nand.h revision 1.4 1 1.4 ahoka /* $NetBSD: nand.h,v 1.4 2011/03/27 13:33:04 ahoka Exp $ */
2 1.1 ahoka
3 1.1 ahoka /*-
4 1.1 ahoka * Copyright (c) 2010 Department of Software Engineering,
5 1.1 ahoka * University of Szeged, Hungary
6 1.1 ahoka * Copyright (c) 2010 Adam Hoka <ahoka (at) NetBSD.org>
7 1.1 ahoka * All rights reserved.
8 1.1 ahoka *
9 1.1 ahoka * This code is derived from software contributed to The NetBSD Foundation
10 1.1 ahoka * by the Department of Software Engineering, University of Szeged, Hungary
11 1.1 ahoka *
12 1.1 ahoka * Redistribution and use in source and binary forms, with or without
13 1.1 ahoka * modification, are permitted provided that the following conditions
14 1.1 ahoka * are met:
15 1.1 ahoka * 1. Redistributions of source code must retain the above copyright
16 1.1 ahoka * notice, this list of conditions and the following disclaimer.
17 1.1 ahoka * 2. Redistributions in binary form must reproduce the above copyright
18 1.1 ahoka * notice, this list of conditions and the following disclaimer in the
19 1.1 ahoka * documentation and/or other materials provided with the distribution.
20 1.1 ahoka *
21 1.1 ahoka * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
22 1.1 ahoka * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
23 1.1 ahoka * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
24 1.1 ahoka * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
25 1.1 ahoka * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
26 1.1 ahoka * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
27 1.1 ahoka * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
28 1.1 ahoka * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
29 1.1 ahoka * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
30 1.1 ahoka * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
31 1.1 ahoka * SUCH DAMAGE.
32 1.1 ahoka */
33 1.1 ahoka
34 1.1 ahoka #ifndef _NAND_H_
35 1.1 ahoka #define _NAND_H_
36 1.1 ahoka
37 1.1 ahoka #include <sys/param.h>
38 1.1 ahoka #include <sys/cdefs.h>
39 1.1 ahoka
40 1.1 ahoka #include <sys/bufq.h>
41 1.1 ahoka #include <sys/buf.h>
42 1.1 ahoka #include <sys/time.h>
43 1.1 ahoka
44 1.4 ahoka #include <dev/nand/onfi.h>
45 1.1 ahoka #include <dev/flash/flash.h>
46 1.1 ahoka
47 1.1 ahoka //#define NAND_DEBUG 1
48 1.1 ahoka #ifdef NAND_DEBUG
49 1.1 ahoka #define DPRINTF(x) if (nanddebug) printf x
50 1.1 ahoka #define DPRINTFN(n,x) if (nanddebug>(n)) printf x
51 1.1 ahoka #else
52 1.1 ahoka #define DPRINTF(x)
53 1.1 ahoka #define DPRINTFN(n,x)
54 1.1 ahoka #endif
55 1.1 ahoka
56 1.4 ahoka //#define NAND_VERBOSE
57 1.1 ahoka
58 1.1 ahoka /* same as in linux for compatibility */
59 1.1 ahoka enum {
60 1.1 ahoka NAND_BAD_MARKER_OFFSET = 0,
61 1.1 ahoka NAND_BAD_MARKER_OFFSET_SMALL = 5
62 1.1 ahoka };
63 1.1 ahoka
64 1.1 ahoka /* feature flags use in nc_flags */
65 1.1 ahoka enum {
66 1.1 ahoka NC_BUSWIDTH_16 = (1<<0),
67 1.1 ahoka NC_SOURCE_SYNC = (1<<2),
68 1.1 ahoka NC_INTERLEAVED_PE = (1<<1),
69 1.1 ahoka NC_INTERLEAVED_R = (1<<3),
70 1.1 ahoka NC_EXTENDED_PARAM = (1<<4)
71 1.1 ahoka };
72 1.1 ahoka
73 1.1 ahoka /* various quirks used in nc_quirks */
74 1.1 ahoka enum {
75 1.1 ahoka NC_QUIRK_NO_READ_START = (1<<0)
76 1.1 ahoka };
77 1.1 ahoka
78 1.1 ahoka enum {
79 1.1 ahoka NAND_ECC_READ,
80 1.1 ahoka NAND_ECC_WRITE
81 1.1 ahoka };
82 1.1 ahoka
83 1.1 ahoka enum {
84 1.1 ahoka NAND_ECC_OK,
85 1.1 ahoka NAND_ECC_CORRECTED,
86 1.1 ahoka NAND_ECC_INVALID,
87 1.1 ahoka NAND_ECC_TWOBIT
88 1.1 ahoka };
89 1.1 ahoka
90 1.1 ahoka enum {
91 1.1 ahoka NAND_ECC_TYPE_HW,
92 1.1 ahoka NAND_ECC_TYPE_SW
93 1.1 ahoka };
94 1.1 ahoka
95 1.1 ahoka struct nand_bbt {
96 1.1 ahoka uint8_t *nbbt_bitmap;
97 1.1 ahoka size_t nbbt_size;
98 1.1 ahoka };
99 1.1 ahoka
100 1.1 ahoka struct nand_ecc {
101 1.1 ahoka size_t necc_offset; /* offset of ecc data in oob */
102 1.1 ahoka size_t necc_size; /* size of ecc data in oob */
103 1.1 ahoka size_t necc_block_size; /* block size used in ecc calc */
104 1.1 ahoka size_t necc_code_size; /* reduntant bytes per block */
105 1.1 ahoka int necc_steps; /* pagesize / code size */
106 1.1 ahoka int necc_type; /* type of the ecc engine */
107 1.1 ahoka };
108 1.1 ahoka
109 1.1 ahoka /**
110 1.1 ahoka * nand_chip: structure containing the required information
111 1.1 ahoka * about the NAND chip.
112 1.1 ahoka */
113 1.1 ahoka struct nand_chip {
114 1.3 ahoka struct nand_ecc *nc_ecc; /* ecc information */
115 1.1 ahoka uint8_t *nc_oob_cache; /* buffer for oob cache */
116 1.1 ahoka uint8_t *nc_page_cache; /* buffer for page cache */
117 1.1 ahoka uint8_t *nc_ecc_cache;
118 1.1 ahoka size_t nc_size; /* storage size in bytes */
119 1.1 ahoka size_t nc_page_size; /* page size in bytes */
120 1.1 ahoka size_t nc_block_pages; /* block size in pages */
121 1.1 ahoka size_t nc_block_size; /* block size in bytes */
122 1.1 ahoka size_t nc_spare_size; /* spare (oob) size in bytes */
123 1.3 ahoka uint32_t nc_lun_blocks; /* LUN size in blocks */
124 1.1 ahoka uint32_t nc_flags; /* bitfield flags */
125 1.1 ahoka uint32_t nc_quirks; /* bitfield quirks */
126 1.1 ahoka unsigned int nc_page_shift; /* page shift for page alignment */
127 1.1 ahoka unsigned int nc_page_mask; /* page mask for page alignment */
128 1.1 ahoka unsigned int nc_block_shift; /* write shift */
129 1.1 ahoka unsigned int nc_block_mask; /* write mask */
130 1.3 ahoka uint8_t nc_num_luns; /* number of LUNs */
131 1.1 ahoka uint8_t nc_manf_id; /* manufacturer id */
132 1.1 ahoka uint8_t nc_dev_id; /* device id */
133 1.1 ahoka uint8_t nc_addr_cycles_row; /* row cycles for addressing */
134 1.1 ahoka uint8_t nc_addr_cycles_column; /* column cycles for addressing */
135 1.1 ahoka uint8_t nc_badmarker_offs; /* offset for marking bad blocks */
136 1.3 ahoka bool nc_isonfi; /* if the device is onfi compliant */
137 1.1 ahoka };
138 1.1 ahoka
139 1.1 ahoka struct nand_write_cache {
140 1.1 ahoka struct bintime nwc_creation;
141 1.1 ahoka struct bintime nwc_last_write;
142 1.1 ahoka struct bufq_state *nwc_bufq;
143 1.1 ahoka uint8_t *nwc_data;
144 1.1 ahoka daddr_t nwc_block;
145 1.1 ahoka kmutex_t nwc_lock;
146 1.1 ahoka bool nwc_write_pending;
147 1.1 ahoka };
148 1.1 ahoka
149 1.1 ahoka /* driver softc for nand */
150 1.1 ahoka struct nand_softc {
151 1.1 ahoka device_t sc_dev;
152 1.4 ahoka device_t controller_dev;
153 1.1 ahoka struct nand_interface *nand_if;
154 1.1 ahoka void *nand_softc;
155 1.1 ahoka struct nand_chip sc_chip;
156 1.1 ahoka struct nand_bbt sc_bbt;
157 1.1 ahoka size_t sc_part_offset;
158 1.1 ahoka size_t sc_part_size;
159 1.1 ahoka kmutex_t sc_device_lock; /* serialize access to chip */
160 1.1 ahoka
161 1.1 ahoka /* for the i/o thread */
162 1.1 ahoka struct lwp *sc_sync_thread;
163 1.1 ahoka struct nand_write_cache sc_cache;
164 1.1 ahoka kmutex_t sc_io_lock;
165 1.1 ahoka kmutex_t sc_waitq_lock;
166 1.1 ahoka kcondvar_t sc_io_cv;
167 1.1 ahoka bool sc_io_running;
168 1.1 ahoka };
169 1.1 ahoka
170 1.1 ahoka /* structure holding the nand api */
171 1.1 ahoka struct nand_interface
172 1.1 ahoka {
173 1.4 ahoka /* basic nand controller commands */
174 1.4 ahoka void (*select) (device_t, bool); /* optional */
175 1.1 ahoka void (*command) (device_t, uint8_t);
176 1.1 ahoka void (*address) (device_t, uint8_t);
177 1.1 ahoka void (*read_buf_byte) (device_t, void *, size_t);
178 1.1 ahoka void (*read_buf_word) (device_t, void *, size_t);
179 1.1 ahoka void (*read_byte) (device_t, uint8_t *);
180 1.1 ahoka void (*read_word) (device_t, uint16_t *);
181 1.1 ahoka void (*write_buf_byte) (device_t, const void *, size_t);
182 1.1 ahoka void (*write_buf_word) (device_t, const void *, size_t);
183 1.1 ahoka void (*write_byte) (device_t, uint8_t);
184 1.1 ahoka void (*write_word) (device_t, uint16_t);
185 1.1 ahoka void (*busy) (device_t);
186 1.1 ahoka
187 1.4 ahoka /* "smart" controllers may override read/program functions */
188 1.4 ahoka int (*read_page) (device_t, size_t, uint8_t *); /* optional */
189 1.4 ahoka int (*program_page) (device_t, size_t, const uint8_t *); /* optional */
190 1.4 ahoka
191 1.1 ahoka /* functions specific to ecc computation */
192 1.4 ahoka int (*ecc_prepare)(device_t, int); /* optional */
193 1.1 ahoka int (*ecc_compute)(device_t, const uint8_t *, uint8_t *);
194 1.1 ahoka int (*ecc_correct)(device_t, uint8_t *, const uint8_t *,
195 1.1 ahoka const uint8_t *);
196 1.1 ahoka
197 1.4 ahoka /* information for the ecc engine */
198 1.1 ahoka struct nand_ecc ecc;
199 1.1 ahoka
200 1.1 ahoka /* flash partition information */
201 1.1 ahoka const struct flash_partition *part_info;
202 1.1 ahoka int part_num;
203 1.1 ahoka };
204 1.1 ahoka
205 1.1 ahoka /* attach args */
206 1.1 ahoka struct nand_attach_args {
207 1.1 ahoka struct nand_interface *naa_nand_if;
208 1.1 ahoka };
209 1.1 ahoka
210 1.1 ahoka static inline void
211 1.1 ahoka nand_busy(device_t device)
212 1.1 ahoka {
213 1.1 ahoka struct nand_softc *sc = device_private(device);
214 1.1 ahoka
215 1.1 ahoka KASSERT(sc->nand_if->select != NULL);
216 1.4 ahoka KASSERT(sc->controller_dev != NULL);
217 1.1 ahoka
218 1.4 ahoka sc->nand_if->select(sc->controller_dev, true);
219 1.1 ahoka
220 1.1 ahoka if (sc->nand_if->busy != NULL) {
221 1.4 ahoka sc->nand_if->busy(sc->controller_dev);
222 1.1 ahoka }
223 1.1 ahoka
224 1.4 ahoka sc->nand_if->select(sc->controller_dev, false);
225 1.1 ahoka }
226 1.1 ahoka
227 1.1 ahoka static inline void
228 1.1 ahoka nand_select(device_t self, bool enable)
229 1.1 ahoka {
230 1.1 ahoka struct nand_softc *sc = device_private(self);
231 1.1 ahoka
232 1.1 ahoka KASSERT(sc->nand_if->select != NULL);
233 1.4 ahoka KASSERT(sc->controller_dev != NULL);
234 1.1 ahoka
235 1.4 ahoka sc->nand_if->select(sc->controller_dev, enable);
236 1.1 ahoka }
237 1.1 ahoka
238 1.1 ahoka static inline void
239 1.1 ahoka nand_address(device_t self, uint32_t address)
240 1.1 ahoka {
241 1.1 ahoka struct nand_softc *sc = device_private(self);
242 1.1 ahoka
243 1.1 ahoka KASSERT(sc->nand_if->address != NULL);
244 1.4 ahoka KASSERT(sc->controller_dev != NULL);
245 1.1 ahoka
246 1.4 ahoka sc->nand_if->address(sc->controller_dev, address);
247 1.1 ahoka }
248 1.1 ahoka
249 1.1 ahoka static inline void
250 1.1 ahoka nand_command(device_t self, uint8_t command)
251 1.1 ahoka {
252 1.1 ahoka struct nand_softc *sc = device_private(self);
253 1.1 ahoka
254 1.1 ahoka KASSERT(sc->nand_if->command != NULL);
255 1.4 ahoka KASSERT(sc->controller_dev != NULL);
256 1.1 ahoka
257 1.4 ahoka sc->nand_if->command(sc->controller_dev, command);
258 1.1 ahoka }
259 1.1 ahoka
260 1.1 ahoka static inline void
261 1.1 ahoka nand_read_byte(device_t self, uint8_t *data)
262 1.1 ahoka {
263 1.1 ahoka struct nand_softc *sc = device_private(self);
264 1.1 ahoka
265 1.1 ahoka KASSERT(sc->nand_if->read_byte != NULL);
266 1.4 ahoka KASSERT(sc->controller_dev != NULL);
267 1.1 ahoka
268 1.4 ahoka sc->nand_if->read_byte(sc->controller_dev, data);
269 1.1 ahoka }
270 1.1 ahoka
271 1.1 ahoka static inline void
272 1.1 ahoka nand_write_byte(device_t self, uint8_t data)
273 1.1 ahoka {
274 1.1 ahoka struct nand_softc *sc = device_private(self);
275 1.1 ahoka
276 1.1 ahoka KASSERT(sc->nand_if->write_byte != NULL);
277 1.4 ahoka KASSERT(sc->controller_dev != NULL);
278 1.1 ahoka
279 1.4 ahoka sc->nand_if->write_byte(sc->controller_dev, data);
280 1.1 ahoka }
281 1.1 ahoka
282 1.1 ahoka static inline void
283 1.1 ahoka nand_read_word(device_t self, uint16_t *data)
284 1.1 ahoka {
285 1.1 ahoka struct nand_softc *sc = device_private(self);
286 1.1 ahoka
287 1.1 ahoka KASSERT(sc->nand_if->read_word != NULL);
288 1.4 ahoka KASSERT(sc->controller_dev != NULL);
289 1.1 ahoka
290 1.4 ahoka sc->nand_if->read_word(sc->controller_dev, data);
291 1.1 ahoka }
292 1.1 ahoka
293 1.1 ahoka static inline void
294 1.1 ahoka nand_write_word(device_t self, uint16_t data)
295 1.1 ahoka {
296 1.1 ahoka struct nand_softc *sc = device_private(self);
297 1.1 ahoka
298 1.1 ahoka KASSERT(sc->nand_if->write_word != NULL);
299 1.4 ahoka KASSERT(sc->controller_dev != NULL);
300 1.1 ahoka
301 1.4 ahoka sc->nand_if->write_word(sc->controller_dev, data);
302 1.1 ahoka }
303 1.1 ahoka
304 1.1 ahoka static inline void
305 1.1 ahoka nand_read_buf_byte(device_t self, void *buf, size_t size)
306 1.1 ahoka {
307 1.1 ahoka struct nand_softc *sc = device_private(self);
308 1.1 ahoka
309 1.1 ahoka KASSERT(sc->nand_if->read_buf_byte != NULL);
310 1.4 ahoka KASSERT(sc->controller_dev != NULL);
311 1.1 ahoka
312 1.4 ahoka sc->nand_if->read_buf_byte(sc->controller_dev, buf, size);
313 1.1 ahoka }
314 1.1 ahoka
315 1.1 ahoka static inline void
316 1.1 ahoka nand_read_buf_word(device_t self, void *buf, size_t size)
317 1.1 ahoka {
318 1.1 ahoka struct nand_softc *sc = device_private(self);
319 1.1 ahoka
320 1.1 ahoka KASSERT(sc->nand_if->read_buf_word != NULL);
321 1.4 ahoka KASSERT(sc->controller_dev != NULL);
322 1.1 ahoka
323 1.4 ahoka sc->nand_if->read_buf_word(sc->controller_dev, buf, size);
324 1.1 ahoka }
325 1.1 ahoka
326 1.1 ahoka static inline void
327 1.1 ahoka nand_write_buf_byte(device_t self, const void *buf, size_t size)
328 1.1 ahoka {
329 1.1 ahoka struct nand_softc *sc = device_private(self);
330 1.1 ahoka
331 1.1 ahoka KASSERT(sc->nand_if->write_buf_byte != NULL);
332 1.4 ahoka KASSERT(sc->controller_dev != NULL);
333 1.4 ahoka
334 1.4 ahoka sc->nand_if->write_buf_byte(sc->controller_dev, buf, size);
335 1.1 ahoka }
336 1.1 ahoka
337 1.1 ahoka static inline void
338 1.1 ahoka nand_write_buf_word(device_t self, const void *buf, size_t size)
339 1.1 ahoka {
340 1.1 ahoka struct nand_softc *sc = device_private(self);
341 1.1 ahoka
342 1.1 ahoka KASSERT(sc->nand_if->write_buf_word != NULL);
343 1.4 ahoka KASSERT(sc->controller_dev != NULL);
344 1.4 ahoka
345 1.4 ahoka sc->nand_if->write_buf_word(sc->controller_dev, buf, size);
346 1.1 ahoka }
347 1.1 ahoka
348 1.1 ahoka static inline int
349 1.1 ahoka nand_ecc_correct(device_t self, uint8_t *data, const uint8_t *oldcode,
350 1.1 ahoka const uint8_t *newcode)
351 1.1 ahoka {
352 1.1 ahoka struct nand_softc *sc = device_private(self);
353 1.1 ahoka
354 1.1 ahoka KASSERT(sc->nand_if->ecc_correct != NULL);
355 1.4 ahoka KASSERT(sc->controller_dev != NULL);
356 1.1 ahoka
357 1.4 ahoka return sc->nand_if->ecc_correct(sc->controller_dev, data, oldcode, newcode);
358 1.1 ahoka }
359 1.1 ahoka
360 1.1 ahoka static inline void
361 1.1 ahoka nand_ecc_compute(device_t self, const uint8_t *data, uint8_t *code)
362 1.1 ahoka {
363 1.1 ahoka struct nand_softc *sc = device_private(self);
364 1.1 ahoka
365 1.1 ahoka KASSERT(sc->nand_if->ecc_compute != NULL);
366 1.4 ahoka KASSERT(sc->controller_dev != NULL);
367 1.1 ahoka
368 1.4 ahoka sc->nand_if->ecc_compute(sc->controller_dev, data, code);
369 1.1 ahoka }
370 1.1 ahoka
371 1.1 ahoka static inline void
372 1.1 ahoka nand_ecc_prepare(device_t self, int mode)
373 1.1 ahoka {
374 1.1 ahoka struct nand_softc *sc = device_private(self);
375 1.1 ahoka
376 1.4 ahoka KASSERT(sc->controller_dev != NULL);
377 1.4 ahoka
378 1.1 ahoka if (sc->nand_if->ecc_prepare != NULL)
379 1.4 ahoka sc->nand_if->ecc_prepare(sc->controller_dev, mode);
380 1.4 ahoka }
381 1.4 ahoka
382 1.4 ahoka static inline int
383 1.4 ahoka nand_program_page(device_t self, size_t offset, const uint8_t *data)
384 1.4 ahoka {
385 1.4 ahoka struct nand_softc *sc = device_private(self);
386 1.4 ahoka
387 1.4 ahoka KASSERT(sc->nand_if->program_page != NULL);
388 1.4 ahoka
389 1.4 ahoka return sc->nand_if->program_page(self, offset, data);
390 1.4 ahoka }
391 1.4 ahoka
392 1.4 ahoka static inline int
393 1.4 ahoka nand_read_page(device_t self, size_t offset, uint8_t *data)
394 1.4 ahoka {
395 1.4 ahoka struct nand_softc *sc = device_private(self);
396 1.4 ahoka
397 1.4 ahoka KASSERT(sc->nand_if->read_page != NULL);
398 1.4 ahoka
399 1.4 ahoka return sc->nand_if->read_page(self, offset, data);
400 1.1 ahoka }
401 1.1 ahoka
402 1.1 ahoka #if 0
403 1.1 ahoka static inline bool
404 1.1 ahoka nand_block_isbad(device_t self, off_t block)
405 1.1 ahoka {
406 1.1 ahoka struct nand_softc *sc = device_private(self);
407 1.4 ahoka
408 1.1 ahoka KASSERT(sc->nand_if->block_isbad != NULL);
409 1.4 ahoka KASSERT(sc->controller_dev != NULL);
410 1.4 ahoka
411 1.4 ahoka return sc->nand_if->block_isbad(sc->controller_dev, block);
412 1.1 ahoka }
413 1.1 ahoka #endif
414 1.1 ahoka
415 1.1 ahoka /* Manufacturer IDs defined by JEDEC */
416 1.1 ahoka enum {
417 1.1 ahoka NAND_MFR_UNKNOWN = 0x00,
418 1.1 ahoka NAND_MFR_AMD = 0x01,
419 1.1 ahoka NAND_MFR_FUJITSU = 0x04,
420 1.1 ahoka NAND_MFR_RENESAS = 0x07,
421 1.1 ahoka NAND_MFR_STMICRO = 0x20,
422 1.1 ahoka NAND_MFR_MICRON = 0x2c,
423 1.1 ahoka NAND_MFR_NATIONAL = 0x8f,
424 1.1 ahoka NAND_MFR_TOSHIBA = 0x98,
425 1.1 ahoka NAND_MFR_HYNIX = 0xad,
426 1.1 ahoka NAND_MFR_SAMSUNG = 0xec
427 1.1 ahoka };
428 1.1 ahoka
429 1.1 ahoka struct nand_manufacturer {
430 1.1 ahoka int id;
431 1.1 ahoka const char *name;
432 1.1 ahoka };
433 1.1 ahoka
434 1.1 ahoka extern const struct nand_manufacturer nand_mfrs[];
435 1.1 ahoka
436 1.3 ahoka /*
437 1.3 ahoka * Manufacturer specific parameter functions
438 1.3 ahoka */
439 1.3 ahoka int nand_read_parameters_micron(device_t, struct nand_chip *);
440 1.3 ahoka
441 1.3 ahoka /* debug inlines */
442 1.3 ahoka
443 1.1 ahoka static inline void
444 1.1 ahoka nand_dump_data(const char *name, void *data, size_t len)
445 1.1 ahoka {
446 1.2 jruoho uint8_t *dump = data;
447 1.2 jruoho int i;
448 1.2 jruoho
449 1.1 ahoka printf("dumping %s\n--------------\n", name);
450 1.2 jruoho for (i = 0; i < len; i++) {
451 1.1 ahoka printf("0x%.2hhx ", *dump);
452 1.1 ahoka dump++;
453 1.1 ahoka }
454 1.1 ahoka printf("\n--------------\n");
455 1.1 ahoka }
456 1.1 ahoka
457 1.4 ahoka /* flash interface implementation */
458 1.4 ahoka int nand_flash_isbad(device_t, uint64_t);
459 1.4 ahoka int nand_flash_markbad(device_t, uint64_t);
460 1.4 ahoka int nand_flash_write(device_t, off_t, size_t, size_t *, const u_char *);
461 1.4 ahoka int nand_flash_read(device_t, off_t, size_t, size_t *, uint8_t *);
462 1.4 ahoka int nand_flash_erase(device_t, struct flash_erase_instruction *);
463 1.4 ahoka
464 1.4 ahoka /* nand specific functions */
465 1.4 ahoka int nand_erase_block(device_t, size_t);
466 1.4 ahoka
467 1.4 ahoka int nand_io_submit(device_t, struct buf *);
468 1.4 ahoka void nand_sync_thread(void *);
469 1.4 ahoka int nand_sync_thread_start(device_t);
470 1.4 ahoka void nand_sync_thread_stop(device_t);
471 1.4 ahoka
472 1.4 ahoka bool nand_isfactorybad(device_t, flash_addr_t);
473 1.4 ahoka bool nand_iswornoutbad(device_t, flash_addr_t);
474 1.4 ahoka bool nand_isbad(device_t, flash_addr_t);
475 1.4 ahoka void nand_markbad(device_t, size_t);
476 1.4 ahoka
477 1.4 ahoka //int nand_read_page(device_t, size_t, uint8_t *);
478 1.4 ahoka int nand_read_oob(device_t, size_t, uint8_t *);
479 1.4 ahoka //int nand_program_page(device_t, size_t, const uint8_t *);
480 1.4 ahoka
481 1.4 ahoka device_t nand_attach_mi(struct nand_interface *, device_t);
482 1.4 ahoka void nand_init_interface(struct nand_interface *);
483 1.4 ahoka
484 1.4 ahoka /* controller drivers may use these functions to get info about the chip */
485 1.4 ahoka void nand_read_id(device_t, uint8_t *, uint8_t *);
486 1.4 ahoka int nand_read_parameter_page(device_t, struct onfi_parameter_page *);
487 1.4 ahoka
488 1.4 ahoka /*
489 1.4 ahoka * default functions for driver development
490 1.4 ahoka */
491 1.4 ahoka void nand_default_select(device_t, bool);
492 1.4 ahoka int nand_default_ecc_compute(device_t, const uint8_t *, uint8_t *);
493 1.4 ahoka int nand_default_ecc_correct(device_t, uint8_t *, const uint8_t *,
494 1.4 ahoka const uint8_t *);
495 1.4 ahoka int nand_default_read_page(device_t, size_t, uint8_t *);
496 1.4 ahoka int nand_default_program_page(device_t, size_t, const uint8_t *);
497 1.4 ahoka
498 1.4 ahoka static inline void nand_busy(device_t);
499 1.4 ahoka static inline void nand_select(device_t, bool);
500 1.4 ahoka static inline void nand_command(device_t, uint8_t);
501 1.4 ahoka static inline void nand_address(device_t, uint32_t);
502 1.4 ahoka static inline void nand_read_buf_byte(device_t, void *, size_t);
503 1.4 ahoka static inline void nand_read_buf_word(device_t, void *, size_t);
504 1.4 ahoka static inline void nand_read_byte(device_t, uint8_t *);
505 1.4 ahoka static inline void nand_write_buf_byte(device_t, const void *, size_t);
506 1.4 ahoka static inline void nand_write_buf_word(device_t, const void *, size_t);
507 1.4 ahoka //static inline bool nand_block_isbad(device_t, off_t);
508 1.4 ahoka //static inline void nand_block_markbad(device_t, off_t);
509 1.4 ahoka //static inline bool nand_isbusy(device_t);
510 1.4 ahoka
511 1.1 ahoka #endif /* _NAND_H_ */
512