diff options
34 files changed, 5819 insertions, 1 deletions
diff --git a/MAINTAINERS b/MAINTAINERS index cae855da60e..d6c4587bf86 100644 --- a/MAINTAINERS +++ b/MAINTAINERS @@ -1249,6 +1249,13 @@ S: Maintained T: git https://source.denx.de/u-boot/custodians/u-boot-i2c.git F: drivers/i2c/ +I3C +M: Dinesh <dinesh.maniyam@altera.com> +S: Maintained +T: git https://source.denx.de/u-boot/u-boot.git +F: cmd/i3c.c +F: drivers/i3c/ + KWBIMAGE / KWBOOT TOOLS M: Pali Rohár <pali@kernel.org> M: Marek Behún <kabel@kernel.org> diff --git a/arch/sandbox/dts/test.dts b/arch/sandbox/dts/test.dts index bb696c5ef7f..a2c739a2044 100644 --- a/arch/sandbox/dts/test.dts +++ b/arch/sandbox/dts/test.dts @@ -936,6 +936,14 @@ }; }; + i3c0 { + compatible = "sandbox,i3c"; + }; + + i3c1 { + compatible = "sandbox,i3c"; + }; + bootcount@0 { compatible = "u-boot,bootcount-rtc"; rtc = <&rtc_1>; diff --git a/cmd/Kconfig b/cmd/Kconfig index b3b5be1ea79..1a7dba2a27d 100644 --- a/cmd/Kconfig +++ b/cmd/Kconfig @@ -1343,6 +1343,13 @@ config CMD_I2C help I2C support. +config CMD_I3C + bool "i3c" + depends on I3C + help + Enable command to list i3c devices connected to the i3c controller + and perform read and write on the connected i3c devices. + config CMD_W1 depends on W1 default y if W1 diff --git a/cmd/Makefile b/cmd/Makefile index 12e948fd1b9..36e79cc3c28 100644 --- a/cmd/Makefile +++ b/cmd/Makefile @@ -95,6 +95,7 @@ obj-$(CONFIG_CMD_GPIO) += gpio.o obj-$(CONFIG_CMD_HISTORY) += history.o obj-$(CONFIG_CMD_HVC) += smccc.o obj-$(CONFIG_CMD_I2C) += i2c.o +obj-$(CONFIG_CMD_I3C) += i3c.o obj-$(CONFIG_CMD_IOTRACE) += iotrace.o obj-$(CONFIG_CMD_HASH) += hash.o obj-$(CONFIG_CMD_IDE) += ide.o disk.o diff --git a/cmd/i2c.c b/cmd/i2c.c index f0aae93073f..e021067e68a 100644 --- a/cmd/i2c.c +++ b/cmd/i2c.c @@ -299,7 +299,8 @@ static int do_i2c_write(struct cmd_tbl *cmdtp, int flag, int argc, char *const argv[]) { uint chip; - uint devaddr, length; + uint devaddr; + int length; int alen; u_char *memaddr; int ret; diff --git a/cmd/i3c.c b/cmd/i3c.c new file mode 100644 index 00000000000..08957f4d447 --- /dev/null +++ b/cmd/i3c.c @@ -0,0 +1,271 @@ +// SPDX-License-Identifier: GPL-2.0+ +/* + * Copyright (C) 2025 Altera Corporation <www.altera.com> + */ + +#include <bootretry.h> +#include <cli.h> +#include <command.h> +#include <console.h> +#include <dm.h> +#include <dw-i3c.h> +#include <edid.h> +#include <errno.h> +#include <hexdump.h> +#include <log.h> +#include <malloc.h> +#include <asm/byteorder.h> +#include <linux/compiler.h> +#include <linux/delay.h> +#include <u-boot/crc.h> +#include <linux/i3c/master.h> +#include <linux/printk.h> +#include <linux/types.h> + +static struct udevice *currdev; +static struct udevice *prevdev; +static struct dw_i3c_master *master; + +static void low_to_high_bytes(void *data, size_t size) +{ + u8 *byte_data = data; + size_t start = 0; + size_t end = size - 1; + + while (start < end) { + u8 temp = byte_data[start]; + + byte_data[start] = byte_data[end]; + byte_data[end] = temp; + start++; + end--; + } +} + +static int handle_i3c_select(const char *name) +{ + struct uclass *uc; + struct udevice *dev_list; + int ret = uclass_get_device_by_name(UCLASS_I3C, name, &currdev); + + if (ret) { + currdev = prevdev; + if (!currdev) { + ret = uclass_get(UCLASS_I3C, &uc); + if (ret) + return CMD_RET_FAILURE; + + uclass_foreach_dev(dev_list, uc) + printf("%s (%s)\n", dev_list->name, dev_list->driver->name); + + printf("i3c: Host controller not initialized: %s\n", name); + return CMD_RET_FAILURE; + } + } else { + master = dev_get_priv(currdev); + printf("i3c: Current controller: %s\n", currdev->name); + prevdev = currdev; + } + + return CMD_RET_SUCCESS; +} + +static int handle_i3c_list(void) +{ + struct uclass *uc; + struct udevice *dev_list; + int ret = uclass_get(UCLASS_I3C, &uc); + + if (ret) + return CMD_RET_FAILURE; + + uclass_foreach_dev(dev_list, uc) + printf("%s (%s)\n", dev_list->name, dev_list->driver->name); + + return CMD_RET_SUCCESS; +} + +static int handle_i3c_current(void) +{ + if (!currdev) + printf("i3c: No current controller selected\n"); + else + printf("i3c: Current controller: %s\n", currdev->name); + + return CMD_RET_SUCCESS; +} + +static int handle_i3c_device_list(void) +{ + if (!master) { + printf("i3c: No controller active\n"); + return CMD_RET_FAILURE; + } + + for (int i = 0; i < master->num_i3cdevs; i++) { + struct i3c_device_info *info = &master->i3cdev[i]->info; + + printf("Device %d:\n", i); + printf(" Static Address : 0x%02X\n", info->static_addr); + printf(" Dynamic Address : 0x%X\n", info->dyn_addr); + printf(" PID : %016llx\n", info->pid); + printf(" BCR : 0x%X\n", info->bcr); + printf(" DCR : 0x%X\n", info->dcr); + printf(" Max Read DS : 0x%X\n", info->max_read_ds); + printf(" Max Write DS : 0x%X\n", info->max_write_ds); + printf("\n"); + } + + return CMD_RET_SUCCESS; +} + +static int handle_i3c_write(int argc, char *const argv[]) +{ + u32 mem_addr, num_bytes, dev_num_val; + u8 device_num; + u8 *data; + int ret; + + if (argc < 5) + return CMD_RET_USAGE; + + if (!currdev) { + printf("i3c: No I3C controller selected\n"); + return CMD_RET_FAILURE; + } + + mem_addr = hextoul(argv[2], NULL); + num_bytes = hextoul(argv[3], NULL); + dev_num_val = hextoul(argv[4], NULL); + + if (num_bytes == 0 || num_bytes > 4) { + printf("i3c: Length must be between 1 and 4\n"); + return CMD_RET_USAGE; + } + + if (dev_num_val > 0xFF) { + printf("i3c: Device number 0x%x exceeds valid u8 range\n", dev_num_val); + return CMD_RET_USAGE; + } + + device_num = dev_num_val; + data = malloc(num_bytes); + + if (!data) { + printf("i3c: Memory allocation failed\n"); + return -ENOMEM; + } + + memcpy(data, (void *)(uintptr_t)mem_addr, num_bytes); + low_to_high_bytes(data, num_bytes); + + ret = dm_i3c_write(currdev, device_num, data, num_bytes); + + if (ret) + printf("i3c: Write failed: %d\n", ret); + + free(data); + return ret ? CMD_RET_FAILURE : CMD_RET_SUCCESS; +} + +static int handle_i3c_read(int argc, char *const argv[]) +{ + u32 mem_addr, read_len, dev_num_val; + u8 device_num; + u8 *rdata; + int ret; + + if (argc < 5) + return CMD_RET_USAGE; + + if (!currdev) { + printf("i3c: No I3C controller selected\n"); + return CMD_RET_FAILURE; + } + + mem_addr = hextoul(argv[2], NULL); + read_len = hextoul(argv[3], NULL); + dev_num_val = hextoul(argv[4], NULL); + + if (read_len == 0) { + printf("i3c: Read length must be greater than 0\n"); + return CMD_RET_USAGE; + } + + if (dev_num_val > 0xFF) { + printf("i3c: Device number 0x%x exceeds valid u8 range\n", dev_num_val); + return CMD_RET_USAGE; + } + + device_num = dev_num_val; + rdata = malloc(read_len); + + if (!rdata) { + printf("i3c: Memory allocation failed\n"); + return -ENOMEM; + } + + ret = dm_i3c_read(currdev, device_num, rdata, read_len); + + if (ret) { + printf("i3c: Read failed: %d\n", ret); + free(rdata); + return CMD_RET_FAILURE; + } + + memcpy((void *)(uintptr_t)mem_addr, rdata, read_len); + print_hex_dump("i3c read: ", DUMP_PREFIX_OFFSET, 16, 1, + (void *)(uintptr_t)mem_addr, read_len, false); + + free(rdata); + return CMD_RET_SUCCESS; +} + +static bool is_i3c_subcommand(const char *cmd) +{ + return !strcmp(cmd, "write") || + !strcmp(cmd, "read") || + !strcmp(cmd, "device_list") || + !strcmp(cmd, "list") || + !strcmp(cmd, "current"); +} + +static int do_i3c(struct cmd_tbl *cmdtp, int flag, int argc, char *const argv[]) +{ + if (argc < 2) + return CMD_RET_USAGE; + + const char *subcmd = argv[1]; + + if (!is_i3c_subcommand(subcmd)) + return handle_i3c_select(subcmd); + + if (!currdev) { + printf("i3c: No I3C controller selected\n"); + return CMD_RET_FAILURE; + } + + if (!strcmp(subcmd, "list")) + return handle_i3c_list(); + else if (!strcmp(subcmd, "current")) + return handle_i3c_current(); + else if (!strcmp(subcmd, "device_list")) + return handle_i3c_device_list(); + else if (!strcmp(subcmd, "write")) + return handle_i3c_write(argc, argv); + else if (!strcmp(subcmd, "read")) + return handle_i3c_read(argc, argv); + + return CMD_RET_USAGE; +} + +U_BOOT_CMD( + i3c, 5, 1, do_i3c, + "access the system i3c", + "i3c write <mem_addr> <length> <device_number> - write from memory to device\n" + "i3c read <mem_addr> <length> <device_number> - read from device to memory\n" + "i3c device_list - List valid target devices\n" + "i3c <host_controller> - Select i3c controller\n" + "i3c list - List all available i3c controllers\n" + "i3c current - Show current i3c controller" +); diff --git a/configs/sandbox_defconfig b/configs/sandbox_defconfig index 6d2aec3a43e..e9a70b26044 100644 --- a/configs/sandbox_defconfig +++ b/configs/sandbox_defconfig @@ -90,6 +90,7 @@ CONFIG_CMD_GPT=y CONFIG_CMD_GPT_RENAME=y CONFIG_CMD_IDE=y CONFIG_CMD_I2C=y +CONFIG_CMD_I3C=y CONFIG_CMD_LOADM=y CONFIG_CMD_LSBLK=y CONFIG_CMD_MTD=y @@ -228,6 +229,9 @@ CONFIG_I2C_CROS_EC_LDO=y CONFIG_DM_I2C_GPIO=y CONFIG_I2C_MUX=y CONFIG_I2C_ARB_GPIO_CHALLENGE=y +CONFIG_I3C=y +CONFIG_I3C_SANDBOX=y +CONFIG_DW_I3C_MASTER=y CONFIG_CROS_EC_KEYB=y CONFIG_I8042_KEYB=y CONFIG_IOMMU=y diff --git a/configs/socfpga_agilex5_defconfig b/configs/socfpga_agilex5_defconfig index cc812c7008c..f357ca1a855 100644 --- a/configs/socfpga_agilex5_defconfig +++ b/configs/socfpga_agilex5_defconfig @@ -57,6 +57,7 @@ CONFIG_CMD_NVEDIT_SELECT=y CONFIG_CMD_MEMTEST=y CONFIG_CMD_GPIO=y CONFIG_CMD_I2C=y +CONFIG_CMD_I3C=y CONFIG_CMD_MTD=y CONFIG_CMD_SPI=y CONFIG_CMD_USB=y @@ -81,6 +82,8 @@ CONFIG_SPL_GPIO_HOG=y CONFIG_DWAPB_GPIO=y CONFIG_DM_I2C=y CONFIG_SYS_I2C_DW=y +CONFIG_I3C=y +CONFIG_DW_I3C_MASTER=y CONFIG_MISC=y CONFIG_DM_MTD=y CONFIG_SPI_FLASH_SPANSION=y diff --git a/doc/api/i3c.rst b/doc/api/i3c.rst new file mode 100644 index 00000000000..7906face080 --- /dev/null +++ b/doc/api/i3c.rst @@ -0,0 +1,8 @@ +.. SPDX-License-Identifier: GPL-2.0+ +.. Copyright (C) 2025 Altera Corporation <www.altera.com> + +I3C Subsystem +=============== + +.. kernel-doc:: include/i3c.h + :internal: diff --git a/doc/api/index.rst b/doc/api/index.rst index cf9d21e4c1c..d97630e7671 100644 --- a/doc/api/index.rst +++ b/doc/api/index.rst @@ -15,6 +15,7 @@ U-Boot API documentation fs getopt interrupt + i3c led linker_lists logging diff --git a/doc/usage/cmd/i3c.rst b/doc/usage/cmd/i3c.rst new file mode 100644 index 00000000000..922fa3ea37c --- /dev/null +++ b/doc/usage/cmd/i3c.rst @@ -0,0 +1,146 @@ +.. SPDX-License-Identifier: GPL-2.0 + +.. index:: + single: i3c (command) + +i3c command +=========== + +Synopsis +-------- + +:: + + i3c <host_controller> + i3c current + i3c list + i3c device_list + i3c write <mem_addr> <length> <device_number> + i3c read <mem_addr> <length> <device_number> + +Description +----------- + +The ``i3c`` command is used to probe the i3c host controller and perform +read and write operations on the connected i3c devices. + +i3c current +------------ + +Display the currently selected i3c host controller. + +i3c list +--------- + +List all the i3c hosts defined in the device-tree. + +i3c device_list +---------------- + +List all the i3c devices' device number, static address, dynamic address, +PID, BCR, DCR, Max Write Speed, and Max Read Speed of the probed i3c host +controller. + +i3c write +---------- + +Perform a write operation from memory to the connected i3c device. The data +is read from a specified memory address and written to the selected i3c +device, which is identified by its device number. + +You need to provide the memory address (``mem_addr``), the length of data +to be written (``length``), and the device number (``device_number``). The +data in memory will be transferred to the device in the specified order. + +i3c read +--------- + +Perform a read operation from the connected i3c device to memory. The data +is read from the selected i3c device and stored at the specified memory +address. You need to provide the memory address (``mem_addr``), the length +of data to be read (``length``), and the device number (``device_number``). + +The device will send the requested data, which is then written to the memory +location you specified. This operation allows you to retrieve information +from the device and use it in your application. The data is read in the +order specified and can be multiple bytes. + +host_controller + The name of the i3c host controller defined in the device-tree. + +length + The size of the data to be read or written. + +device_number + The device number in the driver model of the device connected to the i3c + host controller. + +mem_addr + The start address in memory from which to read or write the data. + +Examples +-------- + +Probe the ``i3c0`` controller:: + + => i3c i3c0 + +Display the current i3c host controller:: + + => i3c current + +Check the device number and PID of the connected devices:: + + => i3c device_list + +Perform write operations on the connected i3c device (device 0) from memory:: + + => i3c write 0x1000 4 0 + + This command reads 4 bytes of data from memory starting at address + ``0x1000`` and writes them to device 0, which is identified by its device + number in the driver model. Example data from memory could look like this: + + ``` + Data at 0x1000: 0xAA 0xBB 0xCC 0xDD + ``` + + The bytes `0xAA`, `0xBB`, `0xCC`, and `0xDD` will be written to device 0. + +Perform a read operation from device 0 to memory (multiple bytes):: + + => i3c read 0x1000 4 0 + + This command reads 4 bytes of data from device 0 and writes them to + memory starting at address ``0x1000``. + + Example output after reading 4 bytes from device 0: + + ``` + i3c Read: + 00000000 AA BB CC DD + ``` + + The bytes `0xAA`, `0xBB`, `0xCC`, and `0xDD` are read from device 0 + and written to memory at address `0x1000`. + +Configuration +------------- + +The ``i3c`` command is only available if CONFIG_CMD_I3C=y. + +Return value +------------ + +If the command succeeds, the return value ``$?`` is set to 0. If an error +occurs, the return value ``$?`` is set to 1. + +Note +---- + +When specifying the data to be written to the i3c device (for example, with +the ``i3c write`` command), the data can be provided in either uppercase +or lowercase hexadecimal format. Both are valid and will be processed +correctly. Similarly, when reading data with ``i3c read``, the data will be +retrieved in the specified length and can include multiple bytes, all +formatted in the same way.
\ No newline at end of file diff --git a/doc/usage/index.rst b/doc/usage/index.rst index b9de87a6ed9..3a48521d5d5 100644 --- a/doc/usage/index.rst +++ b/doc/usage/index.rst @@ -82,6 +82,7 @@ Shell commands cmd/if cmd/itest cmd/imxtract + cmd/i3c cmd/load cmd/loadb cmd/loadm diff --git a/drivers/Kconfig b/drivers/Kconfig index a073230c26d..0b0c610e629 100644 --- a/drivers/Kconfig +++ b/drivers/Kconfig @@ -56,6 +56,8 @@ source "drivers/hwspinlock/Kconfig" source "drivers/i2c/Kconfig" +source "drivers/i3c/Kconfig" + source "drivers/input/Kconfig" source "drivers/iommu/Kconfig" diff --git a/drivers/Makefile b/drivers/Makefile index 3c0ad17138f..7560008a842 100644 --- a/drivers/Makefile +++ b/drivers/Makefile @@ -17,6 +17,7 @@ obj-$(CONFIG_$(PHASE_)DRIVERS_MISC) += misc/ obj-$(CONFIG_$(PHASE_)SYSRESET) += sysreset/ obj-$(CONFIG_$(PHASE_)FIRMWARE) +=firmware/ obj-$(CONFIG_$(PHASE_)I2C) += i2c/ +obj-$(CONFIG_$(PHASE_)I3C) += i3c/ obj-$(CONFIG_$(PHASE_)INPUT) += input/ obj-$(CONFIG_$(PHASE_)LED) += led/ obj-$(CONFIG_$(PHASE_)MMC) += mmc/ diff --git a/drivers/i3c/Kconfig b/drivers/i3c/Kconfig new file mode 100644 index 00000000000..d877a744353 --- /dev/null +++ b/drivers/i3c/Kconfig @@ -0,0 +1,27 @@ +menuconfig I3C + tristate "I3C support" + select I2C + help + I3C is a serial protocol standardized by the MIPI alliance. + + It's supposed to be backward compatible with I2C while providing + support for high speed transfers and native interrupt support + without the need for extra pins. + + The I3C protocol also standardizes the slave device types and is + mainly designed to communicate with sensors. + + If you want I3C support, you should say Y here and also to the + specific driver for your bus adapter(s) below. + +config I3C_SANDBOX + bool "Enable support for the sandbox I3C" + help + This is a sandbox I3C used for testing. It provides 2 interfaces and + records the settings passed into it. + +if I3C + +source "drivers/i3c/master/Kconfig" + +endif # I3C diff --git a/drivers/i3c/Makefile b/drivers/i3c/Makefile new file mode 100644 index 00000000000..d38d2350c9a --- /dev/null +++ b/drivers/i3c/Makefile @@ -0,0 +1,5 @@ +# SPDX-License-Identifier: GPL-2.0 + +obj-y := i3c-uclass.o device.o master.o +obj-y += master/ +obj-$(CONFIG_I3C_SANDBOX) += sandbox_i3c.o diff --git a/drivers/i3c/device.c b/drivers/i3c/device.c new file mode 100644 index 00000000000..32c57bccc42 --- /dev/null +++ b/drivers/i3c/device.c @@ -0,0 +1,262 @@ +// SPDX-License-Identifier: GPL-2.0 +/* + * Copyright (C) 2018 Cadence Design Systems Inc. + * + * Author: Boris Brezillon <boris.brezillon@bootlin.com> + */ + +#include <linux/bug.h> +#include <linux/completion.h> +#include <dm/device.h> + +#include "internals.h" + +/* i3c */ + +#define I3C_MATCH_DCR 0x1 +#define I3C_MATCH_MANUF 0x2 +#define I3C_MATCH_PART 0x4 +#define I3C_MATCH_EXTRA_INFO 0x8 + +struct i3c_device_id { + __u8 match_flags; + __u8 dcr; + __u16 manuf_id; + __u16 part_id; + __u16 extra_info; + + const void *data; +}; + +/** + * i3c_device_do_priv_xfers() - do I3C SDR private transfers directed to a + * specific device + * + * @dev: device with which the transfers should be done + * @xfers: array of transfers + * @nxfers: number of transfers + * + * Initiate one or several private SDR transfers with @dev. + * + * This function can sleep and thus cannot be called in atomic context. + * + * Return: 0 in case of success, a negative error core otherwise. + */ +int i3c_device_do_priv_xfers(struct i3c_device *dev, + struct i3c_priv_xfer *xfers, + int nxfers) +{ + int ret, i; + + if (nxfers < 1) + return 0; + + for (i = 0; i < nxfers; i++) { + if (!xfers[i].len || !xfers[i].data.in) + return -EINVAL; + } + + i3c_bus_normaluse_lock(dev->bus); + ret = i3c_dev_do_priv_xfers_locked(dev->desc, xfers, nxfers); + i3c_bus_normaluse_unlock(dev->bus); + + return ret; +} +EXPORT_SYMBOL_GPL(i3c_device_do_priv_xfers); + +/** + * i3c_device_get_info() - get I3C device information + * + * @dev: device we want information on + * @info: the information object to fill in + * + * Retrieve I3C dev info. + */ +void i3c_device_get_info(struct i3c_device *dev, + struct i3c_device_info *info) +{ + if (!info) + return; + + i3c_bus_normaluse_lock(dev->bus); + if (dev->desc) + *info = dev->desc->info; + i3c_bus_normaluse_unlock(dev->bus); +} +EXPORT_SYMBOL_GPL(i3c_device_get_info); + +/** + * i3c_device_disable_ibi() - Disable IBIs coming from a specific device + * @dev: device on which IBIs should be disabled + * + * This function disable IBIs coming from a specific device and wait for + * all pending IBIs to be processed. + * + * Return: 0 in case of success, a negative error core otherwise. + */ +int i3c_device_disable_ibi(struct i3c_device *dev) +{ + int ret = -ENOENT; + + i3c_bus_normaluse_lock(dev->bus); + if (dev->desc) { + mutex_lock(&dev->desc->ibi_lock); + ret = i3c_dev_disable_ibi_locked(dev->desc); + mutex_unlock(&dev->desc->ibi_lock); + } + i3c_bus_normaluse_unlock(dev->bus); + + return ret; +} +EXPORT_SYMBOL_GPL(i3c_device_disable_ibi); + +/** + * i3c_device_enable_ibi() - Enable IBIs coming from a specific device + * @dev: device on which IBIs should be enabled + * + * This function enable IBIs coming from a specific device and wait for + * all pending IBIs to be processed. This should be called on a device + * where i3c_device_request_ibi() has succeeded. + * + * Note that IBIs from this device might be received before this function + * returns to its caller. + * + * Return: 0 in case of success, a negative error core otherwise. + */ +int i3c_device_enable_ibi(struct i3c_device *dev) +{ + int ret = -ENOENT; + + i3c_bus_normaluse_lock(dev->bus); + if (dev->desc) { + mutex_lock(&dev->desc->ibi_lock); + ret = i3c_dev_enable_ibi_locked(dev->desc); + mutex_unlock(&dev->desc->ibi_lock); + } + i3c_bus_normaluse_unlock(dev->bus); + + return ret; +} +EXPORT_SYMBOL_GPL(i3c_device_enable_ibi); + +/** + * i3c_device_request_ibi() - Request an IBI + * @dev: device for which we should enable IBIs + * @req: setup requested for this IBI + * + * This function is responsible for pre-allocating all resources needed to + * process IBIs coming from @dev. When this function returns, the IBI is not + * enabled until i3c_device_enable_ibi() is called. + * + * Return: 0 in case of success, a negative error core otherwise. + */ +int i3c_device_request_ibi(struct i3c_device *dev, + const struct i3c_ibi_setup *req) +{ + int ret = -ENOENT; + + if (!req->handler || !req->num_slots) + return -EINVAL; + + i3c_bus_normaluse_lock(dev->bus); + if (dev->desc) { + mutex_lock(&dev->desc->ibi_lock); + ret = i3c_dev_request_ibi_locked(dev->desc, req); + mutex_unlock(&dev->desc->ibi_lock); + } + i3c_bus_normaluse_unlock(dev->bus); + + return ret; +} +EXPORT_SYMBOL_GPL(i3c_device_request_ibi); + +/** + * i3c_device_free_ibi() - Free all resources needed for IBI handling + * @dev: device on which you want to release IBI resources + * + * This function is responsible for de-allocating resources previously + * allocated by i3c_device_request_ibi(). It should be called after disabling + * IBIs with i3c_device_disable_ibi(). + */ +void i3c_device_free_ibi(struct i3c_device *dev) +{ + i3c_bus_normaluse_lock(dev->bus); + if (dev->desc) { + mutex_lock(&dev->desc->ibi_lock); + i3c_dev_free_ibi_locked(dev->desc); + mutex_unlock(&dev->desc->ibi_lock); + } + i3c_bus_normaluse_unlock(dev->bus); +} +EXPORT_SYMBOL_GPL(i3c_device_free_ibi); + +/** + * i3cdev_to_dev() - Returns the device embedded in @i3cdev + * @i3cdev: I3C device + * + * Return: a pointer to a device object. + */ +struct udevice *i3cdev_to_dev(struct i3c_device *i3cdev) +{ + return &i3cdev->dev; +} +EXPORT_SYMBOL_GPL(i3cdev_to_dev); + +/** + * dev_to_i3cdev() - Returns the I3C device containing @dev + * @dev: device object + * + * Return: a pointer to an I3C device object. + */ +struct i3c_device *dev_to_i3cdev(struct udevice *dev) +{ + return container_of(dev, struct i3c_device, dev); +} +EXPORT_SYMBOL_GPL(dev_to_i3cdev); + +/** + * i3c_device_match_id() - Returns the i3c_device_id entry matching @i3cdev + * @i3cdev: I3C device + * @id_table: I3C device match table + * + * Return: a pointer to an i3c_device_id object or NULL if there's no match. + */ +const struct i3c_device_id * +i3c_device_match_id(struct i3c_device *i3cdev, + const struct i3c_device_id *id_table) +{ + struct i3c_device_info devinfo; + const struct i3c_device_id *id; + u16 manuf, part, ext_info; + bool rndpid; + + i3c_device_get_info(i3cdev, &devinfo); + + manuf = I3C_PID_MANUF_ID(devinfo.pid); + part = I3C_PID_PART_ID(devinfo.pid); + ext_info = I3C_PID_EXTRA_INFO(devinfo.pid); + rndpid = I3C_PID_RND_LOWER_32BITS(devinfo.pid); + + for (id = id_table; id->match_flags != 0; id++) { + if ((id->match_flags & I3C_MATCH_DCR) && + id->dcr != devinfo.dcr) + continue; + + if ((id->match_flags & I3C_MATCH_MANUF) && + id->manuf_id != manuf) + continue; + + if ((id->match_flags & I3C_MATCH_PART) && + (rndpid || id->part_id != part)) + continue; + + if ((id->match_flags & I3C_MATCH_EXTRA_INFO) && + (rndpid || id->extra_info != ext_info)) + continue; + + return id; + } + + return NULL; +} +EXPORT_SYMBOL_GPL(i3c_device_match_id); diff --git a/drivers/i3c/i3c-uclass.c b/drivers/i3c/i3c-uclass.c new file mode 100644 index 00000000000..72944424c1d --- /dev/null +++ b/drivers/i3c/i3c-uclass.c @@ -0,0 +1,38 @@ +// SPDX-License-Identifier: GPL-2.0 +/* + * Copyright (C) 2025 Altera Corporation <www.altera.com> + */ + +#include <dm.h> +#include <i3c.h> +#include <errno.h> +#include <log.h> +#include <dm/device-internal.h> +#include <linux/ctype.h> + +int dm_i3c_read(struct udevice *dev, u32 dev_number, + u8 *buf, u32 num_bytes) +{ + struct dm_i3c_ops *ops = i3c_get_ops(dev); + + if (!ops->read) + return -ENOSYS; + + return ops->read(dev, dev_number, buf, num_bytes); +} + +int dm_i3c_write(struct udevice *dev, u32 dev_number, + u8 *buf, u32 num_bytes) +{ + struct dm_i3c_ops *ops = i3c_get_ops(dev); + + if (!ops->write) + return -ENOSYS; + + return ops->write(dev, dev_number, buf, num_bytes); +} + +UCLASS_DRIVER(i3c) = { + .id = UCLASS_I3C, + .name = "i3c", +}; diff --git a/drivers/i3c/internals.h b/drivers/i3c/internals.h new file mode 100644 index 00000000000..86b7b44cfca --- /dev/null +++ b/drivers/i3c/internals.h @@ -0,0 +1,26 @@ +/* SPDX-License-Identifier: GPL-2.0 */ +/* + * Copyright (C) 2018 Cadence Design Systems Inc. + * + * Author: Boris Brezillon <boris.brezillon@bootlin.com> + */ + +#ifndef I3C_INTERNALS_H +#define I3C_INTERNALS_H + +#include <linux/i3c/master.h> + +extern struct bus_type i3c_bus_type; + +void i3c_bus_normaluse_lock(struct i3c_bus *bus); +void i3c_bus_normaluse_unlock(struct i3c_bus *bus); + +int i3c_dev_do_priv_xfers_locked(struct i3c_dev_desc *dev, + struct i3c_priv_xfer *xfers, + int nxfers); +int i3c_dev_disable_ibi_locked(struct i3c_dev_desc *dev); +int i3c_dev_enable_ibi_locked(struct i3c_dev_desc *dev); +int i3c_dev_request_ibi_locked(struct i3c_dev_desc *dev, + const struct i3c_ibi_setup *req); +void i3c_dev_free_ibi_locked(struct i3c_dev_desc *dev); +#endif /* I3C_INTERNAL_H */ diff --git a/drivers/i3c/master.c b/drivers/i3c/master.c new file mode 100644 index 00000000000..019167a2dc5 --- /dev/null +++ b/drivers/i3c/master.c @@ -0,0 +1,2066 @@ +// SPDX-License-Identifier: GPL-2.0 +/* + * Copyright (C) 2018 Cadence Design Systems Inc. + * + * Author: Boris Brezillon <boris.brezillon@bootlin.com> + */ + +#include <dm.h> +#include <dm/device.h> +#include <dm/device_compat.h> +#include <dm/devres.h> +#include <dm/of.h> +#include <dm/of_access.h> +#include <linux/bitmap.h> +#include <linux/bug.h> +#include <linux/compat.h> +#include <linux/err.h> +#include <linux/kernel.h> +#include <linux/list.h> + +#include "internals.h" + +#define MAX_IDR_ID 64 + +struct idr_layer { + int used; + void *ptr; +}; + +struct idr { + struct idr_layer id[MAX_IDR_ID]; + bool updated; +}; + +static int idr_alloc(struct idr *idp, void *ptr, int start, int end, gfp_t gfp_mask) +{ + struct idr_layer *idl; + int i = 0; + + while (i < MAX_IDR_ID) { + idl = &idp->id[i]; + if (idl->used == 0) { + idl->used = 1; + idl->ptr = ptr; + idp->updated = true; + return i; + } + i++; + } + return -ENOSPC; +} + +/** + * i3c_bus_maintenance_lock - Lock the bus for a maintenance operation + * @bus: I3C bus to take the lock on + * + * This function takes the bus lock so that no other operations can occur on + * the bus. This is needed for all kind of bus maintenance operation, like + * - enabling/disabling slave events + * - re-triggering DAA + * - changing the dynamic address of a device + * - relinquishing mastership + * - ... + * + * The reason for this kind of locking is that we don't want drivers and core + * logic to rely on I3C device information that could be changed behind their + * back. + */ +static void i3c_bus_maintenance_lock(struct i3c_bus *bus) +{ + down_write(&bus->lock); +} + +/** + * i3c_bus_maintenance_unlock - Release the bus lock after a maintenance + * operation + * @bus: I3C bus to release the lock on + * + * Should be called when the bus maintenance operation is done. See + * i3c_bus_maintenance_lock() for more details on what these maintenance + * operations are. + */ +static void i3c_bus_maintenance_unlock(struct i3c_bus *bus) +{ + up_write(&bus->lock); +} + +/** + * i3c_bus_normaluse_lock - Lock the bus for a normal operation + * @bus: I3C bus to take the lock on + * + * This function takes the bus lock for any operation that is not a maintenance + * operation (see i3c_bus_maintenance_lock() for a non-exhaustive list of + * maintenance operations). Basically all communications with I3C devices are + * normal operations (HDR, SDR transfers or CCC commands that do not change bus + * state or I3C dynamic address). + * + * Note that this lock is not guaranteeing serialization of normal operations. + * In other words, transfer requests passed to the I3C master can be submitted + * in parallel and I3C master drivers have to use their own locking to make + * sure two different communications are not inter-mixed, or access to the + * output/input queue is not done while the engine is busy. + */ +void i3c_bus_normaluse_lock(struct i3c_bus *bus) +{ + down_read(&bus->lock); +} + +/** + * i3c_bus_normaluse_unlock - Release the bus lock after a normal operation + * @bus: I3C bus to release the lock on + * + * Should be called when a normal operation is done. See + * i3c_bus_normaluse_lock() for more details on what these normal operations + * are. + */ +void i3c_bus_normaluse_unlock(struct i3c_bus *bus) +{ + up_read(&bus->lock); +} + +static struct i3c_master_controller * +i3c_bus_to_i3c_master(struct i3c_bus *i3cbus) +{ + return container_of(i3cbus, struct i3c_master_controller, bus); +} + +static int i3c_device_match(struct udevice *dev, struct driver *drv) +{ + struct i3c_device *i3cdev; + struct i3c_driver *i3cdrv; + + i3cdev = dev_to_i3cdev(dev); + i3cdrv = drv_to_i3cdrv(drv); + if (i3c_device_match_id(i3cdev, i3cdrv->id_table)) + return 1; + + return 0; +} + +static int i3c_device_probe(struct udevice *dev) +{ + struct i3c_device *i3cdev = dev_to_i3cdev(dev); + struct i3c_driver *driver = drv_to_i3cdrv(dev->driver); + + return driver->probe(i3cdev); +} + +static void i3c_device_remove(struct udevice *dev) +{ + struct i3c_device *i3cdev = dev_to_i3cdev(dev); + struct i3c_driver *driver = drv_to_i3cdrv(dev->driver); + + if (driver->remove) + driver->remove(i3cdev); +} + +struct bus_type { + const char *name; + int (*match)(struct udevice *dev, struct driver *drv); + int (*probe)(struct udevice *dev); + void (*remove)(struct udevice *dev); +}; + +struct bus_type i3c_bus_type = { + .name = "i3c", + .match = i3c_device_match, + .probe = i3c_device_probe, + .remove = i3c_device_remove, +}; + +static enum i3c_addr_slot_status +i3c_bus_get_addr_slot_status(struct i3c_bus *bus, u16 addr) +{ + int status, bitpos = addr * 2; + + if (addr > I2C_MAX_ADDR) + return I3C_ADDR_SLOT_RSVD; + + status = bus->addrslots[bitpos / BITS_PER_LONG]; + status >>= bitpos % BITS_PER_LONG; + + return status & I3C_ADDR_SLOT_STATUS_MASK; +} + +static void i3c_bus_set_addr_slot_status(struct i3c_bus *bus, u16 addr, + enum i3c_addr_slot_status status) +{ + int bitpos = addr * 2; + unsigned long *ptr; + + if (addr > I2C_MAX_ADDR) + return; + + ptr = bus->addrslots + (bitpos / BITS_PER_LONG); + *ptr &= ~((unsigned long)I3C_ADDR_SLOT_STATUS_MASK << + (bitpos % BITS_PER_LONG)); + *ptr |= (unsigned long)status << (bitpos % BITS_PER_LONG); +} + +static bool i3c_bus_dev_addr_is_avail(struct i3c_bus *bus, u8 addr) +{ + enum i3c_addr_slot_status status; + + status = i3c_bus_get_addr_slot_status(bus, addr); + + return status == I3C_ADDR_SLOT_FREE; +} + +static int i3c_bus_get_free_addr(struct i3c_bus *bus, u8 start_addr) +{ + enum i3c_addr_slot_status status; + u8 addr; + + for (addr = start_addr; addr < I3C_MAX_ADDR; addr++) { + status = i3c_bus_get_addr_slot_status(bus, addr); + if (status == I3C_ADDR_SLOT_FREE) + return addr; + } + + return -ENOMEM; +} + +static void i3c_bus_init_addrslots(struct i3c_bus *bus) +{ + int i; + + /* Addresses 0 to 7 are reserved. */ + for (i = 0; i < 8; i++) + i3c_bus_set_addr_slot_status(bus, i, I3C_ADDR_SLOT_RSVD); + + /* + * Reserve broadcast address and all addresses that might collide + * with the broadcast address when facing a single bit error. + */ + i3c_bus_set_addr_slot_status(bus, I3C_BROADCAST_ADDR, + I3C_ADDR_SLOT_RSVD); + for (i = 0; i < 7; i++) + i3c_bus_set_addr_slot_status(bus, I3C_BROADCAST_ADDR ^ BIT(i), + I3C_ADDR_SLOT_RSVD); +} + +static int i3c_bus_init(struct i3c_bus *i3cbus) +{ + int ret; + struct idr i3c_bus_idr = {}; + + init_rwsem(&i3cbus->lock); + INIT_LIST_HEAD(&i3cbus->devs.i2c); + INIT_LIST_HEAD(&i3cbus->devs.i3c); + i3c_bus_init_addrslots(i3cbus); + i3cbus->mode = I3C_BUS_MODE_PURE; + + mutex_lock(&i3c_core_lock); + ret = idr_alloc(&i3c_bus_idr, i3cbus, 0, 0, GFP_KERNEL); + mutex_unlock(&i3c_core_lock); + + if (ret < 0) + return ret; + + i3cbus->id = ret; + + return 0; +} + +static int i3c_bus_set_mode(struct i3c_bus *i3cbus, enum i3c_bus_mode mode, + unsigned long max_i2c_scl_rate) +{ + struct i3c_master_controller *master = i3c_bus_to_i3c_master(i3cbus); + + i3cbus->mode = mode; + + switch (i3cbus->mode) { + case I3C_BUS_MODE_PURE: + if (!i3cbus->scl_rate.i3c) + i3cbus->scl_rate.i3c = I3C_BUS_TYP_I3C_SCL_RATE; + break; + case I3C_BUS_MODE_MIXED_FAST: + case I3C_BUS_MODE_MIXED_LIMITED: + if (!i3cbus->scl_rate.i3c) + i3cbus->scl_rate.i3c = I3C_BUS_TYP_I3C_SCL_RATE; + if (!i3cbus->scl_rate.i2c) + i3cbus->scl_rate.i2c = max_i2c_scl_rate; + break; + case I3C_BUS_MODE_MIXED_SLOW: + if (!i3cbus->scl_rate.i2c) + i3cbus->scl_rate.i2c = max_i2c_scl_rate; + if (!i3cbus->scl_rate.i3c || + i3cbus->scl_rate.i3c > i3cbus->scl_rate.i2c) + i3cbus->scl_rate.i3c = i3cbus->scl_rate.i2c; + break; + default: + return -EINVAL; + } + + dev_dbg(master->dev, "i2c-scl = %ld Hz i3c-scl = %ld Hz\n", + i3cbus->scl_rate.i2c, i3cbus->scl_rate.i3c); + + /* + * I3C/I2C frequency may have been overridden, check that user-provided + * values are not exceeding max possible frequency. + */ + if (i3cbus->scl_rate.i3c > I3C_BUS_MAX_I3C_SCL_RATE || + i3cbus->scl_rate.i2c > I3C_BUS_I2C_FM_PLUS_SCL_RATE) + return -EINVAL; + + return 0; +} + +static void i3c_master_free_i2c_dev(struct i2c_dev_desc *dev) +{ + kfree(dev); +} + +static struct i2c_dev_desc * +i3c_master_alloc_i2c_dev(struct i3c_master_controller *master, + const struct i2c_dev_boardinfo *boardinfo) +{ + struct i2c_dev_desc *dev; + + dev = kzalloc(sizeof(*dev), GFP_KERNEL); + if (!dev) + return ERR_PTR(-ENOMEM); + + dev->common.master = master; + dev->boardinfo = boardinfo; + dev->addr = boardinfo->base.addr; + dev->lvr = boardinfo->lvr; + + return dev; +} + +static void *i3c_ccc_cmd_dest_init(struct i3c_ccc_cmd_dest *dest, u8 addr, + u16 payloadlen) +{ + dest->addr = addr; + dest->payload.len = payloadlen; + if (payloadlen) + dest->payload.data = kzalloc(payloadlen, GFP_KERNEL); + else + dest->payload.data = NULL; + + return dest->payload.data; +} + +static void i3c_ccc_cmd_dest_cleanup(struct i3c_ccc_cmd_dest *dest) +{ + kfree(dest->payload.data); +} + +static void i3c_ccc_cmd_init(struct i3c_ccc_cmd *cmd, bool rnw, u8 id, + struct i3c_ccc_cmd_dest *dests, + unsigned int ndests) +{ + cmd->rnw = rnw ? 1 : 0; + cmd->id = id; + cmd->dests = dests; + cmd->ndests = ndests; + cmd->err = I3C_ERROR_UNKNOWN; +} + +static int i3c_master_send_ccc_cmd_locked(struct i3c_master_controller *master, + struct i3c_ccc_cmd *cmd) +{ + int ret; + + if (!cmd || !master) + return -EINVAL; + + if (WARN_ON(master->init_done)) + return -EINVAL; + + if (!master->ops->send_ccc_cmd) + return -EOPNOTSUPP; + + if ((cmd->id & I3C_CCC_DIRECT) && (!cmd->dests || !cmd->ndests)) + return -EINVAL; + + if (master->ops->supports_ccc_cmd && + !master->ops->supports_ccc_cmd(master, cmd)) + return -EOPNOTSUPP; + + ret = master->ops->send_ccc_cmd(master, cmd); + if (ret) { + if (cmd->err != I3C_ERROR_UNKNOWN) + return cmd->err; + + return ret; + } + + return 0; +} + +/** + * i3c_master_get_free_addr() - get a free address on the bus + * @master: I3C master object + * @start_addr: where to start searching + * + * This function must be called with the bus lock held in write mode. + * + * Return: the first free address starting at @start_addr (included) or -ENOMEM + * if there's no more address available. + */ +int i3c_master_get_free_addr(struct i3c_master_controller *master, + u8 start_addr) +{ + return i3c_bus_get_free_addr(&master->bus, start_addr); +} +EXPORT_SYMBOL_GPL(i3c_master_get_free_addr); + +static void i3c_master_free_i3c_dev(struct i3c_dev_desc *dev) +{ + kfree(dev); +} + +static struct i3c_dev_desc * +i3c_master_alloc_i3c_dev(struct i3c_master_controller *master, + const struct i3c_device_info *info) +{ + struct i3c_dev_desc *dev; + + dev = kzalloc(sizeof(*dev), GFP_KERNEL); + if (!dev) + return ERR_PTR(-ENOMEM); + + dev->common.master = master; + dev->info = *info; + + return dev; +} + +static int i3c_master_rstdaa_locked(struct i3c_master_controller *master, + u8 addr) +{ + enum i3c_addr_slot_status addrstat; + struct i3c_ccc_cmd_dest dest; + struct i3c_ccc_cmd cmd; + int ret; + + if (!master) + return -EINVAL; + + addrstat = i3c_bus_get_addr_slot_status(&master->bus, addr); + if (addr != I3C_BROADCAST_ADDR && addrstat != I3C_ADDR_SLOT_I3C_DEV) + return -EINVAL; + + i3c_ccc_cmd_dest_init(&dest, addr, 0); + i3c_ccc_cmd_init(&cmd, false, + I3C_CCC_RSTDAA(addr == I3C_BROADCAST_ADDR), + &dest, 1); + ret = i3c_master_send_ccc_cmd_locked(master, &cmd); + + i3c_ccc_cmd_dest_cleanup(&dest); + + if (ret) + ret = cmd.err; + + return ret; +} + +/** + * i3c_master_entdaa_locked() - start a DAA (Dynamic Address Assignment) + * procedure + * @master: master used to send frames on the bus + * + * Send a ENTDAA CCC command to start a DAA procedure. + * + * Note that this function only sends the ENTDAA CCC command, all the logic + * behind dynamic address assignment has to be handled in the I3C master + * driver. + * + * This function must be called with the bus lock held in write mode. + * + * Return: 0 in case of success, a positive I3C error code if the error is + * one of the official Mx error codes, and a negative error code otherwise. + */ +int i3c_master_entdaa_locked(struct i3c_master_controller *master) +{ + struct i3c_ccc_cmd_dest dest; + struct i3c_ccc_cmd cmd; + int ret; + + i3c_ccc_cmd_dest_init(&dest, I3C_BROADCAST_ADDR, 0); + i3c_ccc_cmd_init(&cmd, false, I3C_CCC_ENTDAA, &dest, 1); + ret = i3c_master_send_ccc_cmd_locked(master, &cmd); + i3c_ccc_cmd_dest_cleanup(&dest); + + return ret; +} +EXPORT_SYMBOL_GPL(i3c_master_entdaa_locked); + +static int i3c_master_enec_disec_locked(struct i3c_master_controller *master, + u8 addr, bool enable, u8 evts) +{ + struct i3c_ccc_events *events; + struct i3c_ccc_cmd_dest dest; + struct i3c_ccc_cmd cmd; + int ret; + + events = i3c_ccc_cmd_dest_init(&dest, addr, sizeof(*events)); + if (!events) + return -ENOMEM; + + events->events = evts; + i3c_ccc_cmd_init(&cmd, false, + enable ? + I3C_CCC_ENEC(addr == I3C_BROADCAST_ADDR) : + I3C_CCC_DISEC(addr == I3C_BROADCAST_ADDR), + &dest, 1); + ret = i3c_master_send_ccc_cmd_locked(master, &cmd); + i3c_ccc_cmd_dest_cleanup(&dest); + + if (ret) + ret = cmd.err; + + return ret; +} + +/** + * i3c_master_disec_locked() - send a DISEC CCC command + * @master: master used to send frames on the bus + * @addr: a valid I3C slave address or %I3C_BROADCAST_ADDR + * @evts: events to disable + * + * Send a DISEC CCC command to disable some or all events coming from a + * specific slave, or all devices if @addr is %I3C_BROADCAST_ADDR. + * + * This function must be called with the bus lock held in write mode. + * + * Return: 0 in case of success, a positive I3C error code if the error is + * one of the official Mx error codes, and a negative error code otherwise. + */ +int i3c_master_disec_locked(struct i3c_master_controller *master, u8 addr, + u8 evts) +{ + return i3c_master_enec_disec_locked(master, addr, false, evts); +} +EXPORT_SYMBOL_GPL(i3c_master_disec_locked); + +/** + * i3c_master_enec_locked() - send an ENEC CCC command + * @master: master used to send frames on the bus + * @addr: a valid I3C slave address or %I3C_BROADCAST_ADDR + * @evts: events to disable + * + * Sends an ENEC CCC command to enable some or all events coming from a + * specific slave, or all devices if @addr is %I3C_BROADCAST_ADDR. + * + * This function must be called with the bus lock held in write mode. + * + * Return: 0 in case of success, a positive I3C error code if the error is + * one of the official Mx error codes, and a negative error code otherwise. + */ +int i3c_master_enec_locked(struct i3c_master_controller *master, u8 addr, + u8 evts) +{ + return i3c_master_enec_disec_locked(master, addr, true, evts); +} +EXPORT_SYMBOL_GPL(i3c_master_enec_locked); + +static int i3c_master_setda_locked(struct i3c_master_controller *master, + u8 oldaddr, u8 newaddr, bool setdasa) +{ + struct i3c_ccc_cmd_dest dest; + struct i3c_ccc_setda *setda; + struct i3c_ccc_cmd cmd; + int ret; + + if (!oldaddr || !newaddr) + return -EINVAL; + + setda = i3c_ccc_cmd_dest_init(&dest, oldaddr, sizeof(*setda)); + if (!setda) + return -ENOMEM; + + setda->addr = newaddr << 1; + i3c_ccc_cmd_init(&cmd, false, + setdasa ? I3C_CCC_SETDASA : I3C_CCC_SETNEWDA, + &dest, 1); + ret = i3c_master_send_ccc_cmd_locked(master, &cmd); + i3c_ccc_cmd_dest_cleanup(&dest); + + return ret; +} + +static int i3c_master_setdasa_locked(struct i3c_master_controller *master, + u8 static_addr, u8 dyn_addr) +{ + return i3c_master_setda_locked(master, static_addr, dyn_addr, true); +} + +static int i3c_master_setnewda_locked(struct i3c_master_controller *master, + u8 oldaddr, u8 newaddr) +{ + return i3c_master_setda_locked(master, oldaddr, newaddr, false); +} + +static int i3c_master_getmrl_locked(struct i3c_master_controller *master, + struct i3c_device_info *info) +{ + struct i3c_ccc_cmd_dest dest; + struct i3c_ccc_mrl *mrl; + struct i3c_ccc_cmd cmd; + int ret; + + mrl = i3c_ccc_cmd_dest_init(&dest, info->dyn_addr, sizeof(*mrl)); + if (!mrl) + return -ENOMEM; + + /* + * When the device does not have IBI payload GETMRL only returns 2 + * bytes of data. + */ + if (!(info->bcr & I3C_BCR_IBI_PAYLOAD)) + dest.payload.len -= 1; + + i3c_ccc_cmd_init(&cmd, true, I3C_CCC_GETMRL, &dest, 1); + ret = i3c_master_send_ccc_cmd_locked(master, &cmd); + if (ret) + goto out; + + switch (dest.payload.len) { + case 3: + info->max_ibi_len = mrl->ibi_len; + fallthrough; + case 2: + info->max_read_len = be16_to_cpu(mrl->read_len); + break; + default: + ret = -EIO; + goto out; + } + +out: + i3c_ccc_cmd_dest_cleanup(&dest); + + return ret; +} + +static int i3c_master_getmwl_locked(struct i3c_master_controller *master, + struct i3c_device_info *info) +{ + struct i3c_ccc_cmd_dest dest; + struct i3c_ccc_mwl *mwl; + struct i3c_ccc_cmd cmd; + int ret; + + mwl = i3c_ccc_cmd_dest_init(&dest, info->dyn_addr, sizeof(*mwl)); + if (!mwl) + return -ENOMEM; + + i3c_ccc_cmd_init(&cmd, true, I3C_CCC_GETMWL, &dest, 1); + ret = i3c_master_send_ccc_cmd_locked(master, &cmd); + if (ret) + goto out; + + if (dest.payload.len != sizeof(*mwl)) { + ret = -EIO; + goto out; + } + + info->max_write_len = be16_to_cpu(mwl->len); + +out: + i3c_ccc_cmd_dest_cleanup(&dest); + + return ret; +} + +static int i3c_master_getmxds_locked(struct i3c_master_controller *master, + struct i3c_device_info *info) +{ + struct i3c_ccc_getmxds *getmaxds; + struct i3c_ccc_cmd_dest dest; + struct i3c_ccc_cmd cmd; + int ret; + + getmaxds = i3c_ccc_cmd_dest_init(&dest, info->dyn_addr, + sizeof(*getmaxds)); + if (!getmaxds) + return -ENOMEM; + + i3c_ccc_cmd_init(&cmd, true, I3C_CCC_GETMXDS, &dest, 1); + ret = i3c_master_send_ccc_cmd_locked(master, &cmd); + if (ret) + goto out; + + if (dest.payload.len != 2 && dest.payload.len != 5) { + ret = -EIO; + goto out; + } + + info->max_read_ds = getmaxds->maxrd; + info->max_write_ds = getmaxds->maxwr; + if (dest.payload.len == 5) + info->max_read_turnaround = getmaxds->maxrdturn[0] | + ((u32)getmaxds->maxrdturn[1] << 8) | + ((u32)getmaxds->maxrdturn[2] << 16); + +out: + i3c_ccc_cmd_dest_cleanup(&dest); + + return ret; +} + +static int i3c_master_gethdrcap_locked(struct i3c_master_controller *master, + struct i3c_device_info *info) +{ + struct i3c_ccc_gethdrcap *gethdrcap; + struct i3c_ccc_cmd_dest dest; + struct i3c_ccc_cmd cmd; + int ret; + + gethdrcap = i3c_ccc_cmd_dest_init(&dest, info->dyn_addr, + sizeof(*gethdrcap)); + if (!gethdrcap) + return -ENOMEM; + + i3c_ccc_cmd_init(&cmd, true, I3C_CCC_GETHDRCAP, &dest, 1); + ret = i3c_master_send_ccc_cmd_locked(master, &cmd); + if (ret) + goto out; + + if (dest.payload.len != 1) { + ret = -EIO; + goto out; + } + + info->hdr_cap = gethdrcap->modes; + +out: + i3c_ccc_cmd_dest_cleanup(&dest); + + return ret; +} + +static int i3c_master_getpid_locked(struct i3c_master_controller *master, + struct i3c_device_info *info) +{ + struct i3c_ccc_getpid *getpid; + struct i3c_ccc_cmd_dest dest; + struct i3c_ccc_cmd cmd; + int ret, i; + + getpid = i3c_ccc_cmd_dest_init(&dest, info->dyn_addr, sizeof(*getpid)); + if (!getpid) + return -ENOMEM; + + i3c_ccc_cmd_init(&cmd, true, I3C_CCC_GETPID, &dest, 1); + ret = i3c_master_send_ccc_cmd_locked(master, &cmd); + if (ret) + goto out; + + info->pid = 0; + for (i = 0; i < sizeof(getpid->pid); i++) { + int sft = (sizeof(getpid->pid) - i - 1) * 8; + + info->pid |= (u64)getpid->pid[i] << sft; + } + +out: + i3c_ccc_cmd_dest_cleanup(&dest); + + return ret; +} + +static int i3c_master_getbcr_locked(struct i3c_master_controller *master, + struct i3c_device_info *info) +{ + struct i3c_ccc_getbcr *getbcr; + struct i3c_ccc_cmd_dest dest; + struct i3c_ccc_cmd cmd; + int ret; + + getbcr = i3c_ccc_cmd_dest_init(&dest, info->dyn_addr, sizeof(*getbcr)); + if (!getbcr) + return -ENOMEM; + + i3c_ccc_cmd_init(&cmd, true, I3C_CCC_GETBCR, &dest, 1); + ret = i3c_master_send_ccc_cmd_locked(master, &cmd); + if (ret) + goto out; + + info->bcr = getbcr->bcr; + +out: + i3c_ccc_cmd_dest_cleanup(&dest); + + return ret; +} + +static int i3c_master_getdcr_locked(struct i3c_master_controller *master, + struct i3c_device_info *info) +{ + struct i3c_ccc_getdcr *getdcr; + struct i3c_ccc_cmd_dest dest; + struct i3c_ccc_cmd cmd; + int ret; + + getdcr = i3c_ccc_cmd_dest_init(&dest, info->dyn_addr, sizeof(*getdcr)); + if (!getdcr) + return -ENOMEM; + + i3c_ccc_cmd_init(&cmd, true, I3C_CCC_GETDCR, &dest, 1); + ret = i3c_master_send_ccc_cmd_locked(master, &cmd); + if (ret) + goto out; + + info->dcr = getdcr->dcr; + +out: + i3c_ccc_cmd_dest_cleanup(&dest); + + return ret; +} + +static int i3c_master_retrieve_dev_info(struct i3c_dev_desc *dev) +{ + struct i3c_master_controller *master = i3c_dev_get_master(dev); + enum i3c_addr_slot_status slot_status; + int ret; + + if (!dev->info.dyn_addr) + return -EINVAL; + + slot_status = i3c_bus_get_addr_slot_status(&master->bus, + dev->info.dyn_addr); + if (slot_status == I3C_ADDR_SLOT_RSVD || + slot_status == I3C_ADDR_SLOT_I2C_DEV) + return -EINVAL; + + ret = i3c_master_getpid_locked(master, &dev->info); + if (ret) + return ret; + + ret = i3c_master_getbcr_locked(master, &dev->info); + if (ret) + return ret; + + ret = i3c_master_getdcr_locked(master, &dev->info); + if (ret) + return ret; + + if (dev->info.bcr & I3C_BCR_MAX_DATA_SPEED_LIM) { + ret = i3c_master_getmxds_locked(master, &dev->info); + if (ret) + return ret; + } + + if (dev->info.bcr & I3C_BCR_IBI_PAYLOAD) + dev->info.max_ibi_len = 1; + + i3c_master_getmrl_locked(master, &dev->info); + i3c_master_getmwl_locked(master, &dev->info); + + if (dev->info.bcr & I3C_BCR_HDR_CAP) { + ret = i3c_master_gethdrcap_locked(master, &dev->info); + if (ret) + return ret; + } + + return 0; +} + +static void i3c_master_put_i3c_addrs(struct i3c_dev_desc *dev) +{ + struct i3c_master_controller *master = i3c_dev_get_master(dev); + + if (dev->info.static_addr) + i3c_bus_set_addr_slot_status(&master->bus, + dev->info.static_addr, + I3C_ADDR_SLOT_FREE); + + if (dev->info.dyn_addr) + i3c_bus_set_addr_slot_status(&master->bus, dev->info.dyn_addr, + I3C_ADDR_SLOT_FREE); + + if (dev->boardinfo && dev->boardinfo->init_dyn_addr) + i3c_bus_set_addr_slot_status(&master->bus, dev->info.dyn_addr, + I3C_ADDR_SLOT_FREE); +} + +static int i3c_master_get_i3c_addrs(struct i3c_dev_desc *dev) +{ + struct i3c_master_controller *master = i3c_dev_get_master(dev); + enum i3c_addr_slot_status status; + + if (!dev->info.static_addr && !dev->info.dyn_addr) + return 0; + + if (dev->info.static_addr) { + status = i3c_bus_get_addr_slot_status(&master->bus, + dev->info.static_addr); + if (status != I3C_ADDR_SLOT_FREE) + return -EBUSY; + + i3c_bus_set_addr_slot_status(&master->bus, + dev->info.static_addr, + I3C_ADDR_SLOT_I3C_DEV); + } + + /* + * ->init_dyn_addr should have been reserved before that, so, if we're + * trying to apply a pre-reserved dynamic address, we should not try + * to reserve the address slot a second time. + */ + if (dev->info.dyn_addr && + (!dev->boardinfo || + dev->boardinfo->init_dyn_addr != dev->info.dyn_addr)) { + status = i3c_bus_get_addr_slot_status(&master->bus, + dev->info.dyn_addr); + if (status != I3C_ADDR_SLOT_FREE) + goto err_release_static_addr; + + i3c_bus_set_addr_slot_status(&master->bus, dev->info.dyn_addr, + I3C_ADDR_SLOT_I3C_DEV); + } + + return 0; + +err_release_static_addr: + if (dev->info.static_addr) + i3c_bus_set_addr_slot_status(&master->bus, + dev->info.static_addr, + I3C_ADDR_SLOT_FREE); + + return -EBUSY; +} + +static int i3c_master_attach_i3c_dev(struct i3c_master_controller *master, + struct i3c_dev_desc *dev) +{ + int ret; + + /* + * We don't attach devices to the controller until they are + * addressable on the bus. + */ + if (!dev->info.static_addr && !dev->info.dyn_addr) + return 0; + + ret = i3c_master_get_i3c_addrs(dev); + if (ret) + return ret; + + /* Do not attach the master device itself. */ + if (master->this != dev && master->ops->attach_i3c_dev) { + ret = master->ops->attach_i3c_dev(dev); + if (ret) { + i3c_master_put_i3c_addrs(dev); + return ret; + } + } + + list_add_tail(&dev->common.node, &master->bus.devs.i3c); + + return 0; +} + +static int i3c_master_reattach_i3c_dev(struct i3c_dev_desc *dev, + u8 old_dyn_addr) +{ + struct i3c_master_controller *master = i3c_dev_get_master(dev); + enum i3c_addr_slot_status status; + int ret; + + if (dev->info.dyn_addr != old_dyn_addr && + (!dev->boardinfo || + dev->info.dyn_addr != dev->boardinfo->init_dyn_addr)) { + status = i3c_bus_get_addr_slot_status(&master->bus, + dev->info.dyn_addr); + if (status != I3C_ADDR_SLOT_FREE) + return -EBUSY; + i3c_bus_set_addr_slot_status(&master->bus, + dev->info.dyn_addr, + I3C_ADDR_SLOT_I3C_DEV); + } + + if (master->ops->reattach_i3c_dev) { + ret = master->ops->reattach_i3c_dev(dev, old_dyn_addr); + if (ret) { + i3c_master_put_i3c_addrs(dev); + return ret; + } + } + + return 0; +} + +static void i3c_master_detach_i3c_dev(struct i3c_dev_desc *dev) +{ + struct i3c_master_controller *master = i3c_dev_get_master(dev); + + /* Do not detach the master device itself. */ + if (master->this != dev && master->ops->detach_i3c_dev) + master->ops->detach_i3c_dev(dev); + + i3c_master_put_i3c_addrs(dev); + list_del(&dev->common.node); +} + +static int i3c_master_attach_i2c_dev(struct i3c_master_controller *master, + struct i2c_dev_desc *dev) +{ + int ret; + + if (master->ops->attach_i2c_dev) { + ret = master->ops->attach_i2c_dev(dev); + if (ret) + return ret; + } + + list_add_tail(&dev->common.node, &master->bus.devs.i2c); + + return 0; +} + +static void i3c_master_detach_i2c_dev(struct i2c_dev_desc *dev) +{ + struct i3c_master_controller *master = i2c_dev_get_master(dev); + + list_del(&dev->common.node); + + if (master->ops->detach_i2c_dev) + master->ops->detach_i2c_dev(dev); +} + +static int i3c_master_early_i3c_dev_add(struct i3c_master_controller *master, + struct i3c_dev_boardinfo *boardinfo) +{ + struct i3c_device_info info = { + .static_addr = boardinfo->static_addr, + }; + struct i3c_dev_desc *i3cdev; + int ret; + + i3cdev = i3c_master_alloc_i3c_dev(master, &info); + if (IS_ERR(i3cdev)) + return -ENOMEM; + + i3cdev->boardinfo = boardinfo; + + ret = i3c_master_attach_i3c_dev(master, i3cdev); + if (ret) + goto err_free_dev; + + ret = i3c_master_setdasa_locked(master, i3cdev->info.static_addr, + i3cdev->boardinfo->init_dyn_addr); + if (ret) + goto err_detach_dev; + + i3cdev->info.dyn_addr = i3cdev->boardinfo->init_dyn_addr; + ret = i3c_master_reattach_i3c_dev(i3cdev, 0); + if (ret) + goto err_rstdaa; + + ret = i3c_master_retrieve_dev_info(i3cdev); + if (ret) + goto err_rstdaa; + + return 0; + +err_rstdaa: + i3c_master_rstdaa_locked(master, i3cdev->boardinfo->init_dyn_addr); +err_detach_dev: + i3c_master_detach_i3c_dev(i3cdev); +err_free_dev: + i3c_master_free_i3c_dev(i3cdev); + + return ret; +} + +static void +i3c_master_register_new_i3c_devs(struct i3c_master_controller *master) +{ + struct i3c_dev_desc *desc; + int ret; + + if (!master->init_done) + return; + + i3c_bus_for_each_i3cdev(&master->bus, desc) { + if (desc->dev || !desc->info.dyn_addr || desc == master->this) + continue; + + desc->dev = kzalloc(sizeof(*desc->dev), GFP_KERNEL); + if (!desc->dev) + continue; + + desc->dev->bus = &master->bus; + desc->dev->desc = desc; + desc->dev->dev.parent = master->dev; + dev_set_name(&desc->dev->dev, "%d-%llx", master->bus.id, + desc->info.pid); + + ret = device_register(&desc->dev->dev); + if (ret) + dev_err(master->dev, + "Failed to add I3C device (err = %d)\n", ret); + } +} + +/** + * i3c_master_do_daa() - do a DAA (Dynamic Address Assignment) + * @master: master doing the DAA + * + * This function is instantiating an I3C device object and adding it to the + * I3C device list. All device information are automatically retrieved using + * standard CCC commands. + * + * The I3C device object is returned in case the master wants to attach + * private data to it using i3c_dev_set_master_data(). + * + * This function must be called with the bus lock held in write mode. + * + * Return: a 0 in case of success, an negative error code otherwise. + */ +int i3c_master_do_daa(struct i3c_master_controller *master) +{ + int ret; + + i3c_bus_maintenance_lock(&master->bus); + ret = master->ops->do_daa(master); + i3c_bus_maintenance_unlock(&master->bus); + + if (ret) + return ret; + + i3c_bus_normaluse_lock(&master->bus); + i3c_master_register_new_i3c_devs(master); + i3c_bus_normaluse_unlock(&master->bus); + + return 0; +} +EXPORT_SYMBOL_GPL(i3c_master_do_daa); + +/** + * i3c_master_set_info() - set master device information + * @master: master used to send frames on the bus + * @info: I3C device information + * + * Set master device info. This should be called from + * &i3c_master_controller_ops->bus_init(). + * + * Not all &i3c_device_info fields are meaningful for a master device. + * Here is a list of fields that should be properly filled: + * + * - &i3c_device_info->dyn_addr + * - &i3c_device_info->bcr + * - &i3c_device_info->dcr + * - &i3c_device_info->pid + * - &i3c_device_info->hdr_cap if %I3C_BCR_HDR_CAP bit is set in + * &i3c_device_info->bcr + * + * This function must be called with the bus lock held in maintenance mode. + * + * Return: 0 if @info contains valid information (not every piece of + * information can be checked, but we can at least make sure @info->dyn_addr + * and @info->bcr are correct), -EINVAL otherwise. + */ +int i3c_master_set_info(struct i3c_master_controller *master, + const struct i3c_device_info *info) +{ + struct i3c_dev_desc *i3cdev; + int ret; + + if (!i3c_bus_dev_addr_is_avail(&master->bus, info->dyn_addr)) + return -EINVAL; + + if (I3C_BCR_DEVICE_ROLE(info->bcr) == I3C_BCR_I3C_MASTER && + master->secondary) + return -EINVAL; + + if (master->this) + return -EINVAL; + + i3cdev = i3c_master_alloc_i3c_dev(master, info); + if (IS_ERR(i3cdev)) + return PTR_ERR(i3cdev); + + master->this = i3cdev; + master->bus.cur_master = master->this; + + ret = i3c_master_attach_i3c_dev(master, i3cdev); + if (ret) + goto err_free_dev; + + return 0; + +err_free_dev: + i3c_master_free_i3c_dev(i3cdev); + + return ret; +} +EXPORT_SYMBOL_GPL(i3c_master_set_info); + +static void i3c_master_detach_free_devs(struct i3c_master_controller *master) +{ + struct i3c_dev_desc *i3cdev, *i3ctmp; + struct i2c_dev_desc *i2cdev, *i2ctmp; + + list_for_each_entry_safe(i3cdev, i3ctmp, &master->bus.devs.i3c, + common.node) { + i3c_master_detach_i3c_dev(i3cdev); + + if (i3cdev->boardinfo && i3cdev->boardinfo->init_dyn_addr) + i3c_bus_set_addr_slot_status(&master->bus, + i3cdev->boardinfo->init_dyn_addr, + I3C_ADDR_SLOT_FREE); + + i3c_master_free_i3c_dev(i3cdev); + } + + list_for_each_entry_safe(i2cdev, i2ctmp, &master->bus.devs.i2c, + common.node) { + i3c_master_detach_i2c_dev(i2cdev); + i3c_bus_set_addr_slot_status(&master->bus, + i2cdev->addr, + I3C_ADDR_SLOT_FREE); + i3c_master_free_i2c_dev(i2cdev); + } +} + +/** + * i3c_master_bus_init() - initialize an I3C bus + * @master: main master initializing the bus + * + * This function is following all initialisation steps described in the I3C + * specification: + * + * 1. Attach I2C devs to the master so that the master can fill its internal + * device table appropriately + * + * 2. Call &i3c_master_controller_ops->bus_init() method to initialize + * the master controller. That's usually where the bus mode is selected + * (pure bus or mixed fast/slow bus) + * + * 3. Instruct all devices on the bus to drop their dynamic address. This is + * particularly important when the bus was previously configured by someone + * else (for example the bootloader) + * + * 4. Disable all slave events. + * + * 5. Reserve address slots for I3C devices with init_dyn_addr. And if devices + * also have static_addr, try to pre-assign dynamic addresses requested by + * the FW with SETDASA and attach corresponding statically defined I3C + * devices to the master. + * + * 6. Do a DAA (Dynamic Address Assignment) to assign dynamic addresses to all + * remaining I3C devices + * + * Once this is done, all I3C and I2C devices should be usable. + * + * Return: a 0 in case of success, an negative error code otherwise. + */ +static int i3c_master_bus_init(struct i3c_master_controller *master) +{ + enum i3c_addr_slot_status status; + struct i2c_dev_boardinfo *i2cboardinfo; + struct i3c_dev_boardinfo *i3cboardinfo; + struct i2c_dev_desc *i2cdev; + int ret; + + /* + * First attach all devices with static definitions provided by the + * FW. + */ + list_for_each_entry(i2cboardinfo, &master->boardinfo.i2c, node) { + status = i3c_bus_get_addr_slot_status(&master->bus, + i2cboardinfo->base.addr); + if (status != I3C_ADDR_SLOT_FREE) { + ret = -EBUSY; + goto err_detach_devs; + } + + i3c_bus_set_addr_slot_status(&master->bus, + i2cboardinfo->base.addr, + I3C_ADDR_SLOT_I2C_DEV); + + i2cdev = i3c_master_alloc_i2c_dev(master, i2cboardinfo); + if (IS_ERR(i2cdev)) { + ret = PTR_ERR(i2cdev); + goto err_detach_devs; + } + + ret = i3c_master_attach_i2c_dev(master, i2cdev); + if (ret) { + i3c_master_free_i2c_dev(i2cdev); + goto err_detach_devs; + } + } + + /* + * Now execute the controller specific ->bus_init() routine, which + * might configure its internal logic to match the bus limitations. + */ + ret = master->ops->bus_init(master); + if (ret) + goto err_detach_devs; + + /* + * The master device should have been instantiated in ->bus_init(), + * complain if this was not the case. + */ + if (!master->this) { + dev_err(master->dev, + "master_set_info() was not called in ->bus_init()\n"); + ret = -EINVAL; + goto err_bus_cleanup; + } + + /* + * Reset all dynamic address that may have been assigned before + * (assigned by the bootloader for example). + */ + ret = i3c_master_rstdaa_locked(master, I3C_BROADCAST_ADDR); + if (ret && ret != I3C_ERROR_M2) + goto err_bus_cleanup; + + /* Disable all slave events before starting DAA. */ + ret = i3c_master_disec_locked(master, I3C_BROADCAST_ADDR, + I3C_CCC_EVENT_SIR | I3C_CCC_EVENT_MR | + I3C_CCC_EVENT_HJ); + if (ret && ret != I3C_ERROR_M2) + goto err_bus_cleanup; + + /* + * Reserve init_dyn_addr first, and then try to pre-assign dynamic + * address and retrieve device information if needed. + * In case pre-assign dynamic address fails, setting dynamic address to + * the requested init_dyn_addr is retried after DAA is done in + * i3c_master_add_i3c_dev_locked(). + */ + list_for_each_entry(i3cboardinfo, &master->boardinfo.i3c, node) { + /* + * We don't reserve a dynamic address for devices that + * don't explicitly request one. + */ + if (!i3cboardinfo->init_dyn_addr) + continue; + + ret = i3c_bus_get_addr_slot_status(&master->bus, + i3cboardinfo->init_dyn_addr); + if (ret != I3C_ADDR_SLOT_FREE) { + ret = -EBUSY; + goto err_rstdaa; + } + + i3c_bus_set_addr_slot_status(&master->bus, + i3cboardinfo->init_dyn_addr, + I3C_ADDR_SLOT_I3C_DEV); + + /* + * Only try to create/attach devices that have a static + * address. Other devices will be created/attached when + * DAA happens, and the requested dynamic address will + * be set using SETNEWDA once those devices become + * addressable. + */ + + if (i3cboardinfo->static_addr) + i3c_master_early_i3c_dev_add(master, i3cboardinfo); + } + + ret = i3c_master_do_daa(master); + if (ret) + goto err_rstdaa; + + return 0; + +err_rstdaa: + i3c_master_rstdaa_locked(master, I3C_BROADCAST_ADDR); + +err_bus_cleanup: + if (master->ops->bus_cleanup) + master->ops->bus_cleanup(master); + +err_detach_devs: + i3c_master_detach_free_devs(master); + + return ret; +} + +static void i3c_master_attach_boardinfo(struct i3c_dev_desc *i3cdev) +{ + struct i3c_master_controller *master = i3cdev->common.master; + struct i3c_dev_boardinfo *i3cboardinfo; + + list_for_each_entry(i3cboardinfo, &master->boardinfo.i3c, node) { + if (i3cdev->info.pid != i3cboardinfo->pid) + continue; + + i3cdev->boardinfo = i3cboardinfo; + i3cdev->info.static_addr = i3cboardinfo->static_addr; + return; + } +} + +static struct i3c_dev_desc * +i3c_master_search_i3c_dev_duplicate(struct i3c_dev_desc *refdev) +{ + struct i3c_master_controller *master = i3c_dev_get_master(refdev); + struct i3c_dev_desc *i3cdev; + + i3c_bus_for_each_i3cdev(&master->bus, i3cdev) { + if (i3cdev != refdev && i3cdev->info.pid == refdev->info.pid) + return i3cdev; + } + + return NULL; +} + +/** + * i3c_master_add_i3c_dev_locked() - add an I3C slave to the bus + * @master: master used to send frames on the bus + * @addr: I3C slave dynamic address assigned to the device + * + * This function is instantiating an I3C device object and adding it to the + * I3C device list. All device information are automatically retrieved using + * standard CCC commands. + * + * The I3C device object is returned in case the master wants to attach + * private data to it using i3c_dev_set_master_data(). + * + * This function must be called with the bus lock held in write mode. + * + * Return: a 0 in case of success, an negative error code otherwise. + */ +int i3c_master_add_i3c_dev_locked(struct i3c_master_controller *master, + u8 addr) +{ + struct i3c_device_info info = { .dyn_addr = addr }; + struct i3c_dev_desc *newdev, *olddev; + u8 old_dyn_addr = addr, expected_dyn_addr; + struct i3c_ibi_setup ibireq = { }; + bool enable_ibi = false; + int ret; + + if (!master) + return -EINVAL; + + newdev = i3c_master_alloc_i3c_dev(master, &info); + if (IS_ERR(newdev)) + return PTR_ERR(newdev); + + master->this = newdev; + ret = i3c_master_attach_i3c_dev(master, newdev); + if (ret) + goto err_free_dev; + + ret = i3c_master_retrieve_dev_info(newdev); + if (ret) + goto err_detach_dev; + + i3c_master_attach_boardinfo(newdev); + + olddev = i3c_master_search_i3c_dev_duplicate(newdev); + if (olddev) { + newdev->dev = olddev->dev; + if (newdev->dev) + newdev->dev->desc = newdev; + + /* + * We need to restore the IBI state too, so let's save the + * IBI information and try to restore them after olddev has + * been detached+released and its IBI has been stopped and + * the associated resources have been freed. + */ + mutex_lock(&olddev->ibi_lock); + if (olddev->ibi) { + ibireq.handler = olddev->ibi->handler; + ibireq.max_payload_len = olddev->ibi->max_payload_len; + ibireq.num_slots = olddev->ibi->num_slots; + + if (olddev->ibi->enabled) { + enable_ibi = true; + i3c_dev_disable_ibi_locked(olddev); + } + + i3c_dev_free_ibi_locked(olddev); + } + mutex_unlock(&olddev->ibi_lock); + + old_dyn_addr = olddev->info.dyn_addr; + + i3c_master_detach_i3c_dev(olddev); + i3c_master_free_i3c_dev(olddev); + } + + ret = i3c_master_reattach_i3c_dev(newdev, old_dyn_addr); + if (ret) + goto err_detach_dev; + + /* + * Depending on our previous state, the expected dynamic address might + * differ: + * - if the device already had a dynamic address assigned, let's try to + * re-apply this one + * - if the device did not have a dynamic address and the firmware + * requested a specific address, pick this one + * - in any other case, keep the address automatically assigned by the + * master + */ + if (old_dyn_addr && old_dyn_addr != newdev->info.dyn_addr) + expected_dyn_addr = old_dyn_addr; + else if (newdev->boardinfo && newdev->boardinfo->init_dyn_addr) + expected_dyn_addr = newdev->boardinfo->init_dyn_addr; + else + expected_dyn_addr = newdev->info.dyn_addr; + + if (newdev->info.dyn_addr != expected_dyn_addr) { + /* + * Try to apply the expected dynamic address. If it fails, keep + * the address assigned by the master. + */ + ret = i3c_master_setnewda_locked(master, + newdev->info.dyn_addr, + expected_dyn_addr); + if (!ret) { + old_dyn_addr = newdev->info.dyn_addr; + newdev->info.dyn_addr = expected_dyn_addr; + i3c_master_reattach_i3c_dev(newdev, old_dyn_addr); + } else { + dev_err(master->dev, + "Failed to assign reserved/old address to device %d%llx", + master->bus.id, newdev->info.pid); + } + } + + /* + * Now is time to try to restore the IBI setup. If we're lucky, + * everything works as before, otherwise, all we can do is complain. + * FIXME: maybe we should add callback to inform the driver that it + * should request the IBI again instead of trying to hide that from + * him. + */ + if (ibireq.handler) { + mutex_lock(&newdev->ibi_lock); + ret = i3c_dev_request_ibi_locked(newdev, &ibireq); + if (ret) { + dev_err(master->dev, + "Failed to request IBI on device %d-%llx", + master->bus.id, newdev->info.pid); + } else if (enable_ibi) { + ret = i3c_dev_enable_ibi_locked(newdev); + if (ret) + dev_err(master->dev, + "Failed to re-enable IBI on device %d-%llx", + master->bus.id, newdev->info.pid); + } + mutex_unlock(&newdev->ibi_lock); + } + + return 0; + +err_detach_dev: + if (newdev->dev && newdev->dev->desc) + newdev->dev->desc = NULL; + + i3c_master_detach_i3c_dev(newdev); + +err_free_dev: + i3c_master_free_i3c_dev(newdev); + + return ret; +} +EXPORT_SYMBOL_GPL(i3c_master_add_i3c_dev_locked); + +#define OF_I3C_REG1_IS_I2C_DEV BIT(31) + +static int +of_i3c_master_add_i3c_boardinfo(struct i3c_master_controller *master, + struct device_node *node, u32 *reg) +{ + struct i3c_dev_boardinfo *boardinfo; + struct udevice *dev = master->dev; + enum i3c_addr_slot_status addrstatus; + u32 init_dyn_addr = 0; + + boardinfo = devm_kzalloc(dev, sizeof(*boardinfo), GFP_KERNEL); + if (!boardinfo) + return -ENOMEM; + + if (reg[0]) { + if (reg[0] > I3C_MAX_ADDR) + return -EINVAL; + + addrstatus = i3c_bus_get_addr_slot_status(&master->bus, + reg[0]); + if (addrstatus != I3C_ADDR_SLOT_FREE) + return -EINVAL; + } + + boardinfo->static_addr = reg[0]; + + if (!dev_read_u32(dev, "assigned-address", &init_dyn_addr)) { + if (init_dyn_addr > I3C_MAX_ADDR) + return -EINVAL; + + addrstatus = i3c_bus_get_addr_slot_status(&master->bus, + init_dyn_addr); + if (addrstatus != I3C_ADDR_SLOT_FREE) + return -EINVAL; + } + + boardinfo->pid = ((u64)reg[1] << 32) | reg[2]; + + if ((boardinfo->pid & GENMASK_ULL(63, 48)) || + I3C_PID_RND_LOWER_32BITS(boardinfo->pid)) + return -EINVAL; + + boardinfo->init_dyn_addr = init_dyn_addr; + boardinfo->of_node = node; + list_add_tail(&boardinfo->node, &master->boardinfo.i3c); + + return 0; +} + +static int of_i3c_master_add_dev(struct i3c_master_controller *master, + struct device_node *node) +{ + u32 reg[3]; + int ret; + + if (!master || !node) + return -EINVAL; + + ret = dev_read_u32_array(master->dev, "reg", reg, ARRAY_SIZE(reg)); + if (ret) + return ret; + + ret = of_i3c_master_add_i3c_boardinfo(master, node, reg); + + return ret; +} + +static int of_populate_i3c_bus(struct i3c_master_controller *master) +{ + struct udevice *dev = master->dev; + struct device_node *node = NULL; + ofnode child; + int ret; + u32 val; + + if (ofnode_valid(dev_ofnode(dev))) + return 0; + + ofnode_for_each_subnode(child, dev_ofnode(dev)) { + ret = of_i3c_master_add_dev(master, node); + if (ret) { + of_node_put(node); + return ret; + } + } + + /* + * The user might want to limit I2C and I3C speed in case some devices + * on the bus are not supporting typical rates, or if the bus topology + * prevents it from using max possible rate. + */ + if (!dev_read_u32(dev, "i2c-scl-hz", &val)) + master->bus.scl_rate.i2c = val; + + if (!dev_read_u32(dev, "i3c-scl-hz", &val)) + master->bus.scl_rate.i3c = val; + + return 0; +} + +static void i3c_master_handle_ibi(struct work_struct *work) +{ + struct i3c_ibi_slot *slot = container_of(work, struct i3c_ibi_slot, + work); + struct i3c_dev_desc *dev = slot->dev; + struct i3c_master_controller *master = i3c_dev_get_master(dev); + struct i3c_ibi_payload payload; + + payload.data = slot->data; + payload.len = slot->len; + + if (dev->dev) + dev->ibi->handler(dev->dev, &payload); + + master->ops->recycle_ibi_slot(dev, slot); +} + +static void i3c_master_init_ibi_slot(struct i3c_dev_desc *dev, + struct i3c_ibi_slot *slot) +{ + slot->dev = dev; + i3c_master_handle_ibi(&slot->work); +} + +struct i3c_generic_ibi_slot { + struct list_head node; + struct i3c_ibi_slot base; +}; + +struct i3c_generic_ibi_pool { + spinlock_t lock; /* spinlock for ibi pool */ + unsigned int num_slots; + struct i3c_generic_ibi_slot *slots; + void *payload_buf; + struct list_head free_slots; + struct list_head pending; +}; + +/** + * i3c_generic_ibi_free_pool() - Free a generic IBI pool + * @pool: the IBI pool to free + * + * Free all IBI slots allated by a generic IBI pool. + */ +void i3c_generic_ibi_free_pool(struct i3c_generic_ibi_pool *pool) +{ + struct i3c_generic_ibi_slot *slot; + unsigned int nslots = 0; + + while (!list_empty(&pool->free_slots)) { + slot = list_first_entry(&pool->free_slots, + struct i3c_generic_ibi_slot, node); + list_del(&slot->node); + nslots++; + } + + /* + * If the number of freed slots is not equal to the number of allocated + * slots we have a leak somewhere. + */ + WARN_ON(nslots != pool->num_slots); + + kfree(pool->payload_buf); + kfree(pool->slots); + kfree(pool); +} +EXPORT_SYMBOL_GPL(i3c_generic_ibi_free_pool); + +/** + * i3c_generic_ibi_alloc_pool() - Create a generic IBI pool + * @dev: the device this pool will be used for + * @req: IBI setup request describing what the device driver expects + * + * Create a generic IBI pool based on the information provided in @req. + * + * Return: a valid IBI pool in case of success, an ERR_PTR() otherwise. + */ +struct i3c_generic_ibi_pool * +i3c_generic_ibi_alloc_pool(struct i3c_dev_desc *dev, + const struct i3c_ibi_setup *req) +{ + struct i3c_generic_ibi_pool *pool; + struct i3c_generic_ibi_slot *slot; + unsigned int i; + int ret; + + pool = kzalloc(sizeof(*pool), GFP_KERNEL); + if (!pool) + return ERR_PTR(-ENOMEM); + + spin_lock_init(&pool->lock); + INIT_LIST_HEAD(&pool->free_slots); + INIT_LIST_HEAD(&pool->pending); + + pool->slots = kcalloc(req->num_slots, sizeof(*slot), GFP_KERNEL); + if (!pool->slots) { + ret = -ENOMEM; + goto err_free_pool; + } + + if (req->max_payload_len) { + pool->payload_buf = kcalloc(req->num_slots, + req->max_payload_len, GFP_KERNEL); + if (!pool->payload_buf) { + ret = -ENOMEM; + goto err_free_pool; + } + } + + for (i = 0; i < req->num_slots; i++) { + slot = &pool->slots[i]; + i3c_master_init_ibi_slot(dev, &slot->base); + + if (req->max_payload_len) + slot->base.data = pool->payload_buf + + (i * req->max_payload_len); + + list_add_tail(&slot->node, &pool->free_slots); + pool->num_slots++; + } + + return pool; + +err_free_pool: + i3c_generic_ibi_free_pool(pool); + return ERR_PTR(ret); +} +EXPORT_SYMBOL_GPL(i3c_generic_ibi_alloc_pool); + +/** + * i3c_generic_ibi_get_free_slot() - Get a free slot from a generic IBI pool + * @pool: the pool to query an IBI slot on + * + * Search for a free slot in a generic IBI pool. + * The slot should be returned to the pool using i3c_generic_ibi_recycle_slot() + * when it's no longer needed. + * + * Return: a pointer to a free slot, or NULL if there's no free slot available. + */ +struct i3c_ibi_slot * +i3c_generic_ibi_get_free_slot(struct i3c_generic_ibi_pool *pool) +{ + struct i3c_generic_ibi_slot *slot; + unsigned long flags; + + spin_lock_irqsave(&pool->lock, flags); + slot = list_first_entry_or_null(&pool->free_slots, + struct i3c_generic_ibi_slot, node); + + if (slot) + list_del(&slot->node); + spin_unlock_irqrestore(&pool->lock, flags); + + return slot ? &slot->base : NULL; +} +EXPORT_SYMBOL_GPL(i3c_generic_ibi_get_free_slot); + +/** + * i3c_generic_ibi_recycle_slot() - Return a slot to a generic IBI pool + * @pool: the pool to return the IBI slot to + * @s: IBI slot to recycle + * + * Add an IBI slot back to its generic IBI pool. Should be called from the + * master driver struct_master_controller_ops->recycle_ibi() method. + */ +void i3c_generic_ibi_recycle_slot(struct i3c_generic_ibi_pool *pool, + struct i3c_ibi_slot *s) +{ + struct i3c_generic_ibi_slot *slot; + unsigned long flags; + + if (!s) + return; + + slot = container_of(s, struct i3c_generic_ibi_slot, base); + spin_lock_irqsave(&pool->lock, flags); + list_add_tail(&slot->node, &pool->free_slots); + spin_unlock_irqrestore(&pool->lock, flags); +} +EXPORT_SYMBOL_GPL(i3c_generic_ibi_recycle_slot); + +static int i3c_master_check_ops(const struct i3c_master_controller_ops *ops) +{ + if (!ops || !ops->bus_init || !ops->priv_xfers || + !ops->send_ccc_cmd || !ops->do_daa || !ops->i2c_xfers) + return -EINVAL; + + if (ops->request_ibi && + (!ops->enable_ibi || !ops->disable_ibi || !ops->free_ibi || + !ops->recycle_ibi_slot)) + return -EINVAL; + + return 0; +} + +/** + * i3c_master_register() - register an I3C master + * @master: master used to send frames on the bus + * @parent: the parent device (the one that provides this I3C master + * controller) + * @ops: the master controller operations + * @secondary: true if you are registering a secondary master. Will return + * -ENOTSUPP if set to true since secondary masters are not yet + * supported + * + * This function takes care of everything for you: + * + * - creates and initializes the I3C bus + * - populates the bus with static I2C devs if @parent->of_node is not + * NULL + * - registers all I3C devices added by the controller during bus + * initialization + * - registers the I2C adapter and all I2C devices + * + * Return: 0 in case of success, a negative error code otherwise. + */ +int i3c_master_register(struct i3c_master_controller *master, + struct udevice *dev, + const struct i3c_master_controller_ops *ops, + bool secondary) +{ + unsigned long i2c_scl_rate = I3C_BUS_I2C_FM_PLUS_SCL_RATE; + struct i3c_bus *i3cbus = i3c_master_get_bus(master); + enum i3c_bus_mode mode = I3C_BUS_MODE_PURE; + struct i2c_dev_boardinfo *i2cbi; + int ret; + + /* We do not support secondary masters yet. */ + if (secondary) + return -EOPNOTSUPP; + + ret = i3c_master_check_ops(ops); + if (ret) + return ret; + + master->dev = dev; + + master->ops = ops; + master->secondary = secondary; + INIT_LIST_HEAD(&master->boardinfo.i2c); + INIT_LIST_HEAD(&master->boardinfo.i3c); + + ret = i3c_bus_init(i3cbus); + if (ret) + return ret; + + dev_set_name(master->dev, "i3c-%d", i3cbus->id); + + ret = of_populate_i3c_bus(master); + if (ret) + return ret; + + list_for_each_entry(i2cbi, &master->boardinfo.i2c, node) { + switch (i2cbi->lvr & I3C_LVR_I2C_INDEX_MASK) { + case I3C_LVR_I2C_INDEX(0): + if (mode < I3C_BUS_MODE_MIXED_FAST) + mode = I3C_BUS_MODE_MIXED_FAST; + break; + case I3C_LVR_I2C_INDEX(1): + if (mode < I3C_BUS_MODE_MIXED_LIMITED) + mode = I3C_BUS_MODE_MIXED_LIMITED; + break; + case I3C_LVR_I2C_INDEX(2): + if (mode < I3C_BUS_MODE_MIXED_SLOW) + mode = I3C_BUS_MODE_MIXED_SLOW; + break; + default: + ret = -EINVAL; + return ret; + } + + if (i2cbi->lvr & I3C_LVR_I2C_FM_MODE) + i2c_scl_rate = I3C_BUS_I2C_FM_SCL_RATE; + } + + ret = i3c_bus_set_mode(i3cbus, mode, i2c_scl_rate); + if (ret) + return ret; + + ret = i3c_master_bus_init(master); + if (ret) + return ret; + + /* + * We're done initializing the bus and the controller, we can now + * register I3C devices discovered during the initial DAA. + */ + master->init_done = true; + i3c_bus_normaluse_lock(&master->bus); + i3c_master_register_new_i3c_devs(master); + i3c_bus_normaluse_unlock(&master->bus); + + return ret; +} +EXPORT_SYMBOL_GPL(i3c_master_register); + +int i3c_dev_do_priv_xfers_locked(struct i3c_dev_desc *dev, + struct i3c_priv_xfer *xfers, + int nxfers) +{ + struct i3c_master_controller *master; + + if (!dev) + return -ENOENT; + + master = i3c_dev_get_master(dev); + if (!master || !xfers) + return -EINVAL; + + if (!master->ops->priv_xfers) + return -EOPNOTSUPP; + + return master->ops->priv_xfers(dev, xfers, nxfers); +} + +int i3c_dev_disable_ibi_locked(struct i3c_dev_desc *dev) +{ + struct i3c_master_controller *master; + int ret; + + if (!dev->ibi) + return -EINVAL; + + master = i3c_dev_get_master(dev); + ret = master->ops->disable_ibi(dev); + if (ret) + return ret; + + dev->ibi->enabled = false; + + return 0; +} + +int i3c_dev_enable_ibi_locked(struct i3c_dev_desc *dev) +{ + struct i3c_master_controller *master = i3c_dev_get_master(dev); + int ret; + + if (!dev->ibi) + return -EINVAL; + + ret = master->ops->enable_ibi(dev); + if (!ret) + dev->ibi->enabled = true; + + return ret; +} + +int i3c_dev_request_ibi_locked(struct i3c_dev_desc *dev, + const struct i3c_ibi_setup *req) +{ + struct i3c_master_controller *master = i3c_dev_get_master(dev); + struct i3c_device_ibi_info *ibi; + int ret; + + if (!master->ops->request_ibi) + return -EOPNOTSUPP; + + if (dev->ibi) + return -EBUSY; + + ibi = kzalloc(sizeof(*ibi), GFP_KERNEL); + if (!ibi) + return -ENOMEM; + + ibi->handler = req->handler; + ibi->max_payload_len = req->max_payload_len; + ibi->num_slots = req->num_slots; + + dev->ibi = ibi; + ret = master->ops->request_ibi(dev, req); + if (ret) { + kfree(ibi); + dev->ibi = NULL; + } + + return ret; +} + +void i3c_dev_free_ibi_locked(struct i3c_dev_desc *dev) +{ + struct i3c_master_controller *master = i3c_dev_get_master(dev); + + if (!dev->ibi) + return; + + if (WARN_ON(dev->ibi->enabled)) + WARN_ON(i3c_dev_disable_ibi_locked(dev)); + + master->ops->free_ibi(dev); + kfree(dev->ibi); + dev->ibi = NULL; +} + +MODULE_AUTHOR("Boris Brezillon <boris.brezillon@bootlin.com>"); +MODULE_DESCRIPTION("I3C core"); +MODULE_LICENSE("GPL v2"); diff --git a/drivers/i3c/master/Kconfig b/drivers/i3c/master/Kconfig new file mode 100644 index 00000000000..79776f60ae4 --- /dev/null +++ b/drivers/i3c/master/Kconfig @@ -0,0 +1,11 @@ +config DW_I3C_MASTER + tristate "Synopsys DesignWare I3C master driver" + depends on I3C + help + Support for Synopsys DesignWare MIPI I3C Controller. + + For details please see + https://www.synopsys.com/dw/ipdir.php?ds=mipi_i3c + + This driver can also be built as a module. If so, the module + will be called dw-i3c-master. diff --git a/drivers/i3c/master/Makefile b/drivers/i3c/master/Makefile new file mode 100644 index 00000000000..c7562f1aa33 --- /dev/null +++ b/drivers/i3c/master/Makefile @@ -0,0 +1,3 @@ +# SPDX-License-Identifier: GPL-2.0 + +obj-$(CONFIG_DW_I3C_MASTER) += dw-i3c-master.o diff --git a/drivers/i3c/master/dw-i3c-master.c b/drivers/i3c/master/dw-i3c-master.c new file mode 100644 index 00000000000..d96eb9b134e --- /dev/null +++ b/drivers/i3c/master/dw-i3c-master.c @@ -0,0 +1,1062 @@ +// SPDX-License-Identifier: GPL-2.0 +/* + * Copyright (c) 2018 Synopsys, Inc. and/or its affiliates. + * + * Author: Vitor Soares <vitor.soares@synopsys.com> + */ + +#include <asm/io.h> +#include <dm.h> +#include <dw-i3c.h> +#include <i2c.h> +#include <log.h> +#include <malloc.h> +#include <pci.h> +#include <dm/device_compat.h> +#include <dm/devres.h> +#include <linux/compat.h> +#include <linux/delay.h> +#include <linux/err.h> +#include <linux/errno.h> +#include <linux/iopoll.h> +#include <linux/i3c/master.h> + +#ifdef CONFIG_SANDBOX +#define cpu_relax() do {} while (0) +#endif + +static u8 even_parity(u8 p) +{ + p ^= p >> 4; + p &= 0xf; + + return (0x9669 >> p) & 1; +} + +ulong msecs_to_jiffies(ulong msec) +{ + ulong hz = CONFIG_SYS_HZ; + + return (msec + (1000 / hz) - 1) / (1000 / hz); +} + +static bool dw_i3c_master_supports_ccc_cmd(struct i3c_master_controller *m, + const struct i3c_ccc_cmd *cmd) +{ + if (cmd->ndests > 1) + return false; + + switch (cmd->id) { + case I3C_CCC_ENEC(true): + case I3C_CCC_ENEC(false): + case I3C_CCC_DISEC(true): + case I3C_CCC_DISEC(false): + case I3C_CCC_ENTAS(0, true): + case I3C_CCC_ENTAS(0, false): + case I3C_CCC_RSTDAA(true): + case I3C_CCC_RSTDAA(false): + case I3C_CCC_ENTDAA: + case I3C_CCC_SETMWL(true): + case I3C_CCC_SETMWL(false): + case I3C_CCC_SETMRL(true): + case I3C_CCC_SETMRL(false): + case I3C_CCC_ENTHDR(0): + case I3C_CCC_SETDASA: + case I3C_CCC_SETNEWDA: + case I3C_CCC_GETMWL: + case I3C_CCC_GETMRL: + case I3C_CCC_GETPID: + case I3C_CCC_GETBCR: + case I3C_CCC_GETDCR: + case I3C_CCC_GETSTATUS: + case I3C_CCC_GETMXDS: + case I3C_CCC_GETHDRCAP: + return true; + default: + return false; + } +} + +static inline struct dw_i3c_master * +to_dw_i3c_master(struct i3c_master_controller *master) +{ + return container_of(master, struct dw_i3c_master, base); +} + +static void dw_i3c_master_disable(struct dw_i3c_master *master) +{ + writel(readl(master->regs + DEVICE_CTRL) & ~DEV_CTRL_ENABLE, + master->regs + DEVICE_CTRL); +} + +static void dw_i3c_master_enable(struct dw_i3c_master *master) +{ + writel(readl(master->regs + DEVICE_CTRL) | DEV_CTRL_ENABLE, + master->regs + DEVICE_CTRL); +} + +static int dw_i3c_master_get_addr_pos(struct dw_i3c_master *master, u8 addr) +{ + int pos; + + for (pos = 0; pos < master->maxdevs; pos++) { + if (addr == master->addrs[pos]) + return pos; + } + + return -EINVAL; +} + +static int dw_i3c_master_get_free_pos(struct dw_i3c_master *master) +{ + if (!(master->free_pos & GENMASK(master->maxdevs - 1, 0))) + return -ENOSPC; + + return ffs(master->free_pos) - 1; +} + +static void dw_i3c_master_wr_tx_fifo(struct dw_i3c_master *master, + const u8 *bytes, int nbytes) +{ + writesl(master->regs + RX_TX_DATA_PORT, bytes, nbytes / 4); + if (nbytes & 3) { + u32 tmp = 0; + + memcpy(&tmp, bytes + (nbytes & ~3), nbytes & 3); + writesl(master->regs + RX_TX_DATA_PORT, &tmp, 1); + } +} + +static void dw_i3c_master_read_rx_fifo(struct dw_i3c_master *master, + u8 *bytes, int nbytes) +{ + readsl(master->regs + RX_TX_DATA_PORT, bytes, nbytes / 4); + if (nbytes & 3) { + u32 tmp; + + readsl(master->regs + RX_TX_DATA_PORT, &tmp, 1); + memcpy(bytes + (nbytes & ~3), &tmp, nbytes & 3); + } +} + +static struct dw_i3c_xfer * +dw_i3c_master_alloc_xfer(struct dw_i3c_master *master, unsigned int ncmds) +{ + struct dw_i3c_xfer *xfer; + + xfer = kzalloc(STRUCT_SZ(struct dw_i3c_xfer, ncmds), GFP_KERNEL); + if (!xfer) + return NULL; + + INIT_LIST_HEAD(&xfer->node); + xfer->ncmds = ncmds; + xfer->ret = -ETIMEDOUT; + + return xfer; +} + +static void dw_i3c_master_free_xfer(struct dw_i3c_xfer *xfer) +{ + kfree(xfer); +} + +static void dw_i3c_master_start_xfer_locked(struct dw_i3c_master *master) +{ + struct dw_i3c_xfer *xfer = master->xferqueue.cur; + unsigned int i; + u32 thld_ctrl; + + if (!xfer) + return; + + for (i = 0; i < xfer->ncmds; i++) { + struct dw_i3c_cmd *cmd = &xfer->cmds[i]; + + dw_i3c_master_wr_tx_fifo(master, cmd->tx_buf, cmd->tx_len); + } + + thld_ctrl = readl(master->regs + QUEUE_THLD_CTRL); + thld_ctrl &= ~QUEUE_THLD_CTRL_RESP_BUF_MASK; + thld_ctrl |= QUEUE_THLD_CTRL_RESP_BUF(xfer->ncmds); + writel(thld_ctrl, master->regs + QUEUE_THLD_CTRL); + + for (i = 0; i < xfer->ncmds; i++) { + struct dw_i3c_cmd *cmd = &xfer->cmds[i]; + + writel(cmd->cmd_hi, master->regs + COMMAND_QUEUE_PORT); + writel(cmd->cmd_lo, master->regs + COMMAND_QUEUE_PORT); + } +} + +static void dw_i3c_master_enqueue_xfer(struct dw_i3c_master *master, + struct dw_i3c_xfer *xfer) +{ + unsigned long flags; + + spin_lock_irqsave(&master->xferqueue.lock, flags); + + if (master->xferqueue.cur) { + list_add_tail(&xfer->node, &master->xferqueue.list); + } else { + master->xferqueue.cur = xfer; + dw_i3c_master_start_xfer_locked(master); + } + + spin_unlock_irqrestore(&master->xferqueue.lock, flags); +} + +static void dw_i3c_master_dequeue_xfer_locked(struct dw_i3c_master *master, + struct dw_i3c_xfer *xfer) +{ + if (master->xferqueue.cur == xfer) { + u32 status; + + master->xferqueue.cur = NULL; + + writel(RESET_CTRL_RX_FIFO | RESET_CTRL_TX_FIFO | + RESET_CTRL_RESP_QUEUE | RESET_CTRL_CMD_QUEUE, + master->regs + RESET_CTRL); + + readl_poll_timeout_atomic(master->regs + RESET_CTRL, status, + !status, 10, 1000000); + } else { + list_del_init(&xfer->node); + } +} + +static int dw_i3c_status_poll_timeout(struct dw_i3c_master *master) +{ + u32 status; + unsigned long base, limit; + + base = get_timer(0); + limit = CONFIG_SYS_HZ * 5000 / 1000; + do { + status = readl(master->regs + INTR_STATUS); + if (status) + return 0; + + cpu_relax(); + } while (get_timer(base) < limit); + + return -ETIMEDOUT; +} + +static void dw_i3c_master_dequeue_xfer(struct dw_i3c_master *master, + struct dw_i3c_xfer *xfer) +{ + unsigned long flags; + + spin_lock_irqsave(&master->xferqueue.lock, flags); + dw_i3c_master_dequeue_xfer_locked(master, xfer); + spin_unlock_irqrestore(&master->xferqueue.lock, flags); +} + +static void dw_i3c_master_end_xfer_locked(struct dw_i3c_master *master, u32 isr) +{ + struct dw_i3c_xfer *xfer = master->xferqueue.cur; + int i, ret = 0; + u32 nresp; + + if (!xfer) + return; + + nresp = readl(master->regs + QUEUE_STATUS_LEVEL); + nresp = QUEUE_STATUS_LEVEL_RESP(nresp); + + for (i = 0; i < nresp; i++) { + struct dw_i3c_cmd *cmd; + u32 resp; + + resp = readl(master->regs + RESPONSE_QUEUE_PORT); + + cmd = &xfer->cmds[RESPONSE_PORT_TID(resp)]; + cmd->rx_len = RESPONSE_PORT_DATA_LEN(resp); + cmd->error = RESPONSE_PORT_ERR_STATUS(resp); + if (cmd->rx_len && !cmd->error) + dw_i3c_master_read_rx_fifo(master, cmd->rx_buf, + cmd->rx_len); + } + + for (i = 0; i < nresp; i++) { + switch (xfer->cmds[i].error) { + case RESPONSE_NO_ERROR: + break; + case RESPONSE_ERROR_PARITY: + case RESPONSE_ERROR_IBA_NACK: + case RESPONSE_ERROR_TRANSF_ABORT: + case RESPONSE_ERROR_CRC: + case RESPONSE_ERROR_FRAME: + ret = -EIO; + break; + case RESPONSE_ERROR_OVER_UNDER_FLOW: + ret = -ENOSPC; + break; + case RESPONSE_ERROR_I2C_W_NACK_ERR: + case RESPONSE_ERROR_ADDRESS_NACK: + default: + ret = -EINVAL; + break; + } + } + + xfer->ret = ret; + + if (ret < 0) { + dw_i3c_master_dequeue_xfer_locked(master, xfer); + writel(readl(master->regs + DEVICE_CTRL) | DEV_CTRL_RESUME, + master->regs + DEVICE_CTRL); + } + + xfer = list_first_entry_or_null(&master->xferqueue.list, + struct dw_i3c_xfer, + node); + if (xfer) + list_del_init(&xfer->node); + + master->xferqueue.cur = xfer; + dw_i3c_master_start_xfer_locked(master); +} + +static int dw_i3c_clk_cfg(struct dw_i3c_master *master) +{ + unsigned long core_rate, core_period; + u32 scl_timing; + u8 hcnt, lcnt; + + core_rate = clk_get_rate(&master->core_clk); + if (!core_rate) + return -EINVAL; + + core_period = DIV_ROUND_UP(1000000000, core_rate); + + hcnt = DIV_ROUND_UP(I3C_BUS_THIGH_MAX_NS, core_period) - 1; + if (hcnt < SCL_I3C_TIMING_CNT_MIN) + hcnt = SCL_I3C_TIMING_CNT_MIN; + + /* set back to THIGH_MAX_NS, after disable spike filter */ + if (!master->first_broadcast) { + lcnt = SCL_I3C_TIMING_LCNT(readl(master->regs + SCL_I3C_OD_TIMING)); + scl_timing = SCL_I3C_TIMING_HCNT(hcnt) | lcnt; + writel(scl_timing, master->regs + SCL_I3C_OD_TIMING); + return 0; + } + + lcnt = DIV_ROUND_UP(core_rate, master->base.bus.scl_rate.i3c) - hcnt; + if (lcnt < SCL_I3C_TIMING_CNT_MIN) + lcnt = SCL_I3C_TIMING_CNT_MIN; + + scl_timing = SCL_I3C_TIMING_HCNT(hcnt) | SCL_I3C_TIMING_LCNT(lcnt); + writel(scl_timing, master->regs + SCL_I3C_PP_TIMING); + + /* + * In pure i3c mode, MST_FREE represents tCAS. In shared mode, this + * will be set up by dw_i2c_clk_cfg as tLOW. + */ + if (master->base.bus.mode == I3C_BUS_MODE_PURE) + writel(BUS_I3C_MST_FREE(lcnt), master->regs + BUS_FREE_TIMING); + + lcnt = max_t(u8, + DIV_ROUND_UP(I3C_BUS_TLOW_OD_MIN_NS, core_period), lcnt); + + /* first broadcast thigh to 200ns, to disable spike filter */ + hcnt = DIV_ROUND_UP(I3C_BUS_THIGH_INIT_OD_MIN_NS, core_period); + + scl_timing = SCL_I3C_TIMING_HCNT(hcnt) | SCL_I3C_TIMING_LCNT(lcnt); + writel(scl_timing, master->regs + SCL_I3C_OD_TIMING); + + lcnt = DIV_ROUND_UP(core_rate, I3C_BUS_SDR1_SCL_RATE) - hcnt; + scl_timing = SCL_EXT_LCNT_1(lcnt); + lcnt = DIV_ROUND_UP(core_rate, I3C_BUS_SDR2_SCL_RATE) - hcnt; + scl_timing |= SCL_EXT_LCNT_2(lcnt); + lcnt = DIV_ROUND_UP(core_rate, I3C_BUS_SDR3_SCL_RATE) - hcnt; + scl_timing |= SCL_EXT_LCNT_3(lcnt); + lcnt = DIV_ROUND_UP(core_rate, I3C_BUS_SDR4_SCL_RATE) - hcnt; + scl_timing |= SCL_EXT_LCNT_4(lcnt); + writel(scl_timing, master->regs + SCL_EXT_LCNT_TIMING); + + return 0; +} + +static int dw_i2c_clk_cfg(struct dw_i3c_master *master) +{ + unsigned long core_rate, core_period; + u16 hcnt, lcnt; + u32 scl_timing; + + core_rate = clk_get_rate(&master->core_clk); + if (!core_rate) + return -EINVAL; + + core_period = DIV_ROUND_UP(1000000000, core_rate); + + lcnt = DIV_ROUND_UP(I3C_BUS_I2C_FMP_TLOW_MIN_NS, core_period); + hcnt = DIV_ROUND_UP(core_rate, I3C_BUS_I2C_FM_PLUS_SCL_RATE) - lcnt; + scl_timing = SCL_I2C_FMP_TIMING_HCNT(hcnt) | + SCL_I2C_FMP_TIMING_LCNT(lcnt); + writel(scl_timing, master->regs + SCL_I2C_FMP_TIMING); + + lcnt = DIV_ROUND_UP(I3C_BUS_I2C_FM_TLOW_MIN_NS, core_period); + hcnt = DIV_ROUND_UP(core_rate, I3C_BUS_I2C_FM_SCL_RATE) - lcnt; + scl_timing = SCL_I2C_FM_TIMING_HCNT(hcnt) | + SCL_I2C_FM_TIMING_LCNT(lcnt); + writel(scl_timing, master->regs + SCL_I2C_FM_TIMING); + + writel(BUS_I3C_MST_FREE(lcnt), master->regs + BUS_FREE_TIMING); + writel(readl(master->regs + DEVICE_CTRL) | DEV_CTRL_I2C_SLAVE_PRESENT, + master->regs + DEVICE_CTRL); + + return 0; +} + +static int dw_i3c_master_bus_init(struct i3c_master_controller *m) +{ + struct dw_i3c_master *master = to_dw_i3c_master(m); + struct i3c_bus *bus = i3c_master_get_bus(m); + struct i3c_device_info info = { }; + u32 thld_ctrl; + int ret; + + /* first broadcast to disable spike filter */ + master->first_broadcast = true; + + switch (bus->mode) { + case I3C_BUS_MODE_MIXED_FAST: + case I3C_BUS_MODE_MIXED_LIMITED: + ret = dw_i2c_clk_cfg(master); + if (ret) + return ret; + fallthrough; + case I3C_BUS_MODE_PURE: + ret = dw_i3c_clk_cfg(master); + if (ret) + return ret; + break; + default: + return -EINVAL; + } + + thld_ctrl = readl(master->regs + QUEUE_THLD_CTRL); + thld_ctrl &= ~QUEUE_THLD_CTRL_RESP_BUF_MASK; + writel(thld_ctrl, master->regs + QUEUE_THLD_CTRL); + + thld_ctrl = readl(master->regs + DATA_BUFFER_THLD_CTRL); + thld_ctrl &= ~DATA_BUFFER_THLD_CTRL_RX_BUF; + writel(thld_ctrl, master->regs + DATA_BUFFER_THLD_CTRL); + + writel(INTR_ALL, master->regs + INTR_STATUS); + writel(INTR_MASTER_MASK, master->regs + INTR_STATUS_EN); + writel(INTR_MASTER_MASK, master->regs + INTR_SIGNAL_EN); + + ret = i3c_master_get_free_addr(m, 0); + if (ret < 0) + return ret; + + writel(DEV_ADDR_DYNAMIC_ADDR_VALID | DEV_ADDR_DYNAMIC(ret), + master->regs + DEVICE_ADDR); + + memset(&info, 0, sizeof(info)); + info.dyn_addr = ret; + + ret = i3c_master_set_info(&master->base, &info); + if (ret) + return ret; + + writel(IBI_REQ_REJECT_ALL, master->regs + IBI_SIR_REQ_REJECT); + writel(IBI_REQ_REJECT_ALL, master->regs + IBI_MR_REQ_REJECT); + + /* For now don't support Hot-Join */ + writel(readl(master->regs + DEVICE_CTRL) | DEV_CTRL_HOT_JOIN_NACK, + master->regs + DEVICE_CTRL); + + dw_i3c_master_enable(master); + + return 0; +} + +static void dw_i3c_master_bus_cleanup(struct i3c_master_controller *m) +{ + struct dw_i3c_master *master = to_dw_i3c_master(m); + + dw_i3c_master_disable(master); +} + +static void dw_i3c_master_irq_handler(struct dw_i3c_master *master) +{ + u32 status, en; + + status = readl(master->regs + INTR_STATUS); + en = readl(master->regs + INTR_STATUS_EN); + + if (!(status & readl(master->regs + INTR_STATUS_EN))) { + pr_err("Failed to get completion status, status=%d, status_en=%d\n", status, en); + writel(INTR_ALL, master->regs + INTR_STATUS); + } + + spin_lock(&master->xferqueue.lock); + dw_i3c_master_end_xfer_locked(master, status); + + if (status & INTR_TRANSFER_ERR_STAT) + writel(INTR_TRANSFER_ERR_STAT, master->regs + INTR_STATUS); + + /* set back to THIGH_MAX_NS, after disable spike filter */ + if (master->first_broadcast) { + master->first_broadcast = false; + int ret = dw_i3c_clk_cfg(master); + + if (ret) + pr_err("Failed to set clk cfg\n"); + } + + spin_unlock(&master->xferqueue.lock); +} + +static int dw_i3c_ccc_set(struct dw_i3c_master *master, + struct i3c_ccc_cmd *ccc) +{ + struct dw_i3c_xfer *xfer; + struct dw_i3c_cmd *cmd; + int ret, pos = 0; + + if (ccc->id & I3C_CCC_DIRECT) { + pos = dw_i3c_master_get_addr_pos(master, ccc->dests[0].addr); + if (pos < 0) + return pos; + } + + xfer = dw_i3c_master_alloc_xfer(master, 1); + if (!xfer) + return -ENOMEM; + + cmd = xfer->cmds; + cmd->tx_buf = ccc->dests[0].payload.data; + cmd->tx_len = ccc->dests[0].payload.len; + + cmd->cmd_hi = COMMAND_PORT_ARG_DATA_LEN(ccc->dests[0].payload.len) | + COMMAND_PORT_TRANSFER_ARG; + + cmd->cmd_lo = COMMAND_PORT_CP | + COMMAND_PORT_DEV_INDEX(pos) | + COMMAND_PORT_CMD(ccc->id) | + COMMAND_PORT_TOC | + COMMAND_PORT_ROC; + + dw_i3c_master_enqueue_xfer(master, xfer); + + if (dw_i3c_status_poll_timeout(master) > POLL_SUCCESS) + dw_i3c_master_dequeue_xfer(master, xfer); + else + dw_i3c_master_irq_handler(master); + + ret = xfer->ret; + + if (xfer->cmds[0].error == RESPONSE_ERROR_IBA_NACK) + ccc->err = I3C_ERROR_M2; + + dw_i3c_master_free_xfer(xfer); + + return ret; +} + +static int dw_i3c_ccc_get(struct dw_i3c_master *master, struct i3c_ccc_cmd *ccc) +{ + struct dw_i3c_xfer *xfer; + struct dw_i3c_cmd *cmd; + int ret, pos; + + pos = dw_i3c_master_get_addr_pos(master, ccc->dests[0].addr); + if (pos < 0) + return pos; + + xfer = dw_i3c_master_alloc_xfer(master, 1); + if (!xfer) + return -ENOMEM; + + cmd = xfer->cmds; + cmd->rx_buf = ccc->dests[0].payload.data; + cmd->rx_len = ccc->dests[0].payload.len; + + cmd->cmd_hi = COMMAND_PORT_ARG_DATA_LEN(ccc->dests[0].payload.len) | + COMMAND_PORT_TRANSFER_ARG; + + cmd->cmd_lo = COMMAND_PORT_READ_TRANSFER | + COMMAND_PORT_CP | + COMMAND_PORT_DEV_INDEX(pos) | + COMMAND_PORT_CMD(ccc->id) | + COMMAND_PORT_TOC | + COMMAND_PORT_ROC; + + dw_i3c_master_enqueue_xfer(master, xfer); + + if (dw_i3c_status_poll_timeout(master) > POLL_SUCCESS) + dw_i3c_master_dequeue_xfer(master, xfer); + else + dw_i3c_master_irq_handler(master); + + ret = xfer->ret; + + if (xfer->cmds[0].error == RESPONSE_ERROR_IBA_NACK) + ccc->err = I3C_ERROR_M2; + dw_i3c_master_free_xfer(xfer); + + return ret; +} + +static int dw_i3c_master_send_ccc_cmd(struct i3c_master_controller *m, + struct i3c_ccc_cmd *ccc) +{ + struct dw_i3c_master *master = to_dw_i3c_master(m); + int ret = 0; + + if (ccc->id == I3C_CCC_ENTDAA) + return -EINVAL; + + if (ccc->rnw) + ret = dw_i3c_ccc_get(master, ccc); + else + ret = dw_i3c_ccc_set(master, ccc); + + return ret; +} + +static int dw_i3c_master_daa(struct i3c_master_controller *m) +{ + struct dw_i3c_master *master = to_dw_i3c_master(m); + struct dw_i3c_xfer *xfer; + struct dw_i3c_cmd *cmd; + u32 olddevs, newdevs; + u8 p, last_addr = 0; + int ret, pos; + + olddevs = ~(master->free_pos); + + /* Prepare DAT before launching DAA. */ + for (pos = 0; pos < master->maxdevs; pos++) { + if (olddevs & BIT(pos)) + continue; + + ret = i3c_master_get_free_addr(m, last_addr + 1); + if (ret < 0) + return -ENOSPC; + + master->addrs[pos] = ret; + p = even_parity(ret); + last_addr = ret; + ret |= (p << 7); + + writel(DEV_ADDR_TABLE_DYNAMIC_ADDR(ret), + master->regs + + DEV_ADDR_TABLE_LOC(master->datstartaddr, pos)); + } + + xfer = dw_i3c_master_alloc_xfer(master, 1); + if (!xfer) + return -ENOMEM; + + pos = dw_i3c_master_get_free_pos(master); + cmd = &xfer->cmds[0]; + cmd->cmd_hi = 0x1; + cmd->cmd_lo = COMMAND_PORT_DEV_COUNT(master->maxdevs - pos) | + COMMAND_PORT_DEV_INDEX(pos) | + COMMAND_PORT_CMD(I3C_CCC_ENTDAA) | + COMMAND_PORT_ADDR_ASSGN_CMD | + COMMAND_PORT_TOC | + COMMAND_PORT_ROC; + + dw_i3c_master_enqueue_xfer(master, xfer); + + if (dw_i3c_status_poll_timeout(master) > POLL_SUCCESS) + dw_i3c_master_dequeue_xfer(master, xfer); + else + dw_i3c_master_irq_handler(master); + + newdevs = GENMASK(master->maxdevs - cmd->rx_len - 1, 0); + newdevs &= ~olddevs; + + for (pos = 0; pos < master->maxdevs; pos++) { + if (newdevs & BIT(pos)) { + i3c_master_add_i3c_dev_locked(m, master->addrs[pos]); + master->i3cdev[pos] = m->this; + master->num_i3cdevs++; + } + } + + dw_i3c_master_free_xfer(xfer); + + return 0; +} + +static int dw_i3c_master_priv_xfers(struct i3c_dev_desc *dev, + struct i3c_priv_xfer *i3c_xfers, + u32 i3c_nxfers) +{ + struct dw_i3c_i2c_dev_data *data = i3c_dev_get_master_data(dev); + struct i3c_master_controller *m = i3c_dev_get_master(dev); + struct dw_i3c_master *master = to_dw_i3c_master(m); + unsigned int nrxwords = 0, ntxwords = 0; + struct dw_i3c_xfer *xfer; + int i, ret = 0; + + if (!i3c_nxfers) + return 0; + + if (i3c_nxfers > master->caps.cmdfifodepth) + return -EOPNOTSUPP; + + for (i = 0; i < i3c_nxfers; i++) { + if (i3c_xfers[i].rnw) + nrxwords += DIV_ROUND_UP(i3c_xfers[i].len, 4); + else + ntxwords += DIV_ROUND_UP(i3c_xfers[i].len, 4); + } + + if (ntxwords > master->caps.datafifodepth || + nrxwords > master->caps.datafifodepth) + return -EOPNOTSUPP; + + xfer = dw_i3c_master_alloc_xfer(master, i3c_nxfers); + if (!xfer) + return -ENOMEM; + + for (i = 0; i < i3c_nxfers; i++) { + struct dw_i3c_cmd *cmd = &xfer->cmds[i]; + + cmd->cmd_hi = COMMAND_PORT_ARG_DATA_LEN(i3c_xfers[i].len) | + COMMAND_PORT_TRANSFER_ARG; + + if (i3c_xfers[i].rnw) { + cmd->rx_buf = i3c_xfers[i].data.in; + cmd->rx_len = i3c_xfers[i].len; + cmd->cmd_lo = COMMAND_PORT_READ_TRANSFER | + COMMAND_PORT_SPEED(dev->info.max_read_ds); + + } else { + cmd->tx_buf = i3c_xfers[i].data.out; + cmd->tx_len = i3c_xfers[i].len; + cmd->cmd_lo = + COMMAND_PORT_SPEED(dev->info.max_write_ds); + } + + cmd->cmd_lo |= COMMAND_PORT_TID(i) | + COMMAND_PORT_DEV_INDEX(data->index) | + COMMAND_PORT_ROC; + + if (i == (i3c_nxfers - 1)) + cmd->cmd_lo |= COMMAND_PORT_TOC; + } + + dw_i3c_master_enqueue_xfer(master, xfer); + + if (dw_i3c_status_poll_timeout(master) > POLL_SUCCESS) + dw_i3c_master_dequeue_xfer(master, xfer); + else + dw_i3c_master_irq_handler(master); + + ret = xfer->ret; + + dw_i3c_master_free_xfer(xfer); + + return ret; +} + +static int dw_i3c_master_reattach_i3c_dev(struct i3c_dev_desc *dev, + u8 old_dyn_addr) +{ + struct dw_i3c_i2c_dev_data *data = i3c_dev_get_master_data(dev); + struct i3c_master_controller *m = i3c_dev_get_master(dev); + struct dw_i3c_master *master = to_dw_i3c_master(m); + int pos; + + pos = dw_i3c_master_get_free_pos(master); + + if (data->index > pos && pos > 0) { + writel(0, + master->regs + + DEV_ADDR_TABLE_LOC(master->datstartaddr, data->index)); + + master->addrs[data->index] = 0; + master->free_pos |= BIT(data->index); + + data->index = pos; + master->addrs[pos] = dev->info.dyn_addr; + master->free_pos &= ~BIT(pos); + } + + writel(DEV_ADDR_TABLE_DYNAMIC_ADDR(dev->info.dyn_addr), + master->regs + + DEV_ADDR_TABLE_LOC(master->datstartaddr, data->index)); + + master->addrs[data->index] = dev->info.dyn_addr; + + return 0; +} + +static int dw_i3c_master_attach_i3c_dev(struct i3c_dev_desc *dev) +{ + struct i3c_master_controller *m = i3c_dev_get_master(dev); + struct dw_i3c_master *master = to_dw_i3c_master(m); + struct dw_i3c_i2c_dev_data *data; + int pos; + + pos = dw_i3c_master_get_free_pos(master); + if (pos < 0) + return pos; + + data = kzalloc(sizeof(*data), GFP_KERNEL); + if (!data) + return -ENOMEM; + + data->index = pos; + master->addrs[pos] = dev->info.dyn_addr ? : dev->info.static_addr; + master->free_pos &= ~BIT(pos); + i3c_dev_set_master_data(dev, data); + + writel(DEV_ADDR_TABLE_DYNAMIC_ADDR(master->addrs[pos]), + master->regs + + DEV_ADDR_TABLE_LOC(master->datstartaddr, data->index)); + + return 0; +} + +static void dw_i3c_master_detach_i3c_dev(struct i3c_dev_desc *dev) +{ + struct dw_i3c_i2c_dev_data *data = i3c_dev_get_master_data(dev); + struct i3c_master_controller *m = i3c_dev_get_master(dev); + struct dw_i3c_master *master = to_dw_i3c_master(m); + + writel(0, + master->regs + + DEV_ADDR_TABLE_LOC(master->datstartaddr, data->index)); + + i3c_dev_set_master_data(dev, NULL); + master->addrs[data->index] = 0; + master->free_pos |= BIT(data->index); + kfree(data); +} + +static int dw_i3c_master_i2c_xfers(struct i2c_dev_desc *dev, + const struct i2c_msg *i2c_xfers, + int i2c_nxfers) +{ + struct dw_i3c_i2c_dev_data *data = i2c_dev_get_master_data(dev); + struct i3c_master_controller *m = i2c_dev_get_master(dev); + struct dw_i3c_master *master = to_dw_i3c_master(m); + unsigned int nrxwords = 0, ntxwords = 0; + struct dw_i3c_xfer *xfer; + int i, ret = 0; + + if (!i2c_nxfers) + return 0; + + if (i2c_nxfers > master->caps.cmdfifodepth) + return -EOPNOTSUPP; + + for (i = 0; i < i2c_nxfers; i++) { + if (i2c_xfers[i].flags & I2C_M_RD) + nrxwords += DIV_ROUND_UP(i2c_xfers[i].len, 4); + else + ntxwords += DIV_ROUND_UP(i2c_xfers[i].len, 4); + } + + if (ntxwords > master->caps.datafifodepth || + nrxwords > master->caps.datafifodepth) + return -EOPNOTSUPP; + + xfer = dw_i3c_master_alloc_xfer(master, i2c_nxfers); + if (!xfer) + return -ENOMEM; + + for (i = 0; i < i2c_nxfers; i++) { + struct dw_i3c_cmd *cmd = &xfer->cmds[i]; + + cmd->cmd_hi = COMMAND_PORT_ARG_DATA_LEN(i2c_xfers[i].len) | + COMMAND_PORT_TRANSFER_ARG; + + cmd->cmd_lo = COMMAND_PORT_TID(i) | + COMMAND_PORT_DEV_INDEX(data->index) | + COMMAND_PORT_ROC; + + if (i2c_xfers[i].flags & I2C_M_RD) { + cmd->cmd_lo |= COMMAND_PORT_READ_TRANSFER; + cmd->rx_buf = i2c_xfers[i].buf; + cmd->rx_len = i2c_xfers[i].len; + } else { + cmd->tx_buf = i2c_xfers[i].buf; + cmd->tx_len = i2c_xfers[i].len; + } + + if (i == (i2c_nxfers - 1)) + cmd->cmd_lo |= COMMAND_PORT_TOC; + } + + dw_i3c_master_enqueue_xfer(master, xfer); + + if (dw_i3c_status_poll_timeout(master) > POLL_SUCCESS) + dw_i3c_master_dequeue_xfer(master, xfer); + else + dw_i3c_master_irq_handler(master); + + ret = xfer->ret; + dw_i3c_master_free_xfer(xfer); + + return ret; +} + +static int dw_i3c_master_attach_i2c_dev(struct i2c_dev_desc *dev) +{ + struct i3c_master_controller *m = i2c_dev_get_master(dev); + struct dw_i3c_master *master = to_dw_i3c_master(m); + struct dw_i3c_i2c_dev_data *data; + int pos; + + pos = dw_i3c_master_get_free_pos(master); + if (pos < 0) + return pos; + + data = kzalloc(sizeof(*data), GFP_KERNEL); + if (!data) + return -ENOMEM; + + data->index = pos; + master->addrs[pos] = dev->addr; + master->free_pos &= ~BIT(pos); + i2c_dev_set_master_data(dev, data); + + writel(DEV_ADDR_TABLE_LEGACY_I2C_DEV | + DEV_ADDR_TABLE_STATIC_ADDR(dev->addr), + master->regs + + DEV_ADDR_TABLE_LOC(master->datstartaddr, data->index)); + + return 0; +} + +static void dw_i3c_master_detach_i2c_dev(struct i2c_dev_desc *dev) +{ + struct dw_i3c_i2c_dev_data *data = i2c_dev_get_master_data(dev); + struct i3c_master_controller *m = i2c_dev_get_master(dev); + struct dw_i3c_master *master = to_dw_i3c_master(m); + + writel(0, + master->regs + + DEV_ADDR_TABLE_LOC(master->datstartaddr, data->index)); + + i2c_dev_set_master_data(dev, NULL); + master->addrs[data->index] = 0; + master->free_pos |= BIT(data->index); + kfree(data); +} + +static const struct i3c_master_controller_ops dw_mipi_i3c_ops = { + .bus_init = dw_i3c_master_bus_init, + .bus_cleanup = dw_i3c_master_bus_cleanup, + .attach_i3c_dev = dw_i3c_master_attach_i3c_dev, + .reattach_i3c_dev = dw_i3c_master_reattach_i3c_dev, + .detach_i3c_dev = dw_i3c_master_detach_i3c_dev, + .do_daa = dw_i3c_master_daa, + .supports_ccc_cmd = dw_i3c_master_supports_ccc_cmd, + .send_ccc_cmd = dw_i3c_master_send_ccc_cmd, + .priv_xfers = dw_i3c_master_priv_xfers, + .attach_i2c_dev = dw_i3c_master_attach_i2c_dev, + .detach_i2c_dev = dw_i3c_master_detach_i2c_dev, + .i2c_xfers = dw_i3c_master_i2c_xfers, +}; + +static int dw_i3c_probe(struct udevice *dev) +{ + struct dw_i3c_master *master = dev_get_priv(dev); + int ret; + + if (!master->regs) + master->regs = dev_read_addr_ptr(dev); + + ret = clk_get_by_index(dev, 0, &master->core_clk); + if (ret) { + dev_err(dev, "Can't get clock: %d\n", ret); + return ret; + } + + ret = reset_get_bulk(dev, &master->resets); + if (ret) { + dev_err(dev, "Can't get reset: %d\n", ret); + return ret; + } + + reset_deassert_bulk(&master->resets); + + spin_lock_init(&master->xferqueue.lock); + INIT_LIST_HEAD(&master->xferqueue.list); + + writel(INTR_ALL, master->regs + INTR_STATUS); + + /* Information regarding the FIFOs/QUEUEs depth */ + ret = readl(master->regs + QUEUE_STATUS_LEVEL); + master->caps.cmdfifodepth = QUEUE_STATUS_LEVEL_CMD(ret); + + ret = readl(master->regs + DATA_BUFFER_STATUS_LEVEL); + master->caps.datafifodepth = DATA_BUFFER_STATUS_LEVEL_TX(ret); + + ret = readl(master->regs + DEVICE_ADDR_TABLE_POINTER); + master->datstartaddr = ret; + master->maxdevs = ret >> 16; + master->free_pos = GENMASK(master->maxdevs - 1, 0); + + ret = i3c_master_register(&master->base, dev, + &dw_mipi_i3c_ops, false); + if (ret) + goto err_assert_rst; + + return 0; + +err_assert_rst: + reset_assert_bulk(&master->resets); + + return ret; +} + +static int dw_i3c_master_priv_read(struct udevice *dev, u32 dev_number, + u8 *buf, u32 buf_size) +{ + struct dw_i3c_master *master = dev_get_priv(dev); + struct i3c_dev_desc *i3cdev = master->i3cdev[dev_number]; + struct i3c_priv_xfer i3c_xfers; + + i3c_xfers.data.in = buf; + i3c_xfers.len = buf_size; + i3c_xfers.rnw = I3C_MSG_READ; + + return dw_i3c_master_priv_xfers(i3cdev, &i3c_xfers, 1); +} + +static int dw_i3c_master_priv_write(struct udevice *dev, u32 dev_number, + u8 *buf, u32 buf_size) +{ + struct dw_i3c_master *master = dev_get_priv(dev); + struct i3c_dev_desc *i3cdev = master->i3cdev[dev_number]; + struct i3c_priv_xfer i3c_xfers; + + i3c_xfers.data.out = buf; + i3c_xfers.len = buf_size; + i3c_xfers.rnw = I3C_MSG_WRITE; + + return dw_i3c_master_priv_xfers(i3cdev, &i3c_xfers, 1); +} + +static const struct dm_i3c_ops dw_i3c_ops = { + .i3c_xfers = dw_i3c_master_priv_xfers, + .read = dw_i3c_master_priv_read, + .write = dw_i3c_master_priv_write, +}; + +static const struct udevice_id dw_i3c_ids[] = { + { .compatible = "snps,dw-i3c-master-1.00a" }, + { } +}; + +U_BOOT_DRIVER(dw_i3c_driver) = { + .name = "dw-i3c-master", + .id = UCLASS_I3C, + .of_match = dw_i3c_ids, + .probe = dw_i3c_probe, + .priv_auto = sizeof(struct dw_i3c_master), + .ops = &dw_i3c_ops, +}; diff --git a/drivers/i3c/sandbox_i3c.c b/drivers/i3c/sandbox_i3c.c new file mode 100644 index 00000000000..e452e982566 --- /dev/null +++ b/drivers/i3c/sandbox_i3c.c @@ -0,0 +1,56 @@ +// SPDX-License-Identifier: GPL-2.0 +/* + * Copyright (C) 2025 Altera Corporation <www.altera.com> + */ + +#include <dm.h> +#include <errno.h> +#include <i3c.h> +#include <linux/i3c/master.h> + +struct sandbox_i3c_priv { + struct i3c_priv_xfer i3c_xfers; +}; + +static int sandbox_i3c_priv_read(struct udevice *dev, u32 dev_number, + u8 *buf, u32 buf_size) +{ + struct sandbox_i3c_priv *priv = dev_get_priv(dev); + struct i3c_priv_xfer i3c_xfers; + + i3c_xfers = priv->i3c_xfers; + i3c_xfers.data.in = buf; + i3c_xfers.len = buf_size; + + return 0; +} + +static int sandbox_i3c_priv_write(struct udevice *dev, u32 dev_number, + u8 *buf, u32 buf_size) +{ + struct sandbox_i3c_priv *priv = dev_get_priv(dev); + struct i3c_priv_xfer i3c_xfers; + + i3c_xfers = priv->i3c_xfers; + i3c_xfers.data.out = buf; + i3c_xfers.len = buf_size; + + return 0; +} + +static const struct dm_i3c_ops sandbox_i3c_ops = { + .read = sandbox_i3c_priv_read, + .write = sandbox_i3c_priv_write, +}; + +static const struct udevice_id sandbox_i3c_ids[] = { + { .compatible = "sandbox,i3c" }, + { } +}; + +U_BOOT_DRIVER(i3c_sandbox) = { + .name = "i3c_sandbox", + .id = UCLASS_I3C, + .of_match = sandbox_i3c_ids, + .ops = &sandbox_i3c_ops, +}; diff --git a/include/dm/uclass-id.h b/include/dm/uclass-id.h index 5c0fd6d171b..6be59093160 100644 --- a/include/dm/uclass-id.h +++ b/include/dm/uclass-id.h @@ -79,6 +79,7 @@ enum uclass_id { UCLASS_I2C_GENERIC, /* Generic I2C device */ UCLASS_I2C_MUX, /* I2C multiplexer */ UCLASS_I2S, /* I2S bus */ + UCLASS_I3C, /* I3C bus */ UCLASS_IDE, /* IDE device */ UCLASS_IOMMU, /* IOMMU */ UCLASS_IRQ, /* Interrupt controller */ diff --git a/include/dw-i3c.h b/include/dw-i3c.h new file mode 100644 index 00000000000..c652de77404 --- /dev/null +++ b/include/dw-i3c.h @@ -0,0 +1,252 @@ +/* SPDX-License-Identifier: GPL-2.0+ */ +/* + * Copyright (C) 2025 Altera Corporation <www.altera.com> + */ + +#ifndef _DW_I3C_H_ +#define _DW_I3C_H_ + +#include <clk.h> +#include <i3c.h> +#include <reset.h> +#include <dm/device.h> +#include <linux/bitops.h> +#include <linux/bitfield.h> +#include <linker_lists.h> +#include <linux/i3c/master.h> + +#define DEVICE_CTRL 0x0 +#define DEV_CTRL_ENABLE BIT(31) +#define DEV_CTRL_RESUME BIT(30) +#define DEV_CTRL_HOT_JOIN_NACK BIT(8) +#define DEV_CTRL_I2C_SLAVE_PRESENT BIT(7) + +#define DEVICE_ADDR 0x4 +#define DEV_ADDR_DYNAMIC_ADDR_VALID BIT(31) +#define DEV_ADDR_DYNAMIC(x) (((x) << 16) & GENMASK(22, 16)) + +#define HW_CAPABILITY 0x8 +#define COMMAND_QUEUE_PORT 0xc +#define COMMAND_PORT_TOC BIT(30) +#define COMMAND_PORT_READ_TRANSFER BIT(28) +#define COMMAND_PORT_SDAP BIT(27) +#define COMMAND_PORT_ROC BIT(26) +#define COMMAND_PORT_SPEED(x) (((x) << 21) & GENMASK(23, 21)) +#define COMMAND_PORT_DEV_INDEX(x) (((x) << 16) & GENMASK(20, 16)) +#define COMMAND_PORT_CP BIT(15) +#define COMMAND_PORT_CMD(x) (((x) << 7) & GENMASK(14, 7)) +#define COMMAND_PORT_TID(x) (((x) << 3) & GENMASK(6, 3)) + +#define COMMAND_PORT_ARG_DATA_LEN(x) (((x) << 16) & GENMASK(31, 16)) +#define COMMAND_PORT_ARG_DATA_LEN_MAX 65536 +#define COMMAND_PORT_TRANSFER_ARG 0x01 + +#define COMMAND_PORT_SDA_DATA_BYTE_3(x) (((x) << 24) & GENMASK(31, 24)) +#define COMMAND_PORT_SDA_DATA_BYTE_2(x) (((x) << 16) & GENMASK(23, 16)) +#define COMMAND_PORT_SDA_DATA_BYTE_1(x) (((x) << 8) & GENMASK(15, 8)) +#define COMMAND_PORT_SDA_BYTE_STRB_3 BIT(5) +#define COMMAND_PORT_SDA_BYTE_STRB_2 BIT(4) +#define COMMAND_PORT_SDA_BYTE_STRB_1 BIT(3) +#define COMMAND_PORT_SHORT_DATA_ARG 0x02 + +#define COMMAND_PORT_DEV_COUNT(x) (((x) << 21) & GENMASK(25, 21)) +#define COMMAND_PORT_ADDR_ASSGN_CMD 0x03 + +#define RESPONSE_QUEUE_PORT 0x10 +#define RESPONSE_PORT_ERR_STATUS(x) (((x) & GENMASK(31, 28)) >> 28) +#define RESPONSE_NO_ERROR 0 +#define RESPONSE_ERROR_CRC 1 +#define RESPONSE_ERROR_PARITY 2 +#define RESPONSE_ERROR_FRAME 3 +#define RESPONSE_ERROR_IBA_NACK 4 +#define RESPONSE_ERROR_ADDRESS_NACK 5 +#define RESPONSE_ERROR_OVER_UNDER_FLOW 6 +#define RESPONSE_ERROR_TRANSF_ABORT 8 +#define RESPONSE_ERROR_I2C_W_NACK_ERR 9 +#define RESPONSE_PORT_TID(x) (((x) & GENMASK(27, 24)) >> 24) +#define RESPONSE_PORT_DATA_LEN(x) ((x) & GENMASK(15, 0)) + +#define RX_TX_DATA_PORT 0x14 +#define IBI_QUEUE_STATUS 0x18 +#define QUEUE_THLD_CTRL 0x1c +#define QUEUE_THLD_CTRL_RESP_BUF_MASK GENMASK(15, 8) +#define QUEUE_THLD_CTRL_RESP_BUF(x) (((x) - 1) << 8) + +#define DATA_BUFFER_THLD_CTRL 0x20 +#define DATA_BUFFER_THLD_CTRL_RX_BUF GENMASK(11, 8) + +#define IBI_QUEUE_CTRL 0x24 +#define IBI_MR_REQ_REJECT 0x2C +#define IBI_SIR_REQ_REJECT 0x30 +#define IBI_REQ_REJECT_ALL GENMASK(31, 0) + +#define RESET_CTRL 0x34 +#define RESET_CTRL_IBI_QUEUE BIT(5) +#define RESET_CTRL_RX_FIFO BIT(4) +#define RESET_CTRL_TX_FIFO BIT(3) +#define RESET_CTRL_RESP_QUEUE BIT(2) +#define RESET_CTRL_CMD_QUEUE BIT(1) +#define RESET_CTRL_SOFT BIT(0) + +#define SLV_EVENT_CTRL 0x38 +#define INTR_STATUS 0x3c +#define INTR_STATUS_EN 0x40 +#define INTR_SIGNAL_EN 0x44 +#define INTR_FORCE 0x48 +#define INTR_BUSOWNER_UPDATE_STAT BIT(13) +#define INTR_IBI_UPDATED_STAT BIT(12) +#define INTR_READ_REQ_RECV_STAT BIT(11) +#define INTR_DEFSLV_STAT BIT(10) +#define INTR_TRANSFER_ERR_STAT BIT(9) +#define INTR_DYN_ADDR_ASSGN_STAT BIT(8) +#define INTR_CCC_UPDATED_STAT BIT(6) +#define INTR_TRANSFER_ABORT_STAT BIT(5) +#define INTR_RESP_READY_STAT BIT(4) +#define INTR_CMD_QUEUE_READY_STAT BIT(3) +#define INTR_IBI_THLD_STAT BIT(2) +#define INTR_RX_THLD_STAT BIT(1) +#define INTR_TX_THLD_STAT BIT(0) +#define INTR_ALL (INTR_BUSOWNER_UPDATE_STAT | \ + INTR_IBI_UPDATED_STAT | \ + INTR_READ_REQ_RECV_STAT | \ + INTR_DEFSLV_STAT | \ + INTR_TRANSFER_ERR_STAT | \ + INTR_DYN_ADDR_ASSGN_STAT | \ + INTR_CCC_UPDATED_STAT | \ + INTR_TRANSFER_ABORT_STAT | \ + INTR_RESP_READY_STAT | \ + INTR_CMD_QUEUE_READY_STAT | \ + INTR_IBI_THLD_STAT | \ + INTR_TX_THLD_STAT | \ + INTR_RX_THLD_STAT) + +#define INTR_MASTER_MASK (INTR_TRANSFER_ERR_STAT | \ + INTR_RESP_READY_STAT) + +#define QUEUE_STATUS_LEVEL 0x4c +#define QUEUE_STATUS_IBI_STATUS_CNT(x) (((x) & GENMASK(28, 24)) >> 24) +#define QUEUE_STATUS_IBI_BUF_BLR(x) (((x) & GENMASK(23, 16)) >> 16) +#define QUEUE_STATUS_LEVEL_RESP(x) (((x) & GENMASK(15, 8)) >> 8) +#define QUEUE_STATUS_LEVEL_CMD(x) ((x) & GENMASK(7, 0)) + +#define DATA_BUFFER_STATUS_LEVEL 0x50 +#define DATA_BUFFER_STATUS_LEVEL_TX(x) ((x) & GENMASK(7, 0)) + +#define PRESENT_STATE 0x54 +#define CCC_DEVICE_STATUS 0x58 +#define DEVICE_ADDR_TABLE_POINTER 0x5c +#define DEVICE_ADDR_TABLE_DEPTH(x) (((x) & GENMASK(31, 16)) >> 16) +#define DEVICE_ADDR_TABLE_ADDR(x) ((x) & GENMASK(7, 0)) + +#define DEV_CHAR_TABLE_POINTER 0x60 +#define VENDOR_SPECIFIC_REG_POINTER 0x6c +#define SLV_PID_VALUE 0x74 +#define SLV_CHAR_CTRL 0x78 +#define SLV_MAX_LEN 0x7c +#define MAX_READ_TURNAROUND 0x80 +#define MAX_DATA_SPEED 0x84 +#define SLV_DEBUG_STATUS 0x88 +#define SLV_INTR_REQ 0x8c +#define DEVICE_CTRL_EXTENDED 0xb0 +#define SCL_I3C_OD_TIMING 0xb4 +#define SCL_I3C_PP_TIMING 0xb8 +#define SCL_I3C_TIMING_HCNT(x) (((x) << 16) & GENMASK(23, 16)) +#define SCL_I3C_TIMING_LCNT(x) ((x) & GENMASK(7, 0)) +#define SCL_I3C_TIMING_CNT_MIN 5 + +#define SCL_I2C_FM_TIMING 0xbc +#define SCL_I2C_FM_TIMING_HCNT(x) (((x) << 16) & GENMASK(31, 16)) +#define SCL_I2C_FM_TIMING_LCNT(x) ((x) & GENMASK(15, 0)) + +#define SCL_I2C_FMP_TIMING 0xc0 +#define SCL_I2C_FMP_TIMING_HCNT(x) (((x) << 16) & GENMASK(23, 16)) +#define SCL_I2C_FMP_TIMING_LCNT(x) ((x) & GENMASK(15, 0)) + +#define SCL_EXT_LCNT_TIMING 0xc8 +#define SCL_EXT_LCNT_4(x) (((x) << 24) & GENMASK(31, 24)) +#define SCL_EXT_LCNT_3(x) (((x) << 16) & GENMASK(23, 16)) +#define SCL_EXT_LCNT_2(x) (((x) << 8) & GENMASK(15, 8)) +#define SCL_EXT_LCNT_1(x) ((x) & GENMASK(7, 0)) + +#define SCL_EXT_TERMN_LCNT_TIMING 0xcc +#define BUS_FREE_TIMING 0xd4 +#define BUS_I3C_MST_FREE(x) ((x) & GENMASK(15, 0)) + +#define BUS_IDLE_TIMING 0xd8 +#define I3C_VER_ID 0xe0 +#define I3C_VER_TYPE 0xe4 +#define EXTENDED_CAPABILITY 0xe8 +#define SLAVE_CONFIG 0xec + +#define DEV_ADDR_TABLE_LEGACY_I2C_DEV BIT(31) +#define DEV_ADDR_TABLE_DYNAMIC_ADDR(x) (((x) << 16) & GENMASK(23, 16)) +#define DEV_ADDR_TABLE_STATIC_ADDR(x) ((x) & GENMASK(6, 0)) +#define DEV_ADDR_TABLE_LOC(start, idx) ((start) + ((idx) << 2)) + +#define MAX_DEVS 32 + +#define I3C_BUS_SDR1_SCL_RATE 8000000 +#define I3C_BUS_SDR2_SCL_RATE 6000000 +#define I3C_BUS_SDR3_SCL_RATE 4000000 +#define I3C_BUS_SDR4_SCL_RATE 2000000 +#define I3C_BUS_I2C_FM_TLOW_MIN_NS 1300 +#define I3C_BUS_I2C_FMP_TLOW_MIN_NS 500 +#define I3C_BUS_THIGH_MAX_NS 41 + +#define XFER_TIMEOUT (msecs_to_jiffies(1000)) +#define readl_poll_timeout_atomic readl_poll_sleep_timeout +#define STRUCT_SZ(struct, count) (sizeof(struct) * (count)) + +#define I3C_MSG_READ 1 +#define I3C_MSG_WRITE 0 +#define POLL_SUCCESS 0 + +struct dw_i3c_master_caps { + u8 cmdfifodepth; + u8 datafifodepth; +}; + +struct dw_i3c_cmd { + u32 cmd_lo; + u32 cmd_hi; + u16 tx_len; + const void *tx_buf; + u16 rx_len; + void *rx_buf; + u8 error; +}; + +struct dw_i3c_xfer { + struct list_head node; + int ret; + unsigned int ncmds; + struct dw_i3c_cmd cmds[16]; +}; + +struct dw_i3c_master { + struct i3c_master_controller base; + u16 maxdevs; + u16 datstartaddr; + u32 free_pos; + struct { + struct list_head list; + struct dw_i3c_xfer *cur; + spinlock_t lock; /* spinlock for i3c transfer */ + } xferqueue; + struct dw_i3c_master_caps caps; + void __iomem *regs; + struct reset_ctl_bulk resets; + struct clk core_clk; + char version[5]; + char type[5]; + u8 addrs[MAX_DEVS]; + bool first_broadcast; + struct i3c_dev_desc *i3cdev[I3C_BUS_MAX_DEVS]; + u16 num_i3cdevs; +}; + +struct dw_i3c_i2c_dev_data { + u8 index; +}; + +#endif /*_DW_I3C_H_*/ diff --git a/include/i3c.h b/include/i3c.h new file mode 100644 index 00000000000..e19c22a8852 --- /dev/null +++ b/include/i3c.h @@ -0,0 +1,93 @@ +/* SPDX-License-Identifier: GPL-2.0+ */ +/* + * Copyright (C) 2025 Altera Corporation <www.altera.com> + */ + +#include <linux/i3c/master.h> + +/** + * struct dm_i3c_ops - Driver operations for the I3C uclass + * + * This structure defines the set of operations that a driver must implement + * for interacting with an I3C controller in U-Boot. + * + */ +struct dm_i3c_ops { +/** + * @i3c_xfers: Transfer messages in I3C + * + * @dev: I3C controller device instance. + * @xfers: List of I3C private SDR transfer messages. + * @nxfers: The number of messages to transfer. + * + * Return: 0 on success, negative error code on failure. + */ + int (*i3c_xfers)(struct i3c_dev_desc *dev, + struct i3c_priv_xfer *xfers, + u32 nxfers); + +/** + * @read: Perform I3C read transaction. + * + * @dev: Chip to read from + * @dev_number: The target device number from the driver model. + * @buf: Place to put data + * @num_bytes: Number of bytes to read. + * + * Return: 0 on success, negative error code on failure. + */ + int (*read)(struct udevice *dev, u32 dev_number, + u8 *buf, u32 num_bytes); + +/** + * @write: Perform I3C write transaction. + * + * @dev: Chip to write to + * @dev_number: The target device number from the driver model. + * @buf: Buffer containing data to write + * @num_bytes: Number of bytes to write. + * + * Return: 0 on success, negative error code on failure. + */ + int (*write)(struct udevice *dev, u32 dev_number, + u8 *buf, u32 num_bytes); +}; + +/** + * i3c_get_ops - Retrieve the I3C operation functions for a device + * @dev: The I3C controller device. + * + * This macro returns the set of operation functions (`dm_i3c_ops`) implemented + * by the driver associated with the specified device. These operations define + * how the driver performs I3C communication tasks such as reading, writing, + * and message transfers. + * + * Return: The I3C operation structure for the device. + */ +#define i3c_get_ops(dev) ((struct dm_i3c_ops *)(dev)->driver->ops) + +/** + * dm_i3c_write - Perform I3C write transaction + * + * @dev: Chip to write to + * @dev_number: The target device number from the driver model. + * @buf: Buffer containing data to write + * @num_bytes: Number of bytes to write. + * + * Return: 0 on success, negative error code on failure. + */ +int dm_i3c_write(struct udevice *dev, u32 dev_number, + u8 *buf, u32 num_bytes); + +/** + * dm_i3c_read - Perform I3C read transaction + * + * @dev: Chip to read from + * @dev_number: The target device number from the driver model. + * @buf: Place to put data + * @num_bytes: Number of bytes to read. + * + * Return: 0 on success, negative error code on failure. + */ +int dm_i3c_read(struct udevice *dev, u32 dev_number, + u8 *buf, u32 num_bytes); diff --git a/include/linux/i3c/ccc.h b/include/linux/i3c/ccc.h new file mode 100644 index 00000000000..73b0982cc51 --- /dev/null +++ b/include/linux/i3c/ccc.h @@ -0,0 +1,385 @@ +/* SPDX-License-Identifier: GPL-2.0 */ +/* + * Copyright (C) 2018 Cadence Design Systems Inc. + * + * Author: Boris Brezillon <boris.brezillon@bootlin.com> + */ + +#ifndef I3C_CCC_H +#define I3C_CCC_H + +#include <linux/bitops.h> +#include <linux/i3c/device.h> + +/* I3C CCC (Common Command Codes) related definitions */ +#define I3C_CCC_DIRECT BIT(7) + +#define I3C_CCC_ID(id, broadcast) \ + ((id) | ((broadcast) ? 0 : I3C_CCC_DIRECT)) + +/* Commands valid in both broadcast and unicast modes */ +#define I3C_CCC_ENEC(broadcast) I3C_CCC_ID(0x0, broadcast) +#define I3C_CCC_DISEC(broadcast) I3C_CCC_ID(0x1, broadcast) +#define I3C_CCC_ENTAS(as, broadcast) I3C_CCC_ID(0x2 + (as), broadcast) +#define I3C_CCC_RSTDAA(broadcast) I3C_CCC_ID(0x6, broadcast) +#define I3C_CCC_SETMWL(broadcast) I3C_CCC_ID(0x9, broadcast) +#define I3C_CCC_SETMRL(broadcast) I3C_CCC_ID(0xa, broadcast) +#define I3C_CCC_SETXTIME(broadcast) ((broadcast) ? 0x28 : 0x98) +#define I3C_CCC_VENDOR(id, broadcast) ((id) + ((broadcast) ? 0x61 : 0xe0)) + +/* Broadcast-only commands */ +#define I3C_CCC_ENTDAA I3C_CCC_ID(0x7, true) +#define I3C_CCC_DEFSLVS I3C_CCC_ID(0x8, true) +#define I3C_CCC_ENTTM I3C_CCC_ID(0xb, true) +#define I3C_CCC_ENTHDR(x) I3C_CCC_ID(0x20 + (x), true) + +/* Unicast-only commands */ +#define I3C_CCC_SETDASA I3C_CCC_ID(0x7, false) +#define I3C_CCC_SETNEWDA I3C_CCC_ID(0x8, false) +#define I3C_CCC_GETMWL I3C_CCC_ID(0xb, false) +#define I3C_CCC_GETMRL I3C_CCC_ID(0xc, false) +#define I3C_CCC_GETPID I3C_CCC_ID(0xd, false) +#define I3C_CCC_GETBCR I3C_CCC_ID(0xe, false) +#define I3C_CCC_GETDCR I3C_CCC_ID(0xf, false) +#define I3C_CCC_GETSTATUS I3C_CCC_ID(0x10, false) +#define I3C_CCC_GETACCMST I3C_CCC_ID(0x11, false) +#define I3C_CCC_SETBRGTGT I3C_CCC_ID(0x13, false) +#define I3C_CCC_GETMXDS I3C_CCC_ID(0x14, false) +#define I3C_CCC_GETHDRCAP I3C_CCC_ID(0x15, false) +#define I3C_CCC_GETXTIME I3C_CCC_ID(0x19, false) + +#define I3C_CCC_EVENT_SIR BIT(0) +#define I3C_CCC_EVENT_MR BIT(1) +#define I3C_CCC_EVENT_HJ BIT(3) + +/** + * struct i3c_ccc_events - payload passed to ENEC/DISEC CCC + * + * @events: bitmask of I3C_CCC_EVENT_xxx events. + * + * Depending on the CCC command, the specific events coming from all devices + * (broadcast version) or a specific device (unicast version) will be + * enabled (ENEC) or disabled (DISEC). + */ +struct i3c_ccc_events { + u8 events; +}; + +/** + * struct i3c_ccc_mwl - payload passed to SETMWL/GETMWL CCC + * + * @len: maximum write length in bytes + * + * The maximum write length is only applicable to SDR private messages or + * extended Write CCCs (like SETXTIME). + */ +struct i3c_ccc_mwl { + __be16 len; +}; + +/** + * struct i3c_ccc_mrl - payload passed to SETMRL/GETMRL CCC + * + * @len: maximum read length in bytes + * @ibi_len: maximum IBI payload length + * + * The maximum read length is only applicable to SDR private messages or + * extended Read CCCs (like GETXTIME). + * The IBI length is only valid if the I3C slave is IBI capable + * (%I3C_BCR_IBI_REQ_CAP is set). + */ +struct i3c_ccc_mrl { + __be16 read_len; + u8 ibi_len; +} __packed; + +/** + * struct i3c_ccc_dev_desc - I3C/I2C device descriptor used for DEFSLVS + * + * @dyn_addr: dynamic address assigned to the I3C slave or 0 if the entry is + * describing an I2C slave. + * @dcr: DCR value (not applicable to entries describing I2C devices) + * @lvr: LVR value (not applicable to entries describing I3C devices) + * @bcr: BCR value or 0 if this entry is describing an I2C slave + * @static_addr: static address or 0 if the device does not have a static + * address + * + * The DEFSLVS command should be passed an array of i3c_ccc_dev_desc + * descriptors (one entry per I3C/I2C dev controlled by the master). + */ +struct i3c_ccc_dev_desc { + u8 dyn_addr; + union { + u8 dcr; + u8 lvr; + }; + u8 bcr; + u8 static_addr; +}; + +/** + * struct i3c_ccc_defslvs - payload passed to DEFSLVS CCC + * + * @count: number of dev descriptors + * @master: descriptor describing the current master + * @slaves: array of descriptors describing slaves controlled by the + * current master + * + * Information passed to the broadcast DEFSLVS to propagate device + * information to all masters currently acting as slaves on the bus. + * This is only meaningful if you have more than one master. + */ +struct i3c_ccc_defslvs { + u8 count; + struct i3c_ccc_dev_desc master; + struct i3c_ccc_dev_desc slaves[0]; +} __packed; + +/** + * enum i3c_ccc_test_mode - enum listing all available test modes + * + * @I3C_CCC_EXIT_TEST_MODE: exit test mode + * @I3C_CCC_VENDOR_TEST_MODE: enter vendor test mode + */ +enum i3c_ccc_test_mode { + I3C_CCC_EXIT_TEST_MODE, + I3C_CCC_VENDOR_TEST_MODE, +}; + +/** + * struct i3c_ccc_enttm - payload passed to ENTTM CCC + * + * @mode: one of the &enum i3c_ccc_test_mode modes + * + * Information passed to the ENTTM CCC to instruct an I3C device to enter a + * specific test mode. + */ +struct i3c_ccc_enttm { + u8 mode; +}; + +/** + * struct i3c_ccc_setda - payload passed to SETNEWDA and SETDASA CCCs + * + * @addr: dynamic address to assign to an I3C device + * + * Information passed to the SETNEWDA and SETDASA CCCs to assign/change the + * dynamic address of an I3C device. + */ +struct i3c_ccc_setda { + u8 addr; +}; + +/** + * struct i3c_ccc_getpid - payload passed to GETPID CCC + * + * @pid: 48 bits PID in big endian + */ +struct i3c_ccc_getpid { + u8 pid[6]; +}; + +/** + * struct i3c_ccc_getbcr - payload passed to GETBCR CCC + * + * @bcr: BCR (Bus Characteristic Register) value + */ +struct i3c_ccc_getbcr { + u8 bcr; +}; + +/** + * struct i3c_ccc_getdcr - payload passed to GETDCR CCC + * + * @dcr: DCR (Device Characteristic Register) value + */ +struct i3c_ccc_getdcr { + u8 dcr; +}; + +#define I3C_CCC_STATUS_PENDING_INT(status) ((status) & GENMASK(3, 0)) +#define I3C_CCC_STATUS_PROTOCOL_ERROR BIT(5) +#define I3C_CCC_STATUS_ACTIVITY_MODE(status) \ + (((status) & GENMASK(7, 6)) >> 6) + +/** + * struct i3c_ccc_getstatus - payload passed to GETSTATUS CCC + * + * @status: status of the I3C slave (see I3C_CCC_STATUS_xxx macros for more + * information). + */ +struct i3c_ccc_getstatus { + __be16 status; +}; + +/** + * struct i3c_ccc_getaccmst - payload passed to GETACCMST CCC + * + * @newmaster: address of the master taking bus ownership + */ +struct i3c_ccc_getaccmst { + u8 newmaster; +}; + +/** + * struct i3c_ccc_bridged_slave_desc - bridged slave descriptor + * + * @addr: dynamic address of the bridged device + * @id: ID of the slave device behind the bridge + */ +struct i3c_ccc_bridged_slave_desc { + u8 addr; + __be16 id; +} __packed; + +/** + * struct i3c_ccc_setbrgtgt - payload passed to SETBRGTGT CCC + * + * @count: number of bridged slaves + * @bslaves: bridged slave descriptors + */ +struct i3c_ccc_setbrgtgt { + u8 count; + struct i3c_ccc_bridged_slave_desc bslaves[0]; +} __packed; + +/** + * enum i3c_sdr_max_data_rate - max data rate values for private SDR transfers + */ +enum i3c_sdr_max_data_rate { + I3C_SDR0_FSCL_MAX, + I3C_SDR1_FSCL_8MHZ, + I3C_SDR2_FSCL_6MHZ, + I3C_SDR3_FSCL_4MHZ, + I3C_SDR4_FSCL_2MHZ, +}; + +/** + * enum i3c_tsco - clock to data turn-around + */ +enum i3c_tsco { + I3C_TSCO_8NS, + I3C_TSCO_9NS, + I3C_TSCO_10NS, + I3C_TSCO_11NS, + I3C_TSCO_12NS, +}; + +#define I3C_CCC_MAX_SDR_FSCL_MASK GENMASK(2, 0) +#define I3C_CCC_MAX_SDR_FSCL(x) ((x) & I3C_CCC_MAX_SDR_FSCL_MASK) + +/** + * struct i3c_ccc_getmxds - payload passed to GETMXDS CCC + * + * @maxwr: write limitations + * @maxrd: read limitations + * @maxrdturn: maximum read turn-around expressed micro-seconds and + * little-endian formatted + */ +struct i3c_ccc_getmxds { + u8 maxwr; + u8 maxrd; + u8 maxrdturn[3]; +} __packed; + +#define I3C_CCC_HDR_MODE(mode) BIT(mode) + +/** + * struct i3c_ccc_gethdrcap - payload passed to GETHDRCAP CCC + * + * @modes: bitmap of supported HDR modes + */ +struct i3c_ccc_gethdrcap { + u8 modes; +} __packed; + +/** + * enum i3c_ccc_setxtime_subcmd - SETXTIME sub-commands + */ +enum i3c_ccc_setxtime_subcmd { + I3C_CCC_SETXTIME_ST = 0x7f, + I3C_CCC_SETXTIME_DT = 0xbf, + I3C_CCC_SETXTIME_ENTER_ASYNC_MODE0 = 0xdf, + I3C_CCC_SETXTIME_ENTER_ASYNC_MODE1 = 0xef, + I3C_CCC_SETXTIME_ENTER_ASYNC_MODE2 = 0xf7, + I3C_CCC_SETXTIME_ENTER_ASYNC_MODE3 = 0xfb, + I3C_CCC_SETXTIME_ASYNC_TRIGGER = 0xfd, + I3C_CCC_SETXTIME_TPH = 0x3f, + I3C_CCC_SETXTIME_TU = 0x9f, + I3C_CCC_SETXTIME_ODR = 0x8f, +}; + +/** + * struct i3c_ccc_setxtime - payload passed to SETXTIME CCC + * + * @subcmd: one of the sub-commands ddefined in &enum i3c_ccc_setxtime_subcmd + * @data: sub-command payload. Amount of data is determined by + * &i3c_ccc_setxtime->subcmd + */ +struct i3c_ccc_setxtime { + u8 subcmd; + u8 data[0]; +} __packed; + +#define I3C_CCC_GETXTIME_SYNC_MODE BIT(0) +#define I3C_CCC_GETXTIME_ASYNC_MODE(x) BIT((x) + 1) +#define I3C_CCC_GETXTIME_OVERFLOW BIT(7) + +/** + * struct i3c_ccc_getxtime - payload retrieved from GETXTIME CCC + * + * @supported_modes: bitmap describing supported XTIME modes + * @state: current status (enabled mode and overflow status) + * @frequency: slave's internal oscillator frequency in 500KHz steps + * @inaccuracy: slave's internal oscillator inaccuracy in 0.1% steps + */ +struct i3c_ccc_getxtime { + u8 supported_modes; + u8 state; + u8 frequency; + u8 inaccuracy; +} __packed; + +/** + * struct i3c_ccc_cmd_payload - CCC payload + * + * @len: payload length + * @data: payload data. This buffer must be DMA-able + */ +struct i3c_ccc_cmd_payload { + u16 len; + void *data; +}; + +/** + * struct i3c_ccc_cmd_dest - CCC command destination + * + * @addr: can be an I3C device address or the broadcast address if this is a + * broadcast CCC + * @payload: payload to be sent to this device or broadcasted + */ +struct i3c_ccc_cmd_dest { + u8 addr; + struct i3c_ccc_cmd_payload payload; +}; + +/** + * struct i3c_ccc_cmd - CCC command + * + * @rnw: true if the CCC should retrieve data from the device. Only valid for + * unicast commands + * @id: CCC command id + * @ndests: number of destinations. Should always be one for broadcast commands + * @dests: array of destinations and associated payload for this CCC. Most of + * the time, only one destination is provided + * @err: I3C error code + */ +struct i3c_ccc_cmd { + u8 rnw; + u8 id; + unsigned int ndests; + struct i3c_ccc_cmd_dest *dests; + enum i3c_error_code err; +}; + +#endif /* I3C_CCC_H */ diff --git a/include/linux/i3c/device.h b/include/linux/i3c/device.h new file mode 100644 index 00000000000..9d4b472b869 --- /dev/null +++ b/include/linux/i3c/device.h @@ -0,0 +1,286 @@ +/* SPDX-License-Identifier: GPL-2.0 */ +/* + * Copyright (C) 2018 Cadence Design Systems Inc. + * + * Author: Boris Brezillon <boris.brezillon@bootlin.com> + */ + +#ifndef I3C_DEV_H +#define I3C_DEV_H + +#include <dm/device.h> +#include <i2c.h> +#include <linux/bitops.h> +#include <linux/compat.h> + +/** + * enum i3c_error_code - I3C error codes + * + * These are the standard error codes as defined by the I3C specification. + * When -EIO is returned by the i3c_device_do_priv_xfers() or + * i3c_device_send_hdr_cmds() one can check the error code in + * &struct_i3c_priv_xfer.err or &struct i3c_hdr_cmd.err to get a better idea of + * what went wrong. + * + * @I3C_ERROR_UNKNOWN: unknown error, usually means the error is not I3C + * related + * @I3C_ERROR_M0: M0 error + * @I3C_ERROR_M1: M1 error + * @I3C_ERROR_M2: M2 error + */ +enum i3c_error_code { + I3C_ERROR_UNKNOWN = 0, + I3C_ERROR_M0 = 1, + I3C_ERROR_M1, + I3C_ERROR_M2, +}; + +/** + * enum i3c_hdr_mode - HDR mode ids + * @I3C_HDR_DDR: DDR mode + * @I3C_HDR_TSP: TSP mode + * @I3C_HDR_TSL: TSL mode + */ +enum i3c_hdr_mode { + I3C_HDR_DDR, + I3C_HDR_TSP, + I3C_HDR_TSL, +}; + +/** + * struct i3c_priv_xfer - I3C SDR private transfer + * @rnw: encodes the transfer direction. true for a read, false for a write + * @len: transfer length in bytes of the transfer + * @data: input/output buffer + * @data.in: input buffer. Must point to a DMA-able buffer + * @data.out: output buffer. Must point to a DMA-able buffer + * @err: I3C error code + */ +struct i3c_priv_xfer { + u8 rnw; + u16 len; + union { + void *in; + const void *out; + } data; + enum i3c_error_code err; +}; + +/** + * enum i3c_dcr - I3C DCR values + * @I3C_DCR_GENERIC_DEVICE: generic I3C device + */ +enum i3c_dcr { + I3C_DCR_GENERIC_DEVICE = 0, +}; + +#define I3C_PID_MANUF_ID(pid) (((pid) & GENMASK_ULL(47, 33)) >> 33) +#define I3C_PID_RND_LOWER_32BITS(pid) (!!((pid) & BIT_ULL(32))) +#define I3C_PID_RND_VAL(pid) ((pid) & GENMASK_ULL(31, 0)) +#define I3C_PID_PART_ID(pid) (((pid) & GENMASK_ULL(31, 16)) >> 16) +#define I3C_PID_INSTANCE_ID(pid) (((pid) & GENMASK_ULL(15, 12)) >> 12) +#define I3C_PID_EXTRA_INFO(pid) ((pid) & GENMASK_ULL(11, 0)) + +#define I3C_BCR_DEVICE_ROLE(bcr) ((bcr) & GENMASK(7, 6)) +#define I3C_BCR_I3C_SLAVE (0 << 6) +#define I3C_BCR_I3C_MASTER BIT(6) +#define I3C_BCR_HDR_CAP BIT(5) +#define I3C_BCR_BRIDGE BIT(4) +#define I3C_BCR_OFFLINE_CAP BIT(3) +#define I3C_BCR_IBI_PAYLOAD BIT(2) +#define I3C_BCR_IBI_REQ_CAP BIT(1) +#define I3C_BCR_MAX_DATA_SPEED_LIM BIT(0) + +/* To determine what functionality is present */ + +#define I2C_FUNC_I2C 0x00000001 +#define I2C_FUNC_10BIT_ADDR 0x00000002 /* required for I2C_M_TEN */ +#define I2C_FUNC_PROTOCOL_MANGLING 0x00000004 /* required for I2C_M_IGNORE_NAK etc. */ +#define I2C_FUNC_SMBUS_PEC 0x00000008 +#define I2C_FUNC_NOSTART 0x00000010 /* required for I2C_M_NOSTART */ +#define I2C_FUNC_SLAVE 0x00000020 +#define I2C_FUNC_SMBUS_BLOCK_PROC_CALL 0x00008000 /* SMBus 2.0 or later */ +#define I2C_FUNC_SMBUS_QUICK 0x00010000 +#define I2C_FUNC_SMBUS_READ_BYTE 0x00020000 +#define I2C_FUNC_SMBUS_WRITE_BYTE 0x00040000 +#define I2C_FUNC_SMBUS_READ_BYTE_DATA 0x00080000 +#define I2C_FUNC_SMBUS_WRITE_BYTE_DATA 0x00100000 +#define I2C_FUNC_SMBUS_READ_WORD_DATA 0x00200000 +#define I2C_FUNC_SMBUS_WRITE_WORD_DATA 0x00400000 +#define I2C_FUNC_SMBUS_PROC_CALL 0x00800000 +#define I2C_FUNC_SMBUS_READ_BLOCK_DATA 0x01000000 /* required for I2C_M_RECV_LEN */ +#define I2C_FUNC_SMBUS_WRITE_BLOCK_DATA 0x02000000 +#define I2C_FUNC_SMBUS_READ_I2C_BLOCK 0x04000000 /* I2C-like block xfer */ +#define I2C_FUNC_SMBUS_WRITE_I2C_BLOCK 0x08000000 /* w/ 1-byte reg. addr. */ +#define I2C_FUNC_SMBUS_HOST_NOTIFY 0x10000000 /* SMBus 2.0 or later */ + +#define I2C_FUNC_SMBUS_BYTE (I2C_FUNC_SMBUS_READ_BYTE | \ + I2C_FUNC_SMBUS_WRITE_BYTE) +#define I2C_FUNC_SMBUS_BYTE_DATA (I2C_FUNC_SMBUS_READ_BYTE_DATA | \ + I2C_FUNC_SMBUS_WRITE_BYTE_DATA) +#define I2C_FUNC_SMBUS_WORD_DATA (I2C_FUNC_SMBUS_READ_WORD_DATA | \ + I2C_FUNC_SMBUS_WRITE_WORD_DATA) +#define I2C_FUNC_SMBUS_BLOCK_DATA (I2C_FUNC_SMBUS_READ_BLOCK_DATA | \ + I2C_FUNC_SMBUS_WRITE_BLOCK_DATA) +#define I2C_FUNC_SMBUS_I2C_BLOCK (I2C_FUNC_SMBUS_READ_I2C_BLOCK | \ + I2C_FUNC_SMBUS_WRITE_I2C_BLOCK) + +#define I2C_FUNC_SMBUS_EMUL (I2C_FUNC_SMBUS_QUICK | \ + I2C_FUNC_SMBUS_BYTE | \ + I2C_FUNC_SMBUS_BYTE_DATA | \ + I2C_FUNC_SMBUS_WORD_DATA | \ + I2C_FUNC_SMBUS_PROC_CALL | \ + I2C_FUNC_SMBUS_WRITE_BLOCK_DATA | \ + I2C_FUNC_SMBUS_I2C_BLOCK | \ + I2C_FUNC_SMBUS_PEC) + +/** + * struct i3c_device_info - I3C device information + * @pid: Provisional ID + * @bcr: Bus Characteristic Register + * @dcr: Device Characteristic Register + * @static_addr: static/I2C address + * @dyn_addr: dynamic address + * @hdr_cap: supported HDR modes + * @max_read_ds: max read speed information + * @max_write_ds: max write speed information + * @max_ibi_len: max IBI payload length + * @max_read_turnaround: max read turn-around time in micro-seconds + * @max_read_len: max private SDR read length in bytes + * @max_write_len: max private SDR write length in bytes + * + * These are all basic information that should be advertised by an I3C device. + * Some of them are optional depending on the device type and device + * capabilities. + * For each I3C slave attached to a master with + * i3c_master_add_i3c_dev_locked(), the core will send the relevant CCC command + * to retrieve these data. + */ +struct i3c_device_info { + u64 pid; + u8 bcr; + u8 dcr; + u8 static_addr; + u8 dyn_addr; + u8 hdr_cap; + u8 max_read_ds; + u8 max_write_ds; + u8 max_ibi_len; + u32 max_read_turnaround; + u16 max_read_len; + u16 max_write_len; +}; + +/* + * I3C device internals are kept hidden from I3C device users. It's just + * simpler to refactor things when everything goes through getter/setters, and + * I3C device drivers should not have to worry about internal representation + * anyway. + */ +struct i3c_device; + +/* These macros should be used to i3c_device_id entries. */ +#define I3C_MATCH_MANUF_AND_PART (I3C_MATCH_MANUF | I3C_MATCH_PART) + +#define I3C_DEVICE(_manufid, _partid, _drvdata) \ + { \ + .match_flags = I3C_MATCH_MANUF_AND_PART, \ + .manuf_id = _manufid, \ + .part_id = _partid, \ + .data = _drvdata, \ + } + +#define I3C_DEVICE_EXTRA_INFO(_manufid, _partid, _info, _drvdata) \ + { \ + .match_flags = I3C_MATCH_MANUF_AND_PART | \ + I3C_MATCH_EXTRA_INFO, \ + .manuf_id = _manufid, \ + .part_id = _partid, \ + .extra_info = _info, \ + .data = _drvdata, \ + } + +#define I3C_CLASS(_dcr, _drvdata) \ + { \ + .match_flags = I3C_MATCH_DCR, \ + .dcr = _dcr, \ + } + +/** + * struct i3c_driver - I3C device driver + * @driver: inherit from driver + * @probe: I3C device probe method + * @remove: I3C device remove method + * @id_table: I3C device match table. Will be used by the framework to decide + * which device to bind to this driver + */ +struct i3c_driver { + struct driver driver; + int (*probe)(struct i3c_device *dev); + void (*remove)(struct i3c_device *dev); + const struct i3c_device_id *id_table; +}; + +static inline struct i3c_driver *drv_to_i3cdrv(const struct driver *drv) +{ + return container_of(drv, struct i3c_driver, driver); +} + +struct udevice *i3cdev_to_dev(struct i3c_device *i3cdev); +struct i3c_device *dev_to_i3cdev(struct udevice *dev); + +const struct i3c_device_id * +i3c_device_match_id(struct i3c_device *i3cdev, + const struct i3c_device_id *id_table); + +/** + * module_i3c_i2c_driver() - Register a module providing an I3C and an I2C + * driver + * @__i3cdrv: the I3C driver to register + * @__i2cdrv: the I3C driver to register + * + * Provide generic init/exit functions that simply register/unregister an I3C + * and an I2C driver. + * This macro can be used even if CONFIG_I3C is disabled, in this case, only + * the I2C driver will be registered. + * Should be used by any driver that does not require extra init/cleanup steps. + */ +#define module_i3c_i2c_driver(__i3cdrv, __i2cdrv) \ + module_driver(__i3cdrv, \ + i3c_i2c_driver_register, \ + i3c_i2c_driver_unregister) + +void i3c_device_get_info(struct i3c_device *dev, struct i3c_device_info *info); + +struct i3c_ibi_payload { + unsigned int len; + const void *data; +}; + +/** + * struct i3c_ibi_setup - IBI setup object + * @max_payload_len: maximum length of the payload associated to an IBI. If one + * IBI appears to have a payload that is bigger than this + * number, the IBI will be rejected. + * @num_slots: number of pre-allocated IBI slots. This should be chosen so that + * the system never runs out of IBI slots, otherwise you'll lose + * IBIs. + * @handler: IBI handler, every time an IBI is received. This handler is called + * in a workqueue context. It is allowed to sleep and send new + * messages on the bus, though it's recommended to keep the + * processing done there as fast as possible to avoid delaying + * processing of other queued on the same workqueue. + * + * Temporary structure used to pass information to i3c_device_request_ibi(). + * This object can be allocated on the stack since i3c_device_request_ibi() + * copies every bit of information and do not use it after + * i3c_device_request_ibi() has returned. + */ +struct i3c_ibi_setup { + unsigned int max_payload_len; + unsigned int num_slots; + void (*handler)(struct i3c_device *dev, + const struct i3c_ibi_payload *payload); +}; + +#endif /* I3C_DEV_H */ diff --git a/include/linux/i3c/master.h b/include/linux/i3c/master.h new file mode 100644 index 00000000000..04017f34822 --- /dev/null +++ b/include/linux/i3c/master.h @@ -0,0 +1,698 @@ +/* SPDX-License-Identifier: GPL-2.0 */ +/* + * Copyright (C) 2018 Cadence Design Systems Inc. + * + * Author: Boris Brezillon <boris.brezillon@bootlin.com> + */ + +#ifndef I3C_MASTER_H +#define I3C_MASTER_H + +#include <asm/bitops.h> +#include <hwspinlock.h> +#include <i2c.h> +#include <linux/bitops.h> +#include <linux/i3c/ccc.h> +#include <linux/i3c/device.h> + +#define I3C_HOT_JOIN_ADDR 0x2 +#define I3C_BROADCAST_ADDR 0x7e +#define I3C_MAX_ADDR GENMASK(6, 0) + +struct i3c_master_controller; +struct i3c_bus; +struct i2c_device; +struct i3c_device; + +/** + * struct i3c_i2c_dev_desc - Common part of the I3C/I2C device descriptor + * @node: node element used to insert the slot into the I2C or I3C device + * list + * @master: I3C master that instantiated this device. Will be used to do + * I2C/I3C transfers + * @master_priv: master private data assigned to the device. Can be used to + * add master specific information + * + * This structure is describing common I3C/I2C dev information. + */ +struct i3c_i2c_dev_desc { + struct list_head node; + struct i3c_master_controller *master; + void *master_priv; +}; + +#define I3C_LVR_I2C_INDEX_MASK GENMASK(7, 5) +#define I3C_LVR_I2C_INDEX(x) ((x) << 5) +#define I3C_LVR_I2C_FM_MODE BIT(4) + +#define I2C_MAX_ADDR GENMASK(6, 0) +#define I2C_NAME_SIZE 20 +#define I2C_MODULE_PREFIX "i2c:" +#define I2C_CLIENT_TEN 0x10 + +/** + * struct i2c_board_info - template for device creation + * @type: chip type, to initialize i2c_client.name + * @flags: to initialize i2c_client.flags + * @addr: stored in i2c_client.addr + * @dev_name: Overrides the default <busnr>-<addr> dev_name if set + * @platform_data: stored in i2c_client.dev.platform_data + * @of_node: pointer to OpenFirmware device node + * @fwnode: device node supplied by the platform firmware + * @swnode: software node for the device + * @resources: resources associated with the device + * @num_resources: number of resources in the @resources array + * @irq: stored in i2c_client.irq + * + * I2C doesn't actually support hardware probing, although controllers and + * devices may be able to use I2C_SMBUS_QUICK to tell whether or not there's + * a device at a given address. Drivers commonly need more information than + * that, such as chip type, configuration, associated IRQ, and so on. + * + * i2c_board_info is used to build tables of information listing I2C devices + * that are present. This information is used to grow the driver model tree. + * For mainboards this is done statically using i2c_register_board_info(); + * bus numbers identify adapters that aren't yet available. For add-on boards, + * i2c_new_client_device() does this dynamically with the adapter already known. + */ +struct i2c_board_info { + char type[I2C_NAME_SIZE]; + unsigned short flags; + unsigned short addr; + const char *dev_name; + void *platform_data; + struct device_node *of_node; +}; + +/** + * struct i2c_dev_boardinfo - I2C device board information + * @node: used to insert the boardinfo object in the I2C boardinfo list + * @base: regular I2C board information + * @lvr: LVR (Legacy Virtual Register) needed by the I3C core to know about + * the I2C device limitations + * + * This structure is used to attach board-level information to an I2C device. + * Each I2C device connected on the I3C bus should have one. + */ +struct i2c_dev_boardinfo { + struct list_head node; + struct i2c_board_info base; + u8 lvr; +}; + +/** + * struct i2c_dev_desc - I2C device descriptor + * @common: common part of the I2C device descriptor + * @boardinfo: pointer to the boardinfo attached to this I2C device + * @dev: I2C device object registered to the I2C framework + * @addr: I2C device address + * @lvr: LVR (Legacy Virtual Register) needed by the I3C core to know about + * the I2C device limitations + * + * Each I2C device connected on the bus will have an i2c_dev_desc. + * This object is created by the core and later attached to the controller + * using &struct_i3c_master_controller->ops->attach_i2c_dev(). + * + * &struct_i2c_dev_desc is the internal representation of an I2C device + * connected on an I3C bus. This object is also passed to all + * &struct_i3c_master_controller_ops hooks. + */ +struct i2c_dev_desc { + struct i3c_i2c_dev_desc common; + const struct i2c_dev_boardinfo *boardinfo; + struct i2c_client *dev; + u16 addr; + u8 lvr; +}; + +/** + * struct i3c_ibi_slot - I3C IBI (In-Band Interrupt) slot + * @work: work associated to this slot. The IBI handler will be called from + * there + * @dev: the I3C device that has generated this IBI + * @len: length of the payload associated to this IBI + * @data: payload buffer + * + * An IBI slot is an object pre-allocated by the controller and used when an + * IBI comes in. + * Every time an IBI comes in, the I3C master driver should find a free IBI + * slot in its IBI slot pool, retrieve the IBI payload and queue the IBI using + * i3c_master_queue_ibi(). + * + * How IBI slots are allocated is left to the I3C master driver, though, for + * simple kmalloc-based allocation, the generic IBI slot pool can be used. + */ +struct i3c_ibi_slot { + struct work_struct work; + struct i3c_dev_desc *dev; + unsigned int len; + void *data; +}; + +/** + * struct i3c_device_ibi_info - IBI information attached to a specific device + * @all_ibis_handled: used to be informed when no more IBIs are waiting to be + * processed. Used by i3c_device_disable_ibi() to wait for + * all IBIs to be dequeued + * @pending_ibis: count the number of pending IBIs. Each pending IBI has its + * work element queued to the controller workqueue + * @max_payload_len: maximum payload length for an IBI coming from this device. + * this value is specified when calling + * i3c_device_request_ibi() and should not change at run + * time. All messages IBIs exceeding this limit should be + * rejected by the master + * @num_slots: number of IBI slots reserved for this device + * @enabled: reflect the IBI status + * @handler: IBI handler specified at i3c_device_request_ibi() call time. This + * handler will be called from the controller workqueue, and as such + * is allowed to sleep (though it is recommended to process the IBI + * as fast as possible to not stall processing of other IBIs queued + * on the same workqueue). + * New I3C messages can be sent from the IBI handler + * + * The &struct_i3c_device_ibi_info object is allocated when + * i3c_device_request_ibi() is called and attached to a specific device. This + * object is here to manage IBIs coming from a specific I3C device. + * + * Note that this structure is the generic view of the IBI management + * infrastructure. I3C master drivers may have their own internal + * representation which they can associate to the device using + * controller-private data. + */ +struct i3c_device_ibi_info { + unsigned int max_payload_len; + unsigned int num_slots; + unsigned int enabled; + void (*handler)(struct i3c_device *dev, + const struct i3c_ibi_payload *payload); +}; + +/** + * struct i3c_dev_boardinfo - I3C device board information + * @node: used to insert the boardinfo object in the I3C boardinfo list + * @init_dyn_addr: initial dynamic address requested by the FW. We provide no + * guarantee that the device will end up using this address, + * but try our best to assign this specific address to the + * device + * @static_addr: static address the I3C device listen on before it's been + * assigned a dynamic address by the master. Will be used during + * bus initialization to assign it a specific dynamic address + * before starting DAA (Dynamic Address Assignment) + * @pid: I3C Provisional ID exposed by the device. This is a unique identifier + * that may be used to attach boardinfo to i3c_dev_desc when the device + * does not have a static address + * @of_node: optional DT node in case the device has been described in the DT + * + * This structure is used to attach board-level information to an I3C device. + * Not all I3C devices connected on the bus will have a boardinfo. It's only + * needed if you want to attach extra resources to a device or assign it a + * specific dynamic address. + */ +struct i3c_dev_boardinfo { + struct list_head node; + u8 init_dyn_addr; + u8 static_addr; + u64 pid; + struct device_node *of_node; +}; + +/** + * struct i3c_dev_desc - I3C device descriptor + * @common: common part of the I3C device descriptor + * @info: I3C device information. Will be automatically filled when you create + * your device with i3c_master_add_i3c_dev_locked() + * @ibi_lock: lock used to protect the &struct_i3c_device->ibi + * @ibi: IBI info attached to a device. Should be NULL until + * i3c_device_request_ibi() is called + * @dev: pointer to the I3C device object exposed to I3C device drivers. This + * should never be accessed from I3C master controller drivers. Only core + * code should manipulate it in when updating the dev <-> desc link or + * when propagating IBI events to the driver + * @boardinfo: pointer to the boardinfo attached to this I3C device + * + * Internal representation of an I3C device. This object is only used by the + * core and passed to I3C master controller drivers when they're requested to + * do some operations on the device. + * The core maintains the link between the internal I3C dev descriptor and the + * object exposed to the I3C device drivers (&struct_i3c_device). + */ +struct i3c_dev_desc { + struct i3c_i2c_dev_desc common; + struct i3c_device_info info; + struct mutex ibi_lock; /* lock used to protect the &struct_i3c_device->ibi */ + struct i3c_device_ibi_info *ibi; + struct i3c_device *dev; + const struct i3c_dev_boardinfo *boardinfo; +}; + +/** + * struct i3c_device - I3C device object + * @dev: device object to register the I3C dev to the device model + * @desc: pointer to an i3c device descriptor object. This link is updated + * every time the I3C device is rediscovered with a different dynamic + * address assigned + * @bus: I3C bus this device is attached to + * + * I3C device object exposed to I3C device drivers. The takes care of linking + * this object to the relevant &struct_i3c_dev_desc one. + * All I3C devs on the I3C bus are represented, including I3C masters. For each + * of them, we have an instance of &struct i3c_device. + */ +struct i3c_device { + struct udevice dev; + struct i3c_dev_desc *desc; + struct i3c_bus *bus; +}; + +/* + * The I3C specification says the maximum number of devices connected on the + * bus is 11, but this number depends on external parameters like trace length, + * capacitive load per Device, and the types of Devices present on the Bus. + * I3C master can also have limitations, so this number is just here as a + * reference and should be adjusted on a per-controller/per-board basis. + */ +#define I3C_BUS_MAX_DEVS 11 + +#define I3C_BUS_MAX_I3C_SCL_RATE 12900000 +#define I3C_BUS_TYP_I3C_SCL_RATE 12500000 +#define I3C_BUS_I2C_FM_PLUS_SCL_RATE 1000000 +#define I3C_BUS_I2C_FM_SCL_RATE 400000 +#define I3C_BUS_TLOW_OD_MIN_NS 200 +#define I3C_BUS_THIGH_INIT_OD_MIN_NS 200 + +/** + * enum i3c_bus_mode - I3C bus mode + * @I3C_BUS_MODE_PURE: only I3C devices are connected to the bus. No limitation + * expected + * @I3C_BUS_MODE_MIXED_FAST: I2C devices with 50ns spike filter are present on + * the bus. The only impact in this mode is that the + * high SCL pulse has to stay below 50ns to trick I2C + * devices when transmitting I3C frames + * @I3C_BUS_MODE_MIXED_LIMITED: I2C devices without 50ns spike filter are + * present on the bus. However they allow + * compliance up to the maximum SDR SCL clock + * frequency. + * @I3C_BUS_MODE_MIXED_SLOW: I2C devices without 50ns spike filter are present + * on the bus + */ +enum i3c_bus_mode { + I3C_BUS_MODE_PURE, + I3C_BUS_MODE_MIXED_FAST, + I3C_BUS_MODE_MIXED_LIMITED, + I3C_BUS_MODE_MIXED_SLOW, +}; + +/** + * enum i3c_addr_slot_status - I3C address slot status + * @I3C_ADDR_SLOT_FREE: address is free + * @I3C_ADDR_SLOT_RSVD: address is reserved + * @I3C_ADDR_SLOT_I2C_DEV: address is assigned to an I2C device + * @I3C_ADDR_SLOT_I3C_DEV: address is assigned to an I3C device + * @I3C_ADDR_SLOT_STATUS_MASK: address slot mask + * + * On an I3C bus, addresses are assigned dynamically, and we need to know which + * addresses are free to use and which ones are already assigned. + * + * Addresses marked as reserved are those reserved by the I3C protocol + * (broadcast address, ...). + */ +enum i3c_addr_slot_status { + I3C_ADDR_SLOT_FREE, + I3C_ADDR_SLOT_RSVD, + I3C_ADDR_SLOT_I2C_DEV, + I3C_ADDR_SLOT_I3C_DEV, + I3C_ADDR_SLOT_STATUS_MASK = 3, +}; + +/* + * i2c_adapter is the structure used to identify a physical i2c bus along + * with the access algorithms necessary to access it. + */ +struct i2c_adapter { + struct module *owner; + unsigned int class; + int timeout; /* in jiffies */ + int retries; + struct udevice dev; + int nr; + char name[48]; +}; + +/** + * struct i3c_bus - I3C bus object + * @cur_master: I3C master currently driving the bus. Since I3C is multi-master + * this can change over the time. Will be used to let a master + * know whether it needs to request bus ownership before sending + * a frame or not + * @id: bus ID. Assigned by the framework when register the bus + * @addrslots: a bitmap with 2-bits per-slot to encode the address status and + * ease the DAA (Dynamic Address Assignment) procedure (see + * &enum i3c_addr_slot_status) + * @mode: bus mode (see &enum i3c_bus_mode) + * @scl_rate.i3c: maximum rate for the clock signal when doing I3C SDR/priv + * transfers + * @scl_rate.i2c: maximum rate for the clock signal when doing I2C transfers + * @scl_rate: SCL signal rate for I3C and I2C mode + * @devs.i3c: contains a list of I3C device descriptors representing I3C + * devices connected on the bus and successfully attached to the + * I3C master + * @devs.i2c: contains a list of I2C device descriptors representing I2C + * devices connected on the bus and successfully attached to the + * I3C master + * @devs: 2 lists containing all I3C/I2C devices connected to the bus + * @lock: read/write lock on the bus. This is needed to protect against + * operations that have an impact on the whole bus and the devices + * connected to it. For example, when asking slaves to drop their + * dynamic address (RSTDAA CCC), we need to make sure no one is trying + * to send I3C frames to these devices. + * Note that this lock does not protect against concurrency between + * devices: several drivers can send different I3C/I2C frames through + * the same master in parallel. This is the responsibility of the + * master to guarantee that frames are actually sent sequentially and + * not interlaced + * + * The I3C bus is represented with its own object and not implicitly described + * by the I3C master to cope with the multi-master functionality, where one bus + * can be shared amongst several masters, each of them requesting bus ownership + * when they need to. + */ +struct i3c_bus { + struct i3c_dev_desc *cur_master; + int id; + unsigned long addrslots[((I2C_MAX_ADDR + 1) * 2) / BITS_PER_LONG]; + enum i3c_bus_mode mode; + struct { + unsigned long i3c; + unsigned long i2c; + } scl_rate; + struct { + struct list_head i3c; + struct list_head i2c; + } devs; + struct rw_semaphore lock; +}; + +/** + * struct i3c_master_controller_ops - I3C master methods + * @bus_init: hook responsible for the I3C bus initialization. You should at + * least call master_set_info() from there and set the bus mode. + * You can also put controller specific initialization in there. + * This method is mandatory. + * @bus_cleanup: cleanup everything done in + * &i3c_master_controller_ops->bus_init(). + * This method is optional. + * @attach_i3c_dev: called every time an I3C device is attached to the bus. It + * can be after a DAA or when a device is statically declared + * by the FW, in which case it will only have a static address + * and the dynamic address will be 0. + * When this function is called, device information have not + * been retrieved yet. + * This is a good place to attach master controller specific + * data to I3C devices. + * This method is optional. + * @reattach_i3c_dev: called every time an I3C device has its addressed + * changed. It can be because the device has been powered + * down and has lost its address, or it can happen when a + * device had a static address and has been assigned a + * dynamic address with SETDASA. + * This method is optional. + * @detach_i3c_dev: called when an I3C device is detached from the bus. Usually + * happens when the master device is unregistered. + * This method is optional. + * @do_daa: do a DAA (Dynamic Address Assignment) procedure. This is procedure + * should send an ENTDAA CCC command and then add all devices + * discovered sure the DAA using i3c_master_add_i3c_dev_locked(). + * Add devices added with i3c_master_add_i3c_dev_locked() will then be + * attached or re-attached to the controller. + * This method is mandatory. + * @supports_ccc_cmd: should return true if the CCC command is supported, false + * otherwise. + * This method is optional, if not provided the core assumes + * all CCC commands are supported. + * @send_ccc_cmd: send a CCC command + * This method is mandatory. + * @priv_xfers: do one or several private I3C SDR transfers + * This method is mandatory. + * @attach_i2c_dev: called every time an I2C device is attached to the bus. + * This is a good place to attach master controller specific + * data to I2C devices. + * This method is optional. + * @detach_i2c_dev: called when an I2C device is detached from the bus. Usually + * happens when the master device is unregistered. + * This method is optional. + * @i2c_xfers: do one or several I2C transfers. Note that, unlike i3c + * transfers, the core does not guarantee that buffers attached to + * the transfers are DMA-safe. If drivers want to have DMA-safe + * buffers, they should use the i2c_get_dma_safe_msg_buf() + * and i2c_put_dma_safe_msg_buf() helpers provided by the I2C + * framework. + * This method is mandatory. + * @request_ibi: attach an IBI handler to an I3C device. This implies defining + * an IBI handler and the constraints of the IBI (maximum payload + * length and number of pre-allocated slots). + * Some controllers support less IBI-capable devices than regular + * devices, so this method might return -%EBUSY if there's no + * more space for an extra IBI registration + * This method is optional. + * @free_ibi: free an IBI previously requested with ->request_ibi(). The IBI + * should have been disabled with ->disable_irq() prior to that + * This method is mandatory only if ->request_ibi is not NULL. + * @enable_ibi: enable the IBI. Only valid if ->request_ibi() has been called + * prior to ->enable_ibi(). The controller should first enable + * the IBI on the controller end (for example, unmask the hardware + * IRQ) and then send the ENEC CCC command (with the IBI flag set) + * to the I3C device. + * This method is mandatory only if ->request_ibi is not NULL. + * @disable_ibi: disable an IBI. First send the DISEC CCC command with the IBI + * flag set and then deactivate the hardware IRQ on the + * controller end. + * This method is mandatory only if ->request_ibi is not NULL. + * @recycle_ibi_slot: recycle an IBI slot. Called every time an IBI has been + * processed by its handler. The IBI slot should be put back + * in the IBI slot pool so that the controller can re-use it + * for a future IBI + * This method is mandatory only if ->request_ibi is not + * NULL. + */ +struct i3c_master_controller_ops { + int (*bus_init)(struct i3c_master_controller *master); + void (*bus_cleanup)(struct i3c_master_controller *master); + int (*attach_i3c_dev)(struct i3c_dev_desc *dev); + int (*reattach_i3c_dev)(struct i3c_dev_desc *dev, u8 old_dyn_addr); + void (*detach_i3c_dev)(struct i3c_dev_desc *dev); + int (*do_daa)(struct i3c_master_controller *master); + bool (*supports_ccc_cmd)(struct i3c_master_controller *master, + const struct i3c_ccc_cmd *cmd); + int (*send_ccc_cmd)(struct i3c_master_controller *master, + struct i3c_ccc_cmd *cmd); + int (*priv_xfers)(struct i3c_dev_desc *dev, + struct i3c_priv_xfer *xfers, + u32 nxfers); + int (*attach_i2c_dev)(struct i2c_dev_desc *dev); + void (*detach_i2c_dev)(struct i2c_dev_desc *dev); + int (*i2c_xfers)(struct i2c_dev_desc *dev, + const struct i2c_msg *xfers, int nxfers); + int (*request_ibi)(struct i3c_dev_desc *dev, + const struct i3c_ibi_setup *req); + void (*free_ibi)(struct i3c_dev_desc *dev); + int (*enable_ibi)(struct i3c_dev_desc *dev); + int (*disable_ibi)(struct i3c_dev_desc *dev); + void (*recycle_ibi_slot)(struct i3c_dev_desc *dev, + struct i3c_ibi_slot *slot); +}; + +/** + * struct i3c_master_controller - I3C master controller object + * @dev: device to be registered to the device-model + * @this: an I3C device object representing this master. This device will be + * added to the list of I3C devs available on the bus + * @i2c: I2C adapter used for backward compatibility. This adapter is + * registered to the I2C subsystem to be as transparent as possible to + * existing I2C drivers + * @ops: master operations. See &struct i3c_master_controller_ops + * @secondary: true if the master is a secondary master + * @init_done: true when the bus initialization is done + * @boardinfo.i3c: list of I3C boardinfo objects + * @boardinfo.i2c: list of I2C boardinfo objects + * @boardinfo: board-level information attached to devices connected on the bus + * @bus: I3C bus exposed by this master + * @wq: workqueue used to execute IBI handlers. Can also be used by master + * drivers if they need to postpone operations that need to take place + * in a thread context. Typical examples are Hot Join processing which + * requires taking the bus lock in maintenance, which in turn, can only + * be done from a sleep-able context + * + * A &struct i3c_master_controller has to be registered to the I3C subsystem + * through i3c_master_register(). None of &struct i3c_master_controller fields + * should be set manually, just pass appropriate values to + * i3c_master_register(). + */ +struct i3c_master_controller { + struct udevice *dev; + struct i3c_dev_desc *this; + struct i2c_adapter i2c; + const struct i3c_master_controller_ops *ops; + unsigned int secondary : 1; + unsigned int init_done : 1; + struct { + struct list_head i3c; + struct list_head i2c; + } boardinfo; + struct i3c_bus bus; + struct workqueue_struct *wq; +}; + +/** + * i3c_bus_for_each_i2cdev() - iterate over all I2C devices present on the bus + * @bus: the I3C bus + * @dev: an I2C device descriptor pointer updated to point to the current slot + * at each iteration of the loop + * + * Iterate over all I2C devs present on the bus. + */ +#define i3c_bus_for_each_i2cdev(bus, dev) \ + list_for_each_entry(dev, &(bus)->devs.i2c, common.node) + +/** + * i3c_bus_for_each_i3cdev() - iterate over all I3C devices present on the bus + * @bus: the I3C bus + * @dev: and I3C device descriptor pointer updated to point to the current slot + * at each iteration of the loop + * + * Iterate over all I3C devs present on the bus. + */ +#define i3c_bus_for_each_i3cdev(bus, dev) \ + list_for_each_entry(dev, &(bus)->devs.i3c, common.node) + +int i3c_master_disec_locked(struct i3c_master_controller *master, u8 addr, + u8 evts); +int i3c_master_enec_locked(struct i3c_master_controller *master, u8 addr, + u8 evts); +int i3c_master_entdaa_locked(struct i3c_master_controller *master); +int i3c_master_defslvs_locked(struct i3c_master_controller *master); + +int i3c_master_get_free_addr(struct i3c_master_controller *master, + u8 start_addr); + +int i3c_master_add_i3c_dev_locked(struct i3c_master_controller *master, + u8 addr); +int i3c_master_do_daa(struct i3c_master_controller *master); + +int i3c_master_set_info(struct i3c_master_controller *master, + const struct i3c_device_info *info); + +int i3c_master_register(struct i3c_master_controller *master, + struct udevice *parent, + const struct i3c_master_controller_ops *ops, + bool secondary); +int i3c_master_unregister(struct i3c_master_controller *master); + +/** + * i3c_dev_get_master_data() - get master private data attached to an I3C + * device descriptor + * @dev: the I3C device descriptor to get private data from + * + * Return: the private data previously attached with i3c_dev_set_master_data() + * or NULL if no data has been attached to the device. + */ +static inline void *i3c_dev_get_master_data(const struct i3c_dev_desc *dev) +{ + return dev->common.master_priv; +} + +/** + * i3c_dev_set_master_data() - attach master private data to an I3C device + * descriptor + * @dev: the I3C device descriptor to attach private data to + * @data: private data + * + * This functions allows a master controller to attach per-device private data + * which can then be retrieved with i3c_dev_get_master_data(). + */ +static inline void i3c_dev_set_master_data(struct i3c_dev_desc *dev, + void *data) +{ + dev->common.master_priv = data; +} + +/** + * i2c_dev_get_master_data() - get master private data attached to an I2C + * device descriptor + * @dev: the I2C device descriptor to get private data from + * + * Return: the private data previously attached with i2c_dev_set_master_data() + * or NULL if no data has been attached to the device. + */ +static inline void *i2c_dev_get_master_data(const struct i2c_dev_desc *dev) +{ + return dev->common.master_priv; +} + +/** + * i2c_dev_set_master_data() - attach master private data to an I2C device + * descriptor + * @dev: the I2C device descriptor to attach private data to + * @data: private data + * + * This functions allows a master controller to attach per-device private data + * which can then be retrieved with i2c_device_get_master_data(). + */ +static inline void i2c_dev_set_master_data(struct i2c_dev_desc *dev, + void *data) +{ + dev->common.master_priv = data; +} + +/** + * i3c_dev_get_master() - get master used to communicate with a device + * @dev: I3C dev + * + * Return: the master controller driving @dev + */ +static inline struct i3c_master_controller * +i3c_dev_get_master(struct i3c_dev_desc *dev) +{ + return dev->common.master; +} + +/** + * i2c_dev_get_master() - get master used to communicate with a device + * @dev: I2C dev + * + * Return: the master controller driving @dev + */ +static inline struct i3c_master_controller * +i2c_dev_get_master(struct i2c_dev_desc *dev) +{ + return dev->common.master; +} + +/** + * i3c_master_get_bus() - get the bus attached to a master + * @master: master object + * + * Return: the I3C bus @master is connected to + */ +static inline struct i3c_bus * +i3c_master_get_bus(struct i3c_master_controller *master) +{ + return &master->bus; +} + +struct i3c_generic_ibi_pool; + +struct i3c_generic_ibi_pool * +i3c_generic_ibi_alloc_pool(struct i3c_dev_desc *dev, + const struct i3c_ibi_setup *req); +void i3c_generic_ibi_free_pool(struct i3c_generic_ibi_pool *pool); + +struct i3c_ibi_slot * +i3c_generic_ibi_get_free_slot(struct i3c_generic_ibi_pool *pool); +void i3c_generic_ibi_recycle_slot(struct i3c_generic_ibi_pool *pool, + struct i3c_ibi_slot *slot); + +void i3c_master_queue_ibi(struct i3c_dev_desc *dev, struct i3c_ibi_slot *slot); + +struct i3c_ibi_slot *i3c_master_get_free_ibi_slot(struct i3c_dev_desc *dev); + +#endif /* I3C_MASTER_H */ diff --git a/test/cmd/Makefile b/test/cmd/Makefile index 595e4cfcada..e71c80a5b2e 100644 --- a/test/cmd/Makefile +++ b/test/cmd/Makefile @@ -19,6 +19,7 @@ obj-$(CONFIG_CMD_FDT) += fdt.o obj-$(CONFIG_CONSOLE_TRUETYPE) += font.o obj-$(CONFIG_CMD_HASH) += hash.o obj-$(CONFIG_CMD_HISTORY) += history.o +obj-$(CONFIG_CMD_I3C) += i3c.o obj-$(CONFIG_CMD_LOADM) += loadm.o obj-$(CONFIG_CMD_MEMINFO) += meminfo.o obj-$(CONFIG_CMD_MEMORY) += mem_copy.o diff --git a/test/cmd/i3c.c b/test/cmd/i3c.c new file mode 100644 index 00000000000..04baad2a4b2 --- /dev/null +++ b/test/cmd/i3c.c @@ -0,0 +1,50 @@ +// SPDX-License-Identifier: GPL-2.0 +/* + * Copyright (C) 2025 Altera Corporation <www.altera.com> + */ + +#include <dm.h> +#include <dm/test.h> +#include <test/test.h> +#include <test/ut.h> + +/* Basic test for probing i3c controller with invalid name */ +static int dm_test_i3c_cmd_probe_invalid_master(struct unit_test_state *uts) +{ + ut_asserteq(1, run_command("i3c any", 0)); + ut_assert_nextline("i3c0 (i3c_sandbox)"); + ut_assert_nextline("i3c1 (i3c_sandbox)"); + ut_assert_nextline("i3c: Host controller not initialized: any"); + ut_assert_console_end(); + + return 0; +} +DM_TEST(dm_test_i3c_cmd_probe_invalid_master, UTF_SCAN_PDATA | UTF_SCAN_FDT | UTF_DM); + +/* Basic test of the i3c controller for valid name as per test DT */ +static int dm_test_i3c_cmd_probe_valid_master(struct unit_test_state *uts) +{ + ut_asserteq(0, run_command("i3c i3c0", 0)); + ut_assert_nextline("i3c: Current controller: i3c0"); + ut_assert_console_end(); + + ut_asserteq(0, run_command("i3c current", 0)); + ut_assert_nextline("i3c: Current controller: i3c0"); + ut_assert_console_end(); + + ut_asserteq(0, run_command("i3c i3c1", 0)); + ut_assert_nextline("i3c: Current controller: i3c1"); + ut_assert_console_end(); + + ut_asserteq(0, run_command("i3c current", 0)); + ut_assert_nextline("i3c: Current controller: i3c1"); + ut_assert_console_end(); + + ut_asserteq(0, run_command("i3c list", 0)); + ut_assert_nextline("i3c0 (i3c_sandbox)"); + ut_assert_nextline("i3c1 (i3c_sandbox)"); + ut_assert_console_end(); + + return 0; +} +DM_TEST(dm_test_i3c_cmd_probe_valid_master, UTF_SCAN_PDATA | UTF_SCAN_FDT | UTF_DM);
\ No newline at end of file diff --git a/test/dm/Makefile b/test/dm/Makefile index d15859eca30..474e77a2151 100644 --- a/test/dm/Makefile +++ b/test/dm/Makefile @@ -58,6 +58,7 @@ obj-$(CONFIG_FWU_MDATA_GPT_BLK) += fwu_mdata.o obj-$(CONFIG_SANDBOX) += host.o obj-$(CONFIG_DM_HWSPINLOCK) += hwspinlock.o obj-$(CONFIG_DM_I2C) += i2c.o +obj-$(CONFIG_I3C) += i3c.o obj-$(CONFIG_SOUND) += i2s.o obj-$(CONFIG_CLK_K210_SET_RATE) += k210_pll.o obj-$(CONFIG_IOMMU) += iommu.o diff --git a/test/dm/i3c.c b/test/dm/i3c.c new file mode 100644 index 00000000000..81336e67555 --- /dev/null +++ b/test/dm/i3c.c @@ -0,0 +1,34 @@ +// SPDX-License-Identifier: GPL-2.0 +/* + * Copyright (C) 2025 Altera Corporation <www.altera.com> + */ + +#include <dm.h> +#include <i3c.h> +#include <dm/test.h> +#include <test/ut.h> + +DECLARE_GLOBAL_DATA_PTR; + +/* Basic test of the i3c uclass */ +static int dm_test_i3c_base(struct unit_test_state *uts) +{ + struct udevice *dev; + + ut_assertok(uclass_get_device(UCLASS_I3C, 0, &dev)); + ut_assertok(dm_i3c_read(dev, 0, NULL, 1)); + ut_assertok(dm_i3c_read(dev, 0, NULL, 4)); + ut_assertok(dm_i3c_write(dev, 0, "AABB", 2)); + ut_assertok(dm_i3c_write(dev, 0, "AABBCCDD", 4)); + + ut_assertok(uclass_get_device(UCLASS_I3C, 1, &dev)); + ut_assertok(dm_i3c_read(dev, 1, NULL, 1)); + ut_assertok(dm_i3c_read(dev, 1, NULL, 4)); + ut_assertok(dm_i3c_write(dev, 1, "AABB", 2)); + ut_assertok(dm_i3c_write(dev, 1, "AABBCCDD", 4)); + + ut_asserteq(-ENODEV, uclass_get_device(UCLASS_I3C, 2, &dev)); + + return 0; +} +DM_TEST(dm_test_i3c_base, UTF_SCAN_PDATA | UTF_SCAN_FDT); |