Add a minimal dlcall plugin that lets the guest invoke host functions through magic system calls. The plugin registers a vCPU syscall filter callback that intercepts a reserved syscall number and dispatches a set of pass-through operations: querying host attributes, loading and freeing shared libraries, resolving symbols, retrieving the last library error, and invoking a host function through a common interface. The magic syscall number defaults to 4096 and can be overridden at load time with the "syscall_num=N" argument; values low enough to clash with a real syscall are rejected. Co-authored-by: Kailiang Xu <xukl2019@sjtu.edu.cn> Co-authored-by: Mingyuan Xia <xiamy@ultrarisc.com> Signed-off-by: Ziyang Zhang <functioner@sjtu.edu.cn> Reviewed-by: Pierrick Bouvier <pierrick.bouvier@oss.qualcomm.com> Link: https://lore.kernel.org/qemu-devel/20260711094523.622997-2-functioner@sjtu.edu.cn Signed-off-by: Pierrick Bouvier <pierrick.bouvier@oss.qualcomm.com>
249 lines
8.8 KiB
C
249 lines
8.8 KiB
C
/*
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* Copyright (C) 2026, Ziyang Zhang <functioner@sjtu.edu.cn>
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*
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* dlcall (Dynamic Linking Call) plugin: lets a linux-user guest invoke host
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* functions by issuing a magic system call. The guest can ask QEMU to dlopen()
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* a host shared library, dlsym() a symbol, and call it with guest-supplied
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* arguments.
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*
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* The plugin intentionally keeps the QEMU side lightweight and prescribes
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* nothing about how a library is thunked. Any toolchain can implement the
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* userspace side. Lorelei is one end-to-end implementation (guest/host
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* runtimes plus a thunk compiler that generates thunks from a library's
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* headers):
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* https://github.com/rover2024/lorelei
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*
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* See docs/about/emulation.rst|Dynamic Linking Call for details and examples.
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*
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* WARNING: trusted guests only. The guest can load arbitrary host libraries
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* and execute arbitrary host code with arbitrary arguments, i.e. full code
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* execution in the QEMU host process. It is NOT a sandbox and provides no
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* isolation; only load it for guests you fully trust.
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*
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* WARNING: requires guest_base == 0, which is qemu-user's default. Pointer
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* operands are dereferenced as host addresses directly, and the invoked host
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* functions dereference guest pointers with no address translation, so guest
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* and host must share a single address space. A non-zero guest_base (e.g. set
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* via -B/-R) would make every pointer off by guest_base and hit unrelated
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* host memory.
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*
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* SPDX-License-Identifier: GPL-2.0-or-later
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*/
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#include <assert.h>
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#include <errno.h>
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#include <string.h>
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#include <stdio.h>
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#include <glib.h>
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#include <dlfcn.h>
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#include <qemu-plugin.h>
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QEMU_PLUGIN_EXPORT int qemu_plugin_version = QEMU_PLUGIN_VERSION;
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/*
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* The magic system call number for dlcall.
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*
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* It defaults to DLCALL_SYSCALL_DEFAULT and can be overridden at load time
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* with the "syscall_num=N" argument. To avoid hijacking a real syscall the
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* guest might issue, N must be at least DLCALL_SYSCALL_MIN: every Linux ABI
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* keeps its syscall numbers well below this; numbers from here up are free.
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*/
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enum {
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DLCALL_SYSCALL_DEFAULT = 4096,
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DLCALL_SYSCALL_MIN = 4096,
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};
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static int64_t dlcall_syscall_num = DLCALL_SYSCALL_DEFAULT;
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/*
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* dlcall calling convention.
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*
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* The guest issues the magic system call (dlcall_syscall_num). The first
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* argument (a1) is one of the call IDs below; the remaining arguments (a2, a3,
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* a4, ...) are that ID's operands. All pointer operands are guest virtual
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* addresses that the plugin dereferences as host addresses directly (see the
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* guest_base requirement above). Results are written back through
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* caller-provided "out" pointers rather than returned in the syscall value.
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*
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* The syscall return value (*sysret) only reports dispatch status: 0 on a
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* recognised ID, -EINVAL for an unknown one. The actual success/failure of an
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* operation (e.g. a NULL handle from dlopen) is delivered through its out
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* pointer, exactly like the underlying libdl call.
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*
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* Operands per ID:
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*
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* DLCALL_ID_GET_HOST_ATTRIBUTE
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* a2 const char *key in: attribute name to query
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* a3 const char **attr_ptr out: matching value, or NULL if unknown
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*
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* DLCALL_ID_LOAD_LIBRARY (wraps dlopen)
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* a2 const char *path in: library path
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* a3 int flags in: dlopen() flags (e.g. RTLD_NOW)
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* a4 void **handle_ptr out: library handle, or NULL on failure
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*
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* DLCALL_ID_GET_PROC_ADDRESS (wraps dlsym)
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* a2 void *handle in: library handle
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* a3 const char *name in: symbol name
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* a4 void **entry_ptr out: symbol address, or NULL if not found
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*
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* DLCALL_ID_FREE_LIBRARY (wraps dlclose)
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* a2 void *handle in: library handle
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* a3 int *ret_ptr out: dlclose() return value (0 on success)
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*
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* DLCALL_ID_GET_LIBRARY_ERROR (wraps dlerror)
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* a2 const char **error_ptr out: last libdl error string, or NULL
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*
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* DLCALL_ID_INVOKE_PROC (calls the symbol)
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* a2 void *proc in: function pointer, signature
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* void (*)(void *arg1, void *arg2)
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* a3 void *arg1 in: first argument forwarded to proc
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* a4 void *arg2 in: second argument forwarded to proc
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*/
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enum DlcallID {
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DLCALL_ID_GET_HOST_ATTRIBUTE,
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DLCALL_ID_LOAD_LIBRARY,
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DLCALL_ID_GET_PROC_ADDRESS,
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DLCALL_ID_FREE_LIBRARY,
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DLCALL_ID_GET_LIBRARY_ERROR,
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DLCALL_ID_INVOKE_PROC,
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};
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static inline const char *query_host_attribute(const char *key)
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{
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if (strcmp(key, "emu") == 0) {
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return "qemu";
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}
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return NULL;
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}
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static inline void invoke_proc(void *proc, void *arg1, void *arg2)
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{
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typedef void (*Func)(void * /*arg1*/, void * /*arg2*/);
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Func func = (Func) proc;
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func(arg1, arg2);
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}
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static bool vcpu_syscall_filter(unsigned int vcpu_index,
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int64_t num, uint64_t a1, uint64_t a2,
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uint64_t a3, uint64_t a4, uint64_t a5,
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uint64_t a6, uint64_t a7, uint64_t a8,
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int64_t *sysret, void *userdata)
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{
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if (num == dlcall_syscall_num) {
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switch (a1) {
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/* Query host attribute by a reserved key. */
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case DLCALL_ID_GET_HOST_ATTRIBUTE: {
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const char *key = (const char *) a2;
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const char **attr_ptr = (const char **) a3;
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assert(attr_ptr);
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*attr_ptr = query_host_attribute(key);
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*sysret = 0;
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break;
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}
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/* Load a shared library. */
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case DLCALL_ID_LOAD_LIBRARY: {
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const char *path = (const char *) a2;
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int flags = (int) a3;
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void **handle_ptr = (void **) a4;
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assert(handle_ptr);
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*handle_ptr = dlopen(path, flags);
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*sysret = 0;
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break;
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}
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/* Get the address of a function in a shared library. */
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case DLCALL_ID_GET_PROC_ADDRESS: {
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void *handle = (void *) a2;
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const char *name = (const char *) a3;
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void **entry_ptr = (void **) a4;
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assert(entry_ptr);
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*entry_ptr = dlsym(handle, name);
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*sysret = 0;
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break;
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}
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/* Free a shared library. */
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case DLCALL_ID_FREE_LIBRARY: {
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void *handle = (void *) a2;
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int *ret_ptr = (int *) a3;
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*ret_ptr = dlclose(handle);
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*sysret = 0;
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break;
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}
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/* Get the last error message for a library event. */
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case DLCALL_ID_GET_LIBRARY_ERROR: {
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const char **error_ptr = (const char **) a2;
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*error_ptr = dlerror();
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*sysret = 0;
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break;
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}
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/* Invoke a function of a common interface. */
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case DLCALL_ID_INVOKE_PROC: {
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void *proc = (void *) a2;
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void *arg1 = (void *) a3;
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void *arg2 = (void *) a4;
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assert(proc);
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invoke_proc(proc, arg1, arg2);
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*sysret = 0;
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break;
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}
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default:
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*sysret = -EINVAL;
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break;
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}
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return true;
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}
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return false;
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}
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QEMU_PLUGIN_EXPORT int qemu_plugin_install(qemu_plugin_id_t id,
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const qemu_info_t *info,
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int argc, char **argv)
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{
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if (info->system_emulation) {
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fprintf(stderr, "plugin dlcall: only useful for user emulation\n");
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return -1;
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}
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for (int i = 0; i < argc; i++) {
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char *opt = argv[i];
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g_auto(GStrv) tokens = g_strsplit(opt, "=", 2);
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if (g_strcmp0(tokens[0], "syscall_num") == 0) {
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const char *val = tokens[1];
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char *endptr = NULL;
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guint64 num;
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if (!val || *val == '\0') {
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fprintf(stderr,
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"plugin dlcall: missing value for syscall_num\n");
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return -1;
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}
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num = g_ascii_strtoull(val, &endptr, 0);
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if (*endptr != '\0' || g_strrstr(val, "-") != NULL) {
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fprintf(stderr,
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"plugin dlcall: invalid syscall_num '%s'\n", val);
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return -1;
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}
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if (num < DLCALL_SYSCALL_MIN || num > G_MAXINT64) {
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fprintf(stderr,
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"plugin dlcall: syscall_num %s is out of range; "
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"it must be >= %d to avoid clashing with a real "
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"syscall\n", val, DLCALL_SYSCALL_MIN);
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return -1;
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}
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dlcall_syscall_num = (int64_t) num;
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} else {
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fprintf(stderr, "plugin dlcall: unknown option '%s'\n", opt);
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return -1;
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}
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}
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qemu_plugin_register_vcpu_syscall_filter_cb(id, vcpu_syscall_filter, NULL);
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return 0;
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}
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