1 // SPDX-License-Identifier: GPL-2.0+
2 /* Realtek Simple Management Interface (SMI) driver
3 * It can be discussed how "simple" this interface is.
5 * The SMI protocol piggy-backs the MDIO MDC and MDIO signals levels
6 * but the protocol is not MDIO at all. Instead it is a Realtek
7 * pecularity that need to bit-bang the lines in a special way to
8 * communicate with the switch.
10 * ASICs we intend to support with this driver:
12 * RTL8366 - The original version, apparently
13 * RTL8369 - Similar enough to have the same datsheet as RTL8366
14 * RTL8366RB - Probably reads out "RTL8366 revision B", has a quite
15 * different register layout from the other two
16 * RTL8366S - Is this "RTL8366 super"?
17 * RTL8367 - Has an OpenWRT driver as well
18 * RTL8368S - Seems to be an alternative name for RTL8366RB
19 * RTL8370 - Also uses SMI
28 #include <linux/kernel.h>
29 #include <linux/module.h>
30 #include <linux/device.h>
31 #include <linux/spinlock.h>
32 #include <linux/skbuff.h>
34 #include <linux/of_device.h>
35 #include <linux/of_mdio.h>
36 #include <linux/delay.h>
37 #include <linux/gpio/consumer.h>
38 #include <linux/platform_device.h>
39 #include <linux/regmap.h>
40 #include <linux/bitops.h>
41 #include <linux/if_bridge.h>
43 #include "realtek-smi-core.h"
45 #define REALTEK_SMI_ACK_RETRY_COUNT 5
46 #define REALTEK_SMI_HW_STOP_DELAY 25 /* msecs */
47 #define REALTEK_SMI_HW_START_DELAY 100 /* msecs */
49 static inline void realtek_smi_clk_delay(struct realtek_smi *smi)
51 ndelay(smi->clk_delay);
54 static void realtek_smi_start(struct realtek_smi *smi)
56 /* Set GPIO pins to output mode, with initial state:
59 gpiod_direction_output(smi->mdc, 0);
60 gpiod_direction_output(smi->mdio, 1);
61 realtek_smi_clk_delay(smi);
63 /* CLK 1: 0 -> 1, 1 -> 0 */
64 gpiod_set_value(smi->mdc, 1);
65 realtek_smi_clk_delay(smi);
66 gpiod_set_value(smi->mdc, 0);
67 realtek_smi_clk_delay(smi);
70 gpiod_set_value(smi->mdc, 1);
71 realtek_smi_clk_delay(smi);
72 gpiod_set_value(smi->mdio, 0);
73 realtek_smi_clk_delay(smi);
74 gpiod_set_value(smi->mdc, 0);
75 realtek_smi_clk_delay(smi);
76 gpiod_set_value(smi->mdio, 1);
79 static void realtek_smi_stop(struct realtek_smi *smi)
81 realtek_smi_clk_delay(smi);
82 gpiod_set_value(smi->mdio, 0);
83 gpiod_set_value(smi->mdc, 1);
84 realtek_smi_clk_delay(smi);
85 gpiod_set_value(smi->mdio, 1);
86 realtek_smi_clk_delay(smi);
87 gpiod_set_value(smi->mdc, 1);
88 realtek_smi_clk_delay(smi);
89 gpiod_set_value(smi->mdc, 0);
90 realtek_smi_clk_delay(smi);
91 gpiod_set_value(smi->mdc, 1);
94 realtek_smi_clk_delay(smi);
95 gpiod_set_value(smi->mdc, 0);
96 realtek_smi_clk_delay(smi);
97 gpiod_set_value(smi->mdc, 1);
99 /* Set GPIO pins to input mode */
100 gpiod_direction_input(smi->mdio);
101 gpiod_direction_input(smi->mdc);
104 static void realtek_smi_write_bits(struct realtek_smi *smi, u32 data, u32 len)
106 for (; len > 0; len--) {
107 realtek_smi_clk_delay(smi);
110 gpiod_set_value(smi->mdio, !!(data & (1 << (len - 1))));
111 realtek_smi_clk_delay(smi);
114 gpiod_set_value(smi->mdc, 1);
115 realtek_smi_clk_delay(smi);
116 gpiod_set_value(smi->mdc, 0);
120 static void realtek_smi_read_bits(struct realtek_smi *smi, u32 len, u32 *data)
122 gpiod_direction_input(smi->mdio);
124 for (*data = 0; len > 0; len--) {
127 realtek_smi_clk_delay(smi);
130 gpiod_set_value(smi->mdc, 1);
131 realtek_smi_clk_delay(smi);
132 u = !!gpiod_get_value(smi->mdio);
133 gpiod_set_value(smi->mdc, 0);
135 *data |= (u << (len - 1));
138 gpiod_direction_output(smi->mdio, 0);
141 static int realtek_smi_wait_for_ack(struct realtek_smi *smi)
149 realtek_smi_read_bits(smi, 1, &ack);
153 if (++retry_cnt > REALTEK_SMI_ACK_RETRY_COUNT) {
154 dev_err(smi->dev, "ACK timeout\n");
162 static int realtek_smi_write_byte(struct realtek_smi *smi, u8 data)
164 realtek_smi_write_bits(smi, data, 8);
165 return realtek_smi_wait_for_ack(smi);
168 static int realtek_smi_write_byte_noack(struct realtek_smi *smi, u8 data)
170 realtek_smi_write_bits(smi, data, 8);
174 static int realtek_smi_read_byte0(struct realtek_smi *smi, u8 *data)
179 realtek_smi_read_bits(smi, 8, &t);
183 realtek_smi_write_bits(smi, 0x00, 1);
188 static int realtek_smi_read_byte1(struct realtek_smi *smi, u8 *data)
193 realtek_smi_read_bits(smi, 8, &t);
197 realtek_smi_write_bits(smi, 0x01, 1);
202 static int realtek_smi_read_reg(struct realtek_smi *smi, u32 addr, u32 *data)
209 spin_lock_irqsave(&smi->lock, flags);
211 realtek_smi_start(smi);
213 /* Send READ command */
214 ret = realtek_smi_write_byte(smi, smi->cmd_read);
219 ret = realtek_smi_write_byte(smi, addr & 0xff);
224 ret = realtek_smi_write_byte(smi, addr >> 8);
229 realtek_smi_read_byte0(smi, &lo);
230 /* Read DATA[15:8] */
231 realtek_smi_read_byte1(smi, &hi);
233 *data = ((u32)lo) | (((u32)hi) << 8);
238 realtek_smi_stop(smi);
239 spin_unlock_irqrestore(&smi->lock, flags);
244 static int realtek_smi_write_reg(struct realtek_smi *smi,
245 u32 addr, u32 data, bool ack)
250 spin_lock_irqsave(&smi->lock, flags);
252 realtek_smi_start(smi);
254 /* Send WRITE command */
255 ret = realtek_smi_write_byte(smi, smi->cmd_write);
260 ret = realtek_smi_write_byte(smi, addr & 0xff);
265 ret = realtek_smi_write_byte(smi, addr >> 8);
269 /* Write DATA[7:0] */
270 ret = realtek_smi_write_byte(smi, data & 0xff);
274 /* Write DATA[15:8] */
276 ret = realtek_smi_write_byte(smi, data >> 8);
278 ret = realtek_smi_write_byte_noack(smi, data >> 8);
285 realtek_smi_stop(smi);
286 spin_unlock_irqrestore(&smi->lock, flags);
291 /* There is one single case when we need to use this accessor and that
292 * is when issueing soft reset. Since the device reset as soon as we write
293 * that bit, no ACK will come back for natural reasons.
295 int realtek_smi_write_reg_noack(struct realtek_smi *smi, u32 addr,
298 return realtek_smi_write_reg(smi, addr, data, false);
300 EXPORT_SYMBOL_GPL(realtek_smi_write_reg_noack);
302 /* Regmap accessors */
304 static int realtek_smi_write(void *ctx, u32 reg, u32 val)
306 struct realtek_smi *smi = ctx;
308 return realtek_smi_write_reg(smi, reg, val, true);
311 static int realtek_smi_read(void *ctx, u32 reg, u32 *val)
313 struct realtek_smi *smi = ctx;
315 return realtek_smi_read_reg(smi, reg, val);
318 static const struct regmap_config realtek_smi_mdio_regmap_config = {
319 .reg_bits = 10, /* A4..A0 R4..R0 */
322 /* PHY regs are at 0x8000 */
323 .max_register = 0xffff,
324 .reg_format_endian = REGMAP_ENDIAN_BIG,
325 .reg_read = realtek_smi_read,
326 .reg_write = realtek_smi_write,
327 .cache_type = REGCACHE_NONE,
330 static int realtek_smi_mdio_read(struct mii_bus *bus, int addr, int regnum)
332 struct realtek_smi *smi = bus->priv;
334 return smi->ops->phy_read(smi, addr, regnum);
337 static int realtek_smi_mdio_write(struct mii_bus *bus, int addr, int regnum,
340 struct realtek_smi *smi = bus->priv;
342 return smi->ops->phy_write(smi, addr, regnum, val);
345 int realtek_smi_setup_mdio(struct realtek_smi *smi)
347 struct device_node *mdio_np;
350 mdio_np = of_get_compatible_child(smi->dev->of_node, "realtek,smi-mdio");
352 dev_err(smi->dev, "no MDIO bus node\n");
356 smi->slave_mii_bus = devm_mdiobus_alloc(smi->dev);
357 if (!smi->slave_mii_bus) {
361 smi->slave_mii_bus->priv = smi;
362 smi->slave_mii_bus->name = "SMI slave MII";
363 smi->slave_mii_bus->read = realtek_smi_mdio_read;
364 smi->slave_mii_bus->write = realtek_smi_mdio_write;
365 snprintf(smi->slave_mii_bus->id, MII_BUS_ID_SIZE, "SMI-%d",
367 smi->slave_mii_bus->dev.of_node = mdio_np;
368 smi->slave_mii_bus->parent = smi->dev;
369 smi->ds->slave_mii_bus = smi->slave_mii_bus;
371 ret = of_mdiobus_register(smi->slave_mii_bus, mdio_np);
373 dev_err(smi->dev, "unable to register MDIO bus %s\n",
374 smi->slave_mii_bus->id);
381 of_node_put(mdio_np);
386 static int realtek_smi_probe(struct platform_device *pdev)
388 const struct realtek_smi_variant *var;
389 struct device *dev = &pdev->dev;
390 struct realtek_smi *smi;
391 struct device_node *np;
394 var = of_device_get_match_data(dev);
397 smi = devm_kzalloc(dev, sizeof(*smi), GFP_KERNEL);
400 smi->map = devm_regmap_init(dev, NULL, smi,
401 &realtek_smi_mdio_regmap_config);
402 if (IS_ERR(smi->map)) {
403 ret = PTR_ERR(smi->map);
404 dev_err(dev, "regmap init failed: %d\n", ret);
408 /* Link forward and backward */
410 smi->clk_delay = var->clk_delay;
411 smi->cmd_read = var->cmd_read;
412 smi->cmd_write = var->cmd_write;
415 dev_set_drvdata(dev, smi);
416 spin_lock_init(&smi->lock);
418 /* TODO: if power is software controlled, set up any regulators here */
420 /* Assert then deassert RESET */
421 smi->reset = devm_gpiod_get_optional(dev, "reset", GPIOD_OUT_HIGH);
422 if (IS_ERR(smi->reset)) {
423 dev_err(dev, "failed to get RESET GPIO\n");
424 return PTR_ERR(smi->reset);
426 msleep(REALTEK_SMI_HW_STOP_DELAY);
427 gpiod_set_value(smi->reset, 0);
428 msleep(REALTEK_SMI_HW_START_DELAY);
429 dev_info(dev, "deasserted RESET\n");
431 /* Fetch MDIO pins */
432 smi->mdc = devm_gpiod_get_optional(dev, "mdc", GPIOD_OUT_LOW);
433 if (IS_ERR(smi->mdc))
434 return PTR_ERR(smi->mdc);
435 smi->mdio = devm_gpiod_get_optional(dev, "mdio", GPIOD_OUT_LOW);
436 if (IS_ERR(smi->mdio))
437 return PTR_ERR(smi->mdio);
439 smi->leds_disabled = of_property_read_bool(np, "realtek,disable-leds");
441 ret = smi->ops->detect(smi);
443 dev_err(dev, "unable to detect switch\n");
447 smi->ds = dsa_switch_alloc(dev, smi->num_ports);
452 smi->ds->ops = var->ds_ops;
453 ret = dsa_register_switch(smi->ds);
455 dev_err(dev, "unable to register switch ret = %d\n", ret);
461 static int realtek_smi_remove(struct platform_device *pdev)
463 struct realtek_smi *smi = dev_get_drvdata(&pdev->dev);
465 dsa_unregister_switch(smi->ds);
466 if (smi->slave_mii_bus)
467 of_node_put(smi->slave_mii_bus->dev.of_node);
468 gpiod_set_value(smi->reset, 1);
473 static const struct of_device_id realtek_smi_of_match[] = {
475 .compatible = "realtek,rtl8366rb",
476 .data = &rtl8366rb_variant,
479 /* FIXME: add support for RTL8366S and more */
480 .compatible = "realtek,rtl8366s",
485 MODULE_DEVICE_TABLE(of, realtek_smi_of_match);
487 static struct platform_driver realtek_smi_driver = {
489 .name = "realtek-smi",
490 .of_match_table = of_match_ptr(realtek_smi_of_match),
492 .probe = realtek_smi_probe,
493 .remove = realtek_smi_remove,
495 module_platform_driver(realtek_smi_driver);
497 MODULE_LICENSE("GPL");