Go to file
lnlan 2e3bbf1e61 修复ppoll接口"[ERR]OsMemFree check error!"报错
【背景】
1.内核中释放用户空间指针报错:"[ERR]OsMemFree check error!"
2.现有ppoll实现存在问题
3.相关用例需要整理
【修改方案】
1.去掉释放用户空间指针操作
2.更正逻辑错误
3.更正掩码设置与恢复不起作用
4.修复补充现有用例
【影响】
对现有的产品编译不会有影响。

re #I47YWZ

Change-Id: Ib2f60986e9cafb2ea5ef1097ab8552cbb1ede5b4
Signed-off-by: lnlan <lanleinan@163.com>
2021-11-02 07:04:35 +00:00
.gitee add issue and pr template 2021-04-07 14:49:32 +08:00
apps fix: implicit declaration of function 'syscall' in apps/shell 2021-10-25 17:12:08 +08:00
arch fix: 临终遗言重定向内容缺失task相关信息,对应的shell命令中申请的内存需要cacheline对齐 2021-09-29 16:26:31 +08:00
bsd refactor: 清理Makefile冗余项 2021-09-13 18:14:15 +08:00
compat !664 feat: 支持LOS_TaskJoin 和 LOS_TaskDetach 2021-10-28 08:01:08 +00:00
drivers !599 feat: L0~L1 支持Perf 2021-09-29 06:15:02 +00:00
figures update openharmony 1.0.1 2021-03-11 18:43:57 +08:00
fs refactor: 文件系统Open性能优化 2021-10-15 11:59:38 +08:00
kernel 修复ppoll接口"[ERR]OsMemFree check error!"报错 2021-11-02 07:04:35 +00:00
lib refactor: 清理Makefile冗余项 2021-09-13 18:14:15 +08:00
net feat: add option SIOCGIFBRDADDR for ioctl 2021-10-13 11:53:49 +08:00
platform refactor: 内核目录结构整理 2021-09-08 16:36:28 +08:00
security refactor: 清理Makefile冗余项 2021-09-13 18:14:15 +08:00
shell refactor: 清理Makefile冗余项 2021-09-13 18:14:15 +08:00
syscall 修复ppoll接口"[ERR]OsMemFree check error!"报错 2021-11-02 07:04:35 +00:00
testsuites 修复ppoll接口"[ERR]OsMemFree check error!"报错 2021-10-29 08:14:20 +00:00
tools !599 feat: L0~L1 支持Perf 2021-09-29 06:15:02 +00:00
.gitignore chore(make): fix and optimize some build scripts 2021-08-23 20:47:18 +08:00
BUILD.gn refactor: 内核目录结构整理 2021-09-08 16:36:28 +08:00
Kconfig refactor: 内核目录结构整理 2021-09-08 16:36:28 +08:00
LICENSE update openharmony 1.0.1 2021-03-11 18:43:57 +08:00
Makefile chore(make): make menuconfig same as update_config 2021-09-30 12:04:48 +08:00
OAT.xml chore(oat): 删除二进制文件,并且新增oat屏蔽 2021-08-06 01:41:09 +08:00
README.md fix: 修复文档链接失效问题 2021-08-12 14:21:35 +08:00
README_zh-HK.md fix: 修复文档链接失效问题 2021-08-12 14:21:35 +08:00
README_zh.md fix: 修复文档链接失效问题 2021-08-12 14:21:35 +08:00
build.sh chore(build): optimize build scripts, remove unused config files 2021-09-01 12:39:55 +08:00
config.mk chore(make): simplify build scripts 2021-09-09 18:56:47 +08:00
liteos.gni chore: optimize build scripts and add lto config entry 2021-08-31 12:04:34 +08:00

README.md

LiteOS Cortex-A

Introduction

The OpenHarmony LiteOS Cortex-A is a new-generation kernel developed based on the Huawei LiteOS kernel. Huawei LiteOS is a lightweight operating system OS built for the Internet of Things IoT field. With the rapid development of the IoT industry, OpenHarmony LiteOS Cortex-A brings small-sized, low-power, and high-performance experience and builds a unified and open ecosystem for developers. In addition, it provides rich kernel mechanisms, more comprehensive Portable Operating System Interface POSIX, and a unified driver framework, Hardware Driver Foundation HDF, which offers unified access for device developers and friendly development experience for application developers. Figure 1 shows the architecture of the OpenHarmony LiteOS Cortex-A kernel.

Figure 1 Architecture of the OpenHarmony LiteOS Cortex-A kernel

Directory Structure

/kernel/liteos_a
├── apps                   # User-space init and shell application programs
├── arch                   # System architecture, such as ARM
│   └── arm                # Code for ARM architecture
├── bsd                    # Code of the driver and adaptation layer module related to the FreeBSD, such as the USB module
├── compat                 # Kernel API compatibility
│   └── posix              # POSIX APIs
├── drivers                # Kernel drivers
│   └── char               # Character device
│       ├── mem            # Driver for accessing physical input/output (I/O) devices
│       ├── quickstart     # APIs for quick start of the system
│       ├── random         # Driver for random number generators
│       └── video          # Framework of the framebuffer driver
├── fs                     # File system module, which mainly derives from the NuttX open-source project
│   ├── fat                # FAT file system
│   ├── jffs2              # JFFS2 file system
│   ├── include            # Header files exposed externally
│   ├── nfs                # NFS file system
│   ├── proc               # proc file system
│   ├── ramfs              # RAMFS file system
│   └── vfs                # VFS layer
├── kernel                 # Kernel modules including the process, memory, and IPC modules
│   ├── base               # Basic kernel modules including the scheduling and memory modules
│   ├── common             # Common components used by the kernel
│   ├── extended           # Extended kernel modules including the dynamic loading, vDSO, and LiteIPC modules
│   ├── include            # Header files exposed externally
│   └── user               # Init process loading
├── lib                    # Kernel library
├── net                    # Network module, which mainly derives from the lwIP open-source project
├── platform               # Code for supporting different systems on a chip (SOCs), such as Hi3516D V300
│   ├── hw                 # Logic code related to clocks and interrupts
│   ├── include            # Header files exposed externally
│   └── uart               # Logic code related to the serial port
├── platform               # Code for supporting different systems on a chip (SOCs), such as Hi3516D V300
├── security               # Code related to security features, including process permission management and virtual ID mapping management
├── syscall                # System calling
└── tools                  # Building tools as well as related configuration and code

Constraints

  • Programming languages: C and C++
  • Applicable development boards: Hi3518E V300 and Hi3516D V300
  • Hi3518E V300 uses the JFFS2 file system by default, and Hi3516D V300 uses the FAT file system by default.

Usage

OpenHarmony LiteOS Cortex-A supports the Hi3518E V300 and Hi3516D V300. You can develop and run your applications based on both development boards.

Preparations

You need to set up the compilation environment on Linux.

Source Code Acquisition

Download and decompress a set of source code on a Linux server to acquire the source code.

Compilation and Building

For details about how to develop the first application, see:

Repositories Involved

Kernel subsystem

drivers_liteos

kernel_liteos_a