// ------------------------------------------------------------------------------ // <auto-generated> // This code was generated by a tool. // // Changes to this file may cause incorrect behavior and will be lost if // the code is regenerated. // </auto-generated> // ------------------------------------------------------------------------------ #pragma warning disable CS1591,CS1573,CS0465,CS0649,CS8019,CS1570,CS1584,CS1658,CS0436,CS8981,SYSLIB1092,CS3021,CS3019 using global::System; using global::System.Diagnostics; using global::System.Diagnostics.CodeAnalysis; using global::System.Runtime.CompilerServices; using global::System.Runtime.InteropServices; using global::System.Runtime.Versioning; using winmdroot = global::Windows.Win32; namespace Windows.Win32 { namespace UI.Accessibility { [Guid("36DC7AEF-33E6-4691-AFE1-2BE7274B3D33")] [CLSCompliant(false)] [SupportedOSPlatform("windows5.1.2600")] [global::System.CodeDom.Compiler.GeneratedCode("Microsoft.Windows.CsWin32", "0.3.287+85e3fa26dd.RR")] internal unsafe partial struct IRangeValueProvider :winmdroot.IVTable<IRangeValueProvider,IRangeValueProvider.Vtbl>,IComIID { /// <inheritdoc cref="QueryInterface(global::System.Guid*, void**)"/> [OverloadResolutionPriority(1)] internal unsafe winmdroot.Foundation.HRESULT QueryInterface(in global::System.Guid riid, out void* ppvObject) { fixed (void** ppvObjectLocal = &ppvObject) { fixed (global::System.Guid* riidLocal = &riid) { winmdroot.Foundation.HRESULT __result = this.QueryInterface(riidLocal, ppvObjectLocal); return __result; } } } public unsafe winmdroot.Foundation.HRESULT QueryInterface(global::System.Guid* riid, void** ppvObject) { return ((delegate *unmanaged [Stdcall]<IRangeValueProvider*,global::System.Guid* ,void** ,winmdroot.Foundation.HRESULT>)lpVtbl[0])((IRangeValueProvider*)Unsafe.AsPointer(ref this), riid, ppvObject); } public uint AddRef() { return ((delegate *unmanaged [Stdcall]<IRangeValueProvider*,uint>)lpVtbl[1])((IRangeValueProvider*)Unsafe.AsPointer(ref this)); } public uint Release() { return ((delegate *unmanaged [Stdcall]<IRangeValueProvider*,uint>)lpVtbl[2])((IRangeValueProvider*)Unsafe.AsPointer(ref this)); } [UnmanagedCallersOnly(CallConvs = new []{ typeof(CallConvStdcall)} )] private static winmdroot.Foundation.HRESULT SetValue(IRangeValueProvider* pThis, double val) { try { winmdroot.Foundation.HRESULT __hr = winmdroot.ComHelpers.UnwrapCCW(pThis, out Interface __object); if (__hr.Failed) { return __hr; } return __object.SetValue(val); } catch (Exception ex) { return (winmdroot.Foundation.HRESULT)ex.HResult; } } /// <summary>Sets the value of the control. (IRangeValueProvider.SetValue)</summary> /// <param name="val"> /// <para>Type: <b>double</b> The value to set.</para> /// <para><see href="https://learn.microsoft.com/windows/win32/api/uiautomationcore/nf-uiautomationcore-irangevalueprovider-setvalue#parameters">Read more on learn.microsoft.com</see>.</para> /// </param> /// <returns> /// <para>Type: <b><a href="https://docs.microsoft.com/windows/desktop/WinProg/windows-data-types">HRESULT</a></b> If this method succeeds, it returns <b>S_OK</b>. Otherwise, it returns an <b>HRESULT</b> error code.</para> /// </returns> /// <remarks>The actual value set depends on the control implementation. The control may round the requested value up or down.</remarks> public void SetValue(double val) { ((delegate *unmanaged [Stdcall]<IRangeValueProvider*,double ,winmdroot.Foundation.HRESULT>)lpVtbl[3])((IRangeValueProvider*)Unsafe.AsPointer(ref this), val).ThrowOnFailure(); } /// <inheritdoc cref="get_Value(double*)"/> [OverloadResolutionPriority(1)] internal unsafe winmdroot.Foundation.HRESULT get_Value(out double pRetVal) { fixed (double* pRetValLocal = &pRetVal) { winmdroot.Foundation.HRESULT __result = this.get_Value(pRetValLocal); return __result; } } [UnmanagedCallersOnly(CallConvs = new []{ typeof(CallConvStdcall)} )] private static winmdroot.Foundation.HRESULT get_Value(IRangeValueProvider* pThis, double* pRetVal) { try { winmdroot.Foundation.HRESULT __hr = winmdroot.ComHelpers.UnwrapCCW(pThis, out Interface __object); if (__hr.Failed) { return __hr; } return __object.get_Value(pRetVal); } catch (Exception ex) { return (winmdroot.Foundation.HRESULT)ex.HResult; } } /// <summary>Specifies the value of the control.</summary> /// <remarks> /// <para><see href="https://learn.microsoft.com/windows/win32/api/uiautomationcore/nf-uiautomationcore-irangevalueprovider-get_value">Learn more about this API from learn.microsoft.com</see>.</para> /// </remarks> public unsafe winmdroot.Foundation.HRESULT get_Value(double* pRetVal) { return ((delegate *unmanaged [Stdcall]<IRangeValueProvider*,double* ,winmdroot.Foundation.HRESULT>)lpVtbl[4])((IRangeValueProvider*)Unsafe.AsPointer(ref this), pRetVal); } /// <inheritdoc cref="get_IsReadOnly(winmdroot.Foundation.BOOL*)"/> [OverloadResolutionPriority(1)] internal unsafe winmdroot.Foundation.HRESULT get_IsReadOnly(out winmdroot.Foundation.BOOL pRetVal) { fixed (winmdroot.Foundation.BOOL* pRetValLocal = &pRetVal) { winmdroot.Foundation.HRESULT __result = this.get_IsReadOnly(pRetValLocal); return __result; } } [UnmanagedCallersOnly(CallConvs = new []{ typeof(CallConvStdcall)} )] private static winmdroot.Foundation.HRESULT get_IsReadOnly(IRangeValueProvider* pThis, winmdroot.Foundation.BOOL* pRetVal) { try { winmdroot.Foundation.HRESULT __hr = winmdroot.ComHelpers.UnwrapCCW(pThis, out Interface __object); if (__hr.Failed) { return __hr; } return __object.get_IsReadOnly(pRetVal); } catch (Exception ex) { return (winmdroot.Foundation.HRESULT)ex.HResult; } } /// <summary>Indicates whether the value of a control is read-only. (IRangeValueProvider.get_IsReadOnly)</summary> /// <remarks> /// <para><see href="https://learn.microsoft.com/windows/win32/api/uiautomationcore/nf-uiautomationcore-irangevalueprovider-get_isreadonly">Learn more about this API from learn.microsoft.com</see>.</para> /// </remarks> public unsafe winmdroot.Foundation.HRESULT get_IsReadOnly(winmdroot.Foundation.BOOL* pRetVal) { return ((delegate *unmanaged [Stdcall]<IRangeValueProvider*,winmdroot.Foundation.BOOL* ,winmdroot.Foundation.HRESULT>)lpVtbl[5])((IRangeValueProvider*)Unsafe.AsPointer(ref this), pRetVal); } /// <inheritdoc cref="get_Maximum(double*)"/> [OverloadResolutionPriority(1)] internal unsafe winmdroot.Foundation.HRESULT get_Maximum(out double pRetVal) { fixed (double* pRetValLocal = &pRetVal) { winmdroot.Foundation.HRESULT __result = this.get_Maximum(pRetValLocal); return __result; } } [UnmanagedCallersOnly(CallConvs = new []{ typeof(CallConvStdcall)} )] private static winmdroot.Foundation.HRESULT get_Maximum(IRangeValueProvider* pThis, double* pRetVal) { try { winmdroot.Foundation.HRESULT __hr = winmdroot.ComHelpers.UnwrapCCW(pThis, out Interface __object); if (__hr.Failed) { return __hr; } return __object.get_Maximum(pRetVal); } catch (Exception ex) { return (winmdroot.Foundation.HRESULT)ex.HResult; } } /// <summary>Specifies the maximum range value supported by the control.</summary> /// <remarks>This value should be greater than [Minimum](nf-uiautomationcore-irangevalueprovider-get_minimum.md).</remarks> public unsafe winmdroot.Foundation.HRESULT get_Maximum(double* pRetVal) { return ((delegate *unmanaged [Stdcall]<IRangeValueProvider*,double* ,winmdroot.Foundation.HRESULT>)lpVtbl[6])((IRangeValueProvider*)Unsafe.AsPointer(ref this), pRetVal); } /// <inheritdoc cref="get_Minimum(double*)"/> [OverloadResolutionPriority(1)] internal unsafe winmdroot.Foundation.HRESULT get_Minimum(out double pRetVal) { fixed (double* pRetValLocal = &pRetVal) { winmdroot.Foundation.HRESULT __result = this.get_Minimum(pRetValLocal); return __result; } } [UnmanagedCallersOnly(CallConvs = new []{ typeof(CallConvStdcall)} )] private static winmdroot.Foundation.HRESULT get_Minimum(IRangeValueProvider* pThis, double* pRetVal) { try { winmdroot.Foundation.HRESULT __hr = winmdroot.ComHelpers.UnwrapCCW(pThis, out Interface __object); if (__hr.Failed) { return __hr; } return __object.get_Minimum(pRetVal); } catch (Exception ex) { return (winmdroot.Foundation.HRESULT)ex.HResult; } } /// <summary>Specifies the minimum range value supported by the control.</summary> /// <remarks>This value should be less than [Maximum](nf-uiautomationcore-irangevalueprovider-get_maximum.md).</remarks> public unsafe winmdroot.Foundation.HRESULT get_Minimum(double* pRetVal) { return ((delegate *unmanaged [Stdcall]<IRangeValueProvider*,double* ,winmdroot.Foundation.HRESULT>)lpVtbl[7])((IRangeValueProvider*)Unsafe.AsPointer(ref this), pRetVal); } /// <inheritdoc cref="get_LargeChange(double*)"/> [OverloadResolutionPriority(1)] internal unsafe winmdroot.Foundation.HRESULT get_LargeChange(out double pRetVal) { fixed (double* pRetValLocal = &pRetVal) { winmdroot.Foundation.HRESULT __result = this.get_LargeChange(pRetValLocal); return __result; } } [UnmanagedCallersOnly(CallConvs = new []{ typeof(CallConvStdcall)} )] private static winmdroot.Foundation.HRESULT get_LargeChange(IRangeValueProvider* pThis, double* pRetVal) { try { winmdroot.Foundation.HRESULT __hr = winmdroot.ComHelpers.UnwrapCCW(pThis, out Interface __object); if (__hr.Failed) { return __hr; } return __object.get_LargeChange(pRetVal); } catch (Exception ex) { return (winmdroot.Foundation.HRESULT)ex.HResult; } } /// <summary>Specifies the value that is added to or subtracted from the IRangeValueProvider::Value property when a large change is made, such as when the PAGE DOWN key is pressed.</summary> /// <remarks> /// <para>The LargeChange property can support Not a Number (NaN) value. When returning a NaN value, the provider should return a quiet (non-signaling) NaN to avoid raising an exception if floating-point exceptions are turned on. The following example shows how to create a quiet NaN:</para> /// <para></para> /// <para>This doc was truncated.</para> /// <para><see href="https://learn.microsoft.com/windows/win32/api/uiautomationcore/nf-uiautomationcore-irangevalueprovider-get_largechange#">Read more on learn.microsoft.com</see>.</para> /// </remarks> public unsafe winmdroot.Foundation.HRESULT get_LargeChange(double* pRetVal) { return ((delegate *unmanaged [Stdcall]<IRangeValueProvider*,double* ,winmdroot.Foundation.HRESULT>)lpVtbl[8])((IRangeValueProvider*)Unsafe.AsPointer(ref this), pRetVal); } /// <inheritdoc cref="get_SmallChange(double*)"/> [OverloadResolutionPriority(1)] internal unsafe winmdroot.Foundation.HRESULT get_SmallChange(out double pRetVal) { fixed (double* pRetValLocal = &pRetVal) { winmdroot.Foundation.HRESULT __result = this.get_SmallChange(pRetValLocal); return __result; } } [UnmanagedCallersOnly(CallConvs = new []{ typeof(CallConvStdcall)} )] private static winmdroot.Foundation.HRESULT get_SmallChange(IRangeValueProvider* pThis, double* pRetVal) { try { winmdroot.Foundation.HRESULT __hr = winmdroot.ComHelpers.UnwrapCCW(pThis, out Interface __object); if (__hr.Failed) { return __hr; } return __object.get_SmallChange(pRetVal); } catch (Exception ex) { return (winmdroot.Foundation.HRESULT)ex.HResult; } } /// <summary>Specifies the value that is added to or subtracted from the IRangeValueProvider::Value property when a small change is made, such as when an arrow key is pressed.</summary> /// <remarks> /// <para>The SmallChange property can support Not a Number (NaN) value. When returning a NaN value, the provider should return a quiet (non-signaling) NaN to avoid raising an exception if floating-point exceptions are turned on. The following example shows how to create a quiet NaN:</para> /// <para></para> /// <para>This doc was truncated.</para> /// <para><see href="https://learn.microsoft.com/windows/win32/api/uiautomationcore/nf-uiautomationcore-irangevalueprovider-get_smallchange#">Read more on learn.microsoft.com</see>.</para> /// </remarks> public unsafe winmdroot.Foundation.HRESULT get_SmallChange(double* pRetVal) { return ((delegate *unmanaged [Stdcall]<IRangeValueProvider*,double* ,winmdroot.Foundation.HRESULT>)lpVtbl[9])((IRangeValueProvider*)Unsafe.AsPointer(ref this), pRetVal); } internal unsafe global::Windows.Win32.Foundation.HRESULT QueryInterface<T>(out T* ppv) where T : unmanaged { Guid guid = typeof(T).GUID; void* pv; var hr = this.QueryInterface(&guid, &pv); if (hr.Succeeded) { ppv = (T*)pv; } else { ppv = null; } return hr; } internal struct Vtbl { internal delegate *unmanaged [Stdcall]<IRangeValueProvider*,global::System.Guid* ,void** ,winmdroot.Foundation.HRESULT> QueryInterface_1; internal delegate *unmanaged [Stdcall]<IRangeValueProvider*,uint> AddRef_2; internal delegate *unmanaged [Stdcall]<IRangeValueProvider*,uint> Release_3; internal delegate *unmanaged [Stdcall]<IRangeValueProvider*,double ,winmdroot.Foundation.HRESULT> SetValue_4; internal delegate *unmanaged [Stdcall]<IRangeValueProvider*,double* ,winmdroot.Foundation.HRESULT> get_Value_5; internal delegate *unmanaged [Stdcall]<IRangeValueProvider*,winmdroot.Foundation.BOOL* ,winmdroot.Foundation.HRESULT> get_IsReadOnly_6; internal delegate *unmanaged [Stdcall]<IRangeValueProvider*,double* ,winmdroot.Foundation.HRESULT> get_Maximum_7; internal delegate *unmanaged [Stdcall]<IRangeValueProvider*,double* ,winmdroot.Foundation.HRESULT> get_Minimum_8; internal delegate *unmanaged [Stdcall]<IRangeValueProvider*,double* ,winmdroot.Foundation.HRESULT> get_LargeChange_9; internal delegate *unmanaged [Stdcall]<IRangeValueProvider*,double* ,winmdroot.Foundation.HRESULT> get_SmallChange_10; } public static void PopulateVTable(Vtbl* vtable) { vtable->SetValue_4 = &SetValue; vtable->get_Value_5 = &get_Value; vtable->get_IsReadOnly_6 = &get_IsReadOnly; vtable->get_Maximum_7 = &get_Maximum; vtable->get_Minimum_8 = &get_Minimum; vtable->get_LargeChange_9 = &get_LargeChange; vtable->get_SmallChange_10 = &get_SmallChange; } private void** lpVtbl; /// <summary>The IID guid for this interface.</summary> /// <value>{36dc7aef-33e6-4691-afe1-2be7274b3d33}</value> internal static readonly Guid IID_Guid = new Guid(0x36DC7AEF, 0x33E6, 0x4691, 0xAF, 0xE1, 0x2B, 0xE7, 0x27, 0x4B, 0x3D, 0x33); static ref readonly Guid IComIID.Guid { [MethodImpl(MethodImplOptions.AggressiveInlining)] get { ReadOnlySpan<byte> data = new byte[] { 0xEF,0x7A,0xDC,0x36,0xE6,0x33,0x91,0x46,0xAF,0xE1,0x2B,0xE7,0x27,0x4B,0x3D,0x33 }; return ref Unsafe.As<byte,Guid>(ref MemoryMarshal.GetReference(data)); } } [Guid("36DC7AEF-33E6-4691-AFE1-2BE7274B3D33"),InterfaceType(ComInterfaceType.InterfaceIsIUnknown),ComImport()] [SupportedOSPlatform("windows5.1.2600")] internal interface Interface { [PreserveSig()] winmdroot.Foundation.HRESULT SetValue(double val); [PreserveSig()] unsafe winmdroot.Foundation.HRESULT get_Value(double* pRetVal); [PreserveSig()] unsafe winmdroot.Foundation.HRESULT get_IsReadOnly(winmdroot.Foundation.BOOL* pRetVal); [PreserveSig()] unsafe winmdroot.Foundation.HRESULT get_Maximum(double* pRetVal); [PreserveSig()] unsafe winmdroot.Foundation.HRESULT get_Minimum(double* pRetVal); [PreserveSig()] unsafe winmdroot.Foundation.HRESULT get_LargeChange(double* pRetVal); [PreserveSig()] unsafe winmdroot.Foundation.HRESULT get_SmallChange(double* pRetVal); } } } }