source: trunk/82802ab.c

Last change on this file was 1579, checked in by hailfinger, 10 months ago

Make struct flashchip a field in struct flashctx instead of a complete copy.

All the driver conversion work and cleanup has been done by Stefan.
flashrom.c and cli_classic.c are a joint work of Stefan and Carl-Daniel.

Signed-off-by: Carl-Daniel Hailfinger <c-d.hailfinger.devel.2006@…>
Signed-off-by: Stefan Tauner <stefan.tauner@…>
Acked-by: Stefan Tauner <stefan.tauner@…>
Acked-by: Carl-Daniel Hailfinger <c-d.hailfinger.devel.2006@…>

  • Property svn:eol-style set to native
  • Property svn:keywords set to Author Date Id Revision
File size: 6.8 KB
Line 
1/*
2 * This file is part of the flashrom project.
3 *
4 * Copyright (C) 2000 Silicon Integrated System Corporation
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA  02110-1301 USA
19 */
20
21/*
22 * Datasheet:
23 *  - Name: Intel 82802AB/82802AC Firmware Hub (FWH)
24 *  - URL: http://www.intel.com/design/chipsets/datashts/290658.htm
25 *  - PDF: http://download.intel.com/design/chipsets/datashts/29065804.pdf
26 *  - Order number: 290658-004
27 */
28
29#include "flash.h"
30#include "chipdrivers.h"
31
32void print_status_82802ab(uint8_t status)
33{
34        msg_cdbg("%s", status & 0x80 ? "Ready:" : "Busy:");
35        msg_cdbg("%s", status & 0x40 ? "BE SUSPEND:" : "BE RUN/FINISH:");
36        msg_cdbg("%s", status & 0x20 ? "BE ERROR:" : "BE OK:");
37        msg_cdbg("%s", status & 0x10 ? "PROG ERR:" : "PROG OK:");
38        msg_cdbg("%s", status & 0x8 ? "VP ERR:" : "VPP OK:");
39        msg_cdbg("%s", status & 0x4 ? "PROG SUSPEND:" : "PROG RUN/FINISH:");
40        msg_cdbg("%s", status & 0x2 ? "WP|TBL#|WP#,ABORT:" : "UNLOCK:");
41}
42
43int probe_82802ab(struct flashctx *flash)
44{
45        chipaddr bios = flash->virtual_memory;
46        uint8_t id1, id2, flashcontent1, flashcontent2;
47        int shifted = (flash->chip->feature_bits & FEATURE_ADDR_SHIFTED) != 0;
48
49        /* Reset to get a clean state */
50        chip_writeb(flash, 0xFF, bios);
51        programmer_delay(10);
52
53        /* Enter ID mode */
54        chip_writeb(flash, 0x90, bios);
55        programmer_delay(10);
56
57        id1 = chip_readb(flash, bios + (0x00 << shifted));
58        id2 = chip_readb(flash, bios + (0x01 << shifted));
59
60        /* Leave ID mode */
61        chip_writeb(flash, 0xFF, bios);
62
63        programmer_delay(10);
64
65        msg_cdbg("%s: id1 0x%02x, id2 0x%02x", __func__, id1, id2);
66
67        if (!oddparity(id1))
68                msg_cdbg(", id1 parity violation");
69
70        /*
71         * Read the product ID location again. We should now see normal
72         * flash contents.
73         */
74        flashcontent1 = chip_readb(flash, bios + (0x00 << shifted));
75        flashcontent2 = chip_readb(flash, bios + (0x01 << shifted));
76
77        if (id1 == flashcontent1)
78                msg_cdbg(", id1 is normal flash content");
79        if (id2 == flashcontent2)
80                msg_cdbg(", id2 is normal flash content");
81
82        msg_cdbg("\n");
83        if (id1 != flash->chip->manufacture_id || id2 != flash->chip->model_id)
84                return 0;
85
86        if (flash->chip->feature_bits & FEATURE_REGISTERMAP)
87                map_flash_registers(flash);
88
89        return 1;
90}
91
92uint8_t wait_82802ab(struct flashctx *flash)
93{
94        uint8_t status;
95        chipaddr bios = flash->virtual_memory;
96
97        chip_writeb(flash, 0x70, bios);
98        if ((chip_readb(flash, bios) & 0x80) == 0) {    // it's busy
99                while ((chip_readb(flash, bios) & 0x80) == 0) ;
100        }
101
102        status = chip_readb(flash, bios);
103
104        /* Reset to get a clean state */
105        chip_writeb(flash, 0xFF, bios);
106
107        return status;
108}
109
110int unlock_82802ab(struct flashctx *flash)
111{
112        int i;
113        //chipaddr wrprotect = flash->virtual_registers + page + 2;
114
115        for (i = 0; i < flash->chip->total_size * 1024; i+= flash->chip->page_size)
116                chip_writeb(flash, 0, flash->virtual_registers + i + 2);
117
118        return 0;
119}
120
121int erase_block_82802ab(struct flashctx *flash, unsigned int page,
122                        unsigned int pagesize)
123{
124        chipaddr bios = flash->virtual_memory;
125        uint8_t status;
126
127        // clear status register
128        chip_writeb(flash, 0x50, bios + page);
129
130        // now start it
131        chip_writeb(flash, 0x20, bios + page);
132        chip_writeb(flash, 0xd0, bios + page);
133        programmer_delay(10);
134
135        // now let's see what the register is
136        status = wait_82802ab(flash);
137        print_status_82802ab(status);
138
139        /* FIXME: Check the status register for errors. */
140        return 0;
141}
142
143/* chunksize is 1 */
144int write_82802ab(struct flashctx *flash, uint8_t *src, unsigned int start,
145                  unsigned int len)
146{
147        int i;
148        chipaddr dst = flash->virtual_memory + start;
149
150        for (i = 0; i < len; i++) {
151                /* transfer data from source to destination */
152                chip_writeb(flash, 0x40, dst);
153                chip_writeb(flash, *src++, dst++);
154                wait_82802ab(flash);
155        }
156
157        /* FIXME: Ignore errors for now. */
158        return 0;
159}
160
161int unlock_28f004s5(struct flashctx *flash)
162{
163        chipaddr bios = flash->virtual_memory;
164        uint8_t mcfg, bcfg, need_unlock = 0, can_unlock = 0;
165        int i;
166
167        /* Clear status register */
168        chip_writeb(flash, 0x50, bios);
169
170        /* Read identifier codes */
171        chip_writeb(flash, 0x90, bios);
172
173        /* Read master lock-bit */
174        mcfg = chip_readb(flash, bios + 0x3);
175        msg_cdbg("master lock is ");
176        if (mcfg) {
177                msg_cdbg("locked!\n");
178        } else {
179                msg_cdbg("unlocked!\n");
180                can_unlock = 1;
181        }
182
183        /* Read block lock-bits */
184        for (i = 0; i < flash->chip->total_size * 1024; i+= (64 * 1024)) {
185                bcfg = chip_readb(flash, bios + i + 2); // read block lock config
186                msg_cdbg("block lock at %06x is %slocked!\n", i, bcfg ? "" : "un");
187                if (bcfg) {
188                        need_unlock = 1;
189                }
190        }
191
192        /* Reset chip */
193        chip_writeb(flash, 0xFF, bios);
194
195        /* Unlock: clear block lock-bits, if needed */
196        if (can_unlock && need_unlock) {
197                msg_cdbg("Unlock: ");
198                chip_writeb(flash, 0x60, bios);
199                chip_writeb(flash, 0xD0, bios);
200                chip_writeb(flash, 0xFF, bios);
201                msg_cdbg("Done!\n");
202        }
203
204        /* Error: master locked or a block is locked */
205        if (!can_unlock && need_unlock) {
206                msg_cerr("At least one block is locked and lockdown is active!\n");
207                return -1;
208        }
209
210        return 0;
211}
212
213int unlock_lh28f008bjt(struct flashctx *flash)
214{
215        chipaddr bios = flash->virtual_memory;
216        uint8_t mcfg, bcfg;
217        uint8_t need_unlock = 0, can_unlock = 0;
218        int i;
219
220        /* Wait if chip is busy */
221        wait_82802ab(flash);
222
223        /* Read identifier codes */
224        chip_writeb(flash, 0x90, bios);
225
226        /* Read master lock-bit */
227        mcfg = chip_readb(flash, bios + 0x3);
228        msg_cdbg("master lock is ");
229        if (mcfg) {
230                msg_cdbg("locked!\n");
231        } else {
232                msg_cdbg("unlocked!\n");
233                can_unlock = 1;
234        }
235
236        /* Read block lock-bits, 8 * 8 KB + 15 * 64 KB */
237        for (i = 0; i < flash->chip->total_size * 1024;
238             i += (i >= (64 * 1024) ? 64 * 1024 : 8 * 1024)) {
239                bcfg = chip_readb(flash, bios + i + 2); /* read block lock config */
240                msg_cdbg("block lock at %06x is %slocked!\n", i,
241                         bcfg ? "" : "un");
242                if (bcfg)
243                        need_unlock = 1;
244        }
245
246        /* Reset chip */
247        chip_writeb(flash, 0xFF, bios);
248
249        /* Unlock: clear block lock-bits, if needed */
250        if (can_unlock && need_unlock) {
251                msg_cdbg("Unlock: ");
252                chip_writeb(flash, 0x60, bios);
253                chip_writeb(flash, 0xD0, bios);
254                chip_writeb(flash, 0xFF, bios);
255                wait_82802ab(flash);
256                msg_cdbg("Done!\n");
257        }
258
259        /* Error: master locked or a block is locked */
260        if (!can_unlock && need_unlock) {
261                msg_cerr("At least one block is locked and lockdown is active!\n");
262                return -1;
263        }
264
265        return 0;
266}
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