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authorLinus Torvalds <torvalds@linux-foundation.org>2019-05-09 14:50:09 -0700
committerLinus Torvalds <torvalds@linux-foundation.org>2019-05-09 14:50:09 -0700
commitea5aee6d97fd2d4499b1eebc233861c1def70f06 (patch)
tree6b332e66bb0ec00b2e35c074ec3f09fb7cf56a1e /include/linux
parentMerge tag 'rtc-5.2' of git://git.kernel.org/pub/scm/linux/kernel/git/abelloni/linux (diff)
parentMerge branch 'clk-parent-rewrite-1' into clk-next (diff)
downloadlinux-dev-ea5aee6d97fd2d4499b1eebc233861c1def70f06.tar.xz
linux-dev-ea5aee6d97fd2d4499b1eebc233861c1def70f06.zip
Merge tag 'clk-for-linus' of git://git.kernel.org/pub/scm/linux/kernel/git/clk/linux
Pull clk framework updates from Stephen Boyd: "We have a couple new features and changes in the core clk framework this time around because we've finally gotten around to fixing some long standing issues. There's still work to do though, so this pull request is largely laying down the foundation for all the driver changes to come in the next merge window. The first problem we're alleviating is how parents of clks are specified. With the new method, we should see lots of drivers migrate away from the current design of string comparisons on the entire clk tree to a more direct method where they can use clk_hw pointers or more localized names specified in DT or via clkdev. This should reduce our reliance on string comparisons for all the topology description logic that we've been using for years and hopefully speed some things up while avoiding problems we have with generating clk names. Beyond that we also got rid of the CLK_IS_BASIC flag because it wasn't really helping anyone and we introduced big-endian versions of the basic clk types so that we can get rid of clk_{readl,writel}(). Both of these are things that driver developers have tried to use over the years that I typically bat away during code reviews because they're not useful. It's great to see these two things go away so maintainers can save time not worrying about these things. On the driver side we got the usual collection of new SoC support and non-critical fixes and updates to existing code. The big topics that stand out are the new driver support for Mediatek MT8183 and MT8516 SoCs, Amlogic Meson8b and G12a SoCs, and the SiFive FU540 SoC. The other patches in the driver pile are mostly fixes for things that are being used for the first time or additions for clks that couldn't be tested before because there wasn't a consumer driver that exercised them. Details are below and also in the sub-maintainer tags. Core: - Remove clk_readl() and introduce BE versions of basic clk types - Rewrite how clk parents can be specified to allow DT/clkdev lookups - Removal of the CLK_IS_BASIC clk flag - Framework documentation updates and fixes New Drivers: - Support for STM32F769 - AT91 sam9x60 PMC support - SiFive FU540 PRCI and PLL support - Qualcomm QCS404 CDSP clk support - Qualcomm QCS404 Turing clk support - Mediatek MT8183 clock support - Mediatek MT8516 clock support - Milbeaut M10V clk controller support - Support for Cirrus Logic Lochnagar clks Updates: - Rework AT91 sckc DT bindings - Fix slow RC oscillator issue on sama5d3 - Mark UFS clk as critical on Hi-Silicon hi3660 SoCs - Various static analysis fixes/finds and const markings - Video Engine (ECLK) support on Aspeed SoCs - Xilinx ZynqMP Versal platform support - Convert Xilinx ZynqMP driver to be struct oriented - Fixes for Rockchip rk3328 and rk3288 SoCs - Sub-type for Rockchip SoCs where mux and divider aren't a single register - Remove SNVS clock from i.MX7UPL clock driver and bindings - Improve i.MX5 clock driver for i.MX50 support - Addition of ADC clock definition for Exynos 5410 SoC (Odroid XU) - Export a new clock for the MBUS controller on the A13 - Allwinner H6 fixes to support a finer clocking of the video and VPU engines - Add g12a support in the Amlogic axg audio clock controller - Add missing PCI USB clock on Rensas RZ/N1 - Add Z2 (Cortex-A53) clocks on Rensas R-Car E3 and RZ/G2E - A new helper DIV64_U64_ROUND_CLOSEST() in <linux/math64.h> - VPU and Video Decoder clocks on Amlogic Meson8b - Finally remove the wrong ABP Meson8b clock id - Add Video Decoder, PCIe PLL, and CPU Clocks on Amlogic G12A - Re-expose SAR_ADC_SEL and CTS_OSCIN on Amlogic G12A AO clock controller - Un-expose some Amlogic AXG-Audio input clocks IDs" * tag 'clk-for-linus' of git://git.kernel.org/pub/scm/linux/kernel/git/clk/linux: (172 commits) clk: Cache core in clk_fetch_parent_index() without names clk: imx: correct pfdv2 gate_bit/vld_bit operations clk: sifive: add a driver for the SiFive FU540 PRCI IP block clk: analogbits: add Wide-Range PLL library clk: imx: clk-pllv3: mark expected switch fall-throughs clk: imx8mq: Add dsi_ipg_div clk: imx: pllv4: add fractional-N pll support clk: sunxi-ng: Use the correct style for SPDX License Identifier clk: sprd: Use the correct style for SPDX License Identifier clk: renesas: Use the correct style for SPDX License Identifier clk: qcom: Use the correct style for SPDX License Identifier clk: davinci: Use the correct style for SPDX License Identifier clk: actions: Use the correct style for SPDX License Identifier clk: imx: keep uart clock on during system boot clk: imx: correct i.MX7D AV PLL num/denom offset dt-bindings: clk: add documentation for the SiFive PRCI driver clk: stm32mp1: Add ddrperfm clock clk: Remove CLK_IS_BASIC clk flag clock: milbeaut: Add Milbeaut M10V clock controller dt-bindings: clock: milbeaut: add Milbeaut clock description ...
Diffstat (limited to 'include/linux')
-rw-r--r--include/linux/clk-provider.h112
-rw-r--r--include/linux/clk/analogbits-wrpll-cln28hpc.h79
-rw-r--r--include/linux/clk/at91_pmc.h12
-rw-r--r--include/linux/clk/ti.h2
-rw-r--r--include/linux/device.h2
-rw-r--r--include/linux/math64.h13
6 files changed, 151 insertions, 69 deletions
diff --git a/include/linux/clk-provider.h b/include/linux/clk-provider.h
index b7cf80a71293..491d992d045d 100644
--- a/include/linux/clk-provider.h
+++ b/include/linux/clk-provider.h
@@ -24,7 +24,7 @@
#define CLK_SET_RATE_PARENT BIT(2) /* propagate rate change up one level */
#define CLK_IGNORE_UNUSED BIT(3) /* do not gate even if unused */
/* unused */
-#define CLK_IS_BASIC BIT(5) /* Basic clk, can't do a to_clk_foo() */
+ /* unused */
#define CLK_GET_RATE_NOCACHE BIT(6) /* do not use the cached clk rate */
#define CLK_SET_RATE_NO_REPARENT BIT(7) /* don't re-parent on rate change */
#define CLK_GET_ACCURACY_NOCACHE BIT(8) /* do not use the cached clk accuracy */
@@ -251,19 +251,40 @@ struct clk_ops {
};
/**
+ * struct clk_parent_data - clk parent information
+ * @hw: parent clk_hw pointer (used for clk providers with internal clks)
+ * @fw_name: parent name local to provider registering clk
+ * @name: globally unique parent name (used as a fallback)
+ * @index: parent index local to provider registering clk (if @fw_name absent)
+ */
+struct clk_parent_data {
+ const struct clk_hw *hw;
+ const char *fw_name;
+ const char *name;
+ int index;
+};
+
+/**
* struct clk_init_data - holds init data that's common to all clocks and is
* shared between the clock provider and the common clock framework.
*
* @name: clock name
* @ops: operations this clock supports
* @parent_names: array of string names for all possible parents
+ * @parent_data: array of parent data for all possible parents (when some
+ * parents are external to the clk controller)
+ * @parent_hws: array of pointers to all possible parents (when all parents
+ * are internal to the clk controller)
* @num_parents: number of possible parents
* @flags: framework-level hints and quirks
*/
struct clk_init_data {
const char *name;
const struct clk_ops *ops;
+ /* Only one of the following three should be assigned */
const char * const *parent_names;
+ const struct clk_parent_data *parent_data;
+ const struct clk_hw **parent_hws;
u8 num_parents;
unsigned long flags;
};
@@ -307,7 +328,6 @@ struct clk_fixed_rate {
struct clk_hw hw;
unsigned long fixed_rate;
unsigned long fixed_accuracy;
- u8 flags;
};
#define to_clk_fixed_rate(_hw) container_of(_hw, struct clk_fixed_rate, hw)
@@ -349,6 +369,9 @@ void of_fixed_clk_setup(struct device_node *np);
* of this register, and mask of gate bits are in higher 16-bit of this
* register. While setting the gate bits, higher 16-bit should also be
* updated to indicate changing gate bits.
+ * CLK_GATE_BIG_ENDIAN - by default little endian register accesses are used for
+ * the gate register. Setting this flag makes the register accesses big
+ * endian.
*/
struct clk_gate {
struct clk_hw hw;
@@ -362,6 +385,7 @@ struct clk_gate {
#define CLK_GATE_SET_TO_DISABLE BIT(0)
#define CLK_GATE_HIWORD_MASK BIT(1)
+#define CLK_GATE_BIG_ENDIAN BIT(2)
extern const struct clk_ops clk_gate_ops;
struct clk *clk_register_gate(struct device *dev, const char *name,
@@ -417,6 +441,9 @@ struct clk_div_table {
* CLK_DIVIDER_MAX_AT_ZERO - For dividers which are like CLK_DIVIDER_ONE_BASED
* except when the value read from the register is zero, the divisor is
* 2^width of the field.
+ * CLK_DIVIDER_BIG_ENDIAN - By default little endian register accesses are used
+ * for the divider register. Setting this flag makes the register accesses
+ * big endian.
*/
struct clk_divider {
struct clk_hw hw;
@@ -438,6 +465,7 @@ struct clk_divider {
#define CLK_DIVIDER_ROUND_CLOSEST BIT(4)
#define CLK_DIVIDER_READ_ONLY BIT(5)
#define CLK_DIVIDER_MAX_AT_ZERO BIT(6)
+#define CLK_DIVIDER_BIG_ENDIAN BIT(7)
extern const struct clk_ops clk_divider_ops;
extern const struct clk_ops clk_divider_ro_ops;
@@ -499,8 +527,13 @@ void clk_hw_unregister_divider(struct clk_hw *hw);
* register, and mask of mux bits are in higher 16-bit of this register.
* While setting the mux bits, higher 16-bit should also be updated to
* indicate changing mux bits.
+ * CLK_MUX_READ_ONLY - The mux registers can't be written, only read in the
+ * .get_parent clk_op.
* CLK_MUX_ROUND_CLOSEST - Use the parent rate that is closest to the desired
* frequency.
+ * CLK_MUX_BIG_ENDIAN - By default little endian register accesses are used for
+ * the mux register. Setting this flag makes the register accesses big
+ * endian.
*/
struct clk_mux {
struct clk_hw hw;
@@ -519,6 +552,7 @@ struct clk_mux {
#define CLK_MUX_HIWORD_MASK BIT(2)
#define CLK_MUX_READ_ONLY BIT(3) /* mux can't be changed */
#define CLK_MUX_ROUND_CLOSEST BIT(4)
+#define CLK_MUX_BIG_ENDIAN BIT(5)
extern const struct clk_ops clk_mux_ops;
extern const struct clk_ops clk_mux_ro_ops;
@@ -602,6 +636,9 @@ void clk_hw_unregister_fixed_factor(struct clk_hw *hw);
* is the value read from the register. If CLK_FRAC_DIVIDER_ZERO_BASED
* is set then the numerator and denominator are both the value read
* plus one.
+ * CLK_FRAC_DIVIDER_BIG_ENDIAN - By default little endian register accesses are
+ * used for the divider register. Setting this flag makes the register
+ * accesses big endian.
*/
struct clk_fractional_divider {
struct clk_hw hw;
@@ -622,6 +659,7 @@ struct clk_fractional_divider {
#define to_clk_fd(_hw) container_of(_hw, struct clk_fractional_divider, hw)
#define CLK_FRAC_DIVIDER_ZERO_BASED BIT(0)
+#define CLK_FRAC_DIVIDER_BIG_ENDIAN BIT(1)
extern const struct clk_ops clk_fractional_divider_ops;
struct clk *clk_register_fractional_divider(struct device *dev,
@@ -654,6 +692,9 @@ void clk_hw_unregister_fractional_divider(struct clk_hw *hw);
* leaving the parent rate unmodified.
* CLK_MULTIPLIER_ROUND_CLOSEST - Makes the best calculated divider to be
* rounded to the closest integer instead of the down one.
+ * CLK_MULTIPLIER_BIG_ENDIAN - By default little endian register accesses are
+ * used for the multiplier register. Setting this flag makes the register
+ * accesses big endian.
*/
struct clk_multiplier {
struct clk_hw hw;
@@ -668,6 +709,7 @@ struct clk_multiplier {
#define CLK_MULTIPLIER_ZERO_BYPASS BIT(0)
#define CLK_MULTIPLIER_ROUND_CLOSEST BIT(1)
+#define CLK_MULTIPLIER_BIG_ENDIAN BIT(2)
extern const struct clk_ops clk_multiplier_ops;
@@ -712,16 +754,19 @@ struct clk_hw *clk_hw_register_composite(struct device *dev, const char *name,
unsigned long flags);
void clk_hw_unregister_composite(struct clk_hw *hw);
-/***
- * struct clk_gpio_gate - gpio gated clock
+/**
+ * struct clk_gpio - gpio gated clock
*
* @hw: handle between common and hardware-specific interfaces
* @gpiod: gpio descriptor
*
- * Clock with a gpio control for enabling and disabling the parent clock.
- * Implements .enable, .disable and .is_enabled
+ * Clock with a gpio control for enabling and disabling the parent clock
+ * or switching between two parents by asserting or deasserting the gpio.
+ *
+ * Implements .enable, .disable and .is_enabled or
+ * .get_parent, .set_parent and .determine_rate depending on which clk_ops
+ * is used.
*/
-
struct clk_gpio {
struct clk_hw hw;
struct gpio_desc *gpiod;
@@ -738,16 +783,6 @@ struct clk_hw *clk_hw_register_gpio_gate(struct device *dev, const char *name,
unsigned long flags);
void clk_hw_unregister_gpio_gate(struct clk_hw *hw);
-/**
- * struct clk_gpio_mux - gpio controlled clock multiplexer
- *
- * @hw: see struct clk_gpio
- * @gpiod: gpio descriptor to select the parent of this clock multiplexer
- *
- * Clock with a gpio control for selecting the parent clock.
- * Implements .get_parent, .set_parent and .determine_rate
- */
-
extern const struct clk_ops clk_gpio_mux_ops;
struct clk *clk_register_gpio_mux(struct device *dev, const char *name,
const char * const *parent_names, u8 num_parents, struct gpio_desc *gpiod,
@@ -757,22 +792,12 @@ struct clk_hw *clk_hw_register_gpio_mux(struct device *dev, const char *name,
unsigned long flags);
void clk_hw_unregister_gpio_mux(struct clk_hw *hw);
-/**
- * clk_register - allocate a new clock, register it and return an opaque cookie
- * @dev: device that is registering this clock
- * @hw: link to hardware-specific clock data
- *
- * clk_register is the primary interface for populating the clock tree with new
- * clock nodes. It returns a pointer to the newly allocated struct clk which
- * cannot be dereferenced by driver code but may be used in conjuction with the
- * rest of the clock API. In the event of an error clk_register will return an
- * error code; drivers must test for an error code after calling clk_register.
- */
struct clk *clk_register(struct device *dev, struct clk_hw *hw);
struct clk *devm_clk_register(struct device *dev, struct clk_hw *hw);
int __must_check clk_hw_register(struct device *dev, struct clk_hw *hw);
int __must_check devm_clk_hw_register(struct device *dev, struct clk_hw *hw);
+int __must_check of_clk_hw_register(struct device_node *node, struct clk_hw *hw);
void clk_unregister(struct clk *clk);
void devm_clk_unregister(struct device *dev, struct clk *clk);
@@ -993,37 +1018,6 @@ static inline int of_clk_detect_critical(struct device_node *np, int index,
}
#endif /* CONFIG_OF */
-/*
- * wrap access to peripherals in accessor routines
- * for improved portability across platforms
- */
-
-#if IS_ENABLED(CONFIG_PPC)
-
-static inline u32 clk_readl(u32 __iomem *reg)
-{
- return ioread32be(reg);
-}
-
-static inline void clk_writel(u32 val, u32 __iomem *reg)
-{
- iowrite32be(val, reg);
-}
-
-#else /* platform dependent I/O accessors */
-
-static inline u32 clk_readl(u32 __iomem *reg)
-{
- return readl(reg);
-}
-
-static inline void clk_writel(u32 val, u32 __iomem *reg)
-{
- writel(val, reg);
-}
-
-#endif /* platform dependent I/O accessors */
-
void clk_gate_restore_context(struct clk_hw *hw);
#endif /* CONFIG_COMMON_CLK */
diff --git a/include/linux/clk/analogbits-wrpll-cln28hpc.h b/include/linux/clk/analogbits-wrpll-cln28hpc.h
new file mode 100644
index 000000000000..03279097e138
--- /dev/null
+++ b/include/linux/clk/analogbits-wrpll-cln28hpc.h
@@ -0,0 +1,79 @@
+/* SPDX-License-Identifier: GPL-2.0 */
+/*
+ * Copyright (C) 2018-2019 SiFive, Inc.
+ * Wesley Terpstra
+ * Paul Walmsley
+ */
+
+#ifndef __LINUX_CLK_ANALOGBITS_WRPLL_CLN28HPC_H
+#define __LINUX_CLK_ANALOGBITS_WRPLL_CLN28HPC_H
+
+#include <linux/types.h>
+
+/* DIVQ_VALUES: number of valid DIVQ values */
+#define DIVQ_VALUES 6
+
+/*
+ * Bit definitions for struct wrpll_cfg.flags
+ *
+ * WRPLL_FLAGS_BYPASS_FLAG: if set, the PLL is either in bypass, or should be
+ * programmed to enter bypass
+ * WRPLL_FLAGS_RESET_FLAG: if set, the PLL is in reset
+ * WRPLL_FLAGS_INT_FEEDBACK_FLAG: if set, the PLL is configured for internal
+ * feedback mode
+ * WRPLL_FLAGS_EXT_FEEDBACK_FLAG: if set, the PLL is configured for external
+ * feedback mode (not yet supported by this driver)
+ */
+#define WRPLL_FLAGS_BYPASS_SHIFT 0
+#define WRPLL_FLAGS_BYPASS_MASK BIT(WRPLL_FLAGS_BYPASS_SHIFT)
+#define WRPLL_FLAGS_RESET_SHIFT 1
+#define WRPLL_FLAGS_RESET_MASK BIT(WRPLL_FLAGS_RESET_SHIFT)
+#define WRPLL_FLAGS_INT_FEEDBACK_SHIFT 2
+#define WRPLL_FLAGS_INT_FEEDBACK_MASK BIT(WRPLL_FLAGS_INT_FEEDBACK_SHIFT)
+#define WRPLL_FLAGS_EXT_FEEDBACK_SHIFT 3
+#define WRPLL_FLAGS_EXT_FEEDBACK_MASK BIT(WRPLL_FLAGS_EXT_FEEDBACK_SHIFT)
+
+/**
+ * struct wrpll_cfg - WRPLL configuration values
+ * @divr: reference divider value (6 bits), as presented to the PLL signals
+ * @divf: feedback divider value (9 bits), as presented to the PLL signals
+ * @divq: output divider value (3 bits), as presented to the PLL signals
+ * @flags: PLL configuration flags. See above for more information
+ * @range: PLL loop filter range. See below for more information
+ * @output_rate_cache: cached output rates, swept across DIVQ
+ * @parent_rate: PLL refclk rate for which values are valid
+ * @max_r: maximum possible R divider value, given @parent_rate
+ * @init_r: initial R divider value to start the search from
+ *
+ * @divr, @divq, @divq, @range represent what the PLL expects to see
+ * on its input signals. Thus @divr and @divf are the actual divisors
+ * minus one. @divq is a power-of-two divider; for example, 1 =
+ * divide-by-2 and 6 = divide-by-64. 0 is an invalid @divq value.
+ *
+ * When initially passing a struct wrpll_cfg record, the
+ * record should be zero-initialized with the exception of the @flags
+ * field. The only flag bits that need to be set are either
+ * WRPLL_FLAGS_INT_FEEDBACK or WRPLL_FLAGS_EXT_FEEDBACK.
+ */
+struct wrpll_cfg {
+ u8 divr;
+ u8 divq;
+ u8 range;
+ u8 flags;
+ u16 divf;
+/* private: */
+ u32 output_rate_cache[DIVQ_VALUES];
+ unsigned long parent_rate;
+ u8 max_r;
+ u8 init_r;
+};
+
+int wrpll_configure_for_rate(struct wrpll_cfg *c, u32 target_rate,
+ unsigned long parent_rate);
+
+unsigned int wrpll_calc_max_lock_us(const struct wrpll_cfg *c);
+
+unsigned long wrpll_calc_output_rate(const struct wrpll_cfg *c,
+ unsigned long parent_rate);
+
+#endif /* __LINUX_CLK_ANALOGBITS_WRPLL_CLN28HPC_H */
diff --git a/include/linux/clk/at91_pmc.h b/include/linux/clk/at91_pmc.h
index 931ab05f771d..0c53f26ae3d3 100644
--- a/include/linux/clk/at91_pmc.h
+++ b/include/linux/clk/at91_pmc.h
@@ -74,6 +74,8 @@
#define AT91_PMC_USBDIV_4 (2 << 28)
#define AT91_PMC_USB96M (1 << 28) /* Divider by 2 Enable (PLLB only) */
+#define AT91_PMC_CPU_CKR 0x28 /* CPU Clock Register */
+
#define AT91_PMC_MCKR 0x30 /* Master Clock Register */
#define AT91_PMC_CSS (3 << 0) /* Master Clock Selection */
#define AT91_PMC_CSS_SLOW (0 << 0)
@@ -187,16 +189,8 @@
#define AT91_PMC_PCR 0x10c /* Peripheral Control Register [some SAM9 and SAMA5] */
#define AT91_PMC_PCR_PID_MASK 0x3f
-#define AT91_PMC_PCR_GCKCSS_OFFSET 8
-#define AT91_PMC_PCR_GCKCSS_MASK (0x7 << AT91_PMC_PCR_GCKCSS_OFFSET)
-#define AT91_PMC_PCR_GCKCSS(n) ((n) << AT91_PMC_PCR_GCKCSS_OFFSET) /* GCK Clock Source Selection */
#define AT91_PMC_PCR_CMD (0x1 << 12) /* Command (read=0, write=1) */
-#define AT91_PMC_PCR_DIV_OFFSET 16
-#define AT91_PMC_PCR_DIV_MASK (0x3 << AT91_PMC_PCR_DIV_OFFSET)
-#define AT91_PMC_PCR_DIV(n) ((n) << AT91_PMC_PCR_DIV_OFFSET) /* Divisor Value */
-#define AT91_PMC_PCR_GCKDIV_OFFSET 20
-#define AT91_PMC_PCR_GCKDIV_MASK (0xff << AT91_PMC_PCR_GCKDIV_OFFSET)
-#define AT91_PMC_PCR_GCKDIV(n) ((n) << AT91_PMC_PCR_GCKDIV_OFFSET) /* Generated Clock Divisor Value */
+#define AT91_PMC_PCR_GCKDIV_MASK GENMASK(27, 20)
#define AT91_PMC_PCR_EN (0x1 << 28) /* Enable */
#define AT91_PMC_PCR_GCKEN (0x1 << 29) /* GCK Enable */
diff --git a/include/linux/clk/ti.h b/include/linux/clk/ti.h
index 78872efc7be0..1e8ef96555ce 100644
--- a/include/linux/clk/ti.h
+++ b/include/linux/clk/ti.h
@@ -243,6 +243,7 @@ struct ti_clk_ll_ops {
#define to_clk_hw_omap(_hw) container_of(_hw, struct clk_hw_omap, hw)
+bool omap2_clk_is_hw_omap(struct clk_hw *hw);
int omap2_clk_disable_autoidle_all(void);
int omap2_clk_enable_autoidle_all(void);
int omap2_clk_allow_idle(struct clk *clk);
@@ -293,6 +294,7 @@ struct ti_clk_features {
#define TI_CLK_DISABLE_CLKDM_CONTROL BIT(2)
#define TI_CLK_ERRATA_I810 BIT(3)
#define TI_CLK_CLKCTRL_COMPAT BIT(4)
+#define TI_CLK_DEVICE_TYPE_GP BIT(5)
void ti_clk_setup_features(struct ti_clk_features *features);
const struct ti_clk_features *ti_clk_get_features(void);
diff --git a/include/linux/device.h b/include/linux/device.h
index 4457e560bc2b..e85264fb6616 100644
--- a/include/linux/device.h
+++ b/include/linux/device.h
@@ -1229,7 +1229,7 @@ static inline void device_lock_assert(struct device *dev)
static inline struct device_node *dev_of_node(struct device *dev)
{
- if (!IS_ENABLED(CONFIG_OF))
+ if (!IS_ENABLED(CONFIG_OF) || !dev)
return NULL;
return dev->of_node;
}
diff --git a/include/linux/math64.h b/include/linux/math64.h
index bb2c84afb80c..65bef21cdddb 100644
--- a/include/linux/math64.h
+++ b/include/linux/math64.h
@@ -284,4 +284,17 @@ static inline u64 mul_u64_u32_div(u64 a, u32 mul, u32 divisor)
#define DIV64_U64_ROUND_UP(ll, d) \
({ u64 _tmp = (d); div64_u64((ll) + _tmp - 1, _tmp); })
+/**
+ * DIV64_U64_ROUND_CLOSEST - unsigned 64bit divide with 64bit divisor rounded to nearest integer
+ * @dividend: unsigned 64bit dividend
+ * @divisor: unsigned 64bit divisor
+ *
+ * Divide unsigned 64bit dividend by unsigned 64bit divisor
+ * and round to closest integer.
+ *
+ * Return: dividend / divisor rounded to nearest integer
+ */
+#define DIV64_U64_ROUND_CLOSEST(dividend, divisor) \
+ ({ u64 _tmp = (divisor); div64_u64((dividend) + _tmp / 2, _tmp); })
+
#endif /* _LINUX_MATH64_H */