xref: /netbsd-src/sys/dev/nor/cfi.c (revision 7075274071130b727ddc9fb11f8a3f4b0ed63af4)
1*70752740Smrg /*	$NetBSD: cfi.c,v 1.9 2019/02/06 04:20:40 mrg Exp $	*/
2b9c14258Scliff /*-
3b9c14258Scliff  * Copyright (c) 2011 The NetBSD Foundation, Inc.
4b9c14258Scliff  * All rights reserved.
5b9c14258Scliff  *
6b9c14258Scliff  * This code is derived from software contributed to The NetBSD Foundation
7b9c14258Scliff  * by Cliff Neighbors.
8b9c14258Scliff  *
9b9c14258Scliff  * Redistribution and use in source and binary forms, with or without
10b9c14258Scliff  * modification, are permitted provided that the following conditions
11b9c14258Scliff  * are met:
12b9c14258Scliff  * 1. Redistributions of source code must retain the above copyright
13b9c14258Scliff  *    notice, this list of conditions and the following disclaimer.
14b9c14258Scliff  * 2. Redistributions in binary form must reproduce the above copyright
15b9c14258Scliff  *    notice, this list of conditions and the following disclaimer in the
16b9c14258Scliff  *    documentation and/or other materials provided with the distribution.
17b9c14258Scliff  *
18b9c14258Scliff  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
19b9c14258Scliff  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
20b9c14258Scliff  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
21b9c14258Scliff  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
22b9c14258Scliff  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
23b9c14258Scliff  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
24b9c14258Scliff  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
25b9c14258Scliff  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
26b9c14258Scliff  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
27b9c14258Scliff  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
28b9c14258Scliff  * POSSIBILITY OF SUCH DAMAGE.
29b9c14258Scliff  */
30fb19d2b7Scliff 
31fb19d2b7Scliff #include "opt_flash.h"
327537bb1cScliff #include "opt_nor.h"
337537bb1cScliff #include "opt_cfi.h"
34fb19d2b7Scliff 
35fb19d2b7Scliff #include <sys/cdefs.h>
36*70752740Smrg __KERNEL_RCSID(0, "$NetBSD: cfi.c,v 1.9 2019/02/06 04:20:40 mrg Exp $");
37fb19d2b7Scliff 
38fb19d2b7Scliff #include <sys/param.h>
39fb19d2b7Scliff #include <sys/systm.h>
40fb19d2b7Scliff #include <sys/cdefs.h>
41fb19d2b7Scliff #include <sys/device.h>
42fb19d2b7Scliff #include <sys/endian.h>
43fb19d2b7Scliff 
447186d1a5Sdyoung #include <sys/bus.h>
45fb19d2b7Scliff 
46fb19d2b7Scliff #include <dev/nor/nor.h>
47fb19d2b7Scliff #include <dev/nor/cfi.h>
48fb19d2b7Scliff #include <dev/nor/cfi_0002.h>
49fb19d2b7Scliff 
50fb19d2b7Scliff 
51fb19d2b7Scliff static int  cfi_scan_media(device_t self, struct nor_chip *chip);
52fb19d2b7Scliff static void cfi_init(device_t);
53fb19d2b7Scliff static void cfi_select(device_t, bool);
54fb19d2b7Scliff static void cfi_read_1(device_t, flash_off_t, uint8_t *);
55fb19d2b7Scliff static void cfi_read_2(device_t, flash_off_t, uint16_t *);
56fb19d2b7Scliff static void cfi_read_4(device_t, flash_off_t, uint32_t *);
57fb19d2b7Scliff static void cfi_read_buf_1(device_t, flash_off_t, uint8_t *, size_t);
58fb19d2b7Scliff static void cfi_read_buf_2(device_t, flash_off_t, uint16_t *, size_t);
59fb19d2b7Scliff static void cfi_read_buf_4(device_t, flash_off_t, uint32_t *, size_t);
60fb19d2b7Scliff static void cfi_write_1(device_t, flash_off_t, uint8_t);
61fb19d2b7Scliff static void cfi_write_2(device_t, flash_off_t, uint16_t);
62fb19d2b7Scliff static void cfi_write_4(device_t, flash_off_t, uint32_t);
63fb19d2b7Scliff static void cfi_write_buf_1(device_t, flash_off_t, const uint8_t *, size_t);
64fb19d2b7Scliff static void cfi_write_buf_2(device_t, flash_off_t, const uint16_t *, size_t);
65fb19d2b7Scliff static void cfi_write_buf_4(device_t, flash_off_t, const uint32_t *, size_t);
669a36cd16Sphx static uint8_t cfi_read_qry(struct cfi * const, bus_size_t);
67fb19d2b7Scliff static bool cfi_jedec_id(struct cfi * const);
687537bb1cScliff static bool cfi_emulate(struct cfi * const);
697537bb1cScliff static const struct cfi_jedec_tab * cfi_jedec_search(struct cfi *);
707537bb1cScliff static void cfi_jedec_fill(struct cfi * const,
717537bb1cScliff 	const struct cfi_jedec_tab *);
727537bb1cScliff #if defined(CFI_DEBUG_JEDEC) || defined(CFI_DEBUG_QRY)
737537bb1cScliff static void cfi_hexdump(flash_off_t, void * const, u_int, u_int);
747537bb1cScliff #endif
757537bb1cScliff 
767537bb1cScliff #define LOG2_64K	16
777537bb1cScliff #define LOG2_128K	17
787537bb1cScliff #define LOG2_256K	18
797537bb1cScliff #define LOG2_512K	19
807537bb1cScliff #define LOG2_1M		20
817537bb1cScliff #define LOG2_2M		21
827537bb1cScliff #define LOG2_4M		22
837537bb1cScliff #define LOG2_8M		23
847537bb1cScliff #define LOG2_16M	24
857537bb1cScliff #define LOG2_32M	25
867537bb1cScliff #define LOG2_64M	26
877537bb1cScliff #define LOG2_128M	27
887537bb1cScliff #define LOG2_256M	28
897537bb1cScliff #define LOG2_512M	29
907537bb1cScliff #define LOG2_1G		30
917537bb1cScliff #define LOG2_2G		31
927537bb1cScliff const struct cfi_jedec_tab cfi_jedec_tab[] = {
937537bb1cScliff 	{
947537bb1cScliff 		.jt_name = "Pm39LV512",
957537bb1cScliff 		.jt_mid = 0x9d,
967537bb1cScliff 		.jt_did = 0x1b,
977537bb1cScliff 		.jt_id_pri = 0,				/* XXX */
987537bb1cScliff 		.jt_id_alt = 0,				/* XXX */
997537bb1cScliff 		.jt_device_size = LOG2_64K,
1007537bb1cScliff 		.jt_interface_code_desc = CFI_IFCODE_X8,
1017537bb1cScliff 		.jt_erase_blk_regions = 1,
1027537bb1cScliff 		.jt_erase_blk_info = {
1037537bb1cScliff 			{ 4096/256, (64/4)-1 },
1047537bb1cScliff 		},
1057537bb1cScliff 		.jt_write_word_time_typ = 40,
1067537bb1cScliff 		.jt_write_nbyte_time_typ = 0,
1077537bb1cScliff 		.jt_erase_blk_time_typ = 55,
1087537bb1cScliff 		.jt_erase_chip_time_typ = 55,
1097537bb1cScliff 		.jt_write_word_time_max = 1,
1107537bb1cScliff 		.jt_write_nbyte_time_max = 0,
1117537bb1cScliff 		.jt_erase_blk_time_max = 1,
1127537bb1cScliff 		.jt_erase_chip_time_max = 1,
1137537bb1cScliff 	},
1147537bb1cScliff 	{
1157537bb1cScliff 		.jt_name = "Pm39LV010",
1167537bb1cScliff 		.jt_mid = 0x9d,
1177537bb1cScliff 		.jt_did = 0x1c,
1187537bb1cScliff 		.jt_id_pri = 0,				/* XXX */
1197537bb1cScliff 		.jt_id_alt = 0,				/* XXX */
1207537bb1cScliff 		.jt_device_size = LOG2_128K,
1217537bb1cScliff 		.jt_interface_code_desc = CFI_IFCODE_X8,
1227537bb1cScliff 		.jt_erase_blk_regions = 1,
1237537bb1cScliff 		.jt_erase_blk_info = {
1247537bb1cScliff 			{ 4096/256, (128/4)-1 },
1257537bb1cScliff 		},
1267537bb1cScliff 		.jt_write_word_time_typ = 40,
1277537bb1cScliff 		.jt_write_nbyte_time_typ = 0,
1287537bb1cScliff 		.jt_erase_blk_time_typ = 55,
1297537bb1cScliff 		.jt_erase_chip_time_typ = 55,
1307537bb1cScliff 		.jt_write_word_time_max = 1,
1317537bb1cScliff 		.jt_write_nbyte_time_max = 0,
1327537bb1cScliff 		.jt_erase_blk_time_max = 1,
1337537bb1cScliff 		.jt_erase_chip_time_max = 1,
1347537bb1cScliff 	},
1357537bb1cScliff };
1367537bb1cScliff 
1377537bb1cScliff 
138fb19d2b7Scliff const struct nor_interface nor_interface_cfi = {
139fb19d2b7Scliff 	.scan_media = cfi_scan_media,
140fb19d2b7Scliff 	.init = cfi_init,
141fb19d2b7Scliff 	.select = cfi_select,
142fb19d2b7Scliff 	.read_1 = cfi_read_1,
143fb19d2b7Scliff 	.read_2 = cfi_read_2,
144fb19d2b7Scliff 	.read_4 = cfi_read_4,
145fb19d2b7Scliff 	.read_buf_1 = cfi_read_buf_1,
146fb19d2b7Scliff 	.read_buf_2 = cfi_read_buf_2,
147fb19d2b7Scliff 	.read_buf_4 = cfi_read_buf_4,
148fb19d2b7Scliff 	.write_1 = cfi_write_1,
149fb19d2b7Scliff 	.write_2 = cfi_write_2,
150fb19d2b7Scliff 	.write_4 = cfi_write_4,
151fb19d2b7Scliff 	.write_buf_1 = cfi_write_buf_1,
152fb19d2b7Scliff 	.write_buf_2 = cfi_write_buf_2,
153fb19d2b7Scliff 	.write_buf_4 = cfi_write_buf_4,
154fb19d2b7Scliff 	.read_page = NULL,			/* cmdset */
155fb19d2b7Scliff 	.program_page = NULL,			/* cmdset */
156fb19d2b7Scliff 	.busy = NULL,
157fb19d2b7Scliff 	.private = NULL,
158fb19d2b7Scliff 	.access_width = -1,
159fb19d2b7Scliff 	.part_info = NULL,
160fb19d2b7Scliff 	.part_num = -1,
161fb19d2b7Scliff };
162fb19d2b7Scliff 
163fb19d2b7Scliff 
164fb19d2b7Scliff /* only data[7..0] are used regardless of chip width */
165fb19d2b7Scliff #define cfi_unpack_1(n)			((n) & 0xff)
166fb19d2b7Scliff 
167779bf763Scliff /* construct uint16_t */
168fb19d2b7Scliff #define cfi_unpack_2(b0, b1)						\
169fb19d2b7Scliff 	((cfi_unpack_1(b1) << 8) | cfi_unpack_1(b0))
170fb19d2b7Scliff 
171779bf763Scliff /* construct uint32_t */
172fb19d2b7Scliff #define cfi_unpack_4(b0, b1, b2, b3)					\
173fb19d2b7Scliff 	((cfi_unpack_1(b3) << 24) |					\
174fb19d2b7Scliff 	 (cfi_unpack_1(b2) << 16) |					\
175fb19d2b7Scliff 	 (cfi_unpack_1(b1) <<  8) |					\
176fb19d2b7Scliff 	 (cfi_unpack_1(b0)))
177fb19d2b7Scliff 
178fb19d2b7Scliff #define cfi_unpack_qry(qryp, data)					\
179fb19d2b7Scliff     do {								\
180fb19d2b7Scliff 	(qryp)->qry[0] = cfi_unpack_1(data[0x10]);			\
181fb19d2b7Scliff 	(qryp)->qry[1] = cfi_unpack_1(data[0x11]);			\
182fb19d2b7Scliff 	(qryp)->qry[2] = cfi_unpack_1(data[0x12]);			\
183779bf763Scliff 	(qryp)->id_pri = cfi_unpack_2(data[0x13], data[0x14]);		\
184779bf763Scliff 	(qryp)->addr_pri = cfi_unpack_2(data[0x15], data[0x16]);	\
185779bf763Scliff 	(qryp)->id_alt = cfi_unpack_2(data[0x17], data[0x18]);		\
186779bf763Scliff 	(qryp)->addr_alt = cfi_unpack_2(data[0x19], data[0x1a]);	\
187fb19d2b7Scliff 	(qryp)->vcc_min = cfi_unpack_1(data[0x1b]);			\
188fb19d2b7Scliff 	(qryp)->vcc_max = cfi_unpack_1(data[0x1c]);			\
189fb19d2b7Scliff 	(qryp)->vpp_min = cfi_unpack_1(data[0x1d]);			\
190fb19d2b7Scliff 	(qryp)->vpp_max = cfi_unpack_1(data[0x1e]);			\
191fb19d2b7Scliff 	(qryp)->write_word_time_typ = cfi_unpack_1(data[0x1f]);		\
192fb19d2b7Scliff 	(qryp)->write_nbyte_time_typ = cfi_unpack_1(data[0x20]);	\
193fb19d2b7Scliff 	(qryp)->erase_blk_time_typ = cfi_unpack_1(data[0x21]);		\
1947537bb1cScliff 	(qryp)->erase_chip_time_typ = cfi_unpack_1(data[0x22]);		\
195fb19d2b7Scliff 	(qryp)->write_word_time_max = cfi_unpack_1(data[0x23]);		\
196fb19d2b7Scliff 	(qryp)->write_nbyte_time_max = cfi_unpack_1(data[0x24]);	\
197fb19d2b7Scliff 	(qryp)->erase_blk_time_max = cfi_unpack_1(data[0x25]);		\
1987537bb1cScliff 	(qryp)->erase_chip_time_max = cfi_unpack_1(data[0x26]);		\
199fb19d2b7Scliff 	(qryp)->device_size = cfi_unpack_1(data[0x27]);			\
200fb19d2b7Scliff 	(qryp)->interface_code_desc =					\
201779bf763Scliff 		cfi_unpack_2(data[0x28], data[0x29]);			\
202fb19d2b7Scliff 	(qryp)->write_nbyte_size_max = 					\
203779bf763Scliff 		cfi_unpack_2(data[0x2a], data[0x2b]);			\
204fb19d2b7Scliff 	(qryp)->erase_blk_regions = cfi_unpack_1(data[0x2c]);		\
205fb19d2b7Scliff 	u_int _i = 0x2d;						\
206fb19d2b7Scliff 	const u_int _n = (qryp)->erase_blk_regions;			\
207fb19d2b7Scliff 	KASSERT(_n <= 4);						\
208fb19d2b7Scliff 	for (u_int _r = 0; _r < _n; _r++, _i+=4) {			\
209fb19d2b7Scliff 		(qryp)->erase_blk_info[_r].y =				\
210779bf763Scliff 			cfi_unpack_2(data[_i+0], data[_i+1]);		\
211fb19d2b7Scliff 		(qryp)->erase_blk_info[_r].z =				\
212779bf763Scliff 			cfi_unpack_2(data[_i+2], data[_i+3]);		\
213fb19d2b7Scliff 	}								\
214fb19d2b7Scliff     } while (0)
215fb19d2b7Scliff 
216fb19d2b7Scliff #define cfi_unpack_pri_0002(qryp, data)					\
217fb19d2b7Scliff     do {								\
218fb19d2b7Scliff 	(qryp)->pri.cmd_0002.pri[0] = cfi_unpack_1(data[0x00]);		\
219fb19d2b7Scliff 	(qryp)->pri.cmd_0002.pri[1] = cfi_unpack_1(data[0x01]);		\
220fb19d2b7Scliff 	(qryp)->pri.cmd_0002.pri[2] = cfi_unpack_1(data[0x02]);		\
221fb19d2b7Scliff 	(qryp)->pri.cmd_0002.version_maj = cfi_unpack_1(data[0x03]);	\
222fb19d2b7Scliff 	(qryp)->pri.cmd_0002.version_min = cfi_unpack_1(data[0x04]);	\
223fb19d2b7Scliff 	(qryp)->pri.cmd_0002.asupt = cfi_unpack_1(data[0x05]);		\
224fb19d2b7Scliff 	(qryp)->pri.cmd_0002.erase_susp = cfi_unpack_1(data[0x06]);	\
225fb19d2b7Scliff 	(qryp)->pri.cmd_0002.sector_prot = cfi_unpack_1(data[0x07]);	\
226fb19d2b7Scliff 	(qryp)->pri.cmd_0002.tmp_sector_unprot =			\
227fb19d2b7Scliff 		cfi_unpack_1(data[0x08]);				\
228fb19d2b7Scliff 	(qryp)->pri.cmd_0002.sector_prot_scheme =			\
229fb19d2b7Scliff 		cfi_unpack_1(data[0x09]);				\
230fb19d2b7Scliff 	(qryp)->pri.cmd_0002.simul_op = cfi_unpack_1(data[0x0a]);	\
231fb19d2b7Scliff 	(qryp)->pri.cmd_0002.burst_mode_type = cfi_unpack_1(data[0x0b]);\
232fb19d2b7Scliff 	(qryp)->pri.cmd_0002.page_mode_type = cfi_unpack_1(data[0x0c]);	\
233fb19d2b7Scliff 	(qryp)->pri.cmd_0002.acc_min = cfi_unpack_1(data[0x0d]);	\
234fb19d2b7Scliff 	(qryp)->pri.cmd_0002.acc_max = cfi_unpack_1(data[0x0e]);	\
235fb19d2b7Scliff 	(qryp)->pri.cmd_0002.wp_prot = cfi_unpack_1(data[0x0f]);	\
236fb19d2b7Scliff 	/* XXX 1.3 stops here */					\
237fb19d2b7Scliff 	(qryp)->pri.cmd_0002.prog_susp = cfi_unpack_1(data[0x10]);	\
238fb19d2b7Scliff 	(qryp)->pri.cmd_0002.unlock_bypass = cfi_unpack_1(data[0x11]);	\
239fb19d2b7Scliff 	(qryp)->pri.cmd_0002.sss_size = cfi_unpack_1(data[0x12]);	\
240fb19d2b7Scliff 	(qryp)->pri.cmd_0002.soft_feat = cfi_unpack_1(data[0x13]);	\
241fb19d2b7Scliff 	(qryp)->pri.cmd_0002.page_size = cfi_unpack_1(data[0x14]);	\
242fb19d2b7Scliff 	(qryp)->pri.cmd_0002.erase_susp_time_max =			\
243fb19d2b7Scliff 		cfi_unpack_1(data[0x15]);				\
244fb19d2b7Scliff 	(qryp)->pri.cmd_0002.prog_susp_time_max =			\
245fb19d2b7Scliff 		cfi_unpack_1(data[0x16]);				\
246fb19d2b7Scliff 	(qryp)->pri.cmd_0002.embhwrst_time_max =			\
247fb19d2b7Scliff 		cfi_unpack_1(data[0x38]);				\
248fb19d2b7Scliff 	(qryp)->pri.cmd_0002.hwrst_time_max =				\
249fb19d2b7Scliff 		cfi_unpack_1(data[0x39]);				\
250fb19d2b7Scliff     } while (0)
251fb19d2b7Scliff 
2529a36cd16Sphx #define CFI_QRY_UNPACK_COMMON(cfi, data, type)				\
253fb19d2b7Scliff     do {								\
254fb19d2b7Scliff 	struct cfi_query_data * const qryp = &cfi->cfi_qry_data;	\
255fb19d2b7Scliff 									\
256fb19d2b7Scliff 	memset(qryp, 0, sizeof(*qryp));					\
257fb19d2b7Scliff 	cfi_unpack_qry(qryp, data);					\
258fb19d2b7Scliff 									\
259fb19d2b7Scliff 	switch (qryp->id_pri) {						\
260fb19d2b7Scliff 	case 0x0002:							\
261fb19d2b7Scliff 		if ((cfi_unpack_1(data[qryp->addr_pri + 0]) == 'P') &&	\
262fb19d2b7Scliff 		    (cfi_unpack_1(data[qryp->addr_pri + 1]) == 'R') &&	\
263fb19d2b7Scliff 		    (cfi_unpack_1(data[qryp->addr_pri + 2]) == 'I')) {	\
264fb19d2b7Scliff 			type *pri_data = &data[qryp->addr_pri];		\
265fb19d2b7Scliff 			cfi_unpack_pri_0002(qryp, pri_data);		\
266fb19d2b7Scliff 			break;						\
267fb19d2b7Scliff 		}							\
268fb19d2b7Scliff 	}								\
269fb19d2b7Scliff     } while (0)
270fb19d2b7Scliff 
2717537bb1cScliff #ifdef CFI_DEBUG_QRY
2727537bb1cScliff # define CFI_DUMP_QRY(off, p, sz, stride)				\
2737537bb1cScliff     do {								\
2747537bb1cScliff 	printf("%s: QRY data\n", __func__);				\
2757537bb1cScliff 	cfi_hexdump(off, p, sz, stride);				\
2767537bb1cScliff     } while (0)
2777537bb1cScliff #else
2787537bb1cScliff # define CFI_DUMP_QRY(off, p, sz, stride)
2797537bb1cScliff #endif
2807537bb1cScliff 
2817537bb1cScliff #ifdef CFI_DEBUG_JEDEC
2827537bb1cScliff # define CFI_DUMP_JEDEC(off, p, sz, stride)				\
2837537bb1cScliff     do {								\
2847537bb1cScliff 	printf("%s: JEDEC data\n", __func__);				\
2857537bb1cScliff 	cfi_hexdump(off, p, sz, stride);				\
2867537bb1cScliff     } while (0)
2877537bb1cScliff #else
2887537bb1cScliff # define CFI_DUMP_JEDEC(off, p, sz, stride)
2897537bb1cScliff #endif
2907537bb1cScliff 
2917537bb1cScliff 
2929a36cd16Sphx static void
cfi_chip_query_1(struct cfi * const cfi)293fb19d2b7Scliff cfi_chip_query_1(struct cfi * const cfi)
294fb19d2b7Scliff {
295fb19d2b7Scliff 	uint8_t data[0x80];
296fb19d2b7Scliff 
297fb19d2b7Scliff 	bus_space_read_region_1(cfi->cfi_bst, cfi->cfi_bsh, 0, data,
298fb19d2b7Scliff 	    __arraycount(data));
2997537bb1cScliff 	CFI_DUMP_QRY(0, data, sizeof(data), 1);
3009a36cd16Sphx 	CFI_QRY_UNPACK_COMMON(cfi, data, uint8_t);
301fb19d2b7Scliff }
302fb19d2b7Scliff 
3039a36cd16Sphx static void
cfi_chip_query_2(struct cfi * const cfi)304fb19d2b7Scliff cfi_chip_query_2(struct cfi * const cfi)
305fb19d2b7Scliff {
306fb19d2b7Scliff 	uint16_t data[0x80];
307fb19d2b7Scliff 
308fb19d2b7Scliff 	bus_space_read_region_2(cfi->cfi_bst, cfi->cfi_bsh, 0, data,
309fb19d2b7Scliff 	    __arraycount(data));
3107537bb1cScliff 	CFI_DUMP_QRY(0, data, sizeof(data), 2);
3119a36cd16Sphx 	CFI_QRY_UNPACK_COMMON(cfi, data, uint16_t);
312fb19d2b7Scliff }
313fb19d2b7Scliff 
3149a36cd16Sphx static void
cfi_chip_query_4(struct cfi * const cfi)315fb19d2b7Scliff cfi_chip_query_4(struct cfi * const cfi)
316fb19d2b7Scliff {
317fb19d2b7Scliff 	uint32_t data[0x80];
318fb19d2b7Scliff 
319fb19d2b7Scliff 	bus_space_read_region_4(cfi->cfi_bst, cfi->cfi_bsh, 0, data,
320fb19d2b7Scliff 	    __arraycount(data));
3217537bb1cScliff 	CFI_DUMP_QRY(0, data, sizeof(data), 4);
3229a36cd16Sphx 	CFI_QRY_UNPACK_COMMON(cfi, data, uint32_t);
323fb19d2b7Scliff }
324fb19d2b7Scliff 
3259a36cd16Sphx static void
cfi_chip_query_8(struct cfi * const cfi)326fb19d2b7Scliff cfi_chip_query_8(struct cfi * const cfi)
327fb19d2b7Scliff {
328fb19d2b7Scliff #ifdef NOTYET
329fb19d2b7Scliff 	uint64_t data[0x80];
330fb19d2b7Scliff 
331fb19d2b7Scliff 	bus_space_read_region_8(cfi->cfi_bst, cfi->cfi_bsh, 0, data,
332fb19d2b7Scliff 	    __arraycount(data));
3337537bb1cScliff 	CFI_DUMP_QRY(0, data, sizeof(data), 8);
3349a36cd16Sphx 	CFI_QRY_UNPACK_COMMON(cfi, data, uint64_t);
335fb19d2b7Scliff #endif
336fb19d2b7Scliff }
337fb19d2b7Scliff 
338fb19d2b7Scliff /*
339fb19d2b7Scliff  * cfi_chip_query - detect a CFI chip
340fb19d2b7Scliff  *
341fb19d2b7Scliff  * fill in the struct cfi as we discover what's there
342fb19d2b7Scliff  */
343fb19d2b7Scliff static bool
cfi_chip_query(struct cfi * const cfi)344fb19d2b7Scliff cfi_chip_query(struct cfi * const cfi)
345fb19d2b7Scliff {
346fb19d2b7Scliff 	const bus_size_t cfi_query_offset[] = {
3479a36cd16Sphx 		CFI_QUERY_MODE_ADDR,
3489a36cd16Sphx 		CFI_QUERY_MODE_ALT_ADDR
349fb19d2b7Scliff 	};
350fb19d2b7Scliff 
351fb19d2b7Scliff 	KASSERT(cfi != NULL);
352fb19d2b7Scliff 	KASSERT(cfi->cfi_bst != NULL);
353fb19d2b7Scliff 
3549a36cd16Sphx 	for (int j=0; j < __arraycount(cfi_query_offset); j++) {
355fb19d2b7Scliff 
356fb19d2b7Scliff 		cfi_reset_default(cfi);
357fb19d2b7Scliff 		cfi_cmd(cfi, cfi_query_offset[j], CFI_QUERY_DATA);
358fb19d2b7Scliff 
3599a36cd16Sphx 		if (cfi_read_qry(cfi, 0x10) == 'Q' &&
3609a36cd16Sphx 		    cfi_read_qry(cfi, 0x11) == 'R' &&
3619a36cd16Sphx 		    cfi_read_qry(cfi, 0x12) == 'Y') {
362fb19d2b7Scliff 			switch(cfi->cfi_portwidth) {
363fb19d2b7Scliff 			case 0:
3649a36cd16Sphx 				cfi_chip_query_1(cfi);
365fb19d2b7Scliff 				break;
366fb19d2b7Scliff 			case 1:
3679a36cd16Sphx 				cfi_chip_query_2(cfi);
368fb19d2b7Scliff 				break;
369fb19d2b7Scliff 			case 2:
3709a36cd16Sphx 				cfi_chip_query_4(cfi);
371fb19d2b7Scliff 				break;
372fb19d2b7Scliff 			case 3:
3739a36cd16Sphx 				cfi_chip_query_8(cfi);
374fb19d2b7Scliff 				break;
375fb19d2b7Scliff 			default:
376fb19d2b7Scliff 				panic("%s: bad portwidth %d\n",
377fb19d2b7Scliff 				    __func__, cfi->cfi_portwidth);
378fb19d2b7Scliff 			}
3799a36cd16Sphx 
3809a36cd16Sphx 			switch (cfi->cfi_qry_data.id_pri) {
3819a36cd16Sphx 			case 0x0002:
3829a36cd16Sphx 				cfi->cfi_unlock_addr1 = CFI_AMD_UNLOCK_ADDR1;
3839a36cd16Sphx 				cfi->cfi_unlock_addr2 = CFI_AMD_UNLOCK_ADDR2;
3849a36cd16Sphx 				break;
3859a36cd16Sphx 			default:
3869a36cd16Sphx 				DPRINTF(("%s: unsupported CFI cmdset %#04x\n",
3879a36cd16Sphx 				    __func__, cfi->cfi_qry_data.id_pri));
3889a36cd16Sphx 				return false;
389fb19d2b7Scliff 			}
390fb19d2b7Scliff 
3917537bb1cScliff 			cfi->cfi_emulated = false;
3929a36cd16Sphx 			return true;
3939a36cd16Sphx 		}
3949a36cd16Sphx 	}
3957537bb1cScliff 
3969a36cd16Sphx 	return false;
397fb19d2b7Scliff }
398fb19d2b7Scliff 
399fb19d2b7Scliff /*
400fb19d2b7Scliff  * cfi_probe - search for a CFI NOR trying various port & chip widths
401fb19d2b7Scliff  *
4027537bb1cScliff  * - gather CFI QRY and PRI data
4037537bb1cScliff  * - gather JEDEC ID data
4047537bb1cScliff  * - if cfi_chip_query() fails, emulate CFI using table data if possible,
4057537bb1cScliff  *   otherwise fail.
4067537bb1cScliff  *
407fb19d2b7Scliff  * NOTE:
4089a36cd16Sphx  *   striped NOR chips design not supported yet
409fb19d2b7Scliff  */
410fb19d2b7Scliff bool
cfi_probe(struct cfi * const cfi)411fb19d2b7Scliff cfi_probe(struct cfi * const cfi)
412fb19d2b7Scliff {
413fb19d2b7Scliff 	bool found;
414fb19d2b7Scliff 
415fb19d2b7Scliff 	KASSERT(cfi != NULL);
416fb19d2b7Scliff 
4179a36cd16Sphx 	/* XXX set default unlock address for cfi_jedec_id() */
4189a36cd16Sphx 	cfi->cfi_unlock_addr1 = CFI_AMD_UNLOCK_ADDR1;
4199a36cd16Sphx 	cfi->cfi_unlock_addr2 = CFI_AMD_UNLOCK_ADDR2;
4209a36cd16Sphx 
4219a36cd16Sphx 	for (u_int pw = 0; pw < 3; pw++) {
4229a36cd16Sphx 		for (u_int cw = 0; cw <= pw; cw++) {
4239a36cd16Sphx 			cfi->cfi_portwidth = pw;
424fb19d2b7Scliff 			cfi->cfi_chipwidth = cw;
425fb19d2b7Scliff 			found = cfi_chip_query(cfi);
4267537bb1cScliff 			cfi_jedec_id(cfi);
4277537bb1cScliff 			if (! found)
4287537bb1cScliff 				found = cfi_emulate(cfi);
429fb19d2b7Scliff 			if (found)
4309a36cd16Sphx 				goto exit_qry;
4319a36cd16Sphx 		}
432fb19d2b7Scliff 	}
4337537bb1cScliff 
4349a36cd16Sphx     exit_qry:
435fb19d2b7Scliff 	cfi_reset_default(cfi);		/* exit QRY mode */
436fb19d2b7Scliff 	return found;
437fb19d2b7Scliff }
438fb19d2b7Scliff 
439fb19d2b7Scliff bool
cfi_identify(struct cfi * const cfi)440fb19d2b7Scliff cfi_identify(struct cfi * const cfi)
441fb19d2b7Scliff {
442fb19d2b7Scliff 	const bus_space_tag_t bst = cfi->cfi_bst;
443fb19d2b7Scliff 	const bus_space_handle_t bsh = cfi->cfi_bsh;
444fb19d2b7Scliff 
445fb19d2b7Scliff 	KASSERT(cfi != NULL);
446fb19d2b7Scliff 	KASSERT(bst != NULL);
447fb19d2b7Scliff 
448fb19d2b7Scliff 	memset(cfi, 0, sizeof(struct cfi));	/* XXX clean slate */
449fb19d2b7Scliff 	cfi->cfi_bst = bst;		/* restore bus space */
450fb19d2b7Scliff 	cfi->cfi_bsh = bsh;		/*  "       "   "    */
451fb19d2b7Scliff 
4529a36cd16Sphx 	return cfi_probe(cfi);
453fb19d2b7Scliff }
454fb19d2b7Scliff 
455fb19d2b7Scliff static int
cfi_scan_media(device_t self,struct nor_chip * chip)456fb19d2b7Scliff cfi_scan_media(device_t self, struct nor_chip *chip)
457fb19d2b7Scliff {
458fb19d2b7Scliff 	struct nor_softc *sc = device_private(self);
459fb19d2b7Scliff 	KASSERT(sc != NULL);
460fb19d2b7Scliff 	KASSERT(sc->sc_nor_if != NULL);
461fb19d2b7Scliff 	struct cfi * const cfi = (struct cfi * const)sc->sc_nor_if->private;
462fb19d2b7Scliff 	KASSERT(cfi != NULL);
463fb19d2b7Scliff 
464fb19d2b7Scliff 	sc->sc_nor_if->access_width = cfi->cfi_portwidth;
465fb19d2b7Scliff 
466fb19d2b7Scliff 	chip->nc_manf_id = cfi->cfi_id_data.id_mid;
467fb19d2b7Scliff 	chip->nc_dev_id = cfi->cfi_id_data.id_did[0]; /* XXX 3 words */
468fb19d2b7Scliff 	chip->nc_size = 1 << cfi->cfi_qry_data.device_size;
469fb19d2b7Scliff 
470fb19d2b7Scliff 	/* size of line for Read Buf command */
471fb19d2b7Scliff 	chip->nc_line_size = 1 << cfi->cfi_qry_data.pri.cmd_0002.page_size;
472fb19d2b7Scliff 
473fb19d2b7Scliff 	/*
474fb19d2b7Scliff 	 * size of erase block
475fb19d2b7Scliff 	 * XXX depends on erase region
476fb19d2b7Scliff 	 */
477fb19d2b7Scliff 	chip->nc_num_luns = 1;
478fb19d2b7Scliff 	chip->nc_lun_blocks = cfi->cfi_qry_data.erase_blk_info[0].y + 1;
47980b0980eSphx 	chip->nc_block_size = cfi->cfi_qry_data.erase_blk_info[0].z ?
48080b0980eSphx 	    cfi->cfi_qry_data.erase_blk_info[0].z * 256 : 128;
481fb19d2b7Scliff 
482fb19d2b7Scliff 	switch (cfi->cfi_qry_data.id_pri) {
483fb19d2b7Scliff 	case 0x0002:
484fb19d2b7Scliff 		cfi_0002_init(sc, cfi, chip);
485fb19d2b7Scliff 		break;
486fb19d2b7Scliff 	}
487fb19d2b7Scliff 
488fb19d2b7Scliff 	return 0;
489fb19d2b7Scliff }
490fb19d2b7Scliff 
491fb19d2b7Scliff void
cfi_init(device_t self)492fb19d2b7Scliff cfi_init(device_t self)
493fb19d2b7Scliff {
494fb19d2b7Scliff 	/* nothing */
495fb19d2b7Scliff }
496fb19d2b7Scliff 
497fb19d2b7Scliff static void
cfi_select(device_t self,bool select)498fb19d2b7Scliff cfi_select(device_t self, bool select)
499fb19d2b7Scliff {
500fb19d2b7Scliff 	/* nothing */
501fb19d2b7Scliff }
502fb19d2b7Scliff 
503fb19d2b7Scliff static void
cfi_read_1(device_t self,flash_off_t offset,uint8_t * datap)504fb19d2b7Scliff cfi_read_1(device_t self, flash_off_t offset, uint8_t *datap)
505fb19d2b7Scliff {
506fb19d2b7Scliff }
507fb19d2b7Scliff 
508fb19d2b7Scliff static void
cfi_read_2(device_t self,flash_off_t offset,uint16_t * datap)509fb19d2b7Scliff cfi_read_2(device_t self, flash_off_t offset, uint16_t *datap)
510fb19d2b7Scliff {
511fb19d2b7Scliff }
512fb19d2b7Scliff 
513fb19d2b7Scliff static void
cfi_read_4(device_t self,flash_off_t offset,uint32_t * datap)514fb19d2b7Scliff cfi_read_4(device_t self, flash_off_t offset, uint32_t *datap)
515fb19d2b7Scliff {
516fb19d2b7Scliff }
517fb19d2b7Scliff 
518fb19d2b7Scliff static void
cfi_read_buf_1(device_t self,flash_off_t offset,uint8_t * datap,size_t size)519fb19d2b7Scliff cfi_read_buf_1(device_t self, flash_off_t offset, uint8_t *datap, size_t size)
520fb19d2b7Scliff {
521fb19d2b7Scliff }
522fb19d2b7Scliff 
523fb19d2b7Scliff static void
cfi_read_buf_2(device_t self,flash_off_t offset,uint16_t * datap,size_t size)524fb19d2b7Scliff cfi_read_buf_2(device_t self, flash_off_t offset, uint16_t *datap, size_t size)
525fb19d2b7Scliff {
526fb19d2b7Scliff }
527fb19d2b7Scliff 
528fb19d2b7Scliff static void
cfi_read_buf_4(device_t self,flash_off_t offset,uint32_t * datap,size_t size)529fb19d2b7Scliff cfi_read_buf_4(device_t self, flash_off_t offset, uint32_t *datap, size_t size)
530fb19d2b7Scliff {
531fb19d2b7Scliff }
532fb19d2b7Scliff 
533fb19d2b7Scliff static void
cfi_write_1(device_t self,flash_off_t offset,uint8_t data)534fb19d2b7Scliff cfi_write_1(device_t self, flash_off_t offset, uint8_t data)
535fb19d2b7Scliff {
536fb19d2b7Scliff }
537fb19d2b7Scliff 
538fb19d2b7Scliff static void
cfi_write_2(device_t self,flash_off_t offset,uint16_t data)539fb19d2b7Scliff cfi_write_2(device_t self, flash_off_t offset, uint16_t data)
540fb19d2b7Scliff {
541fb19d2b7Scliff }
542fb19d2b7Scliff 
543fb19d2b7Scliff static void
cfi_write_4(device_t self,flash_off_t offset,uint32_t data)544fb19d2b7Scliff cfi_write_4(device_t self, flash_off_t offset, uint32_t data)
545fb19d2b7Scliff {
546fb19d2b7Scliff }
547fb19d2b7Scliff 
548fb19d2b7Scliff static void
cfi_write_buf_1(device_t self,flash_off_t offset,const uint8_t * datap,size_t size)549fb19d2b7Scliff cfi_write_buf_1(device_t self, flash_off_t offset, const uint8_t *datap,
550fb19d2b7Scliff     size_t size)
551fb19d2b7Scliff {
552fb19d2b7Scliff }
553fb19d2b7Scliff 
554fb19d2b7Scliff static void
cfi_write_buf_2(device_t self,flash_off_t offset,const uint16_t * datap,size_t size)555fb19d2b7Scliff cfi_write_buf_2(device_t self, flash_off_t offset, const uint16_t *datap,
556fb19d2b7Scliff     size_t size)
557fb19d2b7Scliff {
558fb19d2b7Scliff }
559fb19d2b7Scliff 
560fb19d2b7Scliff static void
cfi_write_buf_4(device_t self,flash_off_t offset,const uint32_t * datap,size_t size)561fb19d2b7Scliff cfi_write_buf_4(device_t self, flash_off_t offset, const uint32_t *datap,
562fb19d2b7Scliff     size_t size)
563fb19d2b7Scliff {
564fb19d2b7Scliff }
565fb19d2b7Scliff 
5669a36cd16Sphx /*
5679a36cd16Sphx  * cfi_cmd - write a CFI command word.
5689a36cd16Sphx  *
5699a36cd16Sphx  * The offset 'off' is given for 64-bit port width and will be scaled
5709a36cd16Sphx  * down to the actual port width of the chip.
5719a36cd16Sphx  * The command word will be constructed out of 'val' regarding port- and
5729a36cd16Sphx  * chip width.
5739a36cd16Sphx  */
574fb19d2b7Scliff void
cfi_cmd(struct cfi * const cfi,bus_size_t off,uint32_t val)575fb19d2b7Scliff cfi_cmd(struct cfi * const cfi, bus_size_t off, uint32_t val)
576fb19d2b7Scliff {
577fb19d2b7Scliff 	const bus_space_tag_t bst = cfi->cfi_bst;
578fb19d2b7Scliff 	bus_space_handle_t bsh = cfi->cfi_bsh;
5799a36cd16Sphx 	uint64_t cmd;
5809a36cd16Sphx 	int cw, pw;
581fb19d2b7Scliff 
5829a36cd16Sphx 	off >>= 3 - cfi->cfi_portwidth;
583fb19d2b7Scliff 
5849a36cd16Sphx 	pw = 1 << cfi->cfi_portwidth;
5859a36cd16Sphx 	cw = 1 << cfi->cfi_chipwidth;
5869a36cd16Sphx 	cmd = 0;
5879a36cd16Sphx 	while (pw > 0) {
5889a36cd16Sphx 		cmd <<= cw << 3;
5899a36cd16Sphx 		cmd += val;
5909a36cd16Sphx 		pw -= cw;
5919a36cd16Sphx 	}
5929a36cd16Sphx 
5939a36cd16Sphx 	DPRINTF(("%s: %p %x %x %" PRIx64 "\n", __func__, bst, bsh, off, cmd));
594fb19d2b7Scliff 
595fb19d2b7Scliff 	switch (cfi->cfi_portwidth) {
596fb19d2b7Scliff 	case 0:
5979a36cd16Sphx 		bus_space_write_1(bst, bsh, off, cmd);
598fb19d2b7Scliff 		break;
599fb19d2b7Scliff 	case 1:
6009a36cd16Sphx 		bus_space_write_2(bst, bsh, off, cmd);
601fb19d2b7Scliff 		break;
602fb19d2b7Scliff 	case 2:
6039a36cd16Sphx 		bus_space_write_4(bst, bsh, off, cmd);
604fb19d2b7Scliff 		break;
605fb19d2b7Scliff #ifdef NOTYET
606fb19d2b7Scliff 	case 3:
6079a36cd16Sphx 		bus_space_write_8(bst, bsh, off, cmd);
608fb19d2b7Scliff 		break;
609fb19d2b7Scliff #endif
610fb19d2b7Scliff 	default:
611fb19d2b7Scliff 		panic("%s: bad portwidth %d bytes\n",
612fb19d2b7Scliff 			__func__, 1 << cfi->cfi_portwidth);
613fb19d2b7Scliff 	}
614fb19d2b7Scliff }
615fb19d2b7Scliff 
6169a36cd16Sphx static uint8_t
cfi_read_qry(struct cfi * const cfi,bus_size_t off)6179a36cd16Sphx cfi_read_qry(struct cfi * const cfi, bus_size_t off)
6189a36cd16Sphx {
6199a36cd16Sphx 	const bus_space_tag_t bst = cfi->cfi_bst;
6209a36cd16Sphx 	bus_space_handle_t bsh = cfi->cfi_bsh;
6219a36cd16Sphx 	uint8_t data;
6229a36cd16Sphx 
6239a36cd16Sphx 	off <<= cfi->cfi_portwidth;
6249a36cd16Sphx 
6259a36cd16Sphx 	switch (cfi->cfi_portwidth) {
6269a36cd16Sphx 	case 0:
6279a36cd16Sphx 		data = bus_space_read_1(bst, bsh, off);
6289a36cd16Sphx 		break;
6299a36cd16Sphx 	case 1:
6309a36cd16Sphx 		data = bus_space_read_2(bst, bsh, off);
6319a36cd16Sphx 		break;
6329a36cd16Sphx 	case 2:
6339a36cd16Sphx 		data = bus_space_read_4(bst, bsh, off);
6349a36cd16Sphx 		break;
6359a36cd16Sphx 	case 3:
6369a36cd16Sphx 		data = bus_space_read_8(bst, bsh, off);
6379a36cd16Sphx 		break;
6389a36cd16Sphx 	default:
6399a36cd16Sphx 		data = ~0;
6409a36cd16Sphx 		break;
6419a36cd16Sphx 	}
6429a36cd16Sphx 	return data;
6439a36cd16Sphx }
6449a36cd16Sphx 
645fb19d2b7Scliff /*
646fb19d2b7Scliff  * cfi_reset_default - when we don't know which command will work, use both
647fb19d2b7Scliff  */
648fb19d2b7Scliff void
cfi_reset_default(struct cfi * const cfi)649fb19d2b7Scliff cfi_reset_default(struct cfi * const cfi)
650fb19d2b7Scliff {
6519a36cd16Sphx 
6529a36cd16Sphx 	cfi_cmd(cfi, CFI_ADDR_ANY, CFI_RESET_DATA);
6539a36cd16Sphx 	cfi_cmd(cfi, CFI_ADDR_ANY, CFI_ALT_RESET_DATA);
654fb19d2b7Scliff }
655fb19d2b7Scliff 
656fb19d2b7Scliff /*
657fb19d2b7Scliff  * cfi_reset_std - use standard reset command
658fb19d2b7Scliff  */
659fb19d2b7Scliff void
cfi_reset_std(struct cfi * const cfi)660fb19d2b7Scliff cfi_reset_std(struct cfi * const cfi)
661fb19d2b7Scliff {
6629a36cd16Sphx 
6639a36cd16Sphx 	cfi_cmd(cfi, CFI_ADDR_ANY, CFI_RESET_DATA);
664fb19d2b7Scliff }
665fb19d2b7Scliff 
666fb19d2b7Scliff /*
667fb19d2b7Scliff  * cfi_reset_alt - use "alternate" reset command
668fb19d2b7Scliff  */
669fb19d2b7Scliff void
cfi_reset_alt(struct cfi * const cfi)670fb19d2b7Scliff cfi_reset_alt(struct cfi * const cfi)
671fb19d2b7Scliff {
6729a36cd16Sphx 
6739a36cd16Sphx 	cfi_cmd(cfi, CFI_ADDR_ANY, CFI_ALT_RESET_DATA);
674fb19d2b7Scliff }
675fb19d2b7Scliff 
676fb19d2b7Scliff static void
cfi_jedec_id_1(struct cfi * const cfi)6777537bb1cScliff cfi_jedec_id_1(struct cfi * const cfi)
6787537bb1cScliff {
6797537bb1cScliff 	struct cfi_jedec_id_data *idp = &cfi->cfi_id_data;
6807537bb1cScliff 	uint8_t data[0x10];
6817537bb1cScliff 
6827537bb1cScliff 	bus_space_read_region_1(cfi->cfi_bst, cfi->cfi_bsh, 0, data,
6837537bb1cScliff 		__arraycount(data));
6847537bb1cScliff 
6857537bb1cScliff 	CFI_DUMP_JEDEC(0, data, sizeof(data), 1);
6867537bb1cScliff 
6877537bb1cScliff 	idp->id_mid = (uint16_t)data[0];
6887537bb1cScliff 	idp->id_did[0] = (uint16_t)data[1];
6897537bb1cScliff 	idp->id_did[1] = (uint16_t)data[0xe];
6907537bb1cScliff 	idp->id_did[2] = (uint16_t)data[0xf];
6917537bb1cScliff 	idp->id_prot_state = (uint16_t)data[2];
6927537bb1cScliff 	idp->id_indicators = (uint16_t)data[3];
6937537bb1cScliff 
6947537bb1cScliff 	/* software bits, upper and lower */
6957537bb1cScliff 	idp->id_swb_lo = data[0xc];
6967537bb1cScliff 	idp->id_swb_hi = data[0xd];
6977537bb1cScliff 
6987537bb1cScliff }
6997537bb1cScliff 
7007537bb1cScliff static void
cfi_jedec_id_2(struct cfi * const cfi)701fb19d2b7Scliff cfi_jedec_id_2(struct cfi * const cfi)
702fb19d2b7Scliff {
703fb19d2b7Scliff 	struct cfi_jedec_id_data *idp = &cfi->cfi_id_data;
704fb19d2b7Scliff 	uint16_t data[0x10];
705fb19d2b7Scliff 
706fb19d2b7Scliff 	bus_space_read_region_2(cfi->cfi_bst, cfi->cfi_bsh, 0, data,
707fb19d2b7Scliff 		__arraycount(data));
708fb19d2b7Scliff 
7097537bb1cScliff 	CFI_DUMP_JEDEC(0, data, sizeof(data), 1);
7107537bb1cScliff 
711fb19d2b7Scliff 	idp->id_mid = data[0];
712fb19d2b7Scliff 	idp->id_did[0] = data[1];
713fb19d2b7Scliff 	idp->id_did[1] = data[0xe];
714fb19d2b7Scliff 	idp->id_did[2] = data[0xf];
715fb19d2b7Scliff 	idp->id_prot_state = data[2];
716fb19d2b7Scliff 	idp->id_indicators = data[3];
717fb19d2b7Scliff 
718fb19d2b7Scliff 	/* software bits, upper and lower
719fb19d2b7Scliff 	 * - undefined on S29GL-P
720fb19d2b7Scliff 	 * - defined   on S29GL-S
721fb19d2b7Scliff 	 */
722fb19d2b7Scliff 	idp->id_swb_lo = data[0xc];
723fb19d2b7Scliff 	idp->id_swb_hi = data[0xd];
7247537bb1cScliff 
7257537bb1cScliff }
7267537bb1cScliff 
7277537bb1cScliff static void
cfi_jedec_id_4(struct cfi * const cfi)7287537bb1cScliff cfi_jedec_id_4(struct cfi * const cfi)
7297537bb1cScliff {
7307537bb1cScliff 	struct cfi_jedec_id_data *idp = &cfi->cfi_id_data;
7317537bb1cScliff 	uint32_t data[0x10];
7327537bb1cScliff 
7337537bb1cScliff 	bus_space_read_region_4(cfi->cfi_bst, cfi->cfi_bsh, 0, data,
7347537bb1cScliff 		__arraycount(data));
7357537bb1cScliff 
7367537bb1cScliff 	CFI_DUMP_JEDEC(0, data, sizeof(data), 1);
7377537bb1cScliff 
7387537bb1cScliff 	idp->id_mid = data[0] & 0xffff;
7397537bb1cScliff 	idp->id_did[0] = data[1] & 0xffff;
7407537bb1cScliff 	idp->id_did[1] = data[0xe] & 0xffff;
7417537bb1cScliff 	idp->id_did[2] = data[0xf] & 0xffff;
7427537bb1cScliff 	idp->id_prot_state = data[2] & 0xffff;
7437537bb1cScliff 	idp->id_indicators = data[3] & 0xffff;
7447537bb1cScliff 
7457537bb1cScliff 	/* software bits, upper and lower
7467537bb1cScliff 	 * - undefined on S29GL-P
7477537bb1cScliff 	 * - defined   on S29GL-S
7487537bb1cScliff 	 */
7497537bb1cScliff 	idp->id_swb_lo = data[0xc] & 0xffff;
7507537bb1cScliff 	idp->id_swb_hi = data[0xd] & 0xffff;
7517537bb1cScliff 
752fb19d2b7Scliff }
753fb19d2b7Scliff 
754fb19d2b7Scliff /*
755fb19d2b7Scliff  * cfi_jedec_id - get JEDEC ID info
756fb19d2b7Scliff  */
757fb19d2b7Scliff static bool
cfi_jedec_id(struct cfi * const cfi)758fb19d2b7Scliff cfi_jedec_id(struct cfi * const cfi)
759fb19d2b7Scliff {
7607537bb1cScliff 
761fb19d2b7Scliff 	DPRINTF(("%s\n", __func__));
762fb19d2b7Scliff 
7639a36cd16Sphx 	cfi_reset_default(cfi);
7649a36cd16Sphx 	cfi_cmd(cfi, cfi->cfi_unlock_addr1, 0xaa);
7659a36cd16Sphx 	cfi_cmd(cfi, cfi->cfi_unlock_addr2, 0x55);
7669a36cd16Sphx 	cfi_cmd(cfi, cfi->cfi_unlock_addr1, 0x90);
767fb19d2b7Scliff 
768fb19d2b7Scliff 	switch(cfi->cfi_portwidth) {
769fb19d2b7Scliff 	case 0:
770fb19d2b7Scliff 		cfi_jedec_id_1(cfi);
771fb19d2b7Scliff 		break;
7727537bb1cScliff 	case 1:
7737537bb1cScliff 		cfi_jedec_id_2(cfi);
7747537bb1cScliff 		break;
775fb19d2b7Scliff 	case 2:
776fb19d2b7Scliff 		cfi_jedec_id_4(cfi);
777fb19d2b7Scliff 		break;
7787537bb1cScliff #ifdef NOTYET
779fb19d2b7Scliff 	case 3:
780fb19d2b7Scliff 		cfi_jedec_id_8(cfi);
781fb19d2b7Scliff 		break;
782fb19d2b7Scliff #endif
783fb19d2b7Scliff 	default:
784fb19d2b7Scliff 		panic("%s: bad portwidth %d bytes\n",
785fb19d2b7Scliff 			__func__, 1 << cfi->cfi_portwidth);
786fb19d2b7Scliff 	}
787fb19d2b7Scliff 
788fb19d2b7Scliff 	return true;
789fb19d2b7Scliff }
790fb19d2b7Scliff 
7917537bb1cScliff static bool
cfi_emulate(struct cfi * const cfi)7927537bb1cScliff cfi_emulate(struct cfi * const cfi)
7937537bb1cScliff {
7947537bb1cScliff 	bool found = false;
7957537bb1cScliff 	const struct cfi_jedec_tab *jt = cfi_jedec_search(cfi);
7967537bb1cScliff 	if (jt != NULL) {
7977537bb1cScliff 		found = true;
7987537bb1cScliff 		cfi->cfi_emulated = true;
7997537bb1cScliff 		cfi_jedec_fill(cfi, jt);
8007537bb1cScliff 	}
8017537bb1cScliff 	return found;
8027537bb1cScliff }
8037537bb1cScliff 
8047537bb1cScliff /*
8057537bb1cScliff  * cfi_jedec_search - search cfi_jedec_tab[] for entry matching given JEDEC IDs
8067537bb1cScliff  */
8077537bb1cScliff static const struct cfi_jedec_tab *
cfi_jedec_search(struct cfi * cfi)8087537bb1cScliff cfi_jedec_search(struct cfi *cfi)
8097537bb1cScliff {
8107537bb1cScliff 	struct cfi_jedec_id_data *idp = &cfi->cfi_id_data;
8117537bb1cScliff 
8127537bb1cScliff 	for (u_int i=0; i < __arraycount(cfi_jedec_tab); i++) {
8137537bb1cScliff 		const struct cfi_jedec_tab *jt = &cfi_jedec_tab[i];
8147537bb1cScliff 		if ((jt->jt_mid == idp->id_mid) &&
8157537bb1cScliff 		    (jt->jt_did == idp->id_did[0])) {
8167537bb1cScliff 			return jt;
8177537bb1cScliff 		}
8187537bb1cScliff 	}
8197537bb1cScliff 	return NULL;
8207537bb1cScliff }
8217537bb1cScliff 
8227537bb1cScliff /*
8237537bb1cScliff  * cfi_jedec_fill - fill in cfi with info from table entry
8247537bb1cScliff  */
8257537bb1cScliff static void
cfi_jedec_fill(struct cfi * cfi,const struct cfi_jedec_tab * jt)8267537bb1cScliff cfi_jedec_fill(struct cfi *cfi, const struct cfi_jedec_tab *jt)
8277537bb1cScliff {
828890cde0dScliff 
8297537bb1cScliff 	cfi->cfi_name = jt->jt_name;
830890cde0dScliff 
831890cde0dScliff 	struct cfi_query_data *qryp = &cfi->cfi_qry_data;
832*70752740Smrg 	memset(qryp, 0, sizeof(*qryp));
833890cde0dScliff 	qryp->id_pri = jt->jt_id_pri;
834890cde0dScliff 	qryp->id_alt = jt->jt_id_alt;
835890cde0dScliff 	qryp->interface_code_desc = jt->jt_interface_code_desc;
836890cde0dScliff 	qryp->write_word_time_typ = jt->jt_write_word_time_typ;
837890cde0dScliff 	qryp->write_nbyte_time_typ = jt->jt_write_nbyte_time_typ;
838890cde0dScliff 	qryp->erase_blk_time_typ = jt->jt_erase_blk_time_typ;
839890cde0dScliff 	qryp->erase_chip_time_typ = jt->jt_erase_chip_time_typ;
840890cde0dScliff 	qryp->write_word_time_max = jt->jt_write_word_time_max;
841890cde0dScliff 	qryp->write_nbyte_time_max = jt->jt_write_nbyte_time_max;
842890cde0dScliff 	qryp->erase_blk_time_max = jt->jt_erase_blk_time_max;
843890cde0dScliff 	qryp->erase_chip_time_max = jt->jt_erase_chip_time_max;
844890cde0dScliff 	qryp->device_size = jt->jt_device_size;
845890cde0dScliff 	qryp->interface_code_desc = jt->jt_interface_code_desc;
846890cde0dScliff 	qryp->write_nbyte_size_max = jt->jt_write_nbyte_size_max;
847890cde0dScliff 	qryp->erase_blk_regions = jt->jt_erase_blk_regions;
8487537bb1cScliff 	for (u_int i=0; i < 4; i++)
849890cde0dScliff 		qryp->erase_blk_info[i] = jt->jt_erase_blk_info[i];
850890cde0dScliff 
8517537bb1cScliff }
8527537bb1cScliff 
853fb19d2b7Scliff void
cfi_print(device_t self,struct cfi * const cfi)854fb19d2b7Scliff cfi_print(device_t self, struct cfi * const cfi)
855fb19d2b7Scliff {
856fb19d2b7Scliff 	char pbuf[sizeof("XXXX MB")];
857fb19d2b7Scliff 	struct cfi_query_data * const qryp = &cfi->cfi_qry_data;
858fb19d2b7Scliff 
859fb19d2b7Scliff 	format_bytes(pbuf, sizeof(pbuf), 1 << qryp->device_size);
8607537bb1cScliff 	if (cfi->cfi_emulated) {
8617537bb1cScliff 		aprint_normal_dev(self, "%s NOR flash %s %s\n",
8627537bb1cScliff 			cfi->cfi_name, pbuf,
8637537bb1cScliff 			cfi_interface_desc_str(qryp->interface_code_desc));
8647537bb1cScliff 	} else {
865fb19d2b7Scliff 		aprint_normal_dev(self, "CFI NOR flash %s %s\n", pbuf,
866fb19d2b7Scliff 			cfi_interface_desc_str(qryp->interface_code_desc));
8677537bb1cScliff 	}
868fb19d2b7Scliff #ifdef NOR_VERBOSE
869fb19d2b7Scliff 	aprint_normal_dev(self, "manufacturer id %#x, device id %#x %#x %#x\n",
870fb19d2b7Scliff 		cfi->cfi_id_data.id_mid,
871fb19d2b7Scliff 		cfi->cfi_id_data.id_did[0],
872fb19d2b7Scliff 		cfi->cfi_id_data.id_did[1],
873fb19d2b7Scliff 		cfi->cfi_id_data.id_did[2]);
8749a36cd16Sphx 	aprint_normal_dev(self, "x%u device operating in %u-bit mode\n",
8759a36cd16Sphx 		8 << cfi->cfi_portwidth, 8 << cfi->cfi_chipwidth);
876fb19d2b7Scliff 	aprint_normal_dev(self, "sw bits lo=%#x hi=%#x\n",
877fb19d2b7Scliff 		cfi->cfi_id_data.id_swb_lo,
878fb19d2b7Scliff 		cfi->cfi_id_data.id_swb_hi);
879fb19d2b7Scliff 	aprint_normal_dev(self, "max multibyte write size %d\n",
880fb19d2b7Scliff 		1 << qryp->write_nbyte_size_max);
881fb19d2b7Scliff 	aprint_normal_dev(self, "%d Erase Block Region(s)\n",
882fb19d2b7Scliff 		qryp->erase_blk_regions);
883fb19d2b7Scliff 	for (u_int r=0; r < qryp->erase_blk_regions; r++) {
88480b0980eSphx 		size_t sz = qryp->erase_blk_info[r].z ?
88580b0980eSphx 		    qryp->erase_blk_info[r].z * 256 : 128;
886fb19d2b7Scliff 		format_bytes(pbuf, sizeof(pbuf), sz);
887fb19d2b7Scliff 		aprint_normal("    %d: %d blocks, size %s\n", r,
888fb19d2b7Scliff 			qryp->erase_blk_info[r].y + 1, pbuf);
889fb19d2b7Scliff 	}
890fb19d2b7Scliff #endif
891fb19d2b7Scliff 
892fb19d2b7Scliff 	switch (cfi->cfi_qry_data.id_pri) {
893fb19d2b7Scliff 	case 0x0002:
894fb19d2b7Scliff 		cfi_0002_print(self, cfi);
895fb19d2b7Scliff 		break;
896fb19d2b7Scliff 	}
897fb19d2b7Scliff }
8987537bb1cScliff 
8997537bb1cScliff #if defined(CFI_DEBUG_JEDEC) || defined(CFI_DEBUG_QRY)
9007537bb1cScliff void
cfi_hexdump(flash_off_t offset,void * const v,u_int count,u_int stride)9017537bb1cScliff cfi_hexdump(flash_off_t offset, void * const v, u_int count, u_int stride)
9027537bb1cScliff {
9037537bb1cScliff 	uint8_t * const data = v;
9047537bb1cScliff 	for(int n=0; n < count; n+=16) {
9057537bb1cScliff 		int i;
9067537bb1cScliff 		printf("%08llx: ", (offset + n) / stride);
9077537bb1cScliff 		for(i=n; i < n+16; i++)
9087537bb1cScliff 			printf("%02x ", data[i]);
9097537bb1cScliff 		printf("\t");
9107537bb1cScliff 		for(i=n; i < n+16; i++) {
9117537bb1cScliff 			u_int c = (int)data[i];
9127537bb1cScliff 			if (c >= 0x20 && c < 0x7f)
9137537bb1cScliff 				printf("%c", c);
9147537bb1cScliff 			else
9157537bb1cScliff 				printf("%c", '.');
9167537bb1cScliff 		}
9177537bb1cScliff 		printf("\n");
9187537bb1cScliff 	}
9197537bb1cScliff }
9207537bb1cScliff #endif
921