cfi.c revision 1.4 1 1.4 cliff /* $NetBSD: cfi.c,v 1.4 2011/07/23 06:27:40 cliff Exp $ */
2 1.3 cliff /*-
3 1.3 cliff * Copyright (c) 2011 The NetBSD Foundation, Inc.
4 1.3 cliff * All rights reserved.
5 1.3 cliff *
6 1.3 cliff * This code is derived from software contributed to The NetBSD Foundation
7 1.3 cliff * by Cliff Neighbors.
8 1.3 cliff *
9 1.3 cliff * Redistribution and use in source and binary forms, with or without
10 1.3 cliff * modification, are permitted provided that the following conditions
11 1.3 cliff * are met:
12 1.3 cliff * 1. Redistributions of source code must retain the above copyright
13 1.3 cliff * notice, this list of conditions and the following disclaimer.
14 1.3 cliff * 2. Redistributions in binary form must reproduce the above copyright
15 1.3 cliff * notice, this list of conditions and the following disclaimer in the
16 1.3 cliff * documentation and/or other materials provided with the distribution.
17 1.3 cliff *
18 1.3 cliff * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
19 1.3 cliff * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
20 1.3 cliff * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
21 1.3 cliff * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
22 1.3 cliff * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
23 1.3 cliff * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
24 1.3 cliff * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
25 1.3 cliff * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
26 1.3 cliff * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
27 1.3 cliff * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
28 1.3 cliff * POSSIBILITY OF SUCH DAMAGE.
29 1.3 cliff */
30 1.1 cliff
31 1.4 cliff #include "opt_flash.h"
32 1.1 cliff #include "opt_nor.h"
33 1.4 cliff #include "opt_cfi.h"
34 1.1 cliff
35 1.1 cliff #include <sys/cdefs.h>
36 1.4 cliff __KERNEL_RCSID(0, "$NetBSD: cfi.c,v 1.4 2011/07/23 06:27:40 cliff Exp $");
37 1.1 cliff
38 1.1 cliff #include <sys/param.h>
39 1.1 cliff #include <sys/systm.h>
40 1.1 cliff #include <sys/cdefs.h>
41 1.1 cliff #include <sys/device.h>
42 1.1 cliff #include <sys/endian.h>
43 1.1 cliff
44 1.2 dyoung #include <sys/bus.h>
45 1.1 cliff
46 1.1 cliff #include <dev/nor/nor.h>
47 1.1 cliff #include <dev/nor/cfi.h>
48 1.1 cliff #include <dev/nor/cfi_0002.h>
49 1.1 cliff
50 1.1 cliff
51 1.1 cliff static bool cfi_chip_query(struct cfi * const);
52 1.1 cliff static int cfi_scan_media(device_t self, struct nor_chip *chip);
53 1.1 cliff static void cfi_init(device_t);
54 1.1 cliff static void cfi_select(device_t, bool);
55 1.1 cliff static void cfi_read_1(device_t, flash_off_t, uint8_t *);
56 1.1 cliff static void cfi_read_2(device_t, flash_off_t, uint16_t *);
57 1.1 cliff static void cfi_read_4(device_t, flash_off_t, uint32_t *);
58 1.1 cliff static void cfi_read_buf_1(device_t, flash_off_t, uint8_t *, size_t);
59 1.1 cliff static void cfi_read_buf_2(device_t, flash_off_t, uint16_t *, size_t);
60 1.1 cliff static void cfi_read_buf_4(device_t, flash_off_t, uint32_t *, size_t);
61 1.1 cliff static void cfi_write_1(device_t, flash_off_t, uint8_t);
62 1.1 cliff static void cfi_write_2(device_t, flash_off_t, uint16_t);
63 1.1 cliff static void cfi_write_4(device_t, flash_off_t, uint32_t);
64 1.1 cliff static void cfi_write_buf_1(device_t, flash_off_t, const uint8_t *, size_t);
65 1.1 cliff static void cfi_write_buf_2(device_t, flash_off_t, const uint16_t *, size_t);
66 1.1 cliff static void cfi_write_buf_4(device_t, flash_off_t, const uint32_t *, size_t);
67 1.4 cliff static void cfi_jedec_id_1(struct cfi * const );
68 1.4 cliff static void cfi_jedec_id_2(struct cfi * const );
69 1.4 cliff static void cfi_jedec_id_4(struct cfi * const );
70 1.1 cliff static bool cfi_jedec_id(struct cfi * const);
71 1.4 cliff static bool cfi_emulate(struct cfi * const);
72 1.4 cliff static const struct cfi_jedec_tab * cfi_jedec_search(struct cfi *);
73 1.4 cliff static void cfi_jedec_fill(struct cfi * const,
74 1.4 cliff const struct cfi_jedec_tab *);
75 1.4 cliff #if defined(CFI_DEBUG_JEDEC) || defined(CFI_DEBUG_QRY)
76 1.4 cliff static void cfi_hexdump(flash_off_t, void * const, u_int, u_int);
77 1.4 cliff #endif
78 1.4 cliff
79 1.1 cliff
80 1.1 cliff
81 1.1 cliff /*
82 1.1 cliff * NOTE these opmode tables are informed by "Table 1. CFI Query Read"
83 1.1 cliff * in Intel "Common Flash Interface (CFI) and Command Sets"
84 1.1 cliff * Application Note 646, April 2000
85 1.1 cliff *
86 1.1 cliff * The byte ordering of the signature string here varies from that table
87 1.1 cliff * because of discrepancy in observed behavior, for the case:
88 1.1 cliff * - x16 device operating in 16-bit mode
89 1.1 cliff * Similar discrepancy is expected (but not verified) for the case:
90 1.1 cliff * - x32 device operating in 32-bit mode
91 1.1 cliff * so the ordering is changed here for that case also.
92 1.1 cliff *
93 1.1 cliff * XXX down-sized, interleaved & multi-chip opmodes not yet supported
94 1.1 cliff */
95 1.1 cliff
96 1.1 cliff /* 1-byte access */
97 1.1 cliff static const struct cfi_opmodes cfi_opmodes_1[] = {
98 1.1 cliff { 0, 0, 0, 0x10, 3, "QRY", "x8 device operating in 8-bit mode" },
99 1.1 cliff };
100 1.1 cliff
101 1.1 cliff /* 2-byte access */
102 1.1 cliff static const struct cfi_opmodes cfi_opmodes_2[] = {
103 1.1 cliff { 1, 1, 0, 0x20, 6, "\0Q\0R\0Y",
104 1.1 cliff "x16 device operating in 16-bit mode" },
105 1.1 cliff };
106 1.1 cliff
107 1.1 cliff /* 4-byte access */
108 1.1 cliff static const struct cfi_opmodes cfi_opmodes_4[] = {
109 1.1 cliff { 2, 2, 0, 0x40, 12, "\0\0\0Q\0\0\0R\0\0\0Y",
110 1.1 cliff "x32 device operating in 32-bit mode" },
111 1.1 cliff };
112 1.1 cliff
113 1.1 cliff
114 1.4 cliff #define LOG2_64K 16
115 1.4 cliff #define LOG2_128K 17
116 1.4 cliff #define LOG2_256K 18
117 1.4 cliff #define LOG2_512K 19
118 1.4 cliff #define LOG2_1M 20
119 1.4 cliff #define LOG2_2M 21
120 1.4 cliff #define LOG2_4M 22
121 1.4 cliff #define LOG2_8M 23
122 1.4 cliff #define LOG2_16M 24
123 1.4 cliff #define LOG2_32M 25
124 1.4 cliff #define LOG2_64M 26
125 1.4 cliff #define LOG2_128M 27
126 1.4 cliff #define LOG2_256M 28
127 1.4 cliff #define LOG2_512M 29
128 1.4 cliff #define LOG2_1G 30
129 1.4 cliff #define LOG2_2G 31
130 1.4 cliff const struct cfi_jedec_tab cfi_jedec_tab[] = {
131 1.4 cliff {
132 1.4 cliff .jt_name = "Pm39LV512",
133 1.4 cliff .jt_mid = 0x9d,
134 1.4 cliff .jt_did = 0x1b,
135 1.4 cliff .jt_id_pri = 0, /* XXX */
136 1.4 cliff .jt_id_alt = 0, /* XXX */
137 1.4 cliff .jt_device_size = LOG2_64K,
138 1.4 cliff .jt_interface_code_desc = CFI_IFCODE_X8,
139 1.4 cliff .jt_erase_blk_regions = 1,
140 1.4 cliff .jt_erase_blk_info = {
141 1.4 cliff { 4096/256, (64/4)-1 },
142 1.4 cliff },
143 1.4 cliff .jt_write_word_time_typ = 40,
144 1.4 cliff .jt_write_nbyte_time_typ = 0,
145 1.4 cliff .jt_erase_blk_time_typ = 55,
146 1.4 cliff .jt_erase_chip_time_typ = 55,
147 1.4 cliff .jt_write_word_time_max = 1,
148 1.4 cliff .jt_write_nbyte_time_max = 0,
149 1.4 cliff .jt_erase_blk_time_max = 1,
150 1.4 cliff .jt_erase_chip_time_max = 1,
151 1.4 cliff .jt_opmode = &cfi_opmodes_1[0],
152 1.4 cliff },
153 1.4 cliff {
154 1.4 cliff .jt_name = "Pm39LV010",
155 1.4 cliff .jt_mid = 0x9d,
156 1.4 cliff .jt_did = 0x1c,
157 1.4 cliff .jt_id_pri = 0, /* XXX */
158 1.4 cliff .jt_id_alt = 0, /* XXX */
159 1.4 cliff .jt_device_size = LOG2_128K,
160 1.4 cliff .jt_interface_code_desc = CFI_IFCODE_X8,
161 1.4 cliff .jt_erase_blk_regions = 1,
162 1.4 cliff .jt_erase_blk_info = {
163 1.4 cliff { 4096/256, (128/4)-1 },
164 1.4 cliff },
165 1.4 cliff .jt_write_word_time_typ = 40,
166 1.4 cliff .jt_write_nbyte_time_typ = 0,
167 1.4 cliff .jt_erase_blk_time_typ = 55,
168 1.4 cliff .jt_erase_chip_time_typ = 55,
169 1.4 cliff .jt_write_word_time_max = 1,
170 1.4 cliff .jt_write_nbyte_time_max = 0,
171 1.4 cliff .jt_erase_blk_time_max = 1,
172 1.4 cliff .jt_erase_chip_time_max = 1,
173 1.4 cliff .jt_opmode = &cfi_opmodes_1[0],
174 1.4 cliff },
175 1.4 cliff };
176 1.4 cliff
177 1.4 cliff
178 1.1 cliff const struct nor_interface nor_interface_cfi = {
179 1.1 cliff .scan_media = cfi_scan_media,
180 1.1 cliff .init = cfi_init,
181 1.1 cliff .select = cfi_select,
182 1.1 cliff .read_1 = cfi_read_1,
183 1.1 cliff .read_2 = cfi_read_2,
184 1.1 cliff .read_4 = cfi_read_4,
185 1.1 cliff .read_buf_1 = cfi_read_buf_1,
186 1.1 cliff .read_buf_2 = cfi_read_buf_2,
187 1.1 cliff .read_buf_4 = cfi_read_buf_4,
188 1.1 cliff .write_1 = cfi_write_1,
189 1.1 cliff .write_2 = cfi_write_2,
190 1.1 cliff .write_4 = cfi_write_4,
191 1.1 cliff .write_buf_1 = cfi_write_buf_1,
192 1.1 cliff .write_buf_2 = cfi_write_buf_2,
193 1.1 cliff .write_buf_4 = cfi_write_buf_4,
194 1.1 cliff .read_page = NULL, /* cmdset */
195 1.1 cliff .program_page = NULL, /* cmdset */
196 1.1 cliff .busy = NULL,
197 1.1 cliff .private = NULL,
198 1.1 cliff .access_width = -1,
199 1.1 cliff .part_info = NULL,
200 1.1 cliff .part_num = -1,
201 1.1 cliff };
202 1.1 cliff
203 1.1 cliff
204 1.1 cliff /* only data[7..0] are used regardless of chip width */
205 1.1 cliff #define cfi_unpack_1(n) ((n) & 0xff)
206 1.1 cliff
207 1.1 cliff /* construct (arbitrarily big endian) uint16_t */
208 1.1 cliff #define cfi_unpack_2(b0, b1) \
209 1.1 cliff ((cfi_unpack_1(b1) << 8) | cfi_unpack_1(b0))
210 1.1 cliff
211 1.1 cliff /* construct (arbitrarily) big endian uint32_t */
212 1.1 cliff #define cfi_unpack_4(b0, b1, b2, b3) \
213 1.1 cliff ((cfi_unpack_1(b3) << 24) | \
214 1.1 cliff (cfi_unpack_1(b2) << 16) | \
215 1.1 cliff (cfi_unpack_1(b1) << 8) | \
216 1.1 cliff (cfi_unpack_1(b0)))
217 1.1 cliff
218 1.1 cliff #define cfi_unpack_qry(qryp, data) \
219 1.1 cliff do { \
220 1.1 cliff (qryp)->qry[0] = cfi_unpack_1(data[0x10]); \
221 1.1 cliff (qryp)->qry[1] = cfi_unpack_1(data[0x11]); \
222 1.1 cliff (qryp)->qry[2] = cfi_unpack_1(data[0x12]); \
223 1.1 cliff (qryp)->id_pri = be16toh(cfi_unpack_2(data[0x13], data[0x14])); \
224 1.1 cliff (qryp)->addr_pri = \
225 1.1 cliff be16toh(cfi_unpack_2(data[0x15], data[0x16])); \
226 1.1 cliff (qryp)->id_alt = be16toh(cfi_unpack_2(data[0x17], data[0x18])); \
227 1.1 cliff (qryp)->addr_alt = \
228 1.1 cliff be16toh(cfi_unpack_2(data[0x19], data[0x1a])); \
229 1.1 cliff (qryp)->vcc_min = cfi_unpack_1(data[0x1b]); \
230 1.1 cliff (qryp)->vcc_max = cfi_unpack_1(data[0x1c]); \
231 1.1 cliff (qryp)->vpp_min = cfi_unpack_1(data[0x1d]); \
232 1.1 cliff (qryp)->vpp_max = cfi_unpack_1(data[0x1e]); \
233 1.1 cliff (qryp)->write_word_time_typ = cfi_unpack_1(data[0x1f]); \
234 1.1 cliff (qryp)->write_nbyte_time_typ = cfi_unpack_1(data[0x20]); \
235 1.1 cliff (qryp)->erase_blk_time_typ = cfi_unpack_1(data[0x21]); \
236 1.4 cliff (qryp)->erase_chip_time_typ = cfi_unpack_1(data[0x22]); \
237 1.1 cliff (qryp)->write_word_time_max = cfi_unpack_1(data[0x23]); \
238 1.1 cliff (qryp)->write_nbyte_time_max = cfi_unpack_1(data[0x24]); \
239 1.1 cliff (qryp)->erase_blk_time_max = cfi_unpack_1(data[0x25]); \
240 1.4 cliff (qryp)->erase_chip_time_max = cfi_unpack_1(data[0x26]); \
241 1.1 cliff (qryp)->device_size = cfi_unpack_1(data[0x27]); \
242 1.1 cliff (qryp)->interface_code_desc = \
243 1.1 cliff be16toh(cfi_unpack_2(data[0x28], data[0x29])); \
244 1.1 cliff (qryp)->write_nbyte_size_max = \
245 1.1 cliff be16toh(cfi_unpack_2(data[0x2a], data[0x2b])); \
246 1.1 cliff (qryp)->erase_blk_regions = cfi_unpack_1(data[0x2c]); \
247 1.1 cliff u_int _i = 0x2d; \
248 1.1 cliff const u_int _n = (qryp)->erase_blk_regions; \
249 1.1 cliff KASSERT(_n <= 4); \
250 1.1 cliff for (u_int _r = 0; _r < _n; _r++, _i+=4) { \
251 1.1 cliff (qryp)->erase_blk_info[_r].y = \
252 1.1 cliff be32toh(cfi_unpack_2(data[_i+0], data[_i+1])); \
253 1.1 cliff (qryp)->erase_blk_info[_r].z = \
254 1.1 cliff be32toh(cfi_unpack_2(data[_i+2], data[_i+3])); \
255 1.1 cliff } \
256 1.1 cliff } while (0)
257 1.1 cliff
258 1.1 cliff #define cfi_unpack_pri_0002(qryp, data) \
259 1.1 cliff do { \
260 1.1 cliff (qryp)->pri.cmd_0002.pri[0] = cfi_unpack_1(data[0x00]); \
261 1.1 cliff (qryp)->pri.cmd_0002.pri[1] = cfi_unpack_1(data[0x01]); \
262 1.1 cliff (qryp)->pri.cmd_0002.pri[2] = cfi_unpack_1(data[0x02]); \
263 1.1 cliff (qryp)->pri.cmd_0002.version_maj = cfi_unpack_1(data[0x03]); \
264 1.1 cliff (qryp)->pri.cmd_0002.version_min = cfi_unpack_1(data[0x04]); \
265 1.1 cliff (qryp)->pri.cmd_0002.asupt = cfi_unpack_1(data[0x05]); \
266 1.1 cliff (qryp)->pri.cmd_0002.erase_susp = cfi_unpack_1(data[0x06]); \
267 1.1 cliff (qryp)->pri.cmd_0002.sector_prot = cfi_unpack_1(data[0x07]); \
268 1.1 cliff (qryp)->pri.cmd_0002.tmp_sector_unprot = \
269 1.1 cliff cfi_unpack_1(data[0x08]); \
270 1.1 cliff (qryp)->pri.cmd_0002.sector_prot_scheme = \
271 1.1 cliff cfi_unpack_1(data[0x09]); \
272 1.1 cliff (qryp)->pri.cmd_0002.simul_op = cfi_unpack_1(data[0x0a]); \
273 1.1 cliff (qryp)->pri.cmd_0002.burst_mode_type = cfi_unpack_1(data[0x0b]);\
274 1.1 cliff (qryp)->pri.cmd_0002.page_mode_type = cfi_unpack_1(data[0x0c]); \
275 1.1 cliff (qryp)->pri.cmd_0002.acc_min = cfi_unpack_1(data[0x0d]); \
276 1.1 cliff (qryp)->pri.cmd_0002.acc_max = cfi_unpack_1(data[0x0e]); \
277 1.1 cliff (qryp)->pri.cmd_0002.wp_prot = cfi_unpack_1(data[0x0f]); \
278 1.1 cliff /* XXX 1.3 stops here */ \
279 1.1 cliff (qryp)->pri.cmd_0002.prog_susp = cfi_unpack_1(data[0x10]); \
280 1.1 cliff (qryp)->pri.cmd_0002.unlock_bypass = cfi_unpack_1(data[0x11]); \
281 1.1 cliff (qryp)->pri.cmd_0002.sss_size = cfi_unpack_1(data[0x12]); \
282 1.1 cliff (qryp)->pri.cmd_0002.soft_feat = cfi_unpack_1(data[0x13]); \
283 1.1 cliff (qryp)->pri.cmd_0002.page_size = cfi_unpack_1(data[0x14]); \
284 1.1 cliff (qryp)->pri.cmd_0002.erase_susp_time_max = \
285 1.1 cliff cfi_unpack_1(data[0x15]); \
286 1.1 cliff (qryp)->pri.cmd_0002.prog_susp_time_max = \
287 1.1 cliff cfi_unpack_1(data[0x16]); \
288 1.1 cliff (qryp)->pri.cmd_0002.embhwrst_time_max = \
289 1.1 cliff cfi_unpack_1(data[0x38]); \
290 1.1 cliff (qryp)->pri.cmd_0002.hwrst_time_max = \
291 1.1 cliff cfi_unpack_1(data[0x39]); \
292 1.1 cliff } while (0)
293 1.1 cliff
294 1.1 cliff #define CFI_QRY_UNPACK_COMMON(cfi, data, type, found) \
295 1.1 cliff do { \
296 1.1 cliff struct cfi_query_data * const qryp = &cfi->cfi_qry_data; \
297 1.1 cliff \
298 1.1 cliff memset(qryp, 0, sizeof(*qryp)); \
299 1.1 cliff cfi_unpack_qry(qryp, data); \
300 1.1 cliff \
301 1.1 cliff switch (qryp->id_pri) { \
302 1.1 cliff case 0x0002: \
303 1.1 cliff if ((cfi_unpack_1(data[qryp->addr_pri + 0]) == 'P') && \
304 1.1 cliff (cfi_unpack_1(data[qryp->addr_pri + 1]) == 'R') && \
305 1.1 cliff (cfi_unpack_1(data[qryp->addr_pri + 2]) == 'I')) { \
306 1.1 cliff type *pri_data = &data[qryp->addr_pri]; \
307 1.1 cliff cfi_unpack_pri_0002(qryp, pri_data); \
308 1.1 cliff found = true; \
309 1.1 cliff break; \
310 1.1 cliff } \
311 1.1 cliff default: \
312 1.1 cliff printf("%s: unsupported id_pri=%#x\n", \
313 1.1 cliff __func__, qryp->id_pri); \
314 1.1 cliff break; /* unknown command set */ \
315 1.1 cliff } \
316 1.1 cliff } while (0)
317 1.1 cliff
318 1.4 cliff #ifdef CFI_DEBUG_QRY
319 1.4 cliff # define CFI_DUMP_QRY(off, p, sz, stride) \
320 1.4 cliff do { \
321 1.4 cliff printf("%s: QRY data\n", __func__); \
322 1.4 cliff cfi_hexdump(off, p, sz, stride); \
323 1.4 cliff } while (0)
324 1.4 cliff #else
325 1.4 cliff # define CFI_DUMP_QRY(off, p, sz, stride)
326 1.4 cliff #endif
327 1.4 cliff
328 1.4 cliff #ifdef CFI_DEBUG_JEDEC
329 1.4 cliff # define CFI_DUMP_JEDEC(off, p, sz, stride) \
330 1.4 cliff do { \
331 1.4 cliff printf("%s: JEDEC data\n", __func__); \
332 1.4 cliff cfi_hexdump(off, p, sz, stride); \
333 1.4 cliff } while (0)
334 1.4 cliff #else
335 1.4 cliff # define CFI_DUMP_JEDEC(off, p, sz, stride)
336 1.4 cliff #endif
337 1.4 cliff
338 1.4 cliff
339 1.1 cliff /*
340 1.1 cliff * cfi_chip_query_opmode - determine operational mode based on QRY signature
341 1.1 cliff */
342 1.1 cliff static bool
343 1.1 cliff cfi_chip_query_opmode(struct cfi *cfi, uint8_t *data,
344 1.1 cliff const struct cfi_opmodes *tab, u_int nentries)
345 1.1 cliff {
346 1.1 cliff for (u_int i=0; i < nentries; i++) {
347 1.1 cliff if (memcmp(&data[tab[i].qsa], tab[i].sig, tab[i].len) == 0) {
348 1.1 cliff cfi->cfi_opmode = &tab[i];
349 1.1 cliff return true;
350 1.1 cliff }
351 1.1 cliff }
352 1.1 cliff return false;
353 1.1 cliff }
354 1.1 cliff
355 1.1 cliff static bool
356 1.1 cliff cfi_chip_query_1(struct cfi * const cfi)
357 1.1 cliff {
358 1.1 cliff uint8_t data[0x80];
359 1.1 cliff
360 1.1 cliff bus_space_read_region_1(cfi->cfi_bst, cfi->cfi_bsh, 0, data,
361 1.1 cliff __arraycount(data));
362 1.1 cliff
363 1.4 cliff CFI_DUMP_QRY(0, data, sizeof(data), 1);
364 1.4 cliff
365 1.1 cliff bool found = cfi_chip_query_opmode(cfi, data, cfi_opmodes_1,
366 1.1 cliff __arraycount(cfi_opmodes_1));
367 1.1 cliff
368 1.1 cliff if (found) {
369 1.1 cliff CFI_QRY_UNPACK_COMMON(cfi, data, uint8_t, found);
370 1.1 cliff }
371 1.1 cliff
372 1.1 cliff return found;
373 1.1 cliff }
374 1.1 cliff
375 1.1 cliff static bool
376 1.1 cliff cfi_chip_query_2(struct cfi * const cfi)
377 1.1 cliff {
378 1.1 cliff uint16_t data[0x80];
379 1.1 cliff
380 1.1 cliff bus_space_read_region_2(cfi->cfi_bst, cfi->cfi_bsh, 0, data,
381 1.1 cliff __arraycount(data));
382 1.1 cliff
383 1.4 cliff CFI_DUMP_QRY(0, data, sizeof(data), 2);
384 1.4 cliff
385 1.1 cliff bool found = cfi_chip_query_opmode(cfi, (uint8_t *)data,
386 1.1 cliff cfi_opmodes_2, __arraycount(cfi_opmodes_2));
387 1.1 cliff
388 1.1 cliff if (found) {
389 1.1 cliff CFI_QRY_UNPACK_COMMON(cfi, data, uint16_t, found);
390 1.1 cliff }
391 1.1 cliff
392 1.1 cliff return found;
393 1.1 cliff }
394 1.1 cliff
395 1.1 cliff static bool
396 1.1 cliff cfi_chip_query_4(struct cfi * const cfi)
397 1.1 cliff {
398 1.1 cliff uint32_t data[0x80];
399 1.1 cliff
400 1.1 cliff bus_space_read_region_4(cfi->cfi_bst, cfi->cfi_bsh, 0, data,
401 1.1 cliff __arraycount(data));
402 1.1 cliff
403 1.4 cliff CFI_DUMP_QRY(0, data, sizeof(data), 4);
404 1.4 cliff
405 1.1 cliff bool found = cfi_chip_query_opmode(cfi, (uint8_t *)data,
406 1.1 cliff cfi_opmodes_4, __arraycount(cfi_opmodes_4));
407 1.1 cliff
408 1.1 cliff if (found) {
409 1.1 cliff CFI_QRY_UNPACK_COMMON(cfi, data, uint32_t, found);
410 1.1 cliff }
411 1.1 cliff
412 1.1 cliff return found;
413 1.1 cliff }
414 1.1 cliff
415 1.1 cliff static bool
416 1.1 cliff cfi_chip_query_8(struct cfi * const cfi)
417 1.1 cliff {
418 1.1 cliff #ifdef NOTYET
419 1.1 cliff uint64_t data[0x80];
420 1.1 cliff
421 1.1 cliff bus_space_read_region_8(cfi->cfi_bst, cfi->cfi_bsh, 0, data,
422 1.1 cliff __arraycount(data));
423 1.1 cliff
424 1.4 cliff CFI_DUMP_QRY(0, data, sizeof(data), 8);
425 1.4 cliff
426 1.1 cliff bool found = cfi_chip_query_opmode(cfi, (uint8_t *)data,
427 1.1 cliff cfi_opmodes_8, __arraycount(cfi_opmodes_8));
428 1.1 cliff
429 1.1 cliff if (found) {
430 1.1 cliff CFI_QRY_UNPACK_COMMON(cfi, data, uint64_t, found);
431 1.1 cliff }
432 1.1 cliff
433 1.1 cliff return found;
434 1.1 cliff #else
435 1.1 cliff return false;
436 1.1 cliff #endif
437 1.1 cliff }
438 1.1 cliff
439 1.1 cliff /*
440 1.1 cliff * cfi_chip_query - detect a CFI chip
441 1.1 cliff *
442 1.1 cliff * fill in the struct cfi as we discover what's there
443 1.1 cliff */
444 1.1 cliff static bool
445 1.1 cliff cfi_chip_query(struct cfi * const cfi)
446 1.1 cliff {
447 1.1 cliff bool found = false;
448 1.1 cliff const bus_size_t cfi_query_offset[] = {
449 1.1 cliff CFI_QUERY_MODE_ADDRESS,
450 1.1 cliff CFI_QUERY_MODE_ALT_ADDRESS
451 1.1 cliff };
452 1.1 cliff
453 1.1 cliff KASSERT(cfi != NULL);
454 1.1 cliff KASSERT(cfi->cfi_bst != NULL);
455 1.1 cliff
456 1.1 cliff for (int j=0; !found && j < __arraycount(cfi_query_offset); j++) {
457 1.1 cliff
458 1.1 cliff cfi_reset_default(cfi);
459 1.1 cliff cfi_cmd(cfi, cfi_query_offset[j], CFI_QUERY_DATA);
460 1.1 cliff
461 1.1 cliff switch(cfi->cfi_portwidth) {
462 1.1 cliff case 0:
463 1.1 cliff found = cfi_chip_query_1(cfi);
464 1.1 cliff break;
465 1.1 cliff case 1:
466 1.1 cliff found = cfi_chip_query_2(cfi);
467 1.1 cliff break;
468 1.1 cliff case 2:
469 1.1 cliff found = cfi_chip_query_4(cfi);
470 1.1 cliff break;
471 1.1 cliff case 3:
472 1.1 cliff found = cfi_chip_query_8(cfi);
473 1.1 cliff break;
474 1.1 cliff default:
475 1.1 cliff panic("%s: bad portwidth %d\n",
476 1.1 cliff __func__, cfi->cfi_portwidth);
477 1.1 cliff }
478 1.1 cliff }
479 1.1 cliff
480 1.4 cliff if (found)
481 1.4 cliff cfi->cfi_emulated = false;
482 1.4 cliff
483 1.1 cliff return found;
484 1.1 cliff }
485 1.1 cliff
486 1.1 cliff /*
487 1.1 cliff * cfi_probe - search for a CFI NOR trying various port & chip widths
488 1.1 cliff *
489 1.4 cliff * - gather CFI QRY and PRI data
490 1.4 cliff * - gather JEDEC ID data
491 1.4 cliff * - if cfi_chip_query() fails, emulate CFI using table data if possible,
492 1.4 cliff * otherwise fail.
493 1.4 cliff *
494 1.1 cliff * NOTE:
495 1.1 cliff * striped NOR chips design not supported yet,
496 1.1 cliff * so force portwidth=chipwidth for now
497 1.1 cliff * eventually permute portwidth seperately
498 1.1 cliff */
499 1.1 cliff bool
500 1.1 cliff cfi_probe(struct cfi * const cfi)
501 1.1 cliff {
502 1.1 cliff bool found;
503 1.1 cliff
504 1.1 cliff KASSERT(cfi != NULL);
505 1.1 cliff
506 1.1 cliff for (u_int cw = 0; cw < 3; cw++) {
507 1.1 cliff cfi->cfi_portwidth = /* XXX */
508 1.1 cliff cfi->cfi_chipwidth = cw;
509 1.1 cliff found = cfi_chip_query(cfi);
510 1.4 cliff cfi_jedec_id(cfi);
511 1.4 cliff if (! found)
512 1.4 cliff found = cfi_emulate(cfi);
513 1.1 cliff if (found)
514 1.4 cliff break;
515 1.1 cliff }
516 1.4 cliff
517 1.1 cliff cfi_reset_default(cfi); /* exit QRY mode */
518 1.1 cliff return found;
519 1.1 cliff }
520 1.1 cliff
521 1.1 cliff bool
522 1.1 cliff cfi_identify(struct cfi * const cfi)
523 1.1 cliff {
524 1.1 cliff const bus_space_tag_t bst = cfi->cfi_bst;
525 1.1 cliff const bus_space_handle_t bsh = cfi->cfi_bsh;
526 1.4 cliff bool found;
527 1.1 cliff
528 1.1 cliff KASSERT(cfi != NULL);
529 1.1 cliff KASSERT(bst != NULL);
530 1.1 cliff
531 1.1 cliff memset(cfi, 0, sizeof(struct cfi)); /* XXX clean slate */
532 1.1 cliff cfi->cfi_bst = bst; /* restore bus space */
533 1.1 cliff cfi->cfi_bsh = bsh; /* " " " */
534 1.1 cliff
535 1.4 cliff found = cfi_probe(cfi);
536 1.1 cliff
537 1.1 cliff cfi_reset_default(cfi); /* exit QRY mode */
538 1.1 cliff
539 1.1 cliff return found;
540 1.1 cliff }
541 1.1 cliff
542 1.1 cliff static int
543 1.1 cliff cfi_scan_media(device_t self, struct nor_chip *chip)
544 1.1 cliff {
545 1.1 cliff struct nor_softc *sc = device_private(self);
546 1.1 cliff KASSERT(sc != NULL);
547 1.1 cliff KASSERT(sc->sc_nor_if != NULL);
548 1.1 cliff struct cfi * const cfi = (struct cfi * const)sc->sc_nor_if->private;
549 1.1 cliff KASSERT(cfi != NULL);
550 1.1 cliff
551 1.1 cliff sc->sc_nor_if->access_width = cfi->cfi_portwidth;
552 1.1 cliff
553 1.1 cliff chip->nc_manf_id = cfi->cfi_id_data.id_mid;
554 1.1 cliff chip->nc_dev_id = cfi->cfi_id_data.id_did[0]; /* XXX 3 words */
555 1.1 cliff chip->nc_size = 1 << cfi->cfi_qry_data.device_size;
556 1.1 cliff
557 1.1 cliff /* size of line for Read Buf command */
558 1.1 cliff chip->nc_line_size = 1 << cfi->cfi_qry_data.pri.cmd_0002.page_size;
559 1.1 cliff
560 1.1 cliff /*
561 1.1 cliff * size of erase block
562 1.1 cliff * XXX depends on erase region
563 1.1 cliff */
564 1.1 cliff chip->nc_num_luns = 1;
565 1.1 cliff chip->nc_lun_blocks = cfi->cfi_qry_data.erase_blk_info[0].y + 1;
566 1.1 cliff chip->nc_block_size = cfi->cfi_qry_data.erase_blk_info[0].z * 256;
567 1.1 cliff
568 1.1 cliff switch (cfi->cfi_qry_data.id_pri) {
569 1.1 cliff case 0x0002:
570 1.1 cliff cfi_0002_init(sc, cfi, chip);
571 1.1 cliff break;
572 1.1 cliff default:
573 1.4 cliff aprint_error_dev(self, "unsupported CFI cmdset %#04x\n",
574 1.4 cliff cfi->cfi_qry_data.id_pri);
575 1.1 cliff return -1;
576 1.1 cliff }
577 1.1 cliff
578 1.1 cliff return 0;
579 1.1 cliff }
580 1.1 cliff
581 1.1 cliff void
582 1.1 cliff cfi_init(device_t self)
583 1.1 cliff {
584 1.1 cliff /* nothing */
585 1.1 cliff }
586 1.1 cliff
587 1.1 cliff static void
588 1.1 cliff cfi_select(device_t self, bool select)
589 1.1 cliff {
590 1.1 cliff /* nothing */
591 1.1 cliff }
592 1.1 cliff
593 1.1 cliff static void
594 1.1 cliff cfi_read_1(device_t self, flash_off_t offset, uint8_t *datap)
595 1.1 cliff {
596 1.1 cliff }
597 1.1 cliff
598 1.1 cliff static void
599 1.1 cliff cfi_read_2(device_t self, flash_off_t offset, uint16_t *datap)
600 1.1 cliff {
601 1.1 cliff }
602 1.1 cliff
603 1.1 cliff static void
604 1.1 cliff cfi_read_4(device_t self, flash_off_t offset, uint32_t *datap)
605 1.1 cliff {
606 1.1 cliff }
607 1.1 cliff
608 1.1 cliff static void
609 1.1 cliff cfi_read_buf_1(device_t self, flash_off_t offset, uint8_t *datap, size_t size)
610 1.1 cliff {
611 1.1 cliff }
612 1.1 cliff
613 1.1 cliff static void
614 1.1 cliff cfi_read_buf_2(device_t self, flash_off_t offset, uint16_t *datap, size_t size)
615 1.1 cliff {
616 1.1 cliff }
617 1.1 cliff
618 1.1 cliff static void
619 1.1 cliff cfi_read_buf_4(device_t self, flash_off_t offset, uint32_t *datap, size_t size)
620 1.1 cliff {
621 1.1 cliff }
622 1.1 cliff
623 1.1 cliff static void
624 1.1 cliff cfi_write_1(device_t self, flash_off_t offset, uint8_t data)
625 1.1 cliff {
626 1.1 cliff }
627 1.1 cliff
628 1.1 cliff static void
629 1.1 cliff cfi_write_2(device_t self, flash_off_t offset, uint16_t data)
630 1.1 cliff {
631 1.1 cliff }
632 1.1 cliff
633 1.1 cliff static void
634 1.1 cliff cfi_write_4(device_t self, flash_off_t offset, uint32_t data)
635 1.1 cliff {
636 1.1 cliff }
637 1.1 cliff
638 1.1 cliff static void
639 1.1 cliff cfi_write_buf_1(device_t self, flash_off_t offset, const uint8_t *datap,
640 1.1 cliff size_t size)
641 1.1 cliff {
642 1.1 cliff }
643 1.1 cliff
644 1.1 cliff static void
645 1.1 cliff cfi_write_buf_2(device_t self, flash_off_t offset, const uint16_t *datap,
646 1.1 cliff size_t size)
647 1.1 cliff {
648 1.1 cliff }
649 1.1 cliff
650 1.1 cliff static void
651 1.1 cliff cfi_write_buf_4(device_t self, flash_off_t offset, const uint32_t *datap,
652 1.1 cliff size_t size)
653 1.1 cliff {
654 1.1 cliff }
655 1.1 cliff
656 1.1 cliff void
657 1.1 cliff cfi_cmd(struct cfi * const cfi, bus_size_t off, uint32_t val)
658 1.1 cliff {
659 1.1 cliff const bus_space_tag_t bst = cfi->cfi_bst;
660 1.1 cliff bus_space_handle_t bsh = cfi->cfi_bsh;
661 1.1 cliff
662 1.1 cliff off <<= cfi->cfi_portwidth;
663 1.1 cliff
664 1.1 cliff DPRINTF(("%s: %p %x %x %x\n", __func__, bst, bsh, off, val));
665 1.1 cliff
666 1.1 cliff switch(cfi->cfi_portwidth) {
667 1.1 cliff case 0:
668 1.1 cliff bus_space_write_1(bst, bsh, off, (uint8_t)val);
669 1.1 cliff break;
670 1.1 cliff case 1:
671 1.1 cliff bus_space_write_2(bst, bsh, off, val);
672 1.1 cliff break;
673 1.1 cliff case 2:
674 1.1 cliff bus_space_write_4(bst, bsh, off, (uint32_t)val);
675 1.1 cliff break;
676 1.1 cliff #ifdef NOTYET
677 1.1 cliff case 3:
678 1.1 cliff bus_space_write_4(bst, bsh, off, (uint64_t)val);
679 1.1 cliff break;
680 1.1 cliff #endif
681 1.1 cliff default:
682 1.1 cliff panic("%s: bad portwidth %d bytes\n",
683 1.1 cliff __func__, 1 << cfi->cfi_portwidth);
684 1.1 cliff }
685 1.1 cliff }
686 1.1 cliff
687 1.1 cliff /*
688 1.1 cliff * cfi_reset_default - when we don't know which command will work, use both
689 1.1 cliff */
690 1.1 cliff void
691 1.1 cliff cfi_reset_default(struct cfi * const cfi)
692 1.1 cliff {
693 1.1 cliff cfi_cmd(cfi, CFI_ADDRESS_ANY, CFI_RESET_DATA);
694 1.1 cliff cfi_cmd(cfi, CFI_ADDRESS_ANY, CFI_ALT_RESET_DATA);
695 1.1 cliff }
696 1.1 cliff
697 1.1 cliff /*
698 1.1 cliff * cfi_reset_std - use standard reset command
699 1.1 cliff */
700 1.1 cliff void
701 1.1 cliff cfi_reset_std(struct cfi * const cfi)
702 1.1 cliff {
703 1.1 cliff cfi_cmd(cfi, CFI_ADDRESS_ANY, CFI_RESET_DATA);
704 1.1 cliff }
705 1.1 cliff
706 1.1 cliff /*
707 1.1 cliff * cfi_reset_alt - use "alternate" reset command
708 1.1 cliff */
709 1.1 cliff void
710 1.1 cliff cfi_reset_alt(struct cfi * const cfi)
711 1.1 cliff {
712 1.1 cliff cfi_cmd(cfi, CFI_ADDRESS_ANY, CFI_ALT_RESET_DATA);
713 1.1 cliff }
714 1.1 cliff
715 1.1 cliff static void
716 1.4 cliff cfi_jedec_id_1(struct cfi * const cfi)
717 1.4 cliff {
718 1.4 cliff struct cfi_jedec_id_data *idp = &cfi->cfi_id_data;
719 1.4 cliff uint8_t data[0x10];
720 1.4 cliff
721 1.4 cliff bus_space_read_region_1(cfi->cfi_bst, cfi->cfi_bsh, 0, data,
722 1.4 cliff __arraycount(data));
723 1.4 cliff
724 1.4 cliff CFI_DUMP_JEDEC(0, data, sizeof(data), 1);
725 1.4 cliff
726 1.4 cliff idp->id_mid = (uint16_t)data[0];
727 1.4 cliff idp->id_did[0] = (uint16_t)data[1];
728 1.4 cliff idp->id_did[1] = (uint16_t)data[0xe];
729 1.4 cliff idp->id_did[2] = (uint16_t)data[0xf];
730 1.4 cliff idp->id_prot_state = (uint16_t)data[2];
731 1.4 cliff idp->id_indicators = (uint16_t)data[3];
732 1.4 cliff
733 1.4 cliff /* software bits, upper and lower */
734 1.4 cliff idp->id_swb_lo = data[0xc];
735 1.4 cliff idp->id_swb_hi = data[0xd];
736 1.4 cliff
737 1.4 cliff }
738 1.4 cliff
739 1.4 cliff static void
740 1.1 cliff cfi_jedec_id_2(struct cfi * const cfi)
741 1.1 cliff {
742 1.1 cliff struct cfi_jedec_id_data *idp = &cfi->cfi_id_data;
743 1.1 cliff uint16_t data[0x10];
744 1.1 cliff
745 1.1 cliff bus_space_read_region_2(cfi->cfi_bst, cfi->cfi_bsh, 0, data,
746 1.1 cliff __arraycount(data));
747 1.1 cliff
748 1.4 cliff CFI_DUMP_JEDEC(0, data, sizeof(data), 1);
749 1.4 cliff
750 1.1 cliff idp->id_mid = data[0];
751 1.1 cliff idp->id_did[0] = data[1];
752 1.1 cliff idp->id_did[1] = data[0xe];
753 1.1 cliff idp->id_did[2] = data[0xf];
754 1.1 cliff idp->id_prot_state = data[2];
755 1.1 cliff idp->id_indicators = data[3];
756 1.1 cliff
757 1.1 cliff /* software bits, upper and lower
758 1.1 cliff * - undefined on S29GL-P
759 1.1 cliff * - defined on S29GL-S
760 1.1 cliff */
761 1.1 cliff idp->id_swb_lo = data[0xc];
762 1.1 cliff idp->id_swb_hi = data[0xd];
763 1.4 cliff
764 1.4 cliff }
765 1.4 cliff
766 1.4 cliff static void
767 1.4 cliff cfi_jedec_id_4(struct cfi * const cfi)
768 1.4 cliff {
769 1.4 cliff struct cfi_jedec_id_data *idp = &cfi->cfi_id_data;
770 1.4 cliff uint32_t data[0x10];
771 1.4 cliff
772 1.4 cliff bus_space_read_region_4(cfi->cfi_bst, cfi->cfi_bsh, 0, data,
773 1.4 cliff __arraycount(data));
774 1.4 cliff
775 1.4 cliff CFI_DUMP_JEDEC(0, data, sizeof(data), 1);
776 1.4 cliff
777 1.4 cliff idp->id_mid = data[0] & 0xffff;
778 1.4 cliff idp->id_did[0] = data[1] & 0xffff;
779 1.4 cliff idp->id_did[1] = data[0xe] & 0xffff;
780 1.4 cliff idp->id_did[2] = data[0xf] & 0xffff;
781 1.4 cliff idp->id_prot_state = data[2] & 0xffff;
782 1.4 cliff idp->id_indicators = data[3] & 0xffff;
783 1.4 cliff
784 1.4 cliff /* software bits, upper and lower
785 1.4 cliff * - undefined on S29GL-P
786 1.4 cliff * - defined on S29GL-S
787 1.4 cliff */
788 1.4 cliff idp->id_swb_lo = data[0xc] & 0xffff;
789 1.4 cliff idp->id_swb_hi = data[0xd] & 0xffff;
790 1.4 cliff
791 1.1 cliff }
792 1.1 cliff
793 1.1 cliff /*
794 1.1 cliff * cfi_jedec_id - get JEDEC ID info
795 1.1 cliff */
796 1.1 cliff static bool
797 1.1 cliff cfi_jedec_id(struct cfi * const cfi)
798 1.1 cliff {
799 1.4 cliff
800 1.1 cliff DPRINTF(("%s\n", __func__));
801 1.1 cliff
802 1.1 cliff cfi_cmd(cfi, 0x555, 0xaa);
803 1.1 cliff cfi_cmd(cfi, 0x2aa, 0x55);
804 1.1 cliff cfi_cmd(cfi, 0x555, 0x90);
805 1.1 cliff
806 1.1 cliff switch(cfi->cfi_portwidth) {
807 1.4 cliff case 0:
808 1.4 cliff cfi_jedec_id_1(cfi);
809 1.4 cliff break;
810 1.1 cliff case 1:
811 1.1 cliff cfi_jedec_id_2(cfi);
812 1.1 cliff break;
813 1.1 cliff case 2:
814 1.1 cliff cfi_jedec_id_4(cfi);
815 1.1 cliff break;
816 1.4 cliff #ifdef NOTYET
817 1.1 cliff case 3:
818 1.1 cliff cfi_jedec_id_8(cfi);
819 1.1 cliff break;
820 1.1 cliff #endif
821 1.1 cliff default:
822 1.1 cliff panic("%s: bad portwidth %d bytes\n",
823 1.1 cliff __func__, 1 << cfi->cfi_portwidth);
824 1.1 cliff }
825 1.1 cliff
826 1.1 cliff return true;
827 1.1 cliff }
828 1.1 cliff
829 1.4 cliff static bool
830 1.4 cliff cfi_emulate(struct cfi * const cfi)
831 1.4 cliff {
832 1.4 cliff bool found = false;
833 1.4 cliff const struct cfi_jedec_tab *jt = cfi_jedec_search(cfi);
834 1.4 cliff if (jt != NULL) {
835 1.4 cliff found = true;
836 1.4 cliff cfi->cfi_emulated = true;
837 1.4 cliff cfi_jedec_fill(cfi, jt);
838 1.4 cliff }
839 1.4 cliff return found;
840 1.4 cliff }
841 1.4 cliff
842 1.4 cliff /*
843 1.4 cliff * cfi_jedec_search - search cfi_jedec_tab[] for entry matching given JEDEC IDs
844 1.4 cliff */
845 1.4 cliff static const struct cfi_jedec_tab *
846 1.4 cliff cfi_jedec_search(struct cfi *cfi)
847 1.4 cliff {
848 1.4 cliff struct cfi_jedec_id_data *idp = &cfi->cfi_id_data;
849 1.4 cliff
850 1.4 cliff for (u_int i=0; i < __arraycount(cfi_jedec_tab); i++) {
851 1.4 cliff const struct cfi_jedec_tab *jt = &cfi_jedec_tab[i];
852 1.4 cliff if ((jt->jt_mid == idp->id_mid) &&
853 1.4 cliff (jt->jt_did == idp->id_did[0])) {
854 1.4 cliff return jt;
855 1.4 cliff }
856 1.4 cliff }
857 1.4 cliff return NULL;
858 1.4 cliff }
859 1.4 cliff
860 1.4 cliff /*
861 1.4 cliff * cfi_jedec_fill - fill in cfi with info from table entry
862 1.4 cliff */
863 1.4 cliff static void
864 1.4 cliff cfi_jedec_fill(struct cfi *cfi, const struct cfi_jedec_tab *jt)
865 1.4 cliff {
866 1.4 cliff cfi->cfi_name = jt->jt_name;
867 1.4 cliff cfi->cfi_opmode = jt->jt_opmode;
868 1.4 cliff memset(&cfi->cfi_qry_data, 0, sizeof(struct cfi_query_data));
869 1.4 cliff cfi->cfi_qry_data.id_pri = jt->jt_id_pri;
870 1.4 cliff cfi->cfi_qry_data.id_alt = jt->jt_id_alt;
871 1.4 cliff cfi->cfi_qry_data.interface_code_desc = jt->jt_interface_code_desc;
872 1.4 cliff cfi->cfi_qry_data.write_word_time_typ = jt->jt_write_word_time_typ;
873 1.4 cliff cfi->cfi_qry_data.write_nbyte_time_typ = jt->jt_write_nbyte_time_typ;
874 1.4 cliff cfi->cfi_qry_data.erase_blk_time_typ = jt->jt_erase_blk_time_typ;
875 1.4 cliff cfi->cfi_qry_data.erase_chip_time_typ = jt->jt_erase_chip_time_typ;
876 1.4 cliff cfi->cfi_qry_data.write_word_time_max = jt->jt_write_word_time_max;
877 1.4 cliff cfi->cfi_qry_data.write_nbyte_time_max = jt->jt_write_nbyte_time_max;
878 1.4 cliff cfi->cfi_qry_data.erase_blk_time_max = jt->jt_erase_blk_time_max;
879 1.4 cliff cfi->cfi_qry_data.erase_chip_time_max = jt->jt_erase_chip_time_max;
880 1.4 cliff cfi->cfi_qry_data.device_size = jt->jt_device_size;
881 1.4 cliff cfi->cfi_qry_data.interface_code_desc = jt->jt_interface_code_desc;
882 1.4 cliff cfi->cfi_qry_data.write_nbyte_size_max = jt->jt_write_nbyte_size_max;
883 1.4 cliff cfi->cfi_qry_data.erase_blk_regions = jt->jt_erase_blk_regions;
884 1.4 cliff for (u_int i=0; i < 4; i++)
885 1.4 cliff cfi->cfi_qry_data.erase_blk_info[i] = jt->jt_erase_blk_info[i];
886 1.4 cliff }
887 1.4 cliff
888 1.1 cliff void
889 1.1 cliff cfi_print(device_t self, struct cfi * const cfi)
890 1.1 cliff {
891 1.1 cliff char pbuf[sizeof("XXXX MB")];
892 1.1 cliff struct cfi_query_data * const qryp = &cfi->cfi_qry_data;
893 1.1 cliff
894 1.1 cliff format_bytes(pbuf, sizeof(pbuf), 1 << qryp->device_size);
895 1.4 cliff if (cfi->cfi_emulated) {
896 1.4 cliff aprint_normal_dev(self, "%s NOR flash %s %s\n",
897 1.4 cliff cfi->cfi_name, pbuf,
898 1.4 cliff cfi_interface_desc_str(qryp->interface_code_desc));
899 1.4 cliff } else {
900 1.4 cliff aprint_normal_dev(self, "CFI NOR flash %s %s\n", pbuf,
901 1.4 cliff cfi_interface_desc_str(qryp->interface_code_desc));
902 1.4 cliff }
903 1.1 cliff #ifdef NOR_VERBOSE
904 1.1 cliff aprint_normal_dev(self, "manufacturer id %#x, device id %#x %#x %#x\n",
905 1.1 cliff cfi->cfi_id_data.id_mid,
906 1.1 cliff cfi->cfi_id_data.id_did[0],
907 1.1 cliff cfi->cfi_id_data.id_did[1],
908 1.1 cliff cfi->cfi_id_data.id_did[2]);
909 1.1 cliff aprint_normal_dev(self, "%s\n", cfi->cfi_opmode->str);
910 1.1 cliff aprint_normal_dev(self, "sw bits lo=%#x hi=%#x\n",
911 1.1 cliff cfi->cfi_id_data.id_swb_lo,
912 1.1 cliff cfi->cfi_id_data.id_swb_hi);
913 1.1 cliff aprint_normal_dev(self, "max multibyte write size %d\n",
914 1.1 cliff 1 << qryp->write_nbyte_size_max);
915 1.1 cliff aprint_normal_dev(self, "%d Erase Block Region(s)\n",
916 1.1 cliff qryp->erase_blk_regions);
917 1.1 cliff for (u_int r=0; r < qryp->erase_blk_regions; r++) {
918 1.1 cliff size_t sz = qryp->erase_blk_info[r].z * 256;
919 1.1 cliff format_bytes(pbuf, sizeof(pbuf), sz);
920 1.1 cliff aprint_normal(" %d: %d blocks, size %s\n", r,
921 1.1 cliff qryp->erase_blk_info[r].y + 1, pbuf);
922 1.1 cliff }
923 1.1 cliff #endif
924 1.1 cliff
925 1.1 cliff switch (cfi->cfi_qry_data.id_pri) {
926 1.1 cliff case 0x0002:
927 1.1 cliff cfi_0002_print(self, cfi);
928 1.1 cliff break;
929 1.1 cliff }
930 1.1 cliff }
931 1.4 cliff
932 1.4 cliff #if defined(CFI_DEBUG_JEDEC) || defined(CFI_DEBUG_QRY)
933 1.4 cliff void
934 1.4 cliff cfi_hexdump(flash_off_t offset, void * const v, u_int count, u_int stride)
935 1.4 cliff {
936 1.4 cliff uint8_t * const data = v;
937 1.4 cliff for(int n=0; n < count; n+=16) {
938 1.4 cliff int i;
939 1.4 cliff printf("%08llx: ", (offset + n) / stride);
940 1.4 cliff for(i=n; i < n+16; i++)
941 1.4 cliff printf("%02x ", data[i]);
942 1.4 cliff printf("\t");
943 1.4 cliff for(i=n; i < n+16; i++) {
944 1.4 cliff u_int c = (int)data[i];
945 1.4 cliff if (c >= 0x20 && c < 0x7f)
946 1.4 cliff printf("%c", c);
947 1.4 cliff else
948 1.4 cliff printf("%c", '.');
949 1.4 cliff }
950 1.4 cliff printf("\n");
951 1.4 cliff }
952 1.4 cliff }
953 1.4 cliff #endif
954