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@@ -2007,23 +2007,20 @@ bool ImGui::DataTypeApplyFromText(const char* buf, ImGuiDataType data_type, void
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ImGuiDataTypeTempStorage data_backup;
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ImGuiDataTypeTempStorage data_backup;
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memcpy(&data_backup, p_data, type_info->Size);
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memcpy(&data_backup, p_data, type_info->Size);
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- if (format == NULL)
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+ // Sanitize format
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+ // For float/double we have to ignore format with precision (e.g. "%.2f") because sscanf doesn't take them in, so force them into %f and %lf
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+ char format_sanitized[32];
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+ if (data_type == ImGuiDataType_Float || data_type == ImGuiDataType_Double)
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format = type_info->ScanFmt;
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format = type_info->ScanFmt;
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-
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- if (data_type == ImGuiDataType_S32 || data_type == ImGuiDataType_U32 || data_type == ImGuiDataType_S64 || data_type == ImGuiDataType_U64 || data_type == ImGuiDataType_Float || data_type == ImGuiDataType_Double)
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- {
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- // For float/double we have to ignore format with precision (e.g. "%.2f") because sscanf doesn't take them in, so force them into %f and %lf
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- if (data_type == ImGuiDataType_Float || data_type == ImGuiDataType_Double)
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- format = type_info->ScanFmt;
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- if (sscanf(buf, format, p_data) < 1)
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- return false;
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- }
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else
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else
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+ format = ImParseFormatSanitizeForScanning(format, format_sanitized, IM_ARRAYSIZE(format_sanitized));
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+
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+ // Small types need a 32-bit buffer to receive the result from scanf()
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+ int v32 = 0;
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+ if (sscanf(buf, format, type_info->Size >= 4 ? p_data : &v32) < 1)
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+ return false;
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+ if (type_info->Size < 4)
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{
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{
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- // Small types need a 32-bit buffer to receive the result from scanf()
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- int v32;
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- if (sscanf(buf, format, &v32) < 1)
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- return false;
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if (data_type == ImGuiDataType_S8)
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if (data_type == ImGuiDataType_S8)
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*(ImS8*)p_data = (ImS8)ImClamp(v32, (int)IM_S8_MIN, (int)IM_S8_MAX);
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*(ImS8*)p_data = (ImS8)ImClamp(v32, (int)IM_S8_MIN, (int)IM_S8_MAX);
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else if (data_type == ImGuiDataType_U8)
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else if (data_type == ImGuiDataType_U8)
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@@ -2104,26 +2101,10 @@ static float GetMinimumStepAtDecimalPrecision(int decimal_precision)
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return (decimal_precision < IM_ARRAYSIZE(min_steps)) ? min_steps[decimal_precision] : ImPow(10.0f, (float)-decimal_precision);
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return (decimal_precision < IM_ARRAYSIZE(min_steps)) ? min_steps[decimal_precision] : ImPow(10.0f, (float)-decimal_precision);
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}
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}
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-// Sanitize format
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-// - Zero terminate so extra characters after format (e.g. "%f123") don't confuse atof/atoi
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-// - stb_sprintf.h supports several new modifiers which format numbers in a way that also makes them incompatible atof/atoi.
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-static void SanitizeFormatString(const char* fmt, char* fmt_out, size_t fmt_out_size)
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-{
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- IM_UNUSED(fmt_out_size);
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- const char* fmt_end = ImParseFormatFindEnd(fmt);
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- IM_ASSERT((size_t)(fmt_end - fmt + 1) < fmt_out_size); // Format is too long, let us know if this happens to you!
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- while (fmt < fmt_end)
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- {
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- char c = *(fmt++);
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- if (c != '\'' && c != '$' && c != '_') // Custom flags provided by stb_sprintf.h. POSIX 2008 also supports '.
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- *(fmt_out++) = c;
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- }
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- *fmt_out = 0; // Zero-terminate
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-}
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-
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template<typename TYPE>
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template<typename TYPE>
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TYPE ImGui::RoundScalarWithFormatT(const char* format, ImGuiDataType data_type, TYPE v)
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TYPE ImGui::RoundScalarWithFormatT(const char* format, ImGuiDataType data_type, TYPE v)
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{
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{
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+ IM_UNUSED(data_type);
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IM_ASSERT(data_type == ImGuiDataType_Float || data_type == ImGuiDataType_Double);
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IM_ASSERT(data_type == ImGuiDataType_Float || data_type == ImGuiDataType_Double);
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const char* fmt_start = ImParseFormatFindStart(format);
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const char* fmt_start = ImParseFormatFindStart(format);
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if (fmt_start[0] != '%' || fmt_start[1] == '%') // Don't apply if the value is not visible in the format string
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if (fmt_start[0] != '%' || fmt_start[1] == '%') // Don't apply if the value is not visible in the format string
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@@ -2131,7 +2112,7 @@ TYPE ImGui::RoundScalarWithFormatT(const char* format, ImGuiDataType data_type,
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// Sanitize format
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// Sanitize format
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char fmt_sanitized[32];
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char fmt_sanitized[32];
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- SanitizeFormatString(fmt_start, fmt_sanitized, IM_ARRAYSIZE(fmt_sanitized));
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+ ImParseFormatSanitizeForPrinting(fmt_start, fmt_sanitized, IM_ARRAYSIZE(fmt_sanitized));
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fmt_start = fmt_sanitized;
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fmt_start = fmt_sanitized;
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// Format value with our rounding, and read back
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// Format value with our rounding, and read back
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@@ -3205,6 +3186,8 @@ bool ImGui::SliderScalarN(const char* label, ImGuiDataType data_type, void* v, i
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// - ImParseFormatFindStart() [Internal]
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// - ImParseFormatFindStart() [Internal]
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// - ImParseFormatFindEnd() [Internal]
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// - ImParseFormatFindEnd() [Internal]
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// - ImParseFormatTrimDecorations() [Internal]
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// - ImParseFormatTrimDecorations() [Internal]
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+// - ImParseFormatSanitizeForPrinting() [Internal]
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+// - ImParseFormatSanitizeForScanning() [Internal]
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// - ImParseFormatPrecision() [Internal]
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// - ImParseFormatPrecision() [Internal]
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// - TempInputTextScalar() [Internal]
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// - TempInputTextScalar() [Internal]
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// - InputScalar()
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// - InputScalar()
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@@ -3268,6 +3251,44 @@ const char* ImParseFormatTrimDecorations(const char* fmt, char* buf, size_t buf_
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return buf;
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return buf;
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}
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}
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+// Sanitize format
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+// - Zero terminate so extra characters after format (e.g. "%f123") don't confuse atof/atoi
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+// - stb_sprintf.h supports several new modifiers which format numbers in a way that also makes them incompatible atof/atoi.
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+void ImParseFormatSanitizeForPrinting(const char* fmt_in, char* fmt_out, size_t fmt_out_size)
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+{
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+ const char* fmt_end = ImParseFormatFindEnd(fmt_in);
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+ IM_UNUSED(fmt_out_size);
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+ IM_ASSERT((size_t)(fmt_end - fmt_in + 1) < fmt_out_size); // Format is too long, let us know if this happens to you!
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+ while (fmt_in < fmt_end)
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+ {
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+ char c = *fmt_in++;
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+ if (c != '\'' && c != '$' && c != '_') // Custom flags provided by stb_sprintf.h. POSIX 2008 also supports '.
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+ *(fmt_out++) = c;
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+ }
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+ *fmt_out = 0; // Zero-terminate
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+}
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+
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+// - For scanning we need to remove all width and precision fields "%3.7f" -> "%f". BUT don't strip types like "%I64d" which includes digits. ! "%07I64d" -> "%I64d"
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+const char* ImParseFormatSanitizeForScanning(const char* fmt_in, char* fmt_out, size_t fmt_out_size)
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+{
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+ const char* fmt_end = ImParseFormatFindEnd(fmt_in);
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+ const char* fmt_out_begin = fmt_out;
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+ IM_UNUSED(fmt_out_size);
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+ IM_ASSERT((size_t)(fmt_end - fmt_in + 1) < fmt_out_size); // Format is too long, let us know if this happens to you!
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+ bool has_type = false;
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+ while (fmt_in < fmt_end)
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+ {
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+ char c = *fmt_in++;
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+ if (!has_type && ((c >= '0' && c <= '9') || c == '.'))
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+ continue;
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+ has_type |= ((c >= 'a' && c <= 'z') || (c >= 'A' && c <= 'Z')); // Stop skipping digits
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+ if (c != '\'' && c != '$' && c != '_') // Custom flags provided by stb_sprintf.h. POSIX 2008 also supports '.
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+ *(fmt_out++) = c;
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+ }
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+ *fmt_out = 0; // Zero-terminate
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+ return fmt_out_begin;
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+}
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+
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template<typename TYPE>
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template<typename TYPE>
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static const char* ImAtoi(const char* src, TYPE* output)
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static const char* ImAtoi(const char* src, TYPE* output)
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{
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{
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@@ -3337,9 +3358,11 @@ bool ImGui::TempInputScalar(const ImRect& bb, ImGuiID id, const char* label, ImG
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format = ImParseFormatTrimDecorations(format, fmt_buf, IM_ARRAYSIZE(fmt_buf));
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format = ImParseFormatTrimDecorations(format, fmt_buf, IM_ARRAYSIZE(fmt_buf));
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DataTypeFormatString(data_buf, IM_ARRAYSIZE(data_buf), data_type, p_data, format);
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DataTypeFormatString(data_buf, IM_ARRAYSIZE(data_buf), data_type, p_data, format);
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ImStrTrimBlanks(data_buf);
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ImStrTrimBlanks(data_buf);
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+ const bool is_floating_point = (data_type == ImGuiDataType_Float || data_type == ImGuiDataType_Double);
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+ const bool is_hexadecimal = !is_floating_point && format[0] && toupper(format[strlen(format) - 1]) == 'X';
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ImGuiInputTextFlags flags = ImGuiInputTextFlags_AutoSelectAll | ImGuiInputTextFlags_NoMarkEdited;
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ImGuiInputTextFlags flags = ImGuiInputTextFlags_AutoSelectAll | ImGuiInputTextFlags_NoMarkEdited;
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- flags |= ((data_type == ImGuiDataType_Float || data_type == ImGuiDataType_Double) ? ImGuiInputTextFlags_CharsScientific : ImGuiInputTextFlags_CharsDecimal);
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+ flags |= is_floating_point ? ImGuiInputTextFlags_CharsScientific : is_hexadecimal ? ImGuiInputTextFlags_CharsHexadecimal : ImGuiInputTextFlags_CharsDecimal;
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bool value_changed = false;
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bool value_changed = false;
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if (TempInputText(bb, id, label, data_buf, IM_ARRAYSIZE(data_buf), flags))
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if (TempInputText(bb, id, label, data_buf, IM_ARRAYSIZE(data_buf), flags))
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{
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{
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@@ -3349,7 +3372,7 @@ bool ImGui::TempInputScalar(const ImRect& bb, ImGuiID id, const char* label, ImG
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memcpy(&data_backup, p_data, data_type_size);
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memcpy(&data_backup, p_data, data_type_size);
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// Apply new value (or operations) then clamp
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// Apply new value (or operations) then clamp
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- DataTypeApplyFromText(data_buf, data_type, p_data, NULL);
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+ DataTypeApplyFromText(data_buf, data_type, p_data, format);
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if (p_clamp_min || p_clamp_max)
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if (p_clamp_min || p_clamp_max)
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{
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{
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if (p_clamp_min && p_clamp_max && DataTypeCompare(data_type, p_clamp_min, p_clamp_max) > 0)
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if (p_clamp_min && p_clamp_max && DataTypeCompare(data_type, p_clamp_min, p_clamp_max) > 0)
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