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	Compiling drivers/mtd/spi/sandbox.c fails when compiled with
CONFIG_LOG=n:
In file included from include/common.h:20,
                 from drivers/mtd/spi/sandbox.c:13:
drivers/mtd/spi/sandbox.c:295:15: error: format ‘%s’ expects argument of
type ‘char *’, but argument 7 has type ‘int’ [-Werror=format=]
  295 |   log_content(" cmd: transition to %s state\n",
      |               ^~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
include/linux/printk.h:37:21: note: in definition of macro ‘pr_fmt’
   37 | #define pr_fmt(fmt) fmt
      |                     ^~~
include/log.h:128:30: note: in expansion of macro ‘log_nop’
  128 | #define log_content(_fmt...) log_nop(LOG_CATEGORY, \
      |                              ^~~~~~~
drivers/mtd/spi/sandbox.c:295:3: note: in expansion of macro
‘log_content’
  295 |   log_content(" cmd: transition to %s state\n",
      |   ^~~~~~~~~~~
drivers/mtd/spi/sandbox.c:295:37: note: format string is defined here
  295 |   log_content(" cmd: transition to %s state\n",
      |                                    ~^
      |                                     |
      |                                     char *
      |                                    %d
Supply function sandbox_sf_state_name() independent of CONFIG_LOG.
Fixes: c3aed5db591e ("sandbox: spi: Add more logging")
Signed-off-by: Heinrich Schuchardt <xypron.glpk@gmx.de>
Reviewed-by: Simon Glass <sjg@chromium.org>
		
	
			
		
			
				
	
	
		
			607 lines
		
	
	
		
			15 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			607 lines
		
	
	
		
			15 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
| /*
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|  * Simulate a SPI flash
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|  *
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|  * Copyright (c) 2011-2013 The Chromium OS Authors.
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|  * See file CREDITS for list of people who contributed to this
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|  * project.
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|  *
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|  * Licensed under the GPL-2 or later.
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|  */
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| 
 | |
| #define LOG_CATEGORY UCLASS_SPI_FLASH
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| 
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| #include <common.h>
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| #include <dm.h>
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| #include <log.h>
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| #include <malloc.h>
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| #include <spi.h>
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| #include <os.h>
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| 
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| #include <spi_flash.h>
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| #include "sf_internal.h"
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| 
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| #include <asm/getopt.h>
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| #include <asm/spi.h>
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| #include <asm/state.h>
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| #include <dm/device-internal.h>
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| #include <dm/lists.h>
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| #include <dm/uclass-internal.h>
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| 
 | |
| /*
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|  * The different states that our SPI flash transitions between.
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|  * We need to keep track of this across multiple xfer calls since
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|  * the SPI bus could possibly call down into us multiple times.
 | |
|  */
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| enum sandbox_sf_state {
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| 	SF_CMD,   /* default state -- we're awaiting a command */
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| 	SF_ID,    /* read the flash's (jedec) ID code */
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| 	SF_ADDR,  /* processing the offset in the flash to read/etc... */
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| 	SF_READ,  /* reading data from the flash */
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| 	SF_WRITE, /* writing data to the flash, i.e. page programming */
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| 	SF_ERASE, /* erase the flash */
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| 	SF_READ_STATUS, /* read the flash's status register */
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| 	SF_READ_STATUS1, /* read the flash's status register upper 8 bits*/
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| 	SF_WRITE_STATUS, /* write the flash's status register */
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| };
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| 
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| static const char *sandbox_sf_state_name(enum sandbox_sf_state state)
 | |
| {
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| 	static const char * const states[] = {
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| 		"CMD", "ID", "ADDR", "READ", "WRITE", "ERASE", "READ_STATUS",
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| 		"READ_STATUS1", "WRITE_STATUS",
 | |
| 	};
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| 	return states[state];
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| }
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| 
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| /* Bits for the status register */
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| #define STAT_WIP	(1 << 0)
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| #define STAT_WEL	(1 << 1)
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| #define STAT_BP_SHIFT	2
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| #define STAT_BP_MASK	(7 << STAT_BP_SHIFT)
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| 
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| /* Assume all SPI flashes have 3 byte addresses since they do atm */
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| #define SF_ADDR_LEN	3
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| 
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| #define IDCODE_LEN 3
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| 
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| /* Used to quickly bulk erase backing store */
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| static u8 sandbox_sf_0xff[0x1000];
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| 
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| /* Internal state data for each SPI flash */
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| struct sandbox_spi_flash {
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| 	unsigned int cs;	/* Chip select we are attached to */
 | |
| 	/*
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| 	 * As we receive data over the SPI bus, our flash transitions
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| 	 * between states.  For example, we start off in the SF_CMD
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| 	 * state where the first byte tells us what operation to perform
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| 	 * (such as read or write the flash).  But the operation itself
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| 	 * can go through a few states such as first reading in the
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| 	 * offset in the flash to perform the requested operation.
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| 	 * Thus "state" stores the exact state that our machine is in
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| 	 * while "cmd" stores the overall command we're processing.
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| 	 */
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| 	enum sandbox_sf_state state;
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| 	uint cmd;
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| 	/* Erase size of current erase command */
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| 	uint erase_size;
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| 	/* Current position in the flash; used when reading/writing/etc... */
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| 	uint off;
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| 	/* How many address bytes we've consumed */
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| 	uint addr_bytes, pad_addr_bytes;
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| 	/* The current flash status (see STAT_XXX defines above) */
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| 	u16 status;
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| 	/* Data describing the flash we're emulating */
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| 	const struct flash_info *data;
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| 	/* The file on disk to serv up data from */
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| 	int fd;
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| };
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| 
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| struct sandbox_spi_flash_plat_data {
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| 	const char *filename;
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| 	const char *device_name;
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| 	int bus;
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| 	int cs;
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| };
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| 
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| void sandbox_sf_set_block_protect(struct udevice *dev, int bp_mask)
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| {
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| 	struct sandbox_spi_flash *sbsf = dev_get_priv(dev);
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| 
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| 	sbsf->status &= ~STAT_BP_MASK;
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| 	sbsf->status |= bp_mask << STAT_BP_SHIFT;
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| }
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| 
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| /**
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|  * This is a very strange probe function. If it has platform data (which may
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|  * have come from the device tree) then this function gets the filename and
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|  * device type from there.
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|  */
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| static int sandbox_sf_probe(struct udevice *dev)
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| {
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| 	/* spec = idcode:file */
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| 	struct sandbox_spi_flash *sbsf = dev_get_priv(dev);
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| 	size_t len, idname_len;
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| 	const struct flash_info *data;
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| 	struct sandbox_spi_flash_plat_data *pdata = dev_get_platdata(dev);
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| 	struct sandbox_state *state = state_get_current();
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| 	struct dm_spi_slave_platdata *slave_plat;
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| 	struct udevice *bus = dev->parent;
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| 	const char *spec = NULL;
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| 	struct udevice *emul;
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| 	int ret = 0;
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| 	int cs = -1;
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| 
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| 	debug("%s: bus %d, looking for emul=%p: ", __func__, bus->seq, dev);
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| 	ret = sandbox_spi_get_emul(state, bus, dev, &emul);
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| 	if (ret) {
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| 		printf("Error: Unknown chip select for device '%s'\n",
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| 			dev->name);
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| 		return ret;
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| 	}
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| 	slave_plat = dev_get_parent_platdata(dev);
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| 	cs = slave_plat->cs;
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| 	debug("found at cs %d\n", cs);
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| 
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| 	if (!pdata->filename) {
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| 		printf("Error: No filename available\n");
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| 		return -EINVAL;
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| 	}
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| 	spec = strchr(pdata->device_name, ',');
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| 	if (spec)
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| 		spec++;
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| 	else
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| 		spec = pdata->device_name;
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| 	idname_len = strlen(spec);
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| 	debug("%s: device='%s'\n", __func__, spec);
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| 
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| 	for (data = spi_nor_ids; data->name; data++) {
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| 		len = strlen(data->name);
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| 		if (idname_len != len)
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| 			continue;
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| 		if (!strncasecmp(spec, data->name, len))
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| 			break;
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| 	}
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| 	if (!data->name) {
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| 		printf("%s: unknown flash '%*s'\n", __func__, (int)idname_len,
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| 		       spec);
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| 		ret = -EINVAL;
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| 		goto error;
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| 	}
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| 
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| 	if (sandbox_sf_0xff[0] == 0x00)
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| 		memset(sandbox_sf_0xff, 0xff, sizeof(sandbox_sf_0xff));
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| 
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| 	sbsf->fd = os_open(pdata->filename, 02);
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| 	if (sbsf->fd == -1) {
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| 		printf("%s: unable to open file '%s'\n", __func__,
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| 		       pdata->filename);
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| 		ret = -EIO;
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| 		goto error;
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| 	}
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| 
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| 	sbsf->data = data;
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| 	sbsf->cs = cs;
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| 
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| 	return 0;
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| 
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|  error:
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| 	debug("%s: Got error %d\n", __func__, ret);
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| 	return ret;
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| }
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| 
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| static int sandbox_sf_remove(struct udevice *dev)
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| {
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| 	struct sandbox_spi_flash *sbsf = dev_get_priv(dev);
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| 
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| 	os_close(sbsf->fd);
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| 
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| 	return 0;
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| }
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| 
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| static void sandbox_sf_cs_activate(struct udevice *dev)
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| {
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| 	struct sandbox_spi_flash *sbsf = dev_get_priv(dev);
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| 
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| 	log_content("sandbox_sf: CS activated; state is fresh!\n");
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| 
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| 	/* CS is asserted, so reset state */
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| 	sbsf->off = 0;
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| 	sbsf->addr_bytes = 0;
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| 	sbsf->pad_addr_bytes = 0;
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| 	sbsf->state = SF_CMD;
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| 	sbsf->cmd = SF_CMD;
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| }
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| 
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| static void sandbox_sf_cs_deactivate(struct udevice *dev)
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| {
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| 	log_content("sandbox_sf: CS deactivated; cmd done processing!\n");
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| }
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| 
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| /*
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|  * There are times when the data lines are allowed to tristate.  What
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|  * is actually sensed on the line depends on the hardware.  It could
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|  * always be 0xFF/0x00 (if there are pull ups/downs), or things could
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|  * float and so we'd get garbage back.  This func encapsulates that
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|  * scenario so we can worry about the details here.
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|  */
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| static void sandbox_spi_tristate(u8 *buf, uint len)
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| {
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| 	/* XXX: make this into a user config option ? */
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| 	memset(buf, 0xff, len);
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| }
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| 
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| /* Figure out what command this stream is telling us to do */
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| static int sandbox_sf_process_cmd(struct sandbox_spi_flash *sbsf, const u8 *rx,
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| 				  u8 *tx)
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| {
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| 	enum sandbox_sf_state oldstate = sbsf->state;
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| 
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| 	/* We need to output a byte for the cmd byte we just ate */
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| 	if (tx)
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| 		sandbox_spi_tristate(tx, 1);
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| 
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| 	sbsf->cmd = rx[0];
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| 	switch (sbsf->cmd) {
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| 	case SPINOR_OP_RDID:
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| 		sbsf->state = SF_ID;
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| 		sbsf->cmd = SF_ID;
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| 		break;
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| 	case SPINOR_OP_READ_FAST:
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| 		sbsf->pad_addr_bytes = 1;
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| 	case SPINOR_OP_READ:
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| 	case SPINOR_OP_PP:
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| 		sbsf->state = SF_ADDR;
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| 		break;
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| 	case SPINOR_OP_WRDI:
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| 		debug(" write disabled\n");
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| 		sbsf->status &= ~STAT_WEL;
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| 		break;
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| 	case SPINOR_OP_RDSR:
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| 		sbsf->state = SF_READ_STATUS;
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| 		break;
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| 	case SPINOR_OP_RDSR2:
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| 		sbsf->state = SF_READ_STATUS1;
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| 		break;
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| 	case SPINOR_OP_WREN:
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| 		debug(" write enabled\n");
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| 		sbsf->status |= STAT_WEL;
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| 		break;
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| 	case SPINOR_OP_WRSR:
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| 		sbsf->state = SF_WRITE_STATUS;
 | |
| 		break;
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| 	default: {
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| 		int flags = sbsf->data->flags;
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| 
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| 		/* we only support erase here */
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| 		if (sbsf->cmd == SPINOR_OP_CHIP_ERASE) {
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| 			sbsf->erase_size = sbsf->data->sector_size *
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| 				sbsf->data->n_sectors;
 | |
| 		} else if (sbsf->cmd == SPINOR_OP_BE_4K && (flags & SECT_4K)) {
 | |
| 			sbsf->erase_size = 4 << 10;
 | |
| 		} else if (sbsf->cmd == SPINOR_OP_SE && !(flags & SECT_4K)) {
 | |
| 			sbsf->erase_size = 64 << 10;
 | |
| 		} else {
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| 			debug(" cmd unknown: %#x\n", sbsf->cmd);
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| 			return -EIO;
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| 		}
 | |
| 		sbsf->state = SF_ADDR;
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| 		break;
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| 	}
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| 	}
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| 
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| 	if (oldstate != sbsf->state)
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| 		log_content(" cmd: transition to %s state\n",
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| 			    sandbox_sf_state_name(sbsf->state));
 | |
| 
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| 	return 0;
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| }
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| 
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| int sandbox_erase_part(struct sandbox_spi_flash *sbsf, int size)
 | |
| {
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| 	int todo;
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| 	int ret;
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| 
 | |
| 	while (size > 0) {
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| 		todo = min(size, (int)sizeof(sandbox_sf_0xff));
 | |
| 		ret = os_write(sbsf->fd, sandbox_sf_0xff, todo);
 | |
| 		if (ret != todo)
 | |
| 			return ret;
 | |
| 		size -= todo;
 | |
| 	}
 | |
| 
 | |
| 	return 0;
 | |
| }
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| 
 | |
| static int sandbox_sf_xfer(struct udevice *dev, unsigned int bitlen,
 | |
| 			   const void *rxp, void *txp, unsigned long flags)
 | |
| {
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| 	struct sandbox_spi_flash *sbsf = dev_get_priv(dev);
 | |
| 	const uint8_t *rx = rxp;
 | |
| 	uint8_t *tx = txp;
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| 	uint cnt, pos = 0;
 | |
| 	int bytes = bitlen / 8;
 | |
| 	int ret;
 | |
| 
 | |
| 	log_content("sandbox_sf: state:%x(%s) bytes:%u\n", sbsf->state,
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| 		    sandbox_sf_state_name(sbsf->state), bytes);
 | |
| 
 | |
| 	if ((flags & SPI_XFER_BEGIN))
 | |
| 		sandbox_sf_cs_activate(dev);
 | |
| 
 | |
| 	if (sbsf->state == SF_CMD) {
 | |
| 		/* Figure out the initial state */
 | |
| 		ret = sandbox_sf_process_cmd(sbsf, rx, tx);
 | |
| 		if (ret)
 | |
| 			return ret;
 | |
| 		++pos;
 | |
| 	}
 | |
| 
 | |
| 	/* Process the remaining data */
 | |
| 	while (pos < bytes) {
 | |
| 		switch (sbsf->state) {
 | |
| 		case SF_ID: {
 | |
| 			u8 id;
 | |
| 
 | |
| 			log_content(" id: off:%u tx:", sbsf->off);
 | |
| 			if (sbsf->off < IDCODE_LEN) {
 | |
| 				/* Extract correct byte from ID 0x00aabbcc */
 | |
| 				id = ((JEDEC_MFR(sbsf->data) << 16) |
 | |
| 					JEDEC_ID(sbsf->data)) >>
 | |
| 					(8 * (IDCODE_LEN - 1 - sbsf->off));
 | |
| 			} else {
 | |
| 				id = 0;
 | |
| 			}
 | |
| 			log_content("%d %02x\n", sbsf->off, id);
 | |
| 			tx[pos++] = id;
 | |
| 			++sbsf->off;
 | |
| 			break;
 | |
| 		}
 | |
| 		case SF_ADDR:
 | |
| 			log_content(" addr: bytes:%u rx:%02x ",
 | |
| 				    sbsf->addr_bytes, rx[pos]);
 | |
| 
 | |
| 			if (sbsf->addr_bytes++ < SF_ADDR_LEN)
 | |
| 				sbsf->off = (sbsf->off << 8) | rx[pos];
 | |
| 			log_content("addr:%06x\n", sbsf->off);
 | |
| 
 | |
| 			if (tx)
 | |
| 				sandbox_spi_tristate(&tx[pos], 1);
 | |
| 			pos++;
 | |
| 
 | |
| 			/* See if we're done processing */
 | |
| 			if (sbsf->addr_bytes <
 | |
| 					SF_ADDR_LEN + sbsf->pad_addr_bytes)
 | |
| 				break;
 | |
| 
 | |
| 			/* Next state! */
 | |
| 			if (os_lseek(sbsf->fd, sbsf->off, OS_SEEK_SET) < 0) {
 | |
| 				puts("sandbox_sf: os_lseek() failed");
 | |
| 				return -EIO;
 | |
| 			}
 | |
| 			switch (sbsf->cmd) {
 | |
| 			case SPINOR_OP_READ_FAST:
 | |
| 			case SPINOR_OP_READ:
 | |
| 				sbsf->state = SF_READ;
 | |
| 				break;
 | |
| 			case SPINOR_OP_PP:
 | |
| 				sbsf->state = SF_WRITE;
 | |
| 				break;
 | |
| 			default:
 | |
| 				/* assume erase state ... */
 | |
| 				sbsf->state = SF_ERASE;
 | |
| 				goto case_sf_erase;
 | |
| 			}
 | |
| 			log_content(" cmd: transition to %s state\n",
 | |
| 				    sandbox_sf_state_name(sbsf->state));
 | |
| 			break;
 | |
| 		case SF_READ:
 | |
| 			/*
 | |
| 			 * XXX: need to handle exotic behavior:
 | |
| 			 *      - reading past end of device
 | |
| 			 */
 | |
| 
 | |
| 			cnt = bytes - pos;
 | |
| 			log_content(" tx: read(%u)\n", cnt);
 | |
| 			assert(tx);
 | |
| 			ret = os_read(sbsf->fd, tx + pos, cnt);
 | |
| 			if (ret < 0) {
 | |
| 				puts("sandbox_sf: os_read() failed\n");
 | |
| 				return -EIO;
 | |
| 			}
 | |
| 			pos += ret;
 | |
| 			break;
 | |
| 		case SF_READ_STATUS:
 | |
| 			log_content(" read status: %#x\n", sbsf->status);
 | |
| 			cnt = bytes - pos;
 | |
| 			memset(tx + pos, sbsf->status, cnt);
 | |
| 			pos += cnt;
 | |
| 			break;
 | |
| 		case SF_READ_STATUS1:
 | |
| 			log_content(" read status: %#x\n", sbsf->status);
 | |
| 			cnt = bytes - pos;
 | |
| 			memset(tx + pos, sbsf->status >> 8, cnt);
 | |
| 			pos += cnt;
 | |
| 			break;
 | |
| 		case SF_WRITE_STATUS:
 | |
| 			log_content(" write status: %#x (ignored)\n", rx[pos]);
 | |
| 			pos = bytes;
 | |
| 			break;
 | |
| 		case SF_WRITE:
 | |
| 			/*
 | |
| 			 * XXX: need to handle exotic behavior:
 | |
| 			 *      - unaligned addresses
 | |
| 			 *      - more than a page (256) worth of data
 | |
| 			 *      - reading past end of device
 | |
| 			 */
 | |
| 			if (!(sbsf->status & STAT_WEL)) {
 | |
| 				puts("sandbox_sf: write enable not set before write\n");
 | |
| 				goto done;
 | |
| 			}
 | |
| 
 | |
| 			cnt = bytes - pos;
 | |
| 			log_content(" rx: write(%u)\n", cnt);
 | |
| 			if (tx)
 | |
| 				sandbox_spi_tristate(&tx[pos], cnt);
 | |
| 			ret = os_write(sbsf->fd, rx + pos, cnt);
 | |
| 			if (ret < 0) {
 | |
| 				puts("sandbox_spi: os_write() failed\n");
 | |
| 				return -EIO;
 | |
| 			}
 | |
| 			pos += ret;
 | |
| 			sbsf->status &= ~STAT_WEL;
 | |
| 			break;
 | |
| 		case SF_ERASE:
 | |
|  case_sf_erase: {
 | |
| 			if (!(sbsf->status & STAT_WEL)) {
 | |
| 				puts("sandbox_sf: write enable not set before erase\n");
 | |
| 				goto done;
 | |
| 			}
 | |
| 
 | |
| 			/* verify address is aligned */
 | |
| 			if (sbsf->off & (sbsf->erase_size - 1)) {
 | |
| 				log_content(" sector erase: cmd:%#x needs align:%#x, but we got %#x\n",
 | |
| 					    sbsf->cmd, sbsf->erase_size,
 | |
| 					    sbsf->off);
 | |
| 				sbsf->status &= ~STAT_WEL;
 | |
| 				goto done;
 | |
| 			}
 | |
| 
 | |
| 			log_content(" sector erase addr: %u, size: %u\n",
 | |
| 				    sbsf->off, sbsf->erase_size);
 | |
| 
 | |
| 			cnt = bytes - pos;
 | |
| 			if (tx)
 | |
| 				sandbox_spi_tristate(&tx[pos], cnt);
 | |
| 			pos += cnt;
 | |
| 
 | |
| 			/*
 | |
| 			 * TODO(vapier@gentoo.org): latch WIP in status, and
 | |
| 			 * delay before clearing it ?
 | |
| 			 */
 | |
| 			ret = sandbox_erase_part(sbsf, sbsf->erase_size);
 | |
| 			sbsf->status &= ~STAT_WEL;
 | |
| 			if (ret) {
 | |
| 				log_content("sandbox_sf: Erase failed\n");
 | |
| 				goto done;
 | |
| 			}
 | |
| 			goto done;
 | |
| 		}
 | |
| 		default:
 | |
| 			log_content(" ??? no idea what to do ???\n");
 | |
| 			goto done;
 | |
| 		}
 | |
| 	}
 | |
| 
 | |
|  done:
 | |
| 	if (flags & SPI_XFER_END)
 | |
| 		sandbox_sf_cs_deactivate(dev);
 | |
| 	return pos == bytes ? 0 : -EIO;
 | |
| }
 | |
| 
 | |
| int sandbox_sf_ofdata_to_platdata(struct udevice *dev)
 | |
| {
 | |
| 	struct sandbox_spi_flash_plat_data *pdata = dev_get_platdata(dev);
 | |
| 
 | |
| 	pdata->filename = dev_read_string(dev, "sandbox,filename");
 | |
| 	pdata->device_name = dev_read_string(dev, "compatible");
 | |
| 	if (!pdata->filename || !pdata->device_name) {
 | |
| 		debug("%s: Missing properties, filename=%s, device_name=%s\n",
 | |
| 		      __func__, pdata->filename, pdata->device_name);
 | |
| 		return -EINVAL;
 | |
| 	}
 | |
| 
 | |
| 	return 0;
 | |
| }
 | |
| 
 | |
| static const struct dm_spi_emul_ops sandbox_sf_emul_ops = {
 | |
| 	.xfer          = sandbox_sf_xfer,
 | |
| };
 | |
| 
 | |
| #ifdef CONFIG_SPI_FLASH
 | |
| int sandbox_sf_bind_emul(struct sandbox_state *state, int busnum, int cs,
 | |
| 			 struct udevice *bus, ofnode node, const char *spec)
 | |
| {
 | |
| 	struct udevice *emul;
 | |
| 	char name[20], *str;
 | |
| 	struct driver *drv;
 | |
| 	int ret;
 | |
| 
 | |
| 	/* now the emulator */
 | |
| 	strncpy(name, spec, sizeof(name) - 6);
 | |
| 	name[sizeof(name) - 6] = '\0';
 | |
| 	strcat(name, "-emul");
 | |
| 	drv = lists_driver_lookup_name("sandbox_sf_emul");
 | |
| 	if (!drv) {
 | |
| 		puts("Cannot find sandbox_sf_emul driver\n");
 | |
| 		return -ENOENT;
 | |
| 	}
 | |
| 	str = strdup(name);
 | |
| 	if (!str)
 | |
| 		return -ENOMEM;
 | |
| 	ret = device_bind_ofnode(bus, drv, str, NULL, node, &emul);
 | |
| 	if (ret) {
 | |
| 		free(str);
 | |
| 		printf("Cannot create emul device for spec '%s' (err=%d)\n",
 | |
| 		       spec, ret);
 | |
| 		return ret;
 | |
| 	}
 | |
| 	state->spi[busnum][cs].emul = emul;
 | |
| 
 | |
| 	return 0;
 | |
| }
 | |
| 
 | |
| void sandbox_sf_unbind_emul(struct sandbox_state *state, int busnum, int cs)
 | |
| {
 | |
| 	struct udevice *dev;
 | |
| 
 | |
| 	dev = state->spi[busnum][cs].emul;
 | |
| 	device_remove(dev, DM_REMOVE_NORMAL);
 | |
| 	device_unbind(dev);
 | |
| 	state->spi[busnum][cs].emul = NULL;
 | |
| }
 | |
| 
 | |
| int sandbox_spi_get_emul(struct sandbox_state *state,
 | |
| 			 struct udevice *bus, struct udevice *slave,
 | |
| 			 struct udevice **emulp)
 | |
| {
 | |
| 	struct sandbox_spi_info *info;
 | |
| 	int busnum = bus->seq;
 | |
| 	int cs = spi_chip_select(slave);
 | |
| 	int ret;
 | |
| 
 | |
| 	info = &state->spi[busnum][cs];
 | |
| 	if (!info->emul) {
 | |
| 		/* Use the same device tree node as the SPI flash device */
 | |
| 		debug("%s: busnum=%u, cs=%u: binding SPI flash emulation: ",
 | |
| 		      __func__, busnum, cs);
 | |
| 		ret = sandbox_sf_bind_emul(state, busnum, cs, bus,
 | |
| 					   dev_ofnode(slave), slave->name);
 | |
| 		if (ret) {
 | |
| 			debug("failed (err=%d)\n", ret);
 | |
| 			return ret;
 | |
| 		}
 | |
| 		debug("OK\n");
 | |
| 	}
 | |
| 	*emulp = info->emul;
 | |
| 
 | |
| 	return 0;
 | |
| }
 | |
| #endif
 | |
| 
 | |
| static const struct udevice_id sandbox_sf_ids[] = {
 | |
| 	{ .compatible = "sandbox,spi-flash" },
 | |
| 	{ }
 | |
| };
 | |
| 
 | |
| U_BOOT_DRIVER(sandbox_sf_emul) = {
 | |
| 	.name		= "sandbox_sf_emul",
 | |
| 	.id		= UCLASS_SPI_EMUL,
 | |
| 	.of_match	= sandbox_sf_ids,
 | |
| 	.ofdata_to_platdata = sandbox_sf_ofdata_to_platdata,
 | |
| 	.probe		= sandbox_sf_probe,
 | |
| 	.remove		= sandbox_sf_remove,
 | |
| 	.priv_auto_alloc_size = sizeof(struct sandbox_spi_flash),
 | |
| 	.platdata_auto_alloc_size = sizeof(struct sandbox_spi_flash_plat_data),
 | |
| 	.ops		= &sandbox_sf_emul_ops,
 | |
| };
 |