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400 lines
13 KiB
Markdown
400 lines
13 KiB
Markdown
# LG LAF Protocol
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This document is a reverse-engineered protocol description for LG Advanced Flash
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(LAF), the download mode offered by various LG models. It is based on analysis
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on the `Send_Command.exe` utility and `LGD855_20140526_LGFLASHv160.dll` file and
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a USB trace using Wireshark and usbmon on Linux. Some commands were found in the
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`/sbin/lafd` binary.
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This document uses the following conventions for types:
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- `\xaa\xbb\xcc\xdd` denotes a byte pattern `aa bb cc dd`.
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- `0xddccbbaa` denotes a 32-bit integer in hexadecimal format. It represents
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the same byte pattern as `\xaa\xbb\xcc\xdd`.
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## Overview
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LAF is a simple request/response protocol operating over USB. The USB details
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are described at the end of the document, the messages are described below.
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Each message consists of a header, followed by an optional body. The header
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contains 32-bit DWORDs, integers are encoded in little-endian form:
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| Offset (hex) | Offset (dec) | Type | Description
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| ----:| --:| ------- | ---
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| 0x00 | 0 | char[4] | Command
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| 0x04 | 4 | var | Argument 1
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| 0x08 | 8 | var | Argument 2
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| 0x0c | 12 | var | Argument 3
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| 0x10 | 16 | var | Argument 4
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| 0x14 | 20 | int | Body length
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| 0x18 | 24 | int | CRC-16
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| 0x1c | 28 | char[4] | Bit-wise invertion of command at offset 0
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Arguments can be integers or character sequences depending on the command.
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The CRC field is the CRC-16-CCITT calculation (LSB-first) over the header and
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the body with zeroes in place of CRC.
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Each request is followed by a response with a matching command field. If an
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error occurs, the response contains command is `FAIL` with argument 1 being the
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error code and the original request header as body.
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## Commands
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### OPEN - Open File
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Opens a file path.
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Arguments:
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- arg1 (response): DWORD file descriptor.
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Request body: NUL-terminated file path that should be opened for reading or an
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empty string to open `/dev/block/mmcblk0` in read/write mode.
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(at most 276 (0x114) bytes?)
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Non-existing files result in FAIL with error code 0x80000001.
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On newer versions, this requires authentication via `KILO` command.
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### CLSE - Close File
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Closes a file descriptor which was returned by the `OPEN` command.
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Arguments:
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- arg1: DWORD file descriptor (same in request and response).
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Note: this allows you to close any file descriptor that are in use by the `lafd`
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process, not just the one returned by `OPEN`. You can discover the current file
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descriptors via `ls -l /proc/$pid/fd` where `$pid` is found by `ps | grep lafd`.
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### HELO - Hello
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Arguments:
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- arg1: DWORD Protocol Version (`\1\0\0\1`) (resp must match req.)
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- arg2 (response): Minimum Protocol Version (`\0\0\x80\0` was observed)
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### CTRL - Control
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Reboot or power off.
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Arguments:
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- arg1: sub-command:
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- `POFF`: power off
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- `RSON`: restart lafd
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- `RSET`: reboot with param `oem-90466252` (normal reboot)
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- `ONRS`: reboot with param `oem-02179092`
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- `AATD`: reboot with param `aat_enter`
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Note: `CTRL(RSET)` with no body is sent by the `Send_Command.exe` utility for
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the `LEAVE` command.
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LG Flash DLL waits 5000 milliseconds after this command.
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Purpose of `ONRS` and `AATD` are unknown. Both seem to reboot normally. Probably
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one is meant to enter fastboot?
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### WRTE - Write File
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Writes to a file descriptor.
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Arguments:
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- arg1: file descriptor (must be open for writing!)
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- arg2 (request): offset in **blocks** (multiple of 512 bytes).
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- arg2 (response): offset in **bytes**.
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Request body: the data to be written. Can be of any size (including 1 or 513).
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Note: writing to a file descriptor which was opened for reading results in FAIL
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with code 0x82000002. This command is likely used for writing to partitions.
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Integer overflow in the response offset is ignored. That is, the block offset
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30736384 (0x1d50000) is 0x3aa000000 bytes, but will appear as 0xaa000000.
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This can be used to write to already-opened files without authentication, but
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lafd doesn't appear to have any files opened for writing by default.
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### READ - Read File
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Reads from a file descriptor.
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Arguments:
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- arg1: file descriptor.
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- arg2: offset in **blocks** (multiple of 512 bytes).
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- arg3: requested length in bytes (at most 8MiB).
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- arg4: "whence" seek mode (see below).
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Response body: data in file at given offset and requested length.
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Note: be sure not to read past the end of the file (512 * offset + length), this
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will hang the communication, requiring a reset (pull out battery)!
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Arg4 affects the seek mode, values for request:
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- 0 (`SEEK_SET`) - seek to `512 * offset`.
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- 1 (`SEEK_CUR`) - read from current position (offset argument is ignored).
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- 2 (`SEEK_END`) - kind of useless when all offsets are unsigned...
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- 3 (`SEEK_DATA`) - FAILs with 0x80000001 when used on `/proc/kmsg` or
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`/dev/block/mmcblk0p44`. Works on a regular file though.
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The response matches the request (masked with 0x3).
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If the length is larger than somewhere between 227 MiB and 228 MiB, an
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0x80000001 error will be raised (observed with /dev/block/mmcblk0). Requesting
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lengths larger than 8 MiB however already seem to hang the communication. Length
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can be zero to test if a file is readable.
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This can be used to read already-opened files without authentication, but lafd
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seems to only have PNG files and `/dev/null` open by default. Attempting to read
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`/dev/null` hangs communication.
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### ERSE - Erase Block
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TRIMs a block (`IOCTL_TRIM_CMD`).
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Arguments:
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- arg1: file descriptor (open `/dev/block/mmcblk0` for writing).
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- arg2: start address (in sectors).
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- arg3: count (in sectors).
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- arg4: unknown, set to zero.
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Request body: none.
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Note: after sending TRIM, reading the block still returned old values. After a
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reboot, everything was zeroed out though.
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### EXEC - Execute Command
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Arguments: none
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Request body: NUL-terminated command, at most 255 bytes including terminator.
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Response body: standard output of the command.
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The command is split on spaces and then passed to `execvp`. In order to see
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standard error, use variables and globbing, use a command such as:
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sh -c eval\t"$*"</dev/null\t2>&1 -- echo $PATH
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(replace `\t` by tabs)
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If you need to read dmesg (or other blocking files), try to put busybox on the
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device (e.g. by writing to an unused partition) and execute:
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/data/busybox timeout -s 2 cat /proc/kmsg
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The maximum output size appears to be 0x800001 (`LAF_MAX_DATA_PAYLOAD`). Larger
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values result in an error. Output is read per byte, not very efficient for large
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output...
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On newer versions, this requires authentication via `KILO` command, and few
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commands are allowed.
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### INFO
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Arguments:
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- arg1: action (`GPRO` - Get Properties, `SPRO` - Set Properties)
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Request body: a `laf_property` structure.
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Response body: 2824 (0x00000b08) bytes of binary info.
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See [scripts/parse-props.py](scripts/parse-props.py) for the structure of the
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property body. This structure begins with a DWORD with a version that is
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apparently the same as the expected length (2824 or `\x08\x0b\0\0`).
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### UNLK - Unlink
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Delete a file.
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Arguments: none
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Request body: NUL-terminated file name
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Responds with FAIL code 0x80000001 if the file name is invalid (missing) or
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file does not exist. Deleting directories is also not possible, giving the same
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FAIL code 0x80000001.
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### RSVD - Reserved
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Miscellaneous commands.
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Arguments:
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- arg1: Subcommand:
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- IDDD: create `/data/idt.cfg` ("indirect config file") and start IDT thread
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- PDDD: unzip DF file
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- QDDD: verify `/system/DFFileList.txt`
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- RDDD: execute `/system/DFFileList.txt`
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- SDDD: LCD test (turns screen grey)
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- TDDD: set properties and disable USB:
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- `ro.boot.laf = MID`
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- `sys.usb.config = none`
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### IOCT - ioctl
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Perform flash IOCTLs. (XXX document this)
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### MISC
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Read/write misc parttition.
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Arguments:
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- arg1: Subcommand
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- `READ`
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- `WRTE`
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XXX document this
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### KILO
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Challenge/response to authenticate for some commands.
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Arguments:
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- arg1: `CENT` or `METR`
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- arg2: challenge/mode
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1. Host sends `CENT` with arg2=0
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2. Device responds `CENT` with a random value in arg2
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3. Host responds `METR` with desired mode in arg2 and challenge response as body
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4. Device responds `METR` with no body, or `FAIL`
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The response must decrypt to the bytes
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`00 01 02 03 04 05 06 07 08 09 0A 0B 0C 0D 0E 0F`. TODO: explain protocol
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### DIFF
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Execute a script of some sort, path specified in message body.
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### SNIF
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Unknown / looks related to TOT download (TODO: document this)
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Arguments:
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- arg1: Subcommand
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- `REQS`
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- `OPEN`
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- `WRTE`
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- `CLSE`
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- `STUS`
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- `IDDD`
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### OPCM
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Check/Write opcode
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NOTE: Supported since Protocol version `0x1000004`
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Arguments:
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- arg1: action (`CHEK` - Check opcode, `WRTE` - Write opcode)
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### FUSE
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Get or set efuse(s) (TODO: document this)
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Arguments:
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- arg1: action (`GFUS` - Get efuse state, `SFRS` - Set/blow efuse)
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### WRZR
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Write zeroes
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### CRCC
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Calculcate CRC (TODO: document this)
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### CHCK
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Unknown (TODO: document this)
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NOTE: Supported since Protocol version `0x1000003`
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Arguments:
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- arg1: Subcommand
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- `TSUM`
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- `CLER`
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### SEBP
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Set eMMC boot partition (TODO: document this)
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### SBLU
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Set UFS boot LUN# (TODO: document this)
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### MBPT
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Manipulate boot partition table (TODO: document this)
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### FAIL
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Dummy command.
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### new versions
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TODO: document these commands added in some version:
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TOFF, COPY, SLEI, SIGN
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## HDLC commands
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These are sent through the same interface, but have a different structure:
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* The packet must be at least 3 and at most 31 bytes long.
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* The last byte must be 0x7E.
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* Any 0x7D byte is skipped; the next byte is then XORed with 0x20. eg 0x7D 0x5E
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becomes 0x7E. (Not sure why this is done.)
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* The last two bytes of the body are a CRC16.
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After decoding, the body is checked for an 0x7E byte (except the very last byte
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of the packet); if one is found, all bytes up to and including it are discarded.
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This is done before the checksum is validated. (for example, 0x7E marks the
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beginning of the body, but can be omitted, in which case the body starts at the
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first byte of the packet.)
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The first byte of the body is a command:
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* 0x06: unknown. Always responds with 0x02?
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* 0x0A: Sets misc partition item 0x1C0 and reboots. (XXX investigate)
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* 0xEF: webdload_proc
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* 0xFA: testmode_proc
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Additionally, sending a packet which decodes to an empty body (for example, a
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packet of only `0x7E 0x7E 0x7E 0x7E`) restarts lafd. Unsure if this is
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intentional.
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### webdload_proc
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First byte of body (after 0xEF command byte) is subcommand:
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* 0x00: returns 0x05 and writes 0x04 at input[3]
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* 0xA0: returns device OS version, target operator, model, etc.
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* 0xA1, 0xA2, 0xB0, 0xB1, 0xB2, 0xB5: all return all-zero response.
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These appear to also read/write some misc partition values.
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### testmode_proc
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First two bytes (after 0xFA command byte) must be 0x94 0x00. Next byte after
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that is subcommand for `laf_testmode_bootloader_unlock_handler`:
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* 0x00: Check if unlocked. (`/sys/devices/platform/lge-msm8226-qfprom/unlock`
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contains 0x277F.)
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* 0x01: Always returns 0.
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* 0x02: Reads hex from `/sys/devices/platform/lge-msm8226-qfprom/unlock-extra`.
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* 0x03: Read `/persist/rct`.
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Commands 0x00 and 0x02 don't work on some devices, since they have `lge-qfprom`
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instead of `lge-msm8226-qfprom` directory.
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#### Return data
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0xFA 0x94 0x00 followed by response body followed by CRC16 and 0x7E, encoded the
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same way as the command packet.
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First byte of response body is a status code:
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* 0x00: OK
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* 0x01: Failed
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* 0x02: Return from command 0x06 (might be LAF_ERROR_INVALID_PARAMETER? but it
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can only ever return this.)
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* 0x05: Return from webdload_proc subcommand 0x00 (might be
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LAF_ERROR_INTERNAL_ERROR?)
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* 0xFF: Invalid command
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Following response bytes depend on the command:
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* testmode_proc: null-terminated string (eg "lock", "unlock", "fail") followed
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by unknown bytes (0x19 0xEA 0xE8 0x7F 0x00 0x00 observed)
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* webdload_proc: several strings of device info
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## Encoded commands
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For convenience, valid commands encoded with CRC:
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* 0xEF 0x00 0x00 0x00 0xAD 0xFA 0x7E
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* 0xEF 0xA0 0x00 0x00 0x7A 0xF5 0x7E
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* 0xEF 0xA1 0x00 0x00 0xA6 0xAF 0x7E
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* 0xEF 0xA2 0x00 0x00 0xC2 0x40 0x7E
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* 0xEF 0xB0 0x00 0x00 0xEF 0x70 0x7E
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* 0xEF 0xB1 0x00 0x00 0x33 0x2A 0x7E
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* 0xEF 0xB2 0x00 0x00 0x57 0xC5 0x7E
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* 0xEF 0xB5 0x00 0x00 0x52 0x49 0x7E
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* 0xFA 0x94 0x00 0x00 0x43 0xBD 0x7E
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* 0xFA 0x94 0x00 0x01 0xCA 0xAC 0x7E
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* 0xFA 0x94 0x00 0x02 0x51 0x9E 0x7E
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* 0xFA 0x94 0x00 0x03 0xD8 0x8F 0x7E
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* 0xFA 0x94 0x00 0x04 0x67 0xFB 0x7E
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## USB layer
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The LG Windows driver (via `LGMobileDriver_WHQL_Ver_4.0.3.exe`) exposes two
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serial ports, `LGANDNETMDM0` and `LGANDNETDIAG1`. The `LGANDNETDIAG1` port is
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used for LAF.
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The LG G3 (D855) has Vendor ID 0x1004 and Product ID 0x633e.
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There is only one configuration descriptor and LAF uses bulk transfers over
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endpoints 5 (for input from the device) and endpoint 3 (for output to the
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device).
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For other descriptors, see [info/lsusb.txt](info/lsusb.txt).
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