From nobody Tue Oct 7 21:02:19 2025 Received: from mailout2.w1.samsung.com (mailout2.w1.samsung.com [210.118.77.12]) (using TLSv1.2 with cipher ECDHE-RSA-AES256-GCM-SHA384 (256/256 bits)) (No client certificate requested) by smtp.subspace.kernel.org (Postfix) with ESMTPS id 46189209F38 for ; Sun, 6 Jul 2025 11:46:12 +0000 (UTC) Authentication-Results: smtp.subspace.kernel.org; arc=none smtp.client-ip=210.118.77.12 ARC-Seal: i=1; a=rsa-sha256; d=subspace.kernel.org; s=arc-20240116; t=1751802375; cv=none; b=rUtbSWa+WEy4o0IbtnxbqtckCxDtzkgHvV4dV8g6wpnfDTwEMwLzLhtxuxGvCm026W7/j+iaH6t4kkLOvR58ftU/ZOPD5MOhBZ2lBUwNJ2P3TvBALJ0Fvxdrwi/ob/oyjQ8pWKe7Ps4i9OtVbT7lM8gjk4GFHmIMr4d6OB5JrLQ= ARC-Message-Signature: i=1; a=rsa-sha256; d=subspace.kernel.org; s=arc-20240116; t=1751802375; c=relaxed/simple; bh=AeD2hBgLfIFq8qXOrFtRk8yGOWuOGR54JxGrKux9P9w=; h=From:Date:Subject:MIME-Version:Message-Id:In-Reply-To:To:Cc: Content-Type:References; b=eEronad3Ujig+hq8jkR37H9epC+hqkl1SZbscBLnTn0Boi3cC6b2uEicpHFS8m1DrqOT4OfRd/sBebGaoImfDiWEBeViz03vXd4R9LOPMZDJoP25cDDEd18QvKDepkdaQ3I8cIhizEbLcvwGeSZWvAXQzOCDaQucAmrss9tvV+Y= ARC-Authentication-Results: i=1; smtp.subspace.kernel.org; dmarc=pass (p=none dis=none) header.from=samsung.com; spf=pass smtp.mailfrom=samsung.com; dkim=pass (1024-bit key) header.d=samsung.com header.i=@samsung.com header.b=OoHt4FWm; arc=none smtp.client-ip=210.118.77.12 Authentication-Results: smtp.subspace.kernel.org; dmarc=pass (p=none dis=none) header.from=samsung.com Authentication-Results: smtp.subspace.kernel.org; spf=pass smtp.mailfrom=samsung.com Authentication-Results: smtp.subspace.kernel.org; dkim=pass (1024-bit key) header.d=samsung.com header.i=@samsung.com header.b="OoHt4FWm" Received: from eucas1p1.samsung.com (unknown [182.198.249.206]) by mailout2.w1.samsung.com (KnoxPortal) with ESMTP id 20250706114604euoutp027e3a879f567374f3b59ae993315a1a6a~Ppvgewgmg1126211262euoutp02V for ; Sun, 6 Jul 2025 11:46:04 +0000 (GMT) DKIM-Filter: OpenDKIM Filter v2.11.0 mailout2.w1.samsung.com 20250706114604euoutp027e3a879f567374f3b59ae993315a1a6a~Ppvgewgmg1126211262euoutp02V DKIM-Signature: v=1; a=rsa-sha256; c=relaxed/relaxed; d=samsung.com; s=mail20170921; t=1751802364; bh=7IOdcpqFPt15Yboz3/CwL2I2Kh3Mg9UFi2hzSn3688A=; h=From:Date:Subject:In-Reply-To:To:Cc:References:From; b=OoHt4FWmssIlQeehDg+ZZEoHRI173dRdUM5Zh1m3/SwdhLGxhNTQF7ZoFJTUoJzmr wpI7ABOsND4BunTgJPkvvsEsI2gJ0jJkb+I13ArBWhHRTkU6mfssN4qpTk3BYbcAZq erqrdwMIUnd/6+Sw7ElhQIQm7u4Eqff7mkWzCtaA= Received: from eusmtip2.samsung.com (unknown [203.254.199.222]) by eucas1p2.samsung.com (KnoxPortal) with ESMTPA id 20250706114604eucas1p260108a0f45a8273ae98afe05cc9a1288~Ppvf3kHfL2602826028eucas1p2m; Sun, 6 Jul 2025 11:46:04 +0000 (GMT) Received: from AMDC4942.eu.corp.samsungelectronics.net (unknown [106.210.136.40]) by eusmtip2.samsung.com (KnoxPortal) with ESMTPA id 20250706114602eusmtip2f0d5964d9dab8f808eb9cb73f61b8599~PpvevWwNy1086010860eusmtip21; Sun, 6 Jul 2025 11:46:02 +0000 (GMT) From: Michal Wilczynski Date: Sun, 06 Jul 2025 13:45:12 +0200 Subject: [PATCH v9 1/6] rust: pwm: Add Kconfig and basic data structures Precedence: bulk X-Mailing-List: linux-kernel@vger.kernel.org List-Id: List-Subscribe: List-Unsubscribe: MIME-Version: 1.0 Content-Transfer-Encoding: quoted-printable Message-Id: <20250706-rust-next-pwm-working-fan-for-sending-v9-1-42b5ac2101c7@samsung.com> In-Reply-To: <20250706-rust-next-pwm-working-fan-for-sending-v9-0-42b5ac2101c7@samsung.com> To: =?utf-8?q?Uwe_Kleine-K=C3=B6nig?= , Miguel Ojeda , Alex Gaynor , Boqun Feng , Gary Guo , =?utf-8?q?Bj=C3=B6rn_Roy_Baron?= , Andreas Hindborg , Alice Ryhl , Trevor Gross , Danilo Krummrich , Michal Wilczynski , Guo Ren , Fu Wei , Rob Herring , Krzysztof Kozlowski , Conor Dooley , Paul Walmsley , Palmer Dabbelt , Albert Ou , Alexandre Ghiti , Marek Szyprowski , Benno Lossin , Michael Turquette , Drew Fustini , Benno Lossin , Drew Fustini Cc: linux-kernel@vger.kernel.org, linux-pwm@vger.kernel.org, rust-for-linux@vger.kernel.org, linux-riscv@lists.infradead.org, devicetree@vger.kernel.org X-Mailer: b4 0.15-dev X-CMS-MailID: 20250706114604eucas1p260108a0f45a8273ae98afe05cc9a1288 X-Msg-Generator: CA Content-Type: text/plain; charset="utf-8" X-RootMTR: 20250706114604eucas1p260108a0f45a8273ae98afe05cc9a1288 X-EPHeader: CA X-CMS-RootMailID: 20250706114604eucas1p260108a0f45a8273ae98afe05cc9a1288 References: <20250706-rust-next-pwm-working-fan-for-sending-v9-0-42b5ac2101c7@samsung.com> Introduce the foundational support for PWM abstractions in Rust. This commit adds the `RUST_PWM_ABSTRACTIONS` Kconfig option to enable the feature, along with the necessary build-system support and C helpers. It also introduces the first set of safe wrappers for the PWM subsystem, covering the basic data carrying C structs and enums: - `Polarity`: A safe wrapper for `enum pwm_polarity`. - `Waveform`: A wrapper for `struct pwm_waveform`. - `Args`: A wrapper for `struct pwm_args`. - `State`: A wrapper for `struct pwm_state`. These types provide memory safe, idiomatic Rust representations of the core PWM data structures and form the building blocks for the abstractions that will follow. Tested-by: Drew Fustini Signed-off-by: Michal Wilczynski --- MAINTAINERS | 6 ++ drivers/pwm/Kconfig | 13 ++++ rust/bindings/bindings_helper.h | 1 + rust/helpers/helpers.c | 1 + rust/helpers/pwm.c | 20 ++++++ rust/kernel/lib.rs | 2 + rust/kernel/pwm.rs | 137 ++++++++++++++++++++++++++++++++++++= ++++ 7 files changed, 180 insertions(+) diff --git a/MAINTAINERS b/MAINTAINERS index 92e9d8c7708ff4874efaa9727814ad7f1c9f6b0c..494de42ca8c36b30d80e14b03d3= c9e0e054fb267 100644 --- a/MAINTAINERS +++ b/MAINTAINERS @@ -20196,6 +20196,12 @@ F: include/linux/pwm.h F: include/linux/pwm_backlight.h K: pwm_(config|apply_might_sleep|apply_atomic|ops) =20 +PWM SUBSYSTEM BINDINGS [RUST] +M: Michal Wilczynski +S: Maintained +F: rust/helpers/pwm.c +F: rust/kernel/pwm.rs + PXA GPIO DRIVER M: Robert Jarzmik L: linux-gpio@vger.kernel.org diff --git a/drivers/pwm/Kconfig b/drivers/pwm/Kconfig index 3ef1757502ebd92b30584cd10611311a0fbfc03b..c32655566d6ab9eff9d10f29e46= 9f9aef89cecfa 100644 --- a/drivers/pwm/Kconfig +++ b/drivers/pwm/Kconfig @@ -799,4 +799,17 @@ config PWM_XILINX To compile this driver as a module, choose M here: the module will be called pwm-xilinx. =20 + config RUST_PWM_ABSTRACTIONS + bool "Rust PWM abstractions support" + depends on RUST + depends on PWM=3Dy + help + This option enables the safe Rust abstraction layer for the PWM + subsystem. It provides idiomatic wrappers and traits necessary for + writing PWM controller drivers in Rust. + + The abstractions handle resource management (like memory and reference + counting) and provide safe interfaces to the underlying C core, + allowing driver logic to be written in safe Rust. + endif diff --git a/rust/bindings/bindings_helper.h b/rust/bindings/bindings_helpe= r.h index 5f795e60e889b9fc887013743c81b1cf92a52adb..6a6e1b1736b38f36c1dbdd875de= fb3b526372b67 100644 --- a/rust/bindings/bindings_helper.h +++ b/rust/bindings/bindings_helper.h @@ -66,6 +66,7 @@ #include #include #include +#include #include #include #include diff --git a/rust/helpers/helpers.c b/rust/helpers/helpers.c index 1f800e78920145fc5149befb15579179dfb6e02e..c449d72fa8b19b2ab084be52046= 6ab916c63cea7 100644 --- a/rust/helpers/helpers.c +++ b/rust/helpers/helpers.c @@ -35,6 +35,7 @@ #include "pid_namespace.c" #include "poll.c" #include "property.c" +#include "pwm.c" #include "rbtree.c" #include "rcu.c" #include "refcount.c" diff --git a/rust/helpers/pwm.c b/rust/helpers/pwm.c new file mode 100644 index 0000000000000000000000000000000000000000..d75c588863685d3990b525bb1b8= 4aa4bc35ac397 --- /dev/null +++ b/rust/helpers/pwm.c @@ -0,0 +1,20 @@ +// SPDX-License-Identifier: GPL-2.0 +// Copyright (c) 2025 Samsung Electronics Co., Ltd. +// Author: Michal Wilczynski + +#include + +struct device *rust_helper_pwmchip_parent(const struct pwm_chip *chip) +{ + return pwmchip_parent(chip); +} + +void *rust_helper_pwmchip_get_drvdata(struct pwm_chip *chip) +{ + return pwmchip_get_drvdata(chip); +} + +void rust_helper_pwmchip_set_drvdata(struct pwm_chip *chip, void *data) +{ + pwmchip_set_drvdata(chip, data); +} diff --git a/rust/kernel/lib.rs b/rust/kernel/lib.rs index 5bbf3627212f0a26d34be0d6c160a370abf1e996..9f7038d3d501982a843d6d86571= d20f1213ba9ee 100644 --- a/rust/kernel/lib.rs +++ b/rust/kernel/lib.rs @@ -106,6 +106,8 @@ pub mod seq_file; pub mod sizes; mod static_assert; +#[cfg(CONFIG_RUST_PWM_ABSTRACTIONS)] +pub mod pwm; #[doc(hidden)] pub mod std_vendor; pub mod str; diff --git a/rust/kernel/pwm.rs b/rust/kernel/pwm.rs new file mode 100644 index 0000000000000000000000000000000000000000..3fad101406eac728d9b12083fad= 7abf7b7f89b25 --- /dev/null +++ b/rust/kernel/pwm.rs @@ -0,0 +1,137 @@ +// SPDX-License-Identifier: GPL-2.0 +// Copyright (c) 2025 Samsung Electronics Co., Ltd. +// Author: Michal Wilczynski + +//! PWM subsystem abstractions. +//! +//! C header: [`include/linux/pwm.h`](srctree/include/linux/pwm.h). + +use crate::{ + bindings, + prelude::*, + types::Opaque, +}; +use core::convert::TryFrom; + +/// PWM polarity. Mirrors [`enum pwm_polarity`](srctree/include/linux/pwm.= h). +#[derive(Copy, Clone, Debug, PartialEq, Eq)] +pub enum Polarity { + /// Normal polarity (duty cycle defines the high period of the signal). + Normal, + + /// Inversed polarity (duty cycle defines the low period of the signal= ). + Inversed, +} + +impl TryFrom for Polarity { + type Error =3D Error; + + fn try_from(polarity: bindings::pwm_polarity) -> Result { + match polarity { + bindings::pwm_polarity_PWM_POLARITY_NORMAL =3D> Ok(Polarity::N= ormal), + bindings::pwm_polarity_PWM_POLARITY_INVERSED =3D> Ok(Polarity:= :Inversed), + _ =3D> Err(EINVAL), + } + } +} + +impl From for bindings::pwm_polarity { + fn from(polarity: Polarity) -> Self { + match polarity { + Polarity::Normal =3D> bindings::pwm_polarity_PWM_POLARITY_NORM= AL, + Polarity::Inversed =3D> bindings::pwm_polarity_PWM_POLARITY_IN= VERSED, + } + } +} + +/// Represents a PWM waveform configuration. +/// Mirrors struct [`struct pwm_waveform`](srctree/include/linux/pwm.h). +#[derive(Copy, Clone, Debug, Default, PartialEq, Eq)] +pub struct Waveform { + /// Total duration of one complete PWM cycle, in nanoseconds. + pub period_length_ns: u64, + + /// Duty-cycle active time, in nanoseconds. + /// + /// For a typical normal polarity configuration (active-high) this is = the + /// high time of the signal. + pub duty_length_ns: u64, + + /// Duty-cycle start offset, in nanoseconds. + /// + /// Delay from the beginning of the period to the first active edge. + /// In most simple PWM setups this is `0`, so the duty cycle starts + /// immediately at each period=E2=80=99s start. + pub duty_offset_ns: u64, +} + +impl From for Waveform { + fn from(wf: bindings::pwm_waveform) -> Self { + Waveform { + period_length_ns: wf.period_length_ns, + duty_length_ns: wf.duty_length_ns, + duty_offset_ns: wf.duty_offset_ns, + } + } +} + +impl From for bindings::pwm_waveform { + fn from(wf: Waveform) -> Self { + bindings::pwm_waveform { + period_length_ns: wf.period_length_ns, + duty_length_ns: wf.duty_length_ns, + duty_offset_ns: wf.duty_offset_ns, + } + } +} + +/// Wrapper for board-dependent PWM arguments [`struct pwm_args`](srctree/= include/linux/pwm.h). +#[repr(transparent)] +pub struct Args(Opaque); + +impl Args { + /// Creates an `Args` wrapper from a C struct pointer. + /// + /// # Safety + /// + /// The caller must ensure that `c_args_ptr` is a valid, non-null poin= ter + /// to `bindings::pwm_args` and that the pointed-to data is valid + /// for the duration of this function call (as data is copied). + unsafe fn from_c_ptr(c_args_ptr: *const bindings::pwm_args) -> Self { + // SAFETY: Caller guarantees `c_args_ptr` is valid. We dereference= it to copy. + Args(Opaque::new(unsafe { *c_args_ptr })) + } + + /// Returns the period of the PWM signal in nanoseconds. + pub fn period(&self) -> u64 { + // SAFETY: `self.0.get()` returns a pointer to the `bindings::pwm_= args` + // managed by the `Opaque` wrapper. This pointer is guaranteed to = be + // valid and aligned for the lifetime of `self` because `Opaque` o= wns a copy. + unsafe { (*self.0.get()).period } + } + + /// Returns the polarity of the PWM signal. + pub fn polarity(&self) -> Result { + // SAFETY: `self.0.get()` returns a pointer to the `bindings::pwm_= args` + // managed by the `Opaque` wrapper. This pointer is guaranteed to = be + // valid and aligned for the lifetime of `self`. + let raw_polarity =3D unsafe { (*self.0.get()).polarity }; + Polarity::try_from(raw_polarity) + } +} + +/// Wrapper for PWM state [`struct pwm_state`](srctree/include/linux/pwm.h= ). +#[repr(transparent)] +pub struct State(bindings::pwm_state); + +impl State { + /// Creates a `State` wrapper by taking ownership of a C `pwm_state` v= alue. + pub(crate) fn from_c(c_state: bindings::pwm_state) -> Self { + State(c_state) + } + + /// Returns `true` if the PWM signal is enabled. + pub fn enabled(&self) -> bool { + self.0.enabled + } +} --=20 2.34.1 From nobody Tue Oct 7 21:02:19 2025 Received: from mailout1.w1.samsung.com (mailout1.w1.samsung.com [210.118.77.11]) (using TLSv1.2 with cipher ECDHE-RSA-AES256-GCM-SHA384 (256/256 bits)) (No client certificate requested) by smtp.subspace.kernel.org (Postfix) with ESMTPS id E859320AF62 for ; Sun, 6 Jul 2025 11:46:13 +0000 (UTC) Authentication-Results: smtp.subspace.kernel.org; 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Sun, 6 Jul 2025 11:46:05 +0000 (GMT) Received: from AMDC4942.eu.corp.samsungelectronics.net (unknown [106.210.136.40]) by eusmtip2.samsung.com (KnoxPortal) with ESMTPA id 20250706114604eusmtip2e7f55ccf17cd4a80f04acb27a2fa4684~Ppvf7qFpY2739327393eusmtip2p; Sun, 6 Jul 2025 11:46:04 +0000 (GMT) From: Michal Wilczynski Date: Sun, 06 Jul 2025 13:45:13 +0200 Subject: [PATCH v9 2/6] rust: pwm: Add complete abstraction layer Precedence: bulk X-Mailing-List: linux-kernel@vger.kernel.org List-Id: List-Subscribe: List-Unsubscribe: MIME-Version: 1.0 Content-Transfer-Encoding: quoted-printable Message-Id: <20250706-rust-next-pwm-working-fan-for-sending-v9-2-42b5ac2101c7@samsung.com> In-Reply-To: <20250706-rust-next-pwm-working-fan-for-sending-v9-0-42b5ac2101c7@samsung.com> To: =?utf-8?q?Uwe_Kleine-K=C3=B6nig?= , Miguel Ojeda , Alex Gaynor , Boqun Feng , Gary Guo , =?utf-8?q?Bj=C3=B6rn_Roy_Baron?= , Andreas Hindborg , Alice Ryhl , Trevor Gross , Danilo Krummrich , Michal Wilczynski , Guo Ren , Fu Wei , Rob Herring , Krzysztof Kozlowski , Conor Dooley , Paul Walmsley , Palmer Dabbelt , Albert Ou , Alexandre Ghiti , Marek Szyprowski , Benno Lossin , Michael Turquette , Drew Fustini , Benno Lossin , Drew Fustini Cc: linux-kernel@vger.kernel.org, linux-pwm@vger.kernel.org, rust-for-linux@vger.kernel.org, linux-riscv@lists.infradead.org, devicetree@vger.kernel.org X-Mailer: b4 0.15-dev X-CMS-MailID: 20250706114605eucas1p17d1cbd035d14d95f4ad0588c2572b3e2 X-Msg-Generator: CA Content-Type: text/plain; charset="utf-8" X-RootMTR: 20250706114605eucas1p17d1cbd035d14d95f4ad0588c2572b3e2 X-EPHeader: CA X-CMS-RootMailID: 20250706114605eucas1p17d1cbd035d14d95f4ad0588c2572b3e2 References: <20250706-rust-next-pwm-working-fan-for-sending-v9-0-42b5ac2101c7@samsung.com> Introduce a comprehensive abstraction layer for the PWM subsystem to enable writing drivers in Rust. Because `Device`, `Chip`, and `PwmOps` all refer to each other, they form a single, indivisible unit with circular dependencies. They are introduced together in this single commit to create a complete, compilable abstraction layer. The main components are: - Data Wrappers: Safe, idiomatic wrappers for core C types like `pwm_device`, and `pwm_chip`. - PwmOps Trait: An interface that drivers can implement to provide their hardware-specific logic, mirroring the C `pwm_ops` interface. - FFI VTable and Adapter: A bridge to connect the high-level PwmOps trait to the C kernel's pwm_ops vtable. - Allocation and Lifetime Management: A high-level `Chip::new()` API to safely allocate a chip and a `Registration` guard that integrates with `devres` to manage the chip's registration with the PWM core. An `AlwaysRefCounted` implementation and a custom release handler prevent memory leaks by managing the chip's lifetime and freeing driver data correctly. Reviewed-by: Danilo Krummrich Signed-off-by: Michal Wilczynski --- rust/kernel/pwm.rs | 680 +++++++++++++++++++++++++++++++++++++++++++++++++= +++- 1 file changed, 678 insertions(+), 2 deletions(-) diff --git a/rust/kernel/pwm.rs b/rust/kernel/pwm.rs index 3fad101406eac728d9b12083fad7abf7b7f89b25..75a8af18e1a3a6c8c837e3c2ac7= 3d894d23be389 100644 --- a/rust/kernel/pwm.rs +++ b/rust/kernel/pwm.rs @@ -8,10 +8,14 @@ =20 use crate::{ bindings, + container_of, + device::{self, Bound}, + devres, + error::{self, to_result}, prelude::*, - types::Opaque, + types::{ARef, AlwaysRefCounted, ForeignOwnable, Opaque}, }; -use core::convert::TryFrom; +use core::{convert::TryFrom, marker::PhantomData, ptr::NonNull}; =20 /// PWM polarity. Mirrors [`enum pwm_polarity`](srctree/include/linux/pwm.= h). #[derive(Copy, Clone, Debug, PartialEq, Eq)] @@ -135,3 +139,675 @@ pub fn enabled(&self) -> bool { self.0.enabled } } + +/// Describes the outcome of a `round_waveform` operation. +#[derive(Debug, Clone, Copy, PartialEq, Eq)] +pub enum RoundingOutcome { + /// The requested waveform was achievable exactly or by rounding value= s down. + ExactOrRoundedDown, + + /// The requested waveform could only be achieved by rounding up. + RoundedUp, +} + +/// Wrapper for a PWM device [`struct pwm_device`](srctree/include/linux/p= wm.h). +#[repr(transparent)] +pub struct Device(Opaque); + +impl Device { + /// Creates a reference to a [`Device`] from a valid C pointer. + /// + /// # Safety + /// + /// The caller must ensure that `ptr` is valid and remains valid for t= he lifetime of the + /// returned [`Device`] reference. + pub(crate) unsafe fn as_ref<'a>(ptr: *mut bindings::pwm_device) -> &'a= Self { + // SAFETY: The safety requirements guarantee the validity of the d= ereference, while the + // `Device` type being transparent makes the cast ok. + unsafe { &*ptr.cast::() } + } + + /// Returns a raw pointer to the underlying `pwm_device`. + fn as_raw(&self) -> *mut bindings::pwm_device { + self.0.get() + } + + /// Gets the hardware PWM index for this device within its chip. + pub fn hwpwm(&self) -> u32 { + // SAFETY: `self.as_raw()` provides a valid pointer for `self`'s l= ifetime. + unsafe { (*self.as_raw()).hwpwm } + } + + /// Gets a reference to the parent `Chip` that this device belongs to. + pub fn chip(&self) -> &Chip { + // SAFETY: `self.as_raw()` provides a valid pointer. (*self.as_raw= ()).chip + // is assumed to be a valid pointer to `pwm_chip` managed by the k= ernel. + // Chip::as_ref's safety conditions must be met. + unsafe { Chip::::as_ref((*self.as_raw()).chip) } + } + + /// Gets the label for this PWM device, if any. + pub fn label(&self) -> Option<&CStr> { + // SAFETY: self.as_raw() provides a valid pointer. + let label_ptr =3D unsafe { (*self.as_raw()).label }; + if label_ptr.is_null() { + None + } else { + // SAFETY: label_ptr is non-null and points to a C string + // managed by the kernel, valid for the lifetime of the PWM de= vice. + Some(unsafe { CStr::from_char_ptr(label_ptr) }) + } + } + + /// Gets a copy of the board-dependent arguments for this PWM device. + pub fn args(&self) -> Args { + // SAFETY: self.as_raw() gives a valid pointer to `pwm_device`. + // The `args` field is a valid `pwm_args` struct embedded within `= pwm_device`. + // `Args::from_c_ptr`'s safety conditions are met by providing thi= s pointer. + unsafe { Args::from_c_ptr(&(*self.as_raw()).args) } + } + + /// Gets a copy of the current state of this PWM device. + pub fn state(&self) -> State { + // SAFETY: `self.as_raw()` gives a valid pointer. `(*self.as_raw()= ).state` + // is a valid `pwm_state` struct. `State::from_c` copies this data. + State::from_c(unsafe { (*self.as_raw()).state }) + } + + /// Sets the PWM waveform configuration and enables the PWM signal. + pub fn set_waveform(&self, wf: &Waveform, exact: bool) -> Result { + let c_wf =3D bindings::pwm_waveform::from(*wf); + + // SAFETY: `self.as_raw()` provides a valid `*mut pwm_device` poin= ter. + // `&c_wf` is a valid pointer to a `pwm_waveform` struct. The C fu= nction + // handles all necessary internal locking. + let ret =3D unsafe { bindings::pwm_set_waveform_might_sleep(self.a= s_raw(), &c_wf, exact) }; + to_result(ret) + } + + /// Queries the hardware for the configuration it would apply for a gi= ven + /// request. + pub fn round_waveform(&self, wf: &mut Waveform) -> Result { + let mut c_wf =3D bindings::pwm_waveform::from(*wf); + + // SAFETY: `self.as_raw()` provides a valid `*mut pwm_device` poin= ter. + // `&mut c_wf` is a valid pointer to a mutable `pwm_waveform` stru= ct that + // the C function will update. + let ret =3D unsafe { bindings::pwm_round_waveform_might_sleep(self= .as_raw(), &mut c_wf) }; + + to_result(ret)?; + + *wf =3D Waveform::from(c_wf); + + if ret =3D=3D 1 { + Ok(RoundingOutcome::RoundedUp) + } else { + Ok(RoundingOutcome::ExactOrRoundedDown) + } + } + + /// Reads the current waveform configuration directly from the hardwar= e. + pub fn get_waveform(&self) -> Result { + let mut c_wf =3D bindings::pwm_waveform::default(); + + // SAFETY: `self.as_raw()` is a valid pointer. We provide a valid = pointer + // to a stack-allocated `pwm_waveform` struct for the kernel to fi= ll. + let ret =3D unsafe { bindings::pwm_get_waveform_might_sleep(self.a= s_raw(), &mut c_wf) }; + + to_result(ret)?; + + Ok(Waveform::from(c_wf)) + } +} + +/// Trait defining the operations for a PWM driver. +pub trait PwmOps: 'static + Sized { + /// The type of the owned driver data (e.g., `Pin>`). + type DrvData: 'static + ForeignOwnable; + /// The driver-specific hardware representation of a waveform. + /// + /// This type must be [`Copy`], [`Default`], and fit within `PWM_WFHWS= IZE`. + type WfHw: Copy + Default; + + /// Optional hook for when a PWM device is requested. + fn request( + _chip: &Chip, + _pwm: &Device, + _parent_dev: &device::Device, + ) -> Result { + Ok(()) + } + + /// Optional hook for when a PWM device is freed. + fn free(_chip: &Chip, _pwm: &Device, _parent_dev: &devi= ce::Device) {} + + /// Optional hook for capturing a PWM signal. + fn capture( + _chip: &Chip, + _pwm: &Device, + _result: &mut bindings::pwm_capture, + _timeout: usize, + _parent_dev: &device::Device, + ) -> Result { + Err(ENOTSUPP) + } + + /// Convert a generic waveform to the hardware-specific representation. + /// This is typically a pure calculation and does not perform I/O. + fn round_waveform_tohw( + _chip: &Chip, + _pwm: &Device, + _wf: &Waveform, + ) -> Result<(c_int, Self::WfHw)> { + Err(ENOTSUPP) + } + + /// Convert a hardware-specific representation back to a generic wavef= orm. + /// This is typically a pure calculation and does not perform I/O. + fn round_waveform_fromhw( + _chip: &Chip, + _pwm: &Device, + _wfhw: &Self::WfHw, + _wf: &mut Waveform, + ) -> Result { + Err(ENOTSUPP) + } + + /// Read the current hardware configuration into the hardware-specific= representation. + fn read_waveform( + _chip: &Chip, + _pwm: &Device, + _parent_dev: &device::Device, + ) -> Result { + Err(ENOTSUPP) + } + + /// Write a hardware-specific waveform configuration to the hardware. + fn write_waveform( + _chip: &Chip, + _pwm: &Device, + _wfhw: &Self::WfHw, + _parent_dev: &device::Device, + ) -> Result { + Err(ENOTSUPP) + } +} +/// Bridges Rust `PwmOps` to the C `pwm_ops` vtable. +struct Adapter { + _p: PhantomData, +} + +impl Adapter { + const VTABLE: PwmOpsVTable =3D create_pwm_ops::(); + + /// # Safety + /// + /// `wfhw_ptr` must be valid for writes of `size_of::()` byte= s. + unsafe fn serialize_wfhw(wfhw: &T::WfHw, wfhw_ptr: *mut c_void) -> Res= ult { + let size =3D core::mem::size_of::(); + if size > bindings::PWM_WFHWSIZE as usize { + return Err(EINVAL); + } + + // SAFETY: The caller ensures `wfhw_ptr` is valid for `size` bytes. + unsafe { + core::ptr::copy_nonoverlapping( + core::ptr::from_ref::(wfhw).cast::(), + wfhw_ptr.cast::(), + size, + ); + } + + Ok(()) + } + + /// # Safety + /// + /// `wfhw_ptr` must be valid for reads of `size_of::()` bytes. + unsafe fn deserialize_wfhw(wfhw_ptr: *const c_void) -> Result= { + let size =3D core::mem::size_of::(); + if size > bindings::PWM_WFHWSIZE as usize { + return Err(EINVAL); + } + + let mut wfhw =3D T::WfHw::default(); + // SAFETY: The caller ensures `wfhw_ptr` is valid for `size` bytes. + unsafe { + core::ptr::copy_nonoverlapping( + wfhw_ptr.cast::(), + core::ptr::from_mut::(&mut wfhw).cast::(), + size, + ); + } + + Ok(wfhw) + } + + /// # Safety + /// + /// `dev` must be a valid pointer to a `bindings::device` embedded wit= hin a + /// `bindings::pwm_chip`. This function is called by the device core w= hen the + /// last reference to the device is dropped. + unsafe extern "C" fn release_callback(dev: *mut bindings::device) { + // SAFETY: The function's contract guarantees that `dev` points to= a `device` + // field embedded within a valid `pwm_chip`. `container_of!` can t= herefore + // safely calculate the address of the containing struct. + let c_chip_ptr =3D unsafe { container_of!(dev, bindings::pwm_chip,= dev) }; + + // SAFETY: `c_chip_ptr` is a valid pointer to a `pwm_chip` as esta= blished + // above. Calling this FFI function is safe. + let drvdata_ptr =3D unsafe { bindings::pwmchip_get_drvdata(c_chip_= ptr) }; + + if !drvdata_ptr.is_null() { + // SAFETY: `drvdata_ptr` was stored by `Chip::new` from an own= ed `T::DrvData` + // and is guaranteed to be valid if non-null. `from_foreign` c= an safely + // reclaim ownership to allow Rust to drop and free the data. + let _owned_drvdata =3D unsafe { T::DrvData::from_foreign(drvda= ta_ptr.cast()) }; + } + } + + /// # Safety + /// + /// Pointers from C must be valid. + unsafe extern "C" fn request_callback( + c: *mut bindings::pwm_chip, + p: *mut bindings::pwm_device, + ) -> c_int { + // SAFETY: PWM core guarentees `c` and `p` are valid pointers. + let (chip, pwm) =3D unsafe { (Chip::::as_ref(c), Devic= e::as_ref(p)) }; + + // SAFETY: The PWM core guarantees the parent device exists and is= bound during callbacks. + let bound_parent =3D unsafe { chip.bound_parent_device() }; + match T::request(chip, pwm, bound_parent) { + Ok(()) =3D> 0, + Err(e) =3D> e.to_errno(), + } + } + + /// # Safety + /// + /// Pointers from C must be valid. + unsafe extern "C" fn free_callback(c: *mut bindings::pwm_chip, p: *mut= bindings::pwm_device) { + // SAFETY: Relies on the function's contract that `c` and `p` are = valid pointers. + let (chip, pwm) =3D unsafe { (Chip::::as_ref(c), Devic= e::as_ref(p)) }; + + // SAFETY: The PWM core guarantees the parent device exists and is= bound during callbacks. + let bound_parent =3D unsafe { chip.bound_parent_device() }; + T::free(chip, pwm, bound_parent); + } + + /// # Safety + /// + /// Pointers from C must be valid. + unsafe extern "C" fn capture_callback( + c: *mut bindings::pwm_chip, + p: *mut bindings::pwm_device, + res: *mut bindings::pwm_capture, + timeout: usize, + ) -> c_int { + // SAFETY: Relies on the function's contract that `c` and `p` are = valid pointers. + let (chip, pwm, result) =3D + unsafe { (Chip::::as_ref(c), Device::as_ref(p), &m= ut *res) }; + + // SAFETY: The PWM core guarantees the parent device exists and is= bound during callbacks. + let bound_parent =3D unsafe { chip.bound_parent_device() }; + match T::capture(chip, pwm, result, timeout, bound_parent) { + Ok(()) =3D> 0, + Err(e) =3D> e.to_errno(), + } + } + + /// # Safety + /// + /// Pointers from C must be valid. + unsafe extern "C" fn round_waveform_tohw_callback( + c: *mut bindings::pwm_chip, + p: *mut bindings::pwm_device, + w: *const bindings::pwm_waveform, + wh: *mut c_void, + ) -> c_int { + // SAFETY: Relies on the function's contract that `c` and `p` are = valid pointers. + let (chip, pwm, wf) =3D unsafe { + ( + Chip::::as_ref(c), + Device::as_ref(p), + Waveform::from(*w), + ) + }; + match T::round_waveform_tohw(chip, pwm, &wf) { + Ok((status, wfhw)) =3D> { + // SAFETY: `wh` is valid per this function's safety contra= ct. + if unsafe { Self::serialize_wfhw(&wfhw, wh) }.is_err() { + return EINVAL.to_errno(); + } + status + } + Err(e) =3D> e.to_errno(), + } + } + + /// # Safety + /// + /// Pointers from C must be valid. + unsafe extern "C" fn round_waveform_fromhw_callback( + c: *mut bindings::pwm_chip, + p: *mut bindings::pwm_device, + wh: *const c_void, + w: *mut bindings::pwm_waveform, + ) -> c_int { + // SAFETY: Relies on the function's contract that `c` and `p` are = valid pointers. + let (chip, pwm) =3D unsafe { (Chip::::as_ref(c), Devic= e::as_ref(p)) }; + // SAFETY: `deserialize_wfhw`'s safety contract is met by this fun= ction's contract. + let wfhw =3D match unsafe { Self::deserialize_wfhw(wh) } { + Ok(v) =3D> v, + Err(e) =3D> return e.to_errno(), + }; + + let mut rust_wf =3D Waveform::default(); + match T::round_waveform_fromhw(chip, pwm, &wfhw, &mut rust_wf) { + Ok(ret) =3D> { + // SAFETY: `w` is guaranteed valid by the C caller. + unsafe { + *w =3D rust_wf.into(); + }; + ret + } + Err(e) =3D> e.to_errno(), + } + } + + /// # Safety + /// + /// Pointers from C must be valid. + unsafe extern "C" fn read_waveform_callback( + c: *mut bindings::pwm_chip, + p: *mut bindings::pwm_device, + wh: *mut c_void, + ) -> c_int { + // SAFETY: Relies on the function's contract that `c` and `p` are = valid pointers. + let (chip, pwm) =3D unsafe { (Chip::::as_ref(c), Devic= e::as_ref(p)) }; + + // SAFETY: The PWM core guarantees the parent device exists and is= bound during callbacks. + let bound_parent =3D unsafe { chip.bound_parent_device() }; + match T::read_waveform(chip, pwm, bound_parent) { + // SAFETY: `wh` is valid per this function's safety contract. + Ok(wfhw) =3D> match unsafe { Self::serialize_wfhw(&wfhw, wh) }= { + Ok(()) =3D> 0, + Err(e) =3D> e.to_errno(), + }, + Err(e) =3D> e.to_errno(), + } + } + + /// # Safety + /// + /// Pointers from C must be valid. + unsafe extern "C" fn write_waveform_callback( + c: *mut bindings::pwm_chip, + p: *mut bindings::pwm_device, + wh: *const c_void, + ) -> c_int { + // SAFETY: Relies on the function's contract that `c` and `p` are = valid pointers. + let (chip, pwm) =3D unsafe { (Chip::::as_ref(c), Devic= e::as_ref(p)) }; + + // SAFETY: The PWM core guarantees the parent device exists and is= bound during callbacks. + let bound_parent =3D unsafe { chip.bound_parent_device() }; + + // SAFETY: `wh` is valid per this function's safety contract. + let wfhw =3D match unsafe { Self::deserialize_wfhw(wh) } { + Ok(v) =3D> v, + Err(e) =3D> return e.to_errno(), + }; + match T::write_waveform(chip, pwm, &wfhw, bound_parent) { + Ok(()) =3D> 0, + Err(e) =3D> e.to_errno(), + } + } +} + +/// VTable structure wrapper for PWM operations. +/// Mirrors [`struct pwm_ops`](srctree/include/linux/pwm.h). +#[repr(transparent)] +pub struct PwmOpsVTable(bindings::pwm_ops); + +// SAFETY: PwmOpsVTable is Send. The vtable contains only function pointers +// and a size, which are simple data types that can be safely moved across +// threads. The thread-safety of calling these functions is handled by the +// kernel's locking mechanisms. +unsafe impl Send for PwmOpsVTable {} + +// SAFETY: PwmOpsVTable is Sync. The vtable is immutable after it is creat= ed, +// so it can be safely referenced and accessed concurrently by multiple th= reads +// e.g. to read the function pointers. +unsafe impl Sync for PwmOpsVTable {} + +impl PwmOpsVTable { + /// Returns a raw pointer to the underlying `pwm_ops` struct. + pub(crate) fn as_raw(&self) -> *const bindings::pwm_ops { + &self.0 + } +} + +/// Creates a PWM operations vtable for a type `T` that implements `PwmOps= `. +/// +/// This is used to bridge Rust trait implementations to the C `struct pwm= _ops` +/// expected by the kernel. +pub const fn create_pwm_ops() -> PwmOpsVTable { + // SAFETY: `core::mem::zeroed()` is unsafe. For `pwm_ops`, all fields = are + // `Option` or data, so a zeroed pattern (None/0) = is valid initially. + let mut ops: bindings::pwm_ops =3D unsafe { core::mem::zeroed() }; + + ops.request =3D Some(Adapter::::request_callback); + ops.free =3D Some(Adapter::::free_callback); + ops.capture =3D Some(Adapter::::capture_callback); + + ops.round_waveform_tohw =3D Some(Adapter::::round_waveform_tohw_cal= lback); + ops.round_waveform_fromhw =3D Some(Adapter::::round_waveform_fromhw= _callback); + ops.read_waveform =3D Some(Adapter::::read_waveform_callback); + ops.write_waveform =3D Some(Adapter::::write_waveform_callback); + ops.sizeof_wfhw =3D core::mem::size_of::(); + + PwmOpsVTable(ops) +} + +/// Wrapper for a PWM chip/controller ([`struct pwm_chip`](srctree/include= /linux/pwm.h)). +#[repr(transparent)] +pub struct Chip(Opaque, PhantomData= ); + +impl Chip { + /// Creates a reference to a [`Chip`] from a valid pointer. + /// + /// # Safety + /// + /// The caller must ensure that `ptr` is valid and remains valid for t= he lifetime of the + /// returned [`Chip`] reference. + pub(crate) unsafe fn as_ref<'a>(ptr: *mut bindings::pwm_chip) -> &'a S= elf { + // SAFETY: The safety requirements guarantee the validity of the d= ereference, while the + // `Chip` type being transparent makes the cast ok. + unsafe { &*ptr.cast::() } + } + + /// Returns a raw pointer to the underlying `pwm_chip`. + pub(crate) fn as_raw(&self) -> *mut bindings::pwm_chip { + self.0.get() + } + + /// Gets the number of PWM channels (hardware PWMs) on this chip. + pub fn npwm(&self) -> u32 { + // SAFETY: `self.as_raw()` provides a valid pointer for `self`'s l= ifetime. + unsafe { (*self.as_raw()).npwm } + } + + /// Returns `true` if the chip supports atomic operations for configur= ation. + pub fn is_atomic(&self) -> bool { + // SAFETY: `self.as_raw()` provides a valid pointer for `self`'s l= ifetime. + unsafe { (*self.as_raw()).atomic } + } + + /// Returns a reference to the embedded `struct device` abstraction. + pub fn device(&self) -> &device::Device { + // SAFETY: `self.as_raw()` provides a valid pointer to `bindings::= pwm_chip`. + // The `dev` field is an instance of `bindings::device` embedded w= ithin `pwm_chip`. + // Taking a pointer to this embedded field is valid. + // `device::Device` is `#[repr(transparent)]`. + // The lifetime of the returned reference is tied to `self`. + unsafe { device::Device::as_ref(&raw mut (*self.as_raw()).dev) } + } + + /// Returns a reference to the parent device of this PWM chip's device. + /// + /// # Safety + /// + /// The caller must guarantee that the parent device exists and is bou= nd. + /// This is guaranteed by the PWM core during `PwmOps` callbacks. + unsafe fn bound_parent_device(&self) -> &device::Device { + // SAFETY: Per the function's safety contract, the parent device e= xists. + let parent =3D unsafe { self.device().parent().unwrap_unchecked() = }; + + // SAFETY: Per the function's safety contract, the parent device i= s bound. + // The pointer is cast from `&Device` to `&Device`. + unsafe { &*core::ptr::from_ref(parent).cast::>() } + } +} + +impl Chip { + /// Allocates and wraps a PWM chip using `bindings::pwmchip_alloc`. + /// + /// Returns an [`ARef`] managing the chip's lifetime via refcoun= ting + /// on its embedded `struct device`. + pub fn new>( + parent_dev: &device::Device, + npwm: u32, + sizeof_priv: usize, + drvdata: T, + ) -> Result> { + // SAFETY: `parent_device_for_dev_field.as_raw()` is valid. + // `bindings::pwmchip_alloc` returns a valid `*mut bindings::pwm_c= hip` (refcount 1) + // or an ERR_PTR. + let c_chip_ptr_raw =3D + unsafe { bindings::pwmchip_alloc(parent_dev.as_raw(), npwm, si= zeof_priv) }; + + let c_chip_ptr: *mut bindings::pwm_chip =3D error::from_err_ptr(c_= chip_ptr_raw)?; + + // Set the custom release function on the embedded device. This is= the crucial step + // to ensure `drvdata` is freed when the chip's refcount reaches z= ero, regardless + // of whether `Registration::register` was called. + // SAFETY: `c_chip_ptr` points to a valid chip. + unsafe { (*c_chip_ptr).dev.release =3D Some(Adapter::::release_= callback); } + + // SAFETY: `c_chip_ptr` points to a valid chip from `pwmchip_alloc= `. + // The `Adapter`'s `VTABLE` has a 'static lifetime, so the pointer + // returned by `as_raw()` is always valid. + unsafe { (*c_chip_ptr).ops =3D Adapter::::VTABLE.as_raw(); } + + // Cast the `*mut bindings::pwm_chip` to `*mut Chip`. This is vali= d because + // `Chip` is `repr(transparent)` over `Opaque`= , and + // `Opaque` is `repr(transparent)` over `T`. + let chip_ptr_as_self =3D c_chip_ptr.cast::(); + + // SAFETY: The pointer is valid, so we can create a temporary ref = to set data. + let chip_ref =3D unsafe { &*chip_ptr_as_self }; + // SAFETY: `chip_ref` points to a valid chip from `pwmchip_alloc` = and `drvdata` is a valid, + // owned pointer from `ForeignOwnable` to be stored in the chip's = private data. + unsafe { bindings::pwmchip_set_drvdata(chip_ref.as_raw(), drvdata.= into_foreign().cast()) } + + // SAFETY: `chip_ptr_as_self` points to a valid `Chip` (layout-com= patible with + // `bindings::pwm_chip`) whose embedded device has refcount 1. + // `ARef::from_raw` takes this pointer and manages it via `AlwaysR= efCounted`. + Ok(unsafe { ARef::from_raw(NonNull::new_unchecked(chip_ptr_as_self= )) }) + } + + /// Gets the *typed* driver-specific data associated with this chip's = embedded device. + pub fn drvdata(&self) -> T::Borrowed<'_> { + // SAFETY: `self.as_raw()` gives a valid pwm_chip pointer. + // `bindings::pwmchip_get_drvdata` is the C function to retrieve d= river data. + let ptr =3D unsafe { bindings::pwmchip_get_drvdata(self.as_raw()) = }; + + // SAFETY: The only way to create a chip is through Chip::new, whi= ch initializes + // this pointer. + unsafe { T::borrow(ptr.cast()) } + } +} + +// SAFETY: Implements refcounting for `Chip` using the embedded `struct de= vice`. +unsafe impl AlwaysRefCounted for Chip { + #[inline] + fn inc_ref(&self) { + // SAFETY: `self.0.get()` points to a valid `pwm_chip` because `se= lf` exists. + // The embedded `dev` is valid. `get_device` increments its refcou= nt. + unsafe { bindings::get_device(&raw mut (*self.0.get()).dev); } + } + + #[inline] + unsafe fn dec_ref(obj: NonNull>) { + let c_chip_ptr =3D obj.cast::().as_ptr(); + + // SAFETY: `obj` is a valid pointer to a `Chip` (and thus `binding= s::pwm_chip`) + // with a non-zero refcount. `put_device` handles decrement and fi= nal release. + unsafe { bindings::put_device(&raw mut (*c_chip_ptr).dev); } + } +} + +// SAFETY: `Chip` is a wrapper around `*mut bindings::pwm_chip`. The under= lying C +// structure's state is managed and synchronized by the kernel's device mo= del +// and PWM core locking mechanisms. Therefore, it is safe to move the `Chi= p` +// wrapper (and the pointer it contains) across threads. +unsafe impl Send for Chip {} + +// SAFETY: It is safe for multiple threads to have shared access (`&Chip`)= because +// the `Chip` data is immutable from the Rust side without holding the app= ropriate +// kernel locks, which the C core is responsible for. Any interior mutabil= ity is +// handled and synchronized by the C kernel code. +unsafe impl Sync for Chip {} + +/// A resource guard that ensures `pwmchip_remove` is called on drop. +/// +/// This struct is intended to be managed by the `devres` framework by tra= nsferring its ownership +/// via [`Devres::register`]. This ties the lifetime of the PWM chip regis= tration +/// to the lifetime of the underlying device. +pub struct Registration { + chip: ARef>, +} + +impl Registration { + /// Registers a PWM chip with the PWM subsystem. + /// + /// Transfers its ownership to the `devres` framework, which ties its = lifetime + /// to the parent device. + /// On unbind of the parent device, the `devres` entry will be dropped= , automatically + /// calling `pwmchip_remove`. This function should be called from the = driver's `probe`. + pub fn register( + dev: &device::Device, + chip: ARef>, + ) -> Result { + let chip_parent =3D chip.device().parent().ok_or(EINVAL)?; + if dev.as_raw() !=3D chip_parent.as_raw() { + return Err(EINVAL); + } + + let c_chip_ptr =3D chip.as_raw(); + + // SAFETY: `c_chip_ptr` points to a valid chip with its ops initia= lized. + // `__pwmchip_add` is the C function to register the chip with the= PWM core. + unsafe { + to_result(bindings::__pwmchip_add(c_chip_ptr, core::ptr::null_= mut()))?; + } + + let registration =3D Registration { chip }; + + devres::register(dev, registration, GFP_KERNEL) + } +} + +impl Drop for Registration { + fn drop(&mut self) { + let chip_raw =3D self.chip.as_raw(); + + // SAFETY: `chip_raw` points to a chip that was successfully regis= tered. + // `bindings::pwmchip_remove` is the correct C function to unregis= ter it. + // This `drop` implementation is called automatically by `devres` = on driver unbind. + unsafe { + bindings::pwmchip_remove(chip_raw); + } + } +} --=20 2.34.1 From nobody Tue Oct 7 21:02:19 2025 Received: from mailout1.w1.samsung.com (mailout1.w1.samsung.com [210.118.77.11]) (using TLSv1.2 with cipher ECDHE-RSA-AES256-GCM-SHA384 (256/256 bits)) (No client certificate requested) by smtp.subspace.kernel.org (Postfix) with ESMTPS id 5FF7120C48D for ; Sun, 6 Jul 2025 11:46:15 +0000 (UTC) Authentication-Results: smtp.subspace.kernel.org; arc=none smtp.client-ip=210.118.77.11 ARC-Seal: i=1; a=rsa-sha256; d=subspace.kernel.org; s=arc-20240116; t=1751802378; cv=none; b=aGoQj1eWA3MJkAWRhxDuYdhyuUVtU9L2lYLQYSilqFPwHfTb+dsCC0QoECtrRGThXNJGXG0jsaJpFaqePW2INeQ9jE2maK2+LP+JpgeUTLU/UV+T4Gi+HVHGF9Qve5x1LHJb7R6vROXqyg2CjTfEcvkYnJIa1wNGiCZxPJBSIu0= ARC-Message-Signature: i=1; a=rsa-sha256; d=subspace.kernel.org; s=arc-20240116; t=1751802378; c=relaxed/simple; bh=Tv6Cbn/FbKwxobWwkBd/VWp5StuK5NT8N3mYJIebp7I=; h=From:Date:Subject:MIME-Version:Message-Id:In-Reply-To:To:Cc: Content-Type:References; b=cU0GtAKsJkrvy0IcIEUnYZeRwlkM6Vus+rAtxpNwwHXwwPMIXSYcztlhXjo0kz/Qdv+oNSgFguLxglaW9Jc4QVjFJJfO1y/OKAO/6Yu3vTzkU6rYgCM4BMGNEVDKdsJhgrIe6CzsBtUnaM/f3K+UgqIESOpFzGcoVdIivKsVF9I= ARC-Authentication-Results: i=1; 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d=samsung.com; s=mail20170921; t=1751802367; bh=AwH+R4J2WpPQ4XtK7U2jFB042x9gyyoJ+e/JJPuFswo=; h=From:Date:Subject:In-Reply-To:To:Cc:References:From; b=V4RCVxcOA1zgA6k89CnCSYyAFU+s089LVuT2eArZmDKYUVEx0pPXYc5IwyXip4vyC Vxau0P6gthaoVmKeKLgfg8V7++egf/udkuSH+jDJsixv8Dlq5yDz2YsCLGgpnIGWPn 3uLJ20P/kr8gQ46N1Fbq/YxIIwlskxpxImx4q5O4= Received: from eusmtip2.samsung.com (unknown [203.254.199.222]) by eucas1p1.samsung.com (KnoxPortal) with ESMTPA id 20250706114606eucas1p12c2d4b4907b309f0d2f7e00828f22ea2~PpviR5sXJ2965829658eucas1p1w; Sun, 6 Jul 2025 11:46:06 +0000 (GMT) Received: from AMDC4942.eu.corp.samsungelectronics.net (unknown [106.210.136.40]) by eusmtip2.samsung.com (KnoxPortal) with ESMTPA id 20250706114605eusmtip2b3f9bc74ee00b546001cb4a6f5f05a21~PpvhGemQj1756317563eusmtip2R; Sun, 6 Jul 2025 11:46:05 +0000 (GMT) From: Michal Wilczynski Date: Sun, 06 Jul 2025 13:45:14 +0200 Subject: [PATCH v9 3/6] pwm: Add Rust driver for T-HEAD TH1520 SoC Precedence: bulk X-Mailing-List: linux-kernel@vger.kernel.org List-Id: List-Subscribe: List-Unsubscribe: MIME-Version: 1.0 Content-Transfer-Encoding: quoted-printable Message-Id: <20250706-rust-next-pwm-working-fan-for-sending-v9-3-42b5ac2101c7@samsung.com> In-Reply-To: <20250706-rust-next-pwm-working-fan-for-sending-v9-0-42b5ac2101c7@samsung.com> To: =?utf-8?q?Uwe_Kleine-K=C3=B6nig?= , Miguel Ojeda , Alex Gaynor , Boqun Feng , Gary Guo , =?utf-8?q?Bj=C3=B6rn_Roy_Baron?= , Andreas Hindborg , Alice Ryhl , Trevor Gross , Danilo Krummrich , Michal Wilczynski , Guo Ren , Fu Wei , Rob Herring , Krzysztof Kozlowski , Conor Dooley , Paul Walmsley , Palmer Dabbelt , Albert Ou , Alexandre Ghiti , Marek Szyprowski , Benno Lossin , Michael Turquette , Drew Fustini , Benno Lossin , Drew Fustini Cc: linux-kernel@vger.kernel.org, linux-pwm@vger.kernel.org, rust-for-linux@vger.kernel.org, linux-riscv@lists.infradead.org, devicetree@vger.kernel.org X-Mailer: b4 0.15-dev X-CMS-MailID: 20250706114606eucas1p12c2d4b4907b309f0d2f7e00828f22ea2 X-Msg-Generator: CA Content-Type: text/plain; charset="utf-8" X-RootMTR: 20250706114606eucas1p12c2d4b4907b309f0d2f7e00828f22ea2 X-EPHeader: CA X-CMS-RootMailID: 20250706114606eucas1p12c2d4b4907b309f0d2f7e00828f22ea2 References: <20250706-rust-next-pwm-working-fan-for-sending-v9-0-42b5ac2101c7@samsung.com> Introduce a PWM driver for the T-HEAD TH1520 SoC, written in Rust and utilizing the safe PWM abstractions from the preceding commit. The driver implements the pwm::PwmOps trait using the modern waveform API (round_waveform_tohw, write_waveform, etc.) to support configuration of period, duty cycle, and polarity for the TH1520's PWM channels. Resource management is handled using idiomatic Rust patterns. The PWM chip object is allocated via pwm::Chip::new and its registration with the PWM core is managed by the pwm::Registration RAII guard. This ensures pwmchip_remove is always called when the driver unbinds, preventing resource leaks. Device managed resources are used for the MMIO region, and the clock lifecycle is correctly managed in the driver's private data Drop implementation. The driver's core logic is written entirely in safe Rust, with no unsafe blocks. Signed-off-by: Michal Wilczynski --- MAINTAINERS | 1 + drivers/pwm/Kconfig | 11 ++ drivers/pwm/Makefile | 1 + drivers/pwm/pwm_th1520.rs | 352 ++++++++++++++++++++++++++++++++++++++++++= ++++ 4 files changed, 365 insertions(+) diff --git a/MAINTAINERS b/MAINTAINERS index 494de42ca8c36b30d80e14b03d3c9e0e054fb267..2449178a6d7b83b5202f8209c0b= 38e8302bc6b15 100644 --- a/MAINTAINERS +++ b/MAINTAINERS @@ -21531,6 +21531,7 @@ F: drivers/net/ethernet/stmicro/stmmac/dwmac-thead.c F: drivers/pinctrl/pinctrl-th1520.c F: drivers/pmdomain/thead/ F: drivers/power/sequencing/pwrseq-thead-gpu.c +F: drivers/pwm/pwm_th1520.rs F: drivers/reset/reset-th1520.c F: include/dt-bindings/clock/thead,th1520-clk-ap.h F: include/dt-bindings/power/thead,th1520-power.h diff --git a/drivers/pwm/Kconfig b/drivers/pwm/Kconfig index c32655566d6ab9eff9d10f29e469f9aef89cecfa..02faf93600b6464d3c02495eeb5= 824ea541cff35 100644 --- a/drivers/pwm/Kconfig +++ b/drivers/pwm/Kconfig @@ -728,6 +728,17 @@ config PWM_TEGRA To compile this driver as a module, choose M here: the module will be called pwm-tegra. =20 +config PWM_TH1520 + tristate "TH1520 PWM support" + depends on RUST + select RUST_PWM_ABSTRACTIONS + help + This option enables the driver for the PWM controller found on the + T-HEAD TH1520 SoC. + + To compile this driver as a module, choose M here; the module + will be called pwm-th1520. If you are unsure, say N. + config PWM_TIECAP tristate "ECAP PWM support" depends on ARCH_OMAP2PLUS || ARCH_DAVINCI_DA8XX || ARCH_KEYSTONE || ARCH_= K3 || COMPILE_TEST diff --git a/drivers/pwm/Makefile b/drivers/pwm/Makefile index ff4f47e5fb7a0dbac72c12de82c3773e5582db6d..5c15c95c6e49143969389198657= eed0ecf4086b2 100644 --- a/drivers/pwm/Makefile +++ b/drivers/pwm/Makefile @@ -67,6 +67,7 @@ obj-$(CONFIG_PWM_STMPE) +=3D pwm-stmpe.o obj-$(CONFIG_PWM_SUN4I) +=3D pwm-sun4i.o obj-$(CONFIG_PWM_SUNPLUS) +=3D pwm-sunplus.o obj-$(CONFIG_PWM_TEGRA) +=3D pwm-tegra.o +obj-$(CONFIG_PWM_TH1520) +=3D pwm_th1520.o obj-$(CONFIG_PWM_TIECAP) +=3D pwm-tiecap.o obj-$(CONFIG_PWM_TIEHRPWM) +=3D pwm-tiehrpwm.o obj-$(CONFIG_PWM_TWL) +=3D pwm-twl.o diff --git a/drivers/pwm/pwm_th1520.rs b/drivers/pwm/pwm_th1520.rs new file mode 100644 index 0000000000000000000000000000000000000000..c6cd90552cc57219cd393e1c867= dfbf5587cee00 --- /dev/null +++ b/drivers/pwm/pwm_th1520.rs @@ -0,0 +1,352 @@ +// SPDX-License-Identifier: GPL-2.0 +// Copyright (c) 2025 Samsung Electronics Co., Ltd. +// Author: Michal Wilczynski + +//! Rust T-HEAD TH1520 PWM driver +//! +//! Limitations: +//! - The period and duty cycle are controlled by 32-bit hardware register= s, +//! limiting the maximum resolution. +//! - The driver supports continuous output mode only; one-shot mode is not +//! implemented. +//! - The controller hardware provides up to 6 PWM channels. +//! - Reconfiguration is glitch free - new period and duty cycle values are +//! latched and take effect at the start of the next period. +//! - Polarity is handled via a simple hardware inversion bit; arbitrary +//! duty cycle offsets are not supported. +//! - Disabling a channel is achieved by configuring its duty cycle to zer= o to +//! produce a static low output. Clearing the `start` does not reliably +//! force the static inactive level defined by the `INACTOUT` bit. Hence +//! this method is not used in this driver. +//! + +use core::ops::Deref; +use kernel::{ + c_str, + clk::Clk, + device::{Bound, Core, Device}, + devres, + io::mem::IoMem, + of, platform, + prelude::*, + pwm, time, +}; + +const TH1520_MAX_PWM_NUM: u32 =3D 6; + +// Register offsets +const fn th1520_pwm_chn_base(n: u32) -> usize { + (n * 0x20) as usize +} + +const fn th1520_pwm_ctrl(n: u32) -> usize { + th1520_pwm_chn_base(n) +} + +const fn th1520_pwm_per(n: u32) -> usize { + th1520_pwm_chn_base(n) + 0x08 +} + +const fn th1520_pwm_fp(n: u32) -> usize { + th1520_pwm_chn_base(n) + 0x0c +} + +// Control register bits +const TH1520_PWM_START: u32 =3D 1 << 0; +const TH1520_PWM_CFG_UPDATE: u32 =3D 1 << 2; +const TH1520_PWM_CONTINUOUS_MODE: u32 =3D 1 << 5; +const TH1520_PWM_FPOUT: u32 =3D 1 << 8; + +const TH1520_PWM_REG_SIZE: usize =3D 0xB0; + +fn ns_to_cycles(ns: u64, rate_hz: u64) -> u64 { + const NSEC_PER_SEC_U64: u64 =3D time::NSEC_PER_SEC as u64; + + (match ns.checked_mul(rate_hz) { + Some(product) =3D> product, + None =3D> u64::MAX, + }) / NSEC_PER_SEC_U64 +} + +fn cycles_to_ns(cycles: u64, rate_hz: u64) -> u64 { + const NSEC_PER_SEC_U64: u64 =3D time::NSEC_PER_SEC as u64; + + // Round up + let Some(numerator) =3D cycles + .checked_mul(NSEC_PER_SEC_U64) + .and_then(|p| p.checked_add(rate_hz - 1)) + else { + return u64::MAX; + }; + + numerator / rate_hz +} + +/// Hardware-specific waveform representation for TH1520. +#[derive(Copy, Clone, Debug, Default)] +struct Th1520WfHw { + period_cycles: u32, + duty_cycles: u32, + ctrl_val: u32, + enabled: bool, +} + +/// The driver's private data struct. It holds all necessary devres manage= d resources. +#[pin_data(PinnedDrop)] +struct Th1520PwmDriverData { + #[pin] + iomem: devres::Devres>, + clk: Clk, +} + +// This `unsafe` implementation is a temporary necessity because the under= lying `kernel::clk::Clk` +// type does not yet expose `Send` and `Sync` implementations. This block = should be removed +// as soon as the clock abstraction provides these guarantees directly. +// TODO: Remove those unsafe impl's when Clk will support them itself. + +// SAFETY: The `devres` framework requires the driver's private data to be= `Send` and `Sync`. +// We can guarantee this because the PWM core synchronizes all callbacks, = preventing concurrent +// access to the contained `iomem` and `clk` resources. +unsafe impl Send for Th1520PwmDriverData {} + +// SAFETY: The same reasoning applies as for `Send`. The PWM core's synchr= onization +// guarantees that it is safe for multiple threads to have shared access (= `&self`) +// to the driver data during callbacks. +unsafe impl Sync for Th1520PwmDriverData {} + +impl pwm::PwmOps for Th1520PwmDriverData { + type DrvData =3D Pin>; + type WfHw =3D Th1520WfHw; + + fn round_waveform_tohw( + chip: &pwm::Chip, + _pwm: &pwm::Device, + wf: &pwm::Waveform, + ) -> Result<(c_int, Self::WfHw)> { + let data =3D chip.drvdata(); + + if wf.period_length_ns =3D=3D 0 { + return Ok(( + 0, + Th1520WfHw { + enabled: false, + ..Default::default() + }, + )); + } + + let rate_hz =3D data.clk.rate().as_hz() as u64; + + let period_cycles =3D ns_to_cycles(wf.period_length_ns, rate_hz).m= in(u64::from(u32::MAX)); + let mut duty_cycles =3D ns_to_cycles(wf.duty_length_ns, rate_hz).m= in(u64::from(u32::MAX)); + + let mut ctrl_val =3D TH1520_PWM_CONTINUOUS_MODE; + + let is_inversed =3D wf.duty_length_ns > 0 + && wf.duty_offset_ns > 0 + && wf.duty_length_ns + wf.duty_offset_ns >=3D wf.period_length= _ns; + if is_inversed { + duty_cycles =3D period_cycles - duty_cycles; + } else { + ctrl_val |=3D TH1520_PWM_FPOUT; + } + + let wfhw =3D Th1520WfHw { + period_cycles: period_cycles as u32, + duty_cycles: duty_cycles as u32, + ctrl_val, + enabled: true, + }; + + dev_dbg!( + chip.device(), + "clk_rate: {}Hz Requested: period {}ns, duty {}ns, offset {}ns= -> HW: period {} cyc, duty {} cyc, ctrl 0x{:x}\n", + rate_hz, + wf.period_length_ns, + wf.duty_length_ns, + wf.duty_offset_ns, + wfhw.period_cycles, + wfhw.duty_cycles, + wfhw.ctrl_val + ); + + Ok((0, wfhw)) + } + + fn round_waveform_fromhw( + chip: &pwm::Chip, + _pwm: &pwm::Device, + wfhw: &Self::WfHw, + wf: &mut pwm::Waveform, + ) -> Result { + let data =3D chip.drvdata(); + let rate_hz =3D data.clk.rate().as_hz() as u64; + + wf.period_length_ns =3D cycles_to_ns(u64::from(wfhw.period_cycles)= , rate_hz); + + let duty_cycles =3D u64::from(wfhw.duty_cycles); + + if (wfhw.ctrl_val & TH1520_PWM_FPOUT) !=3D 0 { + wf.duty_length_ns =3D cycles_to_ns(duty_cycles, rate_hz); + wf.duty_offset_ns =3D 0; + } else { + let period_cycles =3D u64::from(wfhw.period_cycles); + let original_duty_cycles =3D period_cycles.saturating_sub(duty= _cycles); + + // For an inverted signal, `duty_length_ns` is the high time (= period - low_time). + wf.duty_length_ns =3D cycles_to_ns(original_duty_cycles, rate_= hz); + // The offset is the initial low time, which is what the hardw= are register provides. + wf.duty_offset_ns =3D cycles_to_ns(duty_cycles, rate_hz); + } + + Ok(0) + } + + fn read_waveform( + chip: &pwm::Chip, + pwm: &pwm::Device, + parent_dev: &Device, + ) -> Result { + let data =3D chip.drvdata(); + let hwpwm =3D pwm.hwpwm(); + let iomem_accessor =3D data.iomem.access(parent_dev)?; + let iomap =3D iomem_accessor.deref(); + + let ctrl =3D iomap.try_read32(th1520_pwm_ctrl(hwpwm))?; + let period_cycles =3D iomap.try_read32(th1520_pwm_per(hwpwm))?; + let duty_cycles =3D iomap.try_read32(th1520_pwm_fp(hwpwm))?; + + let wfhw =3D Th1520WfHw { + period_cycles, + duty_cycles, + ctrl_val: ctrl, + enabled: duty_cycles !=3D 0, + }; + + dev_dbg!( + chip.device(), + "PWM-{}: read_waveform: Read hw state - period: {}, duty: {}, = ctrl: 0x{:x}, enabled: {}", + hwpwm, + wfhw.period_cycles, + wfhw.duty_cycles, + wfhw.ctrl_val, + wfhw.enabled + ); + + Ok(wfhw) + } + + fn write_waveform( + chip: &pwm::Chip, + pwm: &pwm::Device, + wfhw: &Self::WfHw, + parent_dev: &Device, + ) -> Result { + let data =3D chip.drvdata(); + let hwpwm =3D pwm.hwpwm(); + let iomem_accessor =3D data.iomem.access(parent_dev)?; + let iomap =3D iomem_accessor.deref(); + let was_enabled =3D pwm.state().enabled(); + + if !wfhw.enabled { + if was_enabled { + iomap.try_write32(wfhw.ctrl_val, th1520_pwm_ctrl(hwpwm))?; + iomap.try_write32(0, th1520_pwm_fp(hwpwm))?; + iomap.try_write32(wfhw.ctrl_val | TH1520_PWM_CFG_UPDATE, t= h1520_pwm_ctrl(hwpwm))?; + } + return Ok(()); + } + + iomap.try_write32(wfhw.ctrl_val, th1520_pwm_ctrl(hwpwm))?; + iomap.try_write32(wfhw.period_cycles, th1520_pwm_per(hwpwm))?; + iomap.try_write32(wfhw.duty_cycles, th1520_pwm_fp(hwpwm))?; + iomap.try_write32(wfhw.ctrl_val | TH1520_PWM_CFG_UPDATE, th1520_pw= m_ctrl(hwpwm))?; + + // The `TH1520_PWM_START` bit must be written in a separate, final= transaction, and + // only when enabling the channel from a disabled state. + if !was_enabled { + iomap.try_write32(wfhw.ctrl_val | TH1520_PWM_START, th1520_pwm= _ctrl(hwpwm))?; + } + + dev_dbg!( + chip.device(), + "PWM-{}: Wrote (per: {}, duty: {})", + hwpwm, + wfhw.period_cycles, + wfhw.duty_cycles, + ); + + Ok(()) + } +} + +#[pinned_drop] +impl PinnedDrop for Th1520PwmDriverData { + fn drop(self: Pin<&mut Self>) { + self.clk.disable_unprepare(); + } +} + +struct Th1520PwmPlatformDriver; + +kernel::of_device_table!( + OF_TABLE, + MODULE_OF_TABLE, + ::IdInfo, + [(of::DeviceId::new(c_str!("thead,th1520-pwm")), ())] +); + +impl platform::Driver for Th1520PwmPlatformDriver { + type IdInfo =3D (); + const OF_ID_TABLE: Option> =3D Some(&OF_TABL= E); + + fn probe( + pdev: &platform::Device, + _id_info: Option<&Self::IdInfo>, + ) -> Result>> { + let dev =3D pdev.as_ref(); + let resource =3D pdev.resource(0).ok_or(ENODEV)?; + + let drvdata =3D KBox::pin_init( + try_pin_init!(Th1520PwmDriverData { + iomem <- pdev.ioremap_resource_sized::(resource), + clk <- Clk::get(dev, None), + }), + GFP_KERNEL, + )?; + + drvdata.clk.prepare_enable()?; + + // TODO: Get exclusive ownership of the clock to prevent rate chan= ges. + // The Rust equivalent of `clk_rate_exclusive_get()` is not yet av= ailable. + // This should be updated once it is implemented. + let rate_hz =3D drvdata.clk.rate().as_hz(); + if rate_hz =3D=3D 0 { + dev_err!(dev, "Clock rate is zero\n"); + return Err(EINVAL); + } + + if rate_hz > time::NSEC_PER_SEC as usize { + dev_err!( + dev, + "Clock rate {} Hz is too high, not supported.\n", + rate_hz + ); + return Err(ERANGE); + } + + let chip =3D pwm::Chip::new::(dev, TH1520_MAX= _PWM_NUM, 0, drvdata)?; + + pwm::Registration::register(dev, chip)?; + + Ok(KBox::new(Th1520PwmPlatformDriver, GFP_KERNEL)?.into()) + } +} + +kernel::module_platform_driver! { + type: Th1520PwmPlatformDriver, + name: "pwm-th1520", + authors: ["Michal Wilczynski "], + description: "T-HEAD TH1520 PWM driver", + license: "GPL v2", +} --=20 2.34.1 From nobody Tue Oct 7 21:02:19 2025 Received: from mailout2.w1.samsung.com (mailout2.w1.samsung.com [210.118.77.12]) (using TLSv1.2 with cipher ECDHE-RSA-AES256-GCM-SHA384 (256/256 bits)) (No client certificate requested) by smtp.subspace.kernel.org (Postfix) with ESMTPS id 6300B20DD54 for ; 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Sun, 6 Jul 2025 11:46:07 +0000 (GMT) Received: from AMDC4942.eu.corp.samsungelectronics.net (unknown [106.210.136.40]) by eusmtip2.samsung.com (KnoxPortal) with ESMTPA id 20250706114606eusmtip28dc20c0c4758a44f427a5d81a21169a3~PpviWSmEM2879028790eusmtip2Q; Sun, 6 Jul 2025 11:46:06 +0000 (GMT) From: Michal Wilczynski Date: Sun, 06 Jul 2025 13:45:15 +0200 Subject: [PATCH v9 4/6] dt-bindings: pwm: thead: Add T-HEAD TH1520 PWM controller Precedence: bulk X-Mailing-List: linux-kernel@vger.kernel.org List-Id: List-Subscribe: List-Unsubscribe: MIME-Version: 1.0 Content-Transfer-Encoding: quoted-printable Message-Id: <20250706-rust-next-pwm-working-fan-for-sending-v9-4-42b5ac2101c7@samsung.com> In-Reply-To: <20250706-rust-next-pwm-working-fan-for-sending-v9-0-42b5ac2101c7@samsung.com> To: =?utf-8?q?Uwe_Kleine-K=C3=B6nig?= , Miguel Ojeda , Alex Gaynor , Boqun Feng , Gary Guo , =?utf-8?q?Bj=C3=B6rn_Roy_Baron?= , Andreas Hindborg , Alice Ryhl , Trevor Gross , Danilo Krummrich , Michal Wilczynski , Guo Ren , Fu Wei , Rob Herring , Krzysztof Kozlowski , Conor Dooley , Paul Walmsley , Palmer Dabbelt , Albert Ou , Alexandre Ghiti , Marek Szyprowski , Benno Lossin , Michael Turquette , Drew Fustini , Benno Lossin , Drew Fustini Cc: linux-kernel@vger.kernel.org, linux-pwm@vger.kernel.org, rust-for-linux@vger.kernel.org, linux-riscv@lists.infradead.org, devicetree@vger.kernel.org, Krzysztof Kozlowski X-Mailer: b4 0.15-dev X-CMS-MailID: 20250706114607eucas1p11b4b9f4ae851d9c251959ef2685eef88 X-Msg-Generator: CA Content-Type: text/plain; charset="utf-8" X-RootMTR: 20250706114607eucas1p11b4b9f4ae851d9c251959ef2685eef88 X-EPHeader: CA X-CMS-RootMailID: 20250706114607eucas1p11b4b9f4ae851d9c251959ef2685eef88 References: <20250706-rust-next-pwm-working-fan-for-sending-v9-0-42b5ac2101c7@samsung.com> Add the Device Tree binding documentation for the T-HEAD TH1520 SoC PWM controller. Reviewed-by: Krzysztof Kozlowski Tested-by: Drew Fustini Signed-off-by: Michal Wilczynski --- .../devicetree/bindings/pwm/thead,th1520-pwm.yaml | 48 ++++++++++++++++++= ++++ MAINTAINERS | 1 + 2 files changed, 49 insertions(+) diff --git a/Documentation/devicetree/bindings/pwm/thead,th1520-pwm.yaml b/= Documentation/devicetree/bindings/pwm/thead,th1520-pwm.yaml new file mode 100644 index 0000000000000000000000000000000000000000..855aec59ac53c430adc84927123= 5686e87b10e6c --- /dev/null +++ b/Documentation/devicetree/bindings/pwm/thead,th1520-pwm.yaml @@ -0,0 +1,48 @@ +# SPDX-License-Identifier: (GPL-2.0-only OR BSD-2-Clause) +%YAML 1.2 +--- +$id: http://devicetree.org/schemas/pwm/thead,th1520-pwm.yaml# +$schema: http://devicetree.org/meta-schemas/core.yaml# + +title: T-HEAD TH1520 PWM controller + +maintainers: + - Michal Wilczynski + +allOf: + - $ref: pwm.yaml# + +properties: + compatible: + const: thead,th1520-pwm + + reg: + maxItems: 1 + + clocks: + items: + - description: SoC PWM clock + + "#pwm-cells": + const: 3 + +required: + - compatible + - reg + - clocks + +unevaluatedProperties: false + +examples: + - | + #include + soc { + #address-cells =3D <2>; + #size-cells =3D <2>; + pwm@ffec01c000 { + compatible =3D "thead,th1520-pwm"; + reg =3D <0xff 0xec01c000 0x0 0x4000>; + clocks =3D <&clk CLK_PWM>; + #pwm-cells =3D <3>; + }; + }; diff --git a/MAINTAINERS b/MAINTAINERS index 2449178a6d7b83b5202f8209c0b38e8302bc6b15..b58853a503875f16a338274eba0= 80f31c3442f9f 100644 --- a/MAINTAINERS +++ b/MAINTAINERS @@ -21522,6 +21522,7 @@ F: Documentation/devicetree/bindings/firmware/thead= ,th1520-aon.yaml F: Documentation/devicetree/bindings/mailbox/thead,th1520-mbox.yaml F: Documentation/devicetree/bindings/net/thead,th1520-gmac.yaml F: Documentation/devicetree/bindings/pinctrl/thead,th1520-pinctrl.yaml +F: Documentation/devicetree/bindings/pwm/thead,th1520-pwm.yaml F: Documentation/devicetree/bindings/reset/thead,th1520-reset.yaml F: arch/riscv/boot/dts/thead/ F: drivers/clk/thead/clk-th1520-ap.c --=20 2.34.1 From nobody Tue Oct 7 21:02:19 2025 Received: from mailout2.w1.samsung.com (mailout2.w1.samsung.com [210.118.77.12]) (using TLSv1.2 with cipher ECDHE-RSA-AES256-GCM-SHA384 (256/256 bits)) (No client certificate requested) by smtp.subspace.kernel.org (Postfix) with ESMTPS id 4FE7E20E310 for ; 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Sun, 6 Jul 2025 11:46:09 +0000 (GMT) Received: from AMDC4942.eu.corp.samsungelectronics.net (unknown [106.210.136.40]) by eusmtip2.samsung.com (KnoxPortal) with ESMTPA id 20250706114607eusmtip2d14944d9dd8c8eaad73ca964266b6216~Ppvjkpq1E0959209592eusmtip26; Sun, 6 Jul 2025 11:46:07 +0000 (GMT) From: Michal Wilczynski Date: Sun, 06 Jul 2025 13:45:16 +0200 Subject: [PATCH v9 5/6] riscv: dts: thead: Add PWM controller node Precedence: bulk X-Mailing-List: linux-kernel@vger.kernel.org List-Id: List-Subscribe: List-Unsubscribe: MIME-Version: 1.0 Content-Transfer-Encoding: quoted-printable Message-Id: <20250706-rust-next-pwm-working-fan-for-sending-v9-5-42b5ac2101c7@samsung.com> In-Reply-To: <20250706-rust-next-pwm-working-fan-for-sending-v9-0-42b5ac2101c7@samsung.com> To: =?utf-8?q?Uwe_Kleine-K=C3=B6nig?= , Miguel Ojeda , Alex Gaynor , Boqun Feng , Gary Guo , =?utf-8?q?Bj=C3=B6rn_Roy_Baron?= , Andreas Hindborg , Alice Ryhl , Trevor Gross , Danilo Krummrich , Michal Wilczynski , Guo Ren , Fu Wei , Rob Herring , Krzysztof Kozlowski , Conor Dooley , Paul Walmsley , Palmer Dabbelt , Albert Ou , Alexandre Ghiti , Marek Szyprowski , Benno Lossin , Michael Turquette , Drew Fustini , Benno Lossin , Drew Fustini Cc: linux-kernel@vger.kernel.org, linux-pwm@vger.kernel.org, rust-for-linux@vger.kernel.org, linux-riscv@lists.infradead.org, devicetree@vger.kernel.org X-Mailer: b4 0.15-dev X-CMS-MailID: 20250706114609eucas1p18598ba94ded6b6ea1664aa8deb552138 X-Msg-Generator: CA Content-Type: text/plain; charset="utf-8" X-RootMTR: 20250706114609eucas1p18598ba94ded6b6ea1664aa8deb552138 X-EPHeader: CA X-CMS-RootMailID: 20250706114609eucas1p18598ba94ded6b6ea1664aa8deb552138 References: <20250706-rust-next-pwm-working-fan-for-sending-v9-0-42b5ac2101c7@samsung.com> Add the Device Tree node for the T-HEAD TH1520 SoC's PWM controller. Reviewed-by: Drew Fustini Tested-by: Drew Fustini Signed-off-by: Michal Wilczynski --- arch/riscv/boot/dts/thead/th1520.dtsi | 7 +++++++ 1 file changed, 7 insertions(+) diff --git a/arch/riscv/boot/dts/thead/th1520.dtsi b/arch/riscv/boot/dts/th= ead/th1520.dtsi index 42724bf7e90e08fac326c464d0f080e3bd2cd59b..513dc6977b2633503515ad26091= 3156fbe57d92f 100644 --- a/arch/riscv/boot/dts/thead/th1520.dtsi +++ b/arch/riscv/boot/dts/thead/th1520.dtsi @@ -493,6 +493,13 @@ uart2: serial@ffec010000 { status =3D "disabled"; }; =20 + pwm: pwm@ffec01c000 { + compatible =3D "thead,th1520-pwm"; + reg =3D <0xff 0xec01c000 0x0 0x4000>; + clocks =3D <&clk CLK_PWM>; + #pwm-cells =3D <3>; + }; + clk: clock-controller@ffef010000 { compatible =3D "thead,th1520-clk-ap"; reg =3D <0xff 0xef010000 0x0 0x1000>; --=20 2.34.1 From nobody Tue Oct 7 21:02:19 2025 Received: from mailout1.w1.samsung.com (mailout1.w1.samsung.com [210.118.77.11]) (using TLSv1.2 with cipher ECDHE-RSA-AES256-GCM-SHA384 (256/256 bits)) (No client certificate requested) by smtp.subspace.kernel.org (Postfix) with ESMTPS id 521F320D4F8 for ; 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Sun, 6 Jul 2025 11:46:10 +0000 (GMT) Received: from AMDC4942.eu.corp.samsungelectronics.net (unknown [106.210.136.40]) by eusmtip2.samsung.com (KnoxPortal) with ESMTPA id 20250706114609eusmtip27c6af922dc3eed77251113acc7594ebc~PpvkxwxS_0538305383eusmtip2N; Sun, 6 Jul 2025 11:46:09 +0000 (GMT) From: Michal Wilczynski Date: Sun, 06 Jul 2025 13:45:17 +0200 Subject: [PATCH v9 6/6] riscv: dts: thead: Add PWM fan and thermal control Precedence: bulk X-Mailing-List: linux-kernel@vger.kernel.org List-Id: List-Subscribe: List-Unsubscribe: MIME-Version: 1.0 Content-Transfer-Encoding: quoted-printable Message-Id: <20250706-rust-next-pwm-working-fan-for-sending-v9-6-42b5ac2101c7@samsung.com> In-Reply-To: <20250706-rust-next-pwm-working-fan-for-sending-v9-0-42b5ac2101c7@samsung.com> To: =?utf-8?q?Uwe_Kleine-K=C3=B6nig?= , Miguel Ojeda , Alex Gaynor , Boqun Feng , Gary Guo , =?utf-8?q?Bj=C3=B6rn_Roy_Baron?= , Andreas Hindborg , Alice Ryhl , Trevor Gross , Danilo Krummrich , Michal Wilczynski , Guo Ren , Fu Wei , Rob Herring , Krzysztof Kozlowski , Conor Dooley , Paul Walmsley , Palmer Dabbelt , Albert Ou , Alexandre Ghiti , Marek Szyprowski , Benno Lossin , Michael Turquette , Drew Fustini , Benno Lossin , Drew Fustini Cc: linux-kernel@vger.kernel.org, linux-pwm@vger.kernel.org, rust-for-linux@vger.kernel.org, linux-riscv@lists.infradead.org, devicetree@vger.kernel.org X-Mailer: b4 0.15-dev X-CMS-MailID: 20250706114610eucas1p151c3d14e5626fca708983cb98f22d670 X-Msg-Generator: CA Content-Type: text/plain; charset="utf-8" X-RootMTR: 20250706114610eucas1p151c3d14e5626fca708983cb98f22d670 X-EPHeader: CA X-CMS-RootMailID: 20250706114610eucas1p151c3d14e5626fca708983cb98f22d670 References: <20250706-rust-next-pwm-working-fan-for-sending-v9-0-42b5ac2101c7@samsung.com> Add Device Tree nodes to enable a PWM controlled fan and it's associated thermal management for the Lichee Pi 4A board. This enables temperature-controlled active cooling for the Lichee Pi 4A board based on SoC temperature. Reviewed-by: Drew Fustini Tested-by: Drew Fustini Signed-off-by: Michal Wilczynski --- arch/riscv/boot/dts/thead/th1520-lichee-pi-4a.dts | 67 +++++++++++++++++++= ++++ 1 file changed, 67 insertions(+) diff --git a/arch/riscv/boot/dts/thead/th1520-lichee-pi-4a.dts b/arch/riscv= /boot/dts/thead/th1520-lichee-pi-4a.dts index 4020c727f09e8e2286fdc7fecd79dbd8eba69556..c58c2085ca92a3234f1350500ce= dae4157f0c35f 100644 --- a/arch/riscv/boot/dts/thead/th1520-lichee-pi-4a.dts +++ b/arch/riscv/boot/dts/thead/th1520-lichee-pi-4a.dts @@ -28,9 +28,76 @@ aliases { chosen { stdout-path =3D "serial0:115200n8"; }; + + thermal-zones { + cpu-thermal { + polling-delay =3D <1000>; + polling-delay-passive =3D <1000>; + thermal-sensors =3D <&pvt 0>; + + trips { + fan_config0: fan-trip0 { + temperature =3D <39000>; + hysteresis =3D <5000>; + type =3D "active"; + }; + + fan_config1: fan-trip1 { + temperature =3D <50000>; + hysteresis =3D <5000>; + type =3D "active"; + }; + + fan_config2: fan-trip2 { + temperature =3D <60000>; + hysteresis =3D <5000>; + type =3D "active"; + }; + }; + + cooling-maps { + map-active-0 { + cooling-device =3D <&fan 1 1>; + trip =3D <&fan_config0>; + }; + + map-active-1 { + cooling-device =3D <&fan 2 2>; + trip =3D <&fan_config1>; + }; + + map-active-2 { + cooling-device =3D <&fan 3 3>; + trip =3D <&fan_config2>; + }; + }; + }; + }; + + fan: pwm-fan { + pinctrl-names =3D "default"; + pinctrl-0 =3D <&fan_pins>; + compatible =3D "pwm-fan"; + #cooling-cells =3D <2>; + pwms =3D <&pwm 1 10000000 0>; + cooling-levels =3D <0 66 196 255>; + }; + }; =20 &padctrl0_apsys { + fan_pins: fan-0 { + pwm1-pins { + pins =3D "GPIO3_3"; /* PWM1 */ + function =3D "pwm"; + bias-disable; + drive-strength =3D <25>; + input-disable; + input-schmitt-disable; + slew-rate =3D <0>; + }; + }; + uart0_pins: uart0-0 { tx-pins { pins =3D "UART0_TXD"; --=20 2.34.1