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