An update to the dylibloader for older inttypes

This #define's older inttypes to their newer versions and #includes
<stdint.h> in the generated files. This will help with older
glibc/compiler versions using headers generated on newer systems.

This closes #46223
This commit is contained in:
Hein-Pieter van Braam-Stewart 2021-02-20 00:13:33 +01:00
parent dc1ae06557
commit 5233d78f49
9 changed files with 8703 additions and 5210 deletions

File diff suppressed because it is too large Load diff

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@ -2,9 +2,11 @@
#define DYLIBLOAD_WRAPPER_ASOUND
// This file is generated. Do not edit!
// see https://github.com/hpvb/dynload-wrapper for details
// generated by /home/hp/Projects/godot/pulse/generate-wrapper.py 0.2 on 2021-02-18 00:19:14
// generated by /home/hp/Projects/godot/pulse/generate-wrapper.py 0.3 on 2021-02-20 00:08:12
// flags: /home/hp/Projects/godot/pulse/generate-wrapper.py --include /usr/include/alsa/asoundlib.h --sys-include <alsa/asoundlib.h> --soname libasound.so.2 --init-name asound --output-header asound-so_wrap.h --output-implementation asound-so_wrap.c
//
#include <stdint.h>
#define snd_asoundlib_version snd_asoundlib_version_dylibloader_orig_asound
#define snd_dlpath snd_dlpath_dylibloader_orig_asound
#define snd_dlopen snd_dlopen_dylibloader_orig_asound
@ -5141,7 +5143,7 @@ extern void (*snd_midi_event_no_status_dylibloader_wrapper_asound)( snd_midi_eve
extern long (*snd_midi_event_encode_dylibloader_wrapper_asound)( snd_midi_event_t*,const unsigned char*, long, snd_seq_event_t*);
extern int (*snd_midi_event_encode_byte_dylibloader_wrapper_asound)( snd_midi_event_t*, int, snd_seq_event_t*);
extern long (*snd_midi_event_decode_dylibloader_wrapper_asound)( snd_midi_event_t*, unsigned char*, long,const snd_seq_event_t*);
int initialize_asound();
int initialize_asound(int verbose);
#ifdef __cplusplus
}
#endif

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@ -39,7 +39,7 @@
#ifdef PULSEAUDIO_ENABLED
extern "C" {
extern int initialize_pulse();
extern int initialize_pulse(int verbose);
}
#endif
@ -153,13 +153,18 @@ Error AudioDriverALSA::init_device() {
}
Error AudioDriverALSA::init() {
#ifdef DEBUG_ENABLED
int dylibloader_verbose = 1;
#else
int dylibloader_verbose = 0;
#endif
#ifdef PULSEAUDIO_ENABLED
// On pulse enabled systems Alsa will silently use pulse.
// It doesn't matter if this fails as that likely means there is no pulse
initialize_pulse();
initialize_pulse(dylibloader_verbose);
#endif
if (initialize_asound()) {
if (initialize_asound(dylibloader_verbose)) {
return ERR_CANT_OPEN;
}

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@ -233,7 +233,12 @@ Error AudioDriverPulseAudio::init_device() {
}
Error AudioDriverPulseAudio::init() {
if (initialize_pulse()) {
#ifdef DEBUG_ENABLED
int dylibloader_verbose = 1;
#else
int dylibloader_verbose = 0;
#endif
if (initialize_pulse(dylibloader_verbose)) {
return ERR_CANT_OPEN;
}

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@ -2,9 +2,11 @@
#define DYLIBLOAD_WRAPPER_PULSE
// This file is generated. Do not edit!
// see https://github.com/hpvb/dynload-wrapper for details
// generated by /home/hp/Projects/godot/pulse/generate-wrapper.py 0.2 on 2021-02-18 00:19:07
// generated by /home/hp/Projects/godot/pulse/generate-wrapper.py 0.3 on 2021-02-20 00:08:31
// flags: /home/hp/Projects/godot/pulse/generate-wrapper.py --include /usr/include/pulse/pulseaudio.h --sys-include <pulse/pulseaudio.h> --soname libpulse.so.0 --omit-prefix _pa_ --init-name pulse --output-header pulse-so_wrap.h --output-implementation pulse-so_wrap.c
//
#include <stdint.h>
#define pa_get_library_version pa_get_library_version_dylibloader_orig_pulse
#define pa_bytes_per_second pa_bytes_per_second_dylibloader_orig_pulse
#define pa_frame_size pa_frame_size_dylibloader_orig_pulse
@ -1437,7 +1439,7 @@ extern struct timeval* (*pa_timeval_sub_dylibloader_wrapper_pulse)(struct timeva
extern struct timeval* (*pa_timeval_store_dylibloader_wrapper_pulse)(struct timeval*, pa_usec_t);
extern pa_usec_t (*pa_timeval_load_dylibloader_wrapper_pulse)(struct timeval*);
extern pa_usec_t (*pa_rtclock_now_dylibloader_wrapper_pulse)( void);
int initialize_pulse();
int initialize_pulse(int verbose);
#ifdef __cplusplus
}
#endif

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@ -73,7 +73,12 @@ void JoypadLinux::Joypad::reset() {
JoypadLinux::JoypadLinux(Input *in) {
#ifdef UDEV_ENABLED
use_udev = initialize_libudev() == 0;
#ifdef DEBUG_ENABLED
int dylibloader_verbose = 1;
#else
int dylibloader_verbose = 0;
#endif
use_udev = initialize_libudev(dylibloader_verbose) == 0;
if (use_udev) {
print_verbose("JoypadLinux: udev enabled and loaded successfully.");
} else {

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@ -1,8 +1,10 @@
// This file is generated. Do not edit!
// see https://github.com/hpvb/dynload-wrapper for details
// generated by /home/hp/Projects/godot/pulse/generate-wrapper.py 0.2 on 2021-02-18 00:18:56
// generated by /home/hp/Projects/godot/pulse/generate-wrapper.py 0.3 on 2021-02-20 00:08:59
// flags: /home/hp/Projects/godot/pulse/generate-wrapper.py --include /usr/include/libudev.h --sys-include <libudev.h> --soname libudev.so.1 --init-name libudev --omit-prefix gnu_ --output-header libudev-so_wrap.h --output-implementation libudev-so_wrap.c
//
#include <stdint.h>
#define udev_ref udev_ref_dylibloader_orig_libudev
#define udev_unref udev_unref_dylibloader_orig_libudev
#define udev_new udev_new_dylibloader_orig_libudev
@ -276,554 +278,736 @@ struct udev_hwdb* (*udev_hwdb_ref_dylibloader_wrapper_libudev)(struct udev_hwdb*
struct udev_hwdb* (*udev_hwdb_unref_dylibloader_wrapper_libudev)(struct udev_hwdb*);
struct udev_list_entry* (*udev_hwdb_get_properties_list_entry_dylibloader_wrapper_libudev)(struct udev_hwdb*,const char*, unsigned);
int (*udev_util_encode_string_dylibloader_wrapper_libudev)(const char*, char*, size_t);
int initialize_libudev() {
int initialize_libudev(int verbose) {
void *handle;
char *error;
handle = dlopen("libudev.so.1", RTLD_LAZY);
if (!handle) {
if (verbose) {
fprintf(stderr, "%s\n", dlerror());
}
return(1);
}
dlerror();
// udev_ref
*(void **) (&udev_ref_dylibloader_wrapper_libudev) = dlsym(handle, "udev_ref");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_unref
*(void **) (&udev_unref_dylibloader_wrapper_libudev) = dlsym(handle, "udev_unref");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_new
*(void **) (&udev_new_dylibloader_wrapper_libudev) = dlsym(handle, "udev_new");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_set_log_fn
*(void **) (&udev_set_log_fn_dylibloader_wrapper_libudev) = dlsym(handle, "udev_set_log_fn");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_get_log_priority
*(void **) (&udev_get_log_priority_dylibloader_wrapper_libudev) = dlsym(handle, "udev_get_log_priority");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_set_log_priority
*(void **) (&udev_set_log_priority_dylibloader_wrapper_libudev) = dlsym(handle, "udev_set_log_priority");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_get_userdata
*(void **) (&udev_get_userdata_dylibloader_wrapper_libudev) = dlsym(handle, "udev_get_userdata");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_set_userdata
*(void **) (&udev_set_userdata_dylibloader_wrapper_libudev) = dlsym(handle, "udev_set_userdata");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_list_entry_get_next
*(void **) (&udev_list_entry_get_next_dylibloader_wrapper_libudev) = dlsym(handle, "udev_list_entry_get_next");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_list_entry_get_by_name
*(void **) (&udev_list_entry_get_by_name_dylibloader_wrapper_libudev) = dlsym(handle, "udev_list_entry_get_by_name");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_list_entry_get_name
*(void **) (&udev_list_entry_get_name_dylibloader_wrapper_libudev) = dlsym(handle, "udev_list_entry_get_name");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_list_entry_get_value
*(void **) (&udev_list_entry_get_value_dylibloader_wrapper_libudev) = dlsym(handle, "udev_list_entry_get_value");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_ref
*(void **) (&udev_device_ref_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_ref");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_unref
*(void **) (&udev_device_unref_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_unref");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_get_udev
*(void **) (&udev_device_get_udev_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_get_udev");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_new_from_syspath
*(void **) (&udev_device_new_from_syspath_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_new_from_syspath");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_new_from_devnum
*(void **) (&udev_device_new_from_devnum_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_new_from_devnum");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_new_from_subsystem_sysname
*(void **) (&udev_device_new_from_subsystem_sysname_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_new_from_subsystem_sysname");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_new_from_device_id
*(void **) (&udev_device_new_from_device_id_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_new_from_device_id");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_new_from_environment
*(void **) (&udev_device_new_from_environment_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_new_from_environment");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_get_parent
*(void **) (&udev_device_get_parent_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_get_parent");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_get_parent_with_subsystem_devtype
*(void **) (&udev_device_get_parent_with_subsystem_devtype_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_get_parent_with_subsystem_devtype");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_get_devpath
*(void **) (&udev_device_get_devpath_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_get_devpath");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_get_subsystem
*(void **) (&udev_device_get_subsystem_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_get_subsystem");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_get_devtype
*(void **) (&udev_device_get_devtype_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_get_devtype");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_get_syspath
*(void **) (&udev_device_get_syspath_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_get_syspath");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_get_sysname
*(void **) (&udev_device_get_sysname_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_get_sysname");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_get_sysnum
*(void **) (&udev_device_get_sysnum_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_get_sysnum");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_get_devnode
*(void **) (&udev_device_get_devnode_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_get_devnode");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_get_is_initialized
*(void **) (&udev_device_get_is_initialized_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_get_is_initialized");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_get_devlinks_list_entry
*(void **) (&udev_device_get_devlinks_list_entry_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_get_devlinks_list_entry");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_get_properties_list_entry
*(void **) (&udev_device_get_properties_list_entry_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_get_properties_list_entry");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_get_tags_list_entry
*(void **) (&udev_device_get_tags_list_entry_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_get_tags_list_entry");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_get_sysattr_list_entry
*(void **) (&udev_device_get_sysattr_list_entry_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_get_sysattr_list_entry");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_get_property_value
*(void **) (&udev_device_get_property_value_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_get_property_value");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_get_driver
*(void **) (&udev_device_get_driver_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_get_driver");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_get_devnum
*(void **) (&udev_device_get_devnum_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_get_devnum");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_get_action
*(void **) (&udev_device_get_action_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_get_action");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_get_seqnum
*(void **) (&udev_device_get_seqnum_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_get_seqnum");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_get_usec_since_initialized
*(void **) (&udev_device_get_usec_since_initialized_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_get_usec_since_initialized");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_get_sysattr_value
*(void **) (&udev_device_get_sysattr_value_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_get_sysattr_value");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_set_sysattr_value
*(void **) (&udev_device_set_sysattr_value_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_set_sysattr_value");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_device_has_tag
*(void **) (&udev_device_has_tag_dylibloader_wrapper_libudev) = dlsym(handle, "udev_device_has_tag");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_monitor_ref
*(void **) (&udev_monitor_ref_dylibloader_wrapper_libudev) = dlsym(handle, "udev_monitor_ref");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_monitor_unref
*(void **) (&udev_monitor_unref_dylibloader_wrapper_libudev) = dlsym(handle, "udev_monitor_unref");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_monitor_get_udev
*(void **) (&udev_monitor_get_udev_dylibloader_wrapper_libudev) = dlsym(handle, "udev_monitor_get_udev");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_monitor_new_from_netlink
*(void **) (&udev_monitor_new_from_netlink_dylibloader_wrapper_libudev) = dlsym(handle, "udev_monitor_new_from_netlink");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_monitor_enable_receiving
*(void **) (&udev_monitor_enable_receiving_dylibloader_wrapper_libudev) = dlsym(handle, "udev_monitor_enable_receiving");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_monitor_set_receive_buffer_size
*(void **) (&udev_monitor_set_receive_buffer_size_dylibloader_wrapper_libudev) = dlsym(handle, "udev_monitor_set_receive_buffer_size");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_monitor_get_fd
*(void **) (&udev_monitor_get_fd_dylibloader_wrapper_libudev) = dlsym(handle, "udev_monitor_get_fd");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_monitor_receive_device
*(void **) (&udev_monitor_receive_device_dylibloader_wrapper_libudev) = dlsym(handle, "udev_monitor_receive_device");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_monitor_filter_add_match_subsystem_devtype
*(void **) (&udev_monitor_filter_add_match_subsystem_devtype_dylibloader_wrapper_libudev) = dlsym(handle, "udev_monitor_filter_add_match_subsystem_devtype");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_monitor_filter_add_match_tag
*(void **) (&udev_monitor_filter_add_match_tag_dylibloader_wrapper_libudev) = dlsym(handle, "udev_monitor_filter_add_match_tag");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_monitor_filter_update
*(void **) (&udev_monitor_filter_update_dylibloader_wrapper_libudev) = dlsym(handle, "udev_monitor_filter_update");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_monitor_filter_remove
*(void **) (&udev_monitor_filter_remove_dylibloader_wrapper_libudev) = dlsym(handle, "udev_monitor_filter_remove");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_enumerate_ref
*(void **) (&udev_enumerate_ref_dylibloader_wrapper_libudev) = dlsym(handle, "udev_enumerate_ref");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_enumerate_unref
*(void **) (&udev_enumerate_unref_dylibloader_wrapper_libudev) = dlsym(handle, "udev_enumerate_unref");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_enumerate_get_udev
*(void **) (&udev_enumerate_get_udev_dylibloader_wrapper_libudev) = dlsym(handle, "udev_enumerate_get_udev");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_enumerate_new
*(void **) (&udev_enumerate_new_dylibloader_wrapper_libudev) = dlsym(handle, "udev_enumerate_new");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_enumerate_add_match_subsystem
*(void **) (&udev_enumerate_add_match_subsystem_dylibloader_wrapper_libudev) = dlsym(handle, "udev_enumerate_add_match_subsystem");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_enumerate_add_nomatch_subsystem
*(void **) (&udev_enumerate_add_nomatch_subsystem_dylibloader_wrapper_libudev) = dlsym(handle, "udev_enumerate_add_nomatch_subsystem");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_enumerate_add_match_sysattr
*(void **) (&udev_enumerate_add_match_sysattr_dylibloader_wrapper_libudev) = dlsym(handle, "udev_enumerate_add_match_sysattr");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_enumerate_add_nomatch_sysattr
*(void **) (&udev_enumerate_add_nomatch_sysattr_dylibloader_wrapper_libudev) = dlsym(handle, "udev_enumerate_add_nomatch_sysattr");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_enumerate_add_match_property
*(void **) (&udev_enumerate_add_match_property_dylibloader_wrapper_libudev) = dlsym(handle, "udev_enumerate_add_match_property");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_enumerate_add_match_sysname
*(void **) (&udev_enumerate_add_match_sysname_dylibloader_wrapper_libudev) = dlsym(handle, "udev_enumerate_add_match_sysname");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_enumerate_add_match_tag
*(void **) (&udev_enumerate_add_match_tag_dylibloader_wrapper_libudev) = dlsym(handle, "udev_enumerate_add_match_tag");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_enumerate_add_match_parent
*(void **) (&udev_enumerate_add_match_parent_dylibloader_wrapper_libudev) = dlsym(handle, "udev_enumerate_add_match_parent");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_enumerate_add_match_is_initialized
*(void **) (&udev_enumerate_add_match_is_initialized_dylibloader_wrapper_libudev) = dlsym(handle, "udev_enumerate_add_match_is_initialized");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_enumerate_add_syspath
*(void **) (&udev_enumerate_add_syspath_dylibloader_wrapper_libudev) = dlsym(handle, "udev_enumerate_add_syspath");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_enumerate_scan_devices
*(void **) (&udev_enumerate_scan_devices_dylibloader_wrapper_libudev) = dlsym(handle, "udev_enumerate_scan_devices");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_enumerate_scan_subsystems
*(void **) (&udev_enumerate_scan_subsystems_dylibloader_wrapper_libudev) = dlsym(handle, "udev_enumerate_scan_subsystems");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_enumerate_get_list_entry
*(void **) (&udev_enumerate_get_list_entry_dylibloader_wrapper_libudev) = dlsym(handle, "udev_enumerate_get_list_entry");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_queue_ref
*(void **) (&udev_queue_ref_dylibloader_wrapper_libudev) = dlsym(handle, "udev_queue_ref");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_queue_unref
*(void **) (&udev_queue_unref_dylibloader_wrapper_libudev) = dlsym(handle, "udev_queue_unref");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_queue_get_udev
*(void **) (&udev_queue_get_udev_dylibloader_wrapper_libudev) = dlsym(handle, "udev_queue_get_udev");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_queue_new
*(void **) (&udev_queue_new_dylibloader_wrapper_libudev) = dlsym(handle, "udev_queue_new");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_queue_get_kernel_seqnum
*(void **) (&udev_queue_get_kernel_seqnum_dylibloader_wrapper_libudev) = dlsym(handle, "udev_queue_get_kernel_seqnum");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_queue_get_udev_seqnum
*(void **) (&udev_queue_get_udev_seqnum_dylibloader_wrapper_libudev) = dlsym(handle, "udev_queue_get_udev_seqnum");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_queue_get_udev_is_active
*(void **) (&udev_queue_get_udev_is_active_dylibloader_wrapper_libudev) = dlsym(handle, "udev_queue_get_udev_is_active");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_queue_get_queue_is_empty
*(void **) (&udev_queue_get_queue_is_empty_dylibloader_wrapper_libudev) = dlsym(handle, "udev_queue_get_queue_is_empty");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_queue_get_seqnum_is_finished
*(void **) (&udev_queue_get_seqnum_is_finished_dylibloader_wrapper_libudev) = dlsym(handle, "udev_queue_get_seqnum_is_finished");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_queue_get_seqnum_sequence_is_finished
*(void **) (&udev_queue_get_seqnum_sequence_is_finished_dylibloader_wrapper_libudev) = dlsym(handle, "udev_queue_get_seqnum_sequence_is_finished");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_queue_get_fd
*(void **) (&udev_queue_get_fd_dylibloader_wrapper_libudev) = dlsym(handle, "udev_queue_get_fd");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_queue_flush
*(void **) (&udev_queue_flush_dylibloader_wrapper_libudev) = dlsym(handle, "udev_queue_flush");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_queue_get_queued_list_entry
*(void **) (&udev_queue_get_queued_list_entry_dylibloader_wrapper_libudev) = dlsym(handle, "udev_queue_get_queued_list_entry");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_hwdb_new
*(void **) (&udev_hwdb_new_dylibloader_wrapper_libudev) = dlsym(handle, "udev_hwdb_new");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_hwdb_ref
*(void **) (&udev_hwdb_ref_dylibloader_wrapper_libudev) = dlsym(handle, "udev_hwdb_ref");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_hwdb_unref
*(void **) (&udev_hwdb_unref_dylibloader_wrapper_libudev) = dlsym(handle, "udev_hwdb_unref");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_hwdb_get_properties_list_entry
*(void **) (&udev_hwdb_get_properties_list_entry_dylibloader_wrapper_libudev) = dlsym(handle, "udev_hwdb_get_properties_list_entry");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
// udev_util_encode_string
*(void **) (&udev_util_encode_string_dylibloader_wrapper_libudev) = dlsym(handle, "udev_util_encode_string");
if (verbose) {
error = dlerror();
if (error != NULL) {
fprintf(stderr, "%s\n", error);
}
}
return 0;
}

View file

@ -2,9 +2,11 @@
#define DYLIBLOAD_WRAPPER_LIBUDEV
// This file is generated. Do not edit!
// see https://github.com/hpvb/dynload-wrapper for details
// generated by /home/hp/Projects/godot/pulse/generate-wrapper.py 0.2 on 2021-02-18 00:18:56
// generated by /home/hp/Projects/godot/pulse/generate-wrapper.py 0.3 on 2021-02-20 00:08:59
// flags: /home/hp/Projects/godot/pulse/generate-wrapper.py --include /usr/include/libudev.h --sys-include <libudev.h> --soname libudev.so.1 --init-name libudev --omit-prefix gnu_ --output-header libudev-so_wrap.h --output-implementation libudev-so_wrap.c
//
#include <stdint.h>
#define udev_ref udev_ref_dylibloader_orig_libudev
#define udev_unref udev_unref_dylibloader_orig_libudev
#define udev_new udev_new_dylibloader_orig_libudev
@ -369,7 +371,7 @@ extern struct udev_hwdb* (*udev_hwdb_ref_dylibloader_wrapper_libudev)(struct ude
extern struct udev_hwdb* (*udev_hwdb_unref_dylibloader_wrapper_libudev)(struct udev_hwdb*);
extern struct udev_list_entry* (*udev_hwdb_get_properties_list_entry_dylibloader_wrapper_libudev)(struct udev_hwdb*,const char*, unsigned);
extern int (*udev_util_encode_string_dylibloader_wrapper_libudev)(const char*, char*, size_t);
int initialize_libudev();
int initialize_libudev(int verbose);
#ifdef __cplusplus
}
#endif