar_sysc_ch *sysc_ch)
+{
+ return rcar_sysc_pwr_on_off(sysc_ch, 0, PWROFFCR_OFFS);
+}
+
+static int rcar_sysc_pwr_on(struct rcar_sysc_ch *sysc_ch)
+{
+ return rcar_sysc_pwr_on_off(sysc_ch, 1, PWRONCR_OFFS);
+}
+
+static int rcar_sysc_update(struct rcar_sysc_ch *sysc_ch,
+ int (*on_off_fn)(struct rcar_sysc_ch *))
+{
+ unsigned int isr_mask = 1 << sysc_ch->isr_bit;
+ unsigned int chan_mask = 1 << sysc_ch->chan_bit;
+ unsigned int status;
+ unsigned long flags;
+ int ret = 0;
+ int k;
+
+ spin_lock_irqsave(&rcar_sysc_lock, flags);
+
+ iowrite32(isr_mask, rcar_sysc_base + SYSCISCR);
+
+ do {
+ ret = on_off_fn(sysc_ch);
+ if (ret)
+ goto out;
+
+ status = ioread32(rcar_sysc_base +
+ sysc_ch->chan_offs + PWRER_OFFS);
+ } while (status & chan_mask);
+
+ for (k = 0; k < SYSCISR_RETRIES; k++) {
+ if (ioread32(rcar_sysc_base + SYSCISR) & isr_mask)
+ break;
+ udelay(SYSCISR_DELAY_US);
+ }
+
+ if (k == SYSCISR_RETRIES)
+ ret = -EIO;
+
+ iowrite32(isr_mask, rcar_sysc_base + SYSCISCR);
+
+ out:
+ spin_unlock_irqrestore(&rcar_sysc_lock, flags);
+
+ pr_debug("sysc power domain %d: %08x -> %d\n",
+ sysc_ch->isr_bit, ioread32(rcar_sysc_base + SYSCISR), ret);
+ return ret;
+}
+
+int rcar_sysc_power_down(struct rcar_sysc_ch *sysc_ch)
+{
+ return rcar_sysc_update(sysc_ch, rcar_sysc_pwr_off);
+}
+
+int rcar_sysc_power_up(struct rcar_sysc_ch *sysc_ch)
+{
+ return rcar_sysc_update(sysc_ch, rcar_sysc_pwr_on);
+}
+
+bool rcar_sysc_power_is_off(struct rcar_sysc_ch *sysc_ch)
+{
+ unsigned int st;
+
+ st = ioread32(rcar_sysc_base + sysc_ch->chan_offs + PWRSR_OFFS);
+ if (st & (1 << sysc_ch->chan_bit))
+ return true;
+
+ return false;
+}
+
+void __iomem *rcar_sysc_init(phys_addr_t base)
+{
+ rcar_sysc_base = ioremap_nocache(base, PAGE_SIZE);
+ if (!rcar_sysc_base)
+ panic("unable to ioremap R-Car SYSC hardware block\n");
+
+ return rcar_sysc_base;
+}
+
+#endif /* CONFIG_PM || CONFIG_SMP */
--- 0001/arch/arm/mach-shmobile/smp-r8a7779.c
+++ work/arch/arm/mach-shmobile/smp-r8a7779.c 2014-01-15 15:10:30.000000000 +0900
@@ -24,6 +24,7 @@
#include <linux/io.h>
#include <linux/delay.h>
#include <mach/common.h>
+#include <mach/pm-rcar.h>
#include <mach/r8a7779.h>
#include <asm/cacheflush.h>
#include <asm/smp_plat.h>
@@ -33,25 +34,25 @@
#define AVECR IOMEM(0xfe700040)
#define R8A7779_SCU_BASE 0xf0000000
-static struct r8a7779_pm_ch r8a7779_ch_cpu1 = {
+static struct rcar_sysc_ch r8a7779_ch_cpu1 = {
.chan_offs = 0x40, /* PWRSR0 .. PWRER0 */
.chan_bit = 1, /* ARM1 */
.isr_bit = 1, /* ARM1 */
};
-static struct r8a7779_pm_ch r8a7779_ch_cpu2 = {
+static struct rcar_sysc_ch r8a7779_ch_cpu2 = {
.chan_offs = 0x40, /* PWRSR0 .. PWRER0 */
.chan_bit = 2, /* ARM2 */
.isr_bit = 2, /* ARM2 */
};
-static struct r8a7779_pm_ch r8a7779_ch_cpu3 = {
+static struct rcar_sysc_ch r8a7779_ch_cpu3 = {
.chan_offs = 0x40, /* PWRSR0 .. PWRER0 */
.chan_bit = 3, /* ARM3 */
.isr_bit = 3, /* ARM3 */
};
-static struct r8a7779_pm_ch *r8a7779_ch_cpu[4] = {
+static struct rcar_sysc_ch *r8a7779_ch_cpu[4] = {
[1] = &r8a7779_ch_cpu1,
[2] = &r8a7779_ch_cpu2,
[3] = &r8a7779_ch_cpu3,
@@ -67,7 +68,7 @@ void __init r8a7779_register_twd(void)
static int r8a7779_platform_cpu_kill(unsigned int cpu)
{
- struct r8a7779_pm_ch *ch = NULL;
+ struct rcar_sysc_ch *ch = NULL;
int ret = -EIO;
cpu = cpu_logical_map(cpu);
@@ -76,14 +77,14 @@ static int r8a7779_platform_cpu_kill(uns
ch = r8a7779_ch_cpu[cpu];
if (ch)
- ret = r8a7779_sysc_power_down(ch);
+ ret = rcar_sysc_power_down(ch);
return ret ? ret : 1;
}
static int r8a7779_boot_secondary(unsigned int cpu, struct task_struct *idle)
{
- struct r8a7779_pm_ch *ch = NULL;
+ struct rcar_sysc_ch *ch = NULL;
unsigned int lcpu = cpu_logical_map(cpu);
int ret;
@@ -91,7 +92,7 @@ static int r8a7779_boot_secondary(unsign
ch = r8a7779_ch_cpu[lcpu];
if (ch)
- ret = r8a7779_sysc_power_up(ch);
+ ret = rcar_sysc_power_up(ch);
else
ret = -EIO;
^ permalink raw reply
* [PATCH v3 11/21] ARM: pxa: support ICP DAS LP-8x4x FPGA irq
From: Linus Walleij @ 2014-01-15 7:39 UTC (permalink / raw)
To: linux-arm-kernel
In-Reply-To: <1389207661.10754.42.camel@host5.omatika.ru>
On Wed, Jan 8, 2014 at 8:01 PM, Sergei Ianovich <ynvich@gmail.com> wrote:
> On Thu, 2014-01-02 at 13:32 +0100, Linus Walleij wrote:
>> On Tue, Dec 17, 2013 at 8:37 PM, Sergei Ianovich <ynvich@gmail.com> wrote:
>> Usually combined GPIO+IRQ controllers are put into drivers/gpio but
>> this is a bit special as it seems to handle also non-GPIO-related IRQs
>> so let's get some input on this.
>
> This one is a plain IRQ controller. It has simple input lines, not GPIO
> pins. The chip reports its status to upper level interrupt controller.
> The upper level controller is PXA GPIO in this case.
Hm I don't know why I was deluded into thinking this had something to
do with GPIO. I must have been soft in the head. Sorry about all those
comments ...
I'll re-read the irqchip driver v3.1.
Yours,
Linus Walleij
^ permalink raw reply
* [PATCH 2/2] clk: ux500: Staticize ux500_twocell_get
From: Lee Jones @ 2014-01-15 7:36 UTC (permalink / raw)
To: linux-arm-kernel
In-Reply-To: <1389764606-14102-2-git-send-email-sachin.kamat@linaro.org>
> ux500_twocell_get is a local symbol.
>
> Signed-off-by: Sachin Kamat <sachin.kamat@linaro.org>
> Cc: Lee Jones <lee.jones@linaro.org>
> ---
> drivers/clk/ux500/u8500_of_clk.c | 3 ++-
> 1 file changed, 2 insertions(+), 1 deletion(-)
Acked-by: Lee Jones <lee.jones@linaro.org>
--
Lee Jones
Linaro STMicroelectronics Landing Team Lead
Linaro.org ? Open source software for ARM SoCs
Follow Linaro: Facebook | Twitter | Blog
^ permalink raw reply
* imx6dl/imx6q fec rmii mode with external ref_clk
From: Shawn Guo @ 2014-01-15 7:35 UTC (permalink / raw)
To: linux-arm-kernel
In-Reply-To: <20140114153012.GA22550@frolo.macqel>
On Tue, Jan 14, 2014 at 04:30:12PM +0100, Philippe De Muyter wrote:
> Hi,
>
> On the custom board we are developping (imx6q and imx6dl), we have connected
> the fec to a switch chip using rmii mode, and we let the switch provide the
> reference clock to gpio_16.
>
> I work currently with 3.13-rc8 and
>
> - I do not have ethernet access working (tx timeout)
> - I do not find in the dtb files a description of the pad settings for the
> RMII mode
> - when searching about the setting for bit 21 ing GPR1, which seems to
> be important for my setting to work, I found the following mail:
> http://www.spinics.net/lists/devicetree/msg06450.html
Just for testing your hardware, does the following change make the
Ethernet work for you?
Shawn
diff --git a/arch/arm/mach-imx/mach-imx6q.c
b/arch/arm/mach-imx/mach-imx6q.c
index e51e3da..be8d074 100644
--- a/arch/arm/mach-imx/mach-imx6q.c
+++ b/arch/arm/mach-imx/mach-imx6q.c
@@ -188,7 +188,7 @@ static void __init imx6q_1588_init(void)
if (!IS_ERR(gpr))
regmap_update_bits(gpr, IOMUXC_GPR1,
IMX6Q_GPR1_ENET_CLK_SEL_MASK,
- IMX6Q_GPR1_ENET_CLK_SEL_ANATOP);
+ 0);
else
pr_err("failed to find fsl,imx6q-iomux-gpr regmap\n");
^ permalink raw reply related
* [PATCH] mmc: dw_mmc: fix dw_mci_get_cd
From: zhangfei @ 2014-01-15 7:31 UTC (permalink / raw)
To: linux-arm-kernel
In-Reply-To: <1389770159-21125-1-git-send-email-zhangfei.gao@linaro.org>
Hi Kevin
Would you mind check whehter this patch solve the issue of "The Samsung
Arndale board started failing boot from MMC".
I am sorry about that.
On 01/15/2014 03:15 PM, Zhangfei Gao wrote:
> Introdeced from commit b7db86adfa58b
commit should be bf626e5550f24aec24975a0e85ad8e572ca76a6b, from mmc-next
> CDETECT is ingored since IS_ERR_VALUE(!mmc_gpio_get_cd(mmc)) does not work
> Add spin_lock_bh(&host->lock) for atomic accessing DW_MMC_CARD_PRESENT
>
> Signed-off-by: Zhangfei Gao <zhangfei.gao@linaro.org>
> Reported-by: Kevin Hilman <khilman@linaro.org>
> ---
> drivers/mmc/host/dw_mmc.c | 9 ++++++---
> 1 file changed, 6 insertions(+), 3 deletions(-)
^ permalink raw reply
* [PATCH 1/1] mmc: sdhci: fix lockdep error on tunning routine
From: Dong Aisheng @ 2014-01-15 7:19 UTC (permalink / raw)
To: linux-arm-kernel
In-Reply-To: <20140113120435.GQ31570@twins.programming.kicks-ass.net>
On Mon, Jan 13, 2014 at 8:04 PM, Peter Zijlstra <peterz@infradead.org> wrote:
> On Thu, Dec 26, 2013 at 03:58:20PM +0800, Dong Aisheng wrote:
>> > It's strange that this issue did not happen on kernel 3.10.17 with the same
>> > code. And looking at the code, before call spin_lock we already disable the mmc
>> > controller irq, per on my understanding, the deadlock given by lockdep may not
>> > be able to happen(pls fix me if wrong).
>> > May the lockdep not track the specific irq disable?
>> > Copy lockdep guy to comment.
>
> No, lockdep also doesn't know only that one line can take this lock.
> Lockdep only knows a lock is taken from IRQ context, and disabling one
> line still allows IRQs to happen and therefore it yells.
Okay, thanks for the information.
If that, kernel 3.10.17 has the same code, do you know why it does not trigger
such lockdep error?
Regards
Dong Aisheng
^ permalink raw reply
* [PATCH] mmc: dw_mmc: fix dw_mci_get_cd
From: Zhangfei Gao @ 2014-01-15 7:15 UTC (permalink / raw)
To: linux-arm-kernel
In-Reply-To: <CAGa+x85awFYsrU9Gggirpaip3vggtSqu5GinVzss=nfNcp4nww@mail.gmail.com>
Introdeced from commit b7db86adfa58b
CDETECT is ingored since IS_ERR_VALUE(!mmc_gpio_get_cd(mmc)) does not work
Add spin_lock_bh(&host->lock) for atomic accessing DW_MMC_CARD_PRESENT
Signed-off-by: Zhangfei Gao <zhangfei.gao@linaro.org>
Reported-by: Kevin Hilman <khilman@linaro.org>
---
drivers/mmc/host/dw_mmc.c | 9 ++++++---
1 file changed, 6 insertions(+), 3 deletions(-)
diff --git a/drivers/mmc/host/dw_mmc.c b/drivers/mmc/host/dw_mmc.c
index a776f24f4311..9ded62c8225e 100644
--- a/drivers/mmc/host/dw_mmc.c
+++ b/drivers/mmc/host/dw_mmc.c
@@ -1033,7 +1033,8 @@ static int dw_mci_get_cd(struct mmc_host *mmc)
int present;
struct dw_mci_slot *slot = mmc_priv(mmc);
struct dw_mci_board *brd = slot->host->pdata;
- int gpio_cd = !mmc_gpio_get_cd(mmc);
+ struct dw_mci *host = slot->host;
+ int gpio_cd = mmc_gpio_get_cd(mmc);
/* Use platform get_cd function, else try onboard card detect */
if (brd->quirks & DW_MCI_QUIRK_BROKEN_CARD_DETECTION)
@@ -1041,11 +1042,12 @@ static int dw_mci_get_cd(struct mmc_host *mmc)
else if (brd->get_cd)
present = !brd->get_cd(slot->id);
else if (!IS_ERR_VALUE(gpio_cd))
- present = !!gpio_cd;
+ present = !gpio_cd;
else
present = (mci_readl(slot->host, CDETECT) & (1 << slot->id))
== 0 ? 1 : 0;
+ spin_lock_bh(&host->lock);
if (present) {
set_bit(DW_MMC_CARD_PRESENT, &slot->flags);
dev_dbg(&mmc->class_dev, "card is present\n");
@@ -1053,6 +1055,7 @@ static int dw_mci_get_cd(struct mmc_host *mmc)
clear_bit(DW_MMC_CARD_PRESENT, &slot->flags);
dev_dbg(&mmc->class_dev, "card is not present\n");
}
+ spin_unlock_bh(&host->lock);
return present;
}
@@ -2081,7 +2084,7 @@ static int dw_mci_of_get_wp_gpio(struct device *dev, u8 slot)
return gpio;
}
-/* find the cd gpio for a given slot; or -1 if none specified */
+/* find the cd gpio for a given slot */
static void dw_mci_of_get_cd_gpio(struct device *dev, u8 slot,
struct mmc_host *mmc)
{
--
1.7.9.5
^ permalink raw reply related
* [PATCH v9 4/4] arm64: Add APM X-Gene SoC SATA host controller DTS entries
From: Loc Ho @ 2014-01-15 7:11 UTC (permalink / raw)
To: linux-arm-kernel
In-Reply-To: <1389769910-15505-4-git-send-email-lho@apm.com>
Signed-off-by: Loc Ho <lho@apm.com>
Signed-off-by: Tuan Phan <tphan@apm.com>
Signed-off-by: Suman Tripathi <stripathi@apm.com>
---
arch/arm64/boot/dts/apm-storm.dtsi | 75 ++++++++++++++++++++++++++++++++++++
1 files changed, 75 insertions(+), 0 deletions(-)
diff --git a/arch/arm64/boot/dts/apm-storm.dtsi b/arch/arm64/boot/dts/apm-storm.dtsi
index a1f475d..34900d2 100644
--- a/arch/arm64/boot/dts/apm-storm.dtsi
+++ b/arch/arm64/boot/dts/apm-storm.dtsi
@@ -221,6 +221,48 @@
enable-offset = <0x0>;
enable-mask = <0x06>;
};
+
+ sata01clk: sata01clk at 1f21c000 {
+ compatible = "apm,xgene-device-clock";
+ #clock-cells = <1>;
+ clocks = <&socplldiv2 0>;
+ clock-names = "socplldiv2";
+ reg = <0x0 0x1f21c000 0x0 0x1000>;
+ reg-names = "csr-reg";
+ clock-output-names = "sata01clk";
+ csr-offset = <0x4>;
+ csr-mask = <0x05>;
+ enable-offset = <0x0>;
+ enable-mask = <0x39>;
+ };
+
+ sata23clk: sata23clk at 1f22c000 {
+ compatible = "apm,xgene-device-clock";
+ #clock-cells = <1>;
+ clocks = <&socplldiv2 0>;
+ clock-names = "socplldiv2";
+ reg = <0x0 0x1f22c000 0x0 0x1000>;
+ reg-names = "csr-reg";
+ clock-output-names = "sata23clk";
+ csr-offset = <0x4>;
+ csr-mask = <0x05>;
+ enable-offset = <0x0>;
+ enable-mask = <0x39>;
+ };
+
+ sata45clk: sata45clk at 1f23c000 {
+ compatible = "apm,xgene-device-clock";
+ #clock-cells = <1>;
+ clocks = <&socplldiv2 0>;
+ clock-names = "socplldiv2";
+ reg = <0x0 0x1f23c000 0x0 0x1000>;
+ reg-names = "csr-reg";
+ clock-output-names = "sata45clk";
+ csr-offset = <0x4>;
+ csr-mask = <0x05>;
+ enable-offset = <0x0>;
+ enable-mask = <0x39>;
+ };
};
serial0: serial at 1c020000 {
@@ -269,5 +311,38 @@
apm,tx-boost-gain = <31 31 31 31 31 31>;
apm,tx-eye-tuning = <2 10 10 2 10 10>;
};
+
+ sata1: sata at 1a000000 {
+ compatible = "apm,xgene-ahci-sgmii";
+ reg = <0x0 0x1a000000 0x0 0x1000>,
+ <0x0 0x1f210000 0x0 0x10000>;
+ interrupts = <0x0 0x86 0x4>;
+ status = "disabled";
+ clocks = <&sata01clk 0>;
+ phys = <&phy1 0>;
+ phy-names = "sata-6g";
+ };
+
+ sata2: sata at 1a400000 {
+ compatible = "apm,xgene-ahci-sgmii";
+ reg = <0x0 0x1a400000 0x0 0x1000>,
+ <0x0 0x1f220000 0x0 0x10000>;
+ interrupts = <0x0 0x87 0x4>;
+ status = "ok";
+ clocks = <&sata23clk 0>;
+ phys = <&phy2 0>;
+ phy-names = "sata-6g";
+ };
+
+ sata3: sata at 1a800000 {
+ compatible = "apm,xgene-ahci-pcie";
+ reg = <0x0 0x1a800000 0x0 0x1000>,
+ <0x0 0x1f230000 0x0 0x10000>;
+ interrupts = <0x0 0x88 0x4>;
+ status = "ok";
+ clocks = <&sata45clk 0>;
+ phys = <&phy3 0>;
+ phy-names = "sata-6g";
+ };
};
};
--
1.5.5
^ permalink raw reply related
* [PATCH v9 3/4] ata: Add APM X-Gene SoC SATA host controller driver
From: Loc Ho @ 2014-01-15 7:11 UTC (permalink / raw)
To: linux-arm-kernel
In-Reply-To: <1389769910-15505-3-git-send-email-lho@apm.com>
This patch adds support for the APM X-Gene SoC SATA host controller driver.
It requires the corresponding APM X-Gene SoC PHY driver.
Signed-off-by: Loc Ho <lho@apm.com>
Signed-off-by: Tuan Phan <tphan@apm.com>
Signed-off-by: Suman Tripathi <stripathi@apm.com>
---
drivers/ata/Kconfig | 8 +
drivers/ata/Makefile | 1 +
drivers/ata/sata_xgene.c | 630 ++++++++++++++++++++++++++++++++++++++++++++++
3 files changed, 639 insertions(+), 0 deletions(-)
create mode 100644 drivers/ata/sata_xgene.c
diff --git a/drivers/ata/Kconfig b/drivers/ata/Kconfig
index 4e73772..cd1bc3c 100644
--- a/drivers/ata/Kconfig
+++ b/drivers/ata/Kconfig
@@ -106,6 +106,14 @@ config AHCI_IMX
If unsure, say N.
+config SATA_XGENE
+ tristate "APM X-Gene 6.0Gbps SATA host controller support"
+ depends on ARM64 || COMPILE_TEST
+ select SATA_AHCI_PLATFORM
+ select PHY_XGENE
+ help
+ This option enables support for APM X-Gene SoC SATA host controller.
+
config SATA_FSL
tristate "Freescale 3.0Gbps SATA support"
depends on FSL_SOC
diff --git a/drivers/ata/Makefile b/drivers/ata/Makefile
index 46518c6..1c0fabe 100644
--- a/drivers/ata/Makefile
+++ b/drivers/ata/Makefile
@@ -11,6 +11,7 @@ obj-$(CONFIG_SATA_SIL24) += sata_sil24.o
obj-$(CONFIG_SATA_DWC) += sata_dwc_460ex.o
obj-$(CONFIG_SATA_HIGHBANK) += sata_highbank.o libahci.o
obj-$(CONFIG_AHCI_IMX) += ahci_imx.o
+obj-$(CONFIG_SATA_XGENE) += sata_xgene.o
# SFF w/ custom DMA
obj-$(CONFIG_PDC_ADMA) += pdc_adma.o
diff --git a/drivers/ata/sata_xgene.c b/drivers/ata/sata_xgene.c
new file mode 100644
index 0000000..2e9da35
--- /dev/null
+++ b/drivers/ata/sata_xgene.c
@@ -0,0 +1,630 @@
+/*
+ * AppliedMicro X-Gene SoC SATA Host Controller Driver
+ *
+ * Copyright (c) 2014, Applied Micro Circuits Corporation
+ * Author: Loc Ho <lho@apm.com>
+ * Tuan Phan <tphan@apm.com>
+ * Suman Tripathi <stripathi@apm.com>
+ *
+ * This program is free software; you can redistribute it and/or modify it
+ * under the terms of the GNU General Public License as published by the
+ * Free Software Foundation; either version 2 of the License, or (at your
+ * option) any later version.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program. If not, see <http://www.gnu.org/licenses/>.
+ *
+ */
+#include <linux/module.h>
+#include <linux/platform_device.h>
+#include <linux/of_address.h>
+#include <linux/of_irq.h>
+#include <linux/phy/phy.h>
+#include "ahci.h"
+
+/* Controller who PHY shared with SGMII Ethernet PHY */
+#define XGENE_AHCI_SGMII_DTS "apm,xgene-ahci-sgmii"
+
+/* Controller who PHY (internal reference clock macro) shared with PCIe */
+#define XGENE_AHCI_PCIE_DTS "apm,xgene-ahci-pcie"
+
+/* Max # of disk per a controller */
+#define MAX_AHCI_CHN_PERCTR 2
+
+#define SATA_ENET_MUX_OFFSET 0x00007000
+#define SATA_DIAG_OFFSET 0x0000D000
+#define SATA_GLB_OFFSET 0x0000D850
+#define SATA_SHIM_OFFSET 0x0000E000
+#define SATA_MASTER_OFFSET 0x0000F000
+#define SATA_PORT0_OFFSET 0x00000100
+#define SATA_PORT1_OFFSET 0x00000180
+
+/* MUX CSR */
+#define SATA_ENET_CONFIG_REG 0x00000000
+#define CFG_SATA_ENET_SELECT_MASK 0x00000001
+
+/* SATA host controller CSR */
+#define SLVRDERRATTRIBUTES 0x00000000
+#define SLVWRERRATTRIBUTES 0x00000004
+#define MSTRDERRATTRIBUTES 0x00000008
+#define MSTWRERRATTRIBUTES 0x0000000c
+#define BUSCTLREG 0x00000014
+#define IOFMSTRWAUX 0x00000018
+#define INTSTATUSMASK 0x0000002c
+#define ERRINTSTATUS 0x00000030
+#define ERRINTSTATUSMASK 0x00000034
+
+/* SATA host AHCI CSR */
+#define PORTCFG 0x000000a4
+#define PORTADDR_SET(dst, src) \
+ (((dst) & ~0x0000003f) | (((u32)(src)) & 0x0000003f))
+#define PORTPHY1CFG 0x000000a8
+#define PORTPHY1CFG_FRCPHYRDY_SET(dst, src) \
+ (((dst) & ~0x00100000) | (((u32)(src) << 0x14) & 0x00100000))
+#define PORTPHY2CFG 0x000000ac
+#define PORTPHY3CFG 0x000000b0
+#define PORTPHY4CFG 0x000000b4
+#define PORTPHY5CFG 0x000000b8
+#define SCTL0 0x0000012C
+#define PORTPHY5CFG_RTCHG_SET(dst, src) \
+ (((dst) & ~0xfff00000) | (((u32)(src) << 0x14) & 0xfff00000))
+#define PORTAXICFG_EN_CONTEXT_SET(dst, src) \
+ (((dst) & ~0x01000000) | (((u32)(src) << 0x18) & 0x01000000))
+#define PORTAXICFG 0x000000bc
+#define PORTAXICFG_OUTTRANS_SET(dst, src) \
+ (((dst) & ~0x00f00000) | (((u32)(src) << 0x14) & 0x00f00000))
+
+/* SATA host controller slave CSR */
+#define INT_SLV_TMOMASK 0x00000010
+
+/* SATA global diagnostic CSR */
+#define CFG_MEM_RAM_SHUTDOWN 0x00000070
+#define BLOCK_MEM_RDY 0x00000074
+
+struct xgene_ahci_context {
+ struct ahci_host_priv hpriv;
+ struct device *dev;
+ int irq;
+ void __iomem *csr_base; /* CSR base address of IP */
+ void __iomem *mmio_base; /* AHCI I/O base address */
+
+ struct phy *phy;
+};
+
+static int xgene_ahci_get_channel(struct ata_host *host, struct ata_port *port)
+{
+ int i;
+ for (i = 0; i < host->n_ports; i++)
+ if (host->ports[i] == port)
+ return i;
+ return -1;
+}
+
+static int xgene_ahci_init_memram(struct xgene_ahci_context *ctx)
+{
+ void __iomem *diagcsr = ctx->csr_base + SATA_DIAG_OFFSET;
+ int try;
+ u32 val;
+
+ val = readl(diagcsr + CFG_MEM_RAM_SHUTDOWN);
+ if (val == 0) {
+ dev_dbg(ctx->dev, "memory already released from shutdown\n");
+ return 0;
+ }
+ dev_dbg(ctx->dev, "Release memory from shutdown\n");
+ /* SATA controller memory in shutdown. Remove from shutdown. */
+ writel(0x0, diagcsr + CFG_MEM_RAM_SHUTDOWN);
+ readl(diagcsr + CFG_MEM_RAM_SHUTDOWN); /* Force a barrier */
+
+ /* Check for at least ~1ms */
+ try = 1000;
+ do {
+ val = readl(diagcsr + BLOCK_MEM_RDY);
+ if (val != 0xFFFFFFFF)
+ usleep_range(1, 100);
+ } while (val != 0xFFFFFFFF && try-- > 0);
+ if (try <= 0) {
+ dev_err(ctx->dev, "failed to release memory from shutdown\n");
+ return -ENODEV;
+ }
+ return 0;
+}
+
+/*
+ * Custom Query ID command
+ *
+ * Due to HW errata, we must stop and re-start the port state machine after
+ * read ID command.
+ */
+static unsigned int xgene_ahci_read_id(struct ata_device *dev,
+ struct ata_taskfile *tf, u16 *id)
+{
+ u32 err_mask;
+ void __iomem *port_mmio = ahci_port_base(dev->link->ap);
+
+ err_mask = ata_do_dev_read_id(dev, tf, id);
+ if (err_mask)
+ return err_mask;
+
+ /* Mask reserved area. Bit78 spec of Link Power Management
+ * bit15-8: reserved
+ * bit7: NCQ autosence
+ * bit6: Software settings preservation supported
+ * bit5: reserved
+ * bit4: In-order sata delivery supported
+ * bit3: DIPM requests supported
+ * bit2: DMA Setup FIS Auto-Activate optimization supported
+ * bit1: DMA Setup FIX non-Zero buffer offsets supported
+ * bit0: Reserved
+ *
+ * Clear reserved bit (DEVSLP bit) as we don't support DEVSLP
+ */
+ id[78] &= 0x00FF;
+
+ /* Restart the port if requred due to HW errata */
+ if (!readl(port_mmio + PORT_CMD_ISSUE)) {
+ writel(PORT_CMD_FIS_RX, port_mmio + PORT_CMD);
+ readl(port_mmio + PORT_CMD); /* Force a barrier */
+ writel(PORT_CMD_FIS_RX | PORT_CMD_START, port_mmio + PORT_CMD);
+ readl(port_mmio + PORT_CMD); /* Force a barrier */
+ }
+ return 0;
+}
+
+static void xgene_ahci_force_phy_rdy(struct xgene_ahci_context *ctx,
+ int channel, int force)
+{
+ void __iomem *mmio = ctx->mmio_base;
+ u32 val;
+
+ val = readl(mmio + PORTCFG);
+ val = PORTADDR_SET(val, channel == 0 ? 2 : 3);
+ writel(val, mmio + PORTCFG);
+ readl(mmio + PORTCFG); /* Force a barrier */
+ val = readl(mmio + PORTPHY1CFG);
+ val = PORTPHY1CFG_FRCPHYRDY_SET(val, force);
+ writel(val, mmio + PORTPHY1CFG);
+}
+
+static void xgene_ahci_set_phy_cfg(struct xgene_ahci_context *ctx, int channel)
+{
+ void __iomem *mmio = ctx->mmio_base;
+ u32 val;
+
+ dev_dbg(ctx->dev, "port configure mmio 0x%p channel %d\n",
+ mmio, channel);
+ val = readl(mmio + PORTCFG);
+ val = PORTADDR_SET(val, channel == 0 ? 2 : 3);
+ writel(val, mmio + PORTCFG);
+ readl(mmio + PORTCFG); /* Force a barrier */
+ /* Disable fix rate */
+ writel(0x0001fffe, mmio + PORTPHY1CFG);
+ readl(mmio + PORTPHY1CFG); /* Force a barrier */
+ writel(0x5018461c, mmio + PORTPHY2CFG);
+ readl(mmio + PORTPHY2CFG); /* Force a barrier */
+ writel(0x1c081907, mmio + PORTPHY3CFG);
+ readl(mmio + PORTPHY3CFG); /* Force a barrier */
+ writel(0x1c080815, mmio + PORTPHY4CFG);
+ readl(mmio + PORTPHY4CFG); /* Force a barrier */
+ /* Set window negotiation */
+ val = readl(mmio + PORTPHY5CFG);
+ val = PORTPHY5CFG_RTCHG_SET(val, 0x300);
+ writel(val, mmio + PORTPHY5CFG);
+ readl(mmio + PORTPHY5CFG); /* Force a barrier */
+ val = readl(mmio + PORTAXICFG);
+ val = PORTAXICFG_EN_CONTEXT_SET(val, 0x1); /* Enable context mgmt */
+ val = PORTAXICFG_OUTTRANS_SET(val, 0xe); /* Set outstanding */
+ writel(val, mmio + PORTAXICFG);
+ readl(mmio + PORTAXICFG); /* Force a barrier */
+}
+
+static int xgene_ahci_phy_restart(struct ata_link *link)
+{
+ struct ata_port *port = link->ap;
+ struct ata_host *host = port->host;
+ struct xgene_ahci_context *ctx = host->private_data;
+ int channel;
+
+ channel = xgene_ahci_get_channel(host, port);
+ if (channel < 0 || channel >= MAX_AHCI_CHN_PERCTR)
+ return -EINVAL;
+ xgene_ahci_force_phy_rdy(ctx, channel, 1);
+ xgene_ahci_force_phy_rdy(ctx, channel, 0);
+ return 0;
+}
+
+static int xgene_ahci_do_hardreset(struct ata_link *link,
+ unsigned long deadline, bool *online)
+{
+ const unsigned long *timing = sata_ehc_deb_timing(&link->eh_context);
+ struct ata_port *ap = link->ap;
+ struct xgene_ahci_context *ctx = ap->host->private_data;
+ struct ahci_port_priv *pp = ap->private_data;
+ u8 *d2h_fis = pp->rx_fis + RX_FIS_D2H_REG;
+ void __iomem *port_mmio = ahci_port_base(ap);
+ struct ata_taskfile tf;
+ int first_time = 1;
+ int rc;
+ u32 val;
+ int chan;
+ int i;
+
+ chan = xgene_ahci_get_channel(ap->host, ap);
+
+hardreset_retry:
+ /* clear D2H reception area to properly wait for D2H FIS */
+ ata_tf_init(link->device, &tf);
+ tf.command = 0x80;
+ ata_tf_to_fis(&tf, 0, 0, d2h_fis);
+ rc = sata_link_hardreset(link, timing, deadline, online,
+ ahci_check_ready);
+
+ if (*online) {
+ /* Check to ensure that the disk comes up in matching speed */
+ if (first_time) {
+ u32 gen_speed;
+
+ first_time = 0;
+ sata_scr_read(link, SCR_STATUS, &gen_speed);
+ gen_speed = (gen_speed >> 4) & 0xf;
+ if (gen_speed == 1 || gen_speed == 2) {
+ /* For Gen2/1 and first time, let's check again
+ * with Gen2/1 PHY to ensure actual Gen2/1 disk.
+ */
+ phy_set_speed(ctx->phy, chan,
+ gen_speed == 2 ? 3000000000ULL :
+ 1500000000ULL);
+ xgene_ahci_phy_restart(link);
+ goto hardreset_retry;
+ }
+ }
+
+ /* Clear SER_DISPARITY/SER_10B_8B_ERR if set due to errata */
+ for (i = 0; i < 5; i++) {
+ /* Check if error bit set */
+ val = readl(port_mmio + PORT_SCR_ERR);
+ if (!(val & (SERR_DISPARITY | SERR_10B_8B_ERR)))
+ break;
+ /* Clear any error due to errata */
+ xgene_ahci_force_phy_rdy(ctx, chan, 1);
+ /* Reset the PHY Rx path */
+ phy_set_speed(ctx->phy, chan, 0);
+ xgene_ahci_force_phy_rdy(ctx, chan, 0);
+ /* Clear all errors */
+ val = readl(port_mmio + PORT_SCR_ERR);
+ writel(val, port_mmio + PORT_SCR_ERR);
+ }
+ }
+
+ /* clear all errors if any pending */
+ val = readl(port_mmio + PORT_SCR_ERR);
+ writel(val, port_mmio + PORT_SCR_ERR);
+
+ return rc;
+}
+
+static int xgene_ahci_hardreset(struct ata_link *link, unsigned int *class,
+ unsigned long deadline)
+{
+ struct ata_port *ap = link->ap;
+ void __iomem *port_mmio = ahci_port_base(ap);
+ bool online;
+ int rc;
+ int portcmd_saved;
+ u32 portclb_saved;
+ u32 portclbhi_saved;
+ u32 portrxfis_saved;
+ u32 portrxfishi_saved;
+
+ /* As hardreset reset these CSR, let save it to restore later */
+ portcmd_saved = readl(port_mmio + PORT_CMD);
+ portclb_saved = readl(port_mmio + PORT_LST_ADDR);
+ portclbhi_saved = readl(port_mmio + PORT_LST_ADDR_HI);
+ portrxfis_saved = readl(port_mmio + PORT_FIS_ADDR);
+ portrxfishi_saved = readl(port_mmio + PORT_FIS_ADDR_HI);
+
+ ahci_stop_engine(ap);
+
+ rc = xgene_ahci_do_hardreset(link, deadline, &online);
+
+ /* As controller hardreset clear them, let restore them */
+ writel(portcmd_saved, port_mmio + PORT_CMD);
+ writel(portclb_saved, port_mmio + PORT_LST_ADDR);
+ writel(portclbhi_saved, port_mmio + PORT_LST_ADDR_HI);
+ writel(portrxfis_saved, port_mmio + PORT_FIS_ADDR);
+ writel(portrxfishi_saved, port_mmio + PORT_FIS_ADDR_HI);
+
+ ahci_start_engine(ap);
+
+ if (online)
+ *class = ahci_dev_classify(ap);
+
+ return rc;
+}
+
+static struct ata_port_operations xgene_ahci_ops = {
+ .inherits = &ahci_ops,
+ .hardreset = xgene_ahci_hardreset,
+ .read_id = xgene_ahci_read_id,
+};
+
+static const struct ata_port_info xgene_ahci_port_info[] = {
+ {
+ .flags = AHCI_FLAG_COMMON,
+ .pio_mask = ATA_PIO4,
+ .udma_mask = ATA_UDMA6,
+ .port_ops = &xgene_ahci_ops,
+ },
+};
+
+static struct scsi_host_template xgene_ahci_sht = {
+ AHCI_SHT("XGene-ahci"),
+};
+
+static int xgene_ahci_hw_init(struct xgene_ahci_context *hpriv)
+{
+ int i;
+ int rc;
+ u32 val;
+
+ /* Remove IP RAM out of shutdown */
+ rc = xgene_ahci_init_memram(hpriv);
+ if (rc)
+ return rc;
+
+ for (i = 0; i < MAX_AHCI_CHN_PERCTR; i++)
+ xgene_ahci_set_phy_cfg(hpriv, i);
+
+ /* AXI disable Mask */
+ writel(0xffffffff, hpriv->mmio_base + HOST_IRQ_STAT);
+ readl(hpriv->mmio_base + HOST_IRQ_STAT); /* Force a barrier */
+ writel(0, hpriv->csr_base + INTSTATUSMASK);
+ readl(hpriv->csr_base + INTSTATUSMASK); /* Force a barrier */
+ dev_dbg(hpriv->dev, "top level interrupt mask 0x%X value 0x%08X\n",
+ INTSTATUSMASK, val);
+
+ writel(0x0, hpriv->csr_base + ERRINTSTATUSMASK);
+ readl(hpriv->csr_base + ERRINTSTATUSMASK); /* Force a barrier */
+ writel(0x0, hpriv->csr_base + SATA_SHIM_OFFSET + INT_SLV_TMOMASK);
+ readl(hpriv->csr_base + SATA_SHIM_OFFSET + INT_SLV_TMOMASK);
+
+ /* Enable AXI Interrupt */
+ writel(0xffffffff, hpriv->csr_base + SLVRDERRATTRIBUTES);
+ writel(0xffffffff, hpriv->csr_base + SLVWRERRATTRIBUTES);
+ writel(0xffffffff, hpriv->csr_base + MSTRDERRATTRIBUTES);
+ writel(0xffffffff, hpriv->csr_base + MSTWRERRATTRIBUTES);
+
+ /* Enable coherency */
+ val = readl(hpriv->csr_base + BUSCTLREG);
+ val &= ~0x00000002; /* Enable write coherency */
+ val &= ~0x00000001; /* Enable read coherency */
+ writel(val, hpriv->csr_base + BUSCTLREG);
+
+ val = readl(hpriv->csr_base + IOFMSTRWAUX);
+ val |= (1 << 3); /* Enable read coherency */
+ val |= (1 << 9); /* Enable write coherency */
+ writel(val, hpriv->csr_base + IOFMSTRWAUX);
+ val = readl(hpriv->csr_base + IOFMSTRWAUX);
+ dev_dbg(hpriv->dev, "coherency 0x%X value 0x%08X\n",
+ IOFMSTRWAUX, val);
+
+ return rc;
+}
+
+static int xgene_ahci_mux_select(struct xgene_ahci_context *ctx)
+{
+ void *mux_csr = ctx->csr_base + SATA_ENET_MUX_OFFSET;
+ u32 val;
+
+ dev_dbg(ctx->dev, "switch the MUX to SATA\n");
+ val = readl(mux_csr + SATA_ENET_CONFIG_REG);
+ val &= ~CFG_SATA_ENET_SELECT_MASK;
+ writel(val, mux_csr + SATA_ENET_CONFIG_REG);
+ val = readl(mux_csr + SATA_ENET_CONFIG_REG);
+ return val & CFG_SATA_ENET_SELECT_MASK ? -1 : 0;
+}
+
+static int xgene_ahci_probe(struct platform_device *pdev)
+{
+ struct device *dev = &pdev->dev;
+ struct xgene_ahci_context *hpriv;
+ struct ata_port_info pi = xgene_ahci_port_info[0];
+ const struct ata_port_info *ppi[] = { &pi, NULL };
+ struct ata_host *host;
+ struct resource *res;
+ int n_ports;
+ int rc = 0;
+ int i;
+
+ hpriv = devm_kzalloc(dev, sizeof(*hpriv), GFP_KERNEL);
+ if (!hpriv) {
+ dev_err(dev, "can't allocate host context\n");
+ return -ENOMEM;
+ }
+
+ hpriv->dev = dev;
+
+ res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
+ if (!res) {
+ dev_err(dev, "no MMIO space\n");
+ return -EINVAL;
+ }
+
+ hpriv->mmio_base = devm_ioremap_resource(dev, res);
+ if (!hpriv->mmio_base) {
+ dev_err(dev, "can't map %pR\n", res);
+ return -ENOMEM;
+ }
+
+ hpriv->hpriv.mmio = hpriv->mmio_base;
+
+ res = platform_get_resource(pdev, IORESOURCE_MEM, 1);
+ if (!res) {
+ dev_err(dev, "no csr space\n");
+ return -EINVAL;
+ }
+
+ /*
+ * Can't use devm_ioremap_resource due to overlapping region.
+ * 0xYYYY.0000 - host core
+ * 0xYYYY.7000 - Mux (if applicable)
+ * 0xYYYY.A000 - PHY indirect access
+ * 0xYYYY.C000 - Clock
+ * 0xYYYY.D000 - RAM shutdown removal
+ * As we map the entire region as one, it overlaps with the PHY driver.
+ */
+ hpriv->csr_base = devm_ioremap(dev, res->start, resource_size(res));
+ if (!hpriv->csr_base) {
+ dev_err(dev, "can't map %pR\n", res);
+ return -ENOMEM;
+ }
+
+ dev_dbg(dev, "VAddr 0x%p Mmio VAddr 0x%p\n",
+ hpriv->csr_base, hpriv->mmio_base);
+
+ hpriv->irq = platform_get_irq(pdev, 0);
+ if (hpriv->irq <= 0) {
+ dev_err(dev, "no IRQ\n");
+ return -EINVAL;
+ }
+
+ /* Select ATA */
+ if (of_device_is_compatible(pdev->dev.of_node,
+ XGENE_AHCI_SGMII_DTS)) {
+ if (xgene_ahci_mux_select(hpriv)) {
+ dev_err(dev, "SATA mux selection failed\n");
+ return -ENODEV;
+ }
+ }
+
+ hpriv->hpriv.clk = clk_get(dev, NULL);
+ if (IS_ERR(hpriv->hpriv.clk)) {
+ dev_err(dev, "no clock\n");
+ } else {
+ /* HW requires toggle of the clock */
+ clk_prepare_enable(hpriv->hpriv.clk);
+ clk_disable_unprepare(hpriv->hpriv.clk);
+ rc = clk_prepare_enable(hpriv->hpriv.clk);
+ if (rc) {
+ dev_err(dev, "clock prepare enable failed\n");
+ goto error;
+ }
+ }
+
+ /* Configure the PHY */
+ hpriv->phy = devm_phy_get(dev, "sata-6g");
+ if (!hpriv->phy) {
+ dev_err(dev, "no PHY available\n");
+ rc = -ENODEV;
+ goto error;
+ }
+
+ rc = phy_init(hpriv->phy);
+ if (rc) {
+ dev_err(dev, "PHY initialize failed %d\n", rc);
+ goto error;
+ }
+
+ /* Configure the host controller */
+ xgene_ahci_hw_init(hpriv);
+
+ /* Setup AHCI host priv structure */
+ ahci_save_initial_config(dev, &hpriv->hpriv, 0, 0);
+
+ /* prepare host */
+ if (hpriv->hpriv.cap & HOST_CAP_NCQ)
+ pi.flags |= ATA_FLAG_NCQ;
+
+ ahci_set_em_messages(&hpriv->hpriv, &pi);
+
+ /*
+ * CAP.NP sometimes indicate the index of the last enabled
+ * port, at other times, that of the last possible port, so
+ * determining the maximum port number requires looking at
+ * both CAP.NP and port_map.
+ */
+ n_ports = max(ahci_nr_ports(hpriv->hpriv.cap),
+ fls(hpriv->hpriv.port_map));
+
+ host = ata_host_alloc_pinfo(dev, ppi, n_ports);
+ if (!host) {
+ rc = -ENOMEM;
+ goto error;
+ }
+
+ host->private_data = hpriv;
+
+ if (!(hpriv->hpriv.cap & HOST_CAP_SSS) || ahci_ignore_sss)
+ host->flags |= ATA_HOST_PARALLEL_SCAN;
+ else
+ dev_warn(dev, "ahci: SSS flag set, parallel bus scan disabled\n");
+
+ if (pi.flags & ATA_FLAG_EM)
+ ahci_reset_em(host);
+
+ for (i = 0; i < host->n_ports; i++) {
+ struct ata_port *ap = host->ports[i];
+
+ ata_port_desc(ap, "port 0x%x", 0x100 + ap->port_no * 0x80);
+
+ /* set enclosure management message type */
+ if (ap->flags & ATA_FLAG_EM)
+ ap->em_message_type = hpriv->hpriv.em_msg_type;
+
+ /* disabled/not-implemented port */
+ if (!(hpriv->hpriv.port_map & (1 << i)))
+ ap->ops = &ata_dummy_port_ops;
+ }
+
+ rc = ahci_reset_controller(host);
+ if (rc)
+ goto error;
+
+ ahci_init_controller(host);
+
+ /* Setup DMA mask */
+ rc = dma_set_mask_and_coherent(dev, DMA_BIT_MASK(64));
+ if (rc) {
+ dev_err(dev, "Unable to set dma mask\n");
+ goto error;
+ }
+
+ rc = ata_host_activate(host, hpriv->irq, ahci_interrupt,
+ IRQF_SHARED, &xgene_ahci_sht);
+ if (rc)
+ goto error;
+
+ dev_dbg(dev, "X-Gene SATA host controller initialized\n");
+ return 0;
+
+error:
+ return rc;
+}
+
+static const struct of_device_id xgene_ahci_of_match[] = {
+ {.compatible = XGENE_AHCI_SGMII_DTS,},
+ {.compatible = XGENE_AHCI_PCIE_DTS,},
+ {},
+};
+MODULE_DEVICE_TABLE(of, xgene_ahci_of_match);
+
+static struct platform_driver xgene_ahci_driver = {
+ .driver = {
+ .name = "xgene-ahci",
+ .owner = THIS_MODULE,
+ .of_match_table = xgene_ahci_of_match,
+ },
+ .probe = xgene_ahci_probe,
+};
+
+module_platform_driver(xgene_ahci_driver);
+
+MODULE_DESCRIPTION("APM X-Gene AHCI SATA driver");
+MODULE_AUTHOR("Loc Ho <lho@apm.com>");
+MODULE_LICENSE("GPL");
+MODULE_VERSION("0.4");
--
1.5.5
^ permalink raw reply related
* [PATCH v9 2/4] Documentation: Add documentation for APM X-Gene SoC SATA host controller DTS binding
From: Loc Ho @ 2014-01-15 7:11 UTC (permalink / raw)
To: linux-arm-kernel
In-Reply-To: <1389769910-15505-2-git-send-email-lho@apm.com>
Signed-off-by: Loc Ho <lho@apm.com>
Signed-off-by: Tuan Phan <tphan@apm.com>
Signed-off-by: Suman Tripathi <stripathi@apm.com>
---
.../devicetree/bindings/ata/apm-xgene.txt | 68 ++++++++++++++++++++
1 files changed, 68 insertions(+), 0 deletions(-)
create mode 100644 Documentation/devicetree/bindings/ata/apm-xgene.txt
diff --git a/Documentation/devicetree/bindings/ata/apm-xgene.txt b/Documentation/devicetree/bindings/ata/apm-xgene.txt
new file mode 100644
index 0000000..3d1421a
--- /dev/null
+++ b/Documentation/devicetree/bindings/ata/apm-xgene.txt
@@ -0,0 +1,68 @@
+* APM X-Gene 6.0 Gb/s SATA host controller nodes
+
+SATA host controller nodes are defined to describe on-chip Serial ATA
+controllers. Each SATA controller (pair of ports) have its own node.
+
+Required properties:
+- compatible : Shall be "apm,xgene-ahci-sgmii" if mux'ed with SGMII
+ or "apm,xgene-ahci-pcie" if mux'ed with PCIe.
+- reg : First memory resource shall be the AHCI memory
+ resource.
+ Second memory resource shall be the host controller
+ memory resource.
+- interrupts : Interrupt mapping for SATA host controller IRQ.
+- clocks : Reference to the clock entry.
+- phys : PHY reference with parameter 0.
+- phy-names : Name of the PHY. Shall be "sata-6g".
+
+Optional properties:
+- status : Shall be "ok" if enabled or "disabled" if disabled.
+ Default is "ok".
+- interrupt-parent : Interrupt controller.
+
+Example:
+ sataclk: sataclk {
+ compatible = "fixed-clock";
+ #clock-cells = <1>;
+ clock-frequency = <100000000>;
+ clock-output-names = "sataclk";
+ };
+
+ phy2: phy at 1f22a000 {
+ compatible = "apm,xgene-phy";
+ reg = <0x0 0x1f22a000 0x0 0x100>,
+ <0x0 0x1f22c000 0x0 0x100>;
+ #phy-cells = <1>;
+ };
+
+ phy3: phy at 1f23a000 {
+ compatible = "apm,xgene-phy-ext";
+ reg = <0x0 0x1f23a000 0x0 0x100>,
+ <0x0 0x1f23c000 0x0 0x100>,
+ <0x0 0x1f2d0000 0x0 0x100>;
+ #phy-cells = <1>;
+ };
+
+ sata2: sata at 1a400000 {
+ compatible = "apm,xgene-ahci-sgmii";
+ reg = <0x0 0x1a400000 0x0 0x1000>,
+ <0x0 0x1f220000 0x0 0x10000>;
+ interrupt-parent = <&gic>;
+ interrupts = <0x0 0x87 0x4>;
+ status = "ok";
+ clocks = <&sataclk 0>;
+ phys = <&phy2 0>;
+ phy-names = "sata-6g";
+ };
+
+ sata3: sata at 1a800000 {
+ compatible = "apm,xgene-ahci-pcie";
+ reg = <0x0 0x1a800000 0x0 0x1000>,
+ <0x0 0x1f230000 0x0 0x10000>;
+ interrupt-parent = <&gic>;
+ interrupts = <0x0 0x88 0x4>;
+ status = "ok";
+ clocks = <&sataclk 0>;
+ phys = <&phy3 0>;
+ phy-names = "sata-6g";
+ };
--
1.5.5
^ permalink raw reply related
* [PATCH v9 1/4] ata: Export required functions by APM X-Gene SATA driver
From: Loc Ho @ 2014-01-15 7:11 UTC (permalink / raw)
To: linux-arm-kernel
In-Reply-To: <1389769910-15505-1-git-send-email-lho@apm.com>
This patch exports functions required by APM X-Gene SoC SATA host
controller driver to avoid duplication of code.
Signed-off-by: Loc Ho <lho@apm.com>
Signed-off-by: Tuan Phan <tphan@apm.com>
Signed-off-by: Suman Tripathi <stripathi@apm.com>
---
drivers/ata/ahci.h | 9 +++++++++
drivers/ata/libahci.c | 16 ++++++++++------
2 files changed, 19 insertions(+), 6 deletions(-)
diff --git a/drivers/ata/ahci.h b/drivers/ata/ahci.h
index 2289efd..8163b59 100644
--- a/drivers/ata/ahci.h
+++ b/drivers/ata/ahci.h
@@ -370,6 +370,15 @@ irqreturn_t ahci_thread_fn(int irq, void *dev_instance);
void ahci_print_info(struct ata_host *host, const char *scc_s);
int ahci_host_activate(struct ata_host *host, int irq, unsigned int n_msis);
void ahci_error_handler(struct ata_port *ap);
+void ahci_sw_activity(struct ata_link *link);
+int ahci_scr_write(struct ata_link *link, unsigned int sc_reg, u32 val);
+void ahci_error_intr(struct ata_port *ap, u32 irq_stat);
+int ahci_exec_polled_cmd(struct ata_port *ap, int pmp,
+ struct ata_taskfile *tf, int is_cmd, u16 flags,
+ unsigned long timeout_msec);
+void ahci_fill_cmd_slot(struct ahci_port_priv *pp, unsigned int tag,
+ u32 opts);
+unsigned int ahci_fill_sg(struct ata_queued_cmd *qc, void *cmd_tbl);
static inline void __iomem *__ahci_port_base(struct ata_host *host,
unsigned int port_no)
diff --git a/drivers/ata/libahci.c b/drivers/ata/libahci.c
index c482f8c..1d24bf5 100644
--- a/drivers/ata/libahci.c
+++ b/drivers/ata/libahci.c
@@ -68,7 +68,6 @@ static ssize_t ahci_transmit_led_message(struct ata_port *ap, u32 state,
static int ahci_scr_read(struct ata_link *link, unsigned int sc_reg, u32 *val);
-static int ahci_scr_write(struct ata_link *link, unsigned int sc_reg, u32 val);
static unsigned int ahci_qc_issue(struct ata_queued_cmd *qc);
static bool ahci_qc_fill_rtf(struct ata_queued_cmd *qc);
static int ahci_port_start(struct ata_port *ap);
@@ -553,7 +552,7 @@ static int ahci_scr_read(struct ata_link *link, unsigned int sc_reg, u32 *val)
return -EINVAL;
}
-static int ahci_scr_write(struct ata_link *link, unsigned int sc_reg, u32 val)
+int ahci_scr_write(struct ata_link *link, unsigned int sc_reg, u32 val)
{
void __iomem *port_mmio = ahci_port_base(link->ap);
int offset = ahci_scr_offset(link->ap, sc_reg);
@@ -564,6 +563,7 @@ static int ahci_scr_write(struct ata_link *link, unsigned int sc_reg, u32 val)
}
return -EINVAL;
}
+EXPORT_SYMBOL_GPL(ahci_scr_write);
void ahci_start_engine(struct ata_port *ap)
{
@@ -869,7 +869,7 @@ int ahci_reset_controller(struct ata_host *host)
}
EXPORT_SYMBOL_GPL(ahci_reset_controller);
-static void ahci_sw_activity(struct ata_link *link)
+void ahci_sw_activity(struct ata_link *link)
{
struct ata_port *ap = link->ap;
struct ahci_port_priv *pp = ap->private_data;
@@ -882,6 +882,7 @@ static void ahci_sw_activity(struct ata_link *link)
if (!timer_pending(&emp->timer))
mod_timer(&emp->timer, jiffies + msecs_to_jiffies(10));
}
+EXPORT_SYMBOL_GPL(ahci_sw_activity);
static void ahci_sw_activity_blink(unsigned long arg)
{
@@ -1239,7 +1240,7 @@ int ahci_kick_engine(struct ata_port *ap)
}
EXPORT_SYMBOL_GPL(ahci_kick_engine);
-static int ahci_exec_polled_cmd(struct ata_port *ap, int pmp,
+int ahci_exec_polled_cmd(struct ata_port *ap, int pmp,
struct ata_taskfile *tf, int is_cmd, u16 flags,
unsigned long timeout_msec)
{
@@ -1268,6 +1269,7 @@ static int ahci_exec_polled_cmd(struct ata_port *ap, int pmp,
return 0;
}
+EXPORT_SYMBOL_GPL(ahci_exec_polled_cmd);
int ahci_do_softreset(struct ata_link *link, unsigned int *class,
int pmp, unsigned long deadline,
@@ -1472,7 +1474,7 @@ static void ahci_postreset(struct ata_link *link, unsigned int *class)
}
}
-static unsigned int ahci_fill_sg(struct ata_queued_cmd *qc, void *cmd_tbl)
+unsigned int ahci_fill_sg(struct ata_queued_cmd *qc, void *cmd_tbl)
{
struct scatterlist *sg;
struct ahci_sg *ahci_sg = cmd_tbl + AHCI_CMD_TBL_HDR_SZ;
@@ -1494,6 +1496,7 @@ static unsigned int ahci_fill_sg(struct ata_queued_cmd *qc, void *cmd_tbl)
return si;
}
+EXPORT_SYMBOL_GPL(ahci_fill_sg);
static int ahci_pmp_qc_defer(struct ata_queued_cmd *qc)
{
@@ -1568,7 +1571,7 @@ static void ahci_fbs_dec_intr(struct ata_port *ap)
dev_err(ap->host->dev, "failed to clear device error\n");
}
-static void ahci_error_intr(struct ata_port *ap, u32 irq_stat)
+void ahci_error_intr(struct ata_port *ap, u32 irq_stat)
{
struct ahci_host_priv *hpriv = ap->host->private_data;
struct ahci_port_priv *pp = ap->private_data;
@@ -1678,6 +1681,7 @@ static void ahci_error_intr(struct ata_port *ap, u32 irq_stat)
} else
ata_port_abort(ap);
}
+EXPORT_SYMBOL_GPL(ahci_error_intr);
static void ahci_handle_port_interrupt(struct ata_port *ap,
void __iomem *port_mmio, u32 status)
--
1.5.5
^ permalink raw reply related
* [PATCH v9 0/4] ata: Add APM X-Gene SoC SATA host controller support
From: Loc Ho @ 2014-01-15 7:11 UTC (permalink / raw)
To: linux-arm-kernel
This patch adds support for the APM X-Gene SoC SATA host controller. In
order for the host controller to work, the corresponding PHY driver
musts also be available.
v9:
* Remove ACPI/EFI include files
* Remove the IO flush support, interrupt routine, and DTS resources
* Remove function xgene_rd, xgene_wr, and xgene_wr_flush
* Remove PMP support (function xgene_ahci_qc_issue, xgene_ahci_qc_prep,
xgene_ahci_qc_fill_rtf, xgene_ahci_softreset, and xgene_ahci_do_softreset)
* Rename function xgene_ahci_enable_phy to xgene_ahci_force_phy_rdy
* Clean up hardreset functions
* Require v7 of the PHY driver
v8:
* Remove _ADDR from defines
* Remove define MSTAWAUX_COHERENT_BYPASS_SET and
STARAUX_COHERENT_BYPASS_SET and use direct coding
* Remove the un-necessary check for DTS boot with built in ACPI table
* Switch to use dma_set_mask_and_coherent for setting DMA mask
* Remove ACPI table matching code
* Update clock-names for sata01clk, sata23clk, and sata45clk
v7:
* Update the clock code by toggle the clock
* Update the DTS clock mask values due to the clock spilt between host and
v5 of the PHY drivers
v6:
* Update binding documentation
* Change select PHY_XGENE_SATA to PHY_XGENE
* Add ULL to constants
* Change indentation and comments
* Clean up the probe functions a bit more
* Remove xgene_ahci_remove function
* Add the flush register to DTS
* Remove the interrupt-parent from DTS
v5:
* Sync up to v3 of the PHY driver
* Remove MSLIM wrapper functions
* Change the memory shutdown loop to use usleep_range
* Use devm_ioremap_resource instead devm_ioremap
* Remove suspend/resume functions as not needed
v4:
* Remove the ID property in DT
* Remove the temporary PHY direct function call and use PHY function
* Change printk to pr_debug
* Move the IOB flush addresses into the DT
* Remove the parameters retrieval function as no longer needed
* Remove the header file as no longer needed
* Require v2 patch of the SATA PHY driver. Require slightly modification
in the Kconfig as it is moved to folder driver/phy and use Kconfig
PHY_XGENE_SATA instead SATA_XGENE_PHY.
v3:
* Move out the SATA PHY to another driver
* Remove the clock-cells entry from DTS
* Remove debug wrapper
* Remove delay functions wrapper
* Clean up resource and IRQ query
* Remove query clock name
* Switch to use dma_set_mask/dma_coherent_mask
* Remove un-necessary devm_kfree
* Update GPL license header to v2
* Spilt up function xgene_ahci_hardreset
* Spilt up function xgene_ahci_probe
* Remove all reference of CONFIG_ARCH_MSLIM
* Clean up chip revision code
v2:
* Clean up file sata_xgene.c with Lindent and etc
* Clean up file sata_xgene_serdes.c with Lindent and etc
* Add description to each patch
v1:
* inital version
Signed-off-by: Loc Ho <lho@apm.com>
Signed-off-by: Tuan Phan <tphan@apm.com>
Signed-off-by: Suman Tripathi <stripathi@apm.com>
---
Loc Ho (4):
ata: Export required functions by APM X-Gene SATA driver
Documentation: Add documentation for APM X-Gene SoC SATA host
controller DTS binding
ata: Add APM X-Gene SoC SATA host controller driver
arm64: Add APM X-Gene SoC SATA host controller DTS entries
.../devicetree/bindings/ata/apm-xgene.txt | 68 +++
arch/arm64/boot/dts/apm-storm.dtsi | 75 +++
drivers/ata/Kconfig | 8 +
drivers/ata/Makefile | 1 +
drivers/ata/ahci.h | 9 +
drivers/ata/libahci.c | 16 +-
drivers/ata/sata_xgene.c | 630 ++++++++++++++++++++
7 files changed, 801 insertions(+), 6 deletions(-)
create mode 100644 Documentation/devicetree/bindings/ata/apm-xgene.txt
create mode 100644 drivers/ata/sata_xgene.c
^ permalink raw reply
* [PATCH v7 4/4] arm64: Add APM X-Gene SoC 15Gbps Multi-purpose PHY DTS entries
From: Loc Ho @ 2014-01-15 7:10 UTC (permalink / raw)
To: linux-arm-kernel
In-Reply-To: <1389769840-15469-4-git-send-email-lho@apm.com>
This patch adds the DTS entries for the APM X-Gene SoC 15Gbps Multi-purpose
PHY driver. The PHY for SATA controller 2 and 3 are enabled by default.
Signed-off-by: Loc Ho <lho@apm.com>
Signed-off-by: Tuan Phan <tphan@apm.com>
Signed-off-by: Suman Tripathi <stripathi@apm.com>
---
arch/arm64/boot/dts/apm-storm.dtsi | 76 ++++++++++++++++++++++++++++++++++++
1 files changed, 76 insertions(+), 0 deletions(-)
diff --git a/arch/arm64/boot/dts/apm-storm.dtsi b/arch/arm64/boot/dts/apm-storm.dtsi
index 359d7b6..a1f475d 100644
--- a/arch/arm64/boot/dts/apm-storm.dtsi
+++ b/arch/arm64/boot/dts/apm-storm.dtsi
@@ -176,6 +176,51 @@
reg-names = "csr-reg";
clock-output-names = "eth8clk";
};
+
+ sataphy1clk: sataphy1clk at 1f21c000 {
+ compatible = "apm,xgene-device-clock";
+ #clock-cells = <1>;
+ clocks = <&socplldiv2 0>;
+ clock-names = "socplldiv2";
+ reg = <0x0 0x1f21c000 0x0 0x1000>;
+ reg-names = "csr-reg";
+ clock-output-names = "sataphy1clk";
+ status = "disabled";
+ csr-offset = <0x4>;
+ csr-mask = <0x00>;
+ enable-offset = <0x0>;
+ enable-mask = <0x06>;
+ };
+
+ sataphy2clk: sataphy1clk at 1f22c000 {
+ compatible = "apm,xgene-device-clock";
+ #clock-cells = <1>;
+ clocks = <&socplldiv2 0>;
+ clock-names = "socplldiv2";
+ reg = <0x0 0x1f22c000 0x0 0x1000>;
+ reg-names = "csr-reg";
+ clock-output-names = "sataphy2clk";
+ status = "ok";
+ csr-offset = <0x4>;
+ csr-mask = <0x3a>;
+ enable-offset = <0x0>;
+ enable-mask = <0x06>;
+ };
+
+ sataphy3clk: sataphy1clk at 1f23c000 {
+ compatible = "apm,xgene-device-clock";
+ #clock-cells = <1>;
+ clocks = <&socplldiv2 0>;
+ clock-names = "socplldiv2";
+ reg = <0x0 0x1f23c000 0x0 0x1000>;
+ reg-names = "csr-reg";
+ clock-output-names = "sataphy3clk";
+ status = "ok";
+ csr-offset = <0x4>;
+ csr-mask = <0x3a>;
+ enable-offset = <0x0>;
+ enable-mask = <0x06>;
+ };
};
serial0: serial at 1c020000 {
@@ -193,5 +238,36 @@
reg = <0x0 0x17000014 0x0 0x100>;
mask = <0x1>;
};
+
+ phy1: phy at 1f21a000 {
+ compatible = "apm,xgene-phy";
+ reg = <0x0 0x1f21a000 0x0 0x100>;
+ #phy-cells = <1>;
+ clocks = <&sataphy1clk 0>;
+ status = "disabled";
+ apm,tx-boost-gain = <30 30 30 30 30 30>;
+ apm,tx-eye-tuning = <2 10 10 2 10 10>;
+ };
+
+ phy2: phy at 1f22a000 {
+ compatible = "apm,xgene-phy";
+ reg = <0x0 0x1f22a000 0x0 0x100>;
+ #phy-cells = <1>;
+ clocks = <&sataphy2clk 0>;
+ status = "ok";
+ apm,tx-boost-gain = <30 30 30 30 30 30>;
+ apm,tx-eye-tuning = <2 10 10 2 10 10>;
+ };
+
+ phy3: phy at 1f23a000 {
+ compatible = "apm,xgene-phy-ext";
+ reg = <0x0 0x1f23a000 0x0 0x100>,
+ <0x0 0x1f2d0000 0x0 0x100>;
+ #phy-cells = <1>;
+ clocks = <&sataphy3clk 0>;
+ status = "ok";
+ apm,tx-boost-gain = <31 31 31 31 31 31>;
+ apm,tx-eye-tuning = <2 10 10 2 10 10>;
+ };
};
};
--
1.5.5
^ permalink raw reply related
* [PATCH v7 3/4] PHY: add APM X-Gene SoC 15Gbps Multi-purpose PHY driver
From: Loc Ho @ 2014-01-15 7:10 UTC (permalink / raw)
To: linux-arm-kernel
In-Reply-To: <1389769840-15469-3-git-send-email-lho@apm.com>
This patch adds support for APM X-Gene SoC 15Gbps Multi-purpose PHY.
This is the physical layer interface for the corresponding host
controller. This driver uses the new PHY generic framework posted
by Kishon Vijay Abrahm. Currently, only external clock and SATA mode
are supported.
Signed-off-by: Loc Ho <lho@apm.com>
Signed-off-by: Tuan Phan <tphan@apm.com>
Signed-off-by: Suman Tripathi <stripathi@apm.com>
---
drivers/phy/Kconfig | 7 +
drivers/phy/Makefile | 2 +
drivers/phy/phy-xgene.c | 1894 +++++++++++++++++++++++++++++++++++++++++++++++
3 files changed, 1903 insertions(+), 0 deletions(-)
create mode 100644 drivers/phy/phy-xgene.c
diff --git a/drivers/phy/Kconfig b/drivers/phy/Kconfig
index a344f3d..9cb0906 100644
--- a/drivers/phy/Kconfig
+++ b/drivers/phy/Kconfig
@@ -51,4 +51,11 @@ config PHY_EXYNOS_DP_VIDEO
help
Support for Display Port PHY found on Samsung EXYNOS SoCs.
+config PHY_XGENE
+ tristate "APM X-Gene 15Gbps PHY support"
+ depends on ARM64 || COMPILE_TEST
+ select GENERIC_PHY
+ help
+ This option enables support for APM X-Gene SoC multi-purpose PHY.
+
endmenu
diff --git a/drivers/phy/Makefile b/drivers/phy/Makefile
index d0caae9..56afc18 100644
--- a/drivers/phy/Makefile
+++ b/drivers/phy/Makefile
@@ -7,3 +7,5 @@ obj-$(CONFIG_PHY_EXYNOS_DP_VIDEO) += phy-exynos-dp-video.o
obj-$(CONFIG_PHY_EXYNOS_MIPI_VIDEO) += phy-exynos-mipi-video.o
obj-$(CONFIG_OMAP_USB2) += phy-omap-usb2.o
obj-$(CONFIG_TWL4030_USB) += phy-twl4030-usb.o
+obj-$(CONFIG_PHY_XGENE) += phy-xgene.o
+
diff --git a/drivers/phy/phy-xgene.c b/drivers/phy/phy-xgene.c
new file mode 100644
index 0000000..ba9314a
--- /dev/null
+++ b/drivers/phy/phy-xgene.c
@@ -0,0 +1,1894 @@
+/*
+ * AppliedMicro X-Gene Multi-purpose PHY driver
+ *
+ * Copyright (c) 2014, Applied Micro Circuits Corporation
+ * Author: Loc Ho <lho@apm.com>
+ * Tuan Phan <tphan@apm.com>
+ * Suman Tripathi <stripathi@apm.com>
+ *
+ * This program is free software; you can redistribute it and/or modify it
+ * under the terms of the GNU General Public License as published by the
+ * Free Software Foundation; either version 2 of the License, or (at your
+ * option) any later version.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program. If not, see <http://www.gnu.org/licenses/>.
+ *
+ * The APM X-Gene PHY consists of two PLL clock macro's (CMU) and lanes.
+ * The first PLL clock macro is used for internal reference clock. The second
+ * PLL clock macro is used to generate the clock for the PHY. This driver
+ * configures the first PLL CMU, the second PLL CMU, and programs the PHY to
+ * operate according to the mode of operation. The first PLL CMU is only
+ * required if internal clock is enabled.
+ *
+ * Logical Layer Out Of HW module units:
+ *
+ * -----------------
+ * | Internal | |------|
+ * | Ref PLL CMU |----| | ------------- ---------
+ * ------------ ---- | MUX |-----|PHY PLL CMU|----| Serdes|
+ * | | | | ---------
+ * External Clock ------| | -------------
+ * |------|
+ *
+ * The Ref PLL CMU CSR (Configureation System Registers) is accessed
+ * indirectly from the SDS offset at 0x2000. It is only required for
+ * internal reference clock.
+ * The PHY PLL CMU CSR is accessed indirectly from the SDS offset at 0x0000.
+ * The Serdes CSR is accessed indirectly from the SDS offset at 0x0400.
+ *
+ * The Ref PLL CMU can be located within the same PHY IP or outside the PHY IP
+ * due to shared Ref PLL CMU. For PHY with Ref PLL CMU shared with another IP,
+ * it is located outside the PHY IP. This is the case for the PHY located
+ * at 0x1f23a000 (SATA Port 4/5). For such PHY, another resource is required
+ * to located the SDS/Ref PLL CMU module and its clock for that IP enabled.
+ *
+ * Currently, this driver only supports SATA mode with external clock.
+ */
+#include <linux/module.h>
+#include <linux/platform_device.h>
+#include <linux/io.h>
+#include <linux/delay.h>
+#include <linux/phy/phy.h>
+#include <linux/clk.h>
+
+/* PHY with Ref CMU */
+#define XGENE_PHY_DTS "apm,xgene-phy"
+/* PHY with Ref CMU located outside (external) of the PHY */
+#define XGENE_PHY_EXT_DTS "apm,xgene-phy-ext"
+
+/* Max 2 lanes per a PHY unit */
+#define MAX_LANE 2
+
+/* Register offset inside the PHY */
+#define SERDES_PLL_INDIRECT_OFFSET 0x0000
+#define SERDES_PLL_REF_INDIRECT_OFFSET 0x2000
+#define SERDES_INDIRECT_OFFSET 0x0400
+#define SERDES_LANE_STRIDE 0x0200
+
+/* Some default Serdes parameters */
+#define DEFAULT_SATA_TXBOOST_GAIN { 0x1e, 0x1e, 0x1e }
+#define DEFAULT_SATA_TXEYEDIRECTION { 0x0, 0x0, 0x0 }
+#define DEFAULT_SATA_TXEYETUNING { 0xa, 0xa, 0xa }
+#define DEFAULT_SATA_SPD_SEL { 0x1, 0x3, 0x7 }
+#define DEFAULT_SATA_TXAMP { 0x8, 0x8, 0x8 }
+#define DEFAULT_SATA_TXCN1 { 0x2, 0x2, 0x2 }
+#define DEFAULT_SATA_TXCN2 { 0x0, 0x0, 0x0 }
+#define DEFAULT_SATA_TXCP1 { 0xa, 0xa, 0xa }
+
+#define SATA_SPD_SEL_GEN3 0x7
+#define SATA_SPD_SEL_GEN2 0x3
+#define SATA_SPD_SEL_GEN1 0x1
+
+#define SSC_DISABLE 0
+#define SSC_ENABLE 1
+
+#define FBDIV_VAL_50M 0x77
+#define REFDIV_VAL_50M 0x1
+#define FBDIV_VAL_100M 0x3B
+#define REFDIV_VAL_100M 0x0
+
+/* SATA Clock/Reset CSR */
+#define SATACLKENREG 0x00000000
+#define SATA0_CORE_CLKEN 0x00000002
+#define SATA1_CORE_CLKEN 0x00000004
+#define SATASRESETREG 0x00000004
+#define SATA_MEM_RESET_MASK 0x00000020
+#define SATA_MEM_RESET_RD(src) (((src) & 0x00000020) >> 5)
+#define SATA_SDS_RESET_MASK 0x00000004
+#define SATA_CSR_RESET_MASK 0x00000001
+#define SATA_CORE_RESET_MASK 0x00000002
+#define SATA_PMCLK_RESET_MASK 0x00000010
+#define SATA_PCLK_RESET_MASK 0x00000008
+
+/* SDS CSR used for PHY Indirect access */
+#define SATA_ENET_SDS_PCS_CTL0 0x00000000
+#define REGSPEC_CFG_I_TX_WORDMODE0_SET(dst, src) \
+ (((dst) & ~0x00070000) | (((u32)(src)<<16) & 0x00070000))
+#define REGSPEC_CFG_I_RX_WORDMODE0_SET(dst, src) \
+ (((dst) & ~0x00e00000) | (((u32)(src)<<21) & 0x00e00000))
+#define SATA_ENET_SDS_CTL0 0x0000000c
+#define REGSPEC_CFG_I_CUSTOMER_PIN_MODE0_SET(dst, src) \
+ (((dst) & ~0x00007fff) | (((u32)(src)) & 0x00007fff))
+#define SATA_ENET_SDS_CTL1 0x00000010
+#define CFG_I_SPD_SEL_CDR_OVR1_SET(dst, src) \
+ (((dst) & ~0x0000000f) | (((u32)(src)) & 0x0000000f))
+#define SATA_ENET_SDS_RST_CTL 0x00000024
+#define SATA_ENET_SDS_IND_CMD_REG 0x0000003c
+#define CFG_IND_WR_CMD_MASK 0x00000001
+#define CFG_IND_RD_CMD_MASK 0x00000002
+#define CFG_IND_CMD_DONE_MASK 0x00000004
+#define CFG_IND_ADDR_SET(dst, src) \
+ (((dst) & ~0x003ffff0) | (((u32)(src)<<4) & 0x003ffff0))
+#define SATA_ENET_SDS_IND_RDATA_REG 0x00000040
+#define SATA_ENET_SDS_IND_WDATA_REG 0x00000044
+#define SATA_ENET_CLK_MACRO_REG 0x0000004c
+#define I_RESET_B_SET(dst, src) \
+ (((dst) & ~0x00000001) | (((u32)(src)) & 0x00000001))
+#define I_PLL_FBDIV_SET(dst, src) \
+ (((dst) & ~0x001ff000) | (((u32)(src)<<12) & 0x001ff000))
+#define I_CUSTOMEROV_SET(dst, src) \
+ (((dst) & ~0x00000f80) | (((u32)(src)<<7) & 0x00000f80))
+#define O_PLL_LOCK_RD(src) (((src) & 0x40000000)>>30)
+#define O_PLL_READY_RD(src) (((src) & 0x80000000)>>31)
+
+/* PLL Clock Macro Unit (CMU) CSR accessing from SDS indirectly */
+#define CMU_REG0 0x00000
+#define CMU_REG0_PLL_REF_SEL_MASK 0x00002000
+#define CMU_REG0_PLL_REF_SEL_SET(dst, src) \
+ (((dst) & ~0x00002000) | (((u32)(src) << 0xd) & 0x00002000))
+#define CMU_REG0_PDOWN_MASK 0x00004000
+#define CMU_REG0_CAL_COUNT_RESOL_SET(dst, src) \
+ (((dst) & ~0x000000e0) | (((u32)(src) << 0x5) & 0x000000e0))
+#define CMU_REG1 0x00002
+#define CMU_REG1_PLL_CP_SET(dst, src) \
+ (((dst) & ~0x00003c00) | (((u32)(src) << 0xa) & 0x00003c00))
+#define CMU_REG1_PLL_MANUALCAL_SET(dst, src) \
+ (((dst) & ~0x00000008) | (((u32)(src) << 0x3) & 0x00000008))
+#define CMU_REG1_PLL_CP_SEL_SET(dst, src) \
+ (((dst) & ~0x000003e0) | (((u32)(src) << 0x5) & 0x000003e0))
+#define CMU_REG1_REFCLK_CMOS_SEL_MASK 0x00000001
+#define CMU_REG1_REFCLK_CMOS_SEL_SET(dst, src) \
+ (((dst) & ~0x00000001) | (((u32)(src) << 0x0) & 0x00000001))
+#define CMU_REG2 0x00004
+#define CMU_REG2_PLL_REFDIV_SET(dst, src) \
+ (((dst) & ~0x0000c000) | (((u32)(src) << 0xe) & 0x0000c000))
+#define CMU_REG2_PLL_LFRES_SET(dst, src) \
+ (((dst) & ~0x0000001e) | (((u32)(src) << 0x1) & 0x0000001e))
+#define CMU_REG2_PLL_FBDIV_SET(dst, src) \
+ (((dst) & ~0x00003fe0) | (((u32)(src) << 0x5) & 0x00003fe0))
+#define CMU_REG3 0x00006
+#define CMU_REG3_VCOVARSEL_SET(dst, src) \
+ (((dst) & ~0x0000000f) | (((u32)(src) << 0x0) & 0x0000000f))
+#define CMU_REG3_VCO_MOMSEL_INIT_SET(dst, src) \
+ (((dst) & ~0x000003f0) | (((u32)(src) << 0x4) & 0x000003f0))
+#define CMU_REG3_VCO_MANMOMSEL_SET(dst, src) \
+ (((dst) & ~0x0000fc00) | (((u32)(src) << 0xa) & 0x0000fc00))
+#define CMU_REG4 0x00008
+#define CMU_REG5 0x0000a
+#define CMU_REG5_PLL_LFSMCAP_SET(dst, src) \
+ (((dst) & ~0x0000c000) | (((u32)(src) << 0xe) & 0x0000c000))
+#define CMU_REG5_PLL_LOCK_RESOLUTION_SET(dst, src) \
+ (((dst) & ~0x0000000e) | (((u32)(src) << 0x1) & 0x0000000e))
+#define CMU_REG5_PLL_LFCAP_SET(dst, src) \
+ (((dst) & ~0x00003000) | (((u32)(src) << 0xc) & 0x00003000))
+#define CMU_REG5_PLL_RESETB_MASK 0x00000001
+#define CMU_REG6 0x0000c
+#define CMU_REG6_PLL_VREGTRIM_SET(dst, src) \
+ (((dst) & ~0x00000600) | (((u32)(src) << 0x9) & 0x00000600))
+#define CMU_REG6_MAN_PVT_CAL_SET(dst, src) \
+ (((dst) & ~0x00000004) | (((u32)(src) << 0x2) & 0x00000004))
+#define CMU_REG7 0x0000e
+#define CMU_REG7_PLL_CALIB_DONE_RD(src) \
+ ((0x00004000 & (u32)(src)) >> 0xe)
+#define CMU_REG7_VCO_CAL_FAIL_RD(src) \
+ ((0x00000c00 & (u32)(src)) >> 0xa)
+#define CMU_REG8 0x00010
+#define CMU_REG9 0x00012
+#define CMU_REG9_WORD_LEN_8BIT 0x000
+#define CMU_REG9_WORD_LEN_10BIT 0x001
+#define CMU_REG9_WORD_LEN_16BIT 0x002
+#define CMU_REG9_WORD_LEN_20BIT 0x003
+#define CMU_REG9_WORD_LEN_32BIT 0x004
+#define CMU_REG9_WORD_LEN_40BIT 0x005
+#define CMU_REG9_WORD_LEN_64BIT 0x006
+#define CMU_REG9_WORD_LEN_66BIT 0x007
+#define CMU_REG9_TX_WORD_MODE_CH1_SET(dst, src) \
+ (((dst) & ~0x00000380) | (((u32)(src) << 0x7) & 0x00000380))
+#define CMU_REG9_TX_WORD_MODE_CH0_SET(dst, src) \
+ (((dst) & ~0x00000070) | (((u32)(src) << 0x4) & 0x00000070))
+#define CMU_REG9_PLL_POST_DIVBY2_SET(dst, src) \
+ (((dst) & ~0x00000008) | (((u32)(src) << 0x3) & 0x00000008))
+#define CMU_REG9_VBG_BYPASSB_SET(dst, src) \
+ (((dst) & ~0x00000004) | (((u32)(src) << 0x2) & 0x00000004))
+#define CMU_REG9_IGEN_BYPASS_SET(dst, src) \
+ (((dst) & ~0x00000002) | (((u32)(src) << 0x1) & 0x00000002))
+#define CMU_REG10 0x00014
+#define CMU_REG10_VREG_REFSEL_SET(dst, src) \
+ (((dst) & ~0x00000001) | (((u32)(src) << 0x0) & 0x00000001))
+#define CMU_REG11 0x00016
+#define CMU_REG12 0x00018
+#define CMU_REG12_STATE_DELAY9_SET(dst, src) \
+ (((dst) & ~0x000000f0) | (((u32)(src) << 0x4) & 0x000000f0))
+#define CMU_REG13 0x0001a
+#define CMU_REG14 0x0001c
+#define CMU_REG15 0x0001e
+#define CMU_REG16 0x00020
+#define CMU_REG16_PVT_DN_MAN_ENA_MASK 0x00000001
+#define CMU_REG16_PVT_UP_MAN_ENA_MASK 0x00000002
+#define CMU_REG16_VCOCAL_WAIT_BTW_CODE_SET(dst, src) \
+ (((dst) & ~0x0000001c) | (((u32)(src) << 0x2) & 0x0000001c))
+#define CMU_REG16_CALIBRATION_DONE_OVERRIDE_SET(dst, src) \
+ (((dst) & ~0x00000040) | (((u32)(src) << 0x6) & 0x00000040))
+#define CMU_REG16_BYPASS_PLL_LOCK_SET(dst, src) \
+ (((dst) & ~0x00000020) | (((u32)(src) << 0x5) & 0x00000020))
+#define CMU_REG17 0x00022
+#define CMU_REG17_PVT_CODE_R2A_SET(dst, src) \
+ (((dst) & ~0x00007f00) | (((u32)(src) << 0x8) & 0x00007f00))
+#define CMU_REG17_RESERVED_7_SET(dst, src) \
+ (((dst) & ~0x000000e0) | (((u32)(src) << 0x5) & 0x000000e0))
+#define CMU_REG17_PVT_TERM_MAN_ENA_MASK 0x00008000
+#define CMU_REG18 0x00024
+#define CMU_REG19 0x00026
+#define CMU_REG20 0x00028
+#define CMU_REG21 0x0002a
+#define CMU_REG22 0x0002c
+#define CMU_REG23 0x0002e
+#define CMU_REG24 0x00030
+#define CMU_REG25 0x00032
+#define CMU_REG26 0x00034
+#define CMU_REG26_FORCE_PLL_LOCK_SET(dst, src) \
+ (((dst) & ~0x00000001) | (((u32)(src) << 0x0) & 0x00000001))
+#define CMU_REG27 0x00036
+#define CMU_REG28 0x00038
+#define CMU_REG29 0x0003a
+#define CMU_REG30 0x0003c
+#define CMU_REG30_LOCK_COUNT_SET(dst, src) \
+ (((dst) & ~0x00000006) | (((u32)(src) << 0x1) & 0x00000006))
+#define CMU_REG30_PCIE_MODE_SET(dst, src) \
+ (((dst) & ~0x00000008) | (((u32)(src) << 0x3) & 0x00000008))
+#define CMU_REG31 0x0003e
+#define CMU_REG32 0x00040
+#define CMU_REG32_FORCE_VCOCAL_START_MASK 0x00004000
+#define CMU_REG32_PVT_CAL_WAIT_SEL_SET(dst, src) \
+ (((dst) & ~0x00000006) | (((u32)(src) << 0x1) & 0x00000006))
+#define CMU_REG32_IREF_ADJ_SET(dst, src) \
+ (((dst) & ~0x00000180) | (((u32)(src) << 0x7) & 0x00000180))
+#define CMU_REG33 0x00042
+#define CMU_REG34 0x00044
+#define CMU_REG34_VCO_CAL_VTH_LO_MAX_SET(dst, src) \
+ (((dst) & ~0x0000000f) | (((u32)(src) << 0x0) & 0x0000000f))
+#define CMU_REG34_VCO_CAL_VTH_HI_MAX_SET(dst, src) \
+ (((dst) & ~0x00000f00) | (((u32)(src) << 0x8) & 0x00000f00))
+#define CMU_REG34_VCO_CAL_VTH_LO_MIN_SET(dst, src) \
+ (((dst) & ~0x000000f0) | (((u32)(src) << 0x4) & 0x000000f0))
+#define CMU_REG34_VCO_CAL_VTH_HI_MIN_SET(dst, src) \
+ (((dst) & ~0x0000f000) | (((u32)(src) << 0xc) & 0x0000f000))
+#define CMU_REG35 0x00046
+#define CMU_REG35_PLL_SSC_MOD_SET(dst, src) \
+ (((dst) & ~0x0000fe00) | (((u32)(src) << 0x9) & 0x0000fe00))
+#define CMU_REG36 0x00048
+#define CMU_REG36_PLL_SSC_EN_SET(dst, src) \
+ (((dst) & ~0x00000010) | (((u32)(src) << 0x4) & 0x00000010))
+#define CMU_REG36_PLL_SSC_VSTEP_SET(dst, src) \
+ (((dst) & ~0x0000ffc0) | (((u32)(src) << 0x6) & 0x0000ffc0))
+#define CMU_REG36_PLL_SSC_DSMSEL_SET(dst, src) \
+ (((dst) & ~0x00000020) | (((u32)(src) << 0x5) & 0x00000020))
+#define CMU_REG37 0x0004a
+#define CMU_REG38 0x0004c
+#define CMU_REG39 0x0004e
+
+/* PHY lane CSR accessing from SDS indirectly */
+#define RXTX_REG0 0x000
+#define RXTX_REG0_CTLE_EQ_HR_SET(dst, src) \
+ (((dst) & ~0x0000f800) | (((u32)(src) << 0xb) & 0x0000f800))
+#define RXTX_REG0_CTLE_EQ_QR_SET(dst, src) \
+ (((dst) & ~0x000007c0) | (((u32)(src) << 0x6) & 0x000007c0))
+#define RXTX_REG0_CTLE_EQ_FR_SET(dst, src) \
+ (((dst) & ~0x0000003e) | (((u32)(src) << 0x1) & 0x0000003e))
+#define RXTX_REG1 0x002
+#define RXTX_REG1_RXACVCM_SET(dst, src) \
+ (((dst) & ~0x0000f000) | (((u32)(src) << 0xc) & 0x0000f000))
+#define RXTX_REG1_CTLE_EQ_SET(dst, src) \
+ (((dst) & ~0x00000f80) | (((u32)(src) << 0x7) & 0x00000f80))
+#define RXTX_REG1_RXVREG1_SET(dst, src) \
+ (((dst) & ~0x00000060) | (((u32)(src) << 0x5) & 0x00000060))
+#define RXTX_REG1_RXIREF_ADJ_SET(dst, src) \
+ (((dst) & ~0x00000006) | (((u32)(src) << 0x1) & 0x00000006))
+#define RXTX_REG2 0x004
+#define RXTX_REG2_VTT_ENA_SET(dst, src) \
+ (((dst) & ~0x00000100) | (((u32)(src) << 0x8) & 0x00000100))
+#define RXTX_REG2_TX_FIFO_ENA_SET(dst, src) \
+ (((dst) & ~0x00000020) | (((u32)(src) << 0x5) & 0x00000020))
+#define RXTX_REG2_VTT_SEL_SET(dst, src) \
+ (((dst) & ~0x000000c0) | (((u32)(src) << 0x6) & 0x000000c0))
+#define RXTX_REG4 0x008
+#define RXTX_REG4_TX_LOOPBACK_BUF_EN_MASK 0x00000040
+#define RXTX_REG4_TX_DATA_RATE_SET(dst, src) \
+ (((dst) & ~0x0000c000) | (((u32)(src) << 0xe) & 0x0000c000))
+#define RXTX_REG4_TX_WORD_MODE_SET(dst, src) \
+ (((dst) & ~0x00003800) | (((u32)(src) << 0xb) & 0x00003800))
+#define RXTX_REG5 0x00a
+#define RXTX_REG5_TX_CN1_SET(dst, src) \
+ (((dst) & ~0x0000f800) | (((u32)(src) << 0xb) & 0x0000f800))
+#define RXTX_REG5_TX_CP1_SET(dst, src) \
+ (((dst) & ~0x000007e0) | (((u32)(src) << 0x5) & 0x000007e0))
+#define RXTX_REG5_TX_CN2_SET(dst, src) \
+ (((dst) & ~0x0000001f) | (((u32)(src) << 0x0) & 0x0000001f))
+#define RXTX_REG6 0x00c
+#define RXTX_REG6_TXAMP_CNTL_SET(dst, src) \
+ (((dst) & ~0x00000780) | (((u32)(src) << 0x7) & 0x00000780))
+#define RXTX_REG6_TXAMP_ENA_SET(dst, src) \
+ (((dst) & ~0x00000040) | (((u32)(src) << 0x6) & 0x00000040))
+#define RXTX_REG6_RX_BIST_ERRCNT_RD_SET(dst, src) \
+ (((dst) & ~0x00000001) | (((u32)(src) << 0x0) & 0x00000001))
+#define RXTX_REG6_TX_IDLE_SET(dst, src) \
+ (((dst) & ~0x00000008) | (((u32)(src) << 0x3) & 0x00000008))
+#define RXTX_REG6_RX_BIST_RESYNC_SET(dst, src) \
+ (((dst) & ~0x00000002) | (((u32)(src) << 0x1) & 0x00000002))
+#define RXTX_REG7 0x00e
+#define RXTX_REG7_RESETB_RXD_MASK 0x00000100
+#define RXTX_REG7_RESETB_RXA_MASK 0x00000080
+#define RXTX_REG7_BIST_ENA_RX_SET(dst, src) \
+ (((dst) & ~0x00000040) | (((u32)(src) << 0x6) & 0x00000040))
+#define RXTX_REG7_RX_WORD_MODE_SET(dst, src) \
+ (((dst) & ~0x00003800) | (((u32)(src) << 0xb) & 0x00003800))
+#define RXTX_REG8 0x010
+#define RXTX_REG8_CDR_LOOP_ENA_SET(dst, src) \
+ (((dst) & ~0x00004000) | (((u32)(src) << 0xe) & 0x00004000))
+#define RXTX_REG8_CDR_BYPASS_RXLOS_SET(dst, src) \
+ (((dst) & ~0x00000800) | (((u32)(src) << 0xb) & 0x00000800))
+#define RXTX_REG8_SSC_ENABLE_SET(dst, src) \
+ (((dst) & ~0x00000200) | (((u32)(src) << 0x9) & 0x00000200))
+#define RXTX_REG8_SD_VREF_SET(dst, src) \
+ (((dst) & ~0x000000f0) | (((u32)(src) << 0x4) & 0x000000f0))
+#define RXTX_REG8_SD_DISABLE_SET(dst, src) \
+ (((dst) & ~0x00000100) | (((u32)(src) << 0x8) & 0x00000100))
+#define RXTX_REG7 0x00e
+#define RXTX_REG7_RESETB_RXD_SET(dst, src) \
+ (((dst) & ~0x00000100) | (((u32)(src) << 0x8) & 0x00000100))
+#define RXTX_REG7_RESETB_RXA_SET(dst, src) \
+ (((dst) & ~0x00000080) | (((u32)(src) << 0x7) & 0x00000080))
+#define RXTX_REG7_LOOP_BACK_ENA_CTLE_MASK 0x00004000
+#define RXTX_REG7_LOOP_BACK_ENA_CTLE_SET(dst, src) \
+ (((dst) & ~0x00004000) | (((u32)(src) << 0xe) & 0x00004000))
+#define RXTX_REG11 0x016
+#define RXTX_REG11_PHASE_ADJUST_LIMIT_SET(dst, src) \
+ (((dst) & ~0x0000f800) | (((u32)(src) << 0xb) & 0x0000f800))
+#define RXTX_REG12 0x018
+#define RXTX_REG12_LATCH_OFF_ENA_SET(dst, src) \
+ (((dst) & ~0x00002000) | (((u32)(src) << 0xd) & 0x00002000))
+#define RXTX_REG12_SUMOS_ENABLE_SET(dst, src) \
+ (((dst) & ~0x00000004) | (((u32)(src) << 0x2) & 0x00000004))
+#define RXTX_REG12_RX_DET_TERM_ENABLE_MASK 0x00000002
+#define RXTX_REG12_RX_DET_TERM_ENABLE_SET(dst, src) \
+ (((dst) & ~0x00000002) | (((u32)(src) << 0x1) & 0x00000002))
+#define RXTX_REG13 0x01a
+#define RXTX_REG14 0x01c
+#define RXTX_REG14_CLTE_LATCAL_MAN_PROG_SET(dst, src) \
+ (((dst) & ~0x0000003f) | (((u32)(src) << 0x0) & 0x0000003f))
+#define RXTX_REG14_CTLE_LATCAL_MAN_ENA_SET(dst, src) \
+ (((dst) & ~0x00000040) | (((u32)(src) << 0x6) & 0x00000040))
+#define RXTX_REG26 0x034
+#define RXTX_REG26_PERIOD_ERROR_LATCH_SET(dst, src) \
+ (((dst) & ~0x00003800) | (((u32)(src) << 0xb) & 0x00003800))
+#define RXTX_REG26_BLWC_ENA_SET(dst, src) \
+ (((dst) & ~0x00000008) | (((u32)(src) << 0x3) & 0x00000008))
+#define RXTX_REG21 0x02a
+#define RXTX_REG21_DO_LATCH_CALOUT_RD(src) \
+ ((0x0000fc00 & (u32)(src)) >> 0xa)
+#define RXTX_REG21_XO_LATCH_CALOUT_RD(src) \
+ ((0x000003f0 & (u32)(src)) >> 0x4)
+#define RXTX_REG21_LATCH_CAL_FAIL_ODD_RD(src) \
+ ((0x0000000f & (u32)(src)))
+#define RXTX_REG22 0x02c
+#define RXTX_REG22_SO_LATCH_CALOUT_RD(src) \
+ ((0x000003f0 & (u32)(src)) >> 0x4)
+#define RXTX_REG22_EO_LATCH_CALOUT_RD(src) \
+ ((0x0000fc00 & (u32)(src)) >> 0xa)
+#define RXTX_REG22_LATCH_CAL_FAIL_EVEN_RD(src) \
+ ((0x0000000f & (u32)(src)))
+#define RXTX_REG23 0x02e
+#define RXTX_REG23_DE_LATCH_CALOUT_RD(src) \
+ ((0x0000fc00 & (u32)(src)) >> 0xa)
+#define RXTX_REG23_XE_LATCH_CALOUT_RD(src) \
+ ((0x000003f0 & (u32)(src)) >> 0x4)
+#define RXTX_REG24 0x030
+#define RXTX_REG24_EE_LATCH_CALOUT_RD(src) \
+ ((0x0000fc00 & (u32)(src)) >> 0xa)
+#define RXTX_REG24_SE_LATCH_CALOUT_RD(src) \
+ ((0x000003f0 & (u32)(src)) >> 0x4)
+#define RXTX_REG27 0x036
+#define RXTX_REG28 0x038
+#define RXTX_REG31 0x03e
+#define RXTX_REG38 0x04c
+#define RXTX_REG38_CUSTOMER_PINMODE_INV_SET(dst, src) \
+ (((dst) & 0x0000fffe) | (((u32)(src) << 0x1) & 0x0000fffe))
+#define RXTX_REG39 0x04e
+#define RXTX_REG40 0x050
+#define RXTX_REG41 0x052
+#define RXTX_REG42 0x054
+#define RXTX_REG43 0x056
+#define RXTX_REG44 0x058
+#define RXTX_REG45 0x05a
+#define RXTX_REG46 0x05c
+#define RXTX_REG47 0x05e
+#define RXTX_REG48 0x060
+#define RXTX_REG49 0x062
+#define RXTX_REG50 0x064
+#define RXTX_REG51 0x066
+#define RXTX_REG52 0x068
+#define RXTX_REG53 0x06a
+#define RXTX_REG54 0x06c
+#define RXTX_REG55 0x06e
+#define RXTX_REG61 0x07a
+#define RXTX_REG61_ISCAN_INBERT_SET(dst, src) \
+ (((dst) & ~0x00000010) | (((u32)(src) << 0x4) & 0x00000010))
+#define RXTX_REG61_LOADFREQ_SHIFT_SET(dst, src) \
+ (((dst) & ~0x00000008) | (((u32)(src) << 0x3) & 0x00000008))
+#define RXTX_REG61_EYE_COUNT_WIDTH_SEL_SET(dst, src) \
+ (((dst) & ~0x000000c0) | (((u32)(src) << 0x6) & 0x000000c0))
+#define RXTX_REG61_SPD_SEL_CDR_SET(dst, src) \
+ (((dst) & ~0x00003c00) | (((u32)(src) << 0xa) & 0x00003c00))
+#define RXTX_REG62 0x07c
+#define RXTX_REG62_PERIOD_H1_QLATCH_SET(dst, src) \
+ (((dst) & ~0x00003800) | (((u32)(src) << 0xb) & 0x00003800))
+#define RXTX_REG81 0x0a2
+#define RXTX_REG89_MU_TH7_SET(dst, src) \
+ (((dst) & ~0x0000f800) | (((u32)(src) << 0xb) & 0x0000f800))
+#define RXTX_REG89_MU_TH8_SET(dst, src) \
+ (((dst) & ~0x000007c0) | (((u32)(src) << 0x6) & 0x000007c0))
+#define RXTX_REG89_MU_TH9_SET(dst, src) \
+ (((dst) & ~0x0000003e) | (((u32)(src) << 0x1) & 0x0000003e))
+#define RXTX_REG96 0x0c0
+#define RXTX_REG96_MU_FREQ1_SET(dst, src) \
+ (((dst) & ~0x0000f800) | (((u32)(src) << 0xb) & 0x0000f800))
+#define RXTX_REG96_MU_FREQ2_SET(dst, src) \
+ (((dst) & ~0x000007c0) | (((u32)(src) << 0x6) & 0x000007c0))
+#define RXTX_REG96_MU_FREQ3_SET(dst, src) \
+ (((dst) & ~0x0000003e) | (((u32)(src) << 0x1) & 0x0000003e))
+#define RXTX_REG99 0x0c6
+#define RXTX_REG99_MU_PHASE1_SET(dst, src) \
+ (((dst) & ~0x0000f800) | (((u32)(src) << 0xb) & 0x0000f800))
+#define RXTX_REG99_MU_PHASE2_SET(dst, src) \
+ (((dst) & ~0x000007c0) | (((u32)(src) << 0x6) & 0x000007c0))
+#define RXTX_REG99_MU_PHASE3_SET(dst, src) \
+ (((dst) & ~0x0000003e) | (((u32)(src) << 0x1) & 0x0000003e))
+#define RXTX_REG102 0x0cc
+#define RXTX_REG102_FREQLOOP_LIMIT_SET(dst, src) \
+ (((dst) & ~0x00000060) | (((u32)(src) << 0x5) & 0x00000060))
+#define RXTX_REG114 0x0e4
+#define RXTX_REG121 0x0f2
+#define RXTX_REG121_SUMOS_CAL_CODE_RD(src) \
+ ((0x0000003e & (u32)(src)) >> 0x1)
+#define RXTX_REG125 0x0fa
+#define RXTX_REG125_PQ_REG_SET(dst, src) \
+ (((dst) & ~0x0000fe00) | (((u32)(src) << 0x9) & 0x0000fe00))
+#define RXTX_REG125_SIGN_PQ_SET(dst, src) \
+ (((dst) & ~0x00000100) | (((u32)(src) << 0x8) & 0x00000100))
+#define RXTX_REG125_SIGN_PQ_2C_SET(dst, src) \
+ (((dst) & ~0x00000080) | (((u32)(src) << 0x7) & 0x00000080))
+#define RXTX_REG125_PHZ_MANUALCODE_SET(dst, src) \
+ (((dst) & ~0x0000007c) | (((u32)(src) << 0x2) & 0x0000007c))
+#define RXTX_REG125_PHZ_MANUAL_SET(dst, src) \
+ (((dst) & ~0x00000002) | (((u32)(src) << 0x1) & 0x00000002))
+#define RXTX_REG127 0x0fe
+#define RXTX_REG127_FORCE_SUM_CAL_START_MASK 0x00000002
+#define RXTX_REG127_FORCE_LAT_CAL_START_MASK 0x00000004
+#define RXTX_REG127_FORCE_SUM_CAL_START_SET(dst, src) \
+ (((dst) & ~0x00000002) | (((u32)(src) << 0x1) & 0x00000002))
+#define RXTX_REG127_FORCE_LAT_CAL_START_SET(dst, src) \
+ (((dst) & ~0x00000004) | (((u32)(src) << 0x2) & 0x00000004))
+#define RXTX_REG127_LATCH_MAN_CAL_ENA_SET(dst, src) \
+ (((dst) & ~0x00000008) | (((u32)(src) << 0x3) & 0x00000008))
+#define RXTX_REG127_DO_LATCH_MANCAL_SET(dst, src) \
+ (((dst) & ~0x0000fc00) | (((u32)(src) << 0xa) & 0x0000fc00))
+#define RXTX_REG127_XO_LATCH_MANCAL_SET(dst, src) \
+ (((dst) & ~0x000003f0) | (((u32)(src) << 0x4) & 0x000003f0))
+#define RXTX_REG128 0x100
+#define RXTX_REG128_LATCH_CAL_WAIT_SEL_SET(dst, src) \
+ (((dst) & ~0x0000000c) | (((u32)(src) << 0x2) & 0x0000000c))
+#define RXTX_REG128_EO_LATCH_MANCAL_SET(dst, src) \
+ (((dst) & ~0x0000fc00) | (((u32)(src) << 0xa) & 0x0000fc00))
+#define RXTX_REG128_SO_LATCH_MANCAL_SET(dst, src) \
+ (((dst) & ~0x000003f0) | (((u32)(src) << 0x4) & 0x000003f0))
+#define RXTX_REG129 0x102
+#define RXTX_REG129_DE_LATCH_MANCAL_SET(dst, src) \
+ (((dst) & ~0x0000fc00) | (((u32)(src) << 0xa) & 0x0000fc00))
+#define RXTX_REG129_XE_LATCH_MANCAL_SET(dst, src) \
+ (((dst) & ~0x000003f0) | (((u32)(src) << 0x4) & 0x000003f0))
+#define RXTX_REG130 0x104
+#define RXTX_REG130_EE_LATCH_MANCAL_SET(dst, src) \
+ (((dst) & ~0x0000fc00) | (((u32)(src) << 0xa) & 0x0000fc00))
+#define RXTX_REG130_SE_LATCH_MANCAL_SET(dst, src) \
+ (((dst) & ~0x000003f0) | (((u32)(src) << 0x4) & 0x000003f0))
+#define RXTX_REG145 0x122
+#define RXTX_REG145_TX_IDLE_SATA_SET(dst, src) \
+ (((dst) & ~0x00000001) | (((u32)(src) << 0x0) & 0x00000001))
+#define RXTX_REG145_RXES_ENA_SET(dst, src) \
+ (((dst) & ~0x00000002) | (((u32)(src) << 0x1) & 0x00000002))
+#define RXTX_REG145_RXDFE_CONFIG_SET(dst, src) \
+ (((dst) & ~0x0000c000) | (((u32)(src) << 0xe) & 0x0000c000))
+#define RXTX_REG145_RXVWES_LATENA_SET(dst, src) \
+ (((dst) & ~0x00000004) | (((u32)(src) << 0x2) & 0x00000004))
+#define RXTX_REG147 0x126
+#define RXTX_REG148 0x128
+
+/* Clock macro type */
+enum cmu_type_t {
+ REF_CMU = 0, /* Clock macro is the internal reference clock */
+ PHY_CMU = 1, /* Clock macro is the PLL for the Serdes */
+};
+
+enum mux_type_t {
+ MUX_SELECT_ATA = 0, /* Switch the MUX to ATA */
+ MUX_SELECT_SGMMII = 0, /* Switch the MUX to SGMII */
+};
+
+enum clk_type_t {
+ CLK_EXT_DIFF = 0, /* External differential */
+ CLK_INT_DIFF = 1, /* Internal differential */
+ CLK_INT_SING = 2, /* Internal single ended */
+};
+
+enum phy_mode {
+ MODE_SATA = 0, /* List them for simple reference */
+ MODE_SGMII = 1,
+ MODE_PCIE = 2,
+ MODE_USB = 3,
+ MODE_XFI = 4,
+ MODE_MAX
+};
+
+struct xgene_sata_override_param {
+ u32 speed[MAX_LANE]; /* Index for override parameter per lane */
+ u32 txspeed[3]; /* Tx speed */
+ u32 txboostgain[MAX_LANE*3]; /* Tx freq boost and gain control */
+ u32 txeyetuning[MAX_LANE*3]; /* Tx eye tuning */
+ u32 txeyedirection[MAX_LANE*3]; /* Tx eye tuning direction */
+ u32 txamplitude[MAX_LANE*3]; /* Tx amplitude control */
+ u32 txprecursor_cn1[MAX_LANE*3]; /* Tx emphasis taps 1st pre-cursor */
+ u32 txprecursor_cn2[MAX_LANE*3]; /* Tx emphasis taps 2nd pre-cursor */
+ u32 txpostcursor_cp1[MAX_LANE*3]; /* Tx emphasis taps post-cursor */
+};
+
+struct xgene_phy_ctx {
+ struct device *dev;
+ struct phy *phy;
+ enum phy_mode mode; /* Mode of operation */
+ enum clk_type_t clk_type; /* Input clock selection */
+ void __iomem *sds_base; /* PHY CSR base addr */
+ void __iomem *clk_base; /* PHY clock CSR base addr */
+ void __iomem *ext_cmu_base; /* PHY SDS/Ref PLL CMU external */
+ struct clk *clk; /* Optional clock */
+ int ref_100MHz; /* Reference clock 100Mhz */
+ int inited; /* Initialized? */
+
+ /* Override Serdes parameters */
+ struct xgene_sata_override_param sata_param;
+};
+
+/*
+ * For chip earlier than A3 version, enable this flag.
+ * To enable, pass boot argument phy_xgene.preA3Chip=1
+ */
+static int preA3Chip;
+MODULE_PARM_DESC(preA3Chip, "Enable pre-A3 chip support (1=enable 0=disable)");
+module_param_named(preA3Chip, preA3Chip, int, 0444);
+
+static void sds_wr(void __iomem *csr_base, u32 indirect_cmd_reg,
+ u32 indirect_data_reg, u32 addr, u32 data)
+{
+ u32 val;
+ u32 cmd;
+
+ cmd = CFG_IND_WR_CMD_MASK | CFG_IND_CMD_DONE_MASK;
+ cmd = CFG_IND_ADDR_SET(cmd, addr);
+ writel(data, csr_base + indirect_data_reg);
+ readl(csr_base + indirect_data_reg); /* Force a barrier */
+ writel(cmd, csr_base + indirect_cmd_reg);
+ readl(csr_base + indirect_cmd_reg); /* Force a barrier */
+ do {
+ val = readl(csr_base + indirect_cmd_reg);
+ } while (!(val & CFG_IND_CMD_DONE_MASK));
+}
+
+static void sds_rd(void __iomem *csr_base, u32 indirect_cmd_reg,
+ u32 indirect_data_reg, u32 addr, u32 *data)
+{
+ u32 val;
+ u32 cmd;
+
+ cmd = CFG_IND_RD_CMD_MASK | CFG_IND_CMD_DONE_MASK;
+ cmd = CFG_IND_ADDR_SET(cmd, addr);
+ writel(cmd, csr_base + indirect_cmd_reg);
+ readl(csr_base + indirect_cmd_reg); /* Force a barrier */
+ do {
+ val = readl(csr_base + indirect_cmd_reg);
+ } while (!(val & CFG_IND_CMD_DONE_MASK));
+ *data = readl(csr_base + indirect_data_reg);
+}
+
+static void cmu_wr(struct xgene_phy_ctx *ctx, enum cmu_type_t cmu_type,
+ u32 reg, u32 data)
+{
+ void __iomem *sds_base;
+ u32 val;
+
+ if (cmu_type == REF_CMU && ctx->ext_cmu_base &&
+ (ctx->clk_type == CLK_INT_DIFF || ctx->clk_type == CLK_INT_SING))
+ /* Reference CMU out side of the IP */
+ sds_base = ctx->ext_cmu_base;
+ else
+ sds_base = ctx->sds_base;
+ if (cmu_type == REF_CMU)
+ reg += SERDES_PLL_REF_INDIRECT_OFFSET;
+ else
+ reg += SERDES_PLL_INDIRECT_OFFSET;
+ sds_wr(sds_base, SATA_ENET_SDS_IND_CMD_REG,
+ SATA_ENET_SDS_IND_WDATA_REG, reg, data);
+ sds_rd(sds_base, SATA_ENET_SDS_IND_CMD_REG,
+ SATA_ENET_SDS_IND_RDATA_REG, reg, &val);
+ pr_debug("CMU WR addr 0x%X value 0x%08X <-> 0x%08X\n", reg, data, val);
+}
+
+static void cmu_rd(struct xgene_phy_ctx *ctx, enum cmu_type_t cmu_type,
+ u32 reg, u32 *data)
+{
+ void __iomem *sds_base;
+
+ if (cmu_type == REF_CMU && ctx->ext_cmu_base &&
+ (ctx->clk_type == CLK_INT_DIFF || ctx->clk_type == CLK_INT_SING))
+ /* Reference CMU out side of the IP */
+ sds_base = ctx->ext_cmu_base;
+ else
+ sds_base = ctx->sds_base;
+
+ if (cmu_type == REF_CMU)
+ reg += SERDES_PLL_REF_INDIRECT_OFFSET;
+ else
+ reg += SERDES_PLL_INDIRECT_OFFSET;
+ sds_rd(sds_base, SATA_ENET_SDS_IND_CMD_REG,
+ SATA_ENET_SDS_IND_RDATA_REG, reg, data);
+ pr_debug("CMU RD addr 0x%X value 0x%08X\n", reg, *data);
+}
+
+static void cmu_toggle1to0(struct xgene_phy_ctx *ctx, enum cmu_type_t cmu_type,
+ u32 reg, u32 bits)
+{
+ u32 val;
+
+ cmu_rd(ctx, cmu_type, reg, &val);
+ val |= bits;
+ cmu_wr(ctx, cmu_type, reg, val);
+ cmu_rd(ctx, cmu_type, reg, &val);
+ val &= ~bits;
+ cmu_wr(ctx, cmu_type, reg, val);
+}
+
+static void cmu_clrbits(struct xgene_phy_ctx *ctx, enum cmu_type_t cmu_type,
+ u32 reg, u32 bits)
+{
+ u32 val;
+
+ cmu_rd(ctx, cmu_type, reg, &val);
+ val &= ~bits;
+ cmu_wr(ctx, cmu_type, reg, val);
+}
+
+static void cmu_setbits(struct xgene_phy_ctx *ctx, enum cmu_type_t cmu_type,
+ u32 reg, u32 bits)
+{
+ u32 val;
+
+ cmu_rd(ctx, cmu_type, reg, &val);
+ val |= bits;
+ cmu_wr(ctx, cmu_type, reg, val);
+}
+
+static void serdes_wr(struct xgene_phy_ctx *ctx, int lane, u32 reg, u32 data)
+{
+ void __iomem *sds_base = ctx->sds_base;
+ u32 val;
+
+ reg += SERDES_INDIRECT_OFFSET;
+ reg += lane * SERDES_LANE_STRIDE;
+ sds_wr(sds_base, SATA_ENET_SDS_IND_CMD_REG,
+ SATA_ENET_SDS_IND_WDATA_REG, reg, data);
+ sds_rd(sds_base, SATA_ENET_SDS_IND_CMD_REG,
+ SATA_ENET_SDS_IND_RDATA_REG, reg, &val);
+ pr_debug("SERDES WR addr 0x%X value 0x%08X <-> 0x%08X\n", reg, data,
+ val);
+}
+
+static void serdes_rd(struct xgene_phy_ctx *ctx, int lane, u32 reg, u32 *data)
+{
+ void __iomem *sds_base = ctx->sds_base;
+
+ reg += SERDES_INDIRECT_OFFSET;
+ reg += lane * SERDES_LANE_STRIDE;
+ sds_rd(sds_base, SATA_ENET_SDS_IND_CMD_REG,
+ SATA_ENET_SDS_IND_RDATA_REG, reg, data);
+ pr_debug("SERDES RD addr 0x%X value 0x%08X\n", reg, *data);
+}
+
+static void serdes_clrbits(struct xgene_phy_ctx *ctx, int lane, u32 reg,
+ u32 bits)
+{
+ u32 val;
+
+ serdes_rd(ctx, lane, reg, &val);
+ val &= ~bits;
+ serdes_wr(ctx, lane, reg, val);
+}
+
+static void serdes_setbits(struct xgene_phy_ctx *ctx, int lane, u32 reg,
+ u32 bits)
+{
+ u32 val;
+
+ serdes_rd(ctx, lane, reg, &val);
+ val |= bits;
+ serdes_wr(ctx, lane, reg, val);
+}
+
+static void xgene_phy_cfg_cmu_clk_type(struct xgene_phy_ctx *ctx,
+ enum cmu_type_t cmu_type,
+ enum clk_type_t clk_type)
+{
+ u32 val;
+
+ /* Set the reset sequence delay for TX ready assertion */
+ cmu_rd(ctx, cmu_type, CMU_REG12, &val);
+ val = CMU_REG12_STATE_DELAY9_SET(val, 0x1);
+ cmu_wr(ctx, cmu_type, CMU_REG12, val);
+ /* Set the programmable stage delays between various enable stages */
+ cmu_wr(ctx, cmu_type, CMU_REG13, 0xF222);
+ cmu_wr(ctx, cmu_type, CMU_REG14, 0x2225);
+
+ /* Configure clock type */
+ if (clk_type == CLK_EXT_DIFF) {
+ /* Select external clock mux */
+ cmu_rd(ctx, cmu_type, CMU_REG0, &val);
+ val = CMU_REG0_PLL_REF_SEL_SET(val, 0x0);
+ cmu_wr(ctx, cmu_type, CMU_REG0, val);
+ /* Select CMOS as reference clock */
+ cmu_rd(ctx, cmu_type, CMU_REG1, &val);
+ val = CMU_REG1_REFCLK_CMOS_SEL_SET(val, 0x0);
+ cmu_wr(ctx, cmu_type, CMU_REG1, val);
+ dev_dbg(ctx->dev, "Set external reference clock\n");
+ } else if (clk_type == CLK_INT_DIFF) {
+ /* Select internal clock mux */
+ cmu_rd(ctx, cmu_type, CMU_REG0, &val);
+ val = CMU_REG0_PLL_REF_SEL_SET(val, 0x1);
+ cmu_wr(ctx, cmu_type, CMU_REG0, val);
+ /* Select CMOS as reference clock */
+ cmu_rd(ctx, cmu_type, CMU_REG1, &val);
+ val = CMU_REG1_REFCLK_CMOS_SEL_SET(val, 0x1);
+ cmu_wr(ctx, cmu_type, CMU_REG1, val);
+ dev_dbg(ctx->dev, "Set internal reference clock\n");
+ } else if (clk_type == CLK_INT_SING) {
+ /*
+ * NOTE: This clock type is NOT support for controller
+ * whose internal clock shared in the PCIe controller
+ *
+ * Select internal clock mux
+ */
+ cmu_rd(ctx, cmu_type, CMU_REG1, &val);
+ val = CMU_REG1_REFCLK_CMOS_SEL_SET(val, 0x1);
+ cmu_wr(ctx, cmu_type, CMU_REG1, val);
+ /* Select CML as reference clock */
+ cmu_rd(ctx, cmu_type, CMU_REG1, &val);
+ val = CMU_REG1_REFCLK_CMOS_SEL_SET(val, 0x0);
+ cmu_wr(ctx, cmu_type, CMU_REG1, val);
+ dev_dbg(ctx->dev,
+ "Set internal single ended reference clock\n");
+ }
+}
+
+static void xgene_phy_sata_cfg_cmu_core(struct xgene_phy_ctx *ctx,
+ enum cmu_type_t cmu_type,
+ enum clk_type_t clk_type)
+{
+ u32 val;
+ int ref_100MHz;
+
+ if (cmu_type == REF_CMU) {
+ /* Set VCO calibration voltage threshold */
+ cmu_rd(ctx, cmu_type, CMU_REG34, &val);
+ val = CMU_REG34_VCO_CAL_VTH_LO_MAX_SET(val, 0x7);
+ val = CMU_REG34_VCO_CAL_VTH_HI_MAX_SET(val, 0xc);
+ val = CMU_REG34_VCO_CAL_VTH_LO_MIN_SET(val, 0x3);
+ val = CMU_REG34_VCO_CAL_VTH_HI_MIN_SET(val, 0x8);
+ cmu_wr(ctx, cmu_type, CMU_REG34, val);
+ }
+
+ /* Set the VCO calibration counter */
+ cmu_rd(ctx, cmu_type, CMU_REG0, &val);
+ if (cmu_type == REF_CMU || preA3Chip)
+ val = CMU_REG0_CAL_COUNT_RESOL_SET(val, 0x4);
+ else
+ val = CMU_REG0_CAL_COUNT_RESOL_SET(val, 0x7);
+ cmu_wr(ctx, cmu_type, CMU_REG0, val);
+
+ /* Configure PLL for calibration */
+ cmu_rd(ctx, cmu_type, CMU_REG1, &val);
+ val = CMU_REG1_PLL_CP_SET(val, 0x1);
+ if (cmu_type == REF_CMU || preA3Chip)
+ val = CMU_REG1_PLL_CP_SEL_SET(val, 0x5);
+ else
+ val = CMU_REG1_PLL_CP_SEL_SET(val, 0x3);
+ if (cmu_type == REF_CMU)
+ val = CMU_REG1_PLL_MANUALCAL_SET(val, 0x0);
+ else
+ val = CMU_REG1_PLL_MANUALCAL_SET(val, 0x1);
+ cmu_wr(ctx, cmu_type, CMU_REG1, val);
+
+ if (cmu_type != REF_CMU)
+ cmu_clrbits(ctx, cmu_type, CMU_REG5, CMU_REG5_PLL_RESETB_MASK);
+
+ /* Configure the PLL for either 100MHz or 50MHz */
+ cmu_rd(ctx, cmu_type, CMU_REG2, &val);
+ if (cmu_type == REF_CMU) {
+ val = CMU_REG2_PLL_LFRES_SET(val, 0xa);
+ ref_100MHz = ctx->ref_100MHz;
+ } else {
+ val = CMU_REG2_PLL_LFRES_SET(val, 0x3);
+ if (clk_type == CLK_EXT_DIFF)
+ ref_100MHz = 0;
+ else
+ ref_100MHz = 1;
+ }
+ if (ref_100MHz) {
+ val = CMU_REG2_PLL_FBDIV_SET(val, FBDIV_VAL_100M);
+ val = CMU_REG2_PLL_REFDIV_SET(val, REFDIV_VAL_100M);
+ } else {
+ val = CMU_REG2_PLL_FBDIV_SET(val, FBDIV_VAL_50M);
+ val = CMU_REG2_PLL_REFDIV_SET(val, REFDIV_VAL_50M);
+ }
+ cmu_wr(ctx, cmu_type, CMU_REG2, val);
+
+ /* Configure the VCO */
+ cmu_rd(ctx, cmu_type, CMU_REG3, &val);
+ if (cmu_type == REF_CMU) {
+ val = CMU_REG3_VCOVARSEL_SET(val, 0x3);
+ val = CMU_REG3_VCO_MOMSEL_INIT_SET(val, 0x10);
+ } else {
+ val = CMU_REG3_VCOVARSEL_SET(val, 0xF);
+ if (preA3Chip)
+ val = CMU_REG3_VCO_MOMSEL_INIT_SET(val, 0x15);
+ else
+ val = CMU_REG3_VCO_MOMSEL_INIT_SET(val, 0x1a);
+ val = CMU_REG3_VCO_MANMOMSEL_SET(val, 0x15);
+ }
+ cmu_wr(ctx, cmu_type, CMU_REG3, val);
+
+ /* Disable force PLL lock */
+ cmu_rd(ctx, cmu_type, CMU_REG26, &val);
+ val = CMU_REG26_FORCE_PLL_LOCK_SET(val, 0x0);
+ cmu_wr(ctx, cmu_type, CMU_REG26, val);
+
+ /* Setup PLL loop filter */
+ cmu_rd(ctx, cmu_type, CMU_REG5, &val);
+ val = CMU_REG5_PLL_LFSMCAP_SET(val, 0x3);
+ val = CMU_REG5_PLL_LFCAP_SET(val, 0x3);
+ if (cmu_type == REF_CMU || !preA3Chip)
+ val = CMU_REG5_PLL_LOCK_RESOLUTION_SET(val, 0x7);
+ else
+ val = CMU_REG5_PLL_LOCK_RESOLUTION_SET(val, 0x4);
+ cmu_wr(ctx, cmu_type, CMU_REG5, val);
+
+ /* Enable or disable manual calibration */
+ cmu_rd(ctx, cmu_type, CMU_REG6, &val);
+ val = CMU_REG6_PLL_VREGTRIM_SET(val, preA3Chip ? 0x0 : 0x2);
+ val = CMU_REG6_MAN_PVT_CAL_SET(val, preA3Chip ? 0x1 : 0x0);
+ cmu_wr(ctx, cmu_type, CMU_REG6, val);
+
+ /* Configure lane for 20-bits */
+ if (cmu_type == PHY_CMU) {
+ cmu_rd(ctx, cmu_type, CMU_REG9, &val);
+ val = CMU_REG9_TX_WORD_MODE_CH1_SET(val,
+ CMU_REG9_WORD_LEN_20BIT);
+ val = CMU_REG9_TX_WORD_MODE_CH0_SET(val,
+ CMU_REG9_WORD_LEN_20BIT);
+ val = CMU_REG9_PLL_POST_DIVBY2_SET(val, 0x1);
+ if (!preA3Chip) {
+ val = CMU_REG9_VBG_BYPASSB_SET(val, 0x0);
+ val = CMU_REG9_IGEN_BYPASS_SET(val , 0x0);
+ }
+ cmu_wr(ctx, cmu_type, CMU_REG9, val);
+
+ if (!preA3Chip) {
+ cmu_rd(ctx, cmu_type, CMU_REG10, &val);
+ val = CMU_REG10_VREG_REFSEL_SET(val, 0x1);
+ cmu_wr(ctx, cmu_type, CMU_REG10, val);
+ }
+ }
+
+ cmu_rd(ctx, cmu_type, CMU_REG16, &val);
+ val = CMU_REG16_CALIBRATION_DONE_OVERRIDE_SET(val, 0x1);
+ val = CMU_REG16_BYPASS_PLL_LOCK_SET(val, 0x1);
+ if (cmu_type == REF_CMU || preA3Chip)
+ val = CMU_REG16_VCOCAL_WAIT_BTW_CODE_SET(val, 0x4);
+ else
+ val = CMU_REG16_VCOCAL_WAIT_BTW_CODE_SET(val, 0x7);
+ cmu_wr(ctx, cmu_type, CMU_REG16, val);
+
+ /* Configure for SATA */
+ cmu_rd(ctx, cmu_type, CMU_REG30, &val);
+ val = CMU_REG30_PCIE_MODE_SET(val, 0x0);
+ val = CMU_REG30_LOCK_COUNT_SET(val, 0x3);
+ cmu_wr(ctx, cmu_type, CMU_REG30, val);
+
+ /* Disable state machine bypass */
+ cmu_wr(ctx, cmu_type, CMU_REG31, 0xF);
+
+ cmu_rd(ctx, cmu_type, CMU_REG32, &val);
+ val = CMU_REG32_PVT_CAL_WAIT_SEL_SET(val, 0x3);
+ if (cmu_type == REF_CMU || preA3Chip)
+ val = CMU_REG32_IREF_ADJ_SET(val, 0x3);
+ else
+ val = CMU_REG32_IREF_ADJ_SET(val, 0x1);
+ cmu_wr(ctx, cmu_type, CMU_REG32, val);
+
+ /* Set VCO calibration threshold */
+ if (cmu_type != REF_CMU && preA3Chip)
+ cmu_wr(ctx, cmu_type, CMU_REG34, 0x8d27);
+ else
+ cmu_wr(ctx, cmu_type, CMU_REG34, 0x873c);
+
+ /* Set CTLE Override and override waiting from state machine */
+ cmu_wr(ctx, cmu_type, CMU_REG37, 0xF00F);
+}
+
+static void xgene_phy_ssc_enable(struct xgene_phy_ctx *ctx,
+ enum cmu_type_t cmu_type)
+{
+ u32 val;
+
+ /* Set SSC modulation value */
+ cmu_rd(ctx, cmu_type, CMU_REG35, &val);
+ val = CMU_REG35_PLL_SSC_MOD_SET(val, 98);
+ cmu_wr(ctx, cmu_type, CMU_REG35, val);
+
+ /* Enable SSC, set vertical step and DSM value */
+ cmu_rd(ctx, cmu_type, CMU_REG36, &val);
+ val = CMU_REG36_PLL_SSC_VSTEP_SET(val, 30);
+ val = CMU_REG36_PLL_SSC_EN_SET(val, 1);
+ val = CMU_REG36_PLL_SSC_DSMSEL_SET(val, 1);
+ cmu_wr(ctx, cmu_type, CMU_REG36, val);
+
+ /* Reset the PLL */
+ cmu_clrbits(ctx, cmu_type, CMU_REG5, CMU_REG5_PLL_RESETB_MASK);
+ cmu_setbits(ctx, cmu_type, CMU_REG5, CMU_REG5_PLL_RESETB_MASK);
+
+ /* Force VCO calibration to restart */
+ cmu_toggle1to0(ctx, cmu_type, CMU_REG32,
+ CMU_REG32_FORCE_VCOCAL_START_MASK);
+}
+
+static void xgene_phy_sata_cfg_lanes(struct xgene_phy_ctx *ctx)
+{
+ u32 val;
+ u32 reg;
+ int i;
+ int lane;
+
+ for (lane = 0; lane < MAX_LANE; lane++) {
+ serdes_wr(ctx, lane, RXTX_REG147, 0x6);
+
+ /* Set boost control for quarter, half, and full rate */
+ serdes_rd(ctx, lane, RXTX_REG0, &val);
+ val = RXTX_REG0_CTLE_EQ_HR_SET(val, 0x10);
+ val = RXTX_REG0_CTLE_EQ_QR_SET(val, 0x10);
+ val = RXTX_REG0_CTLE_EQ_FR_SET(val, 0x10);
+ serdes_wr(ctx, lane, RXTX_REG0, val);
+
+ /* Set boost control value */
+ serdes_rd(ctx, lane, RXTX_REG1, &val);
+ val = RXTX_REG1_RXACVCM_SET(val, 0x7);
+ val = RXTX_REG1_CTLE_EQ_SET(val,
+ ctx->sata_param.txboostgain[lane * 3 +
+ ctx->sata_param.speed[lane]]);
+ serdes_wr(ctx, lane, RXTX_REG1, val);
+
+ /* Latch VTT value based on the termination to ground and
+ enable TX FIFO */
+ serdes_rd(ctx, lane, RXTX_REG2, &val);
+ val = RXTX_REG2_VTT_ENA_SET(val, 0x1);
+ val = RXTX_REG2_VTT_SEL_SET(val, 0x1);
+ val = RXTX_REG2_TX_FIFO_ENA_SET(val, 0x1);
+ serdes_wr(ctx, lane, RXTX_REG2, val);
+
+ /* Configure Tx for 20-bits */
+ serdes_rd(ctx, lane, RXTX_REG4, &val);
+ val = RXTX_REG4_TX_WORD_MODE_SET(val, CMU_REG9_WORD_LEN_20BIT);
+ serdes_wr(ctx, lane, RXTX_REG4, val);
+
+ if (!preA3Chip) {
+ serdes_rd(ctx, lane, RXTX_REG1, &val);
+ val = RXTX_REG1_RXVREG1_SET(val, 0x2);
+ val = RXTX_REG1_RXIREF_ADJ_SET(val, 0x2);
+ serdes_wr(ctx, lane, RXTX_REG1, val);
+ }
+
+ /* Set pre-emphasis first 1 and 2, and post-emphasis values */
+ serdes_rd(ctx, lane, RXTX_REG5, &val);
+ val = RXTX_REG5_TX_CN1_SET(val,
+ ctx->sata_param.txprecursor_cn1[lane * 3 +
+ ctx->sata_param.speed[lane]]);
+ val = RXTX_REG5_TX_CP1_SET(val,
+ ctx->sata_param.txpostcursor_cp1[lane * 3 +
+ ctx->sata_param.speed[lane]]);
+ val = RXTX_REG5_TX_CN2_SET(val,
+ ctx->sata_param.txprecursor_cn2[lane * 3 +
+ ctx->sata_param.speed[lane]]);
+ serdes_wr(ctx, lane, RXTX_REG5, val);
+
+ /* Set TX amplitude value */
+ serdes_rd(ctx, lane, RXTX_REG6, &val);
+ val = RXTX_REG6_TXAMP_CNTL_SET(val,
+ ctx->sata_param.txamplitude[lane * 3 +
+ ctx->sata_param.speed[lane]]);
+ val = RXTX_REG6_TXAMP_ENA_SET(val, 0x1);
+ val = RXTX_REG6_TX_IDLE_SET(val, 0x0);
+ val = RXTX_REG6_RX_BIST_RESYNC_SET(val, 0x0);
+ val = RXTX_REG6_RX_BIST_ERRCNT_RD_SET(val, 0x0);
+ serdes_wr(ctx, lane, RXTX_REG6, val);
+
+ /* Configure Rx for 20-bits */
+ serdes_rd(ctx, lane, RXTX_REG7, &val);
+ val = RXTX_REG7_BIST_ENA_RX_SET(val, 0x0);
+ val = RXTX_REG7_RX_WORD_MODE_SET(val, CMU_REG9_WORD_LEN_20BIT);
+ serdes_wr(ctx, lane, RXTX_REG7, val);
+
+ /* Set CDR and LOS values and enable Rx SSC */
+ serdes_rd(ctx, lane, RXTX_REG8, &val);
+ val = RXTX_REG8_CDR_LOOP_ENA_SET(val, 0x1);
+ val = RXTX_REG8_CDR_BYPASS_RXLOS_SET(val, 0x0);
+ val = RXTX_REG8_SSC_ENABLE_SET(val, 0x1);
+ val = RXTX_REG8_SD_DISABLE_SET(val, 0x0);
+ val = RXTX_REG8_SD_VREF_SET(val, 0x4);
+ serdes_wr(ctx, lane, RXTX_REG8, val);
+
+ /* Set phase adjust upper/lower limits */
+ serdes_rd(ctx, lane, RXTX_REG11, &val);
+ val = RXTX_REG11_PHASE_ADJUST_LIMIT_SET(val, 0x0);
+ serdes_wr(ctx, lane, RXTX_REG11, val);
+
+ /* Enable Latch Off; disable SUMOS and Tx termination */
+ serdes_rd(ctx, lane, RXTX_REG12, &val);
+ val = RXTX_REG12_LATCH_OFF_ENA_SET(val, 0x1);
+ val = RXTX_REG12_SUMOS_ENABLE_SET(val, 0x0);
+ val = RXTX_REG12_RX_DET_TERM_ENABLE_SET(val, 0x0);
+ serdes_wr(ctx, lane, RXTX_REG12, val);
+
+ /* Set period error latch to 512T and enable BWL */
+ serdes_rd(ctx, lane, RXTX_REG26, &val);
+ val = RXTX_REG26_PERIOD_ERROR_LATCH_SET(val, 0x0);
+ val = RXTX_REG26_BLWC_ENA_SET(val, 0x1);
+ serdes_wr(ctx, lane, RXTX_REG26, val);
+
+ serdes_wr(ctx, lane, RXTX_REG28, 0x0);
+
+ /* Set DFE loop preset value */
+ serdes_wr(ctx, lane, RXTX_REG31, 0x0);
+
+ /* Set Eye Monitor counter width to 12-bit */
+ serdes_rd(ctx, lane, RXTX_REG61, &val);
+ val = RXTX_REG61_ISCAN_INBERT_SET(val, 0x1);
+ val = RXTX_REG61_LOADFREQ_SHIFT_SET(val, 0x0);
+ val = RXTX_REG61_EYE_COUNT_WIDTH_SEL_SET(val, 0x0);
+ serdes_wr(ctx, lane, RXTX_REG61, val);
+
+ serdes_rd(ctx, lane, RXTX_REG62, &val);
+ val = RXTX_REG62_PERIOD_H1_QLATCH_SET(val, 0x0);
+ serdes_wr(ctx, lane, RXTX_REG62, val);
+
+ /* Set BW select tap X for DFE loop */
+ for (i = 0; i < 9; i++) {
+ reg = RXTX_REG81 + i * 2;
+ serdes_rd(ctx, lane, reg, &val);
+ val = RXTX_REG89_MU_TH7_SET(val, 0xe);
+ val = RXTX_REG89_MU_TH8_SET(val, 0xe);
+ val = RXTX_REG89_MU_TH9_SET(val, 0xe);
+ serdes_wr(ctx, lane, reg, val);
+ }
+
+ /* Set BW select tap X for frequency adjust loop */
+ for (i = 0; i < 3; i++) {
+ reg = RXTX_REG96 + i * 2;
+ serdes_rd(ctx, lane, reg, &val);
+ val = RXTX_REG96_MU_FREQ1_SET(val, 0x10);
+ val = RXTX_REG96_MU_FREQ2_SET(val, 0x10);
+ val = RXTX_REG96_MU_FREQ3_SET(val, 0x10);
+ serdes_wr(ctx, lane, reg, val);
+ }
+
+ /* Set BW select tap X for phase adjust loop */
+ for (i = 0; i < 3; i++) {
+ reg = RXTX_REG99 + i * 2;
+ serdes_rd(ctx, lane, reg, &val);
+ val = RXTX_REG99_MU_PHASE1_SET(val, 0x7);
+ val = RXTX_REG99_MU_PHASE2_SET(val, 0x7);
+ val = RXTX_REG99_MU_PHASE3_SET(val, 0x7);
+ serdes_wr(ctx, lane, reg, val);
+ }
+
+ serdes_rd(ctx, lane, RXTX_REG102, &val);
+ val = RXTX_REG102_FREQLOOP_LIMIT_SET(val, 0x0);
+ serdes_wr(ctx, lane, RXTX_REG102, val);
+
+ serdes_wr(ctx, lane, RXTX_REG114, 0xffe0);
+
+ serdes_rd(ctx, lane, RXTX_REG125, &val);
+ val = RXTX_REG125_SIGN_PQ_SET(val,
+ ctx->sata_param.txeyedirection[lane * 3 +
+ ctx->sata_param.speed[lane]]);
+ val = RXTX_REG125_PQ_REG_SET(val,
+ ctx->sata_param.txeyetuning[lane * 3 +
+ ctx->sata_param.speed[lane]]);
+ val = RXTX_REG125_PHZ_MANUAL_SET(val, 0x1);
+ serdes_wr(ctx, lane, RXTX_REG125, val);
+
+ serdes_rd(ctx, lane, RXTX_REG127, &val);
+ val = RXTX_REG127_LATCH_MAN_CAL_ENA_SET(val, 0x0);
+ serdes_wr(ctx, lane, RXTX_REG127, val);
+
+ serdes_rd(ctx, lane, RXTX_REG128, &val);
+ val = RXTX_REG128_LATCH_CAL_WAIT_SEL_SET(val, 0x3);
+ serdes_wr(ctx, lane, RXTX_REG128, val);
+
+ serdes_rd(ctx, lane, RXTX_REG145, &val);
+ val = RXTX_REG145_RXDFE_CONFIG_SET(val, 0x3);
+ val = RXTX_REG145_TX_IDLE_SATA_SET(val, 0x0);
+ if (preA3Chip) {
+ val = RXTX_REG145_RXES_ENA_SET(val, 0x1);
+ val = RXTX_REG145_RXVWES_LATENA_SET(val, 0x1);
+ } else {
+ val = RXTX_REG145_RXES_ENA_SET(val, 0x0);
+ val = RXTX_REG145_RXVWES_LATENA_SET(val, 0x0);
+ }
+ serdes_wr(ctx, lane, RXTX_REG145, val);
+
+ /*
+ * Set Rx LOS filter clock rate, sample rate, and threshold
+ * windows
+ */
+ for (i = 0; i < 4; i++) {
+ reg = RXTX_REG148 + i * 2;
+ serdes_wr(ctx, lane, reg, 0xFFFF);
+ }
+ }
+}
+
+static int xgene_phy_cal_rdy_chk(struct xgene_phy_ctx *ctx,
+ enum cmu_type_t cmu_type,
+ enum clk_type_t clk_type)
+{
+ void __iomem *csr_serdes;
+ int loop;
+ u32 val;
+
+ if (cmu_type == REF_CMU && ctx->ext_cmu_base &&
+ (clk_type == CLK_INT_DIFF || clk_type == CLK_INT_SING))
+ /* Ref CMU is located outside the IP */
+ csr_serdes = ctx->ext_cmu_base;
+ else
+ csr_serdes = ctx->sds_base;
+
+ /* Release PHY main reset */
+ writel(0xdf, csr_serdes + SATA_ENET_SDS_RST_CTL);
+ readl(csr_serdes + SATA_ENET_SDS_RST_CTL);
+
+ if (cmu_type != REF_CMU) {
+ cmu_setbits(ctx, cmu_type, CMU_REG5, CMU_REG5_PLL_RESETB_MASK);
+
+ cmu_rd(ctx, cmu_type, CMU_REG1, &val);
+ val = CMU_REG1_PLL_MANUALCAL_SET(val, 0x0);
+ cmu_wr(ctx, cmu_type, CMU_REG1, val);
+
+ cmu_toggle1to0(ctx, cmu_type, CMU_REG32,
+ CMU_REG32_FORCE_VCOCAL_START_MASK);
+ }
+
+ if (!preA3Chip)
+ goto skip_manual_cal;
+
+ /*
+ * Configure the termination resister calibration
+ * The serial receive pins, RXP/RXN, have TERMination resistor
+ * that is required to be calibrated.
+ */
+ cmu_rd(ctx, cmu_type, CMU_REG17, &val);
+ val = CMU_REG17_PVT_CODE_R2A_SET(val, 0x12);
+ val = CMU_REG17_RESERVED_7_SET(val, 0x0);
+ cmu_wr(ctx, cmu_type, CMU_REG17, val);
+ cmu_toggle1to0(ctx, cmu_type, CMU_REG17,
+ CMU_REG17_PVT_TERM_MAN_ENA_MASK);
+ /*
+ * The serial transmit pins, TXP/TXN, have Pull-UP and Pull-DOWN
+ * resistors that are required to the calibrated.
+ * Configure the pull DOWN calibration
+ */
+ cmu_rd(ctx, cmu_type, CMU_REG17, &val);
+ val = CMU_REG17_PVT_CODE_R2A_SET(val, 0x29);
+ val = CMU_REG17_RESERVED_7_SET(val, 0x0);
+ cmu_wr(ctx, cmu_type, CMU_REG17, val);
+ cmu_toggle1to0(ctx, cmu_type, CMU_REG16,
+ CMU_REG16_PVT_DN_MAN_ENA_MASK);
+ /* Configure the pull UP calibration */
+ cmu_rd(ctx, cmu_type, CMU_REG17, &val);
+ val = CMU_REG17_PVT_CODE_R2A_SET(val, 0x28);
+ val = CMU_REG17_RESERVED_7_SET(val, 0x0);
+ cmu_wr(ctx, cmu_type, CMU_REG17, val);
+ cmu_toggle1to0(ctx, cmu_type, CMU_REG16,
+ CMU_REG16_PVT_UP_MAN_ENA_MASK);
+
+skip_manual_cal:
+ /* Poll the PLL calibration completion status for at least 1 ms */
+ loop = 100;
+ do {
+ cmu_rd(ctx, cmu_type, CMU_REG7, &val);
+ if (CMU_REG7_PLL_CALIB_DONE_RD(val))
+ break;
+ usleep_range(10, 100);
+ } while (--loop > 0);
+
+ cmu_rd(ctx, cmu_type, CMU_REG7, &val);
+ dev_dbg(ctx->dev, "PLL calibration %s\n",
+ CMU_REG7_PLL_CALIB_DONE_RD(val) ? "done" : "failed");
+ if (CMU_REG7_VCO_CAL_FAIL_RD(val)) {
+ dev_err(ctx->dev,
+ "PLL calibration failed due to VCO failure\n");
+ return -1;
+ }
+ dev_dbg(ctx->dev, "PLL calibration successful\n");
+
+ cmu_rd(ctx, cmu_type, CMU_REG15, &val);
+ dev_dbg(ctx->dev, "PHY Tx is %sready\n", val & 0x300 ? "" : "not ");
+ return 0;
+}
+
+static void xgene_phy_pdwn_force_vco(struct xgene_phy_ctx *ctx,
+ enum cmu_type_t cmu_type,
+ enum clk_type_t clk_type)
+{
+ u32 val;
+
+ dev_dbg(ctx->dev, "Reset VCO and re-start again\n");
+ if (cmu_type == PHY_CMU) {
+ cmu_rd(ctx, cmu_type, CMU_REG16, &val);
+ val = CMU_REG16_VCOCAL_WAIT_BTW_CODE_SET(val, 0x7);
+ cmu_wr(ctx, cmu_type, CMU_REG16, val);
+ }
+
+ cmu_toggle1to0(ctx, cmu_type, CMU_REG0, CMU_REG0_PDOWN_MASK);
+ cmu_toggle1to0(ctx, cmu_type, CMU_REG32,
+ CMU_REG32_FORCE_VCOCAL_START_MASK);
+}
+
+static int xgene_phy_hw_init_sata(struct xgene_phy_ctx *ctx,
+ enum clk_type_t clk_type, int ssc_enable)
+{
+ void __iomem *sds_base = ctx->sds_base;
+ u32 val;
+ int i;
+
+ /* Configure the PHY for operation */
+ dev_dbg(ctx->dev, "Reset PHY\n");
+ /* Place PHY into reset */
+ writel(0x0, sds_base + SATA_ENET_SDS_RST_CTL);
+ val = readl(sds_base + SATA_ENET_SDS_RST_CTL); /* Force a barrier */
+ /* Release PHY lane from reset (active high) */
+ writel(0x20, sds_base + SATA_ENET_SDS_RST_CTL);
+ readl(sds_base + SATA_ENET_SDS_RST_CTL); /* Force a barrier */
+ /* Release all PHY module out of reset except PHY main reset */
+ writel(0xde, sds_base + SATA_ENET_SDS_RST_CTL);
+ readl(sds_base + SATA_ENET_SDS_RST_CTL); /* Force a barrier */
+
+ /* Set the operation speed */
+ val = readl(sds_base + SATA_ENET_SDS_CTL1);
+ val = CFG_I_SPD_SEL_CDR_OVR1_SET(val,
+ ctx->sata_param.txspeed[ctx->sata_param.speed[0]]);
+ writel(val, sds_base + SATA_ENET_SDS_CTL1);
+
+ dev_dbg(ctx->dev, "Set the customer pin mode to SATA\n");
+ val = readl(sds_base + SATA_ENET_SDS_CTL0);
+ val = REGSPEC_CFG_I_CUSTOMER_PIN_MODE0_SET(val, 0x4421);
+ writel(val, sds_base + SATA_ENET_SDS_CTL0);
+
+ /* Configure the clock macro unit (CMU) clock type */
+ xgene_phy_cfg_cmu_clk_type(ctx, PHY_CMU, clk_type);
+
+ /* Configure the clock macro */
+ xgene_phy_sata_cfg_cmu_core(ctx, PHY_CMU, clk_type);
+
+ /* Enable SSC if enabled */
+ if (ssc_enable)
+ xgene_phy_ssc_enable(ctx, PHY_CMU);
+
+ /* Configure PHY lanes */
+ xgene_phy_sata_cfg_lanes(ctx);
+
+ /* Set Rx/Tx 20-bit */
+ val = readl(sds_base + SATA_ENET_SDS_PCS_CTL0);
+ val = REGSPEC_CFG_I_RX_WORDMODE0_SET(val, 0x3);
+ val = REGSPEC_CFG_I_TX_WORDMODE0_SET(val, 0x3);
+ writel(val, sds_base + SATA_ENET_SDS_PCS_CTL0);
+
+ /* Start PLL calibration and try for three times */
+ i = 10;
+ do {
+ if (!xgene_phy_cal_rdy_chk(ctx, PHY_CMU, clk_type))
+ break;
+ /* If failed, toggle the VCO power signal and start again */
+ xgene_phy_pdwn_force_vco(ctx, PHY_CMU, clk_type);
+ } while (--i > 0);
+ /* Even on failure, allow to continue any way */
+ if (i <= 0)
+ dev_err(ctx->dev, "PLL calibration failed\n");
+
+ return 0;
+}
+
+static int xgene_phy_hw_init_ref_cmu(struct xgene_phy_ctx *ctx,
+ enum clk_type_t clk_type)
+{
+ void __iomem *sds_base;
+ int loop = 10;
+ u32 val;
+
+ if (ctx->ext_cmu_base)
+ sds_base = ctx->ext_cmu_base;
+ else
+ sds_base = ctx->sds_base;
+
+ dev_dbg(ctx->dev, "Configure Ref CMU (internal clock)\n");
+ val = readl(sds_base + SATA_ENET_CLK_MACRO_REG);
+ val = I_RESET_B_SET(val, 0x0);
+ if (!ctx->ext_cmu_base)
+ val = I_PLL_FBDIV_SET(val, 0x27);
+ val = I_CUSTOMEROV_SET(val, 0x0);
+ writel(val, sds_base + SATA_ENET_CLK_MACRO_REG);
+
+ /* Configure the clock macro */
+ xgene_phy_sata_cfg_cmu_core(ctx, REF_CMU, clk_type);
+
+ val = readl(sds_base + SATA_ENET_CLK_MACRO_REG);
+ val = I_RESET_B_SET(val, 0x1);
+ val = I_CUSTOMEROV_SET(val, 0x0);
+ writel(val, sds_base + SATA_ENET_CLK_MACRO_REG);
+
+ /* Start PLL calibration and try for three times */
+ do {
+ if (!xgene_phy_cal_rdy_chk(ctx, REF_CMU, clk_type))
+ break;
+ /* If failed, toggle the VCO power signal and start again */
+ xgene_phy_pdwn_force_vco(ctx, REF_CMU, clk_type);
+ } while (--loop > 0);
+ if (loop <= 0) {
+ dev_err(ctx->dev, "Ref PLL clock macro not ready...\n");
+ return -1;
+ }
+ val = readl(sds_base + SATA_ENET_CLK_MACRO_REG);
+ dev_dbg(ctx->dev, "Ref PLL clock macro is %slocked...\n",
+ O_PLL_LOCK_RD(val) ? "" : "un-");
+ dev_dbg(ctx->dev, "Ref PLL clock macro is %sready...\n",
+ O_PLL_READY_RD(val) ? "" : "not ");
+ return 0;
+}
+
+static int xgene_phy_hw_initialize(struct xgene_phy_ctx *ctx,
+ enum clk_type_t clk_type,
+ int ssc_enable)
+{
+ int rc;
+
+ dev_dbg(ctx->dev, "PHY init clk type %d\n", clk_type);
+
+ /* Configure internal ref clock CMU */
+ if (clk_type == CLK_INT_DIFF || clk_type == CLK_INT_SING)
+ if (xgene_phy_hw_init_ref_cmu(ctx, clk_type))
+ return -ENODEV;
+
+ if (ctx->mode == MODE_SATA) {
+ rc = xgene_phy_hw_init_sata(ctx, clk_type, ssc_enable);
+ if (rc)
+ return rc;
+ } else {
+ dev_err(ctx->dev, "Un-supported customer pin mode %d\n",
+ ctx->mode);
+ return -ENODEV;
+ }
+
+ ctx->inited = 1;
+ return 0;
+}
+
+/* Receiver Offset Calibration:
+ * Calibrate the receiver signal path offset in two steps - summar and
+ * latch calibrations
+ */
+static void xgene_phy_force_lat_summer_cal(struct xgene_phy_ctx *ctx, int lane)
+{
+ int i;
+ struct {
+ u32 reg;
+ u32 val;
+ } serdes_reg[] = {
+ {RXTX_REG38, 0x0},
+ {RXTX_REG39, 0xff00},
+ {RXTX_REG40, 0xffff},
+ {RXTX_REG41, 0xffff},
+ {RXTX_REG42, 0xffff},
+ {RXTX_REG43, 0xffff},
+ {RXTX_REG44, 0xffff},
+ {RXTX_REG45, 0xffff},
+ {RXTX_REG46, 0xffff},
+ {RXTX_REG47, 0xfffc},
+ {RXTX_REG48, 0x0},
+ {RXTX_REG49, 0x0},
+ {RXTX_REG50, 0x0},
+ {RXTX_REG51, 0x0},
+ {RXTX_REG52, 0x0},
+ {RXTX_REG53, 0x0},
+ {RXTX_REG54, 0x0},
+ {RXTX_REG55, 0x0},
+ };
+
+ /* Start SUMMER calibration */
+ serdes_setbits(ctx, lane, RXTX_REG127,
+ RXTX_REG127_FORCE_SUM_CAL_START_MASK);
+ usleep_range(100, 500); /* Allow 100us for the HW to start */
+ serdes_clrbits(ctx, lane, RXTX_REG127,
+ RXTX_REG127_FORCE_SUM_CAL_START_MASK);
+
+ /* Start latch calibration */
+ serdes_setbits(ctx, lane, RXTX_REG127,
+ RXTX_REG127_FORCE_LAT_CAL_START_MASK);
+ usleep_range(100, 500); /* Allow 100us for the HW to start */
+ serdes_clrbits(ctx, lane, RXTX_REG127,
+ RXTX_REG127_FORCE_LAT_CAL_START_MASK);
+
+ /* Configure the PHY lane for calibration */
+ serdes_wr(ctx, lane, RXTX_REG28, 0x7);
+ serdes_wr(ctx, lane, RXTX_REG31, 0x7e00);
+ serdes_clrbits(ctx, lane, RXTX_REG4,
+ RXTX_REG4_TX_LOOPBACK_BUF_EN_MASK);
+ serdes_clrbits(ctx, lane, RXTX_REG7,
+ RXTX_REG7_LOOP_BACK_ENA_CTLE_MASK);
+ for (i = 0; i < ARRAY_SIZE(serdes_reg); i++)
+ serdes_wr(ctx, lane, serdes_reg[i].reg,
+ serdes_reg[i].val);
+}
+
+static void xgene_phy_reset_rxd(struct xgene_phy_ctx *ctx, int lane)
+{
+ /* Reset digital Rx */
+ serdes_clrbits(ctx, lane, RXTX_REG7, RXTX_REG7_RESETB_RXD_MASK);
+ usleep_range(100, 500); /* Allow 100us for the HW to reset */
+ serdes_setbits(ctx, lane, RXTX_REG7, RXTX_REG7_RESETB_RXD_MASK);
+}
+
+static int xgene_phy_get_avg(int accum, int samples)
+{
+ return (accum + (samples / 2)) / samples;
+}
+
+static void xgene_phy_gen_avg_val(struct xgene_phy_ctx *ctx, int lane)
+{
+ int max_loop = 10;
+ int avg_loop = 0;
+ int lat_do = 0, lat_xo = 0, lat_eo = 0, lat_so = 0;
+ int lat_de = 0, lat_xe = 0, lat_ee = 0, lat_se = 0;
+ int sum_cal = 0;
+ int lat_do_itr, lat_xo_itr, lat_eo_itr, lat_so_itr;
+ int lat_de_itr, lat_xe_itr, lat_ee_itr, lat_se_itr;
+ int sum_cal_itr;
+ int fail_even;
+ int fail_odd;
+ u32 dfe_preset;
+ u32 val;
+
+ dev_dbg(ctx->dev, "Generating avg calibration value for lane %d\n",
+ lane);
+
+ /* Enable RX Hi-Z termination */
+ serdes_setbits(ctx, lane, RXTX_REG12,
+ RXTX_REG12_RX_DET_TERM_ENABLE_MASK);
+ /* Turn off DFE */
+ serdes_wr(ctx, lane, RXTX_REG28, 0x0000);
+ /* DFE Presets to zero */
+ serdes_rd(ctx, lane, RXTX_REG31, &dfe_preset);
+ serdes_wr(ctx, lane, RXTX_REG31, 0x0000);
+
+ /*
+ * Receiver Offset Calibration:
+ * Calibrate the receiver signal path offset in two steps - summar
+ * and latch calibration.
+ * Runs the "Receiver Offset Calibration multiple times to determine
+ * the average value to use.
+ */
+ while (avg_loop < max_loop) {
+ /* Start the calibration */
+ xgene_phy_force_lat_summer_cal(ctx, lane);
+
+ serdes_rd(ctx, lane, RXTX_REG21, &val);
+ lat_do_itr = RXTX_REG21_DO_LATCH_CALOUT_RD(val);
+ lat_xo_itr = RXTX_REG21_XO_LATCH_CALOUT_RD(val);
+ fail_odd = RXTX_REG21_LATCH_CAL_FAIL_ODD_RD(val);
+
+ serdes_rd(ctx, lane, RXTX_REG22, &val);
+ lat_eo_itr = RXTX_REG22_EO_LATCH_CALOUT_RD(val);
+ lat_so_itr = RXTX_REG22_SO_LATCH_CALOUT_RD(val);
+ fail_even = RXTX_REG22_LATCH_CAL_FAIL_EVEN_RD(val);
+
+ serdes_rd(ctx, lane, RXTX_REG23, &val);
+ lat_de_itr = RXTX_REG23_DE_LATCH_CALOUT_RD(val);
+ lat_xe_itr = RXTX_REG23_XE_LATCH_CALOUT_RD(val);
+
+ serdes_rd(ctx, lane, RXTX_REG24, &val);
+ lat_ee_itr = RXTX_REG24_EE_LATCH_CALOUT_RD(val);
+ lat_se_itr = RXTX_REG24_SE_LATCH_CALOUT_RD(val);
+
+ serdes_rd(ctx, lane, RXTX_REG121, &val);
+ sum_cal_itr = RXTX_REG121_SUMOS_CAL_CODE_RD(val);
+
+ /* Check for failure. If passed, sum them for averaging */
+ if ((fail_even == 0 || fail_even == 1) &&
+ (fail_odd == 0 || fail_odd == 1)) {
+ lat_do += lat_do_itr;
+ lat_xo += lat_xo_itr;
+ lat_eo += lat_eo_itr;
+ lat_so += lat_so_itr;
+ lat_de += lat_de_itr;
+ lat_xe += lat_xe_itr;
+ lat_ee += lat_ee_itr;
+ lat_se += lat_se_itr;
+ sum_cal += sum_cal_itr;
+
+ dev_dbg(ctx->dev, "Iteration %d:\n", avg_loop);
+ dev_dbg(ctx->dev, "DO 0x%x XO 0x%x EO 0x%x SO 0x%x\n",
+ lat_do_itr, lat_xo_itr, lat_eo_itr,
+ lat_so_itr);
+ dev_dbg(ctx->dev, "DE 0x%x XE 0x%x EE 0x%x SE 0x%x\n",
+ lat_de_itr, lat_xe_itr, lat_ee_itr,
+ lat_se_itr);
+ dev_dbg(ctx->dev, "SUM 0x%x\n", sum_cal_itr);
+ ++avg_loop;
+ } else {
+ dev_err(ctx->dev,
+ "Receiver calibration failed at %d loop\n",
+ avg_loop);
+ }
+ xgene_phy_reset_rxd(ctx, lane);
+ }
+
+ /* Update latch manual calibration with average value */
+ serdes_rd(ctx, lane, RXTX_REG127, &val);
+ val = RXTX_REG127_DO_LATCH_MANCAL_SET(val,
+ xgene_phy_get_avg(lat_do, max_loop));
+ val = RXTX_REG127_XO_LATCH_MANCAL_SET(val,
+ xgene_phy_get_avg(lat_xo, max_loop));
+ serdes_wr(ctx, lane, RXTX_REG127, val);
+
+ serdes_rd(ctx, lane, RXTX_REG128, &val);
+ val = RXTX_REG128_EO_LATCH_MANCAL_SET(val,
+ xgene_phy_get_avg(lat_eo, max_loop));
+ val = RXTX_REG128_SO_LATCH_MANCAL_SET(val,
+ xgene_phy_get_avg(lat_so, max_loop));
+ serdes_wr(ctx, lane, RXTX_REG128, val);
+
+ serdes_rd(ctx, lane, RXTX_REG129, &val);
+ val = RXTX_REG129_DE_LATCH_MANCAL_SET(val,
+ xgene_phy_get_avg(lat_de, max_loop));
+ val = RXTX_REG129_XE_LATCH_MANCAL_SET(val,
+ xgene_phy_get_avg(lat_xe, max_loop));
+ serdes_wr(ctx, lane, RXTX_REG129, val);
+
+ serdes_rd(ctx, lane, RXTX_REG130, &val);
+ val = RXTX_REG130_EE_LATCH_MANCAL_SET(val,
+ xgene_phy_get_avg(lat_ee, max_loop));
+ val = RXTX_REG130_SE_LATCH_MANCAL_SET(val,
+ xgene_phy_get_avg(lat_se, max_loop));
+ serdes_wr(ctx, lane, RXTX_REG130, val);
+
+ /* Update SUMMER calibration with average value */
+ serdes_rd(ctx, lane, RXTX_REG14, &val);
+ val = RXTX_REG14_CLTE_LATCAL_MAN_PROG_SET(val,
+ xgene_phy_get_avg(sum_cal, max_loop));
+ serdes_wr(ctx, lane, RXTX_REG14, val);
+
+ dev_dbg(ctx->dev, "Average Value:\n");
+ dev_dbg(ctx->dev, "DO 0x%x XO 0x%x EO 0x%x SO 0x%x\n",
+ xgene_phy_get_avg(lat_do, max_loop),
+ xgene_phy_get_avg(lat_xo, max_loop),
+ xgene_phy_get_avg(lat_eo, max_loop),
+ xgene_phy_get_avg(lat_so, max_loop));
+ dev_dbg(ctx->dev, "DE 0x%x XE 0x%x EE 0x%x SE 0x%x\n",
+ xgene_phy_get_avg(lat_de, max_loop),
+ xgene_phy_get_avg(lat_xe, max_loop),
+ xgene_phy_get_avg(lat_ee, max_loop),
+ xgene_phy_get_avg(lat_se, max_loop));
+ dev_dbg(ctx->dev, "SUM 0x%x\n",
+ xgene_phy_get_avg(sum_cal, max_loop));
+
+ serdes_rd(ctx, lane, RXTX_REG14, &val);
+ val = RXTX_REG14_CTLE_LATCAL_MAN_ENA_SET(val, 0x1);
+ serdes_wr(ctx, lane, RXTX_REG14, val);
+ dev_dbg(ctx->dev, "Enable Manual Summer calibration\n");
+
+ serdes_rd(ctx, lane, RXTX_REG127, &val);
+ val = RXTX_REG127_LATCH_MAN_CAL_ENA_SET(val, 0x1);
+ dev_dbg(ctx->dev, "Enable Manual Latch calibration\n");
+ serdes_wr(ctx, lane, RXTX_REG127, val);
+
+ /* Disable RX Hi-Z termination */
+ serdes_rd(ctx, lane, RXTX_REG12, &val);
+ val = RXTX_REG12_RX_DET_TERM_ENABLE_SET(val, 0);
+ serdes_wr(ctx, lane, RXTX_REG12, val);
+ /* Turn on DFE */
+ serdes_wr(ctx, lane, RXTX_REG28, 0x0007);
+ /* Restore DFE preset */
+ serdes_wr(ctx, lane, RXTX_REG31, dfe_preset);
+}
+
+static int xgene_phy_hw_init(struct phy *phy)
+{
+ struct xgene_phy_ctx *ctx = phy_get_drvdata(phy);
+ int rc;
+ int i;
+
+ rc = xgene_phy_hw_initialize(ctx, CLK_EXT_DIFF, SSC_DISABLE);
+ if (rc) {
+ dev_err(ctx->dev, "PHY initialize failed %d\n", rc);
+ return rc;
+ }
+
+ /* Setup clock properly after PHY configuration */
+ if (!IS_ERR(ctx->clk)) {
+ /* HW requires an toggle */
+ clk_prepare_enable(ctx->clk);
+ clk_disable_unprepare(ctx->clk);
+ clk_prepare_enable(ctx->clk);
+ }
+
+ /* Compute average value */
+ for (i = 0; i < MAX_LANE; i++)
+ xgene_phy_gen_avg_val(ctx, i);
+
+ dev_dbg(ctx->dev, "PHY initialized\n");
+ return 0;
+}
+
+/* This function is used to configure the PHY to operation as either SATA Gen1
+ * or Gen2 speed.
+ */
+static void xgene_phy_sata_force_gen(struct xgene_phy_ctx *ctx,
+ int lane, int gen)
+{
+ u32 val;
+
+ serdes_rd(ctx, lane, RXTX_REG38, &val);
+ val = RXTX_REG38_CUSTOMER_PINMODE_INV_SET(val, 0x400);
+ serdes_wr(ctx, lane, RXTX_REG38, val);
+
+ /* Set boost control value */
+ serdes_rd(ctx, lane, RXTX_REG1, &val);
+ val = RXTX_REG1_RXACVCM_SET(val, 0x7);
+ val = RXTX_REG1_CTLE_EQ_SET(val,
+ ctx->sata_param.txboostgain[lane * 3 +
+ ctx->sata_param.speed[lane]]);
+ serdes_wr(ctx, lane, RXTX_REG1, val);
+
+ serdes_rd(ctx, lane, RXTX_REG125, &val);
+ val = RXTX_REG125_PQ_REG_SET(val,
+ ctx->sata_param.txeyetuning[lane * 3 +
+ ctx->sata_param.speed[lane]]);
+ serdes_wr(ctx, lane, RXTX_REG125, val);
+
+ serdes_rd(ctx, lane, RXTX_REG61, &val);
+ val = RXTX_REG61_SPD_SEL_CDR_SET(val,
+ ctx->sata_param.txspeed[ctx->sata_param.speed[0]]);
+ serdes_wr(ctx, lane, RXTX_REG61, val);
+}
+
+static int xgene_phy_set_speed(struct phy *phy, int lane, u64 speed)
+{
+ struct xgene_phy_ctx *ctx = phy_get_drvdata(phy);
+
+ if (lane >= MAX_LANE)
+ return -EINVAL;
+ if (ctx->mode == MODE_SATA) {
+ if (speed >= 6000000000ULL /* 6Gbps */) {
+ ctx->sata_param.speed[lane] = 2;
+ xgene_phy_sata_force_gen(ctx, lane, SATA_SPD_SEL_GEN3);
+ } else if (speed >= 3000000000ULL /* 3Gbps */) {
+ ctx->sata_param.speed[lane] = 1;
+ xgene_phy_sata_force_gen(ctx, lane, SATA_SPD_SEL_GEN2);
+ } else if (speed >= 1500000000ULL /* 1.5Gbps */) {
+ ctx->sata_param.speed[lane] = 0;
+ xgene_phy_sata_force_gen(ctx, lane, SATA_SPD_SEL_GEN1);
+ } else if (speed == 0) {
+ xgene_phy_reset_rxd(ctx, lane);
+ }
+ }
+ return 0;
+}
+
+static const struct phy_ops xgene_phy_ops = {
+ .init = xgene_phy_hw_init,
+ .set_speed = xgene_phy_set_speed,
+ .owner = THIS_MODULE,
+};
+
+static struct phy *xgene_phy_xlate(struct device *dev,
+ struct of_phandle_args *args)
+{
+ struct xgene_phy_ctx *ctx = dev_get_drvdata(dev);
+
+ if (args->args_count > 0) {
+ if (args->args[0] >= MODE_MAX)
+ return NULL;
+ ctx->mode = args->args[0];
+ }
+ return ctx->phy;
+}
+
+static void xgene_phy_get_param(struct platform_device *pdev,
+ const char *name, u32 *buffer,
+ int count, u32 *default_val,
+ u32 conv_factor)
+{
+ int i;
+
+ if (!of_property_read_u32_array(pdev->dev.of_node, name, buffer,
+ count)) {
+ for (i = 0; i < count; i++)
+ buffer[i] /= conv_factor;
+ return;
+ }
+ /* Does not exist, load default */
+ for (i = 0; i < count; i++)
+ buffer[i] = default_val[i % 3];
+}
+
+static int xgene_phy_probe(struct platform_device *pdev)
+{
+ struct phy_provider *phy_provider;
+ struct xgene_phy_ctx *ctx;
+ struct resource *res;
+ int rc = 0;
+ u32 default_spd[] = DEFAULT_SATA_SPD_SEL;
+ u32 default_txboost_gain[] = DEFAULT_SATA_TXBOOST_GAIN;
+ u32 default_txeye_direction[] = DEFAULT_SATA_TXEYEDIRECTION;
+ u32 default_txeye_tuning[] = DEFAULT_SATA_TXEYETUNING;
+ u32 default_txamp[] = DEFAULT_SATA_TXAMP;
+ u32 default_txcn1[] = DEFAULT_SATA_TXCN1;
+ u32 default_txcn2[] = DEFAULT_SATA_TXCN2;
+ u32 default_txcp1[] = DEFAULT_SATA_TXCP1;
+ int res_idx = 0;
+ int i;
+
+ ctx = devm_kzalloc(&pdev->dev, sizeof(*ctx), GFP_KERNEL);
+ if (!ctx) {
+ dev_err(&pdev->dev, "can't allocate PHY context\n");
+ return -ENOMEM;
+ }
+ ctx->dev = &pdev->dev;
+ ctx->inited = 0;
+
+ res = platform_get_resource(pdev, IORESOURCE_MEM, res_idx++);
+ if (!res) {
+ dev_err(&pdev->dev, "no PHY resource address\n");
+ goto error;
+ }
+ ctx->sds_base = devm_ioremap_resource(&pdev->dev, res);
+ if (!ctx->sds_base) {
+ dev_err(&pdev->dev, "can't map PHY resource\n");
+ rc = -ENOMEM;
+ goto error;
+ }
+
+ ctx->ref_100MHz = 1;
+ if (of_device_is_compatible(pdev->dev.of_node, XGENE_PHY_EXT_DTS)) {
+ res = platform_get_resource(pdev, IORESOURCE_MEM, res_idx++);
+ if (!res) {
+ dev_err(&pdev->dev, "no external resource address\n");
+ goto error;
+ }
+ ctx->ext_cmu_base = devm_ioremap_resource(&pdev->dev, res);
+ if (!ctx->ext_cmu_base) {
+ dev_err(&pdev->dev, "can't map external resource\n");
+ rc = -ENOMEM;
+ goto error;
+ }
+ ctx->ref_100MHz = 0;
+ }
+
+ /* Retrieve optional clock */
+ ctx->clk = clk_get(&pdev->dev, NULL);
+
+ /* Load override paramaters */
+ xgene_phy_get_param(pdev, "apm,tx-eye-tuning",
+ ctx->sata_param.txeyetuning, 6, default_txeye_tuning, 1);
+ xgene_phy_get_param(pdev, "apm,tx-eye-direction",
+ ctx->sata_param.txeyedirection, 6, default_txeye_direction, 1);
+ xgene_phy_get_param(pdev, "apm,tx-boost-gain",
+ ctx->sata_param.txboostgain, 6, default_txboost_gain, 1);
+ xgene_phy_get_param(pdev, "apm,tx-amplitude",
+ ctx->sata_param.txamplitude, 6, default_txamp, 13300);
+ xgene_phy_get_param(pdev, "apm,tx-pre-cursor1",
+ ctx->sata_param.txprecursor_cn1, 6, default_txcn1, 18200);
+ xgene_phy_get_param(pdev, "apm,tx-pre-cursor2",
+ ctx->sata_param.txprecursor_cn2, 6, default_txcn2, 18200);
+ xgene_phy_get_param(pdev, "apm,tx-post-cursor",
+ ctx->sata_param.txpostcursor_cp1, 6, default_txcp1, 18200);
+ xgene_phy_get_param(pdev, "apm,tx-speed",
+ ctx->sata_param.txspeed, 3, default_spd, 1);
+ for (i = 0; i < MAX_LANE; i++)
+ ctx->sata_param.speed[i] = 2; /* Default to Gen3 */
+
+ ctx->dev = &pdev->dev;
+ platform_set_drvdata(pdev, ctx);
+
+ phy_provider = devm_of_phy_provider_register(ctx->dev,
+ xgene_phy_xlate);
+ if (IS_ERR(phy_provider)) {
+ rc = PTR_ERR(phy_provider);
+ goto error;
+ }
+
+ ctx->phy = devm_phy_create(ctx->dev, &xgene_phy_ops, NULL);
+ if (IS_ERR(ctx->phy)) {
+ dev_dbg(&pdev->dev, "Failed to create PHY\n");
+ return PTR_ERR(ctx->phy);
+ }
+
+ phy_set_drvdata(ctx->phy, ctx);
+
+ dev_info(&pdev->dev, "X-Gene PHY registered\n");
+ return 0;
+
+error:
+ return rc;
+}
+
+static const struct of_device_id xgene_phy_of_match[] = {
+ {.compatible = XGENE_PHY_DTS,},
+ {.compatible = XGENE_PHY_EXT_DTS,},
+ {},
+};
+MODULE_DEVICE_TABLE(of, xgene_phy_of_match);
+
+static struct platform_driver xgene_phy_driver = {
+ .probe = xgene_phy_probe,
+ .driver = {
+ .name = "xgene-phy",
+ .owner = THIS_MODULE,
+ .of_match_table = xgene_phy_of_match,
+ },
+};
+
+static int __init xgene_phy_init(void)
+{
+ return platform_driver_register(&xgene_phy_driver);
+}
+module_init(xgene_phy_init);
+
+static void __exit xgene_phy_exit(void)
+{
+ platform_driver_unregister(&xgene_phy_driver);
+}
+module_exit(xgene_phy_exit);
+
+MODULE_DESCRIPTION("APM X-Gene Multi-Purpose PHY driver");
+MODULE_AUTHOR("Loc Ho <lho@apm.com>");
+MODULE_LICENSE("GPL");
+MODULE_VERSION("0.1");
--
1.5.5
^ permalink raw reply related
* [PATCH v7 2/4] Documentation: Add APM X-Gene SoC 15Gbps Multi-purpose PHY driver binding documentation
From: Loc Ho @ 2014-01-15 7:10 UTC (permalink / raw)
To: linux-arm-kernel
In-Reply-To: <1389769840-15469-2-git-send-email-lho@apm.com>
Signed-off-by: Loc Ho <lho@apm.com>
Signed-off-by: Tuan Phan <tphan@apm.com>
Signed-off-by: Suman Tripathi <stripathi@apm.com>
---
.../devicetree/bindings/phy/apm-xgene-phy.txt | 94 ++++++++++++++++++++
1 files changed, 94 insertions(+), 0 deletions(-)
create mode 100644 Documentation/devicetree/bindings/phy/apm-xgene-phy.txt
diff --git a/Documentation/devicetree/bindings/phy/apm-xgene-phy.txt b/Documentation/devicetree/bindings/phy/apm-xgene-phy.txt
new file mode 100644
index 0000000..4ffbae0
--- /dev/null
+++ b/Documentation/devicetree/bindings/phy/apm-xgene-phy.txt
@@ -0,0 +1,94 @@
+* APM X-Gene 15Gbps Multi-purpose PHY nodes
+
+PHY nodes are defined to describe on-chip 15Gbps Multi-purpose PHY. Each
+PHY (pair of lanes) has its own node.
+
+Required properties:
+- compatible : Shall be "apm,xgene-phy" or
+ "apm,xgene-phy-ext". The "apm,xgene-phy" describes
+ an PHY with internal reference PLL located within
+ the IP. The "apm,xgene-phy-ext" describes an PHY
+ where the internal reference PLL located outside of
+ the IP.
+- reg : First PHY memory resource is the SDS PHY access
+ resource.
+ Second PHY memory resource is the SDS PHY access
+ resource outside of the IP if it is type
+ "apm,xgene-phy-ext".
+- #phy-cells : Shall be 1 as it expects one argument for setting
+ the mode of the PHY. Possible values are 0 (SATA),
+ 1 (SGMII), 2 (PCIe), 3 (USB), and 4 (XFI).
+
+Optional properties:
+- status : Shall be "ok" if enabled or "disabled" if disabled.
+ Default is "ok".
+- apm,tx-eye-tuning : Manual control to fine tune the capture of the serial
+ bit lines from the automatic calibrated position.
+ Two set of 3-tuple setting for each (up to 3)
+ supported link speed on the host. Range from 0 to
+ 127 in unit of one bit period. Default is 10.
+- apm,tx-eye-direction : Eye tuning manual control direction. 0 means sample
+ data earlier than the nominal sampling point. 1 means
+ sample data later than the nominal sampling point.
+ Two set of 3-tuple setting for each (up to 3)
+ supported link speed on the host. Default is 0.
+- apm,tx-boost-gain : Frequency boost AC (LSB 3-bit) and DC (2-bit)
+ gain control. Two set of 3-tuple setting for each
+ (up to 3) supported link speed on the host. Range is
+ between 0 to 31 in unit of dB. Default is 3.
+- apm,tx-amplitude : Amplitude control. Two set of 3-tuple setting for
+ each (up to 3) supported link speed on the host.
+ Range is between 0 to 199500 in unit of uV.
+ Default is 199500 uV.
+- apm,tx-pre-cursor1 : 1st pre-cursor emphasis taps control. Two set of
+ 3-tuple setting for each (up to 3) supported link
+ speed on the host. Range is 0 to 273000 in unit of
+ uV. Default is 0.
+- apm,tx-pre-cursor2 : 2st pre-cursor emphasis taps control. Two set of
+ 3-tuple setting for each (up to 3) supported link
+ speed on the host. Range is 0 to 127400 in unit uV.
+ Default is 0x0.
+- apm,tx-post-cursor : Post-cursor emphasis taps control. Two set of
+ 3-tuple setting for Gen1, Gen2, and Gen3. Range is
+ between 0 to 0x1f in unit of 18.2mV. Default is 0xf.
+- apm,tx-speed : Tx operating speed. One set of 3-tuple for each
+ supported link speed on the host.
+ 0 = 1-2Gbps
+ 1 = 2-4Gbps (1st tuple default)
+ 2 = 4-8Gbps
+ 3 = 8-15Gbps (2nd tuple default)
+ 4 = 2.5-4Gbps
+ 5 = 4-5Gbps
+ 6 = 5-6Gbps
+ 7 = 6-16Gbps (3rd tuple default)
+
+NOTE: PHY override parameters are board specific setting.
+
+Example:
+ phy1: phy at 1f21a000 {
+ compatible = "apm,xgene-phy";
+ reg = <0x0 0x1f21a000 0x0 0x100>;
+ #phy-cells = <1>;
+ status = "disabled";
+ apm,tx-boost-gain = <2 2 2 2 2 2>;
+ apm,tx-eye-tuning = <10 10 10 10 10 10>;
+ };
+
+ phy2: phy at 1f22a000 {
+ compatible = "apm,xgene-phy";
+ reg = <0x0 0x1f22a000 0x0 0x100>;
+ #phy-cells = <1>;
+ status = "ok";
+ apm,tx-boost-gain = <2 2 2 2 2 2>;
+ apm,tx-eye-tuning = <10 10 10 5 5 5>;
+ };
+
+ phy3: phy at 1f23a000 {
+ compatible = "apm,xgene-phy-ext";
+ reg = <0x0 0x1f23a000 0x0 0x100>,
+ <0x0 0x1f2d0000 0x0 0x100>;
+ #phy-cells = <1>;
+ status = "ok";
+ apm,tx-boost-gain = <3 3 3 3 3 3>;
+ apm,tx-eye-tuning = <10 10 10 12 12 12>;
+ };
--
1.5.5
^ permalink raw reply related
* [PATCH v7 1/4] PHY: Add function set_speed to generic PHY framework
From: Loc Ho @ 2014-01-15 7:10 UTC (permalink / raw)
To: linux-arm-kernel
In-Reply-To: <1389769840-15469-1-git-send-email-lho@apm.com>
This patch adds function set_speed to the generic PHY framework operation
structure. This function can be called to instruct the PHY underlying layer
at specified lane to configure for specified speed in hertz.
Signed-off-by: Loc Ho <lho@apm.com>
---
drivers/phy/phy-core.c | 21 +++++++++++++++++++++
include/linux/phy/phy.h | 8 ++++++++
2 files changed, 29 insertions(+), 0 deletions(-)
diff --git a/drivers/phy/phy-core.c b/drivers/phy/phy-core.c
index 03cf8fb..b525e72 100644
--- a/drivers/phy/phy-core.c
+++ b/drivers/phy/phy-core.c
@@ -239,6 +239,27 @@ out:
}
EXPORT_SYMBOL_GPL(phy_power_off);
+int phy_set_speed(struct phy *phy, int lane, u64 speed)
+{
+ int ret = -ENOTSUPP;
+
+ mutex_lock(&phy->mutex);
+ if (phy->ops->set_speed) {
+ ret = phy->ops->set_speed(phy, lane, speed);
+ if (ret < 0) {
+ dev_err(&phy->dev, "phy set speed failed --> %d\n",
+ ret);
+ goto out;
+ }
+ }
+
+out:
+ mutex_unlock(&phy->mutex);
+
+ return ret;
+}
+EXPORT_SYMBOL_GPL(phy_set_speed);
+
/**
* of_phy_get() - lookup and obtain a reference to a phy by phandle
* @dev: device that requests this phy
diff --git a/include/linux/phy/phy.h b/include/linux/phy/phy.h
index 6d72269..ed2b897 100644
--- a/include/linux/phy/phy.h
+++ b/include/linux/phy/phy.h
@@ -27,6 +27,7 @@ struct phy;
* @exit: operation to be performed while exiting
* @power_on: powering on the phy
* @power_off: powering off the phy
+ * @set_speed: set operation speed in hz
* @owner: the module owner containing the ops
*/
struct phy_ops {
@@ -34,6 +35,7 @@ struct phy_ops {
int (*exit)(struct phy *phy);
int (*power_on)(struct phy *phy);
int (*power_off)(struct phy *phy);
+ int (*set_speed)(struct phy *phy, int lane, u64 speed);
struct module *owner;
};
@@ -127,6 +129,7 @@ int phy_init(struct phy *phy);
int phy_exit(struct phy *phy);
int phy_power_on(struct phy *phy);
int phy_power_off(struct phy *phy);
+int phy_set_speed(struct phy *phy, int lane, u64 speed);
struct phy *phy_get(struct device *dev, const char *string);
struct phy *devm_phy_get(struct device *dev, const char *string);
void phy_put(struct phy *phy);
@@ -199,6 +202,11 @@ static inline int phy_power_off(struct phy *phy)
return -ENOSYS;
}
+static inline int phy_set_speed(struct phy *phy, int lane, u64 speed)
+{
+ return -ENOSYS;
+}
+
static inline struct phy *phy_get(struct device *dev, const char *string)
{
return ERR_PTR(-ENOSYS);
--
1.5.5
^ permalink raw reply related
* [PATCH v7 0/4] PHY: Add APM X-Gene SoC 15Gbps Multi-purpose PHY support
From: Loc Ho @ 2014-01-15 7:10 UTC (permalink / raw)
To: linux-arm-kernel
This patch adds support for APM X-Gene SoC 15Gbps Multi-purpose PHY. This
is the physical layer interface for the corresponding host controller. This
driver uses the new PHY generic framework posted by Kishon Vijay Abrahm.
In addition, the new PHY generic framework is patched to provide an
function to set the speed of the PHY.
v7
* Add/Update PHY CMU/lane parameters and its default values
* Rename variable enable_manual_cal to preA3Chip
* Remove function phy_rd, phy_wr, and phy_wr_flush
* Change function cmu_wr, cmu_rd, cmu_toggle1to0, cmu_clrbits, cmu_setbits,
serdes_wr, serdes_rd, serdes_clrbits, and serdes_setbits to take context
instead void *
* Remove function serdes_toggle1to0
* Decrease the polling time from 10ms to 1ms on CMU calibration complete
detection
* Move all SATA specify code in function xgene_phy_hw_initialize into
function xgene_phy_hw_init_sata
* Add usleep_range after starting summer/latch calibrations
* Add usleep_range between receiver reset (function xgene_phy_reset_rxd)
* Save and restore PHY register 31 instead writing 0 in function
xgene_phy_gen_avg_val
* Update function xgene_phy_sata_force_gen programming sequences
* Add support to reset the receiver lane in function xgene_phy_set_speed
if speed is 0
* Update PHY parameters in DTS per controller
* Some minor code clean up
v6
* Move PHY document to Documentation/devicetree/binding/phy
* Remove _ADDR from all register defines
* Update clock-names property for sataphy1clk, sataphy2clk, and sataphy3clk
v5
* Update DTS binding documentation
* Remove direct clock access and use clock interface instead
* Change override parameters to decimal instead hex values
* Change apm,tx-amplitude, apm,tx-pre-cursor1, apm,tx-pre-cursor2,
apm,tx-post-cursor to be unit of uV
v4
* Update documentation with 'apm,' instead 'apm-'
* Change DTS override parameter to have 'apm,'
* Add select GENERIC_PHY to Kconfig PHY_XGENE
* Make override parameters to be pair of three values instead one
* Some minor comment and indentation changes
* Remove error register addition offset
* Add ULL to constants
* Use module_init instead subsys_initcall
* Make DTS node based on first register address
* Update override setting values
v3
* Major re-write of the code based on various review comments
* Support external clock only at the moment
* Support SATA mode only at the moment
* No UEFI support at the moment
v2
* Remove port knowledge from functions
* Make all functions static
* Remove ID completely
* Make resource requirement based on compatible type
* Rename override PHY parameters with more descriptive name
* Add override PHY parameter for per controller, per port, and per speed
* Patch the generic PHY frame to expose set_speed operation
v1
* Initial version
Signed-off-by: Loc Ho <lho@apm.com>
Signed-off-by: Tuan Phan <tphan@apm.com>
Signed-off-by: Suman Tripathi <stripathi@apm.com>
---
Loc Ho (4):
PHY: Add function set_speed to generic PHY framework
Documentation: Add APM X-Gene SoC 15Gbps Multi-purpose PHY driver
binding documentation
PHY: add APM X-Gene SoC 15Gbps Multi-purpose PHY driver
arm64: Add APM X-Gene SoC 15Gbps Multi-purpose PHY DTS entries
.../devicetree/bindings/phy/apm-xgene-phy.txt | 94 +
arch/arm64/boot/dts/apm-storm.dtsi | 76 +
drivers/phy/Kconfig | 7 +
drivers/phy/Makefile | 2 +
drivers/phy/phy-core.c | 21 +
drivers/phy/phy-xgene.c | 1894 ++++++++++++++++++++
include/linux/phy/phy.h | 8 +
7 files changed, 2102 insertions(+), 0 deletions(-)
create mode 100644 Documentation/devicetree/bindings/phy/apm-xgene-phy.txt
create mode 100644 drivers/phy/phy-xgene.c
^ permalink raw reply
* [PATCH] ARM: imx: clk-imx6sl: Suppress duplicate const sparse warning
From: Shawn Guo @ 2014-01-15 6:58 UTC (permalink / raw)
To: linux-arm-kernel
In-Reply-To: <1389766774-16661-1-git-send-email-Ying.Liu@freescale.com>
On Wed, Jan 15, 2014 at 02:19:34PM +0800, Liu Ying wrote:
> There should be no duplicate const specifiers for those static
> constant character string arrays defined for clock mux options.
> Also, the arrays are only taken as the 5th argument for the
> imx_clk_mux() function, which is in the type of 'const char
> **parents'. So, let's remove the 2nd const specifier right
> after 'char'.
>
> This patch fixes these sparse warnings:
> arch/arm/mach-imx/clk-imx6sl.c:21:25: warning: duplicate const
> arch/arm/mach-imx/clk-imx6sl.c:22:25: warning: duplicate const
> arch/arm/mach-imx/clk-imx6sl.c:23:25: warning: duplicate const
> arch/arm/mach-imx/clk-imx6sl.c:24:25: warning: duplicate const
> arch/arm/mach-imx/clk-imx6sl.c:25:25: warning: duplicate const
> arch/arm/mach-imx/clk-imx6sl.c:26:25: warning: duplicate const
> arch/arm/mach-imx/clk-imx6sl.c:27:25: warning: duplicate const
> arch/arm/mach-imx/clk-imx6sl.c:28:25: warning: duplicate const
> arch/arm/mach-imx/clk-imx6sl.c:29:25: warning: duplicate const
> arch/arm/mach-imx/clk-imx6sl.c:30:25: warning: duplicate const
> arch/arm/mach-imx/clk-imx6sl.c:31:25: warning: duplicate const
> arch/arm/mach-imx/clk-imx6sl.c:32:25: warning: duplicate const
> arch/arm/mach-imx/clk-imx6sl.c:33:25: warning: duplicate const
> arch/arm/mach-imx/clk-imx6sl.c:34:25: warning: duplicate const
> arch/arm/mach-imx/clk-imx6sl.c:35:25: warning: duplicate const
> arch/arm/mach-imx/clk-imx6sl.c:36:25: warning: duplicate const
> arch/arm/mach-imx/clk-imx6sl.c:37:25: warning: duplicate const
> arch/arm/mach-imx/clk-imx6sl.c:38:25: warning: duplicate const
> arch/arm/mach-imx/clk-imx6sl.c:39:25: warning: duplicate const
> arch/arm/mach-imx/clk-imx6sl.c:40:25: warning: duplicate const
> arch/arm/mach-imx/clk-imx6sl.c:41:25: warning: duplicate const
>
> Signed-off-by: Liu Ying <Ying.Liu@freescale.com>
> ---
> arch/arm/mach-imx/clk-imx6sl.c | 42 ++++++++++++++++++++--------------------
> 1 file changed, 21 insertions(+), 21 deletions(-)
>
> diff --git a/arch/arm/mach-imx/clk-imx6sl.c b/arch/arm/mach-imx/clk-imx6sl.c
> index c0c4ef5..9fad29a9 100644
> --- a/arch/arm/mach-imx/clk-imx6sl.c
> +++ b/arch/arm/mach-imx/clk-imx6sl.c
> @@ -18,27 +18,27 @@
> #include "clk.h"
> #include "common.h"
>
> -static const char const *step_sels[] = { "osc", "pll2_pfd2", };
...
> +static const char *step_sels[] = { "osc", "pll2_pfd2", };
So now we're getting the following checkpatch warning:
WARNING: static const char * array should probably be static const char * const
It was added into checkpatch.pl by commit cb710ec (scripts/checkpatch.pl:
add warnings for static char that could be static const char). I'm not
sure which warning we should ignore, the sparse or the checkpatch one.
Joe, comments?
Shawn
^ permalink raw reply
* [PATCH v2 0/5] mmc: sdhci: a few fixes on timeout and max_discard_to
From: Dong Aisheng @ 2014-01-15 6:53 UTC (permalink / raw)
To: linux-arm-kernel
In-Reply-To: <CAPDyKFo1qe5tbCRvXtAV=nc9Bg6=ajWosnQudXvixw5134wscw@mail.gmail.com>
Hi Ulf,
On Mon, Jan 13, 2014 at 9:01 PM, Ulf Hansson <ulf.hansson@linaro.org> wrote:
> On 17 December 2013 09:16, Dong Aisheng <b29396@freescale.com> wrote:
>> Patch 1~4 mainly fixes the issue that the max timeout counter for uSDHC is
>> 1 << 28 rather than 1 << 27. 1~2 fix getting the max timeout counter
>> while 3~4 fix setting the max timeout.
>> Thus it introduces two new platform hook: get_max_timeout_count and set_timeout
>> for those platform which have different timeout setting.
>>
>> This issue is firstly reported here by Ed Sutter:
>> http://www.spinics.net/lists/linux-mmc/msg23375.html
>> The root cause is the max_discard_to got from uSDHC is too small, only 677ms,
>> which cause the max_discard_bytes for eMMC is only 512, then the discard operation
>> of mkfs.ext3 for an eMMC card is too slow, just like dead.
>> With above patches, the issue can be fixed.
>>
>> Patch 5 adds the capability to calcalute the max_discard_to dynamically
>> for SDHCI_QUIRK_DATA_TIMEOUT_USES_SDCLK.
>>
>> Originally the max_discard_to for a high speed sdhc card may be:
>> mmc1: new high speed SDHC card at address aaaa
>> mmc1: calculated max. discard sectors 49152 for timeout 1355 ms
>> After fix:
>> mmc1: new high speed SDHC card at address aaaa
>> mmc1: calculated max. discard sectors 712704 for timeout 5422 ms
>>
>> It also improves the card discard performance a lot due to max_discard_sectors
>> increase a lot.
>>
>> There's also discussion about remove max_discard_to limit here:
>> http://www.spinics.net/lists/linux-mmc/msg23395.html
>> But it does not help for uSDHC since we can observe data timeout
>> on a Toshiba SD3.0 cards if we do not disable data timeout interrupt.
>
> Just some more input to this discussion.
>
> As you probably know, I am working on a solution which in principle
> means we will fall back to use R1 responses instead of R1B.
> Particularly in those cases were the host driver supports
> MMC_CAP_WAIT_WHILE_BUSY and when it can't support the requested busy
> detection timeout. In other words, we will fall back to use poll with
> CMD13 instead, which is what happens already for those not supporting
> MMC_CAP_WAIT_WHILE_BUSY.
>
Will be glad to see your patches for that feature.
This patch series is intend to fix different issues, it does not
depend on your work.
Patch 1~4 is totally for fixing imx timeout issues.
Patch 5 is to add the capability to calcalute the max_discard_to dynamically.
This is also a fix of calculating max_discard_to for controllers using
SDHCI_QUIRK_DATA_TIMEOUT_USES_SDCLK.
It's especially useful for controllers using hw timeout with big
timeout capability.
They should be needed no matter whether polling way is used or not.
Regards
Dong Aisheng
> Kind regards
> Ulf Hansson
>
>>
>> ChangeLog:
>> v1->v2:
>> 1. change .get_max_timeout to .get_max_timeout_count to reuse some code
>> 2. some other minor changes based on Shawn's comment.
>> 3. patch 6 in v1 is dropped since not need anymore after change 1
>>
>>
>>
>> Dong Aisheng (5):
>> mmc: sdhci: add platfrom get_max_timeout_count hook
>> mmc: sdhci-esdhc-imx: fix incorrect max_discard_to for uSDHC
>> mmc: sdhci: add platform set_timeout hook
>> mmc: sdhci-esdhc-imx: set the correct max timeout value for uSDHC
>> mmc: sdhci: calculate max_discard_to dynamically for
>> SDHCI_QUIRK_DATA_TIMEOUT_USES_SDCLK
>>
>> drivers/mmc/host/sdhci-esdhc-imx.c | 20 +++++++++++
>> drivers/mmc/host/sdhci.c | 66 +++++++++++++++++++++++------------
>> drivers/mmc/host/sdhci.h | 3 ++
>> 3 files changed, 66 insertions(+), 23 deletions(-)
>>
>> --
>> 1.7.2.rc3
>>
>>
>> --
>> To unsubscribe from this list: send the line "unsubscribe linux-mmc" in
>> the body of a message to majordomo at vger.kernel.org
>> More majordomo info at http://vger.kernel.org/majordomo-info.html
>
> _______________________________________________
> linux-arm-kernel mailing list
> linux-arm-kernel at lists.infradead.org
> http://lists.infradead.org/mailman/listinfo/linux-arm-kernel
^ permalink raw reply
* [GIT PULL] clockevents/clocksources: 3.13 fixes
From: Ingo Molnar @ 2014-01-15 6:41 UTC (permalink / raw)
To: linux-arm-kernel
In-Reply-To: <52C14E45.5040403@linaro.org>
* Daniel Lezcano <daniel.lezcano@linaro.org> wrote:
>
> Hi Thomas and Ingo,
>
> here is a pull request for a single fix for 3.13. It is based on the
> latest timers/urgent update.
>
> * Soren Brinkmann fixed the cadence_ttc driver where a call to
> clk_get_rate happens in an interrupt context. More precisely in an
> IPI when the broadcast timer is initialized for each cpu in the
> cpuidle driver
>
> Thanks
> -- Daniel
>
> The following changes since commit b0031f227e47919797dc0e1c1990f3ef151ff0cc:
>
> Merge tag 's2mps11-build' of
> git://git.kernel.org/pub/scm/linux/kernel/git/broonie/regulator
> (2013-12-17 12:57:36 -0800)
>
> are available in the git repository at:
>
>
> git://git.linaro.org/people/daniel.lezcano/linux.git
> clockevents/3.13-fixes
>
> for you to fetch changes up to c1dcc927dae01dfd4904ee82ce2c00b50eab6dc3:
>
> clocksource: cadence_ttc: Fix mutex taken inside interrupt context
> (2013-12-30 11:32:24 +0100)
>
> ----------------------------------------------------------------
> Soren Brinkmann (1):
> clocksource: cadence_ttc: Fix mutex taken inside interrupt context
>
> drivers/clocksource/cadence_ttc_timer.c | 21 +++++++++++++--------
> 1 file changed, 13 insertions(+), 8 deletions(-)
Pulled into tip:timers/urgent, thanks Daniel!
Ingo
^ permalink raw reply
* [PATCH] ARM: imx: clk-vf610: Suppress duplicate const sparse warning
From: Liu Ying @ 2014-01-15 6:19 UTC (permalink / raw)
To: linux-arm-kernel
There should be no duplicate const specifiers for those static
constant character string arrays defined for clock mux options.
Also, the arrays are only taken as the 5th argument for the
imx_clk_mux() function, which is in the type of 'const char
**parents'. So, let's remove the 2nd const specifier right
after 'char'.
This patch fixes these sparse warnings:
arch/arm/mach-imx/clk-vf610.c:66:25: warning: duplicate const
arch/arm/mach-imx/clk-vf610.c:67:25: warning: duplicate const
arch/arm/mach-imx/clk-vf610.c:68:25: warning: duplicate const
arch/arm/mach-imx/clk-vf610.c:69:25: warning: duplicate const
arch/arm/mach-imx/clk-vf610.c:70:25: warning: duplicate const
arch/arm/mach-imx/clk-vf610.c:71:25: warning: duplicate const
arch/arm/mach-imx/clk-vf610.c:72:25: warning: duplicate const
arch/arm/mach-imx/clk-vf610.c:73:25: warning: duplicate const
arch/arm/mach-imx/clk-vf610.c:74:25: warning: duplicate const
arch/arm/mach-imx/clk-vf610.c:75:25: warning: duplicate const
arch/arm/mach-imx/clk-vf610.c:76:25: warning: duplicate const
arch/arm/mach-imx/clk-vf610.c:77:25: warning: duplicate const
arch/arm/mach-imx/clk-vf610.c:78:25: warning: duplicate const
arch/arm/mach-imx/clk-vf610.c:79:25: warning: duplicate const
arch/arm/mach-imx/clk-vf610.c:80:25: warning: duplicate const
arch/arm/mach-imx/clk-vf610.c:81:25: warning: duplicate const
arch/arm/mach-imx/clk-vf610.c:83:25: warning: duplicate const
arch/arm/mach-imx/clk-vf610.c:84:25: warning: duplicate const
Signed-off-by: Liu Ying <Ying.Liu@freescale.com>
---
arch/arm/mach-imx/clk-vf610.c | 36 ++++++++++++++++++------------------
1 file changed, 18 insertions(+), 18 deletions(-)
diff --git a/arch/arm/mach-imx/clk-vf610.c b/arch/arm/mach-imx/clk-vf610.c
index b169a39..41ba8f4 100644
--- a/arch/arm/mach-imx/clk-vf610.c
+++ b/arch/arm/mach-imx/clk-vf610.c
@@ -63,25 +63,25 @@ static void __iomem *anatop_base;
static void __iomem *ccm_base;
/* sources for multiplexer clocks, this is used multiple times */
-static const char const *fast_sels[] = { "firc", "fxosc", };
-static const char const *slow_sels[] = { "sirc_32k", "sxosc", };
-static const char const *pll1_sels[] = { "pll1_main", "pll1_pfd1", "pll1_pfd2", "pll1_pfd3", "pll1_pfd4", };
-static const char const *pll2_sels[] = { "pll2_main", "pll2_pfd1", "pll2_pfd2", "pll2_pfd3", "pll2_pfd4", };
-static const char const *sys_sels[] = { "fast_clk_sel", "slow_clk_sel", "pll2_pfd_sel", "pll2_main", "pll1_pfd_sel", "pll3_main", };
-static const char const *ddr_sels[] = { "pll2_pfd2", "sys_sel", };
-static const char const *rmii_sels[] = { "enet_ext", "audio_ext", "enet_50m", "enet_25m", };
-static const char const *enet_ts_sels[] = { "enet_ext", "fxosc", "audio_ext", "usb", "enet_ts", "enet_25m", "enet_50m", };
-static const char const *esai_sels[] = { "audio_ext", "mlb", "spdif_rx", "pll4_main_div", };
-static const char const *sai_sels[] = { "audio_ext", "mlb", "spdif_rx", "pll4_main_div", };
-static const char const *nfc_sels[] = { "platform_bus", "pll1_pfd1", "pll3_pfd1", "pll3_pfd3", };
-static const char const *qspi_sels[] = { "pll3_main", "pll3_pfd4", "pll2_pfd4", "pll1_pfd4", };
-static const char const *esdhc_sels[] = { "pll3_main", "pll3_pfd3", "pll1_pfd3", "platform_bus", };
-static const char const *dcu_sels[] = { "pll1_pfd2", "pll3_main", };
-static const char const *gpu_sels[] = { "pll2_pfd2", "pll3_pfd2", };
-static const char const *vadc_sels[] = { "pll6_main_div", "pll3_main_div", "pll3_main", };
+static const char *fast_sels[] = { "firc", "fxosc", };
+static const char *slow_sels[] = { "sirc_32k", "sxosc", };
+static const char *pll1_sels[] = { "pll1_main", "pll1_pfd1", "pll1_pfd2", "pll1_pfd3", "pll1_pfd4", };
+static const char *pll2_sels[] = { "pll2_main", "pll2_pfd1", "pll2_pfd2", "pll2_pfd3", "pll2_pfd4", };
+static const char *sys_sels[] = { "fast_clk_sel", "slow_clk_sel", "pll2_pfd_sel", "pll2_main", "pll1_pfd_sel", "pll3_main", };
+static const char *ddr_sels[] = { "pll2_pfd2", "sys_sel", };
+static const char *rmii_sels[] = { "enet_ext", "audio_ext", "enet_50m", "enet_25m", };
+static const char *enet_ts_sels[] = { "enet_ext", "fxosc", "audio_ext", "usb", "enet_ts", "enet_25m", "enet_50m", };
+static const char *esai_sels[] = { "audio_ext", "mlb", "spdif_rx", "pll4_main_div", };
+static const char *sai_sels[] = { "audio_ext", "mlb", "spdif_rx", "pll4_main_div", };
+static const char *nfc_sels[] = { "platform_bus", "pll1_pfd1", "pll3_pfd1", "pll3_pfd3", };
+static const char *qspi_sels[] = { "pll3_main", "pll3_pfd4", "pll2_pfd4", "pll1_pfd4", };
+static const char *esdhc_sels[] = { "pll3_main", "pll3_pfd3", "pll1_pfd3", "platform_bus", };
+static const char *dcu_sels[] = { "pll1_pfd2", "pll3_main", };
+static const char *gpu_sels[] = { "pll2_pfd2", "pll3_pfd2", };
+static const char *vadc_sels[] = { "pll6_main_div", "pll3_main_div", "pll3_main", };
/* FTM counter clock source, not module clock */
-static const char const *ftm_ext_sels[] = {"sirc_128k", "sxosc", "fxosc_half", "audio_ext", };
-static const char const *ftm_fix_sels[] = { "sxosc", "ipg_bus", };
+static const char *ftm_ext_sels[] = {"sirc_128k", "sxosc", "fxosc_half", "audio_ext", };
+static const char *ftm_fix_sels[] = { "sxosc", "ipg_bus", };
static struct clk_div_table pll4_main_div_table[] = {
{ .val = 0, .div = 1 },
--
1.7.9.5
^ permalink raw reply related
* [PATCH] ARM: imx: clk-imx6sl: Suppress duplicate const sparse warning
From: Liu Ying @ 2014-01-15 6:19 UTC (permalink / raw)
To: linux-arm-kernel
There should be no duplicate const specifiers for those static
constant character string arrays defined for clock mux options.
Also, the arrays are only taken as the 5th argument for the
imx_clk_mux() function, which is in the type of 'const char
**parents'. So, let's remove the 2nd const specifier right
after 'char'.
This patch fixes these sparse warnings:
arch/arm/mach-imx/clk-imx6sl.c:21:25: warning: duplicate const
arch/arm/mach-imx/clk-imx6sl.c:22:25: warning: duplicate const
arch/arm/mach-imx/clk-imx6sl.c:23:25: warning: duplicate const
arch/arm/mach-imx/clk-imx6sl.c:24:25: warning: duplicate const
arch/arm/mach-imx/clk-imx6sl.c:25:25: warning: duplicate const
arch/arm/mach-imx/clk-imx6sl.c:26:25: warning: duplicate const
arch/arm/mach-imx/clk-imx6sl.c:27:25: warning: duplicate const
arch/arm/mach-imx/clk-imx6sl.c:28:25: warning: duplicate const
arch/arm/mach-imx/clk-imx6sl.c:29:25: warning: duplicate const
arch/arm/mach-imx/clk-imx6sl.c:30:25: warning: duplicate const
arch/arm/mach-imx/clk-imx6sl.c:31:25: warning: duplicate const
arch/arm/mach-imx/clk-imx6sl.c:32:25: warning: duplicate const
arch/arm/mach-imx/clk-imx6sl.c:33:25: warning: duplicate const
arch/arm/mach-imx/clk-imx6sl.c:34:25: warning: duplicate const
arch/arm/mach-imx/clk-imx6sl.c:35:25: warning: duplicate const
arch/arm/mach-imx/clk-imx6sl.c:36:25: warning: duplicate const
arch/arm/mach-imx/clk-imx6sl.c:37:25: warning: duplicate const
arch/arm/mach-imx/clk-imx6sl.c:38:25: warning: duplicate const
arch/arm/mach-imx/clk-imx6sl.c:39:25: warning: duplicate const
arch/arm/mach-imx/clk-imx6sl.c:40:25: warning: duplicate const
arch/arm/mach-imx/clk-imx6sl.c:41:25: warning: duplicate const
Signed-off-by: Liu Ying <Ying.Liu@freescale.com>
---
arch/arm/mach-imx/clk-imx6sl.c | 42 ++++++++++++++++++++--------------------
1 file changed, 21 insertions(+), 21 deletions(-)
diff --git a/arch/arm/mach-imx/clk-imx6sl.c b/arch/arm/mach-imx/clk-imx6sl.c
index c0c4ef5..9fad29a9 100644
--- a/arch/arm/mach-imx/clk-imx6sl.c
+++ b/arch/arm/mach-imx/clk-imx6sl.c
@@ -18,27 +18,27 @@
#include "clk.h"
#include "common.h"
-static const char const *step_sels[] = { "osc", "pll2_pfd2", };
-static const char const *pll1_sw_sels[] = { "pll1_sys", "step", };
-static const char const *ocram_alt_sels[] = { "pll2_pfd2", "pll3_pfd1", };
-static const char const *ocram_sels[] = { "periph", "ocram_alt_sels", };
-static const char const *pre_periph_sels[] = { "pll2_bus", "pll2_pfd2", "pll2_pfd0", "pll2_198m", };
-static const char const *periph_clk2_sels[] = { "pll3_usb_otg", "osc", "osc", "dummy", };
-static const char const *periph2_clk2_sels[] = { "pll3_usb_otg", "pll2_bus", };
-static const char const *periph_sels[] = { "pre_periph_sel", "periph_clk2_podf", };
-static const char const *periph2_sels[] = { "pre_periph2_sel", "periph2_clk2_podf", };
-static const char const *csi_lcdif_sels[] = { "mmdc", "pll2_pfd2", "pll3_120m", "pll3_pfd1", };
-static const char const *usdhc_sels[] = { "pll2_pfd2", "pll2_pfd0", };
-static const char const *ssi_sels[] = { "pll3_pfd2", "pll3_pfd3", "pll4_post_div", "dummy", };
-static const char const *perclk_sels[] = { "ipg", "osc", };
-static const char const *epdc_pxp_sels[] = { "mmdc", "pll3_usb_otg", "pll5_video_div", "pll2_pfd0", "pll2_pfd2", "pll3_pfd1", };
-static const char const *gpu2d_ovg_sels[] = { "pll3_pfd1", "pll3_usb_otg", "pll2_bus", "pll2_pfd2", };
-static const char const *gpu2d_sels[] = { "pll2_pfd2", "pll3_usb_otg", "pll3_pfd1", "pll2_bus", };
-static const char const *lcdif_pix_sels[] = { "pll2_bus", "pll3_usb_otg", "pll5_video_div", "pll2_pfd0", "pll3_pfd0", "pll3_pfd1", };
-static const char const *epdc_pix_sels[] = { "pll2_bus", "pll3_usb_otg", "pll5_video_div", "pll2_pfd0", "pll2_pfd1", "pll3_pfd1", };
-static const char const *audio_sels[] = { "pll4_post_div", "pll3_pfd2", "pll3_pfd3", "pll3_usb_otg", };
-static const char const *ecspi_sels[] = { "pll3_60m", "osc", };
-static const char const *uart_sels[] = { "pll3_80m", "osc", };
+static const char *step_sels[] = { "osc", "pll2_pfd2", };
+static const char *pll1_sw_sels[] = { "pll1_sys", "step", };
+static const char *ocram_alt_sels[] = { "pll2_pfd2", "pll3_pfd1", };
+static const char *ocram_sels[] = { "periph", "ocram_alt_sels", };
+static const char *pre_periph_sels[] = { "pll2_bus", "pll2_pfd2", "pll2_pfd0", "pll2_198m", };
+static const char *periph_clk2_sels[] = { "pll3_usb_otg", "osc", "osc", "dummy", };
+static const char *periph2_clk2_sels[] = { "pll3_usb_otg", "pll2_bus", };
+static const char *periph_sels[] = { "pre_periph_sel", "periph_clk2_podf", };
+static const char *periph2_sels[] = { "pre_periph2_sel", "periph2_clk2_podf", };
+static const char *csi_lcdif_sels[] = { "mmdc", "pll2_pfd2", "pll3_120m", "pll3_pfd1", };
+static const char *usdhc_sels[] = { "pll2_pfd2", "pll2_pfd0", };
+static const char *ssi_sels[] = { "pll3_pfd2", "pll3_pfd3", "pll4_post_div", "dummy", };
+static const char *perclk_sels[] = { "ipg", "osc", };
+static const char *epdc_pxp_sels[] = { "mmdc", "pll3_usb_otg", "pll5_video_div", "pll2_pfd0", "pll2_pfd2", "pll3_pfd1", };
+static const char *gpu2d_ovg_sels[] = { "pll3_pfd1", "pll3_usb_otg", "pll2_bus", "pll2_pfd2", };
+static const char *gpu2d_sels[] = { "pll2_pfd2", "pll3_usb_otg", "pll3_pfd1", "pll2_bus", };
+static const char *lcdif_pix_sels[] = { "pll2_bus", "pll3_usb_otg", "pll5_video_div", "pll2_pfd0", "pll3_pfd0", "pll3_pfd1", };
+static const char *epdc_pix_sels[] = { "pll2_bus", "pll3_usb_otg", "pll5_video_div", "pll2_pfd0", "pll2_pfd1", "pll3_pfd1", };
+static const char *audio_sels[] = { "pll4_post_div", "pll3_pfd2", "pll3_pfd3", "pll3_usb_otg", };
+static const char *ecspi_sels[] = { "pll3_60m", "osc", };
+static const char *uart_sels[] = { "pll3_80m", "osc", };
static struct clk_div_table clk_enet_ref_table[] = {
{ .val = 0, .div = 20, },
--
1.7.9.5
^ permalink raw reply related
* [PATCH v2 1/2] spi: spi-imx: enable dma support for escpi controller
From: Shawn Guo @ 2014-01-15 6:17 UTC (permalink / raw)
To: linux-arm-kernel
In-Reply-To: <CAHrpEqT+9P_rRqaEd8O-FjR21=juF-NSTE8_umVJ83-6riO2_w@mail.gmail.com>
On Tue, Jan 14, 2014 at 03:52:01PM -0600, Frank Li wrote:
> >> @@ -778,6 +1158,56 @@ spi_imx_unprepare_message(struct spi_master *master, struct spi_message *msg)
> >> return 0;
> >> }
> >>
> >> +static int spi_imx_sdma_init(struct spi_imx_data *spi_imx)
> >> +{
> >> + struct dma_slave_config slave_config = {};
> >> + struct device *dev = spi_imx->dev;
> >> + int ret;
> >> +
> >> +
> >> + /* Prepare for TX : */
> >> + spi_imx->dma_chan_tx = dma_request_slave_channel(dev, "tx");
> >> + if (!spi_imx->dma_chan_tx) {
> >> + dev_err(dev, "cannot get the TX DMA channel!\n");
> >
> > So we will see this error message for each type of imx spi device,
> > though the driver only supports DMA for imx51-ecspi.
> >
> > Shawn
>
> How to handle this one? change to devinfo? Or check check if imx51-ecspi?
I think we should check device type and only initialize DMA for
imx51-ecspi type of devices.
Shawn
^ permalink raw reply
* [PATCH v5 4/4] ARM: shmobile: genmai: Enable r7s72100-ether
From: Simon Horman @ 2014-01-15 6:12 UTC (permalink / raw)
To: linux-arm-kernel
In-Reply-To: <1389766341-14001-1-git-send-email-horms+renesas@verge.net.au>
Signed-off-by: Simon Horman <horms@verge.net.au>
Acked-by: Sergei Shtylyov <sergei.shtylyov@cogentembedded.com>
---
Dave,
I plan to take this change through my tree.
v3 - v5
* No change
v2
* As suggested by Magnus Damm and Sergei Shtylyov
- r7s72100 ethernet is not gigabit so do not refer to it as such
* As suggested by Sergei Shtylyov
- set no_ether_link as there is no LINK signal documented
in the manual
---
arch/arm/mach-shmobile/board-genmai.c | 21 +++++++++++++++++++++
1 file changed, 21 insertions(+)
diff --git a/arch/arm/mach-shmobile/board-genmai.c b/arch/arm/mach-shmobile/board-genmai.c
index 3e92e3c..a1f6fe1 100644
--- a/arch/arm/mach-shmobile/board-genmai.c
+++ b/arch/arm/mach-shmobile/board-genmai.c
@@ -20,15 +20,36 @@
#include <linux/kernel.h>
#include <linux/platform_device.h>
+#include <linux/sh_eth.h>
#include <mach/common.h>
+#include <mach/irqs.h>
#include <mach/r7s72100.h>
#include <asm/mach-types.h>
#include <asm/mach/arch.h>
+/* Ether */
+static const struct sh_eth_plat_data ether_pdata __initconst = {
+ .phy = 0x00, /* PD60610 */
+ .edmac_endian = EDMAC_LITTLE_ENDIAN,
+ .phy_interface = PHY_INTERFACE_MODE_MII,
+ .no_ether_link = 1
+};
+
+static const struct resource ether_resources[] __initconst = {
+ DEFINE_RES_MEM(0xe8203000, 0x800),
+ DEFINE_RES_MEM(0xe8204800, 0x200),
+ DEFINE_RES_IRQ(gic_iid(359)),
+};
+
static void __init genmai_add_standard_devices(void)
{
r7s72100_clock_init();
r7s72100_add_dt_devices();
+
+ platform_device_register_resndata(&platform_bus, "r7s72100-ether", -1,
+ ether_resources,
+ ARRAY_SIZE(ether_resources),
+ ðer_pdata, sizeof(ether_pdata));
}
static const char * const genmai_boards_compat_dt[] __initconst = {
--
1.8.4
^ permalink raw reply related
* [PATCH v5 3/4] ARM: shmobile: r7s72100: Add clock for r7s72100-ether
From: Simon Horman @ 2014-01-15 6:12 UTC (permalink / raw)
To: linux-arm-kernel
In-Reply-To: <1389766341-14001-1-git-send-email-horms+renesas@verge.net.au>
Signed-off-by: Simon Horman <horms+renesas@verge.net.au>
Acked-by: Sergei Shtylyov <sergei.shtylyov@cogentembedded.com>
---
Dave,
I plan to take this change through my tree.
v5
* Rebase
v3 - v4
* No change
v2
* As suggested by Sergei Shtylyov
- Add MSTP74 to beginning of enum on a line by itself
* As suggested by Magnus Damm
- r7s72100 ethernet is not gigabit so do not refer to it as such
---
arch/arm/mach-shmobile/clock-r7s72100.c | 4 ++++
1 file changed, 4 insertions(+)
diff --git a/arch/arm/mach-shmobile/clock-r7s72100.c b/arch/arm/mach-shmobile/clock-r7s72100.c
index dd8ce87..0242ca5 100644
--- a/arch/arm/mach-shmobile/clock-r7s72100.c
+++ b/arch/arm/mach-shmobile/clock-r7s72100.c
@@ -27,6 +27,7 @@
#define FRQCR2 0xfcfe0014
#define STBCR3 0xfcfe0420
#define STBCR4 0xfcfe0424
+#define STBCR7 0xfcfe0430
#define STBCR9 0xfcfe0438
#define PLL_RATE 30
@@ -146,6 +147,7 @@ struct clk div4_clks[DIV4_NR] = {
};
enum { MSTP97, MSTP96, MSTP95, MSTP94,
+ MSTP74,
MSTP47, MSTP46, MSTP45, MSTP44, MSTP43, MSTP42, MSTP41, MSTP40,
MSTP33, MSTP_NR };
@@ -154,6 +156,7 @@ static struct clk mstp_clks[MSTP_NR] = {
[MSTP96] = SH_CLK_MSTP8(&peripheral0_clk, STBCR9, 6, 0), /* RIIC1 */
[MSTP95] = SH_CLK_MSTP8(&peripheral0_clk, STBCR9, 5, 0), /* RIIC2 */
[MSTP94] = SH_CLK_MSTP8(&peripheral0_clk, STBCR9, 4, 0), /* RIIC3 */
+ [MSTP74] = SH_CLK_MSTP8(&peripheral1_clk, STBCR7, 4, 0), /* Ether */
[MSTP47] = SH_CLK_MSTP8(&peripheral1_clk, STBCR4, 7, 0), /* SCIF0 */
[MSTP46] = SH_CLK_MSTP8(&peripheral1_clk, STBCR4, 6, 0), /* SCIF1 */
[MSTP45] = SH_CLK_MSTP8(&peripheral1_clk, STBCR4, 5, 0), /* SCIF2 */
@@ -180,6 +183,7 @@ static struct clk_lookup lookups[] = {
CLKDEV_DEV_ID("fcfee400.i2c", &mstp_clks[MSTP96]),
CLKDEV_DEV_ID("fcfee800.i2c", &mstp_clks[MSTP95]),
CLKDEV_DEV_ID("fcfeec00.i2c", &mstp_clks[MSTP94]),
+ CLKDEV_DEV_ID("r7s72100-ether", &mstp_clks[MSTP74]),
CLKDEV_CON_ID("mtu2_fck", &mstp_clks[MSTP33]),
/* ICK */
--
1.8.4
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