Merge tag 'for-5.6/io_uring-vfs-2020-01-29' of git://git.kernel.dk/linux-block
[linux-2.6-microblaze.git] / drivers / ptp / ptp_qoriq.c
1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3  * PTP 1588 clock for Freescale QorIQ 1588 timer
4  *
5  * Copyright (C) 2010 OMICRON electronics GmbH
6  */
7
8 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
9
10 #include <linux/device.h>
11 #include <linux/hrtimer.h>
12 #include <linux/kernel.h>
13 #include <linux/module.h>
14 #include <linux/of.h>
15 #include <linux/of_platform.h>
16 #include <linux/timex.h>
17 #include <linux/slab.h>
18 #include <linux/clk.h>
19
20 #include <linux/fsl/ptp_qoriq.h>
21
22 /*
23  * Register access functions
24  */
25
26 /* Caller must hold ptp_qoriq->lock. */
27 static u64 tmr_cnt_read(struct ptp_qoriq *ptp_qoriq)
28 {
29         struct ptp_qoriq_registers *regs = &ptp_qoriq->regs;
30         u64 ns;
31         u32 lo, hi;
32
33         lo = ptp_qoriq->read(&regs->ctrl_regs->tmr_cnt_l);
34         hi = ptp_qoriq->read(&regs->ctrl_regs->tmr_cnt_h);
35         ns = ((u64) hi) << 32;
36         ns |= lo;
37         return ns;
38 }
39
40 /* Caller must hold ptp_qoriq->lock. */
41 static void tmr_cnt_write(struct ptp_qoriq *ptp_qoriq, u64 ns)
42 {
43         struct ptp_qoriq_registers *regs = &ptp_qoriq->regs;
44         u32 hi = ns >> 32;
45         u32 lo = ns & 0xffffffff;
46
47         ptp_qoriq->write(&regs->ctrl_regs->tmr_cnt_l, lo);
48         ptp_qoriq->write(&regs->ctrl_regs->tmr_cnt_h, hi);
49 }
50
51 /* Caller must hold ptp_qoriq->lock. */
52 static void set_alarm(struct ptp_qoriq *ptp_qoriq)
53 {
54         struct ptp_qoriq_registers *regs = &ptp_qoriq->regs;
55         u64 ns;
56         u32 lo, hi;
57
58         ns = tmr_cnt_read(ptp_qoriq) + 1500000000ULL;
59         ns = div_u64(ns, 1000000000UL) * 1000000000ULL;
60         ns -= ptp_qoriq->tclk_period;
61         hi = ns >> 32;
62         lo = ns & 0xffffffff;
63         ptp_qoriq->write(&regs->alarm_regs->tmr_alarm1_l, lo);
64         ptp_qoriq->write(&regs->alarm_regs->tmr_alarm1_h, hi);
65 }
66
67 /* Caller must hold ptp_qoriq->lock. */
68 static void set_fipers(struct ptp_qoriq *ptp_qoriq)
69 {
70         struct ptp_qoriq_registers *regs = &ptp_qoriq->regs;
71
72         set_alarm(ptp_qoriq);
73         ptp_qoriq->write(&regs->fiper_regs->tmr_fiper1, ptp_qoriq->tmr_fiper1);
74         ptp_qoriq->write(&regs->fiper_regs->tmr_fiper2, ptp_qoriq->tmr_fiper2);
75 }
76
77 int extts_clean_up(struct ptp_qoriq *ptp_qoriq, int index, bool update_event)
78 {
79         struct ptp_qoriq_registers *regs = &ptp_qoriq->regs;
80         struct ptp_clock_event event;
81         void __iomem *reg_etts_l;
82         void __iomem *reg_etts_h;
83         u32 valid, lo, hi;
84
85         switch (index) {
86         case 0:
87                 valid = ETS1_VLD;
88                 reg_etts_l = &regs->etts_regs->tmr_etts1_l;
89                 reg_etts_h = &regs->etts_regs->tmr_etts1_h;
90                 break;
91         case 1:
92                 valid = ETS2_VLD;
93                 reg_etts_l = &regs->etts_regs->tmr_etts2_l;
94                 reg_etts_h = &regs->etts_regs->tmr_etts2_h;
95                 break;
96         default:
97                 return -EINVAL;
98         }
99
100         event.type = PTP_CLOCK_EXTTS;
101         event.index = index;
102
103         if (ptp_qoriq->extts_fifo_support)
104                 if (!(ptp_qoriq->read(&regs->ctrl_regs->tmr_stat) & valid))
105                         return 0;
106
107         do {
108                 lo = ptp_qoriq->read(reg_etts_l);
109                 hi = ptp_qoriq->read(reg_etts_h);
110
111                 if (update_event) {
112                         event.timestamp = ((u64) hi) << 32;
113                         event.timestamp |= lo;
114                         ptp_clock_event(ptp_qoriq->clock, &event);
115                 }
116
117                 if (!ptp_qoriq->extts_fifo_support)
118                         break;
119         } while (ptp_qoriq->read(&regs->ctrl_regs->tmr_stat) & valid);
120
121         return 0;
122 }
123 EXPORT_SYMBOL_GPL(extts_clean_up);
124
125 /*
126  * Interrupt service routine
127  */
128
129 irqreturn_t ptp_qoriq_isr(int irq, void *priv)
130 {
131         struct ptp_qoriq *ptp_qoriq = priv;
132         struct ptp_qoriq_registers *regs = &ptp_qoriq->regs;
133         struct ptp_clock_event event;
134         u64 ns;
135         u32 ack = 0, lo, hi, mask, val, irqs;
136
137         spin_lock(&ptp_qoriq->lock);
138
139         val = ptp_qoriq->read(&regs->ctrl_regs->tmr_tevent);
140         mask = ptp_qoriq->read(&regs->ctrl_regs->tmr_temask);
141
142         spin_unlock(&ptp_qoriq->lock);
143
144         irqs = val & mask;
145
146         if (irqs & ETS1) {
147                 ack |= ETS1;
148                 extts_clean_up(ptp_qoriq, 0, true);
149         }
150
151         if (irqs & ETS2) {
152                 ack |= ETS2;
153                 extts_clean_up(ptp_qoriq, 1, true);
154         }
155
156         if (irqs & ALM2) {
157                 ack |= ALM2;
158                 if (ptp_qoriq->alarm_value) {
159                         event.type = PTP_CLOCK_ALARM;
160                         event.index = 0;
161                         event.timestamp = ptp_qoriq->alarm_value;
162                         ptp_clock_event(ptp_qoriq->clock, &event);
163                 }
164                 if (ptp_qoriq->alarm_interval) {
165                         ns = ptp_qoriq->alarm_value + ptp_qoriq->alarm_interval;
166                         hi = ns >> 32;
167                         lo = ns & 0xffffffff;
168                         ptp_qoriq->write(&regs->alarm_regs->tmr_alarm2_l, lo);
169                         ptp_qoriq->write(&regs->alarm_regs->tmr_alarm2_h, hi);
170                         ptp_qoriq->alarm_value = ns;
171                 } else {
172                         spin_lock(&ptp_qoriq->lock);
173                         mask = ptp_qoriq->read(&regs->ctrl_regs->tmr_temask);
174                         mask &= ~ALM2EN;
175                         ptp_qoriq->write(&regs->ctrl_regs->tmr_temask, mask);
176                         spin_unlock(&ptp_qoriq->lock);
177                         ptp_qoriq->alarm_value = 0;
178                         ptp_qoriq->alarm_interval = 0;
179                 }
180         }
181
182         if (irqs & PP1) {
183                 ack |= PP1;
184                 event.type = PTP_CLOCK_PPS;
185                 ptp_clock_event(ptp_qoriq->clock, &event);
186         }
187
188         if (ack) {
189                 ptp_qoriq->write(&regs->ctrl_regs->tmr_tevent, ack);
190                 return IRQ_HANDLED;
191         } else
192                 return IRQ_NONE;
193 }
194 EXPORT_SYMBOL_GPL(ptp_qoriq_isr);
195
196 /*
197  * PTP clock operations
198  */
199
200 int ptp_qoriq_adjfine(struct ptp_clock_info *ptp, long scaled_ppm)
201 {
202         u64 adj, diff;
203         u32 tmr_add;
204         int neg_adj = 0;
205         struct ptp_qoriq *ptp_qoriq = container_of(ptp, struct ptp_qoriq, caps);
206         struct ptp_qoriq_registers *regs = &ptp_qoriq->regs;
207
208         if (scaled_ppm < 0) {
209                 neg_adj = 1;
210                 scaled_ppm = -scaled_ppm;
211         }
212         tmr_add = ptp_qoriq->tmr_add;
213         adj = tmr_add;
214
215         /* calculate diff as adj*(scaled_ppm/65536)/1000000
216          * and round() to the nearest integer
217          */
218         adj *= scaled_ppm;
219         diff = div_u64(adj, 8000000);
220         diff = (diff >> 13) + ((diff >> 12) & 1);
221
222         tmr_add = neg_adj ? tmr_add - diff : tmr_add + diff;
223
224         ptp_qoriq->write(&regs->ctrl_regs->tmr_add, tmr_add);
225
226         return 0;
227 }
228 EXPORT_SYMBOL_GPL(ptp_qoriq_adjfine);
229
230 int ptp_qoriq_adjtime(struct ptp_clock_info *ptp, s64 delta)
231 {
232         s64 now;
233         unsigned long flags;
234         struct ptp_qoriq *ptp_qoriq = container_of(ptp, struct ptp_qoriq, caps);
235
236         spin_lock_irqsave(&ptp_qoriq->lock, flags);
237
238         now = tmr_cnt_read(ptp_qoriq);
239         now += delta;
240         tmr_cnt_write(ptp_qoriq, now);
241         set_fipers(ptp_qoriq);
242
243         spin_unlock_irqrestore(&ptp_qoriq->lock, flags);
244
245         return 0;
246 }
247 EXPORT_SYMBOL_GPL(ptp_qoriq_adjtime);
248
249 int ptp_qoriq_gettime(struct ptp_clock_info *ptp, struct timespec64 *ts)
250 {
251         u64 ns;
252         unsigned long flags;
253         struct ptp_qoriq *ptp_qoriq = container_of(ptp, struct ptp_qoriq, caps);
254
255         spin_lock_irqsave(&ptp_qoriq->lock, flags);
256
257         ns = tmr_cnt_read(ptp_qoriq);
258
259         spin_unlock_irqrestore(&ptp_qoriq->lock, flags);
260
261         *ts = ns_to_timespec64(ns);
262
263         return 0;
264 }
265 EXPORT_SYMBOL_GPL(ptp_qoriq_gettime);
266
267 int ptp_qoriq_settime(struct ptp_clock_info *ptp,
268                       const struct timespec64 *ts)
269 {
270         u64 ns;
271         unsigned long flags;
272         struct ptp_qoriq *ptp_qoriq = container_of(ptp, struct ptp_qoriq, caps);
273
274         ns = timespec64_to_ns(ts);
275
276         spin_lock_irqsave(&ptp_qoriq->lock, flags);
277
278         tmr_cnt_write(ptp_qoriq, ns);
279         set_fipers(ptp_qoriq);
280
281         spin_unlock_irqrestore(&ptp_qoriq->lock, flags);
282
283         return 0;
284 }
285 EXPORT_SYMBOL_GPL(ptp_qoriq_settime);
286
287 int ptp_qoriq_enable(struct ptp_clock_info *ptp,
288                      struct ptp_clock_request *rq, int on)
289 {
290         struct ptp_qoriq *ptp_qoriq = container_of(ptp, struct ptp_qoriq, caps);
291         struct ptp_qoriq_registers *regs = &ptp_qoriq->regs;
292         unsigned long flags;
293         u32 bit, mask = 0;
294
295         switch (rq->type) {
296         case PTP_CLK_REQ_EXTTS:
297                 switch (rq->extts.index) {
298                 case 0:
299                         bit = ETS1EN;
300                         break;
301                 case 1:
302                         bit = ETS2EN;
303                         break;
304                 default:
305                         return -EINVAL;
306                 }
307
308                 if (on)
309                         extts_clean_up(ptp_qoriq, rq->extts.index, false);
310
311                 break;
312         case PTP_CLK_REQ_PPS:
313                 bit = PP1EN;
314                 break;
315         default:
316                 return -EOPNOTSUPP;
317         }
318
319         spin_lock_irqsave(&ptp_qoriq->lock, flags);
320
321         mask = ptp_qoriq->read(&regs->ctrl_regs->tmr_temask);
322         if (on) {
323                 mask |= bit;
324                 ptp_qoriq->write(&regs->ctrl_regs->tmr_tevent, bit);
325         } else {
326                 mask &= ~bit;
327         }
328
329         ptp_qoriq->write(&regs->ctrl_regs->tmr_temask, mask);
330
331         spin_unlock_irqrestore(&ptp_qoriq->lock, flags);
332         return 0;
333 }
334 EXPORT_SYMBOL_GPL(ptp_qoriq_enable);
335
336 static const struct ptp_clock_info ptp_qoriq_caps = {
337         .owner          = THIS_MODULE,
338         .name           = "qoriq ptp clock",
339         .max_adj        = 512000,
340         .n_alarm        = 0,
341         .n_ext_ts       = N_EXT_TS,
342         .n_per_out      = 0,
343         .n_pins         = 0,
344         .pps            = 1,
345         .adjfine        = ptp_qoriq_adjfine,
346         .adjtime        = ptp_qoriq_adjtime,
347         .gettime64      = ptp_qoriq_gettime,
348         .settime64      = ptp_qoriq_settime,
349         .enable         = ptp_qoriq_enable,
350 };
351
352 /**
353  * ptp_qoriq_nominal_freq - calculate nominal frequency according to
354  *                          reference clock frequency
355  *
356  * @clk_src: reference clock frequency
357  *
358  * The nominal frequency is the desired clock frequency.
359  * It should be less than the reference clock frequency.
360  * It should be a factor of 1000MHz.
361  *
362  * Return the nominal frequency
363  */
364 static u32 ptp_qoriq_nominal_freq(u32 clk_src)
365 {
366         u32 remainder = 0;
367
368         clk_src /= 1000000;
369         remainder = clk_src % 100;
370         if (remainder) {
371                 clk_src -= remainder;
372                 clk_src += 100;
373         }
374
375         do {
376                 clk_src -= 100;
377
378         } while (1000 % clk_src);
379
380         return clk_src * 1000000;
381 }
382
383 /**
384  * ptp_qoriq_auto_config - calculate a set of default configurations
385  *
386  * @ptp_qoriq: pointer to ptp_qoriq
387  * @node: pointer to device_node
388  *
389  * If below dts properties are not provided, this function will be
390  * called to calculate a set of default configurations for them.
391  *   "fsl,tclk-period"
392  *   "fsl,tmr-prsc"
393  *   "fsl,tmr-add"
394  *   "fsl,tmr-fiper1"
395  *   "fsl,tmr-fiper2"
396  *   "fsl,max-adj"
397  *
398  * Return 0 if success
399  */
400 static int ptp_qoriq_auto_config(struct ptp_qoriq *ptp_qoriq,
401                                  struct device_node *node)
402 {
403         struct clk *clk;
404         u64 freq_comp;
405         u64 max_adj;
406         u32 nominal_freq;
407         u32 remainder = 0;
408         u32 clk_src = 0;
409
410         ptp_qoriq->cksel = DEFAULT_CKSEL;
411
412         clk = of_clk_get(node, 0);
413         if (!IS_ERR(clk)) {
414                 clk_src = clk_get_rate(clk);
415                 clk_put(clk);
416         }
417
418         if (clk_src <= 100000000UL) {
419                 pr_err("error reference clock value, or lower than 100MHz\n");
420                 return -EINVAL;
421         }
422
423         nominal_freq = ptp_qoriq_nominal_freq(clk_src);
424         if (!nominal_freq)
425                 return -EINVAL;
426
427         ptp_qoriq->tclk_period = 1000000000UL / nominal_freq;
428         ptp_qoriq->tmr_prsc = DEFAULT_TMR_PRSC;
429
430         /* Calculate initial frequency compensation value for TMR_ADD register.
431          * freq_comp = ceil(2^32 / freq_ratio)
432          * freq_ratio = reference_clock_freq / nominal_freq
433          */
434         freq_comp = ((u64)1 << 32) * nominal_freq;
435         freq_comp = div_u64_rem(freq_comp, clk_src, &remainder);
436         if (remainder)
437                 freq_comp++;
438
439         ptp_qoriq->tmr_add = freq_comp;
440         ptp_qoriq->tmr_fiper1 = DEFAULT_FIPER1_PERIOD - ptp_qoriq->tclk_period;
441         ptp_qoriq->tmr_fiper2 = DEFAULT_FIPER2_PERIOD - ptp_qoriq->tclk_period;
442
443         /* max_adj = 1000000000 * (freq_ratio - 1.0) - 1
444          * freq_ratio = reference_clock_freq / nominal_freq
445          */
446         max_adj = 1000000000ULL * (clk_src - nominal_freq);
447         max_adj = div_u64(max_adj, nominal_freq) - 1;
448         ptp_qoriq->caps.max_adj = max_adj;
449
450         return 0;
451 }
452
453 int ptp_qoriq_init(struct ptp_qoriq *ptp_qoriq, void __iomem *base,
454                    const struct ptp_clock_info *caps)
455 {
456         struct device_node *node = ptp_qoriq->dev->of_node;
457         struct ptp_qoriq_registers *regs;
458         struct timespec64 now;
459         unsigned long flags;
460         u32 tmr_ctrl;
461
462         if (!node)
463                 return -ENODEV;
464
465         ptp_qoriq->base = base;
466         ptp_qoriq->caps = *caps;
467
468         if (of_property_read_u32(node, "fsl,cksel", &ptp_qoriq->cksel))
469                 ptp_qoriq->cksel = DEFAULT_CKSEL;
470
471         if (of_property_read_bool(node, "fsl,extts-fifo"))
472                 ptp_qoriq->extts_fifo_support = true;
473         else
474                 ptp_qoriq->extts_fifo_support = false;
475
476         if (of_property_read_u32(node,
477                                  "fsl,tclk-period", &ptp_qoriq->tclk_period) ||
478             of_property_read_u32(node,
479                                  "fsl,tmr-prsc", &ptp_qoriq->tmr_prsc) ||
480             of_property_read_u32(node,
481                                  "fsl,tmr-add", &ptp_qoriq->tmr_add) ||
482             of_property_read_u32(node,
483                                  "fsl,tmr-fiper1", &ptp_qoriq->tmr_fiper1) ||
484             of_property_read_u32(node,
485                                  "fsl,tmr-fiper2", &ptp_qoriq->tmr_fiper2) ||
486             of_property_read_u32(node,
487                                  "fsl,max-adj", &ptp_qoriq->caps.max_adj)) {
488                 pr_warn("device tree node missing required elements, try automatic configuration\n");
489
490                 if (ptp_qoriq_auto_config(ptp_qoriq, node))
491                         return -ENODEV;
492         }
493
494         if (of_property_read_bool(node, "little-endian")) {
495                 ptp_qoriq->read = qoriq_read_le;
496                 ptp_qoriq->write = qoriq_write_le;
497         } else {
498                 ptp_qoriq->read = qoriq_read_be;
499                 ptp_qoriq->write = qoriq_write_be;
500         }
501
502         /* The eTSEC uses differnt memory map with DPAA/ENETC */
503         if (of_device_is_compatible(node, "fsl,etsec-ptp")) {
504                 ptp_qoriq->regs.ctrl_regs = base + ETSEC_CTRL_REGS_OFFSET;
505                 ptp_qoriq->regs.alarm_regs = base + ETSEC_ALARM_REGS_OFFSET;
506                 ptp_qoriq->regs.fiper_regs = base + ETSEC_FIPER_REGS_OFFSET;
507                 ptp_qoriq->regs.etts_regs = base + ETSEC_ETTS_REGS_OFFSET;
508         } else {
509                 ptp_qoriq->regs.ctrl_regs = base + CTRL_REGS_OFFSET;
510                 ptp_qoriq->regs.alarm_regs = base + ALARM_REGS_OFFSET;
511                 ptp_qoriq->regs.fiper_regs = base + FIPER_REGS_OFFSET;
512                 ptp_qoriq->regs.etts_regs = base + ETTS_REGS_OFFSET;
513         }
514
515         spin_lock_init(&ptp_qoriq->lock);
516
517         ktime_get_real_ts64(&now);
518         ptp_qoriq_settime(&ptp_qoriq->caps, &now);
519
520         tmr_ctrl =
521           (ptp_qoriq->tclk_period & TCLK_PERIOD_MASK) << TCLK_PERIOD_SHIFT |
522           (ptp_qoriq->cksel & CKSEL_MASK) << CKSEL_SHIFT;
523
524         spin_lock_irqsave(&ptp_qoriq->lock, flags);
525
526         regs = &ptp_qoriq->regs;
527         ptp_qoriq->write(&regs->ctrl_regs->tmr_ctrl, tmr_ctrl);
528         ptp_qoriq->write(&regs->ctrl_regs->tmr_add, ptp_qoriq->tmr_add);
529         ptp_qoriq->write(&regs->ctrl_regs->tmr_prsc, ptp_qoriq->tmr_prsc);
530         ptp_qoriq->write(&regs->fiper_regs->tmr_fiper1, ptp_qoriq->tmr_fiper1);
531         ptp_qoriq->write(&regs->fiper_regs->tmr_fiper2, ptp_qoriq->tmr_fiper2);
532         set_alarm(ptp_qoriq);
533         ptp_qoriq->write(&regs->ctrl_regs->tmr_ctrl,
534                          tmr_ctrl|FIPERST|RTPE|TE|FRD);
535
536         spin_unlock_irqrestore(&ptp_qoriq->lock, flags);
537
538         ptp_qoriq->clock = ptp_clock_register(&ptp_qoriq->caps, ptp_qoriq->dev);
539         if (IS_ERR(ptp_qoriq->clock))
540                 return PTR_ERR(ptp_qoriq->clock);
541
542         ptp_qoriq->phc_index = ptp_clock_index(ptp_qoriq->clock);
543         ptp_qoriq_create_debugfs(ptp_qoriq);
544         return 0;
545 }
546 EXPORT_SYMBOL_GPL(ptp_qoriq_init);
547
548 void ptp_qoriq_free(struct ptp_qoriq *ptp_qoriq)
549 {
550         struct ptp_qoriq_registers *regs = &ptp_qoriq->regs;
551
552         ptp_qoriq->write(&regs->ctrl_regs->tmr_temask, 0);
553         ptp_qoriq->write(&regs->ctrl_regs->tmr_ctrl,   0);
554
555         ptp_qoriq_remove_debugfs(ptp_qoriq);
556         ptp_clock_unregister(ptp_qoriq->clock);
557         iounmap(ptp_qoriq->base);
558         free_irq(ptp_qoriq->irq, ptp_qoriq);
559 }
560 EXPORT_SYMBOL_GPL(ptp_qoriq_free);
561
562 static int ptp_qoriq_probe(struct platform_device *dev)
563 {
564         struct ptp_qoriq *ptp_qoriq;
565         int err = -ENOMEM;
566         void __iomem *base;
567
568         ptp_qoriq = kzalloc(sizeof(*ptp_qoriq), GFP_KERNEL);
569         if (!ptp_qoriq)
570                 goto no_memory;
571
572         ptp_qoriq->dev = &dev->dev;
573
574         err = -ENODEV;
575
576         ptp_qoriq->irq = platform_get_irq(dev, 0);
577         if (ptp_qoriq->irq < 0) {
578                 pr_err("irq not in device tree\n");
579                 goto no_node;
580         }
581         if (request_irq(ptp_qoriq->irq, ptp_qoriq_isr, IRQF_SHARED,
582                         DRIVER, ptp_qoriq)) {
583                 pr_err("request_irq failed\n");
584                 goto no_node;
585         }
586
587         ptp_qoriq->rsrc = platform_get_resource(dev, IORESOURCE_MEM, 0);
588         if (!ptp_qoriq->rsrc) {
589                 pr_err("no resource\n");
590                 goto no_resource;
591         }
592         if (request_resource(&iomem_resource, ptp_qoriq->rsrc)) {
593                 pr_err("resource busy\n");
594                 goto no_resource;
595         }
596
597         base = ioremap(ptp_qoriq->rsrc->start,
598                        resource_size(ptp_qoriq->rsrc));
599         if (!base) {
600                 pr_err("ioremap ptp registers failed\n");
601                 goto no_ioremap;
602         }
603
604         err = ptp_qoriq_init(ptp_qoriq, base, &ptp_qoriq_caps);
605         if (err)
606                 goto no_clock;
607
608         platform_set_drvdata(dev, ptp_qoriq);
609         return 0;
610
611 no_clock:
612         iounmap(ptp_qoriq->base);
613 no_ioremap:
614         release_resource(ptp_qoriq->rsrc);
615 no_resource:
616         free_irq(ptp_qoriq->irq, ptp_qoriq);
617 no_node:
618         kfree(ptp_qoriq);
619 no_memory:
620         return err;
621 }
622
623 static int ptp_qoriq_remove(struct platform_device *dev)
624 {
625         struct ptp_qoriq *ptp_qoriq = platform_get_drvdata(dev);
626
627         ptp_qoriq_free(ptp_qoriq);
628         release_resource(ptp_qoriq->rsrc);
629         kfree(ptp_qoriq);
630         return 0;
631 }
632
633 static const struct of_device_id match_table[] = {
634         { .compatible = "fsl,etsec-ptp" },
635         { .compatible = "fsl,fman-ptp-timer" },
636         {},
637 };
638 MODULE_DEVICE_TABLE(of, match_table);
639
640 static struct platform_driver ptp_qoriq_driver = {
641         .driver = {
642                 .name           = "ptp_qoriq",
643                 .of_match_table = match_table,
644         },
645         .probe       = ptp_qoriq_probe,
646         .remove      = ptp_qoriq_remove,
647 };
648
649 module_platform_driver(ptp_qoriq_driver);
650
651 MODULE_AUTHOR("Richard Cochran <richardcochran@gmail.com>");
652 MODULE_DESCRIPTION("PTP clock for Freescale QorIQ 1588 timer");
653 MODULE_LICENSE("GPL");