1
2
3
4
5
6
7
8#include <common.h>
9#include <miiphy.h>
10#include <phy.h>
11#include <asm/io.h>
12#include <fsl_memac.h>
13#include <fm_eth.h>
14
15#ifdef CONFIG_SYS_MEMAC_LITTLE_ENDIAN
16#define memac_out_32(a, v) out_le32(a, v)
17#define memac_clrbits_32(a, v) clrbits_le32(a, v)
18#define memac_setbits_32(a, v) setbits_le32(a, v)
19#else
20#define memac_out_32(a, v) out_be32(a, v)
21#define memac_clrbits_32(a, v) clrbits_be32(a, v)
22#define memac_setbits_32(a, v) setbits_be32(a, v)
23#endif
24
25#ifdef CONFIG_DM_ETH
26struct fm_mdio_priv {
27 struct memac_mdio_controller *regs;
28};
29#endif
30
31#define MAX_NUM_RETRIES 1000
32
33static u32 memac_in_32(u32 *reg)
34{
35#ifdef CONFIG_SYS_MEMAC_LITTLE_ENDIAN
36 return in_le32(reg);
37#else
38 return in_be32(reg);
39#endif
40}
41
42
43
44
45static int memac_wait_until_free(struct memac_mdio_controller *regs)
46{
47 unsigned int timeout = MAX_NUM_RETRIES;
48
49 while ((memac_in_32(®s->mdio_stat) & MDIO_STAT_BSY) && timeout--)
50 ;
51
52 if (!timeout) {
53 printf("timeout waiting for MDIO bus to be free\n");
54 return -ETIMEDOUT;
55 }
56
57 return 0;
58}
59
60
61
62
63static int memac_wait_until_done(struct memac_mdio_controller *regs)
64{
65 unsigned int timeout = MAX_NUM_RETRIES;
66
67 while ((memac_in_32(®s->mdio_data) & MDIO_DATA_BSY) && timeout--)
68 ;
69
70 if (!timeout) {
71 printf("timeout waiting for MDIO operation to complete\n");
72 return -ETIMEDOUT;
73 }
74
75 return 0;
76}
77
78
79
80
81
82
83int memac_mdio_write(struct mii_dev *bus, int port_addr, int dev_addr,
84 int regnum, u16 value)
85{
86 struct memac_mdio_controller *regs;
87 u32 mdio_ctl;
88 u32 c45 = 1;
89 int err;
90
91#ifndef CONFIG_DM_ETH
92 regs = bus->priv;
93#else
94 struct fm_mdio_priv *priv;
95
96 if (!bus->priv)
97 return -EINVAL;
98 priv = dev_get_priv(bus->priv);
99 regs = priv->regs;
100 debug("memac_mdio_write(regs %p, port %d, dev %d, reg %d, val %#x)\n",
101 regs, port_addr, dev_addr, regnum, value);
102#endif
103
104 if (dev_addr == MDIO_DEVAD_NONE) {
105 c45 = 0;
106 dev_addr = regnum & 0x1f;
107 memac_clrbits_32(®s->mdio_stat, MDIO_STAT_ENC);
108 } else
109 memac_setbits_32(®s->mdio_stat, MDIO_STAT_ENC);
110
111 err = memac_wait_until_free(regs);
112 if (err)
113 return err;
114
115
116 mdio_ctl = MDIO_CTL_PORT_ADDR(port_addr) | MDIO_CTL_DEV_ADDR(dev_addr);
117 memac_out_32(®s->mdio_ctl, mdio_ctl);
118
119
120 if (c45)
121 memac_out_32(®s->mdio_addr, regnum & 0xffff);
122
123 err = memac_wait_until_free(regs);
124 if (err)
125 return err;
126
127
128 memac_out_32(®s->mdio_data, MDIO_DATA(value));
129
130 err = memac_wait_until_done(regs);
131 if (err)
132 return err;
133
134 return 0;
135}
136
137
138
139
140
141
142int memac_mdio_read(struct mii_dev *bus, int port_addr, int dev_addr,
143 int regnum)
144{
145 struct memac_mdio_controller *regs;
146 u32 mdio_ctl;
147 u32 c45 = 1;
148 int err;
149
150#ifndef CONFIG_DM_ETH
151 regs = bus->priv;
152#else
153 struct fm_mdio_priv *priv;
154
155 if (!bus->priv)
156 return -EINVAL;
157 priv = dev_get_priv(bus->priv);
158 regs = priv->regs;
159#endif
160
161 if (dev_addr == MDIO_DEVAD_NONE) {
162#ifndef CONFIG_DM_ETH
163 if (!strcmp(bus->name, DEFAULT_FM_TGEC_MDIO_NAME))
164 return 0xffff;
165#endif
166 c45 = 0;
167 dev_addr = regnum & 0x1f;
168 memac_clrbits_32(®s->mdio_stat, MDIO_STAT_ENC);
169 } else
170 memac_setbits_32(®s->mdio_stat, MDIO_STAT_ENC);
171
172 err = memac_wait_until_free(regs);
173 if (err)
174 return err;
175
176
177 mdio_ctl = MDIO_CTL_PORT_ADDR(port_addr) | MDIO_CTL_DEV_ADDR(dev_addr);
178 memac_out_32(®s->mdio_ctl, mdio_ctl);
179
180
181 if (c45)
182 memac_out_32(®s->mdio_addr, regnum & 0xffff);
183
184 err = memac_wait_until_free(regs);
185 if (err)
186 return err;
187
188
189 mdio_ctl |= MDIO_CTL_READ;
190 memac_out_32(®s->mdio_ctl, mdio_ctl);
191
192 err = memac_wait_until_done(regs);
193 if (err)
194 return err;
195
196
197 if (memac_in_32(®s->mdio_stat) & MDIO_STAT_RD_ER)
198 return 0xffff;
199
200 return memac_in_32(®s->mdio_data) & 0xffff;
201}
202
203int memac_mdio_reset(struct mii_dev *bus)
204{
205 return 0;
206}
207
208#ifndef CONFIG_DM_ETH
209int fm_memac_mdio_init(struct bd_info *bis, struct memac_mdio_info *info)
210{
211 struct mii_dev *bus = mdio_alloc();
212
213 if (!bus) {
214 printf("Failed to allocate FM TGEC MDIO bus\n");
215 return -1;
216 }
217
218 bus->read = memac_mdio_read;
219 bus->write = memac_mdio_write;
220 bus->reset = memac_mdio_reset;
221 strcpy(bus->name, info->name);
222
223 bus->priv = info->regs;
224
225
226
227
228
229
230
231
232
233
234
235
236
237 memac_setbits_32(
238 &((struct memac_mdio_controller *)info->regs)->mdio_stat,
239 MDIO_STAT_CLKDIV(258) | MDIO_STAT_NEG);
240
241 return mdio_register(bus);
242}
243
244#else
245#if defined(CONFIG_PHYLIB) && defined(CONFIG_DM_MDIO)
246static int fm_mdio_read(struct udevice *dev, int addr, int devad, int reg)
247{
248 struct mdio_perdev_priv *pdata = (dev) ? dev_get_uclass_priv(dev) :
249 NULL;
250
251 if (pdata && pdata->mii_bus)
252 return memac_mdio_read(pdata->mii_bus, addr, devad, reg);
253
254 return -1;
255}
256
257static int fm_mdio_write(struct udevice *dev, int addr, int devad, int reg,
258 u16 val)
259{
260 struct mdio_perdev_priv *pdata = (dev) ? dev_get_uclass_priv(dev) :
261 NULL;
262
263 if (pdata && pdata->mii_bus)
264 return memac_mdio_write(pdata->mii_bus, addr, devad, reg, val);
265
266 return -1;
267}
268
269static int fm_mdio_reset(struct udevice *dev)
270{
271 struct mdio_perdev_priv *pdata = (dev) ? dev_get_uclass_priv(dev) :
272 NULL;
273
274 if (pdata && pdata->mii_bus)
275 return memac_mdio_reset(pdata->mii_bus);
276
277 return -1;
278}
279
280static const struct mdio_ops fm_mdio_ops = {
281 .read = fm_mdio_read,
282 .write = fm_mdio_write,
283 .reset = fm_mdio_reset,
284};
285
286static const struct udevice_id fm_mdio_ids[] = {
287 { .compatible = "fsl,fman-memac-mdio" },
288 {}
289};
290
291static int fm_mdio_probe(struct udevice *dev)
292{
293 struct fm_mdio_priv *priv = (dev) ? dev_get_priv(dev) : NULL;
294 struct mdio_perdev_priv *pdata = (dev) ? dev_get_uclass_priv(dev) :
295 NULL;
296
297 if (!dev) {
298 printf("%s dev = NULL\n", __func__);
299 return -1;
300 }
301 if (!priv) {
302 printf("dev_get_priv(dev %p) = NULL\n", dev);
303 return -1;
304 }
305 priv->regs = (void *)(uintptr_t)dev_read_addr(dev);
306 debug("%s priv %p @ regs %p, pdata %p\n", __func__,
307 priv, priv->regs, pdata);
308
309
310
311
312
313
314
315
316
317
318
319
320
321 if (priv && priv->regs && priv->regs->mdio_stat)
322 memac_setbits_32(&priv->regs->mdio_stat,
323 MDIO_STAT_CLKDIV(258) | MDIO_STAT_NEG);
324
325 return 0;
326}
327
328static int fm_mdio_remove(struct udevice *dev)
329{
330 return 0;
331}
332
333U_BOOT_DRIVER(fman_mdio) = {
334 .name = "fman_mdio",
335 .id = UCLASS_MDIO,
336 .of_match = fm_mdio_ids,
337 .probe = fm_mdio_probe,
338 .remove = fm_mdio_remove,
339 .ops = &fm_mdio_ops,
340 .priv_auto = sizeof(struct fm_mdio_priv),
341 .plat_auto = sizeof(struct mdio_perdev_priv),
342};
343#endif
344#endif
345