mirror of
https://github.com/u-boot/u-boot.git
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77ba281c91
Marek Behún <kabel@kernel.org> says: This series contains improvements for the 'eeprom' command: - refactors - fixes - improvements - ability to use driver model EEPROMs (uclass UCLASS_I2C_EEPROM) - more flexible EEPROM layout support It should not cause any behavior change for any existing board. This series is a dependency for some DDR issue fixes for Turris Omnia. I will be sending that one separately. github PR link (with CI): https://github.com/u-boot/u-boot/pull/540 - there is a failure for test.py for sandbox sandbox_clang but it seems unrelated to these changes
578 lines
14 KiB
C
578 lines
14 KiB
C
// SPDX-License-Identifier: GPL-2.0+
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/*
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* (C) Copyright 2000, 2001
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* Wolfgang Denk, DENX Software Engineering, wd@denx.de.
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*/
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/*
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* Support for read and write access to EEPROM like memory devices. This
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* includes regular EEPROM as well as FRAM (ferroelectic nonvolaile RAM).
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* FRAM devices read and write data at bus speed. In particular, there is no
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* write delay. Also, there is no limit imposed on the number of bytes that can
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* be transferred with a single read or write.
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*
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* Use the following configuration options to ensure no unneeded performance
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* degradation (typical for EEPROM) is incured for FRAM memory:
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*
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* #define CONFIG_SYS_I2C_FRAM
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* Set CONFIG_SYS_EEPROM_PAGE_WRITE_DELAY_MS to 0
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*
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*/
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#include <config.h>
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#include <command.h>
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#include <dm.h>
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#include <eeprom.h>
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#include <i2c.h>
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#include <i2c_eeprom.h>
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#include <eeprom_layout.h>
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#include <vsprintf.h>
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#include <linux/delay.h>
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#ifndef I2C_RXTX_LEN
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#define I2C_RXTX_LEN 128
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#endif
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#define EEPROM_PAGE_SIZE (1 << CONFIG_SYS_EEPROM_PAGE_WRITE_BITS)
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#define EEPROM_PAGE_OFFSET(x) ((x) & (EEPROM_PAGE_SIZE - 1))
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#if CONFIG_IS_ENABLED(DM_I2C)
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static int eeprom_i2c_bus;
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#endif
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__weak int eeprom_write_enable(unsigned dev_addr, int state)
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{
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return 0;
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}
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void eeprom_init(int bus)
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{
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/* I2C EEPROM */
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#if CONFIG_IS_ENABLED(DM_I2C)
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eeprom_i2c_bus = bus;
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#elif CONFIG_IS_ENABLED(SYS_I2C_LEGACY)
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if (bus >= 0)
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i2c_set_bus_num(bus);
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i2c_init(CONFIG_SYS_I2C_SPEED, CONFIG_SYS_I2C_SLAVE);
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#endif
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}
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/*
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* for CONFIG_SYS_I2C_EEPROM_ADDR_LEN == 2 (16-bit EEPROM address) offset is
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* 0x000nxxxx for EEPROM address selectors at n, offset xxxx in EEPROM.
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*
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* for CONFIG_SYS_I2C_EEPROM_ADDR_LEN == 1 (8-bit EEPROM page address) offset is
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* 0x00000nxx for EEPROM address selectors and page number at n.
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*/
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static int eeprom_addr(unsigned dev_addr, unsigned offset, uchar *addr)
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{
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unsigned blk_off;
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int alen;
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blk_off = offset & 0xff; /* block offset */
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#if CONFIG_SYS_I2C_EEPROM_ADDR_LEN == 1
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addr[0] = offset >> 8; /* block number */
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addr[1] = blk_off; /* block offset */
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alen = 2;
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#else
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addr[0] = offset >> 16; /* block number */
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addr[1] = offset >> 8; /* upper address octet */
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addr[2] = blk_off; /* lower address octet */
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alen = 3;
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#endif /* CONFIG_SYS_I2C_EEPROM_ADDR_LEN */
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addr[0] |= dev_addr; /* insert device address */
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return alen;
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}
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static int eeprom_len(unsigned offset, unsigned end)
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{
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unsigned len = end - offset;
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/*
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* For a FRAM device there is no limit on the number of the
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* bytes that can be accessed with the single read or write
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* operation.
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*/
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#if !defined(CONFIG_SYS_I2C_FRAM)
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unsigned blk_off = offset & 0xff;
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unsigned maxlen = EEPROM_PAGE_SIZE - EEPROM_PAGE_OFFSET(blk_off);
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if (maxlen > I2C_RXTX_LEN)
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maxlen = I2C_RXTX_LEN;
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if (len > maxlen)
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len = maxlen;
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#endif
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return len;
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}
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static int eeprom_rw_block(unsigned offset, uchar *addr, unsigned alen,
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uchar *buffer, unsigned len, bool read)
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{
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int ret = 0;
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#if CONFIG_IS_ENABLED(DM_I2C)
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struct udevice *dev;
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ret = i2c_get_chip_for_busnum(eeprom_i2c_bus, addr[0],
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alen - 1, &dev);
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if (ret) {
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printf("%s: Cannot find udev for a bus %d\n", __func__,
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eeprom_i2c_bus);
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return CMD_RET_FAILURE;
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}
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if (read)
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ret = dm_i2c_read(dev, offset, buffer, len);
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else
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ret = dm_i2c_write(dev, offset, buffer, len);
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#else /* Non DM I2C support - will be removed */
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if (read)
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ret = i2c_read(addr[0], offset, alen - 1, buffer, len);
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else
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ret = i2c_write(addr[0], offset, alen - 1, buffer, len);
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#endif /* CONFIG_DM_I2C */
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if (ret)
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ret = CMD_RET_FAILURE;
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return ret;
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}
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static int eeprom_rw(unsigned dev_addr, unsigned offset, uchar *buffer,
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unsigned cnt, bool read)
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{
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unsigned end = offset + cnt;
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unsigned alen, len;
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int rcode = 0;
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uchar addr[3];
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#if !CONFIG_IS_ENABLED(DM_I2C) && defined(CONFIG_SYS_I2C_EEPROM_BUS)
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eeprom_init(CONFIG_SYS_I2C_EEPROM_BUS);
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#endif
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while (offset < end) {
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alen = eeprom_addr(dev_addr, offset, addr);
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len = eeprom_len(offset, end);
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rcode = eeprom_rw_block(offset, addr, alen, buffer, len, read);
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buffer += len;
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offset += len;
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#if CONFIG_SYS_EEPROM_PAGE_WRITE_DELAY_MS > 0
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if (!read)
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udelay(CONFIG_SYS_EEPROM_PAGE_WRITE_DELAY_MS * 1000);
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#endif
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}
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return rcode;
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}
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int eeprom_read(unsigned dev_addr, unsigned offset, uchar *buffer, unsigned cnt)
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{
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/*
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* Read data until done or would cross a page boundary.
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* We must write the address again when changing pages
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* because the next page may be in a different device.
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*/
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return eeprom_rw(dev_addr, offset, buffer, cnt, 1);
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}
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int eeprom_write(unsigned dev_addr, unsigned offset,
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uchar *buffer, unsigned cnt)
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{
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int ret;
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eeprom_write_enable(dev_addr, 1);
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/*
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* Write data until done or would cross a write page boundary.
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* We must write the address again when changing pages
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* because the address counter only increments within a page.
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*/
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ret = eeprom_rw(dev_addr, offset, buffer, cnt, 0);
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eeprom_write_enable(dev_addr, 0);
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return ret;
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}
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static long parse_numeric_param(char *str)
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{
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char *endptr;
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long value = simple_strtol(str, &endptr, 16);
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return (*endptr != '\0') ? -1 : value;
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}
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struct eeprom_dev_spec {
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#if CONFIG_IS_ENABLED(I2C_EEPROM)
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struct udevice *dev;
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#endif
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int i2c_bus;
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ulong i2c_addr;
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};
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static void eeprom_dev_spec_init(struct eeprom_dev_spec *dev)
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{
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#if CONFIG_IS_ENABLED(I2C_EEPROM)
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if (!dev->dev)
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#endif
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eeprom_init(dev->i2c_bus);
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}
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static int eeprom_dev_spec_read(struct eeprom_dev_spec *dev,
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unsigned offset, uchar *buffer, unsigned cnt)
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{
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#if CONFIG_IS_ENABLED(I2C_EEPROM)
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if (dev->dev)
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return i2c_eeprom_read(dev->dev, offset, buffer, cnt);
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#endif
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return eeprom_read(dev->i2c_addr, offset, buffer, cnt);
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}
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static int eeprom_dev_spec_write(struct eeprom_dev_spec *dev,
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unsigned offset, uchar *buffer, unsigned cnt)
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{
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#if CONFIG_IS_ENABLED(I2C_EEPROM)
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if (dev->dev)
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return i2c_eeprom_write(dev->dev, offset, buffer, cnt);
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#endif
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return eeprom_write(dev->i2c_addr, offset, buffer, cnt);
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}
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/**
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* parse_eeprom_dev_spec - parse the eeprom device specifier
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*
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* @dev: pointer to eeprom device specifier
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* @argc: count of command line arguments that can be used to parse
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* the device specifier
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* @argv: command line arguments left to parse
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*
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* @returns: number of arguments parsed or CMD_RET_USAGE if error
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*/
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static int parse_eeprom_dev_spec(struct eeprom_dev_spec *dev, int argc,
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char *const argv[])
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{
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#if CONFIG_IS_ENABLED(I2C_EEPROM)
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if (argc == 0) {
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if (!uclass_first_device_err(UCLASS_I2C_EEPROM, &dev->dev))
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return 0;
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}
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if (argc == 1) {
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if (!uclass_get_device_by_name(UCLASS_I2C_EEPROM, argv[0],
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&dev->dev))
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return 1;
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/*
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* If we could not find the device by name and the parameter is
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* not numeric (and so won't be handled later), fail.
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*/
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if (parse_numeric_param(argv[0]) == -1) {
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printf("Can't get eeprom device: %s\n", argv[0]);
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return CMD_RET_USAGE;
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}
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}
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#endif
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#ifdef CONFIG_SYS_I2C_EEPROM_ADDR
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if (argc == 0) {
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dev->i2c_bus = -1;
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dev->i2c_addr = CONFIG_SYS_I2C_EEPROM_ADDR;
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return 0;
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}
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#endif
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if (argc == 1) {
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dev->i2c_bus = -1;
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dev->i2c_addr = parse_numeric_param(argv[0]);
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return 1;
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}
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if (argc == 2) {
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dev->i2c_bus = parse_numeric_param(argv[0]);
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dev->i2c_addr = parse_numeric_param(argv[1]);
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return 2;
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}
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return CMD_RET_USAGE;
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}
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#ifdef CONFIG_CMD_EEPROM_LAYOUT
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#ifdef CONFIG_EEPROM_LAYOUT_VERSIONS
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__weak int eeprom_parse_layout_version(char *str)
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{
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return LAYOUT_VERSION_UNRECOGNIZED;
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}
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#endif
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static unsigned char eeprom_buf[CONFIG_SYS_EEPROM_SIZE];
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#endif
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enum eeprom_action {
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EEPROM_LIST,
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EEPROM_READ,
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EEPROM_WRITE,
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EEPROM_PRINT,
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EEPROM_UPDATE,
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EEPROM_ACTION_INVALID,
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};
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static enum eeprom_action parse_action(char *cmd)
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{
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#if CONFIG_IS_ENABLED(I2C_EEPROM)
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if (!strncmp(cmd, "list", 4))
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return EEPROM_LIST;
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#endif
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if (!strncmp(cmd, "read", 4))
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return EEPROM_READ;
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if (!strncmp(cmd, "write", 5))
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return EEPROM_WRITE;
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#ifdef CONFIG_CMD_EEPROM_LAYOUT
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if (!strncmp(cmd, "print", 5))
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return EEPROM_PRINT;
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if (!strncmp(cmd, "update", 6))
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return EEPROM_UPDATE;
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#endif
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return EEPROM_ACTION_INVALID;
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}
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#if CONFIG_IS_ENABLED(I2C_EEPROM)
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static int do_eeprom_list(void)
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{
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struct udevice *dev;
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struct uclass *uc;
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int err;
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err = uclass_get(UCLASS_I2C_EEPROM, &uc);
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if (err)
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return CMD_RET_FAILURE;
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uclass_foreach_dev(dev, uc)
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printf("%s (%s)\n", dev->name, dev->driver->name);
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return CMD_RET_SUCCESS;
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}
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#endif
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static int do_eeprom_rw(struct eeprom_dev_spec *dev, bool read,
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ulong addr, ulong off, ulong cnt)
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{
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const char *const fmt =
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"\nEEPROM @0x%lX %s: addr 0x%08lx off 0x%04lx count %ld ... ";
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uchar *memloc = (uchar *)addr;
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int ret;
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printf(fmt, dev->i2c_addr, read ? "read" : "write", addr, off, cnt);
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if (read)
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ret = eeprom_dev_spec_read(dev, off, memloc, cnt);
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else
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ret = eeprom_dev_spec_write(dev, off, memloc, cnt);
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puts("done\n");
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return ret;
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}
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#ifdef CONFIG_CMD_EEPROM_LAYOUT
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static int do_eeprom_layout(struct eeprom_dev_spec *dev, int layout_ver,
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struct eeprom_layout *layout)
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{
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eeprom_layout_setup(layout, eeprom_buf, CONFIG_SYS_EEPROM_SIZE,
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layout_ver);
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return eeprom_dev_spec_read(dev, 0, eeprom_buf, layout->data_size);
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}
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static int do_eeprom_print(struct eeprom_dev_spec *dev, int layout_ver)
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{
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struct eeprom_layout layout;
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int ret;
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ret = do_eeprom_layout(dev, layout_ver, &layout);
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if (ret)
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return ret;
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layout.print(&layout);
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return 0;
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}
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static int do_eeprom_update(struct eeprom_dev_spec *dev, int layout_ver,
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char *key, char *value)
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{
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struct eeprom_layout layout;
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int ret;
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ret = do_eeprom_layout(dev, layout_ver, &layout);
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if (ret)
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return ret;
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ret = layout.update(&layout, key, value);
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if (ret)
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return CMD_RET_FAILURE;
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return eeprom_dev_spec_write(dev, 0, layout.data, layout.data_size);
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}
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#endif
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static int eeprom_action_expected_argc(enum eeprom_action action)
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{
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switch (action) {
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case EEPROM_LIST:
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return 0;
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case EEPROM_READ:
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case EEPROM_WRITE:
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return 3;
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case EEPROM_PRINT:
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return 0;
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case EEPROM_UPDATE:
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return 2;
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default:
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return CMD_RET_USAGE;
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}
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}
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#define NEXT_PARAM(argc, index) { (argc)--; (index)++; }
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int do_eeprom(struct cmd_tbl *cmdtp, int flag, int argc, char *const argv[])
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{
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enum eeprom_action action = EEPROM_ACTION_INVALID;
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struct eeprom_dev_spec dev;
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ulong addr = 0, cnt = 0, off = 0;
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int ret, index = 0;
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#ifdef CONFIG_CMD_EEPROM_LAYOUT
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char *field_name = "";
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char *field_value = "";
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int layout_ver = LAYOUT_VERSION_AUTODETECT;
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#endif
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if (argc <= 1)
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return CMD_RET_USAGE;
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NEXT_PARAM(argc, index); /* Skip program name */
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action = parse_action(argv[index]);
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NEXT_PARAM(argc, index);
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if (action == EEPROM_ACTION_INVALID)
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return CMD_RET_USAGE;
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#if CONFIG_IS_ENABLED(I2C_EEPROM)
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if (action == EEPROM_LIST)
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return do_eeprom_list();
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#endif
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#ifdef CONFIG_EEPROM_LAYOUT_VERSIONS
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if (action == EEPROM_PRINT || action == EEPROM_UPDATE) {
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if (!strcmp(argv[index], "-l")) {
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NEXT_PARAM(argc, index);
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layout_ver = eeprom_parse_layout_version(argv[index]);
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NEXT_PARAM(argc, index);
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}
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}
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#endif
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ret = parse_eeprom_dev_spec(&dev,
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argc - eeprom_action_expected_argc(action),
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argv + index);
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if (ret == CMD_RET_USAGE)
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return ret;
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while (ret--)
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NEXT_PARAM(argc, index);
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if (action == EEPROM_READ || action == EEPROM_WRITE) {
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addr = parse_numeric_param(argv[index]);
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NEXT_PARAM(argc, index);
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off = parse_numeric_param(argv[index]);
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NEXT_PARAM(argc, index);
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cnt = parse_numeric_param(argv[index]);
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}
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#ifdef CONFIG_CMD_EEPROM_LAYOUT
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if (action == EEPROM_UPDATE) {
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field_name = argv[index];
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NEXT_PARAM(argc, index);
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field_value = argv[index];
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NEXT_PARAM(argc, index);
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}
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#endif
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eeprom_dev_spec_init(&dev);
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switch (action) {
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case EEPROM_READ:
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case EEPROM_WRITE:
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return do_eeprom_rw(&dev, action == EEPROM_READ,
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addr, off, cnt);
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#ifdef CONFIG_CMD_EEPROM_LAYOUT
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|
case EEPROM_PRINT:
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|
return do_eeprom_print(&dev, layout_ver);
|
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case EEPROM_UPDATE:
|
|
return do_eeprom_update(&dev, layout_ver,
|
|
field_name, field_value);
|
|
#endif
|
|
default:
|
|
return CMD_RET_USAGE;
|
|
}
|
|
}
|
|
|
|
#ifdef CONFIG_EEPROM_LAYOUT_VERSIONS
|
|
#define EEPROM_LAYOUT_SPEC "[-l <layout_version>] "
|
|
#else
|
|
#define EEPROM_LAYOUT_SPEC ""
|
|
#endif
|
|
|
|
#if CONFIG_IS_ENABLED(I2C_EEPROM)
|
|
# define EEPROM_DEV_SPEC "[device_specifier]"
|
|
#else
|
|
# define EEPROM_DEV_SPEC "[[bus] devaddr]"
|
|
#endif
|
|
|
|
U_BOOT_CMD(
|
|
eeprom, 8, 1, do_eeprom,
|
|
"EEPROM sub-system",
|
|
#if CONFIG_IS_ENABLED(I2C_EEPROM)
|
|
"list\n"
|
|
"eeprom "
|
|
#endif
|
|
"read " EEPROM_DEV_SPEC " addr off cnt\n"
|
|
"eeprom write " EEPROM_DEV_SPEC " addr off cnt\n"
|
|
" - read/write `cnt' bytes from `devaddr` EEPROM at offset `off'"
|
|
#ifdef CONFIG_CMD_EEPROM_LAYOUT
|
|
"\n"
|
|
"eeprom print " EEPROM_LAYOUT_SPEC EEPROM_DEV_SPEC "\n"
|
|
" - Print layout fields and their data in human readable format\n"
|
|
"eeprom update " EEPROM_LAYOUT_SPEC EEPROM_DEV_SPEC " field_name field_value\n"
|
|
" - Update a specific eeprom field with new data.\n"
|
|
" The new data must be written in the same human readable format as shown by the print command."
|
|
#endif
|
|
#if CONFIG_IS_ENABLED(I2C_EEPROM)
|
|
"\n\n"
|
|
"DEVICE SPECIFIER - the eeprom device can be specified\n"
|
|
" [dev_name] - by device name (devices can listed with the eeprom list command)\n"
|
|
" [[bus] devaddr] - or by I2C bus and I2C device address\n"
|
|
"If no device specifier is given, the first driver-model found device is used."
|
|
#endif
|
|
#ifdef CONFIG_EEPROM_LAYOUT_VERSIONS
|
|
"\n\n"
|
|
"LAYOUT VERSIONS\n"
|
|
"The -l option can be used to force the command to interpret the EEPROM data using the chosen layout.\n"
|
|
"If the -l option is omitted, the command will auto detect the layout based on the data in the EEPROM.\n"
|
|
"The values which can be provided with the -l option are:\n"
|
|
CONFIG_EEPROM_LAYOUT_HELP_STRING"\n"
|
|
#endif
|
|
);
|