sf: Remove unneeded flash drivers files
[oweals/u-boot.git] / drivers / mtd / spi / spi_flash_probe.c
1 /*
2  * SPI flash probing
3  *
4  * Copyright (C) 2008 Atmel Corporation
5  * Copyright (C) 2010 Reinhard Meyer, EMK Elektronik
6  * Copyright (C) 2013 Jagannadha Sutradharudu Teki, Xilinx Inc.
7  *
8  * Licensed under the GPL-2 or later.
9  */
10
11 #include <common.h>
12 #include <fdtdec.h>
13 #include <malloc.h>
14 #include <spi.h>
15 #include <spi_flash.h>
16
17 #include "spi_flash_internal.h"
18
19 DECLARE_GLOBAL_DATA_PTR;
20
21 /*
22  * struct spi_flash_params - SPI/QSPI flash device params structure
23  *
24  * @name:               Device name ([MANUFLETTER][DEVTYPE][DENSITY][EXTRAINFO])
25  * @jedec:              Device jedec ID (0x[1byte_manuf_id][2byte_dev_id])
26  * @ext_jedec:          Device ext_jedec ID
27  * @sector_size:        Sector size of this device
28  * @nr_sectors: No.of sectors on this device
29  * @flags:              Importent param, for flash specific behaviour
30  */
31 struct spi_flash_params {
32         const char *name;
33         u32 jedec;
34         u16 ext_jedec;
35         u32 sector_size;
36         u32 nr_sectors;
37         u16 flags;
38 };
39
40 static const struct spi_flash_params spi_flash_params_table[] = {
41 #ifdef CONFIG_SPI_FLASH_ATMEL           /* ATMEL */
42         {"AT45DB011D",     0x1f2200, 0x0,       64 * 1024,     4,              SECT_4K},
43         {"AT45DB021D",     0x1f2300, 0x0,       64 * 1024,     8,              SECT_4K},
44         {"AT45DB041D",     0x1f2400, 0x0,       64 * 1024,     8,              SECT_4K},
45         {"AT45DB081D",     0x1f2500, 0x0,       64 * 1024,    16,              SECT_4K},
46         {"AT45DB161D",     0x1f2600, 0x0,       64 * 1024,    32,              SECT_4K},
47         {"AT45DB321D",     0x1f2700, 0x0,       64 * 1024,    64,              SECT_4K},
48         {"AT45DB641D",     0x1f2800, 0x0,       64 * 1024,   128,              SECT_4K},
49 #endif
50 #ifdef CONFIG_SPI_FLASH_EON             /* EON */
51         {"EN25Q32B",       0x1c3016, 0x0,       64 * 1024,    64,                    0},
52         {"EN25Q128B",      0x1c3018, 0x0,       64 * 1024,   256,                    0},
53 #endif
54 #ifdef CONFIG_SPI_FLASH_GIGADEVICE      /* GIGADEVICE */
55         {"GD25Q64B",       0xc84017, 0x0,       64 * 1024,   128,              SECT_4K},
56         {"GD25LQ32",       0xc86016, 0x0,       64 * 1024,    64,              SECT_4K},
57 #endif
58 #ifdef CONFIG_SPI_FLASH_MACRONIX        /* MACRONIX */
59         {"MX25L4005",      0xc22013, 0x0,       64 * 1024,     8,                    0},
60         {"MX25L8005",      0xc22014, 0x0,       64 * 1024,    16,                    0},
61         {"MX25L1605D",     0xc22015, 0x0,       64 * 1024,    32,                    0},
62         {"MX25L3205D",     0xc22016, 0x0,       64 * 1024,    64,                    0},
63         {"MX25L6405D",     0xc22017, 0x0,       64 * 1024,   128,                    0},
64         {"MX25L12805",     0xc22018, 0x0,       64 * 1024,   256,                    0},
65         {"MX25L12855E",    0xc22618, 0x0,       64 * 1024,   256,                    0},
66 #endif
67 #ifdef CONFIG_SPI_FLASH_SPANSION        /* SPANSION */
68         {"S25FL008A",      0x010213, 0x0,       64 * 1024,    16,                    0},
69         {"S25FL016A",      0x010214, 0x0,       64 * 1024,    32,                    0},
70         {"S25FL032A",      0x010215, 0x0,       64 * 1024,    64,                    0},
71         {"S25FL064A",      0x010216, 0x0,       64 * 1024,   128,                    0},
72         {"S25FL128P_256K", 0x012018, 0x0300,   256 * 1024,    64,                    0},
73         {"S25FL128P_64K",  0x012018, 0x0301,    64 * 1024,   256,                    0},
74         {"S25FL032P",      0x010215, 0x4d00,    64 * 1024,    64,                    0},
75         {"S25FL064P",      0x010216, 0x4d00,    64 * 1024,   128,                    0},
76         {"S25FL128S_64K",  0x012018, 0x4d01,    64 * 1024,   256,                    0},
77         {"S25FL256S_64K",  0x010219, 0x4d01,    64 * 1024,   512,                    0},
78         {"S25FL512S_64K",  0x010220, 0x4d01,    64 * 1024,  1024,                    0},
79 #endif
80 #ifdef CONFIG_SPI_FLASH_STMICRO         /* STMICRO */
81         {"M25P10",         0x202011, 0x0,       32 * 1024,     4,                    0},
82         {"M25P20",         0x202012, 0x0,       64 * 1024,     4,                    0},
83         {"M25P40",         0x202013, 0x0,       64 * 1024,     8,                    0},
84         {"M25P80",         0x202014, 0x0,       64 * 1024,    16,                    0},
85         {"M25P16",         0x202015, 0x0,       64 * 1024,    32,                    0},
86         {"M25P32",         0x202016, 0x0,       64 * 1024,    64,                    0},
87         {"M25P64",         0x202017, 0x0,       64 * 1024,   128,                    0},
88         {"M25P128",        0x202018, 0x0,      256 * 1024,    64,                    0},
89         {"N25Q32",         0x20ba16, 0x0,       64 * 1024,    64,              SECT_4K},
90         {"N25Q32A",        0x20bb16, 0x0,       64 * 1024,    64,              SECT_4K},
91         {"N25Q64",         0x20ba17, 0x0,       64 * 1024,   128,              SECT_4K},
92         {"N25Q64A",        0x20bb17, 0x0,       64 * 1024,   128,              SECT_4K},
93         {"N25Q128",        0x20ba18, 0x0,       64 * 1024,   256,              SECT_4K},
94         {"N25Q128A",       0x20bb18, 0x0,       64 * 1024,   256,              SECT_4K},
95         {"N25Q256",        0x20ba19, 0x0,       64 * 1024,   512,              SECT_4K},
96         {"N25Q256A",       0x20bb19, 0x0,       64 * 1024,   512,              SECT_4K},
97         {"N25Q512",        0x20ba20, 0x0,       64 * 1024,  1024,      E_FSR | SECT_4K},
98         {"N25Q512A",       0x20bb20, 0x0,       64 * 1024,  1024,      E_FSR | SECT_4K},
99         {"N25Q1024",       0x20ba21, 0x0,       64 * 1024,  2048,      E_FSR | SECT_4K},
100         {"N25Q1024A",      0x20bb21, 0x0,       64 * 1024,  2048,      E_FSR | SECT_4K},
101 #endif
102 #ifdef CONFIG_SPI_FLASH_SST             /* SST */
103         {"SST25VF040B",    0xbf258d, 0x0,       64 * 1024,     8,     SECT_4K | SST_WP},
104         {"SST25VF080B",    0xbf258e, 0x0,       64 * 1024,    16,     SECT_4K | SST_WP},
105         {"SST25VF016B",    0xbf2541, 0x0,       64 * 1024,    32,     SECT_4K | SST_WP},
106         {"SST25VF032B",    0xbf254a, 0x0,       64 * 1024,    64,     SECT_4K | SST_WP},
107         {"SST25VF064C",    0xbf254b, 0x0,       64 * 1024,   128,              SECT_4K},
108         {"SST25WF512",     0xbf2501, 0x0,       64 * 1024,     1,     SECT_4K | SST_WP},
109         {"SST25WF010",     0xbf2502, 0x0,       64 * 1024,     2,     SECT_4K | SST_WP},
110         {"SST25WF020",     0xbf2503, 0x0,       64 * 1024,     4,     SECT_4K | SST_WP},
111         {"SST25WF040",     0xbf2504, 0x0,       64 * 1024,     8,     SECT_4K | SST_WP},
112         {"SST25WF080",     0xbf2505, 0x0,       64 * 1024,    16,     SECT_4K | SST_WP},
113 #endif
114 #ifdef CONFIG_SPI_FLASH_WINBOND         /* WINBOND */
115         {"W25P80",         0xef2014, 0x0,       64 * 1024,    16,                   0},
116         {"W25P16",         0xef2015, 0x0,       64 * 1024,    32,                   0},
117         {"W25P32",         0xef2016, 0x0,       64 * 1024,    64,                   0},
118         {"W25X40",         0xef3013, 0x0,       64 * 1024,     8,             SECT_4K},
119         {"W25X16",         0xef3015, 0x0,       64 * 1024,    32,             SECT_4K},
120         {"W25X32",         0xef3016, 0x0,       64 * 1024,    64,             SECT_4K},
121         {"W25X64",         0xef3017, 0x0,       64 * 1024,   128,             SECT_4K},
122         {"W25Q80BL",       0xef4014, 0x0,       64 * 1024,    16,             SECT_4K},
123         {"W25Q16CL",       0xef4015, 0x0,       64 * 1024,    32,             SECT_4K},
124         {"W25Q32BV",       0xef4016, 0x0,       64 * 1024,    64,             SECT_4K},
125         {"W25Q64CV",       0xef4017, 0x0,       64 * 1024,   128,             SECT_4K},
126         {"W25Q128BV",      0xef4018, 0x0,       64 * 1024,   256,             SECT_4K},
127         {"W25Q256",        0xef4019, 0x0,       64 * 1024,   512,             SECT_4K},
128         {"W25Q80BW",       0xef5014, 0x0,       64 * 1024,    16,             SECT_4K},
129         {"W25Q16DW",       0xef6015, 0x0,       64 * 1024,    32,             SECT_4K},
130         {"W25Q32DW",       0xef6016, 0x0,       64 * 1024,    64,             SECT_4K},
131         {"W25Q64DW",       0xef6017, 0x0,       64 * 1024,   128,             SECT_4K},
132         {"W25Q128FW",      0xef6018, 0x0,       64 * 1024,   256,             SECT_4K},
133 #endif
134         /*
135          * Note:
136          * Below paired flash devices has similar spi_flash_params params.
137          * (S25FL129P_64K, S25FL128S_64K)
138          * (W25Q80BL, W25Q80BV)
139          * (W25Q16CL, W25Q16DV)
140          * (W25Q32BV, W25Q32FV_SPI)
141          * (W25Q64CV, W25Q64FV_SPI)
142          * (W25Q128BV, W25Q128FV_SPI)
143          * (W25Q32DW, W25Q32FV_QPI)
144          * (W25Q64DW, W25Q64FV_QPI)
145          * (W25Q128FW, W25Q128FV_QPI)
146          */
147 };
148
149 struct spi_flash *spi_flash_validate_ids(struct spi_slave *spi, u8 *idcode)
150 {
151         const struct spi_flash_params *params;
152         struct spi_flash *flash;
153         int i;
154         u16 jedec = idcode[1] << 8 | idcode[2];
155         u16 ext_jedec = idcode[3] << 8 | idcode[4];
156
157         /* Get the flash id (jedec = manuf_id + dev_id, ext_jedec) */
158         for (i = 0; i < ARRAY_SIZE(spi_flash_params_table); i++) {
159                 params = &spi_flash_params_table[i];
160                 if ((params->jedec >> 16) == idcode[0]) {
161                         if ((params->jedec & 0xFFFF) == jedec) {
162                                 if (params->ext_jedec == 0)
163                                         break;
164                                 else if (params->ext_jedec == ext_jedec)
165                                         break;
166                         }
167                 }
168         }
169
170         if (i == ARRAY_SIZE(spi_flash_params_table)) {
171                 printf("SF: Unsupported flash IDs: ");
172                 printf("manuf %02x, jedec %04x, ext_jedec %04x\n",
173                        idcode[0], jedec, ext_jedec);
174                 return NULL;
175         }
176
177         flash = malloc(sizeof(*flash));
178         if (!flash) {
179                 debug("SF: Failed to allocate spi_flash\n");
180                 return NULL;
181         }
182         memset(flash, '\0', sizeof(*flash));
183
184         flash->spi = spi;
185         flash->name = params->name;
186
187         /* Assign spi_flash ops */
188         flash->write = spi_flash_cmd_write_multi;
189 #ifdef CONFIG_SPI_FLASH_SST
190         if (params->flags & SST_WP)
191                 flash->write = sst_write_wp;
192 #endif
193         flash->erase = spi_flash_cmd_erase;
194         flash->read = spi_flash_cmd_read_fast;
195
196         /* Compute the flash size */
197         flash->page_size = 256;
198         flash->sector_size = params->sector_size;
199         flash->size = flash->sector_size * params->nr_sectors;
200
201         /* Compute erase sector and command */
202         if (params->flags & SECT_4K) {
203                 flash->erase_cmd = CMD_ERASE_4K;
204                 flash->erase_size = 4096;
205         } else if (params->flags & SECT_32K) {
206                 flash->erase_cmd = CMD_ERASE_32K;
207                 flash->erase_size = 32768;
208         } else {
209                 flash->erase_cmd = CMD_ERASE_64K;
210                 flash->erase_size = flash->sector_size;
211         }
212
213         /* Poll cmd seclection */
214         flash->poll_cmd = CMD_READ_STATUS;
215 #ifdef CONFIG_SPI_FLASH_STMICRO
216         if (params->flags & E_FSR)
217                 flash->poll_cmd = CMD_FLAG_STATUS;
218 #endif
219
220 #ifdef CONFIG_SPI_FLASH_BAR
221         /* Configure the BAR - discover bank cmds and read current bank  */
222         u8 curr_bank = 0;
223         if (flash->size > SPI_FLASH_16MB_BOUN) {
224                 flash->bank_read_cmd = (idcode[0] == 0x01) ?
225                                         CMD_BANKADDR_BRRD : CMD_EXTNADDR_RDEAR;
226                 flash->bank_write_cmd = (idcode[0] == 0x01) ?
227                                         CMD_BANKADDR_BRWR : CMD_EXTNADDR_WREAR;
228
229                 if (spi_flash_read_common(flash, &flash->bank_read_cmd, 1,
230                                           &curr_bank, 1)) {
231                         debug("SF: fail to read bank addr register\n");
232                         return NULL;
233                 }
234                 flash->bank_curr = curr_bank;
235         } else {
236                 flash->bank_curr = curr_bank;
237         }
238 #endif
239
240         /* Flash powers up read-only, so clear BP# bits */
241 #if defined(CONFIG_SPI_FLASH_ATMEL) || \
242         defined(CONFIG_SPI_FLASH_MACRONIX) || \
243         defined(CONFIG_SPI_FLASH_SST)
244                 spi_flash_cmd_write_status(flash, 0);
245 #endif
246
247         return flash;
248 }
249
250 #ifdef CONFIG_OF_CONTROL
251 int spi_flash_decode_fdt(const void *blob, struct spi_flash *flash)
252 {
253         fdt_addr_t addr;
254         fdt_size_t size;
255         int node;
256
257         /* If there is no node, do nothing */
258         node = fdtdec_next_compatible(blob, 0, COMPAT_GENERIC_SPI_FLASH);
259         if (node < 0)
260                 return 0;
261
262         addr = fdtdec_get_addr_size(blob, node, "memory-map", &size);
263         if (addr == FDT_ADDR_T_NONE) {
264                 debug("%s: Cannot decode address\n", __func__);
265                 return 0;
266         }
267
268         if (flash->size != size) {
269                 debug("%s: Memory map must cover entire device\n", __func__);
270                 return -1;
271         }
272         flash->memory_map = (void *)addr;
273
274         return 0;
275 }
276 #endif /* CONFIG_OF_CONTROL */
277
278 struct spi_flash *spi_flash_probe(unsigned int bus, unsigned int cs,
279                 unsigned int max_hz, unsigned int spi_mode)
280 {
281         struct spi_slave *spi;
282         struct spi_flash *flash = NULL;
283         u8 idcode[5];
284         int ret;
285
286         /* Setup spi_slave */
287         spi = spi_setup_slave(bus, cs, max_hz, spi_mode);
288         if (!spi) {
289                 printf("SF: Failed to set up slave\n");
290                 return NULL;
291         }
292
293         /* Claim spi bus */
294         ret = spi_claim_bus(spi);
295         if (ret) {
296                 debug("SF: Failed to claim SPI bus: %d\n", ret);
297                 goto err_claim_bus;
298         }
299
300         /* Read the ID codes */
301         ret = spi_flash_cmd(spi, CMD_READ_ID, idcode, sizeof(idcode));
302         if (ret) {
303                 printf("SF: Failed to get idcodes\n");
304                 goto err_read_id;
305         }
306
307 #ifdef DEBUG
308         printf("SF: Got idcodes\n");
309         print_buffer(0, idcode, 1, sizeof(idcode), 0);
310 #endif
311
312         /* Validate ID's from flash dev table */
313         flash = spi_flash_validate_ids(spi, idcode);
314         if (!flash)
315                 goto err_read_id;
316
317 #ifdef CONFIG_OF_CONTROL
318         if (spi_flash_decode_fdt(gd->fdt_blob, flash)) {
319                 debug("SF: FDT decode error\n");
320                 goto err_read_id;
321         }
322 #endif
323 #ifndef CONFIG_SPL_BUILD
324         printf("SF: Detected %s with page size ", flash->name);
325         print_size(flash->sector_size, ", total ");
326         print_size(flash->size, "");
327         if (flash->memory_map)
328                 printf(", mapped at %p", flash->memory_map);
329         puts("\n");
330 #endif
331 #ifndef CONFIG_SPI_FLASH_BAR
332         if (flash->size > SPI_FLASH_16MB_BOUN) {
333                 puts("SF: Warning - Only lower 16MiB accessible,");
334                 puts(" Full access #define CONFIG_SPI_FLASH_BAR\n");
335         }
336 #endif
337
338         /* Release spi bus */
339         spi_release_bus(spi);
340
341         return flash;
342
343 err_read_id:
344         spi_release_bus(spi);
345 err_claim_bus:
346         spi_free_slave(spi);
347         return NULL;
348 }
349
350 void spi_flash_free(struct spi_flash *flash)
351 {
352         spi_free_slave(flash->spi);
353         free(flash);
354 }