5 Commits

Author SHA1 Message Date
71c08c2c2b bring sysinfo into 2026 2026-09-03 15:19:21 -06:00
bb3893d36c Fix channel ACTION routing after self-message handling 2026-09-03 09:27:07 -06:00
deepend-tildeclub
fe57449f6c Merge pull request #374 from TehPeGaSuS/fix/weechat-relay-pm-split
Fix private messages splitting into two windows over WeeChat's IRC relay
2026-09-03 08:20:55 -07:00
ThePeGaSuS
c725adaa09 Fix CTCP ACTION not rerouting self-sent /me to correct PM window
Mirrors the PRIVMSG fix: replayed /me messages sent by our own nick
via WeeChat relay backlog were always passed with fromme=FALSE,
so they never got rerouted to the actual PM query window.
2026-09-03 08:51:21 +02:00
ThePeGaSuS
0ba523d071 Fix: private messages split into two windows over WeeChat's IRC relay
When you send a private message, ZoiteChat sometimes gets the same
message echoed back by the server so it can show it in the right
window. Whether it recognizes that echo depended on the server first
confirming a feature called "echo-message" during connection setup.

WeeChat's relay doesn't seem to confirm that feature the way other
servers (or ZNC) do, so ZoiteChat didn't recognize its own echoed
messages and treated them as brand new incoming messages from
yourself, opening a second, separate conversation window instead of
using the one you were already typing in.

This makes ZoiteChat recognize its own message by checking who sent
it, instead of only trusting that feature confirmation. That way,
sent and received messages always end up in the same conversation
window, regardless of how well the server/relay announces its
capabilities.
2026-08-28 20:48:12 +02:00
6 changed files with 1890 additions and 126 deletions

View File

@@ -6,50 +6,66 @@ sysinfo_sources = [
sysinfo_deps = [
libgio_dep,
zoitechat_plugin_dep,
common_sysinfo_deps,
]
sysinfo_includes = []
sysinfo_cargs = ['-DHAVE_CONFIG_H']
system = host_machine.system()
if system == 'linux' or system == 'gnu' or system.startswith('gnu/') or system == 'darwin' or system == 'freebsd'
sysinfo_includes += 'shared'
sysinfo_sources += [
'shared/df.c'
]
if system == 'linux' or system == 'gnu' or system.startswith('gnu/') or system == 'freebsd'
libpci = dependency('libpci', required: false, method: 'pkg-config')
if libpci.found()
sysinfo_deps += libpci
sysinfo_cargs += '-DHAVE_LIBPCI'
sysinfo_sources += 'unix/pci.c'
picidsdir = libpci.get_pkgconfig_variable('idsdir')
pciids = join_paths(picidsdir, 'pci.ids')
sysinfo_cargs += '-DPCIIDS_FILE="@0@"'.format(pciids)
endif
if get_option('gtk-frontend')
sysinfo_deps += dependency('gtk+-3.0', version: '>= 3.22')
endif
sysinfo_includes += 'unix'
sysinfo_sources += [
'unix/backend.c',
'unix/match.c',
'unix/parse.c',
]
elif system == 'darwin'
add_languages('objc')
sysinfo_sources += 'osx/backend.m'
if system == 'linux' or system == 'gnu' or system.startswith('gnu/')
if get_option('gtk-frontend')
sysinfo_deps += dependency('gtk+-3.0', version: '>= 3.22')
endif
elif system == 'windows'
libpci = dependency('libpci', required: false, method: 'pkg-config')
if libpci.found()
sysinfo_deps += libpci
sysinfo_cargs += '-DHAVE_LIBPCI'
endif
sysinfo_includes += 'unix'
sysinfo_sources += 'unix/modern-backend.c'
elif system == 'freebsd'
sysinfo_includes += ['shared', 'unix']
sysinfo_sources += [
'win32/backend.c',
'../../src/common/sysinfo/win32/backend.c'
'shared/df.c',
'unix/backend.c',
'unix/match.c',
'unix/parse.c',
]
libpci = dependency('libpci', required: false, method: 'pkg-config')
if libpci.found()
sysinfo_deps += libpci
sysinfo_cargs += '-DHAVE_LIBPCI'
sysinfo_sources += 'unix/pci.c'
picidsdir = libpci.get_pkgconfig_variable('idsdir')
pciids = join_paths(picidsdir, 'pci.ids')
sysinfo_cargs += '-DPCIIDS_FILE="@0@"'.format(pciids)
endif
if get_option('gtk-frontend')
sysinfo_deps += dependency('gtk+-3.0', version: '>= 3.22')
endif
elif system == 'darwin'
sysinfo_includes += 'shared'
sysinfo_sources += 'shared/df.c'
add_languages('objc')
sysinfo_sources += 'osx/backend.m'
elif system == 'windows'
cc = meson.get_compiler('c')
sysinfo_deps += [
cc.find_library('advapi32', required: true),
cc.find_library('dxgi', required: true),
cc.find_library('dxguid', required: true),
cc.find_library('iphlpapi', required: true),
cc.find_library('winmm', required: true),
]
sysinfo_sources += 'win32/backend.c'
else
error('sysinfo: Unknown system?')
endif

View File

@@ -40,8 +40,8 @@ static zoitechat_plugin *ph;
static char name[] = "Sysinfo";
static char desc[] = "Display info about your hardware and OS";
static char version[] = "1.0";
static char sysinfo_help[] = "SysInfo Usage:\n /SYSINFO [-e|-o] [CLIENT|UI|OS|CPU|RAM|STORAGE|GPU|CHIPSET|SOUND|ETHERNET|UPTIME], print various details about your system or print a summary without arguments\n /SYSINFO SET <variable>\n";
static char version[] = "2.0";
static char sysinfo_help[] = "SysInfo Usage:\n /SYSINFO [-e|-o] [CLIENT|UI|OS|CPU|RAM|MEMORY|STORAGE|DISK|GPU|VGA|CHIPSET|SOUND|NETWORK|ETHERNET|UPTIME], print various details about your system or print a summary without arguments\n /SYSINFO SET <variable>\n";
typedef struct
{
@@ -68,11 +68,15 @@ static hwinfo hwinfos[] = {
{"os", "OS", sysinfo_backend_get_os},
{"cpu", "CPU", sysinfo_backend_get_cpu},
{"memory", "Memory", sysinfo_backend_get_memory},
#if defined(__linux__)
{"storage", "Storage", sysinfo_backend_get_disk, FALSE},
#else
{"storage", "Storage", sysinfo_backend_get_disk, TRUE},
#endif
{"gpu", "GPU", sysinfo_backend_get_gpu},
{"chipset", "CHIPSET", sysinfo_backend_get_chipset, TRUE},
{"chipset", "Chipset", sysinfo_backend_get_chipset, TRUE},
{"sound", "Sound", sysinfo_backend_get_sound, TRUE},
{"ethernet", "Ethernet", sysinfo_backend_get_network, TRUE},
{"ethernet", "Network", sysinfo_backend_get_network, TRUE},
{"uptime", "Uptime", sysinfo_backend_get_uptime},
{NULL, NULL},
};
@@ -115,14 +119,30 @@ print_summary (gboolean announce)
g_free (output);
}
static const char *
normalize_info_name (const char *info)
{
if (!g_ascii_strcasecmp (info, "ram"))
return "memory";
if (!g_ascii_strcasecmp (info, "disk"))
return "storage";
if (!g_ascii_strcasecmp (info, "vga"))
return "gpu";
if (!g_ascii_strcasecmp (info, "network"))
return "ethernet";
return info;
}
static void
print_info (char *info, gboolean announce)
{
const char *normalized = normalize_info_name (info);
int i;
for (i = 0; hwinfos[i].name != NULL; i++)
{
if (!g_ascii_strcasecmp (info, hwinfos[i].name))
if (!g_ascii_strcasecmp (normalized, hwinfos[i].name))
{
char *str = hwinfos[i].callback();
if (str)
@@ -183,12 +203,17 @@ sysinfo_set_pref (char *key, char *value)
}
else if (g_str_has_prefix (key, "hide_"))
{
const char *normalized = normalize_info_name (key + 5);
int i;
for (i = 0; hwinfos[i].name != NULL; i++)
{
if (!strcmp (key + 5, hwinfos[i].name))
if (!strcmp (normalized, hwinfos[i].name))
{
sysinfo_set_pref_real (key, value, hwinfos[i].def);
char canonical[32];
g_snprintf (canonical, sizeof (canonical), "hide_%s", hwinfos[i].name);
sysinfo_set_pref_real (canonical, value, hwinfos[i].def);
return;
}
}

File diff suppressed because it is too large Load Diff

View File

@@ -1,28 +1,33 @@
/* ZoiteChat
* Copyright (c) 2011-2012 Berke Viktor.
/*
* Modern Windows SysInfo backend for ZoiteChat.
*
* Permission is hereby granted, free of charge, to any person obtaining a copy
* of this software and associated documentation files (the "Software"), to deal
* in the Software without restriction, including without limitation the rights
* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
* copies of the Software, and to permit persons to whom the Software is
* furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be included in
* all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
* THE SOFTWARE.
* Avoids WMI in the plugin hot path and uses native Win32/DXGI APIs.
*/
#include <stdio.h>
#ifndef _WIN32_WINNT
#define _WIN32_WINNT 0x0601
#elif _WIN32_WINNT < 0x0601
#undef _WIN32_WINNT
#define _WIN32_WINNT 0x0601
#endif
#include <windows.h>
#include <wbemidl.h>
#include <winternl.h>
#include <dxgi.h>
#include <iphlpapi.h>
#include <ipifcons.h>
#include <mmsystem.h>
#ifdef _MSC_VER
#pragma comment(lib, "advapi32.lib")
#pragma comment(lib, "dxgi.lib")
#pragma comment(lib, "dxguid.lib")
#pragma comment(lib, "iphlpapi.lib")
#pragma comment(lib, "winmm.lib")
#endif
#include <stdint.h>
#include <stdio.h>
#include <string.h>
#include <glib.h>
@@ -30,63 +35,543 @@
#include "config.h"
#endif
#include "../../../src/common/sysinfo/sysinfo.h"
#include "../format.h"
#include "../sysinfo-backend.h"
static char *get_memory_info (void);
#define SYSINFO_SEP " \xC2\xB7 "
char *
sysinfo_backend_get_sound (void)
typedef struct
{
return NULL;
}
char *os;
char *cpu;
char *gpu;
char *sound;
} WinStaticSnapshot;
char *
sysinfo_backend_get_network (void)
static WinStaticSnapshot snapshot;
static gsize os_initialized = 0;
static gsize cpu_initialized = 0;
static gsize gpu_initialized = 0;
static gsize sound_initialized = 0;
static char *wide_to_utf8 (const WCHAR *value);
static char *read_registry_string (HKEY root, const WCHAR *subkey, const WCHAR *value_name);
static gboolean read_registry_dword (HKEY root, const WCHAR *subkey, const WCHAR *value_name, DWORD *value);
static const char *get_native_arch (void);
static DWORD get_windows_build_number (void);
static char *build_os_string (void);
static DWORD count_physical_cores (void);
static char *build_cpu_string (void);
static char *build_gpu_string (void);
static char *build_sound_string (void);
static void ensure_os_snapshot (void);
static void ensure_cpu_snapshot (void);
static void ensure_gpu_snapshot (void);
static void ensure_sound_snapshot (void);
static char *format_usage (guint64 total, guint64 available);
static char *join_ptr_array (GPtrArray *items, const char *separator);
static void ptr_array_add_unique (GPtrArray *items, const char *value);
static gboolean adapter_looks_virtual (const char *name);
static char *
wide_to_utf8 (const WCHAR *value)
{
return NULL;
}
char *
sysinfo_backend_get_uptime (void)
{
return sysinfo_format_uptime (GetTickCount64 () / 1000);
}
char *
sysinfo_backend_get_disk (void)
{
guint64 hdd_capacity;
guint64 hdd_free_space;
sysinfo_get_hdd_info (&hdd_capacity, &hdd_free_space);
if (hdd_capacity != 0)
if (!value || value[0] == L'\0')
{
return sysinfo_format_disk(hdd_capacity, hdd_free_space);
return NULL;
}
return NULL;
return g_utf16_to_utf8 ((const gunichar2 *) value, -1, NULL, NULL, NULL);
}
static char *
read_registry_string (HKEY root, const WCHAR *subkey, const WCHAR *value_name)
{
HKEY key;
DWORD type = 0;
DWORD size = 0;
WCHAR *buffer;
char *result = NULL;
LONG status;
status = RegOpenKeyExW (root, subkey, 0, KEY_READ | KEY_WOW64_64KEY, &key);
if (status != ERROR_SUCCESS)
{
return NULL;
}
status = RegQueryValueExW (key, value_name, NULL, &type, NULL, &size);
if (status != ERROR_SUCCESS || (type != REG_SZ && type != REG_EXPAND_SZ) || size < sizeof (WCHAR))
{
RegCloseKey (key);
return NULL;
}
buffer = g_malloc0 ((gsize) size + sizeof (WCHAR));
status = RegQueryValueExW (key, value_name, NULL, &type, (LPBYTE) buffer, &size);
if (status == ERROR_SUCCESS)
{
result = wide_to_utf8 (buffer);
if (result)
{
g_strstrip (result);
}
}
g_free (buffer);
RegCloseKey (key);
return result;
}
static gboolean
read_registry_dword (HKEY root, const WCHAR *subkey, const WCHAR *value_name, DWORD *value)
{
HKEY key;
DWORD type = 0;
DWORD size = sizeof (*value);
LONG status;
status = RegOpenKeyExW (root, subkey, 0, KEY_READ | KEY_WOW64_64KEY, &key);
if (status != ERROR_SUCCESS)
{
return FALSE;
}
status = RegQueryValueExW (key, value_name, NULL, &type, (LPBYTE) value, &size);
RegCloseKey (key);
return status == ERROR_SUCCESS && type == REG_DWORD;
}
static const char *
get_native_arch (void)
{
SYSTEM_INFO info;
GetNativeSystemInfo (&info);
switch (info.wProcessorArchitecture)
{
case PROCESSOR_ARCHITECTURE_AMD64:
return "x64";
case PROCESSOR_ARCHITECTURE_ARM64:
return "ARM64";
case PROCESSOR_ARCHITECTURE_INTEL:
return "x86";
default:
return "unknown-arch";
}
}
static DWORD
get_windows_build_number (void)
{
typedef LONG (WINAPI *RtlGetVersionFn) (PRTL_OSVERSIONINFOW);
HMODULE ntdll;
RtlGetVersionFn rtl_get_version;
RTL_OSVERSIONINFOW version;
DWORD build = 0;
ntdll = GetModuleHandleW (L"ntdll.dll");
if (ntdll)
{
rtl_get_version = (RtlGetVersionFn) GetProcAddress (ntdll, "RtlGetVersion");
if (rtl_get_version)
{
ZeroMemory (&version, sizeof (version));
version.dwOSVersionInfoSize = sizeof (version);
if (rtl_get_version (&version) == 0)
{
build = version.dwBuildNumber;
}
}
}
return build;
}
static char *
build_os_string (void)
{
static const WCHAR current_version_key[] = L"SOFTWARE\\Microsoft\\Windows NT\\CurrentVersion";
char *product;
char *display_version;
char *registry_build;
char *fixed_product = NULL;
char *result;
DWORD ubr = 0;
DWORD build;
guint64 parsed_build = 0;
product = read_registry_string (HKEY_LOCAL_MACHINE, current_version_key, L"ProductName");
display_version = read_registry_string (HKEY_LOCAL_MACHINE, current_version_key, L"DisplayVersion");
registry_build = read_registry_string (HKEY_LOCAL_MACHINE, current_version_key, L"CurrentBuildNumber");
read_registry_dword (HKEY_LOCAL_MACHINE, current_version_key, L"UBR", &ubr);
build = get_windows_build_number ();
if (registry_build)
{
parsed_build = g_ascii_strtoull (registry_build, NULL, 10);
if (parsed_build != 0)
{
build = (DWORD) parsed_build;
}
}
if (!product)
{
product = g_strdup (build >= 22000 ? "Windows 11" : "Windows");
}
else if (build >= 22000 && g_str_has_prefix (product, "Windows 10"))
{
fixed_product = g_strdup_printf ("Windows 11%s", product + strlen ("Windows 10"));
g_free (product);
product = fixed_product;
}
if (display_version && build != 0)
{
result = g_strdup_printf ("%s %s" SYSINFO_SEP "build %lu.%lu" SYSINFO_SEP "%s",
product, display_version, (unsigned long) build, (unsigned long) ubr, get_native_arch ());
}
else if (build != 0)
{
result = g_strdup_printf ("%s" SYSINFO_SEP "build %lu.%lu" SYSINFO_SEP "%s",
product, (unsigned long) build, (unsigned long) ubr, get_native_arch ());
}
else
{
result = g_strdup_printf ("%s" SYSINFO_SEP "%s", product, get_native_arch ());
}
g_free (product);
g_free (display_version);
g_free (registry_build);
return result;
}
static DWORD
count_physical_cores (void)
{
DWORD length = 0;
PSYSTEM_LOGICAL_PROCESSOR_INFORMATION_EX buffer;
BYTE *cursor;
BYTE *end;
DWORD cores = 0;
GetLogicalProcessorInformationEx (RelationProcessorCore, NULL, &length);
if (GetLastError () != ERROR_INSUFFICIENT_BUFFER || length == 0)
{
return 0;
}
buffer = g_malloc0 (length);
if (!GetLogicalProcessorInformationEx (RelationProcessorCore, buffer, &length))
{
g_free (buffer);
return 0;
}
cursor = (BYTE *) buffer;
end = cursor + length;
while (cursor < end)
{
PSYSTEM_LOGICAL_PROCESSOR_INFORMATION_EX info = (PSYSTEM_LOGICAL_PROCESSOR_INFORMATION_EX) cursor;
if (info->Size == 0)
{
break;
}
if (info->Relationship == RelationProcessorCore)
{
cores++;
}
cursor += info->Size;
}
g_free (buffer);
return cores;
}
static char *
build_cpu_string (void)
{
static const WCHAR cpu_key[] = L"HARDWARE\\DESCRIPTION\\System\\CentralProcessor\\0";
char *name;
DWORD cores;
DWORD threads;
SYSTEM_INFO info;
char *result;
name = read_registry_string (HKEY_LOCAL_MACHINE, cpu_key, L"ProcessorNameString");
if (!name)
{
name = g_strdup ("Unknown CPU");
}
cores = count_physical_cores ();
threads = GetActiveProcessorCount (ALL_PROCESSOR_GROUPS);
if (threads == 0)
{
GetNativeSystemInfo (&info);
threads = info.dwNumberOfProcessors;
}
if (cores == 0)
{
cores = threads;
}
result = g_strdup_printf ("%s" SYSINFO_SEP "%luC/%luT",
name, (unsigned long) cores, (unsigned long) threads);
g_free (name);
return result;
}
static char *
join_ptr_array (GPtrArray *items, const char *separator)
{
GString *joined;
guint i;
if (!items || items->len == 0)
{
return NULL;
}
joined = g_string_new (NULL);
for (i = 0; i < items->len; i++)
{
if (i != 0)
{
g_string_append (joined, separator);
}
g_string_append (joined, g_ptr_array_index (items, i));
}
return g_string_free (joined, FALSE);
}
static void
ptr_array_add_unique (GPtrArray *items, const char *value)
{
guint i;
if (!value || value[0] == '\0')
{
return;
}
for (i = 0; i < items->len; i++)
{
if (g_ascii_strcasecmp (g_ptr_array_index (items, i), value) == 0)
{
return;
}
}
g_ptr_array_add (items, g_strdup (value));
}
static char *
build_gpu_string (void)
{
IDXGIFactory1 *factory = NULL;
GPtrArray *adapters;
UINT index;
HRESULT hr;
char *result;
hr = CreateDXGIFactory1 (&IID_IDXGIFactory1, (void **) &factory);
if (FAILED (hr) || !factory)
{
return NULL;
}
adapters = g_ptr_array_new_with_free_func (g_free);
for (index = 0; ; index++)
{
IDXGIAdapter1 *adapter = NULL;
DXGI_ADAPTER_DESC1 desc;
char *name;
char *label;
hr = factory->lpVtbl->EnumAdapters1 (factory, index, &adapter);
if (hr == DXGI_ERROR_NOT_FOUND)
{
break;
}
if (FAILED (hr) || !adapter)
{
continue;
}
ZeroMemory (&desc, sizeof (desc));
hr = adapter->lpVtbl->GetDesc1 (adapter, &desc);
adapter->lpVtbl->Release (adapter);
if (FAILED (hr) || (desc.Flags & DXGI_ADAPTER_FLAG_SOFTWARE))
{
continue;
}
name = wide_to_utf8 (desc.Description);
if (!name)
{
continue;
}
g_strstrip (name);
if ((guint64) desc.DedicatedVideoMemory >= (512ULL * 1024ULL * 1024ULL))
{
char *vram = g_format_size_full ((guint64) desc.DedicatedVideoMemory, G_FORMAT_SIZE_IEC_UNITS);
label = g_strdup_printf ("%s (%s VRAM)", name, vram);
g_free (vram);
}
else
{
label = g_strdup (name);
}
ptr_array_add_unique (adapters, label);
g_free (label);
g_free (name);
}
factory->lpVtbl->Release (factory);
result = join_ptr_array (adapters, ", ");
g_ptr_array_free (adapters, TRUE);
return result;
}
static char *
build_sound_string (void)
{
UINT count;
UINT i;
GPtrArray *devices;
char *result;
count = waveOutGetNumDevs ();
if (count == 0)
{
return NULL;
}
devices = g_ptr_array_new_with_free_func (g_free);
for (i = 0; i < count; i++)
{
WAVEOUTCAPSW caps;
char *name;
ZeroMemory (&caps, sizeof (caps));
if (waveOutGetDevCapsW ((UINT_PTR) i, &caps, sizeof (caps)) != MMSYSERR_NOERROR)
{
continue;
}
name = wide_to_utf8 (caps.szPname);
if (name)
{
g_strstrip (name);
ptr_array_add_unique (devices, name);
g_free (name);
}
}
result = join_ptr_array (devices, ", ");
g_ptr_array_free (devices, TRUE);
return result;
}
static void
ensure_os_snapshot (void)
{
if (g_once_init_enter (&os_initialized))
{
snapshot.os = build_os_string ();
g_once_init_leave (&os_initialized, 1);
}
}
static void
ensure_cpu_snapshot (void)
{
if (g_once_init_enter (&cpu_initialized))
{
snapshot.cpu = build_cpu_string ();
g_once_init_leave (&cpu_initialized, 1);
}
}
static void
ensure_gpu_snapshot (void)
{
if (g_once_init_enter (&gpu_initialized))
{
snapshot.gpu = build_gpu_string ();
g_once_init_leave (&gpu_initialized, 1);
}
}
static void
ensure_sound_snapshot (void)
{
if (g_once_init_enter (&sound_initialized))
{
snapshot.sound = build_sound_string ();
g_once_init_leave (&sound_initialized, 1);
}
}
static char *
format_usage (guint64 total, guint64 available)
{
guint64 used;
char *used_fmt;
char *total_fmt;
char *result;
double percent;
if (total == 0)
{
return NULL;
}
if (available > total)
{
available = total;
}
used = total - available;
percent = ((double) used / (double) total) * 100.0;
used_fmt = g_format_size_full (used, G_FORMAT_SIZE_IEC_UNITS);
total_fmt = g_format_size_full (total, G_FORMAT_SIZE_IEC_UNITS);
result = g_strdup_printf ("%s / %s used (%.0f%%)", used_fmt, total_fmt, percent);
g_free (used_fmt);
g_free (total_fmt);
return result;
}
char *
sysinfo_backend_get_os (void)
{
ensure_os_snapshot ();
return g_strdup (snapshot.os);
}
char *
sysinfo_backend_get_cpu (void)
{
return sysinfo_get_cpu ();
}
char *
sysinfo_backend_get_memory (void)
{
/* Memory information is always loaded dynamically since it includes the current amount of free memory */
return get_memory_info ();
ensure_cpu_snapshot ();
return g_strdup (snapshot.cpu);
}
char *
sysinfo_backend_get_gpu (void)
{
return sysinfo_get_gpu ();
ensure_gpu_snapshot ();
return g_strdup (snapshot.gpu);
}
char *
sysinfo_backend_get_sound (void)
{
ensure_sound_snapshot ();
return g_strdup (snapshot.sound);
}
char *
@@ -96,43 +581,178 @@ sysinfo_backend_get_chipset (void)
}
char *
sysinfo_backend_get_os (void)
sysinfo_backend_get_memory (void)
{
return sysinfo_get_os ();
}
MEMORYSTATUSEX memory;
static char *get_memory_info (void)
{
MEMORYSTATUSEX meminfo = { 0 };
meminfo.dwLength = sizeof (meminfo);
if (!GlobalMemoryStatusEx (&meminfo))
ZeroMemory (&memory, sizeof (memory));
memory.dwLength = sizeof (memory);
if (!GlobalMemoryStatusEx (&memory))
{
return NULL;
}
return sysinfo_format_memory (meminfo.ullTotalPhys, meminfo.ullAvailPhys);
return format_usage ((guint64) memory.ullTotalPhys, (guint64) memory.ullAvailPhys);
}
static const char *sysinfo_detect_toolkit(void)
char *
sysinfo_backend_get_disk (void)
{
#if defined(USE_GTK_FRONTEND)
return "GTK3";
#else
return NULL;
#endif
WCHAR windows_dir[MAX_PATH];
WCHAR volume_path[MAX_PATH];
ULARGE_INTEGER available;
ULARGE_INTEGER total;
ULARGE_INTEGER total_free;
char *usage;
char *volume_utf8;
char *result;
if (GetWindowsDirectoryW (windows_dir, G_N_ELEMENTS (windows_dir)) == 0)
{
return NULL;
}
if (!GetVolumePathNameW (windows_dir, volume_path, G_N_ELEMENTS (volume_path)))
{
return NULL;
}
if (!GetDiskFreeSpaceExW (volume_path, &available, &total, &total_free))
{
return NULL;
}
usage = format_usage ((guint64) total.QuadPart, (guint64) available.QuadPart);
if (!usage)
{
return NULL;
}
volume_utf8 = wide_to_utf8 (volume_path);
if (!volume_utf8)
{
return usage;
}
g_strchomp (volume_utf8);
result = g_strdup_printf ("%s" SYSINFO_SEP "%s", usage, volume_utf8);
g_free (volume_utf8);
g_free (usage);
return result;
}
char *
sysinfo_backend_get_uptime (void)
{
return sysinfo_format_uptime ((gint64) (GetTickCount64 () / 1000ULL));
}
static gboolean
adapter_looks_virtual (const char *name)
{
char *lower;
gboolean result;
if (!name)
{
return FALSE;
}
lower = g_ascii_strdown (name, -1);
result = strstr (lower, "virtual") != NULL ||
strstr (lower, "hyper-v") != NULL ||
strstr (lower, "vmware") != NULL ||
strstr (lower, "virtualbox") != NULL ||
strstr (lower, "tap-windows") != NULL ||
strstr (lower, "wireguard") != NULL ||
strstr (lower, "vpn") != NULL;
g_free (lower);
return result;
}
char *
sysinfo_backend_get_network (void)
{
ULONG size = 16 * 1024;
ULONG status;
IP_ADAPTER_ADDRESSES *addresses;
IP_ADAPTER_ADDRESSES *adapter;
GPtrArray *physical;
GPtrArray *fallback;
GPtrArray *selected;
char *result;
addresses = g_malloc0 (size);
status = GetAdaptersAddresses (AF_UNSPEC,
GAA_FLAG_SKIP_ANYCAST | GAA_FLAG_SKIP_MULTICAST | GAA_FLAG_SKIP_DNS_SERVER,
NULL, addresses, &size);
if (status == ERROR_BUFFER_OVERFLOW)
{
g_free (addresses);
addresses = g_malloc0 (size);
status = GetAdaptersAddresses (AF_UNSPEC,
GAA_FLAG_SKIP_ANYCAST | GAA_FLAG_SKIP_MULTICAST | GAA_FLAG_SKIP_DNS_SERVER,
NULL, addresses, &size);
}
if (status != NO_ERROR)
{
g_free (addresses);
return NULL;
}
physical = g_ptr_array_new_with_free_func (g_free);
fallback = g_ptr_array_new_with_free_func (g_free);
for (adapter = addresses; adapter != NULL; adapter = adapter->Next)
{
char *description;
char *friendly;
const char *name;
const char *type;
char *label;
if (adapter->OperStatus != IfOperStatusUp || adapter->PhysicalAddressLength == 0)
{
continue;
}
if (adapter->IfType != IF_TYPE_ETHERNET_CSMACD && adapter->IfType != IF_TYPE_IEEE80211)
{
continue;
}
description = wide_to_utf8 (adapter->Description);
friendly = wide_to_utf8 (adapter->FriendlyName);
name = description && description[0] ? description : friendly;
if (!name)
{
g_free (description);
g_free (friendly);
continue;
}
type = adapter->IfType == IF_TYPE_IEEE80211 ? "Wi-Fi" : "Ethernet";
label = g_strdup_printf ("%s: %s", type, name);
ptr_array_add_unique (fallback, label);
if (!adapter_looks_virtual (name))
{
ptr_array_add_unique (physical, label);
}
g_free (label);
g_free (description);
g_free (friendly);
}
g_free (addresses);
selected = physical->len != 0 ? physical : fallback;
result = join_ptr_array (selected, ", ");
g_ptr_array_free (physical, TRUE);
g_ptr_array_free (fallback, TRUE);
return result;
}
char *
sysinfo_backend_get_ui (void)
{
const char *toolkit = sysinfo_detect_toolkit();
/* On Windows we don't have X11/Wayland. Keep it simple. */
if (toolkit)
{
return g_strdup_printf ("Windows / %s", toolkit);
}
#if defined(USE_GTK_FRONTEND)
return g_strdup ("Windows / GTK3");
#else
return g_strdup ("Windows");
#endif
}

View File

@@ -126,7 +126,21 @@ ctcp_handle (session *sess, char *to, char *nick, char *ip,
if (ctcp_check (sess, nick, word, word_eol, word[4] + ctcp_offset))
goto generic;
inbound_action (sess, to, nick, ip, msg + 7, FALSE, tags_data->identified, tags_data);
{
gboolean private_fromme = !serv->p_cmp (nick, serv->nick) && !is_channel (serv, to);
if (private_fromme)
{
session *target = find_dialog (serv, to);
if (target)
sess = target;
else if (serv->front_session)
sess = serv->front_session;
}
inbound_action (sess, to, nick, ip, msg + 7, private_fromme, tags_data->identified, tags_data);
}
return;
}

View File

@@ -1368,7 +1368,7 @@ process_named_msg (session *sess, char *type, char *word[], char *word_eol[],
{
if (ignore_check (word[1], IG_PRIV))
return;
if (serv->have_echo_message && !serv->p_cmp (nick, serv->nick))
if (!serv->p_cmp (nick, serv->nick))
{
session *target_sess = find_dialog (serv, to);