flash.h 20.5 KB
Newer Older
1
/*
2
 * This file is part of the flashrom project.
3
 *
4 5
 * Copyright (C) 2000 Silicon Integrated System Corporation
 * Copyright (C) 2000 Ronald G. Minnich <rminnich@gmail.com>
6
 * Copyright (C) 2005-2009 coresystems GmbH
7
 * Copyright (C) 2006-2009 Carl-Daniel Hailfinger
8
 *
9 10 11 12
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License as published by
 * the Free Software Foundation; either version 2 of the License, or
 * (at your option) any later version.
13
 *
14 15 16 17
 * This program is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 * GNU General Public License for more details.
18
 *
19 20 21
 * You should have received a copy of the GNU General Public License
 * along with this program; if not, write to the Free Software
 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA  02110-1301 USA
22 23
 */

Ronald G. Minnich's avatar
Ronald G. Minnich committed
24 25 26
#ifndef __FLASH_H__
#define __FLASH_H__ 1

27
#include <unistd.h>
28
#include <stdint.h>
29
#include <stdio.h>
30
#include "hwaccess.h"
Patrick Georgi's avatar
Patrick Georgi committed
31 32 33 34 35
#ifdef _WIN32
#include <windows.h>
#undef min
#undef max
#endif
36

37 38
typedef unsigned long chipaddr;

39
enum programmer {
40
#if INTERNAL_SUPPORT == 1
41
	PROGRAMMER_INTERNAL,
42
#endif
43
#if DUMMY_SUPPORT == 1
44
	PROGRAMMER_DUMMY,
45 46
#endif
#if NIC3COM_SUPPORT == 1
47
	PROGRAMMER_NIC3COM,
48
#endif
49 50 51
#if GFXNVIDIA_SUPPORT == 1
	PROGRAMMER_GFXNVIDIA,
#endif
52
#if DRKAISER_SUPPORT == 1
53
	PROGRAMMER_DRKAISER,
54 55
#endif
#if SATASII_SUPPORT == 1
56
	PROGRAMMER_SATASII,
57
#endif
58
#if INTERNAL_SUPPORT == 1
59
	PROGRAMMER_IT87SPI,
60
#endif
61
#if FT2232_SPI_SUPPORT == 1
62
	PROGRAMMER_FT2232SPI,
63
#endif
64
#if SERPROG_SUPPORT == 1
65
	PROGRAMMER_SERPROG,
66 67 68
#endif
#if BUSPIRATE_SPI_SUPPORT == 1
	PROGRAMMER_BUSPIRATESPI,
69
#endif
70
	PROGRAMMER_INVALID /* This must always be the last entry. */
71 72 73
};

extern enum programmer programmer;
74 75 76 77 78 79 80 81

struct programmer_entry {
	const char *vendor;
	const char *name;

	int (*init) (void);
	int (*shutdown) (void);

Uwe Hermann's avatar
Uwe Hermann committed
82 83
	void * (*map_flash_region) (const char *descr, unsigned long phys_addr,
				    size_t len);
84 85
	void (*unmap_flash_region) (void *virt_addr, size_t len);

86 87 88
	void (*chip_writeb) (uint8_t val, chipaddr addr);
	void (*chip_writew) (uint16_t val, chipaddr addr);
	void (*chip_writel) (uint32_t val, chipaddr addr);
89
	void (*chip_writen) (uint8_t *buf, chipaddr addr, size_t len);
90 91 92
	uint8_t (*chip_readb) (const chipaddr addr);
	uint16_t (*chip_readw) (const chipaddr addr);
	uint32_t (*chip_readl) (const chipaddr addr);
93
	void (*chip_readn) (uint8_t *buf, const chipaddr addr, size_t len);
94
	void (*delay) (int usecs);
95 96 97 98
};

extern const struct programmer_entry programmer_table[];

99 100 101 102 103 104 105 106
int programmer_init(void);
int programmer_shutdown(void);
void *programmer_map_flash_region(const char *descr, unsigned long phys_addr,
				  size_t len);
void programmer_unmap_flash_region(void *virt_addr, size_t len);
void chip_writeb(uint8_t val, chipaddr addr);
void chip_writew(uint16_t val, chipaddr addr);
void chip_writel(uint32_t val, chipaddr addr);
107
void chip_writen(uint8_t *buf, chipaddr addr, size_t len);
108 109 110
uint8_t chip_readb(const chipaddr addr);
uint16_t chip_readw(const chipaddr addr);
uint32_t chip_readl(const chipaddr addr);
111
void chip_readn(uint8_t *buf, const chipaddr addr, size_t len);
112
void programmer_delay(int usecs);
113

114 115
enum bitbang_spi_master {
	BITBANG_SPI_INVALID /* This must always be the last entry. */
116 117
};

118
extern const int bitbang_spi_master_count;
119

120
extern enum bitbang_spi_master bitbang_spi_master;
121

122
struct bitbang_spi_master_entry {
123 124 125 126 127 128
	void (*set_cs) (int val);
	void (*set_sck) (int val);
	void (*set_mosi) (int val);
	int (*get_miso) (void);
};

129 130
#define ARRAY_SIZE(a) (sizeof(a) / sizeof((a)[0]))

131
enum chipbustype {
132
	CHIP_BUSTYPE_NONE	= 0,
133 134 135 136 137 138 139 140
	CHIP_BUSTYPE_PARALLEL	= 1 << 0,
	CHIP_BUSTYPE_LPC	= 1 << 1,
	CHIP_BUSTYPE_FWH	= 1 << 2,
	CHIP_BUSTYPE_SPI	= 1 << 3,
	CHIP_BUSTYPE_NONSPI	= CHIP_BUSTYPE_PARALLEL | CHIP_BUSTYPE_LPC | CHIP_BUSTYPE_FWH,
	CHIP_BUSTYPE_UNKNOWN	= CHIP_BUSTYPE_PARALLEL | CHIP_BUSTYPE_LPC | CHIP_BUSTYPE_FWH | CHIP_BUSTYPE_SPI,
};

141 142 143 144 145 146 147 148 149 150 151
/*
 * How many different contiguous runs of erase blocks with one size each do
 * we have for a given erase function?
 */
#define NUM_ERASEREGIONS 5

/*
 * How many different erase functions do we have per chip?
 */
#define NUM_ERASEFUNCTIONS 5

152 153 154 155
#define FEATURE_REGISTERMAP	(1 << 0)
#define FEATURE_BYTEWRITES	(1 << 1)
#define FEATURE_ADDR_FULL	(0 << 2)
#define FEATURE_ADDR_MASK	(3 << 2)
156

157
struct flashchip {
158
	const char *vendor;
159
	const char *name;
160 161 162

	enum chipbustype bustype;

163 164
	/*
	 * With 32bit manufacture_id and model_id we can cover IDs up to
165 166 167 168 169
	 * (including) the 4th bank of JEDEC JEP106W Standard Manufacturer's
	 * Identification code.
	 */
	uint32_t manufacture_id;
	uint32_t model_id;
170 171 172

	int total_size;
	int page_size;
173
	int feature_bits;
174

175 176
	/*
	 * Indicate if flashrom has been tested with this flash chip and if
177 178 179 180
	 * everything worked correctly.
	 */
	uint32_t tested;

Uwe Hermann's avatar
Uwe Hermann committed
181
	int (*probe) (struct flashchip *flash);
182 183 184

	/* Delay after "enter/exit ID mode" commands in microseconds. */
	int probe_timing;
Uwe Hermann's avatar
Uwe Hermann committed
185
	int (*erase) (struct flashchip *flash);
186 187

	/*
188 189
	 * Erase blocks and associated erase function. Any chip erase function
	 * is stored as chip-sized virtual block together with said function.
190 191 192 193 194 195 196 197 198
	 */
	struct block_eraser {
		struct eraseblock{
			unsigned int size; /* Eraseblock size */
			unsigned int count; /* Number of contiguous blocks with that size */
		} eraseblocks[NUM_ERASEREGIONS];
		int (*block_erase) (struct flashchip *flash, unsigned int blockaddr, unsigned int blocklen);
	} block_erasers[NUM_ERASEFUNCTIONS];

Uwe Hermann's avatar
Uwe Hermann committed
199
	int (*write) (struct flashchip *flash, uint8_t *buf);
200
	int (*read) (struct flashchip *flash, uint8_t *buf, int start, int len);
Ronald G. Minnich's avatar
Ronald G. Minnich committed
201

202
	/* Some flash devices have an additional register space. */
203 204
	chipaddr virtual_memory;
	chipaddr virtual_registers;
205 206
};

207 208
#define TEST_UNTESTED	0

Uwe Hermann's avatar
Uwe Hermann committed
209 210 211 212 213 214
#define TEST_OK_PROBE	(1 << 0)
#define TEST_OK_READ	(1 << 1)
#define TEST_OK_ERASE	(1 << 2)
#define TEST_OK_WRITE	(1 << 3)
#define TEST_OK_PR	(TEST_OK_PROBE | TEST_OK_READ)
#define TEST_OK_PRE	(TEST_OK_PROBE | TEST_OK_READ | TEST_OK_ERASE)
215
#define TEST_OK_PRW	(TEST_OK_PROBE | TEST_OK_READ | TEST_OK_WRITE)
Uwe Hermann's avatar
Uwe Hermann committed
216
#define TEST_OK_PREW	(TEST_OK_PROBE | TEST_OK_READ | TEST_OK_ERASE | TEST_OK_WRITE)
217 218
#define TEST_OK_MASK	0x0f

Uwe Hermann's avatar
Uwe Hermann committed
219 220 221 222 223
#define TEST_BAD_PROBE	(1 << 4)
#define TEST_BAD_READ	(1 << 5)
#define TEST_BAD_ERASE	(1 << 6)
#define TEST_BAD_WRITE	(1 << 7)
#define TEST_BAD_PREW	(TEST_BAD_PROBE | TEST_BAD_READ | TEST_BAD_ERASE | TEST_BAD_WRITE)
224 225
#define TEST_BAD_MASK	0xf0

226 227 228 229 230 231 232 233 234 235
/* Timing used in probe routines. ZERO is -2 to differentiate between an unset
 * field and zero delay.
 * 
 * SPI devices will always have zero delay and ignore this field.
 */
#define TIMING_FIXME	-1
/* this is intentionally same value as fixme */
#define TIMING_IGNORED	-1
#define TIMING_ZERO	-2

236 237
extern struct flashchip flashchips[];

238
#if INTERNAL_SUPPORT == 1
Uwe Hermann's avatar
Uwe Hermann committed
239 240 241 242 243 244 245 246 247 248 249 250 251 252 253 254 255 256 257 258 259 260 261 262 263 264 265 266 267 268 269 270 271 272 273 274 275 276 277 278 279 280 281 282 283
struct penable {
	uint16_t vendor_id;
	uint16_t device_id;
	int status;
	const char *vendor_name;
	const char *device_name;
	int (*doit) (struct pci_dev *dev, const char *name);
};

extern const struct penable chipset_enables[];

struct board_pciid_enable {
	/* Any device, but make it sensible, like the ISA bridge. */
	uint16_t first_vendor;
	uint16_t first_device;
	uint16_t first_card_vendor;
	uint16_t first_card_device;

	/* Any device, but make it sensible, like
	 * the host bridge. May be NULL.
	 */
	uint16_t second_vendor;
	uint16_t second_device;
	uint16_t second_card_vendor;
	uint16_t second_card_device;

	/* The vendor / part name from the coreboot table. */
	const char *lb_vendor;
	const char *lb_part;

	const char *vendor_name;
	const char *board_name;

	int (*enable) (const char *name);
};

extern struct board_pciid_enable board_pciid_enables[];

struct board_info {
	const char *vendor;
	const char *name;
};

extern const struct board_info boards_ok[];
extern const struct board_info boards_bad[];
284 285
extern const struct board_info laptops_ok[];
extern const struct board_info laptops_bad[];
286
#endif
Uwe Hermann's avatar
Uwe Hermann committed
287

288
/* udelay.c */
289
void myusec_delay(int usecs);
290
void myusec_calibrate_delay(void);
291
void internal_delay(int usecs);
292

293
#if NEED_PCI == 1
294 295 296
/* pcidev.c */
#define PCI_OK 0
#define PCI_NT 1    /* Not tested */
297

298 299 300
extern uint32_t io_base_addr;
extern struct pci_access *pacc;
extern struct pci_filter filter;
301
extern struct pci_dev *pcidev_dev;
302 303 304 305 306 307 308
struct pcidev_status {
	uint16_t vendor_id;
	uint16_t device_id;
	int status;
	const char *vendor_name;
	const char *device_name;
};
309 310
uint32_t pcidev_validate(struct pci_dev *dev, uint32_t bar, struct pcidev_status *devs);
uint32_t pcidev_init(uint16_t vendor_id, uint32_t bar, struct pcidev_status *devs, char *pcidev_bdf);
311
#endif
312 313 314

/* print.c */
char *flashbuses_to_text(enum chipbustype bustype);
315
void print_supported(void);
316
#if (NIC3COM_SUPPORT == 1) || (GFXNVIDIA_SUPPORT == 1) || (DRKAISER_SUPPORT == 1) || (SATASII_SUPPORT == 1)
317
void print_supported_pcidevs(struct pcidev_status *devs);
318
#endif
319
void print_supported_wiki(void);
320

321
/* board_enable.c */
322 323
void w836xx_ext_enter(uint16_t port);
void w836xx_ext_leave(uint16_t port);
324 325 326
uint8_t sio_read(uint16_t port, uint8_t reg);
void sio_write(uint16_t port, uint8_t reg, uint8_t data);
void sio_mask(uint16_t port, uint8_t reg, uint8_t data, uint8_t mask);
327
int board_flash_enable(const char *vendor, const char *part);
328

329 330
/* chipset_enable.c */
int chipset_flash_enable(void);
331

332 333 334
/* physmap.c */
void *physmap(const char *descr, unsigned long phys_addr, size_t len);
void physunmap(void *virt_addr, size_t len);
335 336
int setup_cpu_msr(int cpu);
void cleanup_cpu_msr(void);
337 338 339 340 341 342

/* cbtable.c */
void lb_vendor_dev_from_string(char *boardstring);
int coreboot_init(void);
extern char *lb_part, *lb_vendor;
extern int partvendor_from_cbtable;
343

344
/* internal.c */
345
#if NEED_PCI == 1
346 347 348 349 350 351 352 353
struct superio {
	uint16_t vendor;
	uint16_t port;
	uint16_t model;
};
extern struct superio superio;
#define SUPERIO_VENDOR_NONE	0x0
#define SUPERIO_VENDOR_ITE	0x1
354
struct pci_dev *pci_dev_find_filter(struct pci_filter filter);
355
struct pci_dev *pci_dev_find_vendorclass(uint16_t vendor, uint16_t class);
356 357 358
struct pci_dev *pci_dev_find(uint16_t vendor, uint16_t device);
struct pci_dev *pci_card_find(uint16_t vendor, uint16_t device,
			      uint16_t card_vendor, uint16_t card_device);
359
#endif
360
void get_io_perms(void);
361
void release_io_perms(void);
362
#if INTERNAL_SUPPORT == 1
363
void probe_superio(void);
364 365
int internal_init(void);
int internal_shutdown(void);
366 367 368 369 370 371
void internal_chip_writeb(uint8_t val, chipaddr addr);
void internal_chip_writew(uint16_t val, chipaddr addr);
void internal_chip_writel(uint32_t val, chipaddr addr);
uint8_t internal_chip_readb(const chipaddr addr);
uint16_t internal_chip_readw(const chipaddr addr);
uint32_t internal_chip_readl(const chipaddr addr);
372
void internal_chip_readn(uint8_t *buf, const chipaddr addr, size_t len);
373
#endif
374 375 376 377 378 379
void mmio_writeb(uint8_t val, void *addr);
void mmio_writew(uint16_t val, void *addr);
void mmio_writel(uint32_t val, void *addr);
uint8_t mmio_readb(void *addr);
uint16_t mmio_readw(void *addr);
uint32_t mmio_readl(void *addr);
380 381

/* programmer.c */
382
int noop_shutdown(void);
383 384
void *fallback_map(const char *descr, unsigned long phys_addr, size_t len);
void fallback_unmap(void *virt_addr, size_t len);
385 386
uint8_t noop_chip_readb(const chipaddr addr);
void noop_chip_writeb(uint8_t val, chipaddr addr);
387 388
void fallback_chip_writew(uint16_t val, chipaddr addr);
void fallback_chip_writel(uint32_t val, chipaddr addr);
389
void fallback_chip_writen(uint8_t *buf, chipaddr addr, size_t len);
390 391
uint16_t fallback_chip_readw(const chipaddr addr);
uint32_t fallback_chip_readl(const chipaddr addr);
392
void fallback_chip_readn(uint8_t *buf, const chipaddr addr, size_t len);
393

394
/* dummyflasher.c */
395
#if DUMMY_SUPPORT == 1
396 397
int dummy_init(void);
int dummy_shutdown(void);
398 399
void *dummy_map(const char *descr, unsigned long phys_addr, size_t len);
void dummy_unmap(void *virt_addr, size_t len);
400 401 402
void dummy_chip_writeb(uint8_t val, chipaddr addr);
void dummy_chip_writew(uint16_t val, chipaddr addr);
void dummy_chip_writel(uint32_t val, chipaddr addr);
403
void dummy_chip_writen(uint8_t *buf, chipaddr addr, size_t len);
404 405 406
uint8_t dummy_chip_readb(const chipaddr addr);
uint16_t dummy_chip_readw(const chipaddr addr);
uint32_t dummy_chip_readl(const chipaddr addr);
407
void dummy_chip_readn(uint8_t *buf, const chipaddr addr, size_t len);
408
int dummy_spi_send_command(unsigned int writecnt, unsigned int readcnt,
409
		      const unsigned char *writearr, unsigned char *readarr);
410
#endif
411

412
/* nic3com.c */
413
#if NIC3COM_SUPPORT == 1
414 415
int nic3com_init(void);
int nic3com_shutdown(void);
416 417
void nic3com_chip_writeb(uint8_t val, chipaddr addr);
uint8_t nic3com_chip_readb(const chipaddr addr);
418
extern struct pcidev_status nics_3com[];
419
#endif
420

421
/* gfxnvidia.c */
422
#if GFXNVIDIA_SUPPORT == 1
423 424 425 426 427
int gfxnvidia_init(void);
int gfxnvidia_shutdown(void);
void gfxnvidia_chip_writeb(uint8_t val, chipaddr addr);
uint8_t gfxnvidia_chip_readb(const chipaddr addr);
extern struct pcidev_status gfx_nvidia[];
428
#endif
429

430
/* drkaiser.c */
431
#if DRKAISER_SUPPORT == 1
432 433 434 435 436
int drkaiser_init(void);
int drkaiser_shutdown(void);
void drkaiser_chip_writeb(uint8_t val, chipaddr addr);
uint8_t drkaiser_chip_readb(const chipaddr addr);
extern struct pcidev_status drkaiser_pcidev[];
437
#endif
438

439
/* satasii.c */
440
#if SATASII_SUPPORT == 1
441 442 443 444 445
int satasii_init(void);
int satasii_shutdown(void);
void satasii_chip_writeb(uint8_t val, chipaddr addr);
uint8_t satasii_chip_readb(const chipaddr addr);
extern struct pcidev_status satas_sii[];
446
#endif
447

448
/* ft2232_spi.c */
449 450
#define FTDI_FT2232H 0x6010
#define FTDI_FT4232H 0x6011
451
int ft2232_spi_init(void);
452
int ft2232_spi_send_command(unsigned int writecnt, unsigned int readcnt, const unsigned char *writearr, unsigned char *readarr);
453 454 455
int ft2232_spi_read(struct flashchip *flash, uint8_t *buf, int start, int len);
int ft2232_spi_write_256(struct flashchip *flash, uint8_t *buf);

456
/* bitbang_spi.c */
457 458
extern int bitbang_spi_half_period;
extern const struct bitbang_spi_master_entry bitbang_spi_master_table[];
459 460 461 462 463
int bitbang_spi_init(void);
int bitbang_spi_send_command(unsigned int writecnt, unsigned int readcnt, const unsigned char *writearr, unsigned char *readarr);
int bitbang_spi_read(struct flashchip *flash, uint8_t *buf, int start, int len);
int bitbang_spi_write_256(struct flashchip *flash, uint8_t *buf);

464
/* buspirate_spi.c */
465 466 467 468
struct buspirate_spispeeds {
	const char *name;
	const int speed;
};
469 470 471 472 473
int buspirate_spi_init(void);
int buspirate_spi_shutdown(void);
int buspirate_spi_send_command(unsigned int writecnt, unsigned int readcnt, const unsigned char *writearr, unsigned char *readarr);
int buspirate_spi_read(struct flashchip *flash, uint8_t *buf, int start, int len);

474
/* flashrom.c */
475 476 477 478 479 480 481 482
extern enum chipbustype buses_supported;
struct decode_sizes {
	uint32_t parallel;
	uint32_t lpc;
	uint32_t fwh;
	uint32_t spi;
};
extern struct decode_sizes max_rom_decode;
483
extern char *programmer_param;
484
extern unsigned long flashbase;
Uwe Hermann's avatar
Uwe Hermann committed
485
extern int verbose;
486
extern const char *flashrom_version;
487
extern char *chip_to_probe;
Uwe Hermann's avatar
Uwe Hermann committed
488
#define printf_debug(x...) { if (verbose) printf(x); }
489
void map_flash_registers(struct flashchip *flash);
490
int read_memmapped(struct flashchip *flash, uint8_t *buf, int start, int len);
491
int erase_flash(struct flashchip *flash);
492 493 494 495
struct flashchip *probe_flash(struct flashchip *first_flash, int force);
int read_flash(struct flashchip *flash, char *filename);
void check_chip_supported(struct flashchip *flash);
int check_max_decode(enum chipbustype buses, uint32_t size);
496
int min(int a, int b);
497
int max(int a, int b);
498
char *extract_param(char **haystack, char *needle, char *delim);
499 500
int check_erased_range(struct flashchip *flash, int start, int len);
int verify_range(struct flashchip *flash, uint8_t *cmpbuf, int start, int len, char *message);
501
char *strcat_realloc(char *dest, const char *src);
502 503
void print_version(void);
int selfcheck(void);
504
int doit(struct flashchip *flash, int force, char *filename, int read_it, int write_it, int erase_it, int verify_it);
505 506 507

#define OK 0
#define NT 1    /* Not tested */
508

509 510 511 512 513 514 515 516 517 518 519 520 521 522 523 524 525 526 527
/* cli_output.c */
int print(int type, const char *fmt, ...);
#define MSG_ERROR 0
#define MSG_INFO 1
#define MSG_DEBUG 2
#define MSG_BARF 3
#define msg_gerr(x) print(MSG_ERROR, x) /* general errors */
#define msg_perr(x) print(MSG_ERROR, x) /* programmer errors */
#define msg_cerr(x) print(MSG_ERROR, x) /* chip errors */
#define msg_ginfo(x) print(MSG_INFO, x) /* general info */
#define msg_pinfo(x) print(MSG_INFO, x) /* programmer info */
#define msg_cinfo(x) print(MSG_INFO, x) /* chip info */
#define msg_gdbg(x) print(MSG_DEBUG, x) /* general debug */
#define msg_pdbg(x) print(MSG_DEBUG, x) /* programmer debug */
#define msg_cdbg(x) print(MSG_DEBUG, x) /* chip debug */
#define msg_gspew(x) print(MSG_BARF, x) /* general debug barf  */
#define msg_pspew(x) print(MSG_BARF, x) /* programmer debug barf  */
#define msg_cspew(x) print(MSG_BARF, x) /* chip debug barf  */

528 529 530
/* cli_classic.c */
int cli_classic(int argc, char *argv[]);

531
/* layout.c */
Peter Stuge's avatar
Peter Stuge committed
532
int show_id(uint8_t *bios, int size, int force);
533 534
int read_romlayout(char *name);
int find_romentry(char *name);
535
int handle_romentries(uint8_t *buffer, struct flashchip *flash);
536

537
/* spi.c */
538 539
enum spi_controller {
	SPI_CONTROLLER_NONE,
540
#if INTERNAL_SUPPORT == 1
541 542 543 544 545 546
	SPI_CONTROLLER_ICH7,
	SPI_CONTROLLER_ICH9,
	SPI_CONTROLLER_IT87XX,
	SPI_CONTROLLER_SB600,
	SPI_CONTROLLER_VIA,
	SPI_CONTROLLER_WBSIO,
547
#endif
548
#if FT2232_SPI_SUPPORT == 1
549
	SPI_CONTROLLER_FT2232,
550
#endif
551
#if DUMMY_SUPPORT == 1
552
	SPI_CONTROLLER_DUMMY,
553 554 555
#endif
#if BUSPIRATE_SPI_SUPPORT == 1
	SPI_CONTROLLER_BUSPIRATE,
556
#endif
557
	SPI_CONTROLLER_INVALID /* This must always be the last entry. */
558
};
559
extern const int spi_programmer_count;
560 561 562 563 564 565
struct spi_command {
	unsigned int writecnt;
	unsigned int readcnt;
	const unsigned char *writearr;
	unsigned char *readarr;
};
566 567 568
struct spi_programmer {
	int (*command)(unsigned int writecnt, unsigned int readcnt,
		   const unsigned char *writearr, unsigned char *readarr);
569
	int (*multicommand)(struct spi_command *cmds);
570 571 572 573 574

	/* Optimized functions for this programmer */
	int (*read)(struct flashchip *flash, uint8_t *buf, int start, int len);
	int (*write_256)(struct flashchip *flash, uint8_t *buf);
};
575

576
extern enum spi_controller spi_controller;
577
extern const struct spi_programmer spi_programmer[];
578
extern void *spibar;
579
int spi_send_command(unsigned int writecnt, unsigned int readcnt,
580
		const unsigned char *writearr, unsigned char *readarr);
581
int spi_send_multicommand(struct spi_command *cmds);
582 583
int default_spi_send_command(unsigned int writecnt, unsigned int readcnt,
			     const unsigned char *writearr, unsigned char *readarr);
584
int default_spi_send_multicommand(struct spi_command *cmds);
585
uint32_t spi_get_valid_read_addr(void);
586

587
/* ichspi.c */
588
int ich_init_opcodes(void);
589
int ich_spi_send_command(unsigned int writecnt, unsigned int readcnt,
590
		    const unsigned char *writearr, unsigned char *readarr);
591
int ich_spi_read(struct flashchip *flash, uint8_t *buf, int start, int len);
592
int ich_spi_write_256(struct flashchip *flash, uint8_t * buf);
593
int ich_spi_send_multicommand(struct spi_command *cmds);
594

595 596
/* it87spi.c */
extern uint16_t it8716f_flashport;
597 598
void enter_conf_mode_ite(uint16_t port);
void exit_conf_mode_ite(uint16_t port);
599
struct superio probe_superio_ite(void);
600
int it87spi_init(void);
601
int it87xx_probe_spi_flash(const char *name);
602
int it8716f_spi_send_command(unsigned int writecnt, unsigned int readcnt,
603
			const unsigned char *writearr, unsigned char *readarr);
604
int it8716f_spi_chip_read(struct flashchip *flash, uint8_t *buf, int start, int len);
605
int it8716f_spi_chip_write_256(struct flashchip *flash, uint8_t *buf);
606

607
/* sb600spi.c */
608
int sb600_spi_send_command(unsigned int writecnt, unsigned int readcnt,
609
		      const unsigned char *writearr, unsigned char *readarr);
610
int sb600_spi_read(struct flashchip *flash, uint8_t *buf, int start, int len);
611
int sb600_spi_write_1(struct flashchip *flash, uint8_t *buf);
612
extern uint8_t *sb600_spibar;
613

Peter Stuge's avatar
Peter Stuge committed
614 615
/* wbsio_spi.c */
int wbsio_check_for_spi(const char *name);
616
int wbsio_spi_send_command(unsigned int writecnt, unsigned int readcnt,
Uwe Hermann's avatar
Uwe Hermann committed
617
		      const unsigned char *writearr, unsigned char *readarr);
618
int wbsio_spi_read(struct flashchip *flash, uint8_t *buf, int start, int len);
619
int wbsio_spi_write_1(struct flashchip *flash, uint8_t *buf);
Peter Stuge's avatar
Peter Stuge committed
620

621 622 623 624 625 626 627
/* serprog.c */
int serprog_init(void);
int serprog_shutdown(void);
void serprog_chip_writeb(uint8_t val, chipaddr addr);
uint8_t serprog_chip_readb(const chipaddr addr);
void serprog_chip_readn(uint8_t *buf, const chipaddr addr, size_t len);
void serprog_delay(int delay);
628 629

/* serial.c */
Patrick Georgi's avatar
Patrick Georgi committed
630 631 632 633 634 635
#if _WIN32
typedef HANDLE fdtype;
#else
typedef int fdtype;
#endif

636
void sp_flush_incoming(void);
Patrick Georgi's avatar
Patrick Georgi committed
637
fdtype sp_openserport(char *dev, unsigned int baud);
638
void __attribute__((noreturn)) sp_die(char *msg);
Patrick Georgi's avatar
Patrick Georgi committed
639
extern fdtype sp_fd;
640 641 642
int serialport_shutdown(void);
int serialport_write(unsigned char *buf, unsigned int writecnt);
int serialport_read(unsigned char *buf, unsigned int readcnt);
Uwe Hermann's avatar
Uwe Hermann committed
643

644 645
#include "chipdrivers.h"

646
#endif				/* !__FLASH_H__ */