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83d290c5 | 1 | // SPDX-License-Identifier: GPL-2.0+ |
1853030e SG |
2 | /* |
3 | * Copyright (c) 2011-12 The Chromium OS Authors. | |
4 | * | |
1853030e SG |
5 | * This file is derived from the flashrom project. |
6 | */ | |
9eb4339b | 7 | |
a550662c SG |
8 | #define LOG_CATEGORY UCLASS_SPI |
9 | ||
1853030e | 10 | #include <common.h> |
52f24238 | 11 | #include <bootstage.h> |
b47aa26e | 12 | #include <div64.h> |
ba457562 | 13 | #include <dm.h> |
0d3ee3e1 | 14 | #include <dt-structs.h> |
5093badb | 15 | #include <errno.h> |
f7ae49fc | 16 | #include <log.h> |
1853030e | 17 | #include <malloc.h> |
f2b85ab5 | 18 | #include <pch.h> |
1853030e SG |
19 | #include <pci.h> |
20 | #include <pci_ids.h> | |
f2b85ab5 | 21 | #include <spi.h> |
1facebd1 | 22 | #include <spi_flash.h> |
0709ddb6 | 23 | #include <spi-mem.h> |
636555a4 | 24 | #include <spl.h> |
1facebd1 | 25 | #include <asm/fast_spi.h> |
b47aa26e | 26 | #include <asm/io.h> |
609b90a6 | 27 | #include <dm/uclass-internal.h> |
636555a4 | 28 | #include <asm/mtrr.h> |
cd93d625 | 29 | #include <linux/bitops.h> |
c05ed00a | 30 | #include <linux/delay.h> |
636555a4 | 31 | #include <linux/sizes.h> |
1853030e SG |
32 | |
33 | #include "ich.h" | |
34 | ||
fffe25db SG |
35 | #ifdef DEBUG_TRACE |
36 | #define debug_trace(fmt, args...) debug(fmt, ##args) | |
37 | #else | |
38 | #define debug_trace(x, args...) | |
39 | #endif | |
40 | ||
75214b05 | 41 | struct ich_spi_platdata { |
0d3ee3e1 SG |
42 | #if CONFIG_IS_ENABLED(OF_PLATDATA) |
43 | struct dtd_intel_fast_spi dtplat; | |
44 | #endif | |
75214b05 SG |
45 | enum ich_version ich_version; /* Controller version, 7 or 9 */ |
46 | bool lockdown; /* lock down controller settings? */ | |
47 | ulong mmio_base; /* Base of MMIO registers */ | |
0d3ee3e1 | 48 | pci_dev_t bdf; /* PCI address used by of-platdata */ |
1facebd1 | 49 | bool hwseq; /* Use hardware sequencing (not s/w) */ |
75214b05 SG |
50 | }; |
51 | ||
ba457562 | 52 | static u8 ich_readb(struct ich_spi_priv *priv, int reg) |
1853030e | 53 | { |
ba457562 | 54 | u8 value = readb(priv->base + reg); |
1853030e | 55 | |
fffe25db | 56 | debug_trace("read %2.2x from %4.4x\n", value, reg); |
1853030e SG |
57 | |
58 | return value; | |
59 | } | |
60 | ||
ba457562 | 61 | static u16 ich_readw(struct ich_spi_priv *priv, int reg) |
1853030e | 62 | { |
ba457562 | 63 | u16 value = readw(priv->base + reg); |
1853030e | 64 | |
fffe25db | 65 | debug_trace("read %4.4x from %4.4x\n", value, reg); |
1853030e SG |
66 | |
67 | return value; | |
68 | } | |
69 | ||
ba457562 | 70 | static u32 ich_readl(struct ich_spi_priv *priv, int reg) |
1853030e | 71 | { |
ba457562 | 72 | u32 value = readl(priv->base + reg); |
1853030e | 73 | |
fffe25db | 74 | debug_trace("read %8.8x from %4.4x\n", value, reg); |
1853030e SG |
75 | |
76 | return value; | |
77 | } | |
78 | ||
ba457562 | 79 | static void ich_writeb(struct ich_spi_priv *priv, u8 value, int reg) |
1853030e | 80 | { |
ba457562 | 81 | writeb(value, priv->base + reg); |
fffe25db | 82 | debug_trace("wrote %2.2x to %4.4x\n", value, reg); |
1853030e SG |
83 | } |
84 | ||
ba457562 | 85 | static void ich_writew(struct ich_spi_priv *priv, u16 value, int reg) |
1853030e | 86 | { |
ba457562 | 87 | writew(value, priv->base + reg); |
fffe25db | 88 | debug_trace("wrote %4.4x to %4.4x\n", value, reg); |
1853030e SG |
89 | } |
90 | ||
ba457562 | 91 | static void ich_writel(struct ich_spi_priv *priv, u32 value, int reg) |
1853030e | 92 | { |
ba457562 | 93 | writel(value, priv->base + reg); |
fffe25db | 94 | debug_trace("wrote %8.8x to %4.4x\n", value, reg); |
1853030e SG |
95 | } |
96 | ||
ba457562 SG |
97 | static void write_reg(struct ich_spi_priv *priv, const void *value, |
98 | int dest_reg, uint32_t size) | |
1853030e | 99 | { |
ba457562 | 100 | memcpy_toio(priv->base + dest_reg, value, size); |
1853030e SG |
101 | } |
102 | ||
ba457562 SG |
103 | static void read_reg(struct ich_spi_priv *priv, int src_reg, void *value, |
104 | uint32_t size) | |
1853030e | 105 | { |
ba457562 | 106 | memcpy_fromio(value, priv->base + src_reg, size); |
1853030e SG |
107 | } |
108 | ||
ba457562 | 109 | static void ich_set_bbar(struct ich_spi_priv *ctlr, uint32_t minaddr) |
1853030e SG |
110 | { |
111 | const uint32_t bbar_mask = 0x00ffff00; | |
112 | uint32_t ichspi_bbar; | |
113 | ||
3937df3d SG |
114 | if (ctlr->bbar) { |
115 | minaddr &= bbar_mask; | |
116 | ichspi_bbar = ich_readl(ctlr, ctlr->bbar) & ~bbar_mask; | |
117 | ichspi_bbar |= minaddr; | |
118 | ich_writel(ctlr, ichspi_bbar, ctlr->bbar); | |
119 | } | |
1853030e SG |
120 | } |
121 | ||
1853030e | 122 | /* @return 1 if the SPI flash supports the 33MHz speed */ |
a550662c | 123 | static bool ich9_can_do_33mhz(struct udevice *dev) |
1853030e | 124 | { |
17e75449 | 125 | struct ich_spi_priv *priv = dev_get_priv(dev); |
1853030e SG |
126 | u32 fdod, speed; |
127 | ||
636555a4 SG |
128 | if (!CONFIG_IS_ENABLED(PCI)) |
129 | return false; | |
1853030e | 130 | /* Observe SPI Descriptor Component Section 0 */ |
17e75449 | 131 | dm_pci_write_config32(priv->pch, 0xb0, 0x1000); |
1853030e SG |
132 | |
133 | /* Extract the Write/Erase SPI Frequency from descriptor */ | |
17e75449 | 134 | dm_pci_read_config32(priv->pch, 0xb4, &fdod); |
1853030e SG |
135 | |
136 | /* Bits 23:21 have the fast read clock frequency, 0=20MHz, 1=33MHz */ | |
137 | speed = (fdod >> 21) & 7; | |
138 | ||
139 | return speed == 1; | |
140 | } | |
141 | ||
ab201074 BM |
142 | static void spi_lock_down(struct ich_spi_platdata *plat, void *sbase) |
143 | { | |
144 | if (plat->ich_version == ICHV_7) { | |
145 | struct ich7_spi_regs *ich7_spi = sbase; | |
146 | ||
147 | setbits_le16(&ich7_spi->spis, SPIS_LOCK); | |
148 | } else if (plat->ich_version == ICHV_9) { | |
149 | struct ich9_spi_regs *ich9_spi = sbase; | |
150 | ||
151 | setbits_le16(&ich9_spi->hsfs, HSFS_FLOCKDN); | |
152 | } | |
153 | } | |
154 | ||
3e791416 BM |
155 | static bool spi_lock_status(struct ich_spi_platdata *plat, void *sbase) |
156 | { | |
157 | int lock = 0; | |
158 | ||
159 | if (plat->ich_version == ICHV_7) { | |
160 | struct ich7_spi_regs *ich7_spi = sbase; | |
161 | ||
162 | lock = readw(&ich7_spi->spis) & SPIS_LOCK; | |
163 | } else if (plat->ich_version == ICHV_9) { | |
164 | struct ich9_spi_regs *ich9_spi = sbase; | |
165 | ||
166 | lock = readw(&ich9_spi->hsfs) & HSFS_FLOCKDN; | |
167 | } | |
168 | ||
169 | return lock != 0; | |
170 | } | |
171 | ||
3e791416 BM |
172 | static int spi_setup_opcode(struct ich_spi_priv *ctlr, struct spi_trans *trans, |
173 | bool lock) | |
1853030e SG |
174 | { |
175 | uint16_t optypes; | |
ba457562 | 176 | uint8_t opmenu[ctlr->menubytes]; |
1853030e | 177 | |
3e791416 | 178 | if (!lock) { |
1853030e | 179 | /* The lock is off, so just use index 0. */ |
ba457562 SG |
180 | ich_writeb(ctlr, trans->opcode, ctlr->opmenu); |
181 | optypes = ich_readw(ctlr, ctlr->optype); | |
1853030e | 182 | optypes = (optypes & 0xfffc) | (trans->type & 0x3); |
ba457562 | 183 | ich_writew(ctlr, optypes, ctlr->optype); |
1853030e SG |
184 | return 0; |
185 | } else { | |
186 | /* The lock is on. See if what we need is on the menu. */ | |
187 | uint8_t optype; | |
188 | uint16_t opcode_index; | |
189 | ||
190 | /* Write Enable is handled as atomic prefix */ | |
191 | if (trans->opcode == SPI_OPCODE_WREN) | |
192 | return 0; | |
193 | ||
ba457562 SG |
194 | read_reg(ctlr, ctlr->opmenu, opmenu, sizeof(opmenu)); |
195 | for (opcode_index = 0; opcode_index < ctlr->menubytes; | |
1853030e SG |
196 | opcode_index++) { |
197 | if (opmenu[opcode_index] == trans->opcode) | |
198 | break; | |
199 | } | |
200 | ||
ba457562 | 201 | if (opcode_index == ctlr->menubytes) { |
a550662c | 202 | debug("ICH SPI: Opcode %x not found\n", trans->opcode); |
ba457562 | 203 | return -EINVAL; |
1853030e SG |
204 | } |
205 | ||
ba457562 | 206 | optypes = ich_readw(ctlr, ctlr->optype); |
1853030e | 207 | optype = (optypes >> (opcode_index * 2)) & 0x3; |
0709ddb6 | 208 | |
1853030e | 209 | if (optype != trans->type) { |
a550662c SG |
210 | debug("ICH SPI: Transaction doesn't fit type %d\n", |
211 | optype); | |
ba457562 | 212 | return -ENOSPC; |
1853030e SG |
213 | } |
214 | return opcode_index; | |
215 | } | |
216 | } | |
217 | ||
1853030e SG |
218 | /* |
219 | * Wait for up to 6s til status register bit(s) turn 1 (in case wait_til_set | |
472d5460 | 220 | * below is true) or 0. In case the wait was for the bit(s) to set - write |
1853030e SG |
221 | * those bits back, which would cause resetting them. |
222 | * | |
223 | * Return the last read status value on success or -1 on failure. | |
224 | */ | |
ba457562 SG |
225 | static int ich_status_poll(struct ich_spi_priv *ctlr, u16 bitmask, |
226 | int wait_til_set) | |
1853030e SG |
227 | { |
228 | int timeout = 600000; /* This will result in 6s */ | |
229 | u16 status = 0; | |
230 | ||
231 | while (timeout--) { | |
ba457562 | 232 | status = ich_readw(ctlr, ctlr->status); |
1853030e | 233 | if (wait_til_set ^ ((status & bitmask) == 0)) { |
ba457562 SG |
234 | if (wait_til_set) { |
235 | ich_writew(ctlr, status & bitmask, | |
236 | ctlr->status); | |
237 | } | |
1853030e SG |
238 | return status; |
239 | } | |
240 | udelay(10); | |
241 | } | |
a550662c SG |
242 | debug("ICH SPI: SCIP timeout, read %x, expected %x, wts %x %x\n", |
243 | status, bitmask, wait_til_set, status & bitmask); | |
1853030e | 244 | |
ba457562 | 245 | return -ETIMEDOUT; |
1853030e SG |
246 | } |
247 | ||
0709ddb6 | 248 | static void ich_spi_config_opcode(struct udevice *dev) |
b42711f9 BM |
249 | { |
250 | struct ich_spi_priv *ctlr = dev_get_priv(dev); | |
251 | ||
252 | /* | |
253 | * PREOP, OPTYPE, OPMENU1/OPMENU2 registers can be locked down | |
254 | * to prevent accidental or intentional writes. Before they get | |
255 | * locked down, these registers should be initialized properly. | |
256 | */ | |
257 | ich_writew(ctlr, SPI_OPPREFIX, ctlr->preop); | |
258 | ich_writew(ctlr, SPI_OPTYPE, ctlr->optype); | |
259 | ich_writel(ctlr, SPI_OPMENU_LOWER, ctlr->opmenu); | |
260 | ich_writel(ctlr, SPI_OPMENU_UPPER, ctlr->opmenu + sizeof(u32)); | |
261 | } | |
262 | ||
1facebd1 SG |
263 | static int ich_spi_exec_op_swseq(struct spi_slave *slave, |
264 | const struct spi_mem_op *op) | |
1853030e | 265 | { |
0709ddb6 | 266 | struct udevice *bus = dev_get_parent(slave->dev); |
e1e332c8 | 267 | struct ich_spi_platdata *plat = dev_get_platdata(bus); |
ba457562 | 268 | struct ich_spi_priv *ctlr = dev_get_priv(bus); |
1853030e SG |
269 | uint16_t control; |
270 | int16_t opcode_index; | |
271 | int with_address; | |
272 | int status; | |
ba457562 | 273 | struct spi_trans *trans = &ctlr->trans; |
3e791416 | 274 | bool lock = spi_lock_status(plat, ctlr->base); |
0709ddb6 | 275 | int ret = 0; |
1853030e | 276 | |
0709ddb6 BM |
277 | trans->in = NULL; |
278 | trans->out = NULL; | |
279 | trans->type = 0xFF; | |
1853030e | 280 | |
0709ddb6 BM |
281 | if (op->data.nbytes) { |
282 | if (op->data.dir == SPI_MEM_DATA_IN) { | |
283 | trans->in = op->data.buf.in; | |
284 | trans->bytesin = op->data.nbytes; | |
285 | } else { | |
286 | trans->out = op->data.buf.out; | |
287 | trans->bytesout = op->data.nbytes; | |
1853030e | 288 | } |
1853030e SG |
289 | } |
290 | ||
0709ddb6 BM |
291 | if (trans->opcode != op->cmd.opcode) |
292 | trans->opcode = op->cmd.opcode; | |
1853030e | 293 | |
0709ddb6 BM |
294 | if (lock && trans->opcode == SPI_OPCODE_WRDIS) |
295 | return 0; | |
1853030e | 296 | |
0709ddb6 BM |
297 | if (trans->opcode == SPI_OPCODE_WREN) { |
298 | /* | |
299 | * Treat Write Enable as Atomic Pre-Op if possible | |
300 | * in order to prevent the Management Engine from | |
301 | * issuing a transaction between WREN and DATA. | |
302 | */ | |
303 | if (!lock) | |
304 | ich_writew(ctlr, trans->opcode, ctlr->preop); | |
305 | return 0; | |
1853030e SG |
306 | } |
307 | ||
ba457562 SG |
308 | ret = ich_status_poll(ctlr, SPIS_SCIP, 0); |
309 | if (ret < 0) | |
310 | return ret; | |
1853030e | 311 | |
6e670b5c | 312 | if (plat->ich_version == ICHV_7) |
e1e332c8 SG |
313 | ich_writew(ctlr, SPIS_CDS | SPIS_FCERR, ctlr->status); |
314 | else | |
315 | ich_writeb(ctlr, SPIS_CDS | SPIS_FCERR, ctlr->status); | |
1853030e | 316 | |
0709ddb6 BM |
317 | /* Try to guess spi transaction type */ |
318 | if (op->data.dir == SPI_MEM_DATA_OUT) { | |
319 | if (op->addr.nbytes) | |
320 | trans->type = SPI_OPCODE_TYPE_WRITE_WITH_ADDRESS; | |
321 | else | |
322 | trans->type = SPI_OPCODE_TYPE_WRITE_NO_ADDRESS; | |
323 | } else { | |
324 | if (op->addr.nbytes) | |
325 | trans->type = SPI_OPCODE_TYPE_READ_WITH_ADDRESS; | |
326 | else | |
327 | trans->type = SPI_OPCODE_TYPE_READ_NO_ADDRESS; | |
328 | } | |
329 | /* Special erase case handling */ | |
330 | if (op->addr.nbytes && !op->data.buswidth) | |
331 | trans->type = SPI_OPCODE_TYPE_WRITE_WITH_ADDRESS; | |
332 | ||
3e791416 | 333 | opcode_index = spi_setup_opcode(ctlr, trans, lock); |
1853030e | 334 | if (opcode_index < 0) |
ba457562 | 335 | return -EINVAL; |
1853030e | 336 | |
0709ddb6 BM |
337 | if (op->addr.nbytes) { |
338 | trans->offset = op->addr.val; | |
339 | with_address = 1; | |
1853030e SG |
340 | } |
341 | ||
ba457562 | 342 | if (ctlr->speed && ctlr->max_speed >= 33000000) { |
1853030e SG |
343 | int byte; |
344 | ||
ba457562 SG |
345 | byte = ich_readb(ctlr, ctlr->speed); |
346 | if (ctlr->cur_speed >= 33000000) | |
1853030e SG |
347 | byte |= SSFC_SCF_33MHZ; |
348 | else | |
349 | byte &= ~SSFC_SCF_33MHZ; | |
ba457562 | 350 | ich_writeb(ctlr, byte, ctlr->speed); |
1853030e SG |
351 | } |
352 | ||
1853030e | 353 | /* Preset control fields */ |
1853030e SG |
354 | control = SPIC_SCGO | ((opcode_index & 0x07) << 4); |
355 | ||
356 | /* Issue atomic preop cycle if needed */ | |
ba457562 | 357 | if (ich_readw(ctlr, ctlr->preop)) |
1853030e SG |
358 | control |= SPIC_ACS; |
359 | ||
360 | if (!trans->bytesout && !trans->bytesin) { | |
361 | /* SPI addresses are 24 bit only */ | |
ba457562 SG |
362 | if (with_address) { |
363 | ich_writel(ctlr, trans->offset & 0x00FFFFFF, | |
364 | ctlr->addr); | |
365 | } | |
1853030e SG |
366 | /* |
367 | * This is a 'no data' command (like Write Enable), its | |
368 | * bitesout size was 1, decremented to zero while executing | |
369 | * spi_setup_opcode() above. Tell the chip to send the | |
370 | * command. | |
371 | */ | |
ba457562 | 372 | ich_writew(ctlr, control, ctlr->control); |
1853030e SG |
373 | |
374 | /* wait for the result */ | |
ba457562 SG |
375 | status = ich_status_poll(ctlr, SPIS_CDS | SPIS_FCERR, 1); |
376 | if (status < 0) | |
377 | return status; | |
1853030e SG |
378 | |
379 | if (status & SPIS_FCERR) { | |
380 | debug("ICH SPI: Command transaction error\n"); | |
ba457562 | 381 | return -EIO; |
1853030e SG |
382 | } |
383 | ||
384 | return 0; | |
385 | } | |
386 | ||
1853030e SG |
387 | while (trans->bytesout || trans->bytesin) { |
388 | uint32_t data_length; | |
1853030e SG |
389 | |
390 | /* SPI addresses are 24 bit only */ | |
ba457562 | 391 | ich_writel(ctlr, trans->offset & 0x00FFFFFF, ctlr->addr); |
1853030e SG |
392 | |
393 | if (trans->bytesout) | |
ba457562 | 394 | data_length = min(trans->bytesout, ctlr->databytes); |
1853030e | 395 | else |
ba457562 | 396 | data_length = min(trans->bytesin, ctlr->databytes); |
1853030e SG |
397 | |
398 | /* Program data into FDATA0 to N */ | |
399 | if (trans->bytesout) { | |
ba457562 | 400 | write_reg(ctlr, trans->out, ctlr->data, data_length); |
0709ddb6 | 401 | trans->bytesout -= data_length; |
1853030e SG |
402 | } |
403 | ||
404 | /* Add proper control fields' values */ | |
ba457562 | 405 | control &= ~((ctlr->databytes - 1) << 8); |
1853030e SG |
406 | control |= SPIC_DS; |
407 | control |= (data_length - 1) << 8; | |
408 | ||
409 | /* write it */ | |
ba457562 | 410 | ich_writew(ctlr, control, ctlr->control); |
1853030e | 411 | |
9eb4339b | 412 | /* Wait for Cycle Done Status or Flash Cycle Error */ |
ba457562 SG |
413 | status = ich_status_poll(ctlr, SPIS_CDS | SPIS_FCERR, 1); |
414 | if (status < 0) | |
415 | return status; | |
1853030e SG |
416 | |
417 | if (status & SPIS_FCERR) { | |
5d4a757c | 418 | debug("ICH SPI: Data transaction error %x\n", status); |
ba457562 | 419 | return -EIO; |
1853030e SG |
420 | } |
421 | ||
422 | if (trans->bytesin) { | |
ba457562 | 423 | read_reg(ctlr, ctlr->data, trans->in, data_length); |
0709ddb6 | 424 | trans->bytesin -= data_length; |
1853030e SG |
425 | } |
426 | } | |
427 | ||
428 | /* Clear atomic preop now that xfer is done */ | |
d2ca80c3 BM |
429 | if (!lock) |
430 | ich_writew(ctlr, 0, ctlr->preop); | |
1853030e SG |
431 | |
432 | return 0; | |
433 | } | |
434 | ||
1facebd1 SG |
435 | /* |
436 | * Ensure read/write xfer len is not greater than SPIBAR_FDATA_FIFO_SIZE and | |
437 | * that the operation does not cross page boundary. | |
438 | */ | |
439 | static uint get_xfer_len(u32 offset, int len, int page_size) | |
440 | { | |
441 | uint xfer_len = min(len, SPIBAR_FDATA_FIFO_SIZE); | |
442 | uint bytes_left = ALIGN(offset, page_size) - offset; | |
443 | ||
444 | if (bytes_left) | |
445 | xfer_len = min(xfer_len, bytes_left); | |
446 | ||
447 | return xfer_len; | |
448 | } | |
449 | ||
450 | /* Fill FDATAn FIFO in preparation for a write transaction */ | |
451 | static void fill_xfer_fifo(struct fast_spi_regs *regs, const void *data, | |
452 | uint len) | |
453 | { | |
454 | memcpy(regs->fdata, data, len); | |
455 | } | |
456 | ||
457 | /* Drain FDATAn FIFO after a read transaction populates data */ | |
458 | static void drain_xfer_fifo(struct fast_spi_regs *regs, void *dest, uint len) | |
459 | { | |
460 | memcpy(dest, regs->fdata, len); | |
461 | } | |
462 | ||
463 | /* Fire up a transfer using the hardware sequencer */ | |
464 | static void start_hwseq_xfer(struct fast_spi_regs *regs, uint hsfsts_cycle, | |
465 | uint offset, uint len) | |
466 | { | |
467 | /* Make sure all W1C status bits get cleared */ | |
468 | u32 hsfsts; | |
469 | ||
470 | hsfsts = readl(®s->hsfsts_ctl); | |
471 | hsfsts &= ~(HSFSTS_FCYCLE_MASK | HSFSTS_FDBC_MASK); | |
472 | hsfsts |= HSFSTS_AEL | HSFSTS_FCERR | HSFSTS_FDONE; | |
473 | ||
474 | /* Set up transaction parameters */ | |
475 | hsfsts |= hsfsts_cycle << HSFSTS_FCYCLE_SHIFT; | |
476 | hsfsts |= ((len - 1) << HSFSTS_FDBC_SHIFT) & HSFSTS_FDBC_MASK; | |
477 | hsfsts |= HSFSTS_FGO; | |
478 | ||
479 | writel(offset, ®s->faddr); | |
480 | writel(hsfsts, ®s->hsfsts_ctl); | |
481 | } | |
482 | ||
483 | static int wait_for_hwseq_xfer(struct fast_spi_regs *regs, uint offset) | |
484 | { | |
485 | ulong start; | |
486 | u32 hsfsts; | |
487 | ||
488 | start = get_timer(0); | |
489 | do { | |
490 | hsfsts = readl(®s->hsfsts_ctl); | |
491 | if (hsfsts & HSFSTS_FCERR) { | |
492 | debug("SPI transaction error at offset %x HSFSTS = %08x\n", | |
493 | offset, hsfsts); | |
494 | return -EIO; | |
495 | } | |
496 | if (hsfsts & HSFSTS_AEL) | |
497 | return -EPERM; | |
498 | ||
499 | if (hsfsts & HSFSTS_FDONE) | |
500 | return 0; | |
501 | } while (get_timer(start) < SPIBAR_HWSEQ_XFER_TIMEOUT_MS); | |
502 | ||
503 | debug("SPI transaction timeout at offset %x HSFSTS = %08x, timer %d\n", | |
504 | offset, hsfsts, (uint)get_timer(start)); | |
505 | ||
506 | return -ETIMEDOUT; | |
507 | } | |
508 | ||
509 | /** | |
510 | * exec_sync_hwseq_xfer() - Execute flash transfer by hardware sequencing | |
511 | * | |
512 | * This waits until complete or timeout | |
513 | * | |
514 | * @regs: SPI registers | |
515 | * @hsfsts_cycle: Cycle type (enum hsfsts_cycle_t) | |
516 | * @offset: Offset to access | |
517 | * @len: Number of bytes to transfer (can be 0) | |
518 | * @return 0 if OK, -EIO on flash-cycle error (FCERR), -EPERM on access error | |
519 | * (AEL), -ETIMEDOUT on timeout | |
520 | */ | |
521 | static int exec_sync_hwseq_xfer(struct fast_spi_regs *regs, uint hsfsts_cycle, | |
522 | uint offset, uint len) | |
523 | { | |
524 | start_hwseq_xfer(regs, hsfsts_cycle, offset, len); | |
525 | ||
526 | return wait_for_hwseq_xfer(regs, offset); | |
527 | } | |
528 | ||
529 | static int ich_spi_exec_op_hwseq(struct spi_slave *slave, | |
530 | const struct spi_mem_op *op) | |
531 | { | |
532 | struct spi_flash *flash = dev_get_uclass_priv(slave->dev); | |
533 | struct udevice *bus = dev_get_parent(slave->dev); | |
534 | struct ich_spi_priv *priv = dev_get_priv(bus); | |
535 | struct fast_spi_regs *regs = priv->base; | |
536 | uint page_size; | |
537 | uint offset; | |
538 | int cycle; | |
539 | uint len; | |
540 | bool out; | |
541 | int ret; | |
542 | u8 *buf; | |
543 | ||
544 | offset = op->addr.val; | |
545 | len = op->data.nbytes; | |
546 | ||
547 | switch (op->cmd.opcode) { | |
548 | case SPINOR_OP_RDID: | |
549 | cycle = HSFSTS_CYCLE_RDID; | |
550 | break; | |
551 | case SPINOR_OP_READ_FAST: | |
552 | cycle = HSFSTS_CYCLE_READ; | |
553 | break; | |
554 | case SPINOR_OP_PP: | |
555 | cycle = HSFSTS_CYCLE_WRITE; | |
556 | break; | |
557 | case SPINOR_OP_WREN: | |
558 | /* Nothing needs to be done */ | |
559 | return 0; | |
560 | case SPINOR_OP_WRSR: | |
561 | cycle = HSFSTS_CYCLE_WR_STATUS; | |
562 | break; | |
563 | case SPINOR_OP_RDSR: | |
564 | cycle = HSFSTS_CYCLE_RD_STATUS; | |
565 | break; | |
566 | case SPINOR_OP_WRDI: | |
567 | return 0; /* ignore */ | |
568 | case SPINOR_OP_BE_4K: | |
569 | cycle = HSFSTS_CYCLE_4K_ERASE; | |
5e579cc0 WW |
570 | ret = exec_sync_hwseq_xfer(regs, cycle, offset, 0); |
571 | return ret; | |
1facebd1 SG |
572 | default: |
573 | debug("Unknown cycle %x\n", op->cmd.opcode); | |
574 | return -EINVAL; | |
575 | }; | |
576 | ||
577 | out = op->data.dir == SPI_MEM_DATA_OUT; | |
578 | buf = out ? (u8 *)op->data.buf.out : op->data.buf.in; | |
579 | page_size = flash->page_size ? : 256; | |
580 | ||
581 | while (len) { | |
582 | uint xfer_len = get_xfer_len(offset, len, page_size); | |
583 | ||
584 | if (out) | |
585 | fill_xfer_fifo(regs, buf, xfer_len); | |
586 | ||
587 | ret = exec_sync_hwseq_xfer(regs, cycle, offset, xfer_len); | |
588 | if (ret) | |
589 | return ret; | |
590 | ||
591 | if (!out) | |
592 | drain_xfer_fifo(regs, buf, xfer_len); | |
593 | ||
594 | offset += xfer_len; | |
595 | buf += xfer_len; | |
596 | len -= xfer_len; | |
597 | } | |
598 | ||
599 | return 0; | |
600 | } | |
601 | ||
602 | static int ich_spi_exec_op(struct spi_slave *slave, const struct spi_mem_op *op) | |
603 | { | |
604 | struct udevice *bus = dev_get_parent(slave->dev); | |
605 | struct ich_spi_platdata *plat = dev_get_platdata(bus); | |
606 | int ret; | |
607 | ||
608 | bootstage_start(BOOTSTAGE_ID_ACCUM_SPI, "fast_spi"); | |
609 | if (plat->hwseq) | |
610 | ret = ich_spi_exec_op_hwseq(slave, op); | |
611 | else | |
612 | ret = ich_spi_exec_op_swseq(slave, op); | |
613 | bootstage_accum(BOOTSTAGE_ID_ACCUM_SPI); | |
614 | ||
615 | return ret; | |
616 | } | |
617 | ||
609b90a6 SG |
618 | /** |
619 | * ich_spi_get_basics() - Get basic information about the ICH device | |
620 | * | |
621 | * This works without probing any devices if requested. | |
622 | * | |
623 | * @bus: SPI controller to use | |
624 | * @can_probe: true if this function is allowed to probe the PCH | |
625 | * @pchp: Returns a pointer to the pch, or NULL if not found | |
626 | * @ich_versionp: Returns ICH version detected on success | |
627 | * @mmio_basep: Returns the address of the SPI registers on success | |
628 | * @return 0 if OK, -EPROTOTYPE if the PCH could not be found, -EAGAIN if | |
629 | * the function cannot success without probing, possible another error if | |
630 | * pch_get_spi_base() fails | |
631 | */ | |
632 | static int ich_spi_get_basics(struct udevice *bus, bool can_probe, | |
633 | struct udevice **pchp, | |
634 | enum ich_version *ich_versionp, ulong *mmio_basep) | |
635 | { | |
636 | struct udevice *pch = NULL; | |
637 | int ret = 0; | |
638 | ||
639 | /* Find a PCH if there is one */ | |
640 | if (can_probe) { | |
641 | pch = dev_get_parent(bus); | |
642 | if (device_get_uclass_id(pch) != UCLASS_PCH) { | |
643 | uclass_first_device(UCLASS_PCH, &pch); | |
644 | if (!pch) | |
645 | return log_msg_ret("uclass", -EPROTOTYPE); | |
646 | } | |
647 | } | |
648 | ||
649 | *ich_versionp = dev_get_driver_data(bus); | |
650 | if (*ich_versionp == ICHV_APL) | |
651 | *mmio_basep = dm_pci_read_bar32(bus, 0); | |
652 | else if (pch) | |
653 | ret = pch_get_spi_base(pch, mmio_basep); | |
654 | else | |
655 | return -EAGAIN; | |
656 | *pchp = pch; | |
657 | ||
658 | return ret; | |
659 | } | |
660 | ||
661 | /** | |
662 | * ich_get_mmap_bus() - Handle the get_mmap() method for a bus | |
663 | * | |
664 | * There are several cases to consider: | |
665 | * 1. Using of-platdata, in which case we have the BDF and can access the | |
666 | * registers by reading the BAR | |
667 | * 2. Not using of-platdata, but still with a SPI controller that is on its own | |
668 | * PCI PDF. In this case we read the BDF from the parent platdata and again get | |
669 | * the registers by reading the BAR | |
670 | * 3. Using a SPI controller that is a child of the PCH, in which case we try | |
671 | * to find the registers by asking the PCH. This only works if the PCH has | |
672 | * been probed (which it will be if the bus is probed since parents are | |
673 | * probed before children), since the PCH may not have a PCI address until | |
674 | * its parent (the PCI bus itself) has been probed. If you are using this | |
675 | * method then you should make sure the SPI bus is probed. | |
676 | * | |
677 | * The first two cases are useful in early init. The last one is more useful | |
678 | * afterwards. | |
679 | */ | |
92842147 SG |
680 | static int ich_get_mmap_bus(struct udevice *bus, ulong *map_basep, |
681 | uint *map_sizep, uint *offsetp) | |
682 | { | |
683 | pci_dev_t spi_bdf; | |
92842147 | 684 | #if !CONFIG_IS_ENABLED(OF_PLATDATA) |
609b90a6 SG |
685 | if (device_is_on_pci_bus(bus)) { |
686 | struct pci_child_platdata *pplat; | |
687 | ||
688 | pplat = dev_get_parent_platdata(bus); | |
689 | spi_bdf = pplat->devfn; | |
690 | } else { | |
691 | enum ich_version ich_version; | |
692 | struct fast_spi_regs *regs; | |
693 | struct udevice *pch; | |
694 | ulong mmio_base; | |
695 | int ret; | |
92842147 | 696 | |
609b90a6 SG |
697 | ret = ich_spi_get_basics(bus, device_active(bus), &pch, |
698 | &ich_version, &mmio_base); | |
699 | if (ret) | |
700 | return log_msg_ret("basics", ret); | |
701 | regs = (struct fast_spi_regs *)mmio_base; | |
702 | ||
703 | return fast_spi_get_bios_mmap_regs(regs, map_basep, map_sizep, | |
704 | offsetp); | |
705 | } | |
92842147 SG |
706 | #else |
707 | struct ich_spi_platdata *plat = dev_get_platdata(bus); | |
708 | ||
709 | /* | |
710 | * We cannot rely on plat->bdf being set up yet since this method can | |
711 | * be called before the device is probed. Use the of-platdata directly | |
712 | * instead. | |
713 | */ | |
714 | spi_bdf = pci_ofplat_get_devfn(plat->dtplat.reg[0]); | |
715 | #endif | |
716 | ||
717 | return fast_spi_get_bios_mmap(spi_bdf, map_basep, map_sizep, offsetp); | |
718 | } | |
719 | ||
720 | static int ich_get_mmap(struct udevice *dev, ulong *map_basep, uint *map_sizep, | |
721 | uint *offsetp) | |
722 | { | |
723 | struct udevice *bus = dev_get_parent(dev); | |
724 | ||
725 | return ich_get_mmap_bus(bus, map_basep, map_sizep, offsetp); | |
726 | } | |
727 | ||
0709ddb6 BM |
728 | static int ich_spi_adjust_size(struct spi_slave *slave, struct spi_mem_op *op) |
729 | { | |
730 | unsigned int page_offset; | |
731 | int addr = op->addr.val; | |
732 | unsigned int byte_count = op->data.nbytes; | |
733 | ||
734 | if (hweight32(ICH_BOUNDARY) == 1) { | |
735 | page_offset = addr & (ICH_BOUNDARY - 1); | |
736 | } else { | |
737 | u64 aux = addr; | |
738 | ||
739 | page_offset = do_div(aux, ICH_BOUNDARY); | |
740 | } | |
741 | ||
43c145b8 SG |
742 | if (op->data.dir == SPI_MEM_DATA_IN) { |
743 | if (slave->max_read_size) { | |
744 | op->data.nbytes = min(ICH_BOUNDARY - page_offset, | |
745 | slave->max_read_size); | |
746 | } | |
0709ddb6 BM |
747 | } else if (slave->max_write_size) { |
748 | op->data.nbytes = min(ICH_BOUNDARY - page_offset, | |
749 | slave->max_write_size); | |
750 | } | |
751 | ||
752 | op->data.nbytes = min(op->data.nbytes, byte_count); | |
753 | ||
754 | return 0; | |
755 | } | |
756 | ||
17e75449 SG |
757 | static int ich_protect_lockdown(struct udevice *dev) |
758 | { | |
759 | struct ich_spi_platdata *plat = dev_get_platdata(dev); | |
760 | struct ich_spi_priv *priv = dev_get_priv(dev); | |
761 | int ret = -ENOSYS; | |
762 | ||
763 | /* Disable the BIOS write protect so write commands are allowed */ | |
764 | if (priv->pch) | |
765 | ret = pch_set_spi_protect(priv->pch, false); | |
766 | if (ret == -ENOSYS) { | |
767 | u8 bios_cntl; | |
768 | ||
769 | bios_cntl = ich_readb(priv, priv->bcr); | |
770 | bios_cntl &= ~BIT(5); /* clear Enable InSMM_STS (EISS) */ | |
771 | bios_cntl |= 1; /* Write Protect Disable (WPD) */ | |
772 | ich_writeb(priv, bios_cntl, priv->bcr); | |
773 | } else if (ret) { | |
774 | debug("%s: Failed to disable write-protect: err=%d\n", | |
775 | __func__, ret); | |
776 | return ret; | |
777 | } | |
778 | ||
779 | /* Lock down SPI controller settings if required */ | |
780 | if (plat->lockdown) { | |
781 | ich_spi_config_opcode(dev); | |
782 | spi_lock_down(plat, priv->base); | |
783 | } | |
784 | ||
785 | return 0; | |
786 | } | |
787 | ||
674990c0 SG |
788 | static int ich_init_controller(struct udevice *dev, |
789 | struct ich_spi_platdata *plat, | |
790 | struct ich_spi_priv *ctlr) | |
791 | { | |
636555a4 SG |
792 | if (spl_phase() == PHASE_TPL) { |
793 | struct ich_spi_platdata *plat = dev_get_platdata(dev); | |
794 | int ret; | |
795 | ||
796 | ret = fast_spi_early_init(plat->bdf, plat->mmio_base); | |
797 | if (ret) | |
798 | return ret; | |
799 | } | |
800 | ||
75214b05 | 801 | ctlr->base = (void *)plat->mmio_base; |
674990c0 | 802 | if (plat->ich_version == ICHV_7) { |
75214b05 | 803 | struct ich7_spi_regs *ich7_spi = ctlr->base; |
674990c0 SG |
804 | |
805 | ctlr->opmenu = offsetof(struct ich7_spi_regs, opmenu); | |
806 | ctlr->menubytes = sizeof(ich7_spi->opmenu); | |
807 | ctlr->optype = offsetof(struct ich7_spi_regs, optype); | |
808 | ctlr->addr = offsetof(struct ich7_spi_regs, spia); | |
809 | ctlr->data = offsetof(struct ich7_spi_regs, spid); | |
810 | ctlr->databytes = sizeof(ich7_spi->spid); | |
811 | ctlr->status = offsetof(struct ich7_spi_regs, spis); | |
812 | ctlr->control = offsetof(struct ich7_spi_regs, spic); | |
813 | ctlr->bbar = offsetof(struct ich7_spi_regs, bbar); | |
814 | ctlr->preop = offsetof(struct ich7_spi_regs, preop); | |
674990c0 | 815 | } else if (plat->ich_version == ICHV_9) { |
75214b05 | 816 | struct ich9_spi_regs *ich9_spi = ctlr->base; |
674990c0 SG |
817 | |
818 | ctlr->opmenu = offsetof(struct ich9_spi_regs, opmenu); | |
819 | ctlr->menubytes = sizeof(ich9_spi->opmenu); | |
820 | ctlr->optype = offsetof(struct ich9_spi_regs, optype); | |
821 | ctlr->addr = offsetof(struct ich9_spi_regs, faddr); | |
822 | ctlr->data = offsetof(struct ich9_spi_regs, fdata); | |
823 | ctlr->databytes = sizeof(ich9_spi->fdata); | |
824 | ctlr->status = offsetof(struct ich9_spi_regs, ssfs); | |
825 | ctlr->control = offsetof(struct ich9_spi_regs, ssfc); | |
826 | ctlr->speed = ctlr->control + 2; | |
827 | ctlr->bbar = offsetof(struct ich9_spi_regs, bbar); | |
828 | ctlr->preop = offsetof(struct ich9_spi_regs, preop); | |
829 | ctlr->bcr = offsetof(struct ich9_spi_regs, bcr); | |
830 | ctlr->pr = &ich9_spi->pr[0]; | |
3937df3d | 831 | } else if (plat->ich_version == ICHV_APL) { |
674990c0 SG |
832 | } else { |
833 | debug("ICH SPI: Unrecognised ICH version %d\n", | |
834 | plat->ich_version); | |
835 | return -EINVAL; | |
836 | } | |
837 | ||
838 | /* Work out the maximum speed we can support */ | |
839 | ctlr->max_speed = 20000000; | |
840 | if (plat->ich_version == ICHV_9 && ich9_can_do_33mhz(dev)) | |
841 | ctlr->max_speed = 33000000; | |
75214b05 SG |
842 | debug("ICH SPI: Version ID %d detected at %lx, speed %ld\n", |
843 | plat->ich_version, plat->mmio_base, ctlr->max_speed); | |
674990c0 SG |
844 | |
845 | ich_set_bbar(ctlr, 0); | |
846 | ||
847 | return 0; | |
848 | } | |
849 | ||
636555a4 SG |
850 | static int ich_cache_bios_region(struct udevice *dev) |
851 | { | |
852 | ulong map_base; | |
853 | uint map_size; | |
854 | uint offset; | |
855 | ulong base; | |
856 | int ret; | |
857 | ||
858 | ret = ich_get_mmap_bus(dev, &map_base, &map_size, &offset); | |
859 | if (ret) | |
860 | return ret; | |
861 | ||
862 | /* Don't use WRBACK since we are not supposed to write to SPI flash */ | |
863 | base = SZ_4G - map_size; | |
864 | mtrr_set_next_var(MTRR_TYPE_WRPROT, base, map_size); | |
865 | log_debug("BIOS cache base=%lx, size=%x\n", base, (uint)map_size); | |
866 | ||
867 | return 0; | |
868 | } | |
869 | ||
f2b85ab5 | 870 | static int ich_spi_probe(struct udevice *dev) |
ba457562 | 871 | { |
f2b85ab5 SG |
872 | struct ich_spi_platdata *plat = dev_get_platdata(dev); |
873 | struct ich_spi_priv *priv = dev_get_priv(dev); | |
ba457562 SG |
874 | int ret; |
875 | ||
f2b85ab5 | 876 | ret = ich_init_controller(dev, plat, priv); |
ba457562 SG |
877 | if (ret) |
878 | return ret; | |
ba457562 | 879 | |
636555a4 SG |
880 | if (spl_phase() == PHASE_TPL) { |
881 | /* Cache the BIOS to speed things up */ | |
882 | ret = ich_cache_bios_region(dev); | |
883 | if (ret) | |
884 | return ret; | |
885 | } else { | |
886 | ret = ich_protect_lockdown(dev); | |
887 | if (ret) | |
888 | return ret; | |
889 | } | |
ba457562 SG |
890 | priv->cur_speed = priv->max_speed; |
891 | ||
892 | return 0; | |
893 | } | |
894 | ||
4759dffe SR |
895 | static int ich_spi_remove(struct udevice *bus) |
896 | { | |
4759dffe SR |
897 | /* |
898 | * Configure SPI controller so that the Linux MTD driver can fully | |
899 | * access the SPI NOR chip | |
900 | */ | |
b42711f9 | 901 | ich_spi_config_opcode(bus); |
4759dffe SR |
902 | |
903 | return 0; | |
904 | } | |
905 | ||
ba457562 SG |
906 | static int ich_spi_set_speed(struct udevice *bus, uint speed) |
907 | { | |
908 | struct ich_spi_priv *priv = dev_get_priv(bus); | |
909 | ||
910 | priv->cur_speed = speed; | |
911 | ||
912 | return 0; | |
913 | } | |
914 | ||
915 | static int ich_spi_set_mode(struct udevice *bus, uint mode) | |
916 | { | |
917 | debug("%s: mode=%d\n", __func__, mode); | |
918 | ||
919 | return 0; | |
920 | } | |
921 | ||
922 | static int ich_spi_child_pre_probe(struct udevice *dev) | |
923 | { | |
924 | struct udevice *bus = dev_get_parent(dev); | |
925 | struct ich_spi_platdata *plat = dev_get_platdata(bus); | |
926 | struct ich_spi_priv *priv = dev_get_priv(bus); | |
bcbe3d15 | 927 | struct spi_slave *slave = dev_get_parent_priv(dev); |
ba457562 SG |
928 | |
929 | /* | |
930 | * Yes this controller can only write a small number of bytes at | |
1facebd1 SG |
931 | * once! The limit is typically 64 bytes. For hardware sequencing a |
932 | * a loop is used to get around this. | |
ba457562 | 933 | */ |
1facebd1 SG |
934 | if (!plat->hwseq) |
935 | slave->max_write_size = priv->databytes; | |
ba457562 SG |
936 | /* |
937 | * ICH 7 SPI controller only supports array read command | |
938 | * and byte program command for SST flash | |
939 | */ | |
08fe9c29 JT |
940 | if (plat->ich_version == ICHV_7) |
941 | slave->mode = SPI_RX_SLOW | SPI_TX_BYTE; | |
ba457562 SG |
942 | |
943 | return 0; | |
944 | } | |
945 | ||
1f9eb59d BM |
946 | static int ich_spi_ofdata_to_platdata(struct udevice *dev) |
947 | { | |
948 | struct ich_spi_platdata *plat = dev_get_platdata(dev); | |
609b90a6 | 949 | int ret; |
0d3ee3e1 SG |
950 | |
951 | #if !CONFIG_IS_ENABLED(OF_PLATDATA) | |
17e75449 | 952 | struct ich_spi_priv *priv = dev_get_priv(dev); |
1f9eb59d | 953 | |
609b90a6 SG |
954 | ret = ich_spi_get_basics(dev, true, &priv->pch, &plat->ich_version, |
955 | &plat->mmio_base); | |
956 | if (ret) | |
957 | return log_msg_ret("basics", ret); | |
702b28a1 | 958 | plat->lockdown = dev_read_bool(dev, "intel,spi-lock-down"); |
1facebd1 SG |
959 | /* |
960 | * Use an int so that the property is present in of-platdata even | |
961 | * when false. | |
962 | */ | |
963 | plat->hwseq = dev_read_u32_default(dev, "intel,hardware-seq", 0); | |
0d3ee3e1 SG |
964 | #else |
965 | plat->ich_version = ICHV_APL; | |
966 | plat->mmio_base = plat->dtplat.early_regs[0]; | |
967 | plat->bdf = pci_ofplat_get_devfn(plat->dtplat.reg[0]); | |
1facebd1 | 968 | plat->hwseq = plat->dtplat.intel_hardware_seq; |
0d3ee3e1 SG |
969 | #endif |
970 | debug("%s: mmio_base=%lx\n", __func__, plat->mmio_base); | |
75214b05 | 971 | |
702b28a1 | 972 | return 0; |
1f9eb59d BM |
973 | } |
974 | ||
0709ddb6 BM |
975 | static const struct spi_controller_mem_ops ich_controller_mem_ops = { |
976 | .adjust_op_size = ich_spi_adjust_size, | |
977 | .supports_op = NULL, | |
978 | .exec_op = ich_spi_exec_op, | |
979 | }; | |
980 | ||
ba457562 | 981 | static const struct dm_spi_ops ich_spi_ops = { |
ccdabd89 | 982 | /* xfer is not supported */ |
ba457562 SG |
983 | .set_speed = ich_spi_set_speed, |
984 | .set_mode = ich_spi_set_mode, | |
0709ddb6 | 985 | .mem_ops = &ich_controller_mem_ops, |
92842147 | 986 | .get_mmap = ich_get_mmap, |
ba457562 SG |
987 | /* |
988 | * cs_info is not needed, since we require all chip selects to be | |
989 | * in the device tree explicitly | |
990 | */ | |
991 | }; | |
992 | ||
993 | static const struct udevice_id ich_spi_ids[] = { | |
702b28a1 SG |
994 | { .compatible = "intel,ich7-spi", ICHV_7 }, |
995 | { .compatible = "intel,ich9-spi", ICHV_9 }, | |
3937df3d | 996 | { .compatible = "intel,fast-spi", ICHV_APL }, |
ba457562 SG |
997 | { } |
998 | }; | |
999 | ||
0d3ee3e1 SG |
1000 | U_BOOT_DRIVER(intel_fast_spi) = { |
1001 | .name = "intel_fast_spi", | |
ba457562 SG |
1002 | .id = UCLASS_SPI, |
1003 | .of_match = ich_spi_ids, | |
1004 | .ops = &ich_spi_ops, | |
1f9eb59d | 1005 | .ofdata_to_platdata = ich_spi_ofdata_to_platdata, |
ba457562 SG |
1006 | .platdata_auto_alloc_size = sizeof(struct ich_spi_platdata), |
1007 | .priv_auto_alloc_size = sizeof(struct ich_spi_priv), | |
1008 | .child_pre_probe = ich_spi_child_pre_probe, | |
1009 | .probe = ich_spi_probe, | |
4759dffe SR |
1010 | .remove = ich_spi_remove, |
1011 | .flags = DM_FLAG_OS_PREPARE, | |
ba457562 | 1012 | }; |