kernel-fxtec-pro1x/drivers/pwm/sysfs.c
Ivaylo Georgiev 2237964579 Merge android-4.19-q.68 (f3e9c9b) into msm-4.19
* refs/heads/tmp-f3e9c9b:
  Linux 4.19.68
  mmc: sdhci-of-arasan: Do now show error message in case of deffered probe
  net/mlx5e: Use flow keys dissector to parse packets for ARFS
  net/mlx5e: Only support tx/rx pause setting for port owner
  xen/netback: Reset nr_frags before freeing skb
  tipc: initialise addr_trail_end when setting node addresses
  team: Add vlan tx offload to hw_enc_features
  sctp: fix the transport error_count check
  sctp: fix memleak in sctp_send_reset_streams
  net/packet: fix race in tpacket_snd()
  net/mlx4_en: fix a memory leak bug
  net: dsa: Check existence of .port_mdb_add callback before calling it
  bonding: Add vlan tx offload to hw_enc_features
  bnx2x: Fix VF's VLAN reconfiguration in reload.
  iommu/amd: Move iommu_init_pci() to .init section
  Input: psmouse - fix build error of multiple definition
  netfilter: conntrack: Use consistent ct id hash calculation
  arm64: ftrace: Ensure module ftrace trampoline is coherent with I-side
  dm: disable DISCARD if the underlying storage no longer supports it
  drm/i915/cfl: Add a new CFL PCI ID.
  USB: serial: option: Add Motorola modem UARTs
  USB: serial: option: add the BroadMobi BM818 card
  USB: serial: option: Add support for ZTE MF871A
  USB: serial: option: add D-Link DWM-222 device ID
  USB: CDC: fix sanity checks in CDC union parser
  usb: cdc-acm: make sure a refcount is taken early enough
  usb: gadget: udc: renesas_usb3: Fix sysfs interface of "role"
  USB: core: Fix races in character device registration and deregistraion
  iio: adc: max9611: Fix temperature reading in probe
  staging: comedi: dt3000: Fix rounding up of timer divisor
  staging: comedi: dt3000: Fix signed integer overflow 'divider * base'
  KVM: arm/arm64: Sync ICH_VMCR_EL2 back when about to block
  arm64: KVM: regmap: Fix unexpected switch fall-through
  asm-generic: fix -Wtype-limits compiler warnings
  ocfs2: remove set but not used variable 'last_hash'
  Revert "kmemleak: allow to coexist with fault injection"
  drm/exynos: fix missing decrement of retry counter
  drm: msm: Fix add_gpu_components
  IB/mad: Fix use-after-free in ib mad completion handling
  IB/mlx5: Fix MR registration flow to use UMR properly
  IB/core: Add mitigation for Spectre V1
  arm64/mm: fix variable 'pud' set but not used
  arm64: unwind: Prohibit probing on return_address()
  arm64/efi: fix variable 'si' set but not used
  kbuild: Check for unknown options with cc-option usage in Kconfig and clang
  kbuild: modpost: handle KBUILD_EXTRA_SYMBOLS only for external modules
  ata: libahci: do not complain in case of deferred probe
  drm/amdgpu: fix a potential information leaking bug
  scsi: qla2xxx: Fix possible fcport null-pointer dereferences
  scsi: hpsa: correct scsi command status issue after reset
  Btrfs: fix deadlock between fiemap and transaction commits
  drm/bridge: lvds-encoder: Fix build error while CONFIG_DRM_KMS_HELPER=m
  libata: zpodd: Fix small read overflow in zpodd_get_mech_type()
  perf header: Fix use of unitialized value warning
  perf header: Fix divide by zero error if f_header.attr_size==0
  irqchip/irq-imx-gpcv2: Forward irq type to parent
  irqchip/gic-v3-its: Free unused vpt_page when alloc vpe table fail
  xen/pciback: remove set but not used variable 'old_state'
  clk: renesas: cpg-mssr: Fix reset control race condition
  clk: sprd: Select REGMAP_MMIO to avoid compile errors
  clk: at91: generated: Truncate divisor to GENERATED_MAX_DIV + 1
  riscv: Make __fstate_clean() work correctly.
  netfilter: ebtables: also count base chain policies
  net: usb: pegasus: fix improper read if get_registers() fail
  Input: iforce - add sanity checks
  Input: kbtab - sanity check for endpoint type
  HID: hiddev: do cleanup in failure of opening a device
  HID: hiddev: avoid opening a disconnected device
  HID: holtek: test for sanity of intfdata
  ALSA: hda - Let all conexant codec enter D3 when rebooting
  ALSA: hda - Add a generic reboot_notify
  ALSA: hda - Fix a memory leak bug
  ALSA: hda - Apply workaround for another AMD chip 1022:1487
  ALSA: usb-audio: Fix an OOB bug in parse_audio_mixer_unit
  ALSA: usb-audio: Fix a stack buffer overflow bug in check_input_term
  ALSA: hda/realtek - Add quirk for HP Envy x360
  xtensa: add missing isync to the cpu_reset TLB code
  cpufreq: schedutil: Don't skip freq update when limits change
  Revert "pwm: Set class for exported channels in sysfs"
  mm/usercopy: use memory range to be accessed for wraparound check
  mm/memcontrol.c: fix use after free in mem_cgroup_iter()
  mm: mempolicy: handle vma with unmovable pages mapped correctly in mbind
  mm: mempolicy: make the behavior consistent when MPOL_MF_MOVE* and MPOL_MF_STRICT were specified
  mm/hmm: fix bad subpage pointer in try_to_unmap_one
  seq_file: fix problem when seeking mid-record
  sh: kernel: hw_breakpoint: Fix missing break in switch statement

Conflicts:
	kernel/sched/cpufreq_schedutil.c

Change-Id: I43aee9ca2893d9a393086d8a183b8544c6c5ff6e
Signed-off-by: Ivaylo Georgiev <irgeorgiev@codeaurora.org>
2019-08-28 23:55:13 -07:00

475 lines
10 KiB
C

/*
* A simple sysfs interface for the generic PWM framework
*
* Copyright (C) 2013 H Hartley Sweeten <hsweeten@visionengravers.com>
*
* Based on previous work by Lars Poeschel <poeschel@lemonage.de>
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 2, or (at your option)
* any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include <linux/device.h>
#include <linux/mutex.h>
#include <linux/err.h>
#include <linux/slab.h>
#include <linux/kdev_t.h>
#include <linux/pwm.h>
struct pwm_export {
struct device child;
struct pwm_device *pwm;
struct mutex lock;
};
static struct pwm_export *child_to_pwm_export(struct device *child)
{
return container_of(child, struct pwm_export, child);
}
static struct pwm_device *child_to_pwm_device(struct device *child)
{
struct pwm_export *export = child_to_pwm_export(child);
return export->pwm;
}
static ssize_t period_show(struct device *child,
struct device_attribute *attr,
char *buf)
{
const struct pwm_device *pwm = child_to_pwm_device(child);
struct pwm_state state;
pwm_get_state(pwm, &state);
return sprintf(buf, "%llu\n", state.period);
}
static ssize_t period_store(struct device *child,
struct device_attribute *attr,
const char *buf, size_t size)
{
struct pwm_export *export = child_to_pwm_export(child);
struct pwm_device *pwm = export->pwm;
struct pwm_state state;
unsigned int val;
int ret;
ret = kstrtouint(buf, 0, &val);
if (ret)
return ret;
mutex_lock(&export->lock);
pwm_get_state(pwm, &state);
state.period = val;
ret = pwm_apply_state(pwm, &state);
mutex_unlock(&export->lock);
return ret ? : size;
}
static ssize_t duty_cycle_show(struct device *child,
struct device_attribute *attr,
char *buf)
{
const struct pwm_device *pwm = child_to_pwm_device(child);
struct pwm_state state;
pwm_get_state(pwm, &state);
return sprintf(buf, "%llu\n", state.duty_cycle);
}
static ssize_t duty_cycle_store(struct device *child,
struct device_attribute *attr,
const char *buf, size_t size)
{
struct pwm_export *export = child_to_pwm_export(child);
struct pwm_device *pwm = export->pwm;
struct pwm_state state;
unsigned int val;
int ret;
ret = kstrtouint(buf, 0, &val);
if (ret)
return ret;
mutex_lock(&export->lock);
pwm_get_state(pwm, &state);
state.duty_cycle = val;
ret = pwm_apply_state(pwm, &state);
mutex_unlock(&export->lock);
return ret ? : size;
}
static ssize_t enable_show(struct device *child,
struct device_attribute *attr,
char *buf)
{
const struct pwm_device *pwm = child_to_pwm_device(child);
struct pwm_state state;
pwm_get_state(pwm, &state);
return sprintf(buf, "%d\n", state.enabled);
}
static ssize_t enable_store(struct device *child,
struct device_attribute *attr,
const char *buf, size_t size)
{
struct pwm_export *export = child_to_pwm_export(child);
struct pwm_device *pwm = export->pwm;
struct pwm_state state;
int val, ret;
ret = kstrtoint(buf, 0, &val);
if (ret)
return ret;
mutex_lock(&export->lock);
pwm_get_state(pwm, &state);
switch (val) {
case 0:
state.enabled = false;
break;
case 1:
state.enabled = true;
break;
default:
ret = -EINVAL;
goto unlock;
}
ret = pwm_apply_state(pwm, &state);
unlock:
mutex_unlock(&export->lock);
return ret ? : size;
}
static ssize_t polarity_show(struct device *child,
struct device_attribute *attr,
char *buf)
{
const struct pwm_device *pwm = child_to_pwm_device(child);
const char *polarity = "unknown";
struct pwm_state state;
pwm_get_state(pwm, &state);
switch (state.polarity) {
case PWM_POLARITY_NORMAL:
polarity = "normal";
break;
case PWM_POLARITY_INVERSED:
polarity = "inversed";
break;
}
return sprintf(buf, "%s\n", polarity);
}
static ssize_t polarity_store(struct device *child,
struct device_attribute *attr,
const char *buf, size_t size)
{
struct pwm_export *export = child_to_pwm_export(child);
struct pwm_device *pwm = export->pwm;
enum pwm_polarity polarity;
struct pwm_state state;
int ret;
if (sysfs_streq(buf, "normal"))
polarity = PWM_POLARITY_NORMAL;
else if (sysfs_streq(buf, "inversed"))
polarity = PWM_POLARITY_INVERSED;
else
return -EINVAL;
mutex_lock(&export->lock);
pwm_get_state(pwm, &state);
state.polarity = polarity;
ret = pwm_apply_state(pwm, &state);
mutex_unlock(&export->lock);
return ret ? : size;
}
static ssize_t capture_show(struct device *child,
struct device_attribute *attr,
char *buf)
{
struct pwm_device *pwm = child_to_pwm_device(child);
struct pwm_capture result;
int ret;
ret = pwm_capture(pwm, &result, jiffies_to_msecs(HZ));
if (ret)
return ret;
return sprintf(buf, "%llu %llu\n", result.period, result.duty_cycle);
}
static ssize_t output_type_show(struct device *child,
struct device_attribute *attr,
char *buf)
{
const struct pwm_device *pwm = child_to_pwm_device(child);
const char *output_type = "unknown";
struct pwm_state state;
pwm_get_state(pwm, &state);
switch (state.output_type) {
case PWM_OUTPUT_FIXED:
output_type = "fixed";
break;
case PWM_OUTPUT_MODULATED:
output_type = "modulated";
break;
default:
break;
}
return snprintf(buf, PAGE_SIZE, "%s\n", output_type);
}
static ssize_t output_type_store(struct device *child,
struct device_attribute *attr,
const char *buf, size_t size)
{
struct pwm_export *export = child_to_pwm_export(child);
struct pwm_device *pwm = export->pwm;
struct pwm_state state;
int ret = -EINVAL;
mutex_lock(&export->lock);
pwm_get_state(pwm, &state);
if (sysfs_streq(buf, "fixed"))
state.output_type = PWM_OUTPUT_FIXED;
else if (sysfs_streq(buf, "modulated"))
state.output_type = PWM_OUTPUT_MODULATED;
else
goto unlock;
ret = pwm_apply_state(pwm, &state);
unlock:
mutex_unlock(&export->lock);
return ret ? : size;
}
static DEVICE_ATTR_RW(period);
static DEVICE_ATTR_RW(duty_cycle);
static DEVICE_ATTR_RW(enable);
static DEVICE_ATTR_RW(polarity);
static DEVICE_ATTR_RO(capture);
static DEVICE_ATTR_RW(output_type);
static struct attribute *pwm_attrs[] = {
&dev_attr_period.attr,
&dev_attr_duty_cycle.attr,
&dev_attr_enable.attr,
&dev_attr_polarity.attr,
&dev_attr_capture.attr,
&dev_attr_output_type.attr,
NULL
};
ATTRIBUTE_GROUPS(pwm);
static void pwm_export_release(struct device *child)
{
struct pwm_export *export = child_to_pwm_export(child);
kfree(export);
}
static int pwm_export_child(struct device *parent, struct pwm_device *pwm)
{
struct pwm_export *export;
int ret;
if (test_and_set_bit(PWMF_EXPORTED, &pwm->flags))
return -EBUSY;
export = kzalloc(sizeof(*export), GFP_KERNEL);
if (!export) {
clear_bit(PWMF_EXPORTED, &pwm->flags);
return -ENOMEM;
}
export->pwm = pwm;
mutex_init(&export->lock);
export->child.release = pwm_export_release;
export->child.parent = parent;
export->child.devt = MKDEV(0, 0);
export->child.groups = pwm_groups;
dev_set_name(&export->child, "pwm%u", pwm->hwpwm);
ret = device_register(&export->child);
if (ret) {
clear_bit(PWMF_EXPORTED, &pwm->flags);
put_device(&export->child);
export = NULL;
return ret;
}
return 0;
}
static int pwm_unexport_match(struct device *child, void *data)
{
return child_to_pwm_device(child) == data;
}
static int pwm_unexport_child(struct device *parent, struct pwm_device *pwm)
{
struct device *child;
if (!test_and_clear_bit(PWMF_EXPORTED, &pwm->flags))
return -ENODEV;
child = device_find_child(parent, pwm, pwm_unexport_match);
if (!child)
return -ENODEV;
/* for device_find_child() */
put_device(child);
device_unregister(child);
pwm_put(pwm);
return 0;
}
static ssize_t export_store(struct device *parent,
struct device_attribute *attr,
const char *buf, size_t len)
{
struct pwm_chip *chip = dev_get_drvdata(parent);
struct pwm_device *pwm;
unsigned int hwpwm;
int ret;
ret = kstrtouint(buf, 0, &hwpwm);
if (ret < 0)
return ret;
if (hwpwm >= chip->npwm)
return -ENODEV;
pwm = pwm_request_from_chip(chip, hwpwm, "sysfs");
if (IS_ERR(pwm))
return PTR_ERR(pwm);
ret = pwm_export_child(parent, pwm);
if (ret < 0)
pwm_put(pwm);
return ret ? : len;
}
static DEVICE_ATTR_WO(export);
static ssize_t unexport_store(struct device *parent,
struct device_attribute *attr,
const char *buf, size_t len)
{
struct pwm_chip *chip = dev_get_drvdata(parent);
unsigned int hwpwm;
int ret;
ret = kstrtouint(buf, 0, &hwpwm);
if (ret < 0)
return ret;
if (hwpwm >= chip->npwm)
return -ENODEV;
ret = pwm_unexport_child(parent, &chip->pwms[hwpwm]);
return ret ? : len;
}
static DEVICE_ATTR_WO(unexport);
static ssize_t npwm_show(struct device *parent, struct device_attribute *attr,
char *buf)
{
const struct pwm_chip *chip = dev_get_drvdata(parent);
return sprintf(buf, "%u\n", chip->npwm);
}
static DEVICE_ATTR_RO(npwm);
static struct attribute *pwm_chip_attrs[] = {
&dev_attr_export.attr,
&dev_attr_unexport.attr,
&dev_attr_npwm.attr,
NULL,
};
ATTRIBUTE_GROUPS(pwm_chip);
static struct class pwm_class = {
.name = "pwm",
.owner = THIS_MODULE,
.dev_groups = pwm_chip_groups,
};
static int pwmchip_sysfs_match(struct device *parent, const void *data)
{
return dev_get_drvdata(parent) == data;
}
void pwmchip_sysfs_export(struct pwm_chip *chip)
{
struct device *parent;
/*
* If device_create() fails the pwm_chip is still usable by
* the kernel its just not exported.
*/
parent = device_create(&pwm_class, chip->dev, MKDEV(0, 0), chip,
"pwmchip%d", chip->base);
if (IS_ERR(parent)) {
dev_warn(chip->dev,
"device_create failed for pwm_chip sysfs export\n");
}
}
void pwmchip_sysfs_unexport(struct pwm_chip *chip)
{
struct device *parent;
unsigned int i;
parent = class_find_device(&pwm_class, NULL, chip,
pwmchip_sysfs_match);
if (!parent)
return;
for (i = 0; i < chip->npwm; i++) {
struct pwm_device *pwm = &chip->pwms[i];
if (test_bit(PWMF_EXPORTED, &pwm->flags))
pwm_unexport_child(parent, pwm);
}
put_device(parent);
device_unregister(parent);
}
static int __init pwm_sysfs_init(void)
{
return class_register(&pwm_class);
}
subsys_initcall(pwm_sysfs_init);