mvsoc.c revision 1.5 1 /* $NetBSD: mvsoc.c,v 1.5 2012/02/12 16:34:07 matt Exp $ */
2 /*
3 * Copyright (c) 2007, 2008 KIYOHARA Takashi
4 * All rights reserved.
5 *
6 * Redistribution and use in source and binary forms, with or without
7 * modification, are permitted provided that the following conditions
8 * are met:
9 * 1. Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * 2. Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 *
15 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
16 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
17 * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
18 * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT,
19 * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
20 * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
21 * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
22 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
23 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
24 * ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
25 * POSSIBILITY OF SUCH DAMAGE.
26 */
27
28 #include <sys/cdefs.h>
29 __KERNEL_RCSID(0, "$NetBSD: mvsoc.c,v 1.5 2012/02/12 16:34:07 matt Exp $");
30
31 #include "opt_cputypes.h"
32 #include "opt_mvsoc.h"
33
34 #include <sys/param.h>
35 #include <sys/bus.h>
36 #include <sys/device.h>
37 #include <sys/errno.h>
38
39 #include <dev/pci/pcidevs.h>
40 #include <dev/pci/pcireg.h>
41 #include <dev/marvell/marvellreg.h>
42 #include <dev/marvell/marvellvar.h>
43
44 #include <arm/marvell/mvsocreg.h>
45 #include <arm/marvell/mvsocvar.h>
46 #include <arm/marvell/orionreg.h>
47 #include <arm/marvell/kirkwoodreg.h>
48
49 #include "locators.h"
50
51
52 static int mvsoc_match(device_t, struct cfdata *, void *);
53 static void mvsoc_attach(device_t, device_t, void *);
54
55 static int mvsoc_print(void *, const char *);
56 static int mvsoc_search(device_t, cfdata_t, const int *, void *);
57
58 uint32_t mvPclk, mvSysclk, mvTclk = 0;
59 int nwindow = 0, nremap = 0;
60 static vaddr_t regbase = 0xffffffff, dsc_base, pex_base;
61 vaddr_t mlmb_base;
62
63 void (*mvsoc_intr_init)(void);
64
65
66 /* attributes */
67 static struct {
68 int tag;
69 uint32_t attr;
70 uint32_t target;
71 } mvsoc_tags[] = {
72 { MARVELL_TAG_SDRAM_CS0,
73 MARVELL_ATTR_SDRAM_CS0, MVSOC_UNITID_DDR },
74 { MARVELL_TAG_SDRAM_CS1,
75 MARVELL_ATTR_SDRAM_CS1, MVSOC_UNITID_DDR },
76 { MARVELL_TAG_SDRAM_CS2,
77 MARVELL_ATTR_SDRAM_CS2, MVSOC_UNITID_DDR },
78 { MARVELL_TAG_SDRAM_CS3,
79 MARVELL_ATTR_SDRAM_CS3, MVSOC_UNITID_DDR },
80
81 #if defined(ORION)
82 { ORION_TAG_DEVICE_CS0,
83 ORION_ATTR_DEVICE_CS0, MVSOC_UNITID_DEVBUS },
84 { ORION_TAG_DEVICE_CS1,
85 ORION_ATTR_DEVICE_CS1, MVSOC_UNITID_DEVBUS },
86 { ORION_TAG_DEVICE_CS2,
87 ORION_ATTR_DEVICE_CS2, MVSOC_UNITID_DEVBUS },
88 { ORION_TAG_DEVICE_BOOTCS,
89 ORION_ATTR_BOOT_CS, MVSOC_UNITID_DEVBUS },
90 { ORION_TAG_FLASH_CS,
91 ORION_ATTR_FLASH_CS, MVSOC_UNITID_DEVBUS },
92 { ORION_TAG_PEX0_MEM,
93 ORION_ATTR_PEX_MEM, ORION_UNITID_PEX },
94 { ORION_TAG_PEX0_IO,
95 ORION_ATTR_PEX_IO, ORION_UNITID_PEX },
96 { ORION_TAG_PEX1_MEM,
97 ORION_ATTR_PEX_MEM, ORION_UNITID_PEX1 },
98 { ORION_TAG_PEX1_IO,
99 ORION_ATTR_PEX_IO, ORION_UNITID_PEX1 },
100 { ORION_TAG_PCI_MEM,
101 ORION_ATTR_PCI_MEM, ORION_UNITID_PCI },
102 { ORION_TAG_PCI_IO,
103 ORION_ATTR_PCI_IO, ORION_UNITID_PCI },
104 { ORION_TAG_CRYPT,
105 ORION_ATTR_CRYPT, ORION_UNITID_CRYPT },
106 #endif
107
108 #if defined(KIRKWOOD)
109 { KIRKWOOD_TAG_NAND,
110 KIRKWOOD_ATTR_NAND, MVSOC_UNITID_DEVBUS },
111 { KIRKWOOD_TAG_SPI,
112 KIRKWOOD_ATTR_SPI, MVSOC_UNITID_DEVBUS },
113 { KIRKWOOD_TAG_BOOTROM,
114 KIRKWOOD_ATTR_BOOTROM, MVSOC_UNITID_DEVBUS },
115 { KIRKWOOD_TAG_PEX_MEM,
116 KIRKWOOD_ATTR_PEX_MEM, KIRKWOOD_UNITID_PEX },
117 { KIRKWOOD_TAG_PEX_IO,
118 KIRKWOOD_ATTR_PEX_IO, KIRKWOOD_UNITID_PEX },
119 { KIRKWOOD_TAG_CRYPT,
120 KIRKWOOD_ATTR_CRYPT, KIRKWOOD_UNITID_CRYPT },
121 #endif
122 };
123
124 #if defined(ORION)
125 #define ORION_1(m) MARVELL_ORION_1_ ## m
126 #define ORION_2(m) MARVELL_ORION_2_ ## m
127 #endif
128 #if defined(KIRKWOOD)
129 #undef KIRKWOOD
130 #define KIRKWOOD(m) MARVELL_KIRKWOOD_ ## m
131 #endif
132 #if defined(MV78XX0)
133 #undef MV78XX0
134 #define MV78XX0(m) MARVELL_MV78XX0_ ## m
135 #endif
136 static struct {
137 uint16_t model;
138 uint8_t rev;
139 const char *modelstr;
140 const char *revstr;
141 const char *typestr;
142 } nametbl[] = {
143 #if defined(ORION)
144 { ORION_1(88F1181), 0, "MV88F1181", NULL, "Orion1" },
145 { ORION_1(88F5082), 2, "MV88F5082", "A2", "Orion1" },
146 { ORION_1(88F5180N), 3, "MV88F5180N","B1", "Orion1" },
147 { ORION_1(88F5181), 0, "MV88F5181", "A0", "Orion1" },
148 { ORION_1(88F5181), 1, "MV88F5181", "A1", "Orion1" },
149 { ORION_1(88F5181), 2, "MV88F5181", "B0", "Orion1" },
150 { ORION_1(88F5181), 3, "MV88F5181", "B1", "Orion1" },
151 { ORION_1(88F5181), 8, "MV88F5181L","A0", "Orion1" },
152 { ORION_1(88F5181), 9, "MV88F5181L","A1", "Orion1" },
153 { ORION_1(88F5182), 0, "MV88F5182", "A0", "Orion1" },
154 { ORION_1(88F5182), 1, "MV88F5182", "A1", "Orion1" },
155 { ORION_1(88F5182), 2, "MV88F5182", "A2", "Orion1" },
156 { ORION_1(88F6082), 0, "MV88F6082", "A0", "Orion1" },
157 { ORION_1(88F6082), 1, "MV88F6082", "A1", "Orion1" },
158 { ORION_1(88F6183), 0, "MV88F6183", "A0", "Orion1" },
159 { ORION_1(88F6183), 1, "MV88F6183", "Z0", "Orion1" },
160 { ORION_1(88W8660), 0, "MV88W8660", "A0", "Orion1" },
161 { ORION_1(88W8660), 1, "MV88W8660", "A1", "Orion1" },
162
163 { ORION_2(88F1281), 0, "MV88F1281", "A0", "Orion2" },
164 { ORION_2(88F5281), 0, "MV88F5281", "A0", "Orion2" },
165 { ORION_2(88F5281), 1, "MV88F5281", "B0", "Orion2" },
166 { ORION_2(88F5281), 2, "MV88F5281", "C0", "Orion2" },
167 { ORION_2(88F5281), 3, "MV88F5281", "C1", "Orion2" },
168 { ORION_2(88F5281), 4, "MV88F5281", "D0", "Orion2" },
169 #endif
170
171 #if defined(KIRKWOOD)
172 { KIRKWOOD(88F6180), 2, "88F6180", "A0", "Kirkwood" },
173 { KIRKWOOD(88F6192), 0, "88F619x", "Z0", "Kirkwood" },
174 { KIRKWOOD(88F6192), 2, "88F619x", "A0", "Kirkwood" },
175 { KIRKWOOD(88F6192), 3, "88F619x", "A1", "Kirkwood" },
176 { KIRKWOOD(88F6281), 0, "88F6281", "Z0", "Kirkwood" },
177 { KIRKWOOD(88F6281), 2, "88F6281", "A0", "Kirkwood" },
178 { KIRKWOOD(88F6281), 3, "88F6281", "A1", "Kirkwood" },
179 #endif
180
181 #if defined(MV78XX0)
182 { MV78XX0(MV78100), 1, "MV78100", "A0", "Discovery Innovation" },
183 { MV78XX0(MV78100), 2, "MV78100", "A1", "Discovery Innovation" },
184 { MV78XX0(MV78200), 1, "MV78200", "A0", "Discovery Innovation" },
185 #endif
186 };
187
188 #define OFFSET_DEFAULT MVA_OFFSET_DEFAULT
189 #define IRQ_DEFAULT MVA_IRQ_DEFAULT
190 static const struct mvsoc_periph {
191 int model;
192 const char *name;
193 int unit;
194 bus_size_t offset;
195 int irq;
196 } mvsoc_periphs[] = {
197 #if defined(ORION)
198 { ORION_1(88F1181), "mvsoctmr",0, MVSOC_TMR_BASE, IRQ_DEFAULT },
199 { ORION_1(88F1181), "mvsocgpp",0, MVSOC_GPP_BASE, ORION_IRQ_GPIO7_0 },
200 { ORION_1(88F1181), "com", 0, MVSOC_COM0_BASE, ORION_IRQ_UART0 },
201 { ORION_1(88F1181), "com", 1, MVSOC_COM1_BASE, ORION_IRQ_UART1 },
202 { ORION_1(88F1181), "gttwsi", 0, MVSOC_TWSI_BASE, ORION_IRQ_TWSI },
203 { ORION_1(88F1181), "mvpex", 0, MVSOC_PEX_BASE, ORION_IRQ_PEX0INT },
204 { ORION_1(88F1181), "mvpex", 1, ORION_PEX1_BASE, ORION_IRQ_PEX1INT },
205
206 { ORION_1(88F5082), "mvsoctmr",0, MVSOC_TMR_BASE, IRQ_DEFAULT },
207 { ORION_1(88F5082), "mvsocgpp",0, MVSOC_GPP_BASE, ORION_IRQ_GPIO7_0 },
208 { ORION_1(88F5082), "com", 0, MVSOC_COM0_BASE, ORION_IRQ_UART0 },
209 { ORION_1(88F5082), "com", 1, MVSOC_COM1_BASE, ORION_IRQ_UART1 },
210 { ORION_1(88F5082), "ehci", 0, ORION_USB0_BASE, ORION_IRQ_USBCNT0 },
211 { ORION_1(88F5082), "ehci", 1, ORION_USB1_BASE, ORION_IRQ_USBCNT1 },
212 // { ORION_1(88F5082), "gtidmac", 0, ORION_IDMAC_BASE, 0 },
213 { ORION_1(88F5082), "gttwsi", 0, MVSOC_TWSI_BASE, ORION_IRQ_TWSI },
214 { ORION_1(88F5082), "mvcesa", 0, ORION_CESA_BASE, ORION_IRQ_SECURITYINTR},
215 { ORION_1(88F5082), "mvgbec", 0, ORION_GBE_BASE, IRQ_DEFAULT },
216 { ORION_1(88F5082), "mvpex", 0, MVSOC_PEX_BASE, ORION_IRQ_PEX0INT },
217 { ORION_1(88F5082), "mvsata", 0, ORION_SATAHC_BASE,ORION_IRQ_SATAINTR },
218
219 { ORION_1(88F5180N),"mvsoctmr",0, MVSOC_TMR_BASE, IRQ_DEFAULT },
220 { ORION_1(88F5180N),"mvsocgpp",0, MVSOC_GPP_BASE, ORION_IRQ_GPIO7_0 },
221 { ORION_1(88F5180N),"com", 0, MVSOC_COM0_BASE, ORION_IRQ_UART0 },
222 { ORION_1(88F5180N),"com", 1, MVSOC_COM1_BASE, ORION_IRQ_UART1 },
223 { ORION_1(88F5180N),"ehci", 0, ORION_USB0_BASE, ORION_IRQ_USBCNT0 },
224 // { ORION_1(88F5180N),"gtidmac", 0, ORION_IDMAC_BASE, 0 },
225 { ORION_1(88F5180N),"gtpci", 0, ORION_PCI_BASE, ORION_IRQ_PEX0INT },
226 { ORION_1(88F5180N),"gttwsi", 0, MVSOC_TWSI_BASE, ORION_IRQ_TWSI },
227 { ORION_1(88F5180N),"mvgbec", 0, ORION_GBE_BASE, IRQ_DEFAULT },
228 { ORION_1(88F5180N),"mvpex", 0, MVSOC_PEX_BASE, ORION_IRQ_PEX0INT },
229
230 { ORION_1(88F5181), "mvsoctmr",0, MVSOC_TMR_BASE, IRQ_DEFAULT },
231 { ORION_1(88F5181), "mvsocgpp",0, MVSOC_GPP_BASE, ORION_IRQ_GPIO7_0 },
232 { ORION_1(88F5181), "com", 0, MVSOC_COM0_BASE, ORION_IRQ_UART0 },
233 { ORION_1(88F5181), "com", 1, MVSOC_COM1_BASE, ORION_IRQ_UART1 },
234 { ORION_1(88F5181), "ehci", 0, ORION_USB0_BASE, ORION_IRQ_USBCNT0 },
235 // { ORION_1(88F5181), "gtidmac", 0, ORION_IDMAC_BASE, 0 },
236 { ORION_1(88F5181), "gtpci", 0, ORION_PCI_BASE, ORION_IRQ_PEX0INT },
237 { ORION_1(88F5181), "gttwsi", 0, MVSOC_TWSI_BASE, ORION_IRQ_TWSI },
238 { ORION_1(88F5181), "mvcesa", 0, ORION_CESA_BASE, ORION_IRQ_SECURITYINTR},
239 { ORION_1(88F5181), "mvgbec", 0, ORION_GBE_BASE, IRQ_DEFAULT },
240 { ORION_1(88F5181), "mvpex", 0, MVSOC_PEX_BASE, ORION_IRQ_PEX0INT },
241
242 { ORION_1(88F5182), "mvsoctmr",0, MVSOC_TMR_BASE, IRQ_DEFAULT },
243 { ORION_1(88F5182), "mvsocgpp",0, MVSOC_GPP_BASE, ORION_IRQ_GPIO7_0 },
244 { ORION_1(88F5182), "com", 0, MVSOC_COM0_BASE, ORION_IRQ_UART0 },
245 { ORION_1(88F5182), "com", 1, MVSOC_COM1_BASE, ORION_IRQ_UART1 },
246 { ORION_1(88F5182), "ehci", 0, ORION_USB0_BASE, ORION_IRQ_USBCNT0 },
247 { ORION_1(88F5182), "ehci", 1, ORION_USB1_BASE, ORION_IRQ_USBCNT1 },
248 { ORION_1(88F5182), "gtidmac", 0, ORION_IDMAC_BASE, ORION_IRQ_IDMA0 },
249 { ORION_1(88F5182), "gtpci", 0, ORION_PCI_BASE, ORION_IRQ_PEX0INT },
250 { ORION_1(88F5182), "gttwsi", 0, MVSOC_TWSI_BASE, ORION_IRQ_TWSI },
251 { ORION_1(88F5182), "mvgbec", 0, ORION_GBE_BASE, IRQ_DEFAULT },
252 { ORION_1(88F5182), "mvsata", 0, ORION_SATAHC_BASE,ORION_IRQ_SATAINTR },
253 { ORION_1(88F5182), "mvpex", 0, MVSOC_PEX_BASE, ORION_IRQ_PEX0INT },
254
255 { ORION_1(88F6082), "mvsoctmr",0, MVSOC_TMR_BASE, IRQ_DEFAULT },
256 { ORION_1(88F6082), "mvsocgpp",0, MVSOC_GPP_BASE, ORION_IRQ_GPIO7_0 },
257 { ORION_1(88F6082), "com", 0, MVSOC_COM0_BASE, ORION_IRQ_UART0 },
258 { ORION_1(88F6082), "com", 1, MVSOC_COM1_BASE, ORION_IRQ_UART1 },
259 { ORION_1(88F6082), "ehci", 0, ORION_USB0_BASE, ORION_IRQ_USBCNT0 },
260 { ORION_1(88F6082), "gttwsi", 0, MVSOC_TWSI_BASE, ORION_IRQ_TWSI },
261 { ORION_1(88F6082), "mvcesa", 0, ORION_CESA_BASE, ORION_IRQ_SECURITYINTR},
262 { ORION_1(88F6082), "mvgbec", 0, ORION_GBE_BASE, IRQ_DEFAULT },
263 { ORION_1(88F6082), "mvsata", 0, ORION_SATAHC_BASE,ORION_IRQ_SATAINTR },
264 { ORION_1(88F6082), "mvpex", 0, MVSOC_PEX_BASE, ORION_IRQ_PEX0INT },
265
266 { ORION_1(88F6183), "mvsoctmr",0, MVSOC_TMR_BASE, IRQ_DEFAULT },
267 { ORION_1(88F6183), "mvsocgpp",0, MVSOC_GPP_BASE, ORION_IRQ_GPIO7_0 },
268 { ORION_1(88F6183), "gttwsi", 0, MVSOC_TWSI_BASE, ORION_IRQ_TWSI },
269 { ORION_1(88F6183), "mvpex", 0, MVSOC_PEX_BASE, ORION_IRQ_PEX0INT },
270
271 { ORION_1(88W8660), "mvsoctmr",0, MVSOC_TMR_BASE, IRQ_DEFAULT },
272 { ORION_1(88W8660), "mvsocgpp",0, MVSOC_GPP_BASE, ORION_IRQ_GPIO7_0 },
273 { ORION_1(88W8660), "com", 0, MVSOC_COM0_BASE, ORION_IRQ_UART0 },
274 { ORION_1(88W8660), "com", 1, MVSOC_COM1_BASE, ORION_IRQ_UART1 },
275 { ORION_1(88W8660), "ehci", 0, ORION_USB0_BASE, ORION_IRQ_USBCNT0 },
276 // { ORION_1(88W8660), "gtidmac", 0, ORION_IDMAC_BASE, 0 },
277 { ORION_1(88W8660), "gtpci", 0, ORION_PCI_BASE, ORION_IRQ_PEX0INT },
278 { ORION_1(88W8660), "gttwsi", 0, MVSOC_TWSI_BASE, ORION_IRQ_TWSI },
279 { ORION_1(88W8660), "mvgbec", 0, ORION_GBE_BASE, IRQ_DEFAULT },
280 { ORION_1(88W8660), "mvpex", 0, MVSOC_PEX_BASE, ORION_IRQ_PEX0INT },
281
282 { ORION_2(88F1281), "mvsoctmr",0, MVSOC_TMR_BASE, IRQ_DEFAULT },
283 { ORION_2(88F1281), "mvsocgpp",0, MVSOC_GPP_BASE, ORION_IRQ_GPIO7_0 },
284 { ORION_2(88F1281), "com", 0, MVSOC_COM0_BASE, ORION_IRQ_UART0 },
285 { ORION_2(88F1281), "com", 1, MVSOC_COM1_BASE, ORION_IRQ_UART1 },
286 { ORION_2(88F1281), "gttwsi", 0, MVSOC_TWSI_BASE, ORION_IRQ_TWSI },
287 { ORION_2(88F1281), "mvpex", 0, MVSOC_PEX_BASE, ORION_IRQ_PEX0INT },
288 { ORION_2(88F1281), "mvpex", 1, ORION_PEX1_BASE, ORION_IRQ_PEX1INT },
289
290 { ORION_2(88F5281), "mvsoctmr",0, MVSOC_TMR_BASE, IRQ_DEFAULT },
291 { ORION_2(88F5281), "mvsocgpp",0, MVSOC_GPP_BASE, ORION_IRQ_GPIO7_0 },
292 { ORION_2(88F5281), "com", 0, MVSOC_COM0_BASE, ORION_IRQ_UART0 },
293 { ORION_2(88F5281), "com", 1, MVSOC_COM1_BASE, ORION_IRQ_UART1 },
294 { ORION_2(88F5281), "ehci", 0, ORION_USB0_BASE, ORION_IRQ_USBCNT0 },
295 // { ORION_2(88F5281), "gtidmac", 0, ORION_IDMAC_BASE, 0 },
296 { ORION_2(88F5281), "gtpci", 0, ORION_PCI_BASE, ORION_IRQ_PEX0INT },
297 { ORION_2(88F5281), "gttwsi", 0, MVSOC_TWSI_BASE, ORION_IRQ_TWSI },
298 { ORION_2(88F5281), "mvgbec", 0, ORION_GBE_BASE, IRQ_DEFAULT },
299 { ORION_2(88F5281), "mvpex", 0, MVSOC_PEX_BASE, ORION_IRQ_PEX0INT },
300 #endif
301
302 #if defined(KIRKWOOD)
303 { KIRKWOOD(88F6180),"mvsoctmr",0, MVSOC_TMR_BASE, IRQ_DEFAULT },
304 { KIRKWOOD(88F6180),"mvsocgpp",0, MVSOC_GPP_BASE, KIRKWOOD_IRQ_GPIOLO7_0},
305 { KIRKWOOD(88F6180),"mvsocrtc",0, KIRKWOOD_RTC_BASE,IRQ_DEFAULT },
306 { KIRKWOOD(88F6180),"com", 0, MVSOC_COM0_BASE, KIRKWOOD_IRQ_UART0INT },
307 { KIRKWOOD(88F6180),"com", 1, MVSOC_COM1_BASE, KIRKWOOD_IRQ_UART1INT },
308 { KIRKWOOD(88F6180),"ehci", 0, KIRKWOOD_USB_BASE,KIRKWOOD_IRQ_USB0CNT },
309 // { KIRKWOOD(88F6180),"gtidmac", 0, KIRKWOOD_IDMAC_BASE,? },
310 { KIRKWOOD(88F6180),"gttwsi", 0, MVSOC_TWSI_BASE, KIRKWOOD_IRQ_TWSI },
311 { KIRKWOOD(88F6180),"mvcesa", 0, KIRKWOOD_CESA_BASE,KIRKWOOD_IRQ_SECURITYINT},
312 { KIRKWOOD(88F6180),"mvgbec", 0, KIRKWOOD_GBE0_BASE,IRQ_DEFAULT },
313 { KIRKWOOD(88F6180),"mvpex", 0, MVSOC_PEX_BASE, KIRKWOOD_IRQ_PEX0INT },
314 { KIRKWOOD(88F6180),"mvsdio", 0, KIRKWOOD_SDIO_BASE,KIRKWOOD_IRQ_SDIOINT },
315
316 { KIRKWOOD(88F6192),"mvsoctmr",0, MVSOC_TMR_BASE, IRQ_DEFAULT },
317 { KIRKWOOD(88F6192),"mvsocgpp",0, MVSOC_GPP_BASE, KIRKWOOD_IRQ_GPIOLO7_0},
318 { KIRKWOOD(88F6192),"mvsocrtc",0, KIRKWOOD_RTC_BASE,IRQ_DEFAULT },
319 { KIRKWOOD(88F6192),"com", 0, MVSOC_COM0_BASE, KIRKWOOD_IRQ_UART0INT },
320 { KIRKWOOD(88F6192),"com", 1, MVSOC_COM1_BASE, KIRKWOOD_IRQ_UART1INT },
321 { KIRKWOOD(88F6192),"ehci", 0, KIRKWOOD_USB_BASE,KIRKWOOD_IRQ_USB0CNT },
322 // { KIRKWOOD(88F6192),"gtidmac", 0, KIRKWOOD_IDMAC_BASE,? },
323 { KIRKWOOD(88F6192),"gttwsi", 0, MVSOC_TWSI_BASE, KIRKWOOD_IRQ_TWSI },
324 { KIRKWOOD(88F6192),"mvcesa", 0, KIRKWOOD_CESA_BASE,KIRKWOOD_IRQ_SECURITYINT},
325 { KIRKWOOD(88F6192),"mvgbec", 0, KIRKWOOD_GBE0_BASE,IRQ_DEFAULT },
326 { KIRKWOOD(88F6192),"mvgbec", 1, KIRKWOOD_GBE1_BASE,IRQ_DEFAULT },
327 { KIRKWOOD(88F6192),"mvpex", 0, MVSOC_PEX_BASE, KIRKWOOD_IRQ_PEX0INT },
328 { KIRKWOOD(88F6192),"mvsata", 0, KIRKWOOD_SATAHC_BASE,KIRKWOOD_IRQ_SATA },
329 { KIRKWOOD(88F6192),"mvsdio", 0, KIRKWOOD_SDIO_BASE,KIRKWOOD_IRQ_SDIOINT },
330
331 { KIRKWOOD(88F6281),"mvsoctmr",0, MVSOC_TMR_BASE, IRQ_DEFAULT },
332 { KIRKWOOD(88F6281),"mvsocgpp",0, MVSOC_GPP_BASE, KIRKWOOD_IRQ_GPIOLO7_0},
333 { KIRKWOOD(88F6281),"mvsocrtc",0, KIRKWOOD_RTC_BASE,IRQ_DEFAULT },
334 { KIRKWOOD(88F6281),"com", 0, MVSOC_COM0_BASE, KIRKWOOD_IRQ_UART0INT },
335 { KIRKWOOD(88F6281),"com", 1, MVSOC_COM1_BASE, KIRKWOOD_IRQ_UART1INT },
336 { KIRKWOOD(88F6281),"ehci", 0, KIRKWOOD_USB_BASE,KIRKWOOD_IRQ_USB0CNT },
337 // { KIRKWOOD(88F6281),"gtidmac", 0, KIRKWOOD_IDMAC_BASE,? },
338 { KIRKWOOD(88F6281),"gttwsi", 0, MVSOC_TWSI_BASE, KIRKWOOD_IRQ_TWSI },
339 { KIRKWOOD(88F6281),"mvcesa", 0, KIRKWOOD_CESA_BASE,KIRKWOOD_IRQ_SECURITYINT},
340 { KIRKWOOD(88F6281),"mvgbec", 0, KIRKWOOD_GBE0_BASE,IRQ_DEFAULT },
341 { KIRKWOOD(88F6281),"mvgbec", 1, KIRKWOOD_GBE1_BASE,IRQ_DEFAULT },
342 { KIRKWOOD(88F6281),"mvpex", 0, MVSOC_PEX_BASE, KIRKWOOD_IRQ_PEX0INT },
343 { KIRKWOOD(88F6281),"mvsata", 0, KIRKWOOD_SATAHC_BASE,KIRKWOOD_IRQ_SATA },
344 { KIRKWOOD(88F6281),"mvsdio", 0, KIRKWOOD_SDIO_BASE,KIRKWOOD_IRQ_SDIOINT },
345 #endif
346
347 #if defined(MV78XX0)
348 { MV78XX0(MV78100), "mvsoctmr",0,MVSOC_TMR_BASE, IRQ_DEFAULT },
349 { MV78XX0(MV78100), "mvsocgpp",0,MVSOC_GPP_BASE, MV78XX0_IRQ_GPIOLO7_0 },
350 { MV78XX0(MV78100), "com", 0, MVSOC_COM0_BASE, MV78XX0_IRQ_UART0INT },
351 { MV78XX0(MV78100), "com", 1, MVSOC_COM1_BASE, MV78XX0_IRQ_UART1INT },
352 { MV78XX0(MV78100), "gttwsi",0,MVSOC_TWSI_BASE, MV78XX0_IRQ_TWSI },
353 :
354
355 { MV78XX0(MV78200), "mvsoctmr",0,MVSOC_TMR_BASE, IRQ_DEFAULT },
356 { MV78XX0(MV78200), "mvsocgpp",0,MVSOC_GPP_BASE, MV78XX0_IRQ_GPIOLO7_0 },
357 { MV78XX0(MV78200), "com", 0, MVSOC_COM0_BASE, MV78XX0_IRQ_UART0INT },
358 { MV78XX0(MV78200), "com", 1, MVSOC_COM1_BASE, MV78XX0_IRQ_UART1INT },
359 { MV78XX0(MV78200), "gttwsi",0,MVSOC_TWSI_BASE, MV78XX0_IRQ_TWSI },
360 :
361 #endif
362 };
363
364
365 CFATTACH_DECL_NEW(mvsoc, sizeof(struct mvsoc_softc),
366 mvsoc_match, mvsoc_attach, NULL, NULL);
367
368 /* ARGSUSED */
369 static int
370 mvsoc_match(device_t parent, struct cfdata *match, void *aux)
371 {
372
373 return 1;
374 }
375
376 /* ARGSUSED */
377 static void
378 mvsoc_attach(device_t parent, device_t self, void *aux)
379 {
380 struct mvsoc_softc *sc = device_private(self);
381 struct marvell_attach_args mva;
382 uint16_t model;
383 uint8_t rev;
384 int i;
385
386 sc->sc_dev = self;
387 sc->sc_iot = &mvsoc_bs_tag;
388 sc->sc_addr = regbase;
389 sc->sc_dmat = &mvsoc_bus_dma_tag;
390 if (bus_space_map(sc->sc_iot, sc->sc_addr, 0x100000, 0, &sc->sc_ioh) !=
391 0) {
392 aprint_error_dev(self, "can't map registers\n");
393 return;
394 }
395
396 model = mvsoc_model();
397 rev = mvsoc_rev();
398 for (i = 0; i < __arraycount(nametbl); i++)
399 if (nametbl[i].model == model && nametbl[i].rev == rev)
400 break;
401 if (i >= __arraycount(nametbl))
402 panic("unknown SoC: model 0x%04x, rev 0x%02x", model, rev);
403
404 aprint_normal(": Marvell %s %s%s %s\n",
405 nametbl[i].modelstr,
406 nametbl[i].revstr != NULL ? "Rev. " : "",
407 nametbl[i].revstr != NULL ? nametbl[i].revstr : "",
408 nametbl[i].typestr);
409 aprint_normal("%s: CPU Clock %d.%03d MHz"
410 " SysClock %d.%03d MHz TClock %d.%03d MHz\n",
411 device_xname(self),
412 mvPclk / 1000000, (mvPclk / 1000) % 1000,
413 mvSysclk / 1000000, (mvSysclk / 1000) % 1000,
414 mvTclk / 1000000, (mvTclk / 1000) % 1000);
415 aprint_naive("\n");
416
417 mvsoc_intr_init();
418
419 for (i = 0; i < __arraycount(mvsoc_periphs); i++) {
420 if (mvsoc_periphs[i].model != model)
421 continue;
422
423 mva.mva_name = mvsoc_periphs[i].name;
424 mva.mva_model = model;
425 mva.mva_revision = rev;
426 mva.mva_iot = sc->sc_iot;
427 mva.mva_ioh = sc->sc_ioh;
428 mva.mva_unit = mvsoc_periphs[i].unit;
429 mva.mva_addr = sc->sc_addr;
430 mva.mva_offset = mvsoc_periphs[i].offset;
431 mva.mva_size = 0;
432 mva.mva_dmat = sc->sc_dmat;
433 mva.mva_irq = mvsoc_periphs[i].irq;
434
435 config_found_sm_loc(sc->sc_dev, "mvsoc", NULL, &mva,
436 mvsoc_print, mvsoc_search);
437 }
438 }
439
440 static int
441 mvsoc_print(void *aux, const char *pnp)
442 {
443 struct marvell_attach_args *mva = aux;
444
445 if (pnp)
446 aprint_normal("%s at %s unit %d",
447 mva->mva_name, pnp, mva->mva_unit);
448 else {
449 if (mva->mva_unit != MVA_UNIT_DEFAULT)
450 aprint_normal(" unit %d", mva->mva_unit);
451 if (mva->mva_offset != MVA_OFFSET_DEFAULT) {
452 aprint_normal(" offset 0x%04lx", mva->mva_offset);
453 if (mva->mva_size > 0)
454 aprint_normal("-0x%04lx",
455 mva->mva_offset + mva->mva_size - 1);
456 }
457 if (mva->mva_irq != MVA_IRQ_DEFAULT)
458 aprint_normal(" irq %d", mva->mva_irq);
459 }
460
461 return UNCONF;
462 }
463
464 /* ARGSUSED */
465 static int
466 mvsoc_search(device_t parent, cfdata_t cf, const int *ldesc, void *aux)
467 {
468
469 return config_match(parent, cf, aux);
470 }
471
472 /* ARGSUSED */
473 int
474 marvell_winparams_by_tag(device_t dev, int tag, int *target, int *attribute,
475 uint64_t *base, uint32_t *size)
476 {
477 uint32_t base32;
478 int rv;
479
480 rv = mvsoc_target(tag, target, attribute, &base32, size);
481 *base = base32;
482 if (rv == -1)
483 return -1;
484 return 0;
485 }
486
487
488 /*
489 * These functions is called before bus_space is initialized.
490 */
491
492 void
493 mvsoc_bootstrap(bus_addr_t iobase)
494 {
495
496 regbase = iobase;
497 dsc_base = iobase + MVSOC_DSC_BASE;
498 mlmb_base = iobase + MVSOC_MLMB_BASE;
499 pex_base = iobase + MVSOC_PEX_BASE;
500 }
501
502 /*
503 * We can read register of PCI configurations from (MVSOC_PEX_BASE + 0).
504 */
505 uint16_t
506 mvsoc_model(void)
507 {
508 /*
509 * We read product-id from vendor/device register of PCI-Express.
510 */
511 uint32_t reg;
512 uint16_t model;
513
514 KASSERT(regbase != 0xffffffff);
515
516 reg = *(volatile uint32_t *)(pex_base + PCI_ID_REG);
517 model = PCI_PRODUCT(reg);
518
519 #if defined(ORION)
520 if (model == PCI_PRODUCT_MARVELL_88F5182) {
521 reg = *(volatile uint32_t *)(regbase + ORION_PMI_BASE +
522 ORION_PMI_SAMPLE_AT_RESET);
523 if ((reg & ORION_PMISMPL_TCLK_MASK) == 0)
524 model = PCI_PRODUCT_MARVELL_88F5082;
525 }
526 #endif
527
528 return model;
529 }
530
531 uint8_t
532 mvsoc_rev(void)
533 {
534 uint32_t reg;
535 uint8_t rev;
536
537 KASSERT(regbase != 0xffffffff);
538
539 reg = *(volatile uint32_t *)(pex_base + PCI_CLASS_REG);
540 rev = PCI_REVISION(reg);
541
542 return rev;
543 }
544
545
546 int
547 mvsoc_target(int tag, uint32_t *target, uint32_t *attr, uint32_t *base,
548 uint32_t *size)
549 {
550 int i;
551
552 KASSERT(regbase != 0xffffffff);
553
554 if (tag == MVSOC_TAG_INTERNALREG) {
555 if (target != NULL)
556 *target = 0;
557 if (attr != NULL)
558 *attr = 0;
559 if (base != NULL)
560 *base = read_mlmbreg(MVSOC_MLMB_IRBAR) &
561 MVSOC_MLMB_IRBAR_BASE_MASK;
562 if (size != NULL)
563 *size = 0;
564
565 return 0;
566 }
567
568 /* sanity check */
569 for (i = 0; i < __arraycount(mvsoc_tags); i++)
570 if (mvsoc_tags[i].tag == tag)
571 break;
572 if (i >= __arraycount(mvsoc_tags))
573 return -1;
574
575 if (target != NULL)
576 *target = mvsoc_tags[i].target;
577 if (attr != NULL)
578 *attr = mvsoc_tags[i].attr;
579
580 if (mvsoc_tags[i].target == MVSOC_UNITID_DDR) {
581 /*
582 * Read DDR SDRAM Controller Address Decode Registers
583 */
584 uint32_t baseaddrreg, sizereg;
585 int cs = 0;
586
587 switch (mvsoc_tags[i].attr) {
588 case MARVELL_ATTR_SDRAM_CS0:
589 cs = 0;
590 break;
591 case MARVELL_ATTR_SDRAM_CS1:
592 cs = 1;
593 break;
594 case MARVELL_ATTR_SDRAM_CS2:
595 cs = 2;
596 break;
597 case MARVELL_ATTR_SDRAM_CS3:
598 cs = 3;
599 break;
600 }
601 sizereg = *(volatile uint32_t *)(dsc_base + MVSOC_DSC_CSSR(cs));
602 if (sizereg & MVSOC_DSC_CSSR_WINEN) {
603 baseaddrreg = *(volatile uint32_t *)(dsc_base +
604 MVSOC_DSC_CSBAR(cs));
605
606 if (base != NULL)
607 *base = baseaddrreg & MVSOC_DSC_CSBAR_BASE_MASK;
608 if (size != NULL)
609 *size = (sizereg & MVSOC_DSC_CSSR_SIZE_MASK) +
610 (~MVSOC_DSC_CSSR_SIZE_MASK + 1);
611 } else {
612 if (base != NULL)
613 *base = 0;
614 if (size != NULL)
615 *size = 0;
616 }
617 return 0;
618 } else {
619 /*
620 * Read CPU Address Map Registers
621 */
622 uint32_t basereg, ctrlreg, ta, tamask;
623
624 ta = MVSOC_MLMB_WCR_TARGET(mvsoc_tags[i].target) |
625 MVSOC_MLMB_WCR_ATTR(mvsoc_tags[i].attr);
626 tamask = MVSOC_MLMB_WCR_TARGET(MVSOC_UNITID_MASK) |
627 MVSOC_MLMB_WCR_ATTR(MARVELL_ATTR_MASK);
628
629 if (base != NULL)
630 *base = 0;
631 if (size != NULL)
632 *size = 0;
633
634 for (i = 0; i < nwindow; i++) {
635 ctrlreg = read_mlmbreg(MVSOC_MLMB_WCR(i));
636 if ((ctrlreg & tamask) != ta)
637 continue;
638 if (ctrlreg & MVSOC_MLMB_WCR_WINEN) {
639 basereg = read_mlmbreg(MVSOC_MLMB_WBR(i));
640
641 if (base != NULL)
642 *base =
643 basereg & MVSOC_MLMB_WBR_BASE_MASK;
644 if (size != NULL)
645 *size = (ctrlreg &
646 MVSOC_MLMB_WCR_SIZE_MASK) +
647 (~MVSOC_MLMB_WCR_SIZE_MASK + 1);
648 }
649 break;
650 }
651 return i;
652 }
653 }
654