From 691ea3ff6d671113586de63a6985b86526e9a46f Mon Sep 17 00:00:00 2001 From: ocornut Date: Tue, 28 Jul 2026 18:29:52 +0200 Subject: [PATCH] DrawList: removed AddPolylineLegacy(), AddConvexPolyFilledLegacy(). --- imgui.h | 2 - imgui_draw.cpp | 351 ------------------------------------------------- 2 files changed, 353 deletions(-) diff --git a/imgui.h b/imgui.h index 937f40090..3c3c49c08 100644 --- a/imgui.h +++ b/imgui.h @@ -3567,9 +3567,7 @@ struct ImDrawList // - Only simple polygons are supported by filling functions (no self-intersections, no holes). // - Concave polygon fill is more expensive than convex one: it has O(N^2) complexity. Provided as a convenience for the user but not used by the main library. IMGUI_API void AddPolyline(const ImVec2* points, int num_points, ImU32 col, float thickness, ImDrawFlags flags = 0); - IMGUI_API void AddPolylineLegacy(const ImVec2* points, int num_points, ImU32 col, float thickness, ImDrawFlags flags = 0); IMGUI_API void AddConvexPolyFilled(const ImVec2* points, int num_points, ImU32 col, ImDrawFlags flags = 0); - IMGUI_API void AddConvexPolyFilledLegacy(const ImVec2* points, int num_points, ImU32 col); IMGUI_API void AddConcavePolyFilled(const ImVec2* points, int num_points, ImU32 col); // Image primitives diff --git a/imgui_draw.cpp b/imgui_draw.cpp index 7af414e12..7d182f7d9 100644 --- a/imgui_draw.cpp +++ b/imgui_draw.cpp @@ -1313,269 +1313,6 @@ void ImDrawList::AddPolyline(const ImVec2* points, const int points_count, ImU32 PrimUnreserve(remaining_idx_count, remaining_vtx_count); } -void ImDrawList::AddPolylineLegacy(const ImVec2* points, const int points_count, ImU32 col, float thickness, ImDrawFlags flags) -{ - if (points_count < 2 || (col & IM_COL32_A_MASK) == 0) - return; - - const bool closed = (flags & ImDrawFlags_Closed) != 0; - const ImVec2 opaque_uv = _Data->TexUvWhitePixel; - const int count = closed ? points_count : points_count - 1; // The number of line segments we need to draw - const bool thick_line = (thickness > _FringeScale); - - // If this assert triggers on legacy code: - // - 1.92.8 (2025/05): swapped two last parameters order: flags, thickness --> thickness, flags. This should normally be caught by compile-time type-checking. - // - 1.92.8 (2025/05): changed value of ImDrawList_Closed which was previously guaranteed to be == 1. Hardcoded use of 1 or true should be replaced. - // Read more details near AddRect() + see "API BREAKING CHANGES" section for 1.82, 1.90 and 1.92.8. - IM_ASSERT_USER_ERROR_RET((flags & ImDrawFlags_InvalidMask_) == 0, "Incorrect parameter. Did you swap 'thickness' and 'flags'?"); - - flags |= Flags; - if (flags & ImDrawFlags_AALines) - { - // Anti-aliased stroke - const float AA_SIZE = _FringeScale; - const ImU32 col_trans = col & ~IM_COL32_A_MASK; - - // Thicknesses <1.0 should behave like thickness 1.0 - thickness = ImMax(thickness, 1.0f); - const int integer_thickness = (int)thickness; - const float fractional_thickness = thickness - integer_thickness; - - // Do we want to draw this line using a texture? - // - For now, only draw integer-width lines using textures to avoid issues with the way scaling occurs, could be improved. - // - If AA_SIZE is not 1.0f we cannot use the texture path. - const bool use_texture = (flags & ImDrawFlags_UseTexForStrokeLegacy) && (integer_thickness < IM_DRAWLIST_TEX_LINES_WIDTH_MAX) && (fractional_thickness <= 0.00001f) && (AA_SIZE == 1.0f); - - // We should never hit this, because NewFrame() doesn't set ImDrawFlags_UseTexForStrokeLegacy unless ImFontAtlasFlags_NoBakedLines is off - IM_ASSERT_PARANOID(!use_texture || !(_Data->Font->OwnerAtlas->Flags & ImFontAtlasFlags_NoBakedLines)); - - const int idx_count = use_texture ? (count * 6) : (thick_line ? count * 18 : count * 12); - const int vtx_count = use_texture ? (points_count * 2) : (thick_line ? points_count * 4 : points_count * 3); - PrimReserve(idx_count, vtx_count); - - // Temporary buffer - // The first items are normals at each line point, then after that there are either 2 or 4 temp points for each line point - _Data->TempBuffer.reserve_discard(points_count * ((use_texture || !thick_line) ? 3 : 5)); - ImVec2* temp_normals = _Data->TempBuffer.Data; - ImVec2* temp_points = temp_normals + points_count; - - // Calculate normals (tangents) for each line segment - for (int i1 = 0; i1 < count; i1++) - { - const int i2 = (i1 + 1) == points_count ? 0 : i1 + 1; - float dx = points[i2].x - points[i1].x; - float dy = points[i2].y - points[i1].y; - IM_NORMALIZE2F_OVER_ZERO(dx, dy); - temp_normals[i1].x = dy; - temp_normals[i1].y = -dx; - } - if (!closed) - temp_normals[points_count - 1] = temp_normals[points_count - 2]; - - // If we are drawing a one-pixel-wide line without a texture, or a textured line of any width, we only need 2 or 3 vertices per point - if (use_texture || !thick_line) - { - // [PATH 1] Texture-based lines (thick or non-thick) - // [PATH 2] Non texture-based lines (non-thick) - - // The width of the geometry we need to draw - this is essentially pixels for the line itself, plus "one pixel" for AA. - // - In the texture-based path, we don't use AA_SIZE here because the +1 is tied to the generated texture - // (see ImFontAtlasBuildRenderLinesTexData() function), and so alternate values won't work without changes to that code. - // - In the non texture-based paths, we would allow AA_SIZE to potentially be != 1.0f with a patch (e.g. fringe_scale patch to - // allow scaling geometry while preserving one-screen-pixel AA fringe). - const float half_draw_size = use_texture ? ((thickness * 0.5f) + 1) : AA_SIZE; - - // If line is not closed, the first and last points need to be generated differently as there are no normals to blend - if (!closed) - { - temp_points[0] = points[0] + temp_normals[0] * half_draw_size; - temp_points[1] = points[0] - temp_normals[0] * half_draw_size; - temp_points[(points_count-1)*2+0] = points[points_count-1] + temp_normals[points_count-1] * half_draw_size; - temp_points[(points_count-1)*2+1] = points[points_count-1] - temp_normals[points_count-1] * half_draw_size; - } - - // Generate the indices to form a number of triangles for each line segment, and the vertices for the line edges - // This takes points n and n+1 and writes into n+1, with the first point in a closed line being generated from the final one (as n+1 wraps) - // FIXME-OPT: Merge the different loops, possibly remove the temporary buffer. - unsigned int idx1 = _VtxCurrentIdx; // Vertex index for start of line segment - for (int i1 = 0; i1 < count; i1++) // i1 is the first point of the line segment - { - const int i2 = (i1 + 1) == points_count ? 0 : i1 + 1; // i2 is the second point of the line segment - const unsigned int idx2 = ((i1 + 1) == points_count) ? _VtxCurrentIdx : (idx1 + (use_texture ? 2 : 3)); // Vertex index for end of segment - - // Average normals - float dm_x = (temp_normals[i1].x + temp_normals[i2].x) * 0.5f; - float dm_y = (temp_normals[i1].y + temp_normals[i2].y) * 0.5f; - IM_FIXNORMAL2F(dm_x, dm_y); - dm_x *= half_draw_size; // dm_x, dm_y are offset to the outer edge of the AA area - dm_y *= half_draw_size; - - // Add temporary vertices for the outer edges - ImVec2* out_vtx = &temp_points[i2 * 2]; - out_vtx[0].x = points[i2].x + dm_x; - out_vtx[0].y = points[i2].y + dm_y; - out_vtx[1].x = points[i2].x - dm_x; - out_vtx[1].y = points[i2].y - dm_y; - - if (use_texture) - { - // Add indices for two triangles - _IdxWritePtr[0] = (ImDrawIdx)(idx2 + 0); _IdxWritePtr[1] = (ImDrawIdx)(idx1 + 0); _IdxWritePtr[2] = (ImDrawIdx)(idx1 + 1); // Right tri - _IdxWritePtr[3] = (ImDrawIdx)(idx2 + 1); _IdxWritePtr[4] = (ImDrawIdx)(idx1 + 1); _IdxWritePtr[5] = (ImDrawIdx)(idx2 + 0); // Left tri - _IdxWritePtr += 6; - } - else - { - // Add indexes for four triangles - _IdxWritePtr[0] = (ImDrawIdx)(idx2 + 0); _IdxWritePtr[1] = (ImDrawIdx)(idx1 + 0); _IdxWritePtr[2] = (ImDrawIdx)(idx1 + 2); // Right tri 1 - _IdxWritePtr[3] = (ImDrawIdx)(idx1 + 2); _IdxWritePtr[4] = (ImDrawIdx)(idx2 + 2); _IdxWritePtr[5] = (ImDrawIdx)(idx2 + 0); // Right tri 2 - _IdxWritePtr[6] = (ImDrawIdx)(idx2 + 1); _IdxWritePtr[7] = (ImDrawIdx)(idx1 + 1); _IdxWritePtr[8] = (ImDrawIdx)(idx1 + 0); // Left tri 1 - _IdxWritePtr[9] = (ImDrawIdx)(idx1 + 0); _IdxWritePtr[10] = (ImDrawIdx)(idx2 + 0); _IdxWritePtr[11] = (ImDrawIdx)(idx2 + 1); // Left tri 2 - _IdxWritePtr += 12; - } - - idx1 = idx2; - } - - // Add vertices for each point on the line - if (use_texture) - { - // If we're using textures we only need to emit the left/right edge vertices - ImVec4 tex_uvs = _Data->TexUvLines[integer_thickness]; - /*if (fractional_thickness != 0.0f) // Currently always zero when use_texture==false! - { - const ImVec4 tex_uvs_1 = _Data->TexUvLines[integer_thickness + 1]; - tex_uvs.x = tex_uvs.x + (tex_uvs_1.x - tex_uvs.x) * fractional_thickness; // inlined ImLerp() - tex_uvs.y = tex_uvs.y + (tex_uvs_1.y - tex_uvs.y) * fractional_thickness; - tex_uvs.z = tex_uvs.z + (tex_uvs_1.z - tex_uvs.z) * fractional_thickness; - tex_uvs.w = tex_uvs.w + (tex_uvs_1.w - tex_uvs.w) * fractional_thickness; - }*/ - ImVec2 tex_uv0(tex_uvs.x, tex_uvs.z); - ImVec2 tex_uv1(tex_uvs.y, tex_uvs.z); - for (int i = 0; i < points_count; i++) - { - _VtxWritePtr[0].pos = temp_points[i * 2 + 0]; _VtxWritePtr[0].uv = tex_uv0; _VtxWritePtr[0].col = col; // Left-side outer edge - _VtxWritePtr[1].pos = temp_points[i * 2 + 1]; _VtxWritePtr[1].uv = tex_uv1; _VtxWritePtr[1].col = col; // Right-side outer edge - _VtxWritePtr += 2; - } - } - else - { - // If we're not using a texture, we need the center vertex as well - for (int i = 0; i < points_count; i++) - { - _VtxWritePtr[0].pos = points[i]; _VtxWritePtr[0].uv = opaque_uv; _VtxWritePtr[0].col = col; // Center of line - _VtxWritePtr[1].pos = temp_points[i * 2 + 0]; _VtxWritePtr[1].uv = opaque_uv; _VtxWritePtr[1].col = col_trans; // Left-side outer edge - _VtxWritePtr[2].pos = temp_points[i * 2 + 1]; _VtxWritePtr[2].uv = opaque_uv; _VtxWritePtr[2].col = col_trans; // Right-side outer edge - _VtxWritePtr += 3; - } - } - } - else - { - // [PATH 2] Non texture-based lines (thick): we need to draw the solid line core and thus require four vertices per point - const float half_inner_thickness = (thickness - AA_SIZE) * 0.5f; - - // If line is not closed, the first and last points need to be generated differently as there are no normals to blend - if (!closed) - { - const int points_last = points_count - 1; - temp_points[0] = points[0] + temp_normals[0] * (half_inner_thickness + AA_SIZE); - temp_points[1] = points[0] + temp_normals[0] * (half_inner_thickness); - temp_points[2] = points[0] - temp_normals[0] * (half_inner_thickness); - temp_points[3] = points[0] - temp_normals[0] * (half_inner_thickness + AA_SIZE); - temp_points[points_last * 4 + 0] = points[points_last] + temp_normals[points_last] * (half_inner_thickness + AA_SIZE); - temp_points[points_last * 4 + 1] = points[points_last] + temp_normals[points_last] * (half_inner_thickness); - temp_points[points_last * 4 + 2] = points[points_last] - temp_normals[points_last] * (half_inner_thickness); - temp_points[points_last * 4 + 3] = points[points_last] - temp_normals[points_last] * (half_inner_thickness + AA_SIZE); - } - - // Generate the indices to form a number of triangles for each line segment, and the vertices for the line edges - // This takes points n and n+1 and writes into n+1, with the first point in a closed line being generated from the final one (as n+1 wraps) - // FIXME-OPT: Merge the different loops, possibly remove the temporary buffer. - unsigned int idx1 = _VtxCurrentIdx; // Vertex index for start of line segment - for (int i1 = 0; i1 < count; i1++) // i1 is the first point of the line segment - { - const int i2 = (i1 + 1) == points_count ? 0 : (i1 + 1); // i2 is the second point of the line segment - const unsigned int idx2 = (i1 + 1) == points_count ? _VtxCurrentIdx : (idx1 + 4); // Vertex index for end of segment - - // Average normals - float dm_x = (temp_normals[i1].x + temp_normals[i2].x) * 0.5f; - float dm_y = (temp_normals[i1].y + temp_normals[i2].y) * 0.5f; - IM_FIXNORMAL2F(dm_x, dm_y); - float dm_out_x = dm_x * (half_inner_thickness + AA_SIZE); - float dm_out_y = dm_y * (half_inner_thickness + AA_SIZE); - float dm_in_x = dm_x * half_inner_thickness; - float dm_in_y = dm_y * half_inner_thickness; - - // Add temporary vertices - ImVec2* out_vtx = &temp_points[i2 * 4]; - out_vtx[0].x = points[i2].x + dm_out_x; - out_vtx[0].y = points[i2].y + dm_out_y; - out_vtx[1].x = points[i2].x + dm_in_x; - out_vtx[1].y = points[i2].y + dm_in_y; - out_vtx[2].x = points[i2].x - dm_in_x; - out_vtx[2].y = points[i2].y - dm_in_y; - out_vtx[3].x = points[i2].x - dm_out_x; - out_vtx[3].y = points[i2].y - dm_out_y; - - // Add indexes - _IdxWritePtr[0] = (ImDrawIdx)(idx2 + 1); _IdxWritePtr[1] = (ImDrawIdx)(idx1 + 1); _IdxWritePtr[2] = (ImDrawIdx)(idx1 + 2); - _IdxWritePtr[3] = (ImDrawIdx)(idx1 + 2); _IdxWritePtr[4] = (ImDrawIdx)(idx2 + 2); _IdxWritePtr[5] = (ImDrawIdx)(idx2 + 1); - _IdxWritePtr[6] = (ImDrawIdx)(idx2 + 1); _IdxWritePtr[7] = (ImDrawIdx)(idx1 + 1); _IdxWritePtr[8] = (ImDrawIdx)(idx1 + 0); - _IdxWritePtr[9] = (ImDrawIdx)(idx1 + 0); _IdxWritePtr[10] = (ImDrawIdx)(idx2 + 0); _IdxWritePtr[11] = (ImDrawIdx)(idx2 + 1); - _IdxWritePtr[12] = (ImDrawIdx)(idx2 + 2); _IdxWritePtr[13] = (ImDrawIdx)(idx1 + 2); _IdxWritePtr[14] = (ImDrawIdx)(idx1 + 3); - _IdxWritePtr[15] = (ImDrawIdx)(idx1 + 3); _IdxWritePtr[16] = (ImDrawIdx)(idx2 + 3); _IdxWritePtr[17] = (ImDrawIdx)(idx2 + 2); - _IdxWritePtr += 18; - - idx1 = idx2; - } - - // Add vertices - for (int i = 0; i < points_count; i++) - { - _VtxWritePtr[0].pos = temp_points[i * 4 + 0]; _VtxWritePtr[0].uv = opaque_uv; _VtxWritePtr[0].col = col_trans; - _VtxWritePtr[1].pos = temp_points[i * 4 + 1]; _VtxWritePtr[1].uv = opaque_uv; _VtxWritePtr[1].col = col; - _VtxWritePtr[2].pos = temp_points[i * 4 + 2]; _VtxWritePtr[2].uv = opaque_uv; _VtxWritePtr[2].col = col; - _VtxWritePtr[3].pos = temp_points[i * 4 + 3]; _VtxWritePtr[3].uv = opaque_uv; _VtxWritePtr[3].col = col_trans; - _VtxWritePtr += 4; - } - } - _VtxCurrentIdx += (ImDrawIdx)vtx_count; - } - else - { - // [PATH 4] Non texture-based, Non anti-aliased lines - const int idx_count = count * 6; - const int vtx_count = count * 4; // FIXME-OPT: Not sharing edges - PrimReserve(idx_count, vtx_count); - - for (int i1 = 0; i1 < count; i1++) - { - const int i2 = (i1 + 1) == points_count ? 0 : i1 + 1; - const ImVec2& p1 = points[i1]; - const ImVec2& p2 = points[i2]; - - float dx = p2.x - p1.x; - float dy = p2.y - p1.y; - IM_NORMALIZE2F_OVER_ZERO(dx, dy); - dx *= (thickness * 0.5f); - dy *= (thickness * 0.5f); - - _VtxWritePtr[0].pos.x = p1.x + dy; _VtxWritePtr[0].pos.y = p1.y - dx; _VtxWritePtr[0].uv = opaque_uv; _VtxWritePtr[0].col = col; - _VtxWritePtr[1].pos.x = p2.x + dy; _VtxWritePtr[1].pos.y = p2.y - dx; _VtxWritePtr[1].uv = opaque_uv; _VtxWritePtr[1].col = col; - _VtxWritePtr[2].pos.x = p2.x - dy; _VtxWritePtr[2].pos.y = p2.y + dx; _VtxWritePtr[2].uv = opaque_uv; _VtxWritePtr[2].col = col; - _VtxWritePtr[3].pos.x = p1.x - dy; _VtxWritePtr[3].pos.y = p1.y + dx; _VtxWritePtr[3].uv = opaque_uv; _VtxWritePtr[3].col = col; - _VtxWritePtr += 4; - - _IdxWritePtr[0] = (ImDrawIdx)(_VtxCurrentIdx); _IdxWritePtr[1] = (ImDrawIdx)(_VtxCurrentIdx + 1); _IdxWritePtr[2] = (ImDrawIdx)(_VtxCurrentIdx + 2); - _IdxWritePtr[3] = (ImDrawIdx)(_VtxCurrentIdx); _IdxWritePtr[4] = (ImDrawIdx)(_VtxCurrentIdx + 2); _IdxWritePtr[5] = (ImDrawIdx)(_VtxCurrentIdx + 3); - _IdxWritePtr += 6; - _VtxCurrentIdx += 4; - } - } -} - // - We intentionally avoid using ImVec2 and its math operators here to reduce cost to a minimum for debug/non-inlined builds. // - Filled shapes must always use clockwise winding order. The anti-aliasing fringe depends on it. Counter-clockwise shapes will have "inward" anti-aliasing. void ImDrawList::AddConvexPolyFilled(const ImVec2* points, const int points_count, ImU32 col, ImDrawFlags flags) @@ -1583,12 +1320,6 @@ void ImDrawList::AddConvexPolyFilled(const ImVec2* points, const int points_coun if (points_count < 3 || (col & IM_COL32_A_MASK) == 0) return; -/* if (ImGui::GetIO().KeyShift) - { - AddConvexPolyFilledLegacy(points, points_count, col); - return; - }*/ - const ImVec2 uv = _Data->TexUvWhitePixel; flags |= Flags; if (flags & ImDrawFlags_AAFill) @@ -1769,88 +1500,6 @@ void ImDrawList::AddConvexPolyFilled(const ImVec2* points, const int points_coun } } -void ImDrawList::AddConvexPolyFilledLegacy(const ImVec2* points, const int points_count, ImU32 col) -{ - if (points_count < 3 || (col & IM_COL32_A_MASK) == 0) - return; - - const ImVec2 uv = _Data->TexUvWhitePixel; - - if (Flags & ImDrawFlags_AAFill) - { - // Anti-aliased Fill - const float AA_SIZE = _FringeScale; - const ImU32 col_trans = col & ~IM_COL32_A_MASK; - const int idx_count = (points_count - 2)*3 + points_count * 6; - const int vtx_count = (points_count * 2); - PrimReserve(idx_count, vtx_count); - - // Add indexes for fill - unsigned int vtx_inner_idx = _VtxCurrentIdx; - unsigned int vtx_outer_idx = _VtxCurrentIdx + 1; - for (int i = 2; i < points_count; i++) - { - _IdxWritePtr[0] = (ImDrawIdx)(vtx_inner_idx); _IdxWritePtr[1] = (ImDrawIdx)(vtx_inner_idx + ((i - 1) << 1)); _IdxWritePtr[2] = (ImDrawIdx)(vtx_inner_idx + (i << 1)); - _IdxWritePtr += 3; - } - - // Compute normals - _Data->TempBuffer.reserve_discard(points_count); - ImVec2* temp_normals = _Data->TempBuffer.Data; - for (int i0 = points_count - 1, i1 = 0; i1 < points_count; i0 = i1++) - { - const ImVec2& p0 = points[i0]; - const ImVec2& p1 = points[i1]; - float dx = p1.x - p0.x; - float dy = p1.y - p0.y; - IM_NORMALIZE2F_OVER_ZERO(dx, dy); - temp_normals[i0].x = dy; - temp_normals[i0].y = -dx; - } - - for (int i0 = points_count - 1, i1 = 0; i1 < points_count; i0 = i1++) - { - // Average normals - const ImVec2& n0 = temp_normals[i0]; - const ImVec2& n1 = temp_normals[i1]; - float dm_x = (n0.x + n1.x) * 0.5f; - float dm_y = (n0.y + n1.y) * 0.5f; - IM_FIXNORMAL2F(dm_x, dm_y); - dm_x *= AA_SIZE * 0.5f; - dm_y *= AA_SIZE * 0.5f; - - // Add vertices - _VtxWritePtr[0].pos.x = (points[i1].x - dm_x); _VtxWritePtr[0].pos.y = (points[i1].y - dm_y); _VtxWritePtr[0].uv = uv; _VtxWritePtr[0].col = col; // Inner - _VtxWritePtr[1].pos.x = (points[i1].x + dm_x); _VtxWritePtr[1].pos.y = (points[i1].y + dm_y); _VtxWritePtr[1].uv = uv; _VtxWritePtr[1].col = col_trans; // Outer - _VtxWritePtr += 2; - - // Add indexes for fringes - _IdxWritePtr[0] = (ImDrawIdx)(vtx_inner_idx + (i1 << 1)); _IdxWritePtr[1] = (ImDrawIdx)(vtx_inner_idx + (i0 << 1)); _IdxWritePtr[2] = (ImDrawIdx)(vtx_outer_idx + (i0 << 1)); - _IdxWritePtr[3] = (ImDrawIdx)(vtx_outer_idx + (i0 << 1)); _IdxWritePtr[4] = (ImDrawIdx)(vtx_outer_idx + (i1 << 1)); _IdxWritePtr[5] = (ImDrawIdx)(vtx_inner_idx + (i1 << 1)); - _IdxWritePtr += 6; - } - _VtxCurrentIdx += (ImDrawIdx)vtx_count; - } - else - { - // Non Anti-aliased Fill - const int idx_count = (points_count - 2)*3; - const int vtx_count = points_count; - PrimReserve(idx_count, vtx_count); - for (int i = 0; i < vtx_count; i++) - { - _VtxWritePtr[0].pos = points[i]; _VtxWritePtr[0].uv = uv; _VtxWritePtr[0].col = col; - _VtxWritePtr++; - } - for (int i = 2; i < points_count; i++) - { - _IdxWritePtr[0] = (ImDrawIdx)(_VtxCurrentIdx); _IdxWritePtr[1] = (ImDrawIdx)(_VtxCurrentIdx + i - 1); _IdxWritePtr[2] = (ImDrawIdx)(_VtxCurrentIdx + i); - _IdxWritePtr += 3; - } - _VtxCurrentIdx += (ImDrawIdx)vtx_count; - } -} - // Calculates arc step and step count for 90 degree arc. The calculated arc step will complete a 90 degree arc when stepped arc_step_count times. IM_MSVC_RUNTIME_CHECKS_OFF static void CalcArcStepAndCount(int segment_count, int& arc_step, int& arc_step_count)