blob: 9adfefaf6aac9c89cfec7e86429da150aabace33 [file] [log] [blame]
Heiko Schocherc2485362008-10-15 09:39:08 +02001/*
2 * (C) Copyright 2008
3 * Heiko Schocher, DENX Software Engineering, hs@denx.de.
4 *
5 * See file CREDITS for list of people who contributed to this
6 * project.
7 *
8 * This program is free software; you can redistribute it and/or
9 * modify it under the terms of the GNU General Public License as
10 * published by the Free Software Foundation; either version 2 of
11 * the License, or (at your option) any later version.
12 *
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
17 *
18 * You should have received a copy of the GNU General Public License
19 * along with this program; if not, write to the Free Software
20 * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
21 * MA 02111-1307 USA
22 */
23
24#include <common.h>
Holger Brunck489337f2011-05-02 22:56:55 +000025#if defined(CONFIG_KM82XX)
Heiko Schocherc2485362008-10-15 09:39:08 +020026#include <mpc8260.h>
Heiko Schocher210c8c02008-11-21 08:29:40 +010027#endif
Heiko Schocherc2485362008-10-15 09:39:08 +020028#include <ioports.h>
Holger Bruncka9417ce2011-05-04 01:47:30 +000029#include <command.h>
Heiko Schocherc2485362008-10-15 09:39:08 +020030#include <malloc.h>
Heiko Schocher8f64da72008-10-15 09:41:00 +020031#include <hush.h>
Heiko Schocher210c8c02008-11-21 08:29:40 +010032#include <net.h>
Heiko Schocher62ddcf02010-02-18 08:08:25 +010033#include <netdev.h>
Heiko Schocher210c8c02008-11-21 08:29:40 +010034#include <asm/io.h>
Heiko Schocherc2485362008-10-15 09:39:08 +020035
36#if defined(CONFIG_OF_BOARD_SETUP) && defined(CONFIG_OF_LIBFDT)
37#include <libfdt.h>
38#endif
39
Heiko Schocher67fa8c22010-02-22 16:43:02 +053040#include "../common/common.h"
Heiko Schocherc2485362008-10-15 09:39:08 +020041#if defined(CONFIG_HARD_I2C) || defined(CONFIG_SOFT_I2C)
42#include <i2c.h>
Heiko Schocherc2485362008-10-15 09:39:08 +020043
Heiko Schocher6c11aea2011-03-08 10:51:15 +010044static void i2c_write_start_seq(void);
45static int i2c_make_abort(void);
Heiko Schocherf1fef1d2010-04-26 13:07:28 +020046DECLARE_GLOBAL_DATA_PTR;
Heiko Schocher6c11aea2011-03-08 10:51:15 +010047
Heiko Schocherb11f53f2011-03-15 16:52:29 +010048int ivm_calc_crc(unsigned char *buf, int len)
Heiko Schocher8f64da72008-10-15 09:41:00 +020049{
50 const unsigned short crc_tab[16] = {
51 0x0000, 0xCC01, 0xD801, 0x1400,
52 0xF001, 0x3C00, 0x2800, 0xE401,
53 0xA001, 0x6C00, 0x7800, 0xB401,
54 0x5000, 0x9C01, 0x8801, 0x4400};
55
56 unsigned short crc = 0; /* final result */
57 unsigned short r1 = 0; /* temp */
58 unsigned char byte = 0; /* input buffer */
59 int i;
60
61 /* calculate CRC from array data */
62 for (i = 0; i < len; i++) {
63 byte = buf[i];
64
65 /* lower 4 bits */
66 r1 = crc_tab[crc & 0xF];
67 crc = ((crc) >> 4) & 0x0FFF;
68 crc = crc ^ r1 ^ crc_tab[byte & 0xF];
69
70 /* upper 4 bits */
71 r1 = crc_tab[crc & 0xF];
72 crc = (crc >> 4) & 0x0FFF;
73 crc = crc ^ r1 ^ crc_tab[(byte >> 4) & 0xF];
74 }
75 return crc;
76}
77
Heiko Schocherf1fef1d2010-04-26 13:07:28 +020078/*
79 * Set Keymile specific environment variables
80 * Currently only some memory layout variables are calculated here
81 * ... ------------------------------------------------
82 * ... |@rootfsaddr |@pnvramaddr |@varaddr |@reserved |@END_OF_RAM
83 * ... |<------------------- pram ------------------->|
84 * ... ------------------------------------------------
85 * @END_OF_RAM: denotes the RAM size
86 * @pnvramaddr: Startadress of pseudo non volatile RAM in hex
87 * @pram : preserved ram size in k
88 * @varaddr : startadress for /var mounted into RAM
89 */
90int set_km_env(void)
91{
92 uchar buf[32];
93 unsigned int pnvramaddr;
94 unsigned int pram;
95 unsigned int varaddr;
96
97 pnvramaddr = gd->ram_size - CONFIG_KM_RESERVED_PRAM - CONFIG_KM_PHRAM
98 - CONFIG_KM_PNVRAM;
99 sprintf((char *)buf, "0x%x", pnvramaddr);
100 setenv("pnvramaddr", (char *)buf);
101
102 pram = (CONFIG_KM_RESERVED_PRAM + CONFIG_KM_PHRAM + CONFIG_KM_PNVRAM) /
103 0x400;
104 sprintf((char *)buf, "0x%x", pram);
105 setenv("pram", (char *)buf);
106
107 varaddr = gd->ram_size - CONFIG_KM_RESERVED_PRAM - CONFIG_KM_PHRAM;
108 sprintf((char *)buf, "0x%x", varaddr);
109 setenv("varaddr", (char *)buf);
110 return 0;
111}
112
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100113static int ivm_set_value(char *name, char *value)
Heiko Schocher8f64da72008-10-15 09:41:00 +0200114{
115 char tempbuf[256];
116
117 if (value != NULL) {
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100118 sprintf(tempbuf, "%s=%s", name, value);
119 return set_local_var(tempbuf, 0);
Heiko Schocher8f64da72008-10-15 09:41:00 +0200120 } else {
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100121 unset_local_var(name);
Heiko Schocher8f64da72008-10-15 09:41:00 +0200122 }
123 return 0;
124}
125
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100126static int ivm_get_value(unsigned char *buf, int len, char *name, int off,
Heiko Schocher8f64da72008-10-15 09:41:00 +0200127 int check)
128{
129 unsigned short val;
130 unsigned char valbuf[30];
131
132 if ((buf[off + 0] != buf[off + 2]) &&
133 (buf[off + 2] != buf[off + 4])) {
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100134 printf("%s Error corrupted %s\n", __func__, name);
Heiko Schocher8f64da72008-10-15 09:41:00 +0200135 val = -1;
136 } else {
137 val = buf[off + 0] + (buf[off + 1] << 8);
138 if ((val == 0) && (check == 1))
139 val = -1;
140 }
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100141 sprintf((char *)valbuf, "%x", val);
142 ivm_set_value(name, (char *)valbuf);
Heiko Schocher8f64da72008-10-15 09:41:00 +0200143 return val;
144}
145
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100146#define INV_BLOCKSIZE 0x100
147#define INV_DATAADDRESS 0x21
148#define INVENTORYDATASIZE (INV_BLOCKSIZE - INV_DATAADDRESS - 3)
Heiko Schocher8f64da72008-10-15 09:41:00 +0200149
150#define IVM_POS_SHORT_TEXT 0
151#define IVM_POS_MANU_ID 1
152#define IVM_POS_MANU_SERIAL 2
153#define IVM_POS_PART_NUMBER 3
154#define IVM_POS_BUILD_STATE 4
155#define IVM_POS_SUPPLIER_PART_NUMBER 5
156#define IVM_POS_DELIVERY_DATE 6
157#define IVM_POS_SUPPLIER_BUILD_STATE 7
158#define IVM_POS_CUSTOMER_ID 8
159#define IVM_POS_CUSTOMER_PROD_ID 9
160#define IVM_POS_HISTORY 10
161#define IVM_POS_SYMBOL_ONLY 11
162
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100163static char convert_char(char c)
Heiko Schocher8f64da72008-10-15 09:41:00 +0200164{
165 return (c < ' ' || c > '~') ? '.' : c;
166}
167
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100168static int ivm_findinventorystring(int type,
Heiko Schocher8f64da72008-10-15 09:41:00 +0200169 unsigned char* const string,
170 unsigned long maxlen,
171 unsigned char *buf)
172{
173 int xcode = 0;
174 unsigned long cr = 0;
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100175 unsigned long addr = INV_DATAADDRESS;
Heiko Schocher8f64da72008-10-15 09:41:00 +0200176 unsigned long size = 0;
177 unsigned long nr = type;
178 int stop = 0; /* stop on semicolon */
179
180 memset(string, '\0', maxlen);
181 switch (type) {
182 case IVM_POS_SYMBOL_ONLY:
183 nr = 0;
184 stop= 1;
185 break;
186 default:
187 nr = type;
188 stop = 0;
189 }
190
191 /* Look for the requested number of CR. */
192 while ((cr != nr) && (addr < INVENTORYDATASIZE)) {
193 if ((buf[addr] == '\r')) {
194 cr++;
195 }
196 addr++;
197 }
198
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100199 /*
200 * the expected number of CR was found until the end of the IVM
201 * content --> fill string
202 */
Heiko Schocher8f64da72008-10-15 09:41:00 +0200203 if (addr < INVENTORYDATASIZE) {
204 /* Copy the IVM string in the corresponding string */
205 for (; (buf[addr] != '\r') &&
206 ((buf[addr] != ';') || (!stop)) &&
207 (size < (maxlen - 1) &&
208 (addr < INVENTORYDATASIZE)); addr++)
209 {
210 size += sprintf((char *)string + size, "%c",
211 convert_char (buf[addr]));
212 }
213
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100214 /*
215 * copy phase is done: check if everything is ok. If not,
Heiko Schocher8f64da72008-10-15 09:41:00 +0200216 * the inventory data is most probably corrupted: tell
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100217 * the world there is a problem!
218 */
Heiko Schocher8f64da72008-10-15 09:41:00 +0200219 if (addr == INVENTORYDATASIZE) {
220 xcode = -1;
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100221 printf("Error end of string not found\n");
Heiko Schocher8f64da72008-10-15 09:41:00 +0200222 } else if ((size >= (maxlen - 1)) &&
223 (buf[addr] != '\r')) {
224 xcode = -1;
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100225 printf("string too long till next CR\n");
Heiko Schocher8f64da72008-10-15 09:41:00 +0200226 }
227 } else {
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100228 /*
229 * some CR are missing...
230 * the inventory data is most probably corrupted
231 */
Heiko Schocher8f64da72008-10-15 09:41:00 +0200232 xcode = -1;
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100233 printf("not enough cr found\n");
Heiko Schocher8f64da72008-10-15 09:41:00 +0200234 }
235 return xcode;
236}
237
238#define GET_STRING(name, which, len) \
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100239 if (ivm_findinventorystring(which, valbuf, len, buf) == 0) { \
240 ivm_set_value(name, (char *)valbuf); \
Heiko Schocher8f64da72008-10-15 09:41:00 +0200241 }
242
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100243static int ivm_check_crc(unsigned char *buf, int block)
Heiko Schocher8f64da72008-10-15 09:41:00 +0200244{
245 unsigned long crc;
246 unsigned long crceeprom;
247
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100248 crc = ivm_calc_crc(buf, CONFIG_SYS_IVM_EEPROM_PAGE_LEN - 2);
Jean-Christophe PLAGNIOL-VILLARD6d0f6bc2008-10-16 15:01:15 +0200249 crceeprom = (buf[CONFIG_SYS_IVM_EEPROM_PAGE_LEN - 1] + \
250 buf[CONFIG_SYS_IVM_EEPROM_PAGE_LEN - 2] * 256);
Heiko Schocher8f64da72008-10-15 09:41:00 +0200251 if (crc != crceeprom) {
Heiko Schocherdc71b242009-07-09 12:04:18 +0200252 if (block == 0)
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100253 printf("Error CRC Block: %d EEprom: calculated: \
Heiko Schocherdc71b242009-07-09 12:04:18 +0200254 %lx EEprom: %lx\n", block, crc, crceeprom);
Heiko Schocher8f64da72008-10-15 09:41:00 +0200255 return -1;
256 }
257 return 0;
258}
259
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100260static int ivm_analyze_block2(unsigned char *buf, int len)
Heiko Schocher8f64da72008-10-15 09:41:00 +0200261{
Jean-Christophe PLAGNIOL-VILLARD6d0f6bc2008-10-16 15:01:15 +0200262 unsigned char valbuf[CONFIG_SYS_IVM_EEPROM_PAGE_LEN];
Heiko Schocher8f64da72008-10-15 09:41:00 +0200263 unsigned long count;
264
265 /* IVM_MacAddress */
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100266 sprintf((char *)valbuf, "%pM", buf);
267 ivm_set_value("IVM_MacAddress", (char *)valbuf);
Heiko Schocher0d015202011-01-06 10:25:26 +0100268 /* if an offset is defined, add it */
269#if defined(CONFIG_PIGGY_MAC_ADRESS_OFFSET)
270 if (CONFIG_PIGGY_MAC_ADRESS_OFFSET > 0) {
271 unsigned long val = (buf[4] << 16) + (buf[5] << 8) + buf[6];
272
273 val += CONFIG_PIGGY_MAC_ADRESS_OFFSET;
274 buf[4] = (val >> 16) & 0xff;
275 buf[5] = (val >> 8) & 0xff;
276 buf[6] = val & 0xff;
277 sprintf((char *)valbuf, "%pM", buf);
278 }
279#endif
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100280 if (getenv("ethaddr") == NULL)
281 setenv((char *)"ethaddr", (char *)valbuf);
Heiko Schocher0d015202011-01-06 10:25:26 +0100282
Heiko Schocher8f64da72008-10-15 09:41:00 +0200283 /* IVM_MacCount */
284 count = (buf[10] << 24) +
285 (buf[11] << 16) +
286 (buf[12] << 8) +
287 buf[13];
288 if (count == 0xffffffff)
289 count = 1;
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100290 sprintf((char *)valbuf, "%lx", count);
291 ivm_set_value("IVM_MacCount", (char *)valbuf);
Heiko Schocher8f64da72008-10-15 09:41:00 +0200292 return 0;
293}
294
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100295int ivm_analyze_eeprom(unsigned char *buf, int len)
Heiko Schocher8f64da72008-10-15 09:41:00 +0200296{
297 unsigned short val;
Jean-Christophe PLAGNIOL-VILLARD6d0f6bc2008-10-16 15:01:15 +0200298 unsigned char valbuf[CONFIG_SYS_IVM_EEPROM_PAGE_LEN];
Heiko Schocher8f64da72008-10-15 09:41:00 +0200299 unsigned char *tmp;
300
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100301 if (ivm_check_crc(buf, 0) != 0)
Heiko Schocher8f64da72008-10-15 09:41:00 +0200302 return -1;
303
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100304 ivm_get_value(buf, CONFIG_SYS_IVM_EEPROM_PAGE_LEN,
305 "IVM_BoardId", 0, 1);
306 val = ivm_get_value(buf, CONFIG_SYS_IVM_EEPROM_PAGE_LEN,
307 "IVM_HWKey", 6, 1);
Heiko Schocher8f64da72008-10-15 09:41:00 +0200308 if (val != 0xffff) {
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100309 sprintf((char *)valbuf, "%x", ((val / 100) % 10));
310 ivm_set_value("IVM_HWVariant", (char *)valbuf);
311 sprintf((char *)valbuf, "%x", (val % 100));
312 ivm_set_value("IVM_HWVersion", (char *)valbuf);
Heiko Schocher8f64da72008-10-15 09:41:00 +0200313 }
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100314 ivm_get_value(buf, CONFIG_SYS_IVM_EEPROM_PAGE_LEN,
315 "IVM_Functions", 12, 0);
Heiko Schocher8f64da72008-10-15 09:41:00 +0200316
317 GET_STRING("IVM_Symbol", IVM_POS_SYMBOL_ONLY, 8)
318 GET_STRING("IVM_DeviceName", IVM_POS_SHORT_TEXT, 64)
319 tmp = (unsigned char *) getenv("IVM_DeviceName");
320 if (tmp) {
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100321 int len = strlen((char *)tmp);
Heiko Schocher8f64da72008-10-15 09:41:00 +0200322 int i = 0;
323
324 while (i < len) {
325 if (tmp[i] == ';') {
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100326 ivm_set_value("IVM_ShortText",
327 (char *)&tmp[i + 1]);
Heiko Schocher8f64da72008-10-15 09:41:00 +0200328 break;
329 }
330 i++;
331 }
332 if (i >= len)
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100333 ivm_set_value("IVM_ShortText", NULL);
Heiko Schocher8f64da72008-10-15 09:41:00 +0200334 } else {
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100335 ivm_set_value("IVM_ShortText", NULL);
Heiko Schocher8f64da72008-10-15 09:41:00 +0200336 }
337 GET_STRING("IVM_ManufacturerID", IVM_POS_MANU_ID, 32)
338 GET_STRING("IVM_ManufacturerSerialNumber", IVM_POS_MANU_SERIAL, 20)
339 GET_STRING("IVM_ManufacturerPartNumber", IVM_POS_PART_NUMBER, 32)
340 GET_STRING("IVM_ManufacturerBuildState", IVM_POS_BUILD_STATE, 32)
341 GET_STRING("IVM_SupplierPartNumber", IVM_POS_SUPPLIER_PART_NUMBER, 32)
342 GET_STRING("IVM_DelieveryDate", IVM_POS_DELIVERY_DATE, 32)
343 GET_STRING("IVM_SupplierBuildState", IVM_POS_SUPPLIER_BUILD_STATE, 32)
344 GET_STRING("IVM_CustomerID", IVM_POS_CUSTOMER_ID, 32)
345 GET_STRING("IVM_CustomerProductID", IVM_POS_CUSTOMER_PROD_ID, 32)
346
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100347 if (ivm_check_crc(&buf[CONFIG_SYS_IVM_EEPROM_PAGE_LEN * 2], 2) != 0)
Heiko Schocherdc71b242009-07-09 12:04:18 +0200348 return 0;
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100349 ivm_analyze_block2(&buf[CONFIG_SYS_IVM_EEPROM_PAGE_LEN * 2],
350 CONFIG_SYS_IVM_EEPROM_PAGE_LEN);
Heiko Schocher8f64da72008-10-15 09:41:00 +0200351
352 return 0;
353}
354
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100355int ivm_read_eeprom(void)
Heiko Schocher8f64da72008-10-15 09:41:00 +0200356{
Heiko Schocher1b6275d2009-03-12 07:37:34 +0100357#if defined(CONFIG_I2C_MUX)
Heiko Schocher8f64da72008-10-15 09:41:00 +0200358 I2C_MUX_DEVICE *dev = NULL;
Heiko Schocher1b6275d2009-03-12 07:37:34 +0100359#endif
Jean-Christophe PLAGNIOL-VILLARD6d0f6bc2008-10-16 15:01:15 +0200360 uchar i2c_buffer[CONFIG_SYS_IVM_EEPROM_MAX_LEN];
Heiko Schocher8f64da72008-10-15 09:41:00 +0200361 uchar *buf;
Jean-Christophe PLAGNIOL-VILLARD6d0f6bc2008-10-16 15:01:15 +0200362 unsigned dev_addr = CONFIG_SYS_IVM_EEPROM_ADR;
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100363 int ret;
Heiko Schocher8f64da72008-10-15 09:41:00 +0200364
Heiko Schocher1b6275d2009-03-12 07:37:34 +0100365#if defined(CONFIG_I2C_MUX)
Heiko Schocher8f64da72008-10-15 09:41:00 +0200366 /* First init the Bus, select the Bus */
Jean-Christophe PLAGNIOL-VILLARD6d0f6bc2008-10-16 15:01:15 +0200367#if defined(CONFIG_SYS_I2C_IVM_BUS)
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100368 dev = i2c_mux_ident_muxstring((uchar *)CONFIG_SYS_I2C_IVM_BUS);
Heiko Schocher8f64da72008-10-15 09:41:00 +0200369#else
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100370 buf = (unsigned char *) getenv("EEprom_ivm");
Heiko Schocher8f64da72008-10-15 09:41:00 +0200371 if (buf != NULL)
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100372 dev = i2c_mux_ident_muxstring(buf);
Heiko Schocher8f64da72008-10-15 09:41:00 +0200373#endif
374 if (dev == NULL) {
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100375 printf("Error couldnt add Bus for IVM\n");
Heiko Schocher8f64da72008-10-15 09:41:00 +0200376 return -1;
377 }
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100378 i2c_set_bus_num(dev->busid);
Heiko Schocher1b6275d2009-03-12 07:37:34 +0100379#endif
Heiko Schocher8f64da72008-10-15 09:41:00 +0200380
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100381 buf = (unsigned char *) getenv("EEprom_ivm_addr");
Heiko Schocher8f64da72008-10-15 09:41:00 +0200382 if (buf != NULL)
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100383 dev_addr = simple_strtoul((char *)buf, NULL, 16);
Heiko Schocher8f64da72008-10-15 09:41:00 +0200384
Heiko Schocher6c11aea2011-03-08 10:51:15 +0100385 /* add deblocking here */
386 i2c_make_abort();
387
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100388 ret = i2c_read(dev_addr, 0, 1, i2c_buffer,
Heiko Schocher6c11aea2011-03-08 10:51:15 +0100389 CONFIG_SYS_IVM_EEPROM_MAX_LEN);
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100390 if (ret != 0) {
Heiko Schocher8f64da72008-10-15 09:41:00 +0200391 printf ("Error reading EEprom\n");
392 return -2;
393 }
394
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100395 return ivm_analyze_eeprom(i2c_buffer, CONFIG_SYS_IVM_EEPROM_MAX_LEN);
Heiko Schocher8f64da72008-10-15 09:41:00 +0200396}
397
Jean-Christophe PLAGNIOL-VILLARD6d0f6bc2008-10-16 15:01:15 +0200398#if defined(CONFIG_SYS_I2C_INIT_BOARD)
Heiko Schocher6c11aea2011-03-08 10:51:15 +0100399#define DELAY_ABORT_SEQ 62 /* @200kHz 9 clocks = 44us, 62us is ok */
Jean-Christophe PLAGNIOL-VILLARD6d0f6bc2008-10-16 15:01:15 +0200400#define DELAY_HALF_PERIOD (500 / (CONFIG_SYS_I2C_SPEED / 1000))
Heiko Schocherc2485362008-10-15 09:39:08 +0200401
Holger Brunck489337f2011-05-02 22:56:55 +0000402#if defined(CONFIG_KM_82XX)
Heiko Schocherc2485362008-10-15 09:39:08 +0200403#define SDA_MASK 0x00010000
404#define SCL_MASK 0x00020000
Holger Brunck489337f2011-05-02 22:56:55 +0000405void set_pin(int state, unsigned long mask)
Heiko Schocherc2485362008-10-15 09:39:08 +0200406{
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100407 ioport_t *iop = ioport_addr((immap_t *)CONFIG_SYS_IMMR, 3);
Heiko Schocherc2485362008-10-15 09:39:08 +0200408
409 if (state)
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100410 setbits_be32(&iop->pdat, mask);
Heiko Schocherc2485362008-10-15 09:39:08 +0200411 else
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100412 clrbits_be32(&iop->pdat, mask);
Heiko Schocherc2485362008-10-15 09:39:08 +0200413
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100414 setbits_be32(&iop->pdir, mask);
Heiko Schocherc2485362008-10-15 09:39:08 +0200415}
416
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100417static int get_pin(unsigned long mask)
Heiko Schocherc2485362008-10-15 09:39:08 +0200418{
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100419 ioport_t *iop = ioport_addr((immap_t *)CONFIG_SYS_IMMR, 3);
Heiko Schocherc2485362008-10-15 09:39:08 +0200420
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100421 clrbits_be32(&iop->pdir, mask);
422 return 0 != (in_be32(&iop->pdat) & mask);
Heiko Schocherc2485362008-10-15 09:39:08 +0200423}
424
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100425static void set_sda(int state)
Heiko Schocherc2485362008-10-15 09:39:08 +0200426{
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100427 set_pin(state, SDA_MASK);
Heiko Schocherc2485362008-10-15 09:39:08 +0200428}
429
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100430static void set_scl(int state)
Heiko Schocherc2485362008-10-15 09:39:08 +0200431{
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100432 set_pin(state, SCL_MASK);
Heiko Schocherc2485362008-10-15 09:39:08 +0200433}
434
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100435static int get_sda(void)
Heiko Schocherc2485362008-10-15 09:39:08 +0200436{
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100437 return get_pin(SDA_MASK);
Heiko Schocherc2485362008-10-15 09:39:08 +0200438}
439
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100440static int get_scl(void)
Heiko Schocherc2485362008-10-15 09:39:08 +0200441{
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100442 return get_pin(SCL_MASK);
Heiko Schocherc2485362008-10-15 09:39:08 +0200443}
444
445#if defined(CONFIG_HARD_I2C)
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100446static void setports(int gpio)
Heiko Schocherc2485362008-10-15 09:39:08 +0200447{
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100448 ioport_t *iop = ioport_addr((immap_t *)CONFIG_SYS_IMMR, 3);
Heiko Schocherc2485362008-10-15 09:39:08 +0200449
450 if (gpio) {
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100451 clrbits_be32(&iop->ppar, (SDA_MASK | SCL_MASK));
452 clrbits_be32(&iop->podr, (SDA_MASK | SCL_MASK));
Heiko Schocherc2485362008-10-15 09:39:08 +0200453 } else {
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100454 setbits_be32(&iop->ppar, (SDA_MASK | SCL_MASK));
455 clrbits_be32(&iop->pdir, (SDA_MASK | SCL_MASK));
456 setbits_be32(&iop->podr, (SDA_MASK | SCL_MASK));
Heiko Schocherc2485362008-10-15 09:39:08 +0200457 }
458}
459#endif
460#endif
461
Heiko Schocher62ddcf02010-02-18 08:08:25 +0100462#if !defined(CONFIG_MPC83xx)
Heiko Schocher6c11aea2011-03-08 10:51:15 +0100463static void i2c_write_start_seq(void)
Heiko Schocherc2485362008-10-15 09:39:08 +0200464{
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100465 set_sda(1);
466 udelay(DELAY_HALF_PERIOD);
467 set_scl(1);
468 udelay(DELAY_HALF_PERIOD);
469 set_sda(0);
470 udelay(DELAY_HALF_PERIOD);
471 set_scl(0);
472 udelay(DELAY_HALF_PERIOD);
Heiko Schocherc2485362008-10-15 09:39:08 +0200473}
474
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100475/*
476 * I2C is a synchronous protocol and resets of the processor in the middle
477 * of an access can block the I2C Bus until a powerdown of the full unit is
478 * done. This function toggles the SCL until the SCL and SCA line are
479 * released, but max. 16 times, after this a I2C start-sequence is sent.
480 * This I2C Deblocking mechanism was developed by Keymile in association
481 * with Anatech and Atmel in 1998.
Heiko Schocherc2485362008-10-15 09:39:08 +0200482 */
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100483static int i2c_make_abort(void)
Heiko Schocherc2485362008-10-15 09:39:08 +0200484{
Heiko Schocher6c11aea2011-03-08 10:51:15 +0100485
486#if defined(CONFIG_HARD_I2C) && !defined(MACH_TYPE_KM_KIRKWOOD)
487 immap_t *immap = (immap_t *)CONFIG_SYS_IMMR ;
488 i2c8260_t *i2c = (i2c8260_t *)&immap->im_i2c;
489
490 /*
491 * disable I2C controller first, otherwhise it thinks we want to
492 * talk to the slave port...
493 */
494 clrbits_8(&i2c->i2c_i2mod, 0x01);
495
496 /* Set the PortPins to GPIO */
497 setports(1);
498#endif
499
Heiko Schocherc2485362008-10-15 09:39:08 +0200500 int scl_state = 0;
501 int sda_state = 0;
502 int i = 0;
503 int ret = 0;
504
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100505 if (!get_sda()) {
Heiko Schocherc2485362008-10-15 09:39:08 +0200506 ret = -1;
507 while (i < 16) {
508 i++;
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100509 set_scl(0);
510 udelay(DELAY_ABORT_SEQ);
511 set_scl(1);
512 udelay(DELAY_ABORT_SEQ);
513 scl_state = get_scl();
514 sda_state = get_sda();
Heiko Schocherc2485362008-10-15 09:39:08 +0200515 if (scl_state && sda_state) {
516 ret = 0;
517 break;
518 }
519 }
520 }
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100521 if (ret == 0)
522 for (i = 0; i < 5; i++)
Heiko Schocher6c11aea2011-03-08 10:51:15 +0100523 i2c_write_start_seq();
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100524
Heiko Schocher6c11aea2011-03-08 10:51:15 +0100525 /* respect stop setup time */
526 udelay(DELAY_ABORT_SEQ);
527 set_scl(1);
528 udelay(DELAY_ABORT_SEQ);
529 set_sda(1);
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100530 get_sda();
Heiko Schocherc2485362008-10-15 09:39:08 +0200531
532#if defined(CONFIG_HARD_I2C)
533 /* Set the PortPins back to use for I2C */
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100534 setports(0);
Heiko Schocherc2485362008-10-15 09:39:08 +0200535#endif
Heiko Schocher6c11aea2011-03-08 10:51:15 +0100536 return ret;
537}
Heiko Schocher39df00d2009-07-09 12:04:26 +0200538#endif
Heiko Schocher6c11aea2011-03-08 10:51:15 +0100539
540#if defined(CONFIG_MPC83xx)
541static void i2c_write_start_seq(void)
542{
543 struct fsl_i2c *dev;
544 dev = (struct fsl_i2c *) (CONFIG_SYS_IMMR + CONFIG_SYS_I2C_OFFSET);
545 udelay(DELAY_ABORT_SEQ);
546 out_8(&dev->cr, (I2C_CR_MEN | I2C_CR_MSTA));
547 udelay(DELAY_ABORT_SEQ);
548 out_8(&dev->cr, (I2C_CR_MEN));
549}
550
551static int i2c_make_abort(void)
552{
553 struct fsl_i2c *dev;
554 dev = (struct fsl_i2c *) (CONFIG_SYS_IMMR + CONFIG_SYS_I2C_OFFSET);
555 uchar dummy;
556 uchar last;
557 int nbr_read = 0;
558 int i = 0;
559 int ret = 0;
560
561 /* wait after each operation to finsh with a delay */
562 out_8(&dev->cr, (I2C_CR_MSTA));
563 udelay(DELAY_ABORT_SEQ);
564 out_8(&dev->cr, (I2C_CR_MEN | I2C_CR_MSTA));
565 udelay(DELAY_ABORT_SEQ);
566 dummy = in_8(&dev->dr);
567 udelay(DELAY_ABORT_SEQ);
568 last = in_8(&dev->dr);
569 nbr_read++;
570
571 /*
572 * do read until the last bit is 1, but stop if the full eeprom is
573 * read.
574 */
575 while (((last & 0x01) != 0x01) &&
576 (nbr_read < CONFIG_SYS_IVM_EEPROM_MAX_LEN)) {
577 udelay(DELAY_ABORT_SEQ);
578 last = in_8(&dev->dr);
579 nbr_read++;
580 }
581 if ((last & 0x01) != 0x01)
582 ret = -2;
583 if ((last != 0xff) || (nbr_read > 1))
584 printf("[INFO] i2c abort after %d bytes (0x%02x)\n",
585 nbr_read, last);
586 udelay(DELAY_ABORT_SEQ);
587 out_8(&dev->cr, (I2C_CR_MEN));
588 udelay(DELAY_ABORT_SEQ);
589 /* clear status reg */
590 out_8(&dev->sr, 0);
591
592 for (i = 0; i < 5; i++)
593 i2c_write_start_seq();
594 if (ret != 0)
595 printf("[ERROR] i2c abort failed after %d bytes (0x%02x)\n",
596 nbr_read, last);
597
598 return ret;
599}
600#endif
601
602/**
603 * i2c_init_board - reset i2c bus. When the board is powercycled during a
604 * bus transfer it might hang; for details see doc/I2C_Edge_Conditions.
605 */
606void i2c_init_board(void)
607{
608 /* Now run the AbortSequence() */
609 i2c_make_abort();
Heiko Schocherc2485362008-10-15 09:39:08 +0200610}
611#endif
Heiko Schocher210c8c02008-11-21 08:29:40 +0100612#endif
Heiko Schocher6250f0f2008-10-17 16:11:52 +0200613
614#if defined(CONFIG_OF_BOARD_SETUP) && defined(CONFIG_OF_LIBFDT)
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100615int fdt_set_node_and_value(void *blob,
Heiko Schocher6250f0f2008-10-17 16:11:52 +0200616 char *nodename,
617 char *regname,
618 void *var,
619 int size)
620{
621 int ret = 0;
622 int nodeoffset = 0;
623
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100624 nodeoffset = fdt_path_offset(blob, nodename);
Heiko Schocher6250f0f2008-10-17 16:11:52 +0200625 if (nodeoffset >= 0) {
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100626 ret = fdt_setprop(blob, nodeoffset, regname, var,
Heiko Schocher6250f0f2008-10-17 16:11:52 +0200627 size);
628 if (ret < 0)
629 printf("ft_blob_update(): cannot set %s/%s "
630 "property err:%s\n", nodename, regname,
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100631 fdt_strerror(ret));
Heiko Schocher6250f0f2008-10-17 16:11:52 +0200632 } else {
633 printf("ft_blob_update(): cannot find %s node "
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100634 "err:%s\n", nodename, fdt_strerror(nodeoffset));
Heiko Schocher6250f0f2008-10-17 16:11:52 +0200635 }
636 return ret;
637}
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100638
639int fdt_get_node_and_value(void *blob,
Heiko Schocherdc71b242009-07-09 12:04:18 +0200640 char *nodename,
641 char *propname,
642 void **var)
643{
644 int len;
645 int nodeoffset = 0;
646
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100647 nodeoffset = fdt_path_offset(blob, nodename);
Heiko Schocherdc71b242009-07-09 12:04:18 +0200648 if (nodeoffset >= 0) {
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100649 *var = (void *)fdt_getprop(blob, nodeoffset, propname, &len);
Heiko Schocherdc71b242009-07-09 12:04:18 +0200650 if (len == 0) {
651 /* no value */
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100652 printf("%s no value\n", __func__);
Heiko Schocherdc71b242009-07-09 12:04:18 +0200653 return -1;
654 } else if (len > 0) {
655 return len;
656 } else {
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100657 printf("libfdt fdt_getprop(): %s\n",
Heiko Schocherdc71b242009-07-09 12:04:18 +0200658 fdt_strerror(len));
659 return -2;
660 }
661 } else {
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100662 printf("%s: cannot find %s node err:%s\n", __func__,
663 nodename, fdt_strerror(nodeoffset));
Heiko Schocherdc71b242009-07-09 12:04:18 +0200664 return -3;
665 }
666}
Heiko Schocher6250f0f2008-10-17 16:11:52 +0200667#endif
Heiko Schocher210c8c02008-11-21 08:29:40 +0100668
Holger Brunck802d9962011-03-14 15:31:19 +0100669#if !defined(MACH_TYPE_KM_KIRKWOOD)
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100670int ethernet_present(void)
Heiko Schocher210c8c02008-11-21 08:29:40 +0100671{
Heiko Schocher8ed74342011-03-08 10:47:39 +0100672 struct km_bec_fpga *base =
673 (struct km_bec_fpga *)CONFIG_SYS_KMBEC_FPGA_BASE;
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100674
675 return in_8(&base->bprth) & PIGGY_PRESENT;
Heiko Schocher210c8c02008-11-21 08:29:40 +0100676}
Heiko Schocher67fa8c22010-02-22 16:43:02 +0530677#endif
Heiko Schocher210c8c02008-11-21 08:29:40 +0100678
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100679int board_eth_init(bd_t *bis)
Heiko Schocher210c8c02008-11-21 08:29:40 +0100680{
Heiko Schocherb11f53f2011-03-15 16:52:29 +0100681 if (ethernet_present())
Heiko Schocher62ddcf02010-02-18 08:08:25 +0100682 return cpu_eth_init(bis);
683
684 return -1;
Heiko Schocher210c8c02008-11-21 08:29:40 +0100685}
Holger Bruncka9417ce2011-05-04 01:47:30 +0000686
687/*
688 * do_setboardid command
689 * read out the board id and the hw key from the intventory EEPROM and set
690 * this values as environment variables.
691 */
692static int do_setboardid(cmd_tbl_t *cmdtp, int flag, int argc,
693 char *const argv[])
694{
695 unsigned char buf[32];
696 char *p;
697
698 p = get_local_var("IVM_BoardId");
699 if (p == NULL) {
700 printf("can't get the IVM_Boardid\n");
701 return 1;
702 }
703 sprintf((char *)buf, "%s", p);
704 setenv("boardid", (char *)buf);
705
706 p = get_local_var("IVM_HWKey");
707 if (p == NULL) {
708 printf("can't get the IVM_HWKey\n");
709 return 1;
710 }
711 sprintf((char *)buf, "%s", p);
712 setenv("hwkey", (char *)buf);
713
714 return 0;
715}
716
717U_BOOT_CMD(km_setboardid, 1, 0, do_setboardid, "setboardid", "read out bid and "
718 "hwkey from IVM and set in environment");