ramips: add ralink v3.10 support
[openwrt.git] / target / linux / ramips / patches-3.10 / 0030-owrt-MIPS-ralink-add-pseudo-pwm-led-trigger-based-on.patch
1 From daf08289dc0ac69af0d8293dacd5ca6291400593 Mon Sep 17 00:00:00 2001
2 From: John Crispin <blogic@openwrt.org>
3 Date: Sun, 24 Mar 2013 17:17:17 +0100
4 Subject: [PATCH 30/33] owrt: MIPS: ralink: add pseudo pwm led trigger based
5  on timer0
6
7 Signed-off-by: John Crispin <blogic@openwrt.org>
8 ---
9  arch/mips/ralink/timer.c |  213 ++++++++++++++++++++++++++++++++++++++++++----
10  1 file changed, 197 insertions(+), 16 deletions(-)
11
12 diff --git a/arch/mips/ralink/timer.c b/arch/mips/ralink/timer.c
13 index 0a6856c..b156419 100644
14 --- a/arch/mips/ralink/timer.c
15 +++ b/arch/mips/ralink/timer.c
16 @@ -12,6 +12,8 @@
17  #include <linux/timer.h>
18  #include <linux/of_gpio.h>
19  #include <linux/clk.h>
20 +#include <linux/leds.h>
21 +#include <linux/slab.h>
22  
23  #include <asm/mach-ralink/ralink_regs.h>
24  
25 @@ -23,16 +25,34 @@
26  
27  #define TMR0CTL_ENABLE                 BIT(7)
28  #define TMR0CTL_MODE_PERIODIC          BIT(4)
29 -#define TMR0CTL_PRESCALER              1
30 +#define TMR0CTL_PRESCALER              2
31  #define TMR0CTL_PRESCALE_VAL           (0xf - TMR0CTL_PRESCALER)
32  #define TMR0CTL_PRESCALE_DIV           (65536 / BIT(TMR0CTL_PRESCALER))
33  
34 +struct rt_timer_gpio {
35 +       struct list_head        list;
36 +       struct led_classdev     *led;
37 +};
38 +
39  struct rt_timer {
40 -       struct device   *dev;
41 -       void __iomem    *membase;
42 -       int             irq;
43 -       unsigned long   timer_freq;
44 -       unsigned long   timer_div;
45 +       struct device           *dev;
46 +       void __iomem            *membase;
47 +       int                     irq;
48 +
49 +       unsigned long           timer_freq;
50 +       unsigned long           timer_div;
51 +
52 +       struct list_head        gpios;
53 +       struct led_trigger      led_trigger;
54 +       unsigned int            duty_cycle;
55 +       unsigned int            duty;
56 +
57 +       unsigned int            fade;
58 +       unsigned int            fade_min;
59 +       unsigned int            fade_max;
60 +       unsigned int            fade_speed;
61 +       unsigned int            fade_dir;
62 +       unsigned int            fade_count;
63  };
64  
65  static inline void rt_timer_w32(struct rt_timer *rt, u8 reg, u32 val)
66 @@ -48,18 +68,46 @@ static inline u32 rt_timer_r32(struct rt_timer *rt, u8 reg)
67  static irqreturn_t rt_timer_irq(int irq, void *_rt)
68  {
69         struct rt_timer *rt =  (struct rt_timer *) _rt;
70 +       struct rt_timer_gpio *gpio;
71 +       unsigned int val;
72  
73 -       rt_timer_w32(rt, TIMER_REG_TMR0LOAD, rt->timer_freq / rt->timer_div);
74 +       if (rt->fade && (rt->fade_count++ > rt->fade_speed)) {
75 +               rt->fade_count = 0;
76 +               if (rt->duty_cycle <= rt->fade_min)
77 +                       rt->fade_dir = 1;
78 +               else if (rt->duty_cycle >= rt->fade_max)
79 +                       rt->fade_dir = 0;
80 +
81 +               if (rt->fade_dir)
82 +                       rt->duty_cycle += 1;
83 +               else
84 +                       rt->duty_cycle -= 1;
85 +
86 +       }
87 +
88 +       val = rt->timer_freq / rt->timer_div;
89 +       if (rt->duty)
90 +               val *= rt->duty_cycle;
91 +       else
92 +               val *= (100 - rt->duty_cycle);
93 +       val /= 100;
94 +
95 +       if (!list_empty(&rt->gpios))
96 +               list_for_each_entry(gpio, &rt->gpios, list)
97 +                       led_set_brightness(gpio->led, !!rt->duty);
98 +
99 +       rt->duty = !rt->duty;
100 +
101 +       rt_timer_w32(rt, TIMER_REG_TMR0LOAD, val + 1);
102         rt_timer_w32(rt, TIMER_REG_TMRSTAT, TMRSTAT_TMR0INT);
103  
104         return IRQ_HANDLED;
105  }
106  
107 -
108  static int rt_timer_request(struct rt_timer *rt)
109  {
110 -       int err = request_irq(rt->irq, rt_timer_irq, IRQF_DISABLED,
111 -                                               dev_name(rt->dev), rt);
112 +       int err = devm_request_irq(rt->dev, rt->irq, rt_timer_irq,
113 +                                       IRQF_DISABLED, dev_name(rt->dev), rt);
114         if (err) {
115                 dev_err(rt->dev, "failed to request irq\n");
116         } else {
117 @@ -81,8 +129,6 @@ static int rt_timer_config(struct rt_timer *rt, unsigned long divisor)
118         else
119                 rt->timer_div = divisor;
120  
121 -       rt_timer_w32(rt, TIMER_REG_TMR0LOAD, rt->timer_freq / rt->timer_div);
122 -
123         return 0;
124  }
125  
126 @@ -108,11 +154,128 @@ static void rt_timer_disable(struct rt_timer *rt)
127         rt_timer_w32(rt, TIMER_REG_TMR0CTL, t);
128  }
129  
130 +static ssize_t led_fade_show(struct device *dev,
131 +                               struct device_attribute *attr, char *buf)
132 +{
133 +       struct led_classdev *led_cdev = dev_get_drvdata(dev);
134 +       struct rt_timer *rt = container_of(led_cdev->trigger, struct rt_timer, led_trigger);
135 +
136 +       return sprintf(buf, "speed: %d, min: %d, max: %d\n", rt->fade_speed, rt->fade_min, rt->fade_max);
137 +}
138 +
139 +static ssize_t led_fade_store(struct device *dev,
140 +               struct device_attribute *attr, const char *buf, size_t size)
141 +{
142 +       struct led_classdev *led_cdev = dev_get_drvdata(dev);
143 +       struct rt_timer *rt = container_of(led_cdev->trigger, struct rt_timer, led_trigger);
144 +       unsigned int speed = 0, min = 0, max = 0;
145 +       ssize_t ret = -EINVAL;
146 +
147 +       ret = sscanf(buf, "%u %u %u", &speed, &min, &max);
148 +
149 +       if (ret == 3) {
150 +               rt->fade_speed = speed;
151 +               rt->fade_min = min;
152 +               rt->fade_max = max;
153 +               rt->fade = 1;
154 +       } else {
155 +               rt->fade = 0;
156 +       }
157 +
158 +       return size;
159 +}
160 +
161 +static DEVICE_ATTR(fade, 0644, led_fade_show, led_fade_store);
162 +
163 +static ssize_t led_duty_cycle_show(struct device *dev,
164 +                               struct device_attribute *attr, char *buf)
165 +{
166 +       struct led_classdev *led_cdev = dev_get_drvdata(dev);
167 +       struct rt_timer *rt = container_of(led_cdev->trigger, struct rt_timer, led_trigger);
168 +
169 +       return sprintf(buf, "%u\n", rt->duty_cycle);
170 +}
171 +
172 +static ssize_t led_duty_cycle_store(struct device *dev,
173 +               struct device_attribute *attr, const char *buf, size_t size)
174 +{
175 +       struct led_classdev *led_cdev = dev_get_drvdata(dev);
176 +       struct rt_timer *rt = container_of(led_cdev->trigger, struct rt_timer, led_trigger);
177 +       unsigned long state;
178 +       ssize_t ret = -EINVAL;
179 +
180 +       ret = kstrtoul(buf, 10, &state);
181 +       if (ret)
182 +               return ret;
183 +
184 +       if (state <= 100)
185 +               rt->duty_cycle = state;
186 +       else
187 +               rt->duty_cycle = 100;
188 +
189 +       rt->fade = 0;
190 +
191 +       return size;
192 +}
193 +
194 +static DEVICE_ATTR(duty_cycle, 0644, led_duty_cycle_show, led_duty_cycle_store);
195 +
196 +static void rt_timer_trig_activate(struct led_classdev *led_cdev)
197 +{
198 +       struct rt_timer *rt = container_of(led_cdev->trigger, struct rt_timer, led_trigger);
199 +       struct rt_timer_gpio *gpio_data;
200 +       int rc;
201 +
202 +       led_cdev->trigger_data = NULL;
203 +       gpio_data = kzalloc(sizeof(*gpio_data), GFP_KERNEL);
204 +       if (!gpio_data)
205 +               return;
206 +
207 +       rc = device_create_file(led_cdev->dev, &dev_attr_duty_cycle);
208 +       if (rc)
209 +               goto err_gpio;
210 +       rc = device_create_file(led_cdev->dev, &dev_attr_fade);
211 +       if (rc)
212 +               goto err_out_duty_cycle;
213 +
214 +       led_cdev->activated = true;
215 +       led_cdev->trigger_data = gpio_data;
216 +       gpio_data->led = led_cdev;
217 +       list_add(&gpio_data->list, &rt->gpios);
218 +       led_cdev->trigger_data = gpio_data;
219 +       rt_timer_enable(rt);
220 +       return;
221 +
222 +err_out_duty_cycle:
223 +       device_remove_file(led_cdev->dev, &dev_attr_duty_cycle);
224 +
225 +err_gpio:
226 +       kfree(gpio_data);
227 +}
228 +
229 +static void rt_timer_trig_deactivate(struct led_classdev *led_cdev)
230 +{
231 +       struct rt_timer *rt = container_of(led_cdev->trigger, struct rt_timer, led_trigger);
232 +       struct rt_timer_gpio *gpio_data = (struct rt_timer_gpio*) led_cdev->trigger_data;
233 +
234 +       if (led_cdev->activated) {
235 +               device_remove_file(led_cdev->dev, &dev_attr_duty_cycle);
236 +               device_remove_file(led_cdev->dev, &dev_attr_fade);
237 +               led_cdev->activated = false;
238 +       }
239 +
240 +       list_del(&gpio_data->list);
241 +       rt_timer_disable(rt);
242 +       led_set_brightness(led_cdev, LED_OFF);
243 +}
244 +
245  static int rt_timer_probe(struct platform_device *pdev)
246  {
247         struct resource *res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
248 +       const __be32 *divisor;
249         struct rt_timer *rt;
250         struct clk *clk;
251 +       int ret;
252  
253         if (!res) {
254                 dev_err(&pdev->dev, "no memory resource found\n");
255 @@ -147,12 +310,29 @@ static int rt_timer_probe(struct platform_device *pdev)
256         if (!rt->timer_freq)
257                 return -EINVAL;
258  
259 +       rt->duty_cycle = 100;
260         rt->dev = &pdev->dev;
261         platform_set_drvdata(pdev, rt);
262  
263 -       rt_timer_request(rt);
264 -       rt_timer_config(rt, 2);
265 -       rt_timer_enable(rt);
266 +       ret = rt_timer_request(rt);
267 +       if (ret)
268 +               return ret;
269 +
270 +       divisor = of_get_property(pdev->dev.of_node, "ralink,divisor", NULL);
271 +       if (divisor)
272 +               rt_timer_config(rt, be32_to_cpu(*divisor));
273 +       else
274 +               rt_timer_config(rt, 200);
275 +
276 +       rt->led_trigger.name = "pwmtimer",
277 +       rt->led_trigger.activate = rt_timer_trig_activate,
278 +       rt->led_trigger.deactivate = rt_timer_trig_deactivate,
279 +
280 +       ret = led_trigger_register(&rt->led_trigger);
281 +       if (ret)
282 +               return ret;
283 +
284 +       INIT_LIST_HEAD(&rt->gpios);
285  
286         dev_info(&pdev->dev, "maximum frequncy is %luHz\n", rt->timer_freq);
287  
288 @@ -163,6 +343,7 @@ static int rt_timer_remove(struct platform_device *pdev)
289  {
290         struct rt_timer *rt = platform_get_drvdata(pdev);
291  
292 +       led_trigger_unregister(&rt->led_trigger);
293         rt_timer_disable(rt);
294         rt_timer_free(rt);
295  
296 @@ -187,6 +368,6 @@ static struct platform_driver rt_timer_driver = {
297  
298  module_platform_driver(rt_timer_driver);
299  
300 -MODULE_DESCRIPTION("Ralink RT2880 timer");
301 +MODULE_DESCRIPTION("Ralink RT2880 timer / pseudo pwm");
302  MODULE_AUTHOR("John Crispin <blogic@openwrt.org");
303  MODULE_LICENSE("GPL");
304 -- 
305 1.7.10.4
306