ai_v/venv/Lib/site-packages/greenlet/greenlet.cpp
24024 af7c11d7f9 feat(api): 实现图像生成及后台同步功能
- 新增图像生成接口,支持试用、积分和自定义API Key模式
- 实现生成图片结果异步上传至MinIO存储,带重试机制
- 优化积分预扣除和异常退还逻辑,保障用户积分准确
- 添加获取生成历史记录接口,支持时间范围和分页
- 提供本地字典配置接口,支持模型、比例、提示模板和尺寸
- 实现图片批量上传接口,支持S3兼容对象存储

feat(admin): 增加管理员角色管理与权限分配接口

- 实现角色列表查询、角色创建、更新及删除功能
- 增加权限列表查询接口
- 实现用户角色分配接口,便于统一管理用户权限
- 增加系统字典增删查改接口,支持分类过滤和排序
- 权限控制全面覆盖管理接口,保证安全访问

feat(auth): 完善用户登录注册及权限相关接口与页面

- 实现手机号验证码发送及校验功能,保障注册安全
- 支持手机号注册、登录及退出接口,集成日志记录
- 增加修改密码功能,验证原密码后更新
- 提供动态导航菜单接口,基于权限展示不同菜单
- 实现管理界面路由及日志、角色、字典管理页面访问权限控制
- 添加系统日志查询接口,支持关键词和等级筛选

feat(app): 初始化Flask应用并配置蓝图与数据库

- 创建应用程序工厂,加载配置,初始化数据库和Redis客户端
- 注册认证、API及管理员蓝图,整合路由
- 根路由渲染主页模板
- 应用上下文中自动创建数据库表,保证运行环境准备完毕

feat(database): 提供数据库创建与迁移支持脚本

- 新增数据库创建脚本,支持自动检测是否已存在
- 添加数据库表初始化脚本,支持创建和删除所有表
- 实现RBAC权限初始化,包含基础权限和角色创建
- 新增字段手动修复脚本,添加用户API Key和积分字段
- 强制迁移脚本支持清理连接和修复表结构,初始化默认数据及角色分配

feat(config): 新增系统配置参数

- 配置数据库、Redis、Session和MinIO相关参数
- 添加AI接口地址及试用Key配置
- 集成阿里云短信服务配置及开发模式相关参数

feat(extensions): 初始化数据库、Redis和MinIO客户端

- 创建全局SQLAlchemy数据库实例和Redis客户端
- 配置基于boto3的MinIO兼容S3客户端

chore(logs): 添加示例系统日志文件

- 记录用户请求、验证码发送成功与失败的日志信息
2026-01-12 00:53:31 +08:00

324 lines
11 KiB
C++
Raw Blame History

This file contains ambiguous Unicode characters

This file contains Unicode characters that might be confused with other characters. If you think that this is intentional, you can safely ignore this warning. Use the Escape button to reveal them.

/* -*- indent-tabs-mode: nil; tab-width: 4; -*- */
/* Format with:
* clang-format -i --style=file src/greenlet/greenlet.c
*
*
* Fix missing braces with:
* clang-tidy src/greenlet/greenlet.c -fix -checks="readability-braces-around-statements"
*/
#include <cstdlib>
#include <string>
#include <algorithm>
#include <exception>
#define PY_SSIZE_T_CLEAN
#include <Python.h>
#include "structmember.h" // PyMemberDef
#include "greenlet_internal.hpp"
// Code after this point can assume access to things declared in stdint.h,
// including the fixed-width types. This goes for the platform-specific switch functions
// as well.
#include "greenlet_refs.hpp"
#include "greenlet_slp_switch.hpp"
#include "greenlet_thread_support.hpp"
#include "TGreenlet.hpp"
#include "TGreenletGlobals.cpp"
#include "TGreenlet.cpp"
#include "TMainGreenlet.cpp"
#include "TUserGreenlet.cpp"
#include "TBrokenGreenlet.cpp"
#include "TExceptionState.cpp"
#include "TPythonState.cpp"
#include "TStackState.cpp"
#include "TThreadState.hpp"
#include "TThreadStateCreator.hpp"
#include "TThreadStateDestroy.cpp"
#include "PyGreenlet.cpp"
#include "PyGreenletUnswitchable.cpp"
#include "CObjects.cpp"
using greenlet::LockGuard;
using greenlet::LockInitError;
using greenlet::PyErrOccurred;
using greenlet::Require;
using greenlet::g_handle_exit;
using greenlet::single_result;
using greenlet::Greenlet;
using greenlet::UserGreenlet;
using greenlet::MainGreenlet;
using greenlet::BrokenGreenlet;
using greenlet::ThreadState;
using greenlet::PythonState;
// ******* Implementation of things from included files
template<typename T, greenlet::refs::TypeChecker TC>
greenlet::refs::_BorrowedGreenlet<T, TC>& greenlet::refs::_BorrowedGreenlet<T, TC>::operator=(const greenlet::refs::BorrowedObject& other)
{
this->_set_raw_pointer(static_cast<PyObject*>(other));
return *this;
}
template <typename T, greenlet::refs::TypeChecker TC>
inline greenlet::refs::_BorrowedGreenlet<T, TC>::operator Greenlet*() const noexcept
{
if (!this->p) {
return nullptr;
}
return reinterpret_cast<PyGreenlet*>(this->p)->pimpl;
}
template<typename T, greenlet::refs::TypeChecker TC>
greenlet::refs::_BorrowedGreenlet<T, TC>::_BorrowedGreenlet(const BorrowedObject& p)
: BorrowedReference<T, TC>(nullptr)
{
this->_set_raw_pointer(p.borrow());
}
template <typename T, greenlet::refs::TypeChecker TC>
inline greenlet::refs::_OwnedGreenlet<T, TC>::operator Greenlet*() const noexcept
{
if (!this->p) {
return nullptr;
}
return reinterpret_cast<PyGreenlet*>(this->p)->pimpl;
}
#ifdef __clang__
# pragma clang diagnostic push
# pragma clang diagnostic ignored "-Wmissing-field-initializers"
# pragma clang diagnostic ignored "-Wwritable-strings"
#elif defined(__GNUC__)
# pragma GCC diagnostic push
// warning: ISO C++ forbids converting a string constant to char*
// (The python APIs aren't const correct and accept writable char*)
# pragma GCC diagnostic ignored "-Wwrite-strings"
#endif
/***********************************************************
A PyGreenlet is a range of C stack addresses that must be
saved and restored in such a way that the full range of the
stack contains valid data when we switch to it.
Stack layout for a greenlet:
| ^^^ |
| older data |
| |
stack_stop . |_______________|
. | |
. | greenlet data |
. | in stack |
. * |_______________| . . _____________ stack_copy + stack_saved
. | | | |
. | data | |greenlet data|
. | unrelated | | saved |
. | to | | in heap |
stack_start . | this | . . |_____________| stack_copy
| greenlet |
| |
| newer data |
| vvv |
Note that a greenlet's stack data is typically partly at its correct
place in the stack, and partly saved away in the heap, but always in
the above configuration: two blocks, the more recent one in the heap
and the older one still in the stack (either block may be empty).
Greenlets are chained: each points to the previous greenlet, which is
the one that owns the data currently in the C stack above my
stack_stop. The currently running greenlet is the first element of
this chain. The main (initial) greenlet is the last one. Greenlets
whose stack is entirely in the heap can be skipped from the chain.
The chain is not related to execution order, but only to the order
in which bits of C stack happen to belong to greenlets at a particular
point in time.
The main greenlet doesn't have a stack_stop: it is responsible for the
complete rest of the C stack, and we don't know where it begins. We
use (char*) -1, the largest possible address.
States:
stack_stop == NULL && stack_start == NULL: did not start yet
stack_stop != NULL && stack_start == NULL: already finished
stack_stop != NULL && stack_start != NULL: active
The running greenlet's stack_start is undefined but not NULL.
***********************************************************/
/***********************************************************/
/* Some functions must not be inlined:
* slp_restore_state, when inlined into slp_switch might cause
it to restore stack over its own local variables
* slp_save_state, when inlined would add its own local
variables to the saved stack, wasting space
* slp_switch, cannot be inlined for obvious reasons
* g_initialstub, when inlined would receive a pointer into its
own stack frame, leading to incomplete stack save/restore
g_initialstub is a member function and declared virtual so that the
compiler always calls it through a vtable.
slp_save_state and slp_restore_state are also member functions. They
are called from trampoline functions that themselves are declared as
not eligible for inlining.
*/
extern "C" {
static int GREENLET_NOINLINE(slp_save_state_trampoline)(char* stackref)
{
return switching_thread_state->slp_save_state(stackref);
}
static void GREENLET_NOINLINE(slp_restore_state_trampoline)()
{
switching_thread_state->slp_restore_state();
}
}
/***********************************************************/
#include "PyModule.cpp"
static PyObject*
greenlet_internal_mod_init() noexcept
{
static void* _PyGreenlet_API[PyGreenlet_API_pointers];
try {
CreatedModule m(greenlet_module_def);
Require(PyType_Ready(&PyGreenlet_Type));
Require(PyType_Ready(&PyGreenletUnswitchable_Type));
mod_globs = new greenlet::GreenletGlobals;
ThreadState::init();
m.PyAddObject("greenlet", PyGreenlet_Type);
m.PyAddObject("UnswitchableGreenlet", PyGreenletUnswitchable_Type);
m.PyAddObject("error", mod_globs->PyExc_GreenletError);
m.PyAddObject("GreenletExit", mod_globs->PyExc_GreenletExit);
m.PyAddObject("GREENLET_USE_GC", 1);
m.PyAddObject("GREENLET_USE_TRACING", 1);
m.PyAddObject("GREENLET_USE_CONTEXT_VARS", 1L);
m.PyAddObject("GREENLET_USE_STANDARD_THREADING", 1L);
OwnedObject clocks_per_sec = OwnedObject::consuming(PyLong_FromSsize_t(CLOCKS_PER_SEC));
m.PyAddObject("CLOCKS_PER_SEC", clocks_per_sec);
/* also publish module-level data as attributes of the greentype. */
// XXX: This is weird, and enables a strange pattern of
// confusing the class greenlet with the module greenlet; with
// the exception of (possibly) ``getcurrent()``, this
// shouldn't be encouraged so don't add new items here.
for (const char* const* p = copy_on_greentype; *p; p++) {
OwnedObject o = m.PyRequireAttr(*p);
PyDict_SetItemString(PyGreenlet_Type.tp_dict, *p, o.borrow());
}
/*
* Expose C API
*/
/* types */
_PyGreenlet_API[PyGreenlet_Type_NUM] = (void*)&PyGreenlet_Type;
/* exceptions */
_PyGreenlet_API[PyExc_GreenletError_NUM] = (void*)mod_globs->PyExc_GreenletError;
_PyGreenlet_API[PyExc_GreenletExit_NUM] = (void*)mod_globs->PyExc_GreenletExit;
/* methods */
_PyGreenlet_API[PyGreenlet_New_NUM] = (void*)PyGreenlet_New;
_PyGreenlet_API[PyGreenlet_GetCurrent_NUM] = (void*)PyGreenlet_GetCurrent;
_PyGreenlet_API[PyGreenlet_Throw_NUM] = (void*)PyGreenlet_Throw;
_PyGreenlet_API[PyGreenlet_Switch_NUM] = (void*)PyGreenlet_Switch;
_PyGreenlet_API[PyGreenlet_SetParent_NUM] = (void*)PyGreenlet_SetParent;
/* Previously macros, but now need to be functions externally. */
_PyGreenlet_API[PyGreenlet_MAIN_NUM] = (void*)Extern_PyGreenlet_MAIN;
_PyGreenlet_API[PyGreenlet_STARTED_NUM] = (void*)Extern_PyGreenlet_STARTED;
_PyGreenlet_API[PyGreenlet_ACTIVE_NUM] = (void*)Extern_PyGreenlet_ACTIVE;
_PyGreenlet_API[PyGreenlet_GET_PARENT_NUM] = (void*)Extern_PyGreenlet_GET_PARENT;
/* XXX: Note that our module name is ``greenlet._greenlet``, but for
backwards compatibility with existing C code, we need the _C_API to
be directly in greenlet.
*/
const NewReference c_api_object(Require(
PyCapsule_New(
(void*)_PyGreenlet_API,
"greenlet._C_API",
NULL)));
m.PyAddObject("_C_API", c_api_object);
assert(c_api_object.REFCNT() == 2);
// cerr << "Sizes:"
// << "\n\tGreenlet : " << sizeof(Greenlet)
// << "\n\tUserGreenlet : " << sizeof(UserGreenlet)
// << "\n\tMainGreenlet : " << sizeof(MainGreenlet)
// << "\n\tExceptionState : " << sizeof(greenlet::ExceptionState)
// << "\n\tPythonState : " << sizeof(greenlet::PythonState)
// << "\n\tStackState : " << sizeof(greenlet::StackState)
// << "\n\tSwitchingArgs : " << sizeof(greenlet::SwitchingArgs)
// << "\n\tOwnedObject : " << sizeof(greenlet::refs::OwnedObject)
// << "\n\tBorrowedObject : " << sizeof(greenlet::refs::BorrowedObject)
// << "\n\tPyGreenlet : " << sizeof(PyGreenlet)
// << endl;
#ifdef Py_GIL_DISABLED
PyUnstable_Module_SetGIL(m.borrow(), Py_MOD_GIL_NOT_USED);
#endif
return m.borrow(); // But really it's the main reference.
}
catch (const LockInitError& e) {
PyErr_SetString(PyExc_MemoryError, e.what());
return NULL;
}
catch (const PyErrOccurred&) {
return NULL;
}
}
extern "C" {
PyMODINIT_FUNC
PyInit__greenlet(void)
{
return greenlet_internal_mod_init();
}
}; // extern C
#ifdef __clang__
# pragma clang diagnostic pop
#elif defined(__GNUC__)
# pragma GCC diagnostic pop
#endif