4 * Copyright (c) 2011-2013 The Chromium OS Authors.
5 * See file CREDITS for list of people who contributed to this
8 * Licensed under the GPL-2 or later.
17 #include <spi_flash.h>
18 #include "sf_internal.h"
20 #include <asm/getopt.h>
22 #include <asm/state.h>
23 #include <dm/device-internal.h>
25 #include <dm/uclass-internal.h>
27 DECLARE_GLOBAL_DATA_PTR;
30 * The different states that our SPI flash transitions between.
31 * We need to keep track of this across multiple xfer calls since
32 * the SPI bus could possibly call down into us multiple times.
34 enum sandbox_sf_state {
35 SF_CMD, /* default state -- we're awaiting a command */
36 SF_ID, /* read the flash's (jedec) ID code */
37 SF_ADDR, /* processing the offset in the flash to read/etc... */
38 SF_READ, /* reading data from the flash */
39 SF_WRITE, /* writing data to the flash, i.e. page programming */
40 SF_ERASE, /* erase the flash */
41 SF_READ_STATUS, /* read the flash's status register */
42 SF_READ_STATUS1, /* read the flash's status register upper 8 bits*/
43 SF_WRITE_STATUS, /* write the flash's status register */
46 static const char *sandbox_sf_state_name(enum sandbox_sf_state state)
48 static const char * const states[] = {
49 "CMD", "ID", "ADDR", "READ", "WRITE", "ERASE", "READ_STATUS",
50 "READ_STATUS1", "WRITE_STATUS",
55 /* Bits for the status register */
56 #define STAT_WIP (1 << 0)
57 #define STAT_WEL (1 << 1)
59 /* Assume all SPI flashes have 3 byte addresses since they do atm */
64 /* Used to quickly bulk erase backing store */
65 static u8 sandbox_sf_0xff[0x1000];
67 /* Internal state data for each SPI flash */
68 struct sandbox_spi_flash {
69 unsigned int cs; /* Chip select we are attached to */
71 * As we receive data over the SPI bus, our flash transitions
72 * between states. For example, we start off in the SF_CMD
73 * state where the first byte tells us what operation to perform
74 * (such as read or write the flash). But the operation itself
75 * can go through a few states such as first reading in the
76 * offset in the flash to perform the requested operation.
77 * Thus "state" stores the exact state that our machine is in
78 * while "cmd" stores the overall command we're processing.
80 enum sandbox_sf_state state;
82 /* Erase size of current erase command */
84 /* Current position in the flash; used when reading/writing/etc... */
86 /* How many address bytes we've consumed */
87 uint addr_bytes, pad_addr_bytes;
88 /* The current flash status (see STAT_XXX defines above) */
90 /* Data describing the flash we're emulating */
91 const struct spi_flash_params *data;
92 /* The file on disk to serv up data from */
96 struct sandbox_spi_flash_plat_data {
98 const char *device_name;
104 * This is a very strange probe function. If it has platform data (which may
105 * have come from the device tree) then this function gets the filename and
106 * device type from there. Failing that it looks at the command line
109 static int sandbox_sf_probe(struct udevice *dev)
111 /* spec = idcode:file */
112 struct sandbox_spi_flash *sbsf = dev_get_priv(dev);
114 size_t len, idname_len;
115 const struct spi_flash_params *data;
116 struct sandbox_spi_flash_plat_data *pdata = dev_get_platdata(dev);
117 struct sandbox_state *state = state_get_current();
118 struct udevice *bus = dev->parent;
119 const char *spec = NULL;
124 debug("%s: bus %d, looking for emul=%p: ", __func__, bus->seq, dev);
125 if (bus->seq >= 0 && bus->seq < CONFIG_SANDBOX_SPI_MAX_BUS) {
126 for (i = 0; i < CONFIG_SANDBOX_SPI_MAX_CS; i++) {
127 if (state->spi[bus->seq][i].emul == dev)
132 printf("Error: Unknown chip select for device '%s'",
136 debug("found at cs %d\n", cs);
138 if (!pdata->filename) {
139 struct sandbox_state *state = state_get_current();
141 assert(bus->seq != -1);
142 if (bus->seq < CONFIG_SANDBOX_SPI_MAX_BUS)
143 spec = state->spi[bus->seq][cs].spec;
147 file = strchr(spec, ':');
149 printf("sandbox_sf: unable to parse file\n");
153 idname_len = file - spec;
154 pdata->filename = file + 1;
155 pdata->device_name = spec;
158 spec = strchr(pdata->device_name, ',');
162 spec = pdata->device_name;
163 idname_len = strlen(spec);
165 debug("%s: device='%s'\n", __func__, spec);
167 for (data = spi_flash_params_table; data->name; data++) {
168 len = strlen(data->name);
169 if (idname_len != len)
171 if (!strncasecmp(spec, data->name, len))
175 printf("sandbox_sf: unknown flash '%*s'\n", (int)idname_len,
181 if (sandbox_sf_0xff[0] == 0x00)
182 memset(sandbox_sf_0xff, 0xff, sizeof(sandbox_sf_0xff));
184 sbsf->fd = os_open(pdata->filename, 02);
185 if (sbsf->fd == -1) {
187 printf("sandbox_sf: unable to open file '%s'\n",
202 static int sandbox_sf_remove(struct udevice *dev)
204 struct sandbox_spi_flash *sbsf = dev_get_priv(dev);
211 static void sandbox_sf_cs_activate(struct udevice *dev)
213 struct sandbox_spi_flash *sbsf = dev_get_priv(dev);
215 debug("sandbox_sf: CS activated; state is fresh!\n");
217 /* CS is asserted, so reset state */
219 sbsf->addr_bytes = 0;
220 sbsf->pad_addr_bytes = 0;
221 sbsf->state = SF_CMD;
225 static void sandbox_sf_cs_deactivate(struct udevice *dev)
227 debug("sandbox_sf: CS deactivated; cmd done processing!\n");
231 * There are times when the data lines are allowed to tristate. What
232 * is actually sensed on the line depends on the hardware. It could
233 * always be 0xFF/0x00 (if there are pull ups/downs), or things could
234 * float and so we'd get garbage back. This func encapsulates that
235 * scenario so we can worry about the details here.
237 static void sandbox_spi_tristate(u8 *buf, uint len)
239 /* XXX: make this into a user config option ? */
240 memset(buf, 0xff, len);
243 /* Figure out what command this stream is telling us to do */
244 static int sandbox_sf_process_cmd(struct sandbox_spi_flash *sbsf, const u8 *rx,
247 enum sandbox_sf_state oldstate = sbsf->state;
249 /* We need to output a byte for the cmd byte we just ate */
251 sandbox_spi_tristate(tx, 1);
259 case CMD_READ_ARRAY_FAST:
260 sbsf->pad_addr_bytes = 1;
261 case CMD_READ_ARRAY_SLOW:
262 case CMD_PAGE_PROGRAM:
263 sbsf->state = SF_ADDR;
265 case CMD_WRITE_DISABLE:
266 debug(" write disabled\n");
267 sbsf->status &= ~STAT_WEL;
269 case CMD_READ_STATUS:
270 sbsf->state = SF_READ_STATUS;
272 case CMD_READ_STATUS1:
273 sbsf->state = SF_READ_STATUS1;
275 case CMD_WRITE_ENABLE:
276 debug(" write enabled\n");
277 sbsf->status |= STAT_WEL;
279 case CMD_WRITE_STATUS:
280 sbsf->state = SF_WRITE_STATUS;
283 int flags = sbsf->data->flags;
285 /* we only support erase here */
286 if (sbsf->cmd == CMD_ERASE_CHIP) {
287 sbsf->erase_size = sbsf->data->sector_size *
288 sbsf->data->nr_sectors;
289 } else if (sbsf->cmd == CMD_ERASE_4K && (flags & SECT_4K)) {
290 sbsf->erase_size = 4 << 10;
291 } else if (sbsf->cmd == CMD_ERASE_32K && (flags & SECT_32K)) {
292 sbsf->erase_size = 32 << 10;
293 } else if (sbsf->cmd == CMD_ERASE_64K &&
294 !(flags & (SECT_4K | SECT_32K))) {
295 sbsf->erase_size = 64 << 10;
297 debug(" cmd unknown: %#x\n", sbsf->cmd);
300 sbsf->state = SF_ADDR;
305 if (oldstate != sbsf->state)
306 debug(" cmd: transition to %s state\n",
307 sandbox_sf_state_name(sbsf->state));
312 int sandbox_erase_part(struct sandbox_spi_flash *sbsf, int size)
318 todo = min(size, sizeof(sandbox_sf_0xff));
319 ret = os_write(sbsf->fd, sandbox_sf_0xff, todo);
328 static int sandbox_sf_xfer(struct udevice *dev, unsigned int bitlen,
329 const void *rxp, void *txp, unsigned long flags)
331 struct sandbox_spi_flash *sbsf = dev_get_priv(dev);
332 const uint8_t *rx = rxp;
335 int bytes = bitlen / 8;
338 debug("sandbox_sf: state:%x(%s) bytes:%u\n", sbsf->state,
339 sandbox_sf_state_name(sbsf->state), bytes);
341 if ((flags & SPI_XFER_BEGIN))
342 sandbox_sf_cs_activate(dev);
344 if (sbsf->state == SF_CMD) {
345 /* Figure out the initial state */
346 ret = sandbox_sf_process_cmd(sbsf, rx, tx);
352 /* Process the remaining data */
353 while (pos < bytes) {
354 switch (sbsf->state) {
358 debug(" id: off:%u tx:", sbsf->off);
359 if (sbsf->off < IDCODE_LEN) {
360 /* Extract correct byte from ID 0x00aabbcc */
361 id = sbsf->data->jedec >>
362 (8 * (IDCODE_LEN - 1 - sbsf->off));
366 debug("%d %02x\n", sbsf->off, id);
372 debug(" addr: bytes:%u rx:%02x ", sbsf->addr_bytes,
375 if (sbsf->addr_bytes++ < SF_ADDR_LEN)
376 sbsf->off = (sbsf->off << 8) | rx[pos];
377 debug("addr:%06x\n", sbsf->off);
380 sandbox_spi_tristate(&tx[pos], 1);
383 /* See if we're done processing */
384 if (sbsf->addr_bytes <
385 SF_ADDR_LEN + sbsf->pad_addr_bytes)
389 if (os_lseek(sbsf->fd, sbsf->off, OS_SEEK_SET) < 0) {
390 puts("sandbox_sf: os_lseek() failed");
394 case CMD_READ_ARRAY_FAST:
395 case CMD_READ_ARRAY_SLOW:
396 sbsf->state = SF_READ;
398 case CMD_PAGE_PROGRAM:
399 sbsf->state = SF_WRITE;
402 /* assume erase state ... */
403 sbsf->state = SF_ERASE;
406 debug(" cmd: transition to %s state\n",
407 sandbox_sf_state_name(sbsf->state));
411 * XXX: need to handle exotic behavior:
412 * - reading past end of device
416 debug(" tx: read(%u)\n", cnt);
418 ret = os_read(sbsf->fd, tx + pos, cnt);
420 puts("sandbox_sf: os_read() failed\n");
426 debug(" read status: %#x\n", sbsf->status);
428 memset(tx + pos, sbsf->status, cnt);
431 case SF_READ_STATUS1:
432 debug(" read status: %#x\n", sbsf->status);
434 memset(tx + pos, sbsf->status >> 8, cnt);
437 case SF_WRITE_STATUS:
438 debug(" write status: %#x (ignored)\n", rx[pos]);
443 * XXX: need to handle exotic behavior:
444 * - unaligned addresses
445 * - more than a page (256) worth of data
446 * - reading past end of device
448 if (!(sbsf->status & STAT_WEL)) {
449 puts("sandbox_sf: write enable not set before write\n");
454 debug(" rx: write(%u)\n", cnt);
456 sandbox_spi_tristate(&tx[pos], cnt);
457 ret = os_write(sbsf->fd, rx + pos, cnt);
459 puts("sandbox_spi: os_write() failed\n");
463 sbsf->status &= ~STAT_WEL;
467 if (!(sbsf->status & STAT_WEL)) {
468 puts("sandbox_sf: write enable not set before erase\n");
472 /* verify address is aligned */
473 if (sbsf->off & (sbsf->erase_size - 1)) {
474 debug(" sector erase: cmd:%#x needs align:%#x, but we got %#x\n",
475 sbsf->cmd, sbsf->erase_size,
477 sbsf->status &= ~STAT_WEL;
481 debug(" sector erase addr: %u, size: %u\n", sbsf->off,
486 sandbox_spi_tristate(&tx[pos], cnt);
490 * TODO(vapier@gentoo.org): latch WIP in status, and
491 * delay before clearing it ?
493 ret = sandbox_erase_part(sbsf, sbsf->erase_size);
494 sbsf->status &= ~STAT_WEL;
496 debug("sandbox_sf: Erase failed\n");
502 debug(" ??? no idea what to do ???\n");
508 if (flags & SPI_XFER_END)
509 sandbox_sf_cs_deactivate(dev);
510 return pos == bytes ? 0 : -EIO;
513 int sandbox_sf_ofdata_to_platdata(struct udevice *dev)
515 struct sandbox_spi_flash_plat_data *pdata = dev_get_platdata(dev);
516 const void *blob = gd->fdt_blob;
517 int node = dev->of_offset;
519 pdata->filename = fdt_getprop(blob, node, "sandbox,filename", NULL);
520 pdata->device_name = fdt_getprop(blob, node, "compatible", NULL);
521 if (!pdata->filename || !pdata->device_name) {
522 debug("%s: Missing properties, filename=%s, device_name=%s\n",
523 __func__, pdata->filename, pdata->device_name);
530 static const struct dm_spi_emul_ops sandbox_sf_emul_ops = {
531 .xfer = sandbox_sf_xfer,
534 #ifdef CONFIG_SPI_FLASH
535 static int sandbox_cmdline_cb_spi_sf(struct sandbox_state *state,
538 unsigned long bus, cs;
539 const char *spec = sandbox_spi_parse_spec(arg, &bus, &cs);
545 * It is safe to not make a copy of 'spec' because it comes from the
548 * TODO(sjg@chromium.org): It would be nice if we could parse the
549 * spec here, but the problem is that no U-Boot init has been done
550 * yet. Perhaps we can figure something out.
552 state->spi[bus][cs].spec = spec;
555 SANDBOX_CMDLINE_OPT(spi_sf, 1, "connect a SPI flash: <bus>:<cs>:<id>:<file>");
557 int sandbox_sf_bind_emul(struct sandbox_state *state, int busnum, int cs,
558 struct udevice *bus, int of_offset, const char *spec)
560 struct udevice *emul;
565 /* now the emulator */
566 strncpy(name, spec, sizeof(name) - 6);
567 name[sizeof(name) - 6] = '\0';
568 strcat(name, "-emul");
572 drv = lists_driver_lookup_name("sandbox_sf_emul");
574 puts("Cannot find sandbox_sf_emul driver\n");
577 ret = device_bind(bus, drv, str, NULL, of_offset, &emul);
579 printf("Cannot create emul device for spec '%s' (err=%d)\n",
583 state->spi[busnum][cs].emul = emul;
588 void sandbox_sf_unbind_emul(struct sandbox_state *state, int busnum, int cs)
590 state->spi[busnum][cs].emul = NULL;
593 static int sandbox_sf_bind_bus_cs(struct sandbox_state *state, int busnum,
594 int cs, const char *spec)
596 struct udevice *bus, *slave;
599 ret = uclass_find_device_by_seq(UCLASS_SPI, busnum, true, &bus);
601 printf("Invalid bus %d for spec '%s' (err=%d)\n", busnum,
605 ret = spi_find_chip_select(bus, cs, &slave);
607 printf("Chip select %d already exists for spec '%s'\n", cs,
612 ret = device_bind_driver(bus, "spi_flash_std", spec, &slave);
616 return sandbox_sf_bind_emul(state, busnum, cs, bus, -1, spec);
619 int sandbox_spi_get_emul(struct sandbox_state *state,
620 struct udevice *bus, struct udevice *slave,
621 struct udevice **emulp)
623 struct sandbox_spi_info *info;
624 int busnum = bus->seq;
625 int cs = spi_chip_select(slave);
628 info = &state->spi[busnum][cs];
630 /* Use the same device tree node as the SPI flash device */
631 debug("%s: busnum=%u, cs=%u: binding SPI flash emulation: ",
632 __func__, busnum, cs);
633 ret = sandbox_sf_bind_emul(state, busnum, cs, bus,
634 slave->of_offset, slave->name);
636 debug("failed (err=%d)\n", ret);
646 int dm_scan_other(bool pre_reloc_only)
648 struct sandbox_state *state = state_get_current();
653 for (busnum = 0; busnum < CONFIG_SANDBOX_SPI_MAX_BUS; busnum++) {
654 for (cs = 0; cs < CONFIG_SANDBOX_SPI_MAX_CS; cs++) {
655 const char *spec = state->spi[busnum][cs].spec;
659 ret = sandbox_sf_bind_bus_cs(state, busnum,
662 debug("%s: Bind failed for bus %d, cs %d\n",
663 __func__, busnum, cs);
674 static const struct udevice_id sandbox_sf_ids[] = {
675 { .compatible = "sandbox,spi-flash" },
679 U_BOOT_DRIVER(sandbox_sf_emul) = {
680 .name = "sandbox_sf_emul",
681 .id = UCLASS_SPI_EMUL,
682 .of_match = sandbox_sf_ids,
683 .ofdata_to_platdata = sandbox_sf_ofdata_to_platdata,
684 .probe = sandbox_sf_probe,
685 .remove = sandbox_sf_remove,
686 .priv_auto_alloc_size = sizeof(struct sandbox_spi_flash),
687 .platdata_auto_alloc_size = sizeof(struct sandbox_spi_flash_plat_data),
688 .ops = &sandbox_sf_emul_ops,