mirror of
https://github.com/AsahiLinux/u-boot
synced 2024-11-18 02:38:56 +00:00
152576a598
Update the stm32prog command to allow the reception of U-Boot script in the FlashLayout alternate during the first USB enumeration. This patch is aligned with the last TF-A behavior: the Flashlayout is now loaded by U-Boot; it is no more present at STM32_DDR_BASE when the stm32prog is launched after a serial boot, on UART or on USB. The received script must be a U-Boot legacy image, no more need to add a stm32image header. Signed-off-by: Patrick Delaunay <patrick.delaunay@foss.st.com> Reviewed-by: Patrice Chotard <patrice.chotard@foss.st.com> Signed-off-by: Patrice Chotard <patrice.chotard@foss.st.com>
239 lines
5.3 KiB
C
239 lines
5.3 KiB
C
/* SPDX-License-Identifier: GPL-2.0+ OR BSD-3-Clause */
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/*
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* Copyright (C) 2020, STMicroelectronics - All Rights Reserved
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*/
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#ifndef _STM32PROG_H_
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#define _STM32PROG_H_
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/* - phase defines ------------------------------------------------*/
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#define PHASE_FLASHLAYOUT 0x00
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#define PHASE_FIRST_USER 0x10
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#define PHASE_LAST_USER 0xF0
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#define PHASE_CMD 0xF1
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#define PHASE_OTP 0xF2
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#define PHASE_PMIC 0xF4
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#define PHASE_END 0xFE
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#define PHASE_RESET 0xFF
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#define PHASE_DO_RESET 0x1FF
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#define DEFAULT_ADDRESS 0xFFFFFFFF
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#define CMD_SIZE 512
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#define OTP_SIZE_SMC 1024
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#define OTP_SIZE_TA 776
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#define PMIC_SIZE 8
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enum stm32prog_target {
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STM32PROG_NONE,
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STM32PROG_MMC,
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STM32PROG_NAND,
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STM32PROG_NOR,
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STM32PROG_SPI_NAND,
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STM32PROG_RAM
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};
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enum stm32prog_link_t {
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LINK_SERIAL,
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LINK_USB,
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LINK_UNDEFINED,
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};
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enum stm32prog_header_t {
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HEADER_NONE,
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HEADER_STM32IMAGE,
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HEADER_STM32IMAGE_V2,
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HEADER_FIP,
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};
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struct image_header_s {
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enum stm32prog_header_t type;
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u32 image_checksum;
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u32 image_length;
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u32 length;
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};
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struct stm32_header_v1 {
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u32 magic_number;
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u8 image_signature[64];
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u32 image_checksum;
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u32 header_version;
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u32 image_length;
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u32 image_entry_point;
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u32 reserved1;
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u32 load_address;
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u32 reserved2;
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u32 version_number;
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u32 option_flags;
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u32 ecdsa_algorithm;
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u8 ecdsa_public_key[64];
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u8 padding[83];
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u8 binary_type;
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};
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struct stm32_header_v2 {
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u32 magic_number;
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u8 image_signature[64];
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u32 image_checksum;
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u32 header_version;
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u32 image_length;
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u32 image_entry_point;
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u32 reserved1;
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u32 load_address;
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u32 reserved2;
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u32 version_number;
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u32 extension_flags;
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u32 extension_headers_length;
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u32 binary_type;
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u8 padding[16];
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u32 extension_header_type;
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u32 extension_header_length;
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u8 extension_padding[376];
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};
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/* partition type in flashlayout file */
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enum stm32prog_part_type {
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PART_BINARY,
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PART_FIP,
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PART_SYSTEM,
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PART_FILESYSTEM,
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RAW_IMAGE,
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};
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/* device information */
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struct stm32prog_dev_t {
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enum stm32prog_target target;
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char dev_id;
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u32 erase_size;
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struct mmc *mmc;
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struct mtd_info *mtd;
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/* list of partition for this device / ordered in offset */
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struct list_head part_list;
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bool full_update;
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};
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/* partition information build from FlashLayout and device */
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struct stm32prog_part_t {
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/* FlashLayout information */
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int option;
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int id;
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enum stm32prog_part_type part_type;
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enum stm32prog_target target;
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char dev_id;
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/* partition name
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* (16 char in gpt, + 1 for null terminated string
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*/
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char name[16 + 1];
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u64 addr;
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u64 size;
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enum stm32prog_part_type bin_nb; /* SSBL repeatition */
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/* information on associated device */
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struct stm32prog_dev_t *dev; /* pointer to device */
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s16 part_id; /* partition id in device */
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int alt_id; /* alt id in usb/dfu */
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struct list_head list;
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};
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#define STM32PROG_MAX_DEV 5
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struct stm32prog_data {
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/* Layout information */
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int dev_nb; /* device number*/
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struct stm32prog_dev_t dev[STM32PROG_MAX_DEV]; /* array of device */
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int part_nb; /* nb of partition */
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struct stm32prog_part_t *part_array; /* array of partition */
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#ifdef CONFIG_STM32MP15x_STM32IMAGE
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bool tee_detected;
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#endif
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bool fsbl_nor_detected;
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/* command internal information */
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unsigned int phase;
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u32 offset;
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char error[255];
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struct stm32prog_part_t *cur_part;
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u32 *otp_part;
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u8 pmic_part[PMIC_SIZE];
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/* SERIAL information */
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u32 cursor;
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u32 packet_number;
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u8 *buffer; /* size = USART_RAM_BUFFER_SIZE*/
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int dfu_seq;
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u8 read_phase;
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/* bootm information */
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u32 uimage;
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u32 dtb;
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u32 initrd;
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u32 initrd_size;
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u32 script;
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/* OPTEE PTA NVMEM */
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struct udevice *tee;
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u32 tee_session;
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};
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extern struct stm32prog_data *stm32prog_data;
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/* OTP access */
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int stm32prog_otp_write(struct stm32prog_data *data, u32 offset,
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u8 *buffer, long *size);
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int stm32prog_otp_read(struct stm32prog_data *data, u32 offset,
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u8 *buffer, long *size);
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int stm32prog_otp_start(struct stm32prog_data *data);
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/* PMIC access */
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int stm32prog_pmic_write(struct stm32prog_data *data, u32 offset,
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u8 *buffer, long *size);
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int stm32prog_pmic_read(struct stm32prog_data *data, u32 offset,
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u8 *buffer, long *size);
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int stm32prog_pmic_start(struct stm32prog_data *data);
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/* generic part*/
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void stm32prog_header_check(uintptr_t raw_header, struct image_header_s *header);
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int stm32prog_dfu_init(struct stm32prog_data *data);
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void stm32prog_next_phase(struct stm32prog_data *data);
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void stm32prog_do_reset(struct stm32prog_data *data);
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char *stm32prog_get_error(struct stm32prog_data *data);
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#define stm32prog_err(args...) {\
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if (data->phase != PHASE_RESET) { \
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sprintf(data->error, args); \
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data->phase = PHASE_RESET; \
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log_err("Error: %s\n", data->error); } \
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}
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/* Main function */
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int stm32prog_init(struct stm32prog_data *data, ulong addr, ulong size);
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void stm32prog_clean(struct stm32prog_data *data);
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#ifdef CONFIG_CMD_STM32PROG_SERIAL
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int stm32prog_serial_init(struct stm32prog_data *data, int link_dev);
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bool stm32prog_serial_loop(struct stm32prog_data *data);
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#else
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static inline int stm32prog_serial_init(struct stm32prog_data *data, int link_dev)
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{
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return -ENOSYS;
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}
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static inline bool stm32prog_serial_loop(struct stm32prog_data *data)
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{
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return false;
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}
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#endif
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#ifdef CONFIG_CMD_STM32PROG_USB
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bool stm32prog_usb_loop(struct stm32prog_data *data, int dev);
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#else
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static inline bool stm32prog_usb_loop(struct stm32prog_data *data, int dev)
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{
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return false;
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}
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#endif
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#endif
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