* [PATCH] clk: nuvoton: ma35d1: Use clk_hw pointers as mux parents
@ 2026-08-13 7:28 Miquel Raynal
2026-08-14 7:28 ` sashiko-bot
0 siblings, 1 reply; 2+ messages in thread
From: Miquel Raynal @ 2026-08-13 7:28 UTC (permalink / raw)
To: Jacky Huang, Shan-Chun Hung, Michael Turquette, Stephen Boyd,
Brian Masney, Richard Cochran, Arnd Bergmann
Cc: Thomas Petazzoni, Steam Lin, linux-arm-kernel, linux-clk,
linux-kernel, netdev, stable, Miquel Raynal
The MA35D1 clock provider registers its muxes with parent data
structures filling .fw_name. This is not the ideal approach since that
would require a massive amount of internal clock names declaration in
the DT. Since the DT does not play the game of exposing all these names,
none of the parent lookups performed when instantiating the muxes
succeed. As a result, these muxes get registered as root clocks, leading
to a sadly flat clock tree and no frequency assigned to most of the
peripheral clocks:
enable prepare protect
clock count count count rate
usbphy1 0 0 0 480000000
usbphy0 0 0 0 480000000
husbh1_gate 0 0 0 480000000
husbh0_gate 0 0 0 480000000
usbh_gate 0 0 0 480000000
usbd_gate 0 0 0 480000000
syspll 0 0 0 180000000
lirc 0 0 0 32000
lirc_gate 0 0 0 32000
hirc 0 0 0 12000000
gtmr_gate 0 0 0 12000000
hirc_gate 0 0 0 12000000
lxt 0 0 0 32768
rtc_gate 0 0 0 32768
lxt_gate 0 0 0 32768
hxt 0 0 0 24000000
vpll 0 0 0 1224000000
dcup_div 0 0 0 612000000
epll 0 0 0 6000000000
epll_div8 0 0 0 750000000
epll_div4 0 0 0 1500000000
epll_div2 0 0 0 3000000000
emac1_gate 0 0 0 3000000000
emac0_gate 0 0 0 3000000000
apll 0 0 0 6048000000
ddrpll 0 0 0 266460000
ddr_gate 0 0 0 266460000
ddr6_gate 0 0 0 266460000
ddr0_gate 0 0 0 266460000
capll 0 0 0 2400000000
hxt_gate 0 0 0 24000000
clk_hxt 0 0 0 24000000
spi3_mux 0 0 0 0
spi3_gate 0 0 0 0
spi2_mux 0 0 0 0
spi2_gate 0 0 0 0
spi1_mux 0 0 0 0
spi1_gate 0 0 0 0
spi0_mux 0 0 0 0
spi0_gate 0 0 0 0
i2s1_mux 0 0 0 0
i2s1_gate 0 0 0 0
i2s0_mux 0 0 0 0
i2s0_gate 0 0 0 0
...
Apart from the wrong clock tree representation, it means that none of
the device drivers (spi & i2c in the excerpt above) can actually query
their clock rate, or they would get 0Hz.
Instead of declaring the parents in the clk_parent_data structure, use
the actual HW clocks to lookup the parents directly: parents are
described by an array of indices into the controller's main clock table
(like in other clock controller drivers), which the "new" mux helper now
resolves.
enable prepare protect
clock count count count rate
usbphy1 0 0 0 480000000
usbphy0 0 0 0 480000000
husbh1_gate 0 0 0 480000000
husbh0_gate 0 0 0 480000000
usbh_gate 0 0 0 480000000
usbd_gate 0 0 0 480000000
syspll 1 1 0 180000000
dbg_mux 0 0 0 180000000
sdh1_mux 0 0 0 180000000
sdh1_gate 0 0 0 180000000
sdh0_mux 0 0 0 180000000
sdh0_gate 0 0 0 180000000
sysclk1_mux 2 2 0 180000000
pclk4 0 0 0 90000000
pclk3 0 0 0 90000000
sspcc_gate 0 0 0 90000000
ssmcc_gate 0 0 0 90000000
hclk3 0 0 0 90000000
pclk2 0 0 0 180000000
eadc_div 0 0 0 90000000
eadc_gate 0 0 0 90000000
qei1_gate 0 0 0 180000000
ecap1_gate 0 0 0 180000000
spi3_mux 0 0 0 180000000
spi3_gate 0 0 0 180000000
spi1_mux 0 0 0 180000000
spi1_gate 0 0 0 180000000
epwm1_gate 0 0 0 180000000
i2c5_gate 0 0 0 180000000
i2c2_gate 0 0 0 180000000
pclk1 0 0 0 180000000
qei2_gate 0 0 0 180000000
qei0_gate 0 0 0 180000000
ecap2_gate 0 0 0 180000000
ecap0_gate 0 0 0 180000000
spi2_mux 0 0 0 180000000
spi2_gate 0 0 0 180000000
spi0_mux 0 0 0 180000000
spi0_gate 0 0 0 180000000
epwm2_gate 0 0 0 180000000
epwm0_gate 0 0 0 180000000
i2c4_gate 0 0 0 180000000
i2c1_gate 0 0 0 180000000
pclk0 1 1 0 180000000
adc_div 0 0 0 90000000
adc_gate 0 0 0 90000000
qspi1_mux 0 0 0 180000000
qspi1_gate 0 0 0 180000000
qspi0_mux 1 1 0 180000000
qspi0_gate 1 1 0 180000000
i2c3_gate 0 0 0 180000000
i2c0_gate 0 0 0 180000000
Fixes: f50a000b4219 ("clk: nuvoton: Use clk_parent_data instead of string for parent clock")
Cc: stable@vger.kernel.org
Signed-off-by: Miquel Raynal <miquel.raynal@bootlin.com>
---
I am in possession of an MA35D1 NuMaker board. The SPI controller has
been contributed, but:
1- it lacks a DT descriptions [1]
2- it does not work with current clock driver
3- it can be improved
Link: https://lore.kernel.org/linux-arm-kernel/20260813-perso-ma35d1-upstream-dts-v1-0-bb237fd7c3c2@bootlin.com [1]
This series is addressing #2.
---
drivers/clk/nuvoton/clk-ma35d1.c | 626 +++++++++++----------------------------
1 file changed, 177 insertions(+), 449 deletions(-)
diff --git a/drivers/clk/nuvoton/clk-ma35d1.c b/drivers/clk/nuvoton/clk-ma35d1.c
index 9f65d0623517..8306e4192fd4 100644
--- a/drivers/clk/nuvoton/clk-ma35d1.c
+++ b/drivers/clk/nuvoton/clk-ma35d1.c
@@ -62,300 +62,49 @@ static DEFINE_SPINLOCK(ma35d1_lock);
#define PLL_MODE_FRAC 1
#define PLL_MODE_SS 2
-static const struct clk_parent_data ca35clk_sel_clks[] = {
- { .fw_name = "hxt", },
- { .fw_name = "capll", },
- { .fw_name = "ddrpll", },
-};
+#define MA35D1_MUX_MAX_PARENTS 10
-static const struct clk_parent_data sysclk0_sel_clks[] = {
- { .fw_name = "epll_div2", },
- { .fw_name = "syspll", },
-};
-
-static const struct clk_parent_data sysclk1_sel_clks[] = {
- { .fw_name = "hxt", },
- { .fw_name = "syspll", },
-};
-
-static const struct clk_parent_data axiclk_sel_clks[] = {
- { .fw_name = "capll_div2", },
- { .fw_name = "capll_div4", },
-};
-
-static const struct clk_parent_data ccap_sel_clks[] = {
- { .fw_name = "hxt", },
- { .fw_name = "vpll", },
- { .fw_name = "apll", },
- { .fw_name = "syspll", },
-};
-
-static const struct clk_parent_data sdh_sel_clks[] = {
- { .fw_name = "syspll", },
- { .fw_name = "apll", },
-};
-
-static const struct clk_parent_data dcu_sel_clks[] = {
- { .fw_name = "epll_div2", },
- { .fw_name = "syspll", },
-};
-
-static const struct clk_parent_data gfx_sel_clks[] = {
- { .fw_name = "epll", },
- { .fw_name = "syspll", },
-};
-
-static const struct clk_parent_data dbg_sel_clks[] = {
- { .fw_name = "hirc", },
- { .fw_name = "syspll", },
-};
-
-static const struct clk_parent_data timer0_sel_clks[] = {
- { .fw_name = "hxt", },
- { .fw_name = "lxt", },
- { .fw_name = "pclk0", },
- { .index = -1, },
- { .index = -1, },
- { .fw_name = "lirc", },
- { .index = -1, },
- { .fw_name = "hirc", },
-};
-
-static const struct clk_parent_data timer1_sel_clks[] = {
- { .fw_name = "hxt", },
- { .fw_name = "lxt", },
- { .fw_name = "pclk0", },
- { .index = -1, },
- { .index = -1, },
- { .fw_name = "lirc", },
- { .index = -1, },
- { .fw_name = "hirc", },
-};
-
-static const struct clk_parent_data timer2_sel_clks[] = {
- { .fw_name = "hxt", },
- { .fw_name = "lxt", },
- { .fw_name = "pclk1", },
- { .index = -1, },
- { .index = -1, },
- { .fw_name = "lirc", },
- { .index = -1, },
- { .fw_name = "hirc", },
-};
-
-static const struct clk_parent_data timer3_sel_clks[] = {
- { .fw_name = "hxt", },
- { .fw_name = "lxt", },
- { .fw_name = "pclk1", },
- { .index = -1, },
- { .index = -1, },
- { .fw_name = "lirc", },
- { .index = -1, },
- { .fw_name = "hirc", },
-};
-
-static const struct clk_parent_data timer4_sel_clks[] = {
- { .fw_name = "hxt", },
- { .fw_name = "lxt", },
- { .fw_name = "pclk2", },
- { .index = -1, },
- { .index = -1, },
- { .fw_name = "lirc", },
- { .index = -1, },
- { .fw_name = "hirc", },
-};
-
-static const struct clk_parent_data timer5_sel_clks[] = {
- { .fw_name = "hxt", },
- { .fw_name = "lxt", },
- { .fw_name = "pclk2", },
- { .index = -1, },
- { .index = -1, },
- { .fw_name = "lirc", },
- { .index = -1, },
- { .fw_name = "hirc", },
-};
-
-static const struct clk_parent_data timer6_sel_clks[] = {
- { .fw_name = "hxt", },
- { .fw_name = "lxt", },
- { .fw_name = "pclk0", },
- { .index = -1, },
- { .index = -1, },
- { .fw_name = "lirc", },
- { .index = -1, },
- { .fw_name = "hirc", },
-};
-
-static const struct clk_parent_data timer7_sel_clks[] = {
- { .fw_name = "hxt", },
- { .fw_name = "lxt", },
- { .fw_name = "pclk0", },
- { .index = -1, },
- { .index = -1, },
- { .fw_name = "lirc", },
- { .index = -1, },
- { .fw_name = "hirc", },
-};
-
-static const struct clk_parent_data timer8_sel_clks[] = {
- { .fw_name = "hxt", },
- { .fw_name = "lxt", },
- { .fw_name = "pclk1", },
- { .index = -1, },
- { .index = -1, },
- { .fw_name = "lirc", },
- { .index = -1, },
- { .fw_name = "hirc", },
-};
-
-static const struct clk_parent_data timer9_sel_clks[] = {
- { .fw_name = "hxt", },
- { .fw_name = "lxt", },
- { .fw_name = "pclk1", },
- { .index = -1, },
- { .index = -1, },
- { .fw_name = "lirc", },
- { .index = -1, },
- { .fw_name = "hirc", },
-};
-
-static const struct clk_parent_data timer10_sel_clks[] = {
- { .fw_name = "hxt", },
- { .fw_name = "lxt", },
- { .fw_name = "pclk2", },
- { .index = -1, },
- { .index = -1, },
- { .fw_name = "lirc", },
- { .index = -1, },
- { .fw_name = "hirc", },
-};
-
-static const struct clk_parent_data timer11_sel_clks[] = {
- { .fw_name = "hxt", },
- { .fw_name = "lxt", },
- { .fw_name = "pclk2", },
- { .index = -1, },
- { .index = -1, },
- { .fw_name = "lirc", },
- { .index = -1, },
- { .fw_name = "hirc", },
-};
-
-static const struct clk_parent_data uart_sel_clks[] = {
- { .fw_name = "hxt", },
- { .fw_name = "sysclk1_div2", },
-};
-
-static const struct clk_parent_data wdt0_sel_clks[] = {
- { .index = -1, },
- { .fw_name = "lxt", },
- { .fw_name = "pclk3_div4096", },
- { .fw_name = "lirc", },
-};
-
-static const struct clk_parent_data wdt1_sel_clks[] = {
- { .index = -1, },
- { .fw_name = "lxt", },
- { .fw_name = "pclk3_div4096", },
- { .fw_name = "lirc", },
-};
-
-static const struct clk_parent_data wdt2_sel_clks[] = {
- { .index = -1, },
- { .fw_name = "lxt", },
- { .fw_name = "pclk4_div4096", },
- { .fw_name = "lirc", },
-};
-
-static const struct clk_parent_data wwdt0_sel_clks[] = {
- { .index = -1, },
- { .index = -1, },
- { .fw_name = "pclk3_div4096", },
- { .fw_name = "lirc", },
-};
-
-static const struct clk_parent_data wwdt1_sel_clks[] = {
- { .index = -1, },
- { .index = -1, },
- { .fw_name = "pclk3_div4096", },
- { .fw_name = "lirc", },
-};
-
-static const struct clk_parent_data wwdt2_sel_clks[] = {
- { .index = -1, },
- { .index = -1, },
- { .fw_name = "pclk4_div4096", },
- { .fw_name = "lirc", },
-};
-
-static const struct clk_parent_data spi0_sel_clks[] = {
- { .fw_name = "pclk1", },
- { .fw_name = "apll", },
-};
-
-static const struct clk_parent_data spi1_sel_clks[] = {
- { .fw_name = "pclk2", },
- { .fw_name = "apll", },
-};
-
-static const struct clk_parent_data spi2_sel_clks[] = {
- { .fw_name = "pclk1", },
- { .fw_name = "apll", },
-};
-
-static const struct clk_parent_data spi3_sel_clks[] = {
- { .fw_name = "pclk2", },
- { .fw_name = "apll", },
-};
-
-static const struct clk_parent_data qspi0_sel_clks[] = {
- { .fw_name = "pclk0", },
- { .fw_name = "apll", },
-};
-
-static const struct clk_parent_data qspi1_sel_clks[] = {
- { .fw_name = "pclk0", },
- { .fw_name = "apll", },
-};
-
-static const struct clk_parent_data i2s0_sel_clks[] = {
- { .fw_name = "apll", },
- { .fw_name = "sysclk1_div2", },
-};
-
-static const struct clk_parent_data i2s1_sel_clks[] = {
- { .fw_name = "apll", },
- { .fw_name = "sysclk1_div2", },
-};
-
-static const struct clk_parent_data can_sel_clks[] = {
- { .fw_name = "apll", },
- { .fw_name = "vpll", },
-};
-
-static const struct clk_parent_data cko_sel_clks[] = {
- { .fw_name = "hxt", },
- { .fw_name = "lxt", },
- { .fw_name = "hirc", },
- { .fw_name = "lirc", },
- { .fw_name = "capll_div4", },
- { .fw_name = "syspll", },
- { .fw_name = "ddrpll", },
- { .fw_name = "epll_div2", },
- { .fw_name = "apll", },
- { .fw_name = "vpll", },
-};
-
-static const struct clk_parent_data smc_sel_clks[] = {
- { .fw_name = "hxt", },
- { .fw_name = "pclk4", },
-};
-
-static const struct clk_parent_data kpi_sel_clks[] = {
- { .fw_name = "hxt", },
- { .fw_name = "lxt", },
-};
+/* Mux parent selection, by index into the controller's clock table */
+static const int ca35clk_parent_idx[] = { HXT, CAPLL, DDRPLL };
+static const int sysclk0_parent_idx[] = { EPLL_DIV2, SYSPLL };
+static const int sysclk1_parent_idx[] = { HXT, SYSPLL };
+static const int axiclk_parent_idx[] = { AXICLK_DIV2, AXICLK_DIV4 };
+static const int ccap_parent_idx[] = { HXT, VPLL, APLL, SYSPLL };
+static const int sdh_parent_idx[] = { SYSPLL, APLL };
+static const int dcu_parent_idx[] = { EPLL_DIV2, SYSPLL };
+static const int gfx_parent_idx[] = { EPLL, SYSPLL };
+static const int dbg_parent_idx[] = { HIRC, SYSPLL };
+static const int timer0_parent_idx[] = { HXT, LXT, PCLK0, -1, -1, LIRC, -1, HIRC };
+static const int timer1_parent_idx[] = { HXT, LXT, PCLK0, -1, -1, LIRC, -1, HIRC };
+static const int timer2_parent_idx[] = { HXT, LXT, PCLK1, -1, -1, LIRC, -1, HIRC };
+static const int timer3_parent_idx[] = { HXT, LXT, PCLK1, -1, -1, LIRC, -1, HIRC };
+static const int timer4_parent_idx[] = { HXT, LXT, PCLK2, -1, -1, LIRC, -1, HIRC };
+static const int timer5_parent_idx[] = { HXT, LXT, PCLK2, -1, -1, LIRC, -1, HIRC };
+static const int timer6_parent_idx[] = { HXT, LXT, PCLK0, -1, -1, LIRC, -1, HIRC };
+static const int timer7_parent_idx[] = { HXT, LXT, PCLK0, -1, -1, LIRC, -1, HIRC };
+static const int timer8_parent_idx[] = { HXT, LXT, PCLK1, -1, -1, LIRC, -1, HIRC };
+static const int timer9_parent_idx[] = { HXT, LXT, PCLK1, -1, -1, LIRC, -1, HIRC };
+static const int timer10_parent_idx[] = { HXT, LXT, PCLK2, -1, -1, LIRC, -1, HIRC };
+static const int timer11_parent_idx[] = { HXT, LXT, PCLK2, -1, -1, LIRC, -1, HIRC };
+static const int uart_parent_idx[] = { HXT, SYSCLK1_DIV2 };
+static const int wdt0_parent_idx[] = { -1, LXT, -1, LIRC };
+static const int wdt1_parent_idx[] = { -1, LXT, -1, LIRC };
+static const int wdt2_parent_idx[] = { -1, LXT, -1, LIRC };
+static const int wwdt0_parent_idx[] = { -1, -1, -1, LIRC };
+static const int wwdt1_parent_idx[] = { -1, -1, -1, LIRC };
+static const int wwdt2_parent_idx[] = { -1, -1, -1, LIRC };
+static const int spi0_parent_idx[] = { PCLK1, APLL };
+static const int spi1_parent_idx[] = { PCLK2, APLL };
+static const int spi2_parent_idx[] = { PCLK1, APLL };
+static const int spi3_parent_idx[] = { PCLK2, APLL };
+static const int qspi_parent_idx[] = { PCLK0, APLL };
+static const int i2s_parent_idx[] = { APLL, SYSCLK1_DIV2 };
+static const int can_parent_idx[] = { APLL, VPLL };
+static const int cko_parent_idx[] = { HXT, LXT, HIRC, LIRC,
+ AXICLK_DIV4, SYSPLL, DDRPLL,
+ EPLL_DIV2, APLL, VPLL };
+static const int smc_parent_idx[] = { HXT, PCLK4 };
+static const int kpi_parent_idx[] = { HXT, LXT };
static const struct clk_div_table ip_div_table[] = {
{0, 2}, {1, 4}, {2, 6}, {3, 8}, {4, 10},
@@ -374,24 +123,20 @@ static struct clk_hw *ma35d1_clk_fixed(const char *name, int rate)
return clk_hw_register_fixed_rate(NULL, name, NULL, 0, rate);
}
-static struct clk_hw *ma35d1_clk_mux_parent(struct device *dev, const char *name,
- void __iomem *reg, u8 shift, u8 width,
- const struct clk_parent_data *pdata,
- int num_pdata)
-{
- return clk_hw_register_mux_parent_data(dev, name, pdata, num_pdata,
- CLK_SET_RATE_NO_REPARENT, reg, shift,
- width, 0, &ma35d1_lock);
-}
-
static struct clk_hw *ma35d1_clk_mux(struct device *dev, const char *name,
void __iomem *reg, u8 shift, u8 width,
- const struct clk_parent_data *pdata,
- int num_pdata)
+ struct clk_hw **hws,
+ const int *parent_idx, int num_parents)
{
- return clk_hw_register_mux_parent_data(dev, name, pdata, num_pdata,
- CLK_SET_RATE_NO_REPARENT, reg, shift,
- width, 0, &ma35d1_lock);
+ const struct clk_hw *parent_hws[MA35D1_MUX_MAX_PARENTS];
+ int i;
+
+ for (i = 0; i < num_parents; i++)
+ parent_hws[i] = (parent_idx[i] >= 0) ? hws[parent_idx[i]] : NULL;
+
+ return clk_hw_register_mux_hws(dev, name, parent_hws, num_parents,
+ CLK_SET_RATE_NO_REPARENT, reg, shift,
+ width, 0, &ma35d1_lock);
}
static struct clk_hw *ma35d1_clk_divider(struct device *dev, const char *name,
@@ -514,22 +259,17 @@ static int ma35d1_clocks_probe(struct platform_device *pdev)
hws[EPLL_DIV4] = ma35d1_clk_fixed_factor(dev, "epll_div4", "epll", 1, 4);
hws[EPLL_DIV8] = ma35d1_clk_fixed_factor(dev, "epll_div8", "epll", 1, 8);
- hws[CA35CLK_MUX] = ma35d1_clk_mux_parent(dev, "ca35clk_mux",
- clk_base + REG_CLK_CLKSEL0, 0, 2,
- ca35clk_sel_clks,
- ARRAY_SIZE(ca35clk_sel_clks));
+ hws[CA35CLK_MUX] = ma35d1_clk_mux(dev, "ca35clk_mux", clk_base + REG_CLK_CLKSEL0, 0, 2, hws,
+ ca35clk_parent_idx, ARRAY_SIZE(ca35clk_parent_idx));
hws[AXICLK_DIV2] = ma35d1_clk_fixed_factor(dev, "capll_div2", "ca35clk_mux", 1, 2);
hws[AXICLK_DIV4] = ma35d1_clk_fixed_factor(dev, "capll_div4", "ca35clk_mux", 1, 4);
- hws[AXICLK_MUX] = ma35d1_clk_mux(dev, "axiclk_mux", clk_base + REG_CLK_CLKDIV0,
- 26, 1, axiclk_sel_clks,
- ARRAY_SIZE(axiclk_sel_clks));
- hws[SYSCLK0_MUX] = ma35d1_clk_mux(dev, "sysclk0_mux", clk_base + REG_CLK_CLKSEL0,
- 2, 1, sysclk0_sel_clks,
- ARRAY_SIZE(sysclk0_sel_clks));
- hws[SYSCLK1_MUX] = ma35d1_clk_mux(dev, "sysclk1_mux", clk_base + REG_CLK_CLKSEL0,
- 4, 1, sysclk1_sel_clks,
- ARRAY_SIZE(sysclk1_sel_clks));
+ hws[AXICLK_MUX] = ma35d1_clk_mux(dev, "axiclk_mux", clk_base + REG_CLK_CLKDIV0, 26, 1, hws,
+ axiclk_parent_idx, ARRAY_SIZE(axiclk_parent_idx));
+ hws[SYSCLK0_MUX] = ma35d1_clk_mux(dev, "sysclk0_mux", clk_base + REG_CLK_CLKSEL0, 2, 1, hws,
+ sysclk0_parent_idx, ARRAY_SIZE(sysclk0_parent_idx));
+ hws[SYSCLK1_MUX] = ma35d1_clk_mux(dev, "sysclk1_mux", clk_base + REG_CLK_CLKSEL0, 4, 1, hws,
+ sysclk1_parent_idx, ARRAY_SIZE(sysclk1_parent_idx));
hws[SYSCLK1_DIV2] = ma35d1_clk_fixed_factor(dev, "sysclk1_div2", "sysclk1_mux", 1, 2);
/* HCLK0~3 & PCLK0~4 */
@@ -553,41 +293,41 @@ static int ma35d1_clocks_probe(struct platform_device *pdev)
hws[DDR6_GATE] = ma35d1_clk_gate(dev, "ddr6_gate", "ddrpll",
clk_base + REG_CLK_SYSCLK0, 5);
- hws[CAN0_MUX] = ma35d1_clk_mux(dev, "can0_mux", clk_base + REG_CLK_CLKSEL4,
- 16, 1, can_sel_clks, ARRAY_SIZE(can_sel_clks));
+ hws[CAN0_MUX] = ma35d1_clk_mux(dev, "can0_mux", clk_base + REG_CLK_CLKSEL4, 16, 1, hws,
+ can_parent_idx, ARRAY_SIZE(can_parent_idx));
hws[CAN0_DIV] = ma35d1_clk_divider_table(dev, "can0_div", "can0_mux",
clk_base + REG_CLK_CLKDIV0,
0, 3, ip_div_table);
hws[CAN0_GATE] = ma35d1_clk_gate(dev, "can0_gate", "can0_div",
clk_base + REG_CLK_SYSCLK0, 8);
- hws[CAN1_MUX] = ma35d1_clk_mux(dev, "can1_mux", clk_base + REG_CLK_CLKSEL4,
- 17, 1, can_sel_clks, ARRAY_SIZE(can_sel_clks));
+ hws[CAN1_MUX] = ma35d1_clk_mux(dev, "can1_mux", clk_base + REG_CLK_CLKSEL4, 17, 1, hws,
+ can_parent_idx, ARRAY_SIZE(can_parent_idx));
hws[CAN1_DIV] = ma35d1_clk_divider_table(dev, "can1_div", "can1_mux",
clk_base + REG_CLK_CLKDIV0,
4, 3, ip_div_table);
hws[CAN1_GATE] = ma35d1_clk_gate(dev, "can1_gate", "can1_div",
clk_base + REG_CLK_SYSCLK0, 9);
- hws[CAN2_MUX] = ma35d1_clk_mux(dev, "can2_mux", clk_base + REG_CLK_CLKSEL4,
- 18, 1, can_sel_clks, ARRAY_SIZE(can_sel_clks));
+ hws[CAN2_MUX] = ma35d1_clk_mux(dev, "can2_mux", clk_base + REG_CLK_CLKSEL4, 18, 1, hws,
+ can_parent_idx, ARRAY_SIZE(can_parent_idx));
hws[CAN2_DIV] = ma35d1_clk_divider_table(dev, "can2_div", "can2_mux",
clk_base + REG_CLK_CLKDIV0,
8, 3, ip_div_table);
hws[CAN2_GATE] = ma35d1_clk_gate(dev, "can2_gate", "can2_div",
clk_base + REG_CLK_SYSCLK0, 10);
- hws[CAN3_MUX] = ma35d1_clk_mux(dev, "can3_mux", clk_base + REG_CLK_CLKSEL4,
- 19, 1, can_sel_clks, ARRAY_SIZE(can_sel_clks));
+ hws[CAN3_MUX] = ma35d1_clk_mux(dev, "can3_mux", clk_base + REG_CLK_CLKSEL4, 19, 1, hws,
+ can_parent_idx, ARRAY_SIZE(can_parent_idx));
hws[CAN3_DIV] = ma35d1_clk_divider_table(dev, "can3_div", "can3_mux",
clk_base + REG_CLK_CLKDIV0,
12, 3, ip_div_table);
hws[CAN3_GATE] = ma35d1_clk_gate(dev, "can3_gate", "can3_div",
clk_base + REG_CLK_SYSCLK0, 11);
- hws[SDH0_MUX] = ma35d1_clk_mux(dev, "sdh0_mux", clk_base + REG_CLK_CLKSEL0,
- 16, 2, sdh_sel_clks, ARRAY_SIZE(sdh_sel_clks));
+ hws[SDH0_MUX] = ma35d1_clk_mux(dev, "sdh0_mux", clk_base + REG_CLK_CLKSEL0, 16, 2, hws,
+ sdh_parent_idx, ARRAY_SIZE(sdh_parent_idx));
hws[SDH0_GATE] = ma35d1_clk_gate(dev, "sdh0_gate", "sdh0_mux",
clk_base + REG_CLK_SYSCLK0, 16);
- hws[SDH1_MUX] = ma35d1_clk_mux(dev, "sdh1_mux", clk_base + REG_CLK_CLKSEL0,
- 18, 2, sdh_sel_clks, ARRAY_SIZE(sdh_sel_clks));
+ hws[SDH1_MUX] = ma35d1_clk_mux(dev, "sdh1_mux", clk_base + REG_CLK_CLKSEL0, 18, 2, hws,
+ sdh_parent_idx, ARRAY_SIZE(sdh_parent_idx));
hws[SDH1_GATE] = ma35d1_clk_gate(dev, "sdh1_gate", "sdh1_mux",
clk_base + REG_CLK_SYSCLK0, 17);
@@ -603,14 +343,14 @@ static int ma35d1_clocks_probe(struct platform_device *pdev)
hws[HUSBH1_GATE] = ma35d1_clk_gate(dev, "husbh1_gate", "usbphy0",
clk_base + REG_CLK_SYSCLK0, 22);
- hws[GFX_MUX] = ma35d1_clk_mux(dev, "gfx_mux", clk_base + REG_CLK_CLKSEL0,
- 26, 1, gfx_sel_clks, ARRAY_SIZE(gfx_sel_clks));
+ hws[GFX_MUX] = ma35d1_clk_mux(dev, "gfx_mux", clk_base + REG_CLK_CLKSEL0, 26, 1, hws,
+ gfx_parent_idx, ARRAY_SIZE(gfx_parent_idx));
hws[GFX_GATE] = ma35d1_clk_gate(dev, "gfx_gate", "gfx_mux",
clk_base + REG_CLK_SYSCLK0, 24);
hws[VC8K_GATE] = ma35d1_clk_gate(dev, "vc8k_gate", "sysclk0_mux",
clk_base + REG_CLK_SYSCLK0, 25);
- hws[DCU_MUX] = ma35d1_clk_mux(dev, "dcu_mux", clk_base + REG_CLK_CLKSEL0,
- 24, 1, dcu_sel_clks, ARRAY_SIZE(dcu_sel_clks));
+ hws[DCU_MUX] = ma35d1_clk_mux(dev, "dcu_mux", clk_base + REG_CLK_CLKSEL0, 24, 1, hws,
+ dcu_parent_idx, ARRAY_SIZE(dcu_parent_idx));
hws[DCU_GATE] = ma35d1_clk_gate(dev, "dcu_gate", "dcu_mux",
clk_base + REG_CLK_SYSCLK0, 26);
hws[DCUP_DIV] = ma35d1_clk_divider_table(dev, "dcup_div", "vpll",
@@ -622,14 +362,14 @@ static int ma35d1_clocks_probe(struct platform_device *pdev)
hws[EMAC1_GATE] = ma35d1_clk_gate(dev, "emac1_gate", "epll_div2",
clk_base + REG_CLK_SYSCLK0, 28);
- hws[CCAP0_MUX] = ma35d1_clk_mux(dev, "ccap0_mux", clk_base + REG_CLK_CLKSEL0,
- 12, 1, ccap_sel_clks, ARRAY_SIZE(ccap_sel_clks));
+ hws[CCAP0_MUX] = ma35d1_clk_mux(dev, "ccap0_mux", clk_base + REG_CLK_CLKSEL0, 12, 1, hws,
+ ccap_parent_idx, ARRAY_SIZE(ccap_parent_idx));
hws[CCAP0_DIV] = ma35d1_clk_divider(dev, "ccap0_div", "ccap0_mux",
clk_base + REG_CLK_CLKDIV1, 8, 4);
hws[CCAP0_GATE] = ma35d1_clk_gate(dev, "ccap0_gate", "ccap0_div",
clk_base + REG_CLK_SYSCLK0, 29);
- hws[CCAP1_MUX] = ma35d1_clk_mux(dev, "ccap1_mux", clk_base + REG_CLK_CLKSEL0,
- 14, 1, ccap_sel_clks, ARRAY_SIZE(ccap_sel_clks));
+ hws[CCAP1_MUX] = ma35d1_clk_mux(dev, "ccap1_mux", clk_base + REG_CLK_CLKSEL0, 14, 1, hws,
+ ccap_parent_idx, ARRAY_SIZE(ccap_parent_idx));
hws[CCAP1_DIV] = ma35d1_clk_divider(dev, "ccap1_div", "ccap1_mux",
clk_base + REG_CLK_CLKDIV1,
12, 4);
@@ -667,13 +407,13 @@ static int ma35d1_clocks_probe(struct platform_device *pdev)
hws[TRA_GATE] = ma35d1_clk_gate(dev, "tra_gate", "hclk0",
clk_base + REG_CLK_SYSCLK1, 11);
- hws[DBG_MUX] = ma35d1_clk_mux(dev, "dbg_mux", clk_base + REG_CLK_CLKSEL0,
- 27, 1, dbg_sel_clks, ARRAY_SIZE(dbg_sel_clks));
+ hws[DBG_MUX] = ma35d1_clk_mux(dev, "dbg_mux", clk_base + REG_CLK_CLKSEL0, 27, 1, hws,
+ dbg_parent_idx, ARRAY_SIZE(dbg_parent_idx));
hws[DBG_GATE] = ma35d1_clk_gate(dev, "dbg_gate", "hclk0",
clk_base + REG_CLK_SYSCLK1, 12);
- hws[CKO_MUX] = ma35d1_clk_mux(dev, "cko_mux", clk_base + REG_CLK_CLKSEL4,
- 24, 4, cko_sel_clks, ARRAY_SIZE(cko_sel_clks));
+ hws[CKO_MUX] = ma35d1_clk_mux(dev, "cko_mux", clk_base + REG_CLK_CLKSEL4, 24, 4, hws,
+ cko_parent_idx, ARRAY_SIZE(cko_parent_idx));
hws[CKO_DIV] = ma35d1_clk_divider_pow2(dev, "cko_div", "cko_mux",
clk_base + REG_CLK_CLKOCTL, 0, 4);
hws[CKO_GATE] = ma35d1_clk_gate(dev, "cko_gate", "cko_div",
@@ -711,181 +451,169 @@ static int ma35d1_clocks_probe(struct platform_device *pdev)
hws[GPN_GATE] = ma35d1_clk_gate(dev, "gpn_gate", "hclk0",
clk_base + REG_CLK_SYSCLK1, 29);
- hws[TMR0_MUX] = ma35d1_clk_mux(dev, "tmr0_mux", clk_base + REG_CLK_CLKSEL1,
- 0, 3, timer0_sel_clks,
- ARRAY_SIZE(timer0_sel_clks));
+ hws[TMR0_MUX] = ma35d1_clk_mux(dev, "tmr0_mux", clk_base + REG_CLK_CLKSEL1, 0, 3, hws,
+ timer0_parent_idx, ARRAY_SIZE(timer0_parent_idx));
hws[TMR0_GATE] = ma35d1_clk_gate(dev, "tmr0_gate", "tmr0_mux",
clk_base + REG_CLK_APBCLK0, 0);
- hws[TMR1_MUX] = ma35d1_clk_mux(dev, "tmr1_mux", clk_base + REG_CLK_CLKSEL1,
- 4, 3, timer1_sel_clks,
- ARRAY_SIZE(timer1_sel_clks));
+ hws[TMR1_MUX] = ma35d1_clk_mux(dev, "tmr1_mux", clk_base + REG_CLK_CLKSEL1, 4, 3, hws,
+ timer1_parent_idx, ARRAY_SIZE(timer1_parent_idx));
hws[TMR1_GATE] = ma35d1_clk_gate(dev, "tmr1_gate", "tmr1_mux",
clk_base + REG_CLK_APBCLK0, 1);
- hws[TMR2_MUX] = ma35d1_clk_mux(dev, "tmr2_mux", clk_base + REG_CLK_CLKSEL1,
- 8, 3, timer2_sel_clks,
- ARRAY_SIZE(timer2_sel_clks));
+ hws[TMR2_MUX] = ma35d1_clk_mux(dev, "tmr2_mux", clk_base + REG_CLK_CLKSEL1, 8, 3, hws,
+ timer2_parent_idx, ARRAY_SIZE(timer2_parent_idx));
hws[TMR2_GATE] = ma35d1_clk_gate(dev, "tmr2_gate", "tmr2_mux",
clk_base + REG_CLK_APBCLK0, 2);
- hws[TMR3_MUX] = ma35d1_clk_mux(dev, "tmr3_mux", clk_base + REG_CLK_CLKSEL1,
- 12, 3, timer3_sel_clks,
- ARRAY_SIZE(timer3_sel_clks));
+ hws[TMR3_MUX] = ma35d1_clk_mux(dev, "tmr3_mux", clk_base + REG_CLK_CLKSEL1, 12, 3, hws,
+ timer3_parent_idx, ARRAY_SIZE(timer3_parent_idx));
hws[TMR3_GATE] = ma35d1_clk_gate(dev, "tmr3_gate", "tmr3_mux",
clk_base + REG_CLK_APBCLK0, 3);
- hws[TMR4_MUX] = ma35d1_clk_mux(dev, "tmr4_mux", clk_base + REG_CLK_CLKSEL1,
- 16, 3, timer4_sel_clks,
- ARRAY_SIZE(timer4_sel_clks));
+ hws[TMR4_MUX] = ma35d1_clk_mux(dev, "tmr4_mux", clk_base + REG_CLK_CLKSEL1, 16, 3, hws,
+ timer4_parent_idx, ARRAY_SIZE(timer4_parent_idx));
hws[TMR4_GATE] = ma35d1_clk_gate(dev, "tmr4_gate", "tmr4_mux",
clk_base + REG_CLK_APBCLK0, 4);
- hws[TMR5_MUX] = ma35d1_clk_mux(dev, "tmr5_mux", clk_base + REG_CLK_CLKSEL1,
- 20, 3, timer5_sel_clks,
- ARRAY_SIZE(timer5_sel_clks));
+ hws[TMR5_MUX] = ma35d1_clk_mux(dev, "tmr5_mux", clk_base + REG_CLK_CLKSEL1, 20, 3, hws,
+ timer5_parent_idx, ARRAY_SIZE(timer5_parent_idx));
hws[TMR5_GATE] = ma35d1_clk_gate(dev, "tmr5_gate", "tmr5_mux",
clk_base + REG_CLK_APBCLK0, 5);
- hws[TMR6_MUX] = ma35d1_clk_mux(dev, "tmr6_mux", clk_base + REG_CLK_CLKSEL1,
- 24, 3, timer6_sel_clks,
- ARRAY_SIZE(timer6_sel_clks));
+ hws[TMR6_MUX] = ma35d1_clk_mux(dev, "tmr6_mux", clk_base + REG_CLK_CLKSEL1, 24, 3, hws,
+ timer6_parent_idx, ARRAY_SIZE(timer6_parent_idx));
hws[TMR6_GATE] = ma35d1_clk_gate(dev, "tmr6_gate", "tmr6_mux",
clk_base + REG_CLK_APBCLK0, 6);
- hws[TMR7_MUX] = ma35d1_clk_mux(dev, "tmr7_mux", clk_base + REG_CLK_CLKSEL1,
- 28, 3, timer7_sel_clks,
- ARRAY_SIZE(timer7_sel_clks));
+ hws[TMR7_MUX] = ma35d1_clk_mux(dev, "tmr7_mux", clk_base + REG_CLK_CLKSEL1, 28, 3, hws,
+ timer7_parent_idx, ARRAY_SIZE(timer7_parent_idx));
hws[TMR7_GATE] = ma35d1_clk_gate(dev, "tmr7_gate", "tmr7_mux",
clk_base + REG_CLK_APBCLK0, 7);
- hws[TMR8_MUX] = ma35d1_clk_mux(dev, "tmr8_mux", clk_base + REG_CLK_CLKSEL2,
- 0, 3, timer8_sel_clks,
- ARRAY_SIZE(timer8_sel_clks));
+ hws[TMR8_MUX] = ma35d1_clk_mux(dev, "tmr8_mux", clk_base + REG_CLK_CLKSEL2, 0, 3, hws,
+ timer8_parent_idx, ARRAY_SIZE(timer8_parent_idx));
hws[TMR8_GATE] = ma35d1_clk_gate(dev, "tmr8_gate", "tmr8_mux",
clk_base + REG_CLK_APBCLK0, 8);
- hws[TMR9_MUX] = ma35d1_clk_mux(dev, "tmr9_mux", clk_base + REG_CLK_CLKSEL2,
- 4, 3, timer9_sel_clks,
- ARRAY_SIZE(timer9_sel_clks));
+ hws[TMR9_MUX] = ma35d1_clk_mux(dev, "tmr9_mux", clk_base + REG_CLK_CLKSEL2, 4, 3, hws,
+ timer9_parent_idx, ARRAY_SIZE(timer9_parent_idx));
hws[TMR9_GATE] = ma35d1_clk_gate(dev, "tmr9_gate", "tmr9_mux",
clk_base + REG_CLK_APBCLK0, 9);
- hws[TMR10_MUX] = ma35d1_clk_mux(dev, "tmr10_mux", clk_base + REG_CLK_CLKSEL2,
- 8, 3, timer10_sel_clks,
- ARRAY_SIZE(timer10_sel_clks));
+ hws[TMR10_MUX] = ma35d1_clk_mux(dev, "tmr10_mux", clk_base + REG_CLK_CLKSEL2, 8, 3, hws,
+ timer10_parent_idx, ARRAY_SIZE(timer10_parent_idx));
hws[TMR10_GATE] = ma35d1_clk_gate(dev, "tmr10_gate", "tmr10_mux",
clk_base + REG_CLK_APBCLK0, 10);
- hws[TMR11_MUX] = ma35d1_clk_mux(dev, "tmr11_mux", clk_base + REG_CLK_CLKSEL2,
- 12, 3, timer11_sel_clks,
- ARRAY_SIZE(timer11_sel_clks));
+ hws[TMR11_MUX] = ma35d1_clk_mux(dev, "tmr11_mux", clk_base + REG_CLK_CLKSEL2, 12, 3, hws,
+ timer11_parent_idx, ARRAY_SIZE(timer11_parent_idx));
hws[TMR11_GATE] = ma35d1_clk_gate(dev, "tmr11_gate", "tmr11_mux",
clk_base + REG_CLK_APBCLK0, 11);
- hws[UART0_MUX] = ma35d1_clk_mux(dev, "uart0_mux", clk_base + REG_CLK_CLKSEL2,
- 16, 2, uart_sel_clks, ARRAY_SIZE(uart_sel_clks));
+ hws[UART0_MUX] = ma35d1_clk_mux(dev, "uart0_mux", clk_base + REG_CLK_CLKSEL2, 16, 2, hws,
+ uart_parent_idx, ARRAY_SIZE(uart_parent_idx));
hws[UART0_DIV] = ma35d1_clk_divider(dev, "uart0_div", "uart0_mux",
clk_base + REG_CLK_CLKDIV1,
16, 4);
hws[UART0_GATE] = ma35d1_clk_gate(dev, "uart0_gate", "uart0_div",
clk_base + REG_CLK_APBCLK0, 12);
- hws[UART1_MUX] = ma35d1_clk_mux(dev, "uart1_mux", clk_base + REG_CLK_CLKSEL2,
- 18, 2, uart_sel_clks, ARRAY_SIZE(uart_sel_clks));
+ hws[UART1_MUX] = ma35d1_clk_mux(dev, "uart1_mux", clk_base + REG_CLK_CLKSEL2, 18, 2, hws,
+ uart_parent_idx, ARRAY_SIZE(uart_parent_idx));
hws[UART1_DIV] = ma35d1_clk_divider(dev, "uart1_div", "uart1_mux",
clk_base + REG_CLK_CLKDIV1,
20, 4);
hws[UART1_GATE] = ma35d1_clk_gate(dev, "uart1_gate", "uart1_div",
clk_base + REG_CLK_APBCLK0, 13);
- hws[UART2_MUX] = ma35d1_clk_mux(dev, "uart2_mux", clk_base + REG_CLK_CLKSEL2,
- 20, 2, uart_sel_clks, ARRAY_SIZE(uart_sel_clks));
+ hws[UART2_MUX] = ma35d1_clk_mux(dev, "uart2_mux", clk_base + REG_CLK_CLKSEL2, 20, 2, hws,
+ uart_parent_idx, ARRAY_SIZE(uart_parent_idx));
hws[UART2_DIV] = ma35d1_clk_divider(dev, "uart2_div", "uart2_mux",
clk_base + REG_CLK_CLKDIV1,
24, 4);
hws[UART2_GATE] = ma35d1_clk_gate(dev, "uart2_gate", "uart2_div",
clk_base + REG_CLK_APBCLK0, 14);
- hws[UART3_MUX] = ma35d1_clk_mux(dev, "uart3_mux", clk_base + REG_CLK_CLKSEL2,
- 22, 2, uart_sel_clks, ARRAY_SIZE(uart_sel_clks));
+ hws[UART3_MUX] = ma35d1_clk_mux(dev, "uart3_mux", clk_base + REG_CLK_CLKSEL2, 22, 2, hws,
+ uart_parent_idx, ARRAY_SIZE(uart_parent_idx));
hws[UART3_DIV] = ma35d1_clk_divider(dev, "uart3_div", "uart3_mux",
clk_base + REG_CLK_CLKDIV1,
28, 4);
hws[UART3_GATE] = ma35d1_clk_gate(dev, "uart3_gate", "uart3_div",
clk_base + REG_CLK_APBCLK0, 15);
- hws[UART4_MUX] = ma35d1_clk_mux(dev, "uart4_mux", clk_base + REG_CLK_CLKSEL2,
- 24, 2, uart_sel_clks, ARRAY_SIZE(uart_sel_clks));
+ hws[UART4_MUX] = ma35d1_clk_mux(dev, "uart4_mux", clk_base + REG_CLK_CLKSEL2, 24, 2, hws,
+ uart_parent_idx, ARRAY_SIZE(uart_parent_idx));
hws[UART4_DIV] = ma35d1_clk_divider(dev, "uart4_div", "uart4_mux",
clk_base + REG_CLK_CLKDIV2,
0, 4);
hws[UART4_GATE] = ma35d1_clk_gate(dev, "uart4_gate", "uart4_div",
clk_base + REG_CLK_APBCLK0, 16);
- hws[UART5_MUX] = ma35d1_clk_mux(dev, "uart5_mux", clk_base + REG_CLK_CLKSEL2,
- 26, 2, uart_sel_clks, ARRAY_SIZE(uart_sel_clks));
+ hws[UART5_MUX] = ma35d1_clk_mux(dev, "uart5_mux", clk_base + REG_CLK_CLKSEL2, 26, 2, hws,
+ uart_parent_idx, ARRAY_SIZE(uart_parent_idx));
hws[UART5_DIV] = ma35d1_clk_divider(dev, "uart5_div", "uart5_mux",
clk_base + REG_CLK_CLKDIV2,
4, 4);
hws[UART5_GATE] = ma35d1_clk_gate(dev, "uart5_gate", "uart5_div",
clk_base + REG_CLK_APBCLK0, 17);
- hws[UART6_MUX] = ma35d1_clk_mux(dev, "uart6_mux", clk_base + REG_CLK_CLKSEL2,
- 28, 2, uart_sel_clks, ARRAY_SIZE(uart_sel_clks));
+ hws[UART6_MUX] = ma35d1_clk_mux(dev, "uart6_mux", clk_base + REG_CLK_CLKSEL2, 28, 2, hws,
+ uart_parent_idx, ARRAY_SIZE(uart_parent_idx));
hws[UART6_DIV] = ma35d1_clk_divider(dev, "uart6_div", "uart6_mux",
clk_base + REG_CLK_CLKDIV2,
8, 4);
hws[UART6_GATE] = ma35d1_clk_gate(dev, "uart6_gate", "uart6_div",
clk_base + REG_CLK_APBCLK0, 18);
- hws[UART7_MUX] = ma35d1_clk_mux(dev, "uart7_mux", clk_base + REG_CLK_CLKSEL2,
- 30, 2, uart_sel_clks, ARRAY_SIZE(uart_sel_clks));
+ hws[UART7_MUX] = ma35d1_clk_mux(dev, "uart7_mux", clk_base + REG_CLK_CLKSEL2, 30, 2, hws,
+ uart_parent_idx, ARRAY_SIZE(uart_parent_idx));
hws[UART7_DIV] = ma35d1_clk_divider(dev, "uart7_div", "uart7_mux",
clk_base + REG_CLK_CLKDIV2,
12, 4);
hws[UART7_GATE] = ma35d1_clk_gate(dev, "uart7_gate", "uart7_div",
clk_base + REG_CLK_APBCLK0, 19);
- hws[UART8_MUX] = ma35d1_clk_mux(dev, "uart8_mux", clk_base + REG_CLK_CLKSEL3,
- 0, 2, uart_sel_clks, ARRAY_SIZE(uart_sel_clks));
+ hws[UART8_MUX] = ma35d1_clk_mux(dev, "uart8_mux", clk_base + REG_CLK_CLKSEL3, 0, 2, hws,
+ uart_parent_idx, ARRAY_SIZE(uart_parent_idx));
hws[UART8_DIV] = ma35d1_clk_divider(dev, "uart8_div", "uart8_mux",
clk_base + REG_CLK_CLKDIV2,
16, 4);
hws[UART8_GATE] = ma35d1_clk_gate(dev, "uart8_gate", "uart8_div",
clk_base + REG_CLK_APBCLK0, 20);
- hws[UART9_MUX] = ma35d1_clk_mux(dev, "uart9_mux", clk_base + REG_CLK_CLKSEL3,
- 2, 2, uart_sel_clks, ARRAY_SIZE(uart_sel_clks));
+ hws[UART9_MUX] = ma35d1_clk_mux(dev, "uart9_mux", clk_base + REG_CLK_CLKSEL3, 2, 2, hws,
+ uart_parent_idx, ARRAY_SIZE(uart_parent_idx));
hws[UART9_DIV] = ma35d1_clk_divider(dev, "uart9_div", "uart9_mux",
clk_base + REG_CLK_CLKDIV2,
20, 4);
hws[UART9_GATE] = ma35d1_clk_gate(dev, "uart9_gate", "uart9_div",
clk_base + REG_CLK_APBCLK0, 21);
- hws[UART10_MUX] = ma35d1_clk_mux(dev, "uart10_mux", clk_base + REG_CLK_CLKSEL3,
- 4, 2, uart_sel_clks, ARRAY_SIZE(uart_sel_clks));
+ hws[UART10_MUX] = ma35d1_clk_mux(dev, "uart10_mux", clk_base + REG_CLK_CLKSEL3, 4, 2, hws,
+ uart_parent_idx, ARRAY_SIZE(uart_parent_idx));
hws[UART10_DIV] = ma35d1_clk_divider(dev, "uart10_div", "uart10_mux",
clk_base + REG_CLK_CLKDIV2,
24, 4);
hws[UART10_GATE] = ma35d1_clk_gate(dev, "uart10_gate", "uart10_div",
clk_base + REG_CLK_APBCLK0, 22);
- hws[UART11_MUX] = ma35d1_clk_mux(dev, "uart11_mux", clk_base + REG_CLK_CLKSEL3,
- 6, 2, uart_sel_clks, ARRAY_SIZE(uart_sel_clks));
+ hws[UART11_MUX] = ma35d1_clk_mux(dev, "uart11_mux", clk_base + REG_CLK_CLKSEL3, 6, 2, hws,
+ uart_parent_idx, ARRAY_SIZE(uart_parent_idx));
hws[UART11_DIV] = ma35d1_clk_divider(dev, "uart11_div", "uart11_mux",
clk_base + REG_CLK_CLKDIV2,
28, 4);
hws[UART11_GATE] = ma35d1_clk_gate(dev, "uart11_gate", "uart11_div",
clk_base + REG_CLK_APBCLK0, 23);
- hws[UART12_MUX] = ma35d1_clk_mux(dev, "uart12_mux", clk_base + REG_CLK_CLKSEL3,
- 8, 2, uart_sel_clks, ARRAY_SIZE(uart_sel_clks));
+ hws[UART12_MUX] = ma35d1_clk_mux(dev, "uart12_mux", clk_base + REG_CLK_CLKSEL3, 8, 2, hws,
+ uart_parent_idx, ARRAY_SIZE(uart_parent_idx));
hws[UART12_DIV] = ma35d1_clk_divider(dev, "uart12_div", "uart12_mux",
clk_base + REG_CLK_CLKDIV3,
0, 4);
hws[UART12_GATE] = ma35d1_clk_gate(dev, "uart12_gate", "uart12_div",
clk_base + REG_CLK_APBCLK0, 24);
- hws[UART13_MUX] = ma35d1_clk_mux(dev, "uart13_mux", clk_base + REG_CLK_CLKSEL3,
- 10, 2, uart_sel_clks, ARRAY_SIZE(uart_sel_clks));
+ hws[UART13_MUX] = ma35d1_clk_mux(dev, "uart13_mux", clk_base + REG_CLK_CLKSEL3, 10, 2, hws,
+ uart_parent_idx, ARRAY_SIZE(uart_parent_idx));
hws[UART13_DIV] = ma35d1_clk_divider(dev, "uart13_div", "uart13_mux",
clk_base + REG_CLK_CLKDIV3,
4, 4);
hws[UART13_GATE] = ma35d1_clk_gate(dev, "uart13_gate", "uart13_div",
clk_base + REG_CLK_APBCLK0, 25);
- hws[UART14_MUX] = ma35d1_clk_mux(dev, "uart14_mux", clk_base + REG_CLK_CLKSEL3,
- 12, 2, uart_sel_clks, ARRAY_SIZE(uart_sel_clks));
+ hws[UART14_MUX] = ma35d1_clk_mux(dev, "uart14_mux", clk_base + REG_CLK_CLKSEL3, 12, 2, hws,
+ uart_parent_idx, ARRAY_SIZE(uart_parent_idx));
hws[UART14_DIV] = ma35d1_clk_divider(dev, "uart14_div", "uart14_mux",
clk_base + REG_CLK_CLKDIV3,
8, 4);
hws[UART14_GATE] = ma35d1_clk_gate(dev, "uart14_gate", "uart14_div",
clk_base + REG_CLK_APBCLK0, 26);
- hws[UART15_MUX] = ma35d1_clk_mux(dev, "uart15_mux", clk_base + REG_CLK_CLKSEL3,
- 14, 2, uart_sel_clks, ARRAY_SIZE(uart_sel_clks));
+ hws[UART15_MUX] = ma35d1_clk_mux(dev, "uart15_mux", clk_base + REG_CLK_CLKSEL3, 14, 2, hws,
+ uart_parent_idx, ARRAY_SIZE(uart_parent_idx));
hws[UART15_DIV] = ma35d1_clk_divider(dev, "uart15_div", "uart15_mux",
clk_base + REG_CLK_CLKDIV3,
12, 4);
hws[UART15_GATE] = ma35d1_clk_gate(dev, "uart15_gate", "uart15_div",
clk_base + REG_CLK_APBCLK0, 27);
- hws[UART16_MUX] = ma35d1_clk_mux(dev, "uart16_mux", clk_base + REG_CLK_CLKSEL3,
- 16, 2, uart_sel_clks, ARRAY_SIZE(uart_sel_clks));
+ hws[UART16_MUX] = ma35d1_clk_mux(dev, "uart16_mux", clk_base + REG_CLK_CLKSEL3, 16, 2, hws,
+ uart_parent_idx, ARRAY_SIZE(uart_parent_idx));
hws[UART16_DIV] = ma35d1_clk_divider(dev, "uart16_div", "uart16_mux",
clk_base + REG_CLK_CLKDIV3,
16, 4);
@@ -897,8 +625,8 @@ static int ma35d1_clocks_probe(struct platform_device *pdev)
hws[DDR_GATE] = ma35d1_clk_gate(dev, "ddr_gate", "ddrpll",
clk_base + REG_CLK_APBCLK0, 30);
- hws[KPI_MUX] = ma35d1_clk_mux(dev, "kpi_mux", clk_base + REG_CLK_CLKSEL4,
- 30, 1, kpi_sel_clks, ARRAY_SIZE(kpi_sel_clks));
+ hws[KPI_MUX] = ma35d1_clk_mux(dev, "kpi_mux", clk_base + REG_CLK_CLKSEL4, 30, 1, hws,
+ kpi_parent_idx, ARRAY_SIZE(kpi_parent_idx));
hws[KPI_DIV] = ma35d1_clk_divider(dev, "kpi_div", "kpi_mux",
clk_base + REG_CLK_CLKDIV4,
24, 8);
@@ -918,49 +646,49 @@ static int ma35d1_clocks_probe(struct platform_device *pdev)
hws[I2C5_GATE] = ma35d1_clk_gate(dev, "i2c5_gate", "pclk2",
clk_base + REG_CLK_APBCLK1, 5);
- hws[QSPI0_MUX] = ma35d1_clk_mux(dev, "qspi0_mux", clk_base + REG_CLK_CLKSEL4,
- 8, 2, qspi0_sel_clks, ARRAY_SIZE(qspi0_sel_clks));
+ hws[QSPI0_MUX] = ma35d1_clk_mux(dev, "qspi0_mux", clk_base + REG_CLK_CLKSEL4, 8, 2, hws,
+ qspi_parent_idx, ARRAY_SIZE(qspi_parent_idx));
hws[QSPI0_GATE] = ma35d1_clk_gate(dev, "qspi0_gate", "qspi0_mux",
clk_base + REG_CLK_APBCLK1, 6);
- hws[QSPI1_MUX] = ma35d1_clk_mux(dev, "qspi1_mux", clk_base + REG_CLK_CLKSEL4,
- 10, 2, qspi1_sel_clks, ARRAY_SIZE(qspi1_sel_clks));
+ hws[QSPI1_MUX] = ma35d1_clk_mux(dev, "qspi1_mux", clk_base + REG_CLK_CLKSEL4, 10, 2, hws,
+ qspi_parent_idx, ARRAY_SIZE(qspi_parent_idx));
hws[QSPI1_GATE] = ma35d1_clk_gate(dev, "qspi1_gate", "qspi1_mux",
clk_base + REG_CLK_APBCLK1, 7);
- hws[SMC0_MUX] = ma35d1_clk_mux(dev, "smc0_mux", clk_base + REG_CLK_CLKSEL4,
- 28, 1, smc_sel_clks, ARRAY_SIZE(smc_sel_clks));
+ hws[SMC0_MUX] = ma35d1_clk_mux(dev, "smc0_mux", clk_base + REG_CLK_CLKSEL4, 28, 1, hws,
+ smc_parent_idx, ARRAY_SIZE(smc_parent_idx));
hws[SMC0_DIV] = ma35d1_clk_divider(dev, "smc0_div", "smc0_mux",
clk_base + REG_CLK_CLKDIV1,
0, 4);
hws[SMC0_GATE] = ma35d1_clk_gate(dev, "smc0_gate", "smc0_div",
clk_base + REG_CLK_APBCLK1, 12);
- hws[SMC1_MUX] = ma35d1_clk_mux(dev, "smc1_mux", clk_base + REG_CLK_CLKSEL4,
- 29, 1, smc_sel_clks, ARRAY_SIZE(smc_sel_clks));
+ hws[SMC1_MUX] = ma35d1_clk_mux(dev, "smc1_mux", clk_base + REG_CLK_CLKSEL4, 29, 1, hws,
+ smc_parent_idx, ARRAY_SIZE(smc_parent_idx));
hws[SMC1_DIV] = ma35d1_clk_divider(dev, "smc1_div", "smc1_mux",
clk_base + REG_CLK_CLKDIV1,
4, 4);
hws[SMC1_GATE] = ma35d1_clk_gate(dev, "smc1_gate", "smc1_div",
clk_base + REG_CLK_APBCLK1, 13);
- hws[WDT0_MUX] = ma35d1_clk_mux(dev, "wdt0_mux", clk_base + REG_CLK_CLKSEL3,
- 20, 2, wdt0_sel_clks, ARRAY_SIZE(wdt0_sel_clks));
+ hws[WDT0_MUX] = ma35d1_clk_mux(dev, "wdt0_mux", clk_base + REG_CLK_CLKSEL3, 20, 2, hws,
+ wdt0_parent_idx, ARRAY_SIZE(wdt0_parent_idx));
hws[WDT0_GATE] = ma35d1_clk_gate(dev, "wdt0_gate", "wdt0_mux",
clk_base + REG_CLK_APBCLK1, 16);
- hws[WDT1_MUX] = ma35d1_clk_mux(dev, "wdt1_mux", clk_base + REG_CLK_CLKSEL3,
- 24, 2, wdt1_sel_clks, ARRAY_SIZE(wdt1_sel_clks));
+ hws[WDT1_MUX] = ma35d1_clk_mux(dev, "wdt1_mux", clk_base + REG_CLK_CLKSEL3, 24, 2, hws,
+ wdt1_parent_idx, ARRAY_SIZE(wdt1_parent_idx));
hws[WDT1_GATE] = ma35d1_clk_gate(dev, "wdt1_gate", "wdt1_mux",
clk_base + REG_CLK_APBCLK1, 17);
- hws[WDT2_MUX] = ma35d1_clk_mux(dev, "wdt2_mux", clk_base + REG_CLK_CLKSEL3,
- 28, 2, wdt2_sel_clks, ARRAY_SIZE(wdt2_sel_clks));
+ hws[WDT2_MUX] = ma35d1_clk_mux(dev, "wdt2_mux", clk_base + REG_CLK_CLKSEL3, 28, 2, hws,
+ wdt2_parent_idx, ARRAY_SIZE(wdt2_parent_idx));
hws[WDT2_GATE] = ma35d1_clk_gate(dev, "wdt2_gate", "wdt2_mux",
clk_base + REG_CLK_APBCLK1, 18);
- hws[WWDT0_MUX] = ma35d1_clk_mux(dev, "wwdt0_mux", clk_base + REG_CLK_CLKSEL3,
- 22, 2, wwdt0_sel_clks, ARRAY_SIZE(wwdt0_sel_clks));
- hws[WWDT1_MUX] = ma35d1_clk_mux(dev, "wwdt1_mux", clk_base + REG_CLK_CLKSEL3,
- 26, 2, wwdt1_sel_clks, ARRAY_SIZE(wwdt1_sel_clks));
- hws[WWDT2_MUX] = ma35d1_clk_mux(dev, "wwdt2_mux", clk_base + REG_CLK_CLKSEL3,
- 30, 2, wwdt2_sel_clks, ARRAY_SIZE(wwdt2_sel_clks));
+ hws[WWDT0_MUX] = ma35d1_clk_mux(dev, "wwdt0_mux", clk_base + REG_CLK_CLKSEL3, 22, 2, hws,
+ wwdt0_parent_idx, ARRAY_SIZE(wwdt0_parent_idx));
+ hws[WWDT1_MUX] = ma35d1_clk_mux(dev, "wwdt1_mux", clk_base + REG_CLK_CLKSEL3, 26, 2, hws,
+ wwdt1_parent_idx, ARRAY_SIZE(wwdt1_parent_idx));
+ hws[WWDT2_MUX] = ma35d1_clk_mux(dev, "wwdt2_mux", clk_base + REG_CLK_CLKSEL3, 30, 2, hws,
+ wwdt2_parent_idx, ARRAY_SIZE(wwdt2_parent_idx));
hws[EPWM0_GATE] = ma35d1_clk_gate(dev, "epwm0_gate", "pclk1",
clk_base + REG_CLK_APBCLK1, 24);
@@ -969,12 +697,12 @@ static int ma35d1_clocks_probe(struct platform_device *pdev)
hws[EPWM2_GATE] = ma35d1_clk_gate(dev, "epwm2_gate", "pclk1",
clk_base + REG_CLK_APBCLK1, 26);
- hws[I2S0_MUX] = ma35d1_clk_mux(dev, "i2s0_mux", clk_base + REG_CLK_CLKSEL4,
- 12, 2, i2s0_sel_clks, ARRAY_SIZE(i2s0_sel_clks));
+ hws[I2S0_MUX] = ma35d1_clk_mux(dev, "i2s0_mux", clk_base + REG_CLK_CLKSEL4, 12, 2, hws,
+ i2s_parent_idx, ARRAY_SIZE(i2s_parent_idx));
hws[I2S0_GATE] = ma35d1_clk_gate(dev, "i2s0_gate", "i2s0_mux",
clk_base + REG_CLK_APBCLK2, 0);
- hws[I2S1_MUX] = ma35d1_clk_mux(dev, "i2s1_mux", clk_base + REG_CLK_CLKSEL4,
- 14, 2, i2s1_sel_clks, ARRAY_SIZE(i2s1_sel_clks));
+ hws[I2S1_MUX] = ma35d1_clk_mux(dev, "i2s1_mux", clk_base + REG_CLK_CLKSEL4, 14, 2, hws,
+ i2s_parent_idx, ARRAY_SIZE(i2s_parent_idx));
hws[I2S1_GATE] = ma35d1_clk_gate(dev, "i2s1_gate", "i2s1_mux",
clk_base + REG_CLK_APBCLK2, 1);
@@ -983,20 +711,20 @@ static int ma35d1_clocks_probe(struct platform_device *pdev)
hws[SSPCC_GATE] = ma35d1_clk_gate(dev, "sspcc_gate", "pclk3",
clk_base + REG_CLK_APBCLK2, 3);
- hws[SPI0_MUX] = ma35d1_clk_mux(dev, "spi0_mux", clk_base + REG_CLK_CLKSEL4,
- 0, 2, spi0_sel_clks, ARRAY_SIZE(spi0_sel_clks));
+ hws[SPI0_MUX] = ma35d1_clk_mux(dev, "spi0_mux", clk_base + REG_CLK_CLKSEL4, 0, 2, hws,
+ spi0_parent_idx, ARRAY_SIZE(spi0_parent_idx));
hws[SPI0_GATE] = ma35d1_clk_gate(dev, "spi0_gate", "spi0_mux",
clk_base + REG_CLK_APBCLK2, 4);
- hws[SPI1_MUX] = ma35d1_clk_mux(dev, "spi1_mux", clk_base + REG_CLK_CLKSEL4,
- 2, 2, spi1_sel_clks, ARRAY_SIZE(spi1_sel_clks));
+ hws[SPI1_MUX] = ma35d1_clk_mux(dev, "spi1_mux", clk_base + REG_CLK_CLKSEL4, 2, 2, hws,
+ spi1_parent_idx, ARRAY_SIZE(spi1_parent_idx));
hws[SPI1_GATE] = ma35d1_clk_gate(dev, "spi1_gate", "spi1_mux",
clk_base + REG_CLK_APBCLK2, 5);
- hws[SPI2_MUX] = ma35d1_clk_mux(dev, "spi2_mux", clk_base + REG_CLK_CLKSEL4,
- 4, 2, spi2_sel_clks, ARRAY_SIZE(spi2_sel_clks));
+ hws[SPI2_MUX] = ma35d1_clk_mux(dev, "spi2_mux", clk_base + REG_CLK_CLKSEL4, 4, 2, hws,
+ spi2_parent_idx, ARRAY_SIZE(spi2_parent_idx));
hws[SPI2_GATE] = ma35d1_clk_gate(dev, "spi2_gate", "spi2_mux",
clk_base + REG_CLK_APBCLK2, 6);
- hws[SPI3_MUX] = ma35d1_clk_mux(dev, "spi3_mux", clk_base + REG_CLK_CLKSEL4,
- 6, 2, spi3_sel_clks, ARRAY_SIZE(spi3_sel_clks));
+ hws[SPI3_MUX] = ma35d1_clk_mux(dev, "spi3_mux", clk_base + REG_CLK_CLKSEL4, 6, 2, hws,
+ spi3_parent_idx, ARRAY_SIZE(spi3_parent_idx));
hws[SPI3_GATE] = ma35d1_clk_gate(dev, "spi3_gate", "spi3_mux",
clk_base + REG_CLK_APBCLK2, 7);
---
base-commit: 1ec281b42ee249cfe9bad52a54149de29ed6aa78
change-id: 20260813-perso-ma35d1-upstream-clk-65cacfc1a86b
Best regards,
--
Miquel Raynal <miquel.raynal@bootlin.com>
^ permalink raw reply related [flat|nested] 2+ messages in thread
* Re: [PATCH] clk: nuvoton: ma35d1: Use clk_hw pointers as mux parents
2026-08-13 7:28 [PATCH] clk: nuvoton: ma35d1: Use clk_hw pointers as mux parents Miquel Raynal
@ 2026-08-14 7:28 ` sashiko-bot
0 siblings, 0 replies; 2+ messages in thread
From: sashiko-bot @ 2026-08-14 7:28 UTC (permalink / raw)
To: Miquel Raynal; +Cc: linux-clk
Thank you for your contribution! Sashiko AI review found 1 potential issue(s) to consider:
- [High] Missing IS_ERR() check when retrieving clk_hw pointers for mux parents leads to a kernel panic if a parent clock failed to register.
--
--- Patch [1]: [PATCH] clk: nuvoton: ma35d1: Use clk_hw pointers as mux parents ---
Note: The format of this report has been altered to a free-form summary due
to automated recitation restrictions. Inline diffs are omitted.
commit cb1ab325c1866a1de7e5ffdc22cd1339fb87557f
Author: Miquel Raynal <miquel.raynal@bootlin.com>
Subject: clk: nuvoton: ma35d1: Use clk_hw pointers as mux parents
This patch updates the MA35D1 clock provider to use direct HW clock pointers
for parent lookups instead of string-based lookups, fixing flat clock trees
and unassigned frequencies.
[Severity: High]
Could this lead to a kernel panic if a parent clock registration fails?
In drivers/clk/nuvoton/clk-ma35d1.c, within the ma35d1_clk_mux() function,
the code iterates over num_parents and assigns hws[parent_idx[i]] to the
parent_hws array.
If a preceding clock registration function (like ma35d1_reg_clk_pll or
ma35d1_clk_fixed) fails, it will return an ERR_PTR which gets stored in the
hws array. Because ma35d1_clk_mux() copies these pointers into parent_hws
without an IS_ERR check, the ERR_PTR is handed off to the clock core.
Since the common clock framework treats any non-NULL pointer as valid, won't
this result in an invalid memory dereference when clk_core_fill_parent_index()
attempts to access parent->hw->core?
--
Sashiko AI review · https://sashiko.dev/#/patchset/20260813-perso-ma35d1-upstream-clk-v1-1-e78e5e6172ea@bootlin.com?part=1
^ permalink raw reply [flat|nested] 2+ messages in thread
end of thread, other threads:[~2026-08-14 7:28 UTC | newest]
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2026-08-13 7:28 [PATCH] clk: nuvoton: ma35d1: Use clk_hw pointers as mux parents Miquel Raynal
2026-08-14 7:28 ` sashiko-bot
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