906 lines
30 KiB
C
906 lines
30 KiB
C
/*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software Foundation,
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* Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*/
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/** \file
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* \ingroup edmesh
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*/
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#include "MEM_guardedalloc.h"
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#include "DNA_object_types.h"
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#include "BLI_string.h"
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#include "BLI_math.h"
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#include "BLT_translation.h"
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#include "BKE_context.h"
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#include "BKE_global.h"
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#include "BKE_editmesh.h"
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#include "BKE_unit.h"
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#include "BKE_layer.h"
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#include "BKE_mesh.h"
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#include "DNA_mesh_types.h"
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#include "RNA_define.h"
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#include "RNA_access.h"
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#include "WM_api.h"
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#include "WM_types.h"
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#include "UI_interface.h"
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#include "ED_mesh.h"
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#include "ED_numinput.h"
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#include "ED_screen.h"
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#include "ED_space_api.h"
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#include "ED_transform.h"
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#include "ED_view3d.h"
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#include "mesh_intern.h" /* own include */
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#define MVAL_PIXEL_MARGIN 5.0f
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#define PROFILE_HARD_MIN 0.0f
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#define SEGMENTS_HARD_MAX 1000
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/* which value is mouse movement and numeric input controlling? */
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#define OFFSET_VALUE 0
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#define OFFSET_VALUE_PERCENT 1
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#define PROFILE_VALUE 2
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#define SEGMENTS_VALUE 3
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#define NUM_VALUE_KINDS 4
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static const char *value_rna_name[NUM_VALUE_KINDS] = {"offset", "offset_pct", "profile", "segments"};
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static const float value_clamp_min[NUM_VALUE_KINDS] = {0.0f, 0.0f, PROFILE_HARD_MIN, 1.0f};
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static const float value_clamp_max[NUM_VALUE_KINDS] = {1e6, 100.0f, 1.0f, SEGMENTS_HARD_MAX};
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static const float value_start[NUM_VALUE_KINDS] = {0.0f, 0.0f, 0.5f, 1.0f};
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static const float value_scale_per_inch[NUM_VALUE_KINDS] = { 0.0f, 100.0f, 1.0f, 4.0f};
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typedef struct {
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BMEditMesh *em;
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BMBackup mesh_backup;
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} BevelObjectStore;
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typedef struct {
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float initial_length[NUM_VALUE_KINDS];
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float scale[NUM_VALUE_KINDS];
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NumInput num_input[NUM_VALUE_KINDS];
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/** The current value when shift is pressed. Negative when shift not active. */
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float shift_value[NUM_VALUE_KINDS];
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float max_obj_scale;
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bool is_modal;
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BevelObjectStore *ob_store;
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uint ob_store_len;
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/* modal only */
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float mcenter[2];
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void *draw_handle_pixel;
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short gizmo_flag;
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short value_mode; /* Which value does mouse movement and numeric input affect? */
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float segments; /* Segments as float so smooth mouse pan works in small increments */
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} BevelData;
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enum {
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BEV_MODAL_CANCEL = 1,
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BEV_MODAL_CONFIRM,
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BEV_MODAL_VALUE_OFFSET,
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BEV_MODAL_VALUE_PROFILE,
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BEV_MODAL_VALUE_SEGMENTS,
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BEV_MODAL_SEGMENTS_UP,
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BEV_MODAL_SEGMENTS_DOWN,
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BEV_MODAL_OFFSET_MODE_CHANGE,
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BEV_MODAL_CLAMP_OVERLAP_TOGGLE,
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BEV_MODAL_VERTEX_ONLY_TOGGLE,
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BEV_MODAL_HARDEN_NORMALS_TOGGLE,
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BEV_MODAL_MARK_SEAM_TOGGLE,
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BEV_MODAL_MARK_SHARP_TOGGLE,
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BEV_MODAL_OUTER_MITER_CHANGE,
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BEV_MODAL_INNER_MITER_CHANGE,
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};
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static float get_bevel_offset(wmOperator *op)
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{
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float val;
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if (RNA_enum_get(op->ptr, "offset_type") == BEVEL_AMT_PERCENT)
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val = RNA_float_get(op->ptr, "offset_pct");
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else
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val = RNA_float_get(op->ptr, "offset");
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return val;
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}
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static void edbm_bevel_update_header(bContext *C, wmOperator *op)
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{
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char header[UI_MAX_DRAW_STR];
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char buf[UI_MAX_DRAW_STR];
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char *p = buf;
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int available_len = sizeof(buf);
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Scene *sce = CTX_data_scene(C);
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char offset_str[NUM_STR_REP_LEN];
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const char *mode_str, *omiter_str, *imiter_str;
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PropertyRNA *prop;
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#define WM_MODALKEY(_id) \
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WM_modalkeymap_operator_items_to_string_buf(op->type, (_id), true, UI_MAX_SHORTCUT_STR, &available_len, &p)
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if (RNA_enum_get(op->ptr, "offset_type") == BEVEL_AMT_PERCENT) {
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BLI_snprintf(offset_str, NUM_STR_REP_LEN, "%.1f%%", RNA_float_get(op->ptr, "offset_pct"));
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}
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else {
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bUnit_AsString2(
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offset_str, NUM_STR_REP_LEN, (double)RNA_float_get(op->ptr, "offset"), 3,
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B_UNIT_LENGTH, &sce->unit, true);
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}
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prop = RNA_struct_find_property(op->ptr, "offset_type");
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RNA_property_enum_name_gettexted(C, op->ptr, prop, RNA_property_enum_get(op->ptr, prop), &mode_str);
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prop = RNA_struct_find_property(op->ptr, "miter_outer");
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RNA_property_enum_name_gettexted(C, op->ptr, prop, RNA_property_enum_get(op->ptr, prop), &omiter_str);
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prop = RNA_struct_find_property(op->ptr, "miter_inner");
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RNA_property_enum_name_gettexted(C, op->ptr, prop, RNA_property_enum_get(op->ptr, prop), &imiter_str);
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BLI_snprintf(
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header, sizeof(header),
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IFACE_("%s: confirm, "
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"%s: cancel, "
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"%s: mode (%s), "
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"%s: width (%s), "
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"%s: segments (%d), "
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"%s: profile (%.3f), "
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"%s: clamp overlap (%s), "
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"%s: vertex only (%s), "
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"%s: outer miter (%s), "
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"%s: inner miter (%s), "
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"%s: harden normals (%s), "
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"%s: mark seam (%s), "
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"%s: mark sharp (%s)"
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),
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WM_MODALKEY(BEV_MODAL_CONFIRM),
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WM_MODALKEY(BEV_MODAL_CANCEL),
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WM_MODALKEY(BEV_MODAL_OFFSET_MODE_CHANGE),
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mode_str,
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WM_MODALKEY(BEV_MODAL_VALUE_OFFSET),
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offset_str,
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WM_MODALKEY(BEV_MODAL_VALUE_SEGMENTS),
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RNA_int_get(op->ptr, "segments"),
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WM_MODALKEY(BEV_MODAL_VALUE_PROFILE),
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RNA_float_get(op->ptr, "profile"),
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WM_MODALKEY(BEV_MODAL_CLAMP_OVERLAP_TOGGLE),
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WM_bool_as_string(RNA_boolean_get(op->ptr, "clamp_overlap")),
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WM_MODALKEY(BEV_MODAL_VERTEX_ONLY_TOGGLE),
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WM_bool_as_string(RNA_boolean_get(op->ptr, "vertex_only")),
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WM_MODALKEY(BEV_MODAL_OUTER_MITER_CHANGE),
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omiter_str,
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WM_MODALKEY(BEV_MODAL_INNER_MITER_CHANGE),
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imiter_str,
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WM_MODALKEY(BEV_MODAL_HARDEN_NORMALS_TOGGLE),
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WM_bool_as_string(RNA_boolean_get(op->ptr, "harden_normals")),
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WM_MODALKEY(BEV_MODAL_MARK_SEAM_TOGGLE),
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WM_bool_as_string(RNA_boolean_get(op->ptr, "mark_seam")),
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WM_MODALKEY(BEV_MODAL_MARK_SHARP_TOGGLE),
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WM_bool_as_string(RNA_boolean_get(op->ptr, "mark_sharp"))
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);
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#undef WM_MODALKEY
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ED_workspace_status_text(C, header);
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}
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static bool edbm_bevel_init(bContext *C, wmOperator *op, const bool is_modal)
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{
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Scene *scene = CTX_data_scene(C);
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BevelData *opdata;
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ViewLayer *view_layer = CTX_data_view_layer(C);
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float pixels_per_inch;
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int i, otype;
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if (is_modal) {
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RNA_float_set(op->ptr, "offset", 0.0f);
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RNA_float_set(op->ptr, "offset_pct", 0.0f);
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}
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op->customdata = opdata = MEM_mallocN(sizeof(BevelData), "beveldata_mesh_operator");
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uint objects_used_len = 0;
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opdata->max_obj_scale = FLT_MIN;
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{
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uint ob_store_len = 0;
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Object **objects = BKE_view_layer_array_from_objects_in_edit_mode_unique_data(
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view_layer, CTX_wm_view3d(C), &ob_store_len);
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opdata->ob_store = MEM_malloc_arrayN(ob_store_len, sizeof(*opdata->ob_store), __func__);
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for (uint ob_index = 0; ob_index < ob_store_len; ob_index++) {
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Object *obedit = objects[ob_index];
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float scale = mat4_to_scale(obedit->obmat);
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opdata->max_obj_scale = max_ff(opdata->max_obj_scale, scale);
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BMEditMesh *em = BKE_editmesh_from_object(obedit);
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if (em->bm->totvertsel > 0) {
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opdata->ob_store[objects_used_len].em = em;
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objects_used_len++;
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}
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}
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MEM_freeN(objects);
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opdata->ob_store_len = objects_used_len;
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}
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opdata->is_modal = is_modal;
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otype = RNA_enum_get(op->ptr, "offset_type");
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opdata->value_mode = (otype == BEVEL_AMT_PERCENT) ? OFFSET_VALUE_PERCENT : OFFSET_VALUE;
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opdata->segments = (float) RNA_int_get(op->ptr, "segments");
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pixels_per_inch = U.dpi * U.pixelsize;
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for (i = 0; i < NUM_VALUE_KINDS; i++) {
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opdata->shift_value[i] = -1.0f;
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opdata->initial_length[i] = -1.0f;
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/* note: scale for OFFSET_VALUE will get overwritten in edbm_bevel_invoke */
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opdata->scale[i] = value_scale_per_inch[i] / pixels_per_inch;
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initNumInput(&opdata->num_input[i]);
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opdata->num_input[i].idx_max = 0;
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opdata->num_input[i].val_flag[0] |= NUM_NO_NEGATIVE;
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if (i == SEGMENTS_VALUE) {
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opdata->num_input[i].val_flag[0] |= NUM_NO_FRACTION | NUM_NO_ZERO;
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}
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if (i == OFFSET_VALUE) {
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opdata->num_input[i].unit_sys = scene->unit.system;
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}
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/* Not sure this is a factor or a unit? */
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opdata->num_input[i].unit_type[0] = B_UNIT_NONE;
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}
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/* avoid the cost of allocating a bm copy */
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if (is_modal) {
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View3D *v3d = CTX_wm_view3d(C);
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ARegion *ar = CTX_wm_region(C);
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for (uint ob_index = 0; ob_index < opdata->ob_store_len; ob_index++) {
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opdata->ob_store[ob_index].mesh_backup = EDBM_redo_state_store(opdata->ob_store[ob_index].em);
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}
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opdata->draw_handle_pixel = ED_region_draw_cb_activate(
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ar->type, ED_region_draw_mouse_line_cb,
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opdata->mcenter, REGION_DRAW_POST_PIXEL);
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G.moving = G_TRANSFORM_EDIT;
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if (v3d) {
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opdata->gizmo_flag = v3d->gizmo_flag;
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v3d->gizmo_flag = V3D_GIZMO_HIDE;
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}
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}
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return true;
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}
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static bool edbm_bevel_calc(wmOperator *op)
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{
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BevelData *opdata = op->customdata;
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BMEditMesh *em;
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BMOperator bmop;
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bool changed = false;
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const float offset = get_bevel_offset(op);
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const int offset_type = RNA_enum_get(op->ptr, "offset_type");
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const int segments = RNA_int_get(op->ptr, "segments");
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const float profile = RNA_float_get(op->ptr, "profile");
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const bool vertex_only = RNA_boolean_get(op->ptr, "vertex_only");
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const bool clamp_overlap = RNA_boolean_get(op->ptr, "clamp_overlap");
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int material = RNA_int_get(op->ptr, "material");
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const bool loop_slide = RNA_boolean_get(op->ptr, "loop_slide");
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const bool mark_seam = RNA_boolean_get(op->ptr, "mark_seam");
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const bool mark_sharp = RNA_boolean_get(op->ptr, "mark_sharp");
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const bool harden_normals = RNA_boolean_get(op->ptr, "harden_normals");
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const int face_strength_mode = RNA_enum_get(op->ptr, "face_strength_mode");
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const int miter_outer = RNA_enum_get(op->ptr, "miter_outer");
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const int miter_inner = RNA_enum_get(op->ptr, "miter_inner");
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const float spread = RNA_float_get(op->ptr, "spread");
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for (uint ob_index = 0; ob_index < opdata->ob_store_len; ob_index++) {
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em = opdata->ob_store[ob_index].em;
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/* revert to original mesh */
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if (opdata->is_modal) {
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EDBM_redo_state_restore(opdata->ob_store[ob_index].mesh_backup, em, false);
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}
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if (em->ob) {
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material = CLAMPIS(material, -1, em->ob->totcol - 1);
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}
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Mesh *me = em->ob->data;
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if (harden_normals && !(me->flag & ME_AUTOSMOOTH)) {
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/* harden_normals only has a visible effect if autosmooth is on, so turn it on */
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me->flag |= ME_AUTOSMOOTH;
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}
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EDBM_op_init(
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em, &bmop, op,
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"bevel geom=%hev offset=%f segments=%i vertex_only=%b offset_type=%i profile=%f "
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"clamp_overlap=%b material=%i loop_slide=%b mark_seam=%b mark_sharp=%b "
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"harden_normals=%b face_strength_mode=%i "
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"miter_outer=%i miter_inner=%i spread=%f smoothresh=%f",
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BM_ELEM_SELECT, offset, segments, vertex_only, offset_type, profile,
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clamp_overlap, material, loop_slide, mark_seam, mark_sharp, harden_normals, face_strength_mode,
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miter_outer, miter_inner, spread, me->smoothresh);
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BMO_op_exec(em->bm, &bmop);
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if (offset != 0.0f) {
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/* not essential, but we may have some loose geometry that
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* won't get bevel'd and better not leave it selected */
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EDBM_flag_disable_all(em, BM_ELEM_SELECT);
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BMO_slot_buffer_hflag_enable(em->bm, bmop.slots_out, "faces.out", BM_FACE, BM_ELEM_SELECT, true);
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}
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/* no need to de-select existing geometry */
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if (!EDBM_op_finish(em, &bmop, op, true)) {
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continue;
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}
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EDBM_mesh_normals_update(em);
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EDBM_update_generic(em, true, true);
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changed = true;
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}
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return changed;
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}
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static void edbm_bevel_exit(bContext *C, wmOperator *op)
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{
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BevelData *opdata = op->customdata;
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ScrArea *sa = CTX_wm_area(C);
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if (sa) {
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ED_area_status_text(sa, NULL);
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}
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if (opdata->is_modal) {
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View3D *v3d = CTX_wm_view3d(C);
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ARegion *ar = CTX_wm_region(C);
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for (uint ob_index = 0; ob_index < opdata->ob_store_len; ob_index++) {
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EDBM_redo_state_free(&opdata->ob_store[ob_index].mesh_backup, NULL, false);
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}
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ED_region_draw_cb_exit(ar->type, opdata->draw_handle_pixel);
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if (v3d) {
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v3d->gizmo_flag = opdata->gizmo_flag;
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}
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G.moving = 0;
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}
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MEM_SAFE_FREE(opdata->ob_store);
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MEM_SAFE_FREE(op->customdata);
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op->customdata = NULL;
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}
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static void edbm_bevel_cancel(bContext *C, wmOperator *op)
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{
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BevelData *opdata = op->customdata;
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if (opdata->is_modal) {
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for (uint ob_index = 0; ob_index < opdata->ob_store_len; ob_index++) {
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EDBM_redo_state_free(&opdata->ob_store[ob_index].mesh_backup, opdata->ob_store[ob_index].em, true);
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EDBM_update_generic(opdata->ob_store[ob_index].em, false, true);
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}
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}
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edbm_bevel_exit(C, op);
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/* need to force redisplay or we may still view the modified result */
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ED_region_tag_redraw(CTX_wm_region(C));
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}
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/* bevel! yay!!*/
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static int edbm_bevel_exec(bContext *C, wmOperator *op)
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{
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if (!edbm_bevel_init(C, op, false)) {
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return OPERATOR_CANCELLED;
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}
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if (!edbm_bevel_calc(op)) {
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edbm_bevel_cancel(C, op);
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return OPERATOR_CANCELLED;
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}
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edbm_bevel_exit(C, op);
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return OPERATOR_FINISHED;
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}
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static void edbm_bevel_calc_initial_length(wmOperator *op, const wmEvent *event, bool mode_changed)
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{
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BevelData *opdata;
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float mlen[2], len, value, sc, st;
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int vmode;
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opdata = op->customdata;
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mlen[0] = opdata->mcenter[0] - event->mval[0];
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mlen[1] = opdata->mcenter[1] - event->mval[1];
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len = len_v2(mlen);
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vmode = opdata->value_mode;
|
|
if (mode_changed || opdata->initial_length[vmode] == -1.0f) {
|
|
/* If current value is not default start value, adjust len so that
|
|
* the scaling and offset in edbm_bevel_mouse_set_value will
|
|
* start at current value */
|
|
value = (vmode == SEGMENTS_VALUE) ?
|
|
opdata->segments : RNA_float_get(op->ptr, value_rna_name[vmode]);
|
|
sc = opdata->scale[vmode];
|
|
st = value_start[vmode];
|
|
if (value != value_start[vmode]) {
|
|
len = (st + sc * (len - MVAL_PIXEL_MARGIN) - value) / sc;
|
|
}
|
|
}
|
|
opdata->initial_length[opdata->value_mode] = len;
|
|
}
|
|
|
|
static int edbm_bevel_invoke(bContext *C, wmOperator *op, const wmEvent *event)
|
|
{
|
|
RegionView3D *rv3d = CTX_wm_region_view3d(C);
|
|
BevelData *opdata;
|
|
float center_3d[3];
|
|
|
|
if (!edbm_bevel_init(C, op, true)) {
|
|
return OPERATOR_CANCELLED;
|
|
}
|
|
|
|
opdata = op->customdata;
|
|
|
|
/* initialize mouse values */
|
|
if (!calculateTransformCenter(C, V3D_AROUND_CENTER_MEDIAN, center_3d, opdata->mcenter)) {
|
|
/* in this case the tool will likely do nothing,
|
|
* ideally this will never happen and should be checked for above */
|
|
opdata->mcenter[0] = opdata->mcenter[1] = 0;
|
|
}
|
|
|
|
/* for OFFSET_VALUE only, the scale is the size of a pixel under the mouse in 3d space */
|
|
opdata->scale[OFFSET_VALUE] = rv3d ? ED_view3d_pixel_size(rv3d, center_3d) : 1.0f;
|
|
/* since we are affecting untransformed object but seeing in transformed space, compensate for that */
|
|
opdata->scale[OFFSET_VALUE] /= opdata->max_obj_scale;
|
|
|
|
edbm_bevel_calc_initial_length(op, event, false);
|
|
|
|
edbm_bevel_update_header(C, op);
|
|
|
|
if (!edbm_bevel_calc(op)) {
|
|
edbm_bevel_cancel(C, op);
|
|
ED_workspace_status_text(C, NULL);
|
|
return OPERATOR_CANCELLED;
|
|
}
|
|
|
|
WM_event_add_modal_handler(C, op);
|
|
|
|
return OPERATOR_RUNNING_MODAL;
|
|
}
|
|
|
|
static void edbm_bevel_mouse_set_value(wmOperator *op, const wmEvent *event)
|
|
{
|
|
BevelData *opdata = op->customdata;
|
|
int vmode = opdata->value_mode;
|
|
float mdiff[2];
|
|
float value;
|
|
|
|
mdiff[0] = opdata->mcenter[0] - event->mval[0];
|
|
mdiff[1] = opdata->mcenter[1] - event->mval[1];
|
|
|
|
value = ((len_v2(mdiff) - MVAL_PIXEL_MARGIN) - opdata->initial_length[vmode]);
|
|
|
|
/* Scale according to value mode */
|
|
value = value_start[vmode] + value * opdata->scale[vmode];
|
|
|
|
/* Fake shift-transform... */
|
|
if (event->shift) {
|
|
if (opdata->shift_value[vmode] < 0.0f) {
|
|
opdata->shift_value[vmode] = (vmode == SEGMENTS_VALUE) ?
|
|
opdata->segments : RNA_float_get(op->ptr, value_rna_name[vmode]);
|
|
}
|
|
value = (value - opdata->shift_value[vmode]) * 0.1f + opdata->shift_value[vmode];
|
|
}
|
|
else if (opdata->shift_value[vmode] >= 0.0f) {
|
|
opdata->shift_value[vmode] = -1.0f;
|
|
}
|
|
|
|
/* clamp accordingto value mode, and store value back */
|
|
CLAMP(value, value_clamp_min[vmode], value_clamp_max[vmode]);
|
|
if (vmode == SEGMENTS_VALUE) {
|
|
opdata->segments = value;
|
|
RNA_int_set(op->ptr, "segments", (int)(value + 0.5f));
|
|
}
|
|
else {
|
|
RNA_float_set(op->ptr, value_rna_name[vmode], value);
|
|
}
|
|
}
|
|
|
|
static void edbm_bevel_numinput_set_value(wmOperator *op)
|
|
{
|
|
BevelData *opdata = op->customdata;
|
|
float value;
|
|
int vmode;
|
|
|
|
vmode = opdata->value_mode;
|
|
value = (vmode == SEGMENTS_VALUE) ?
|
|
opdata->segments : RNA_float_get(op->ptr, value_rna_name[vmode]);
|
|
applyNumInput(&opdata->num_input[vmode], &value);
|
|
CLAMP(value, value_clamp_min[vmode], value_clamp_max[vmode]);
|
|
if (vmode == SEGMENTS_VALUE) {
|
|
opdata->segments = value;
|
|
RNA_int_set(op->ptr, "segments", (int)value);
|
|
}
|
|
else {
|
|
RNA_float_set(op->ptr, value_rna_name[vmode], value);
|
|
}
|
|
}
|
|
|
|
/* Hide one of offset or offset_pct, depending on offset_type */
|
|
static bool edbm_bevel_poll_property(const bContext *UNUSED(C), wmOperator *op, const PropertyRNA *prop)
|
|
{
|
|
const char *prop_id = RNA_property_identifier(prop);
|
|
|
|
if (STRPREFIX(prop_id, "offset")) {
|
|
int offset_type = RNA_enum_get(op->ptr, "offset_type");
|
|
|
|
if (STREQ(prop_id, "offset") && offset_type == BEVEL_AMT_PERCENT)
|
|
return false;
|
|
else if (STREQ(prop_id, "offset_pct") && offset_type != BEVEL_AMT_PERCENT)
|
|
return false;
|
|
}
|
|
|
|
return true;
|
|
}
|
|
|
|
wmKeyMap *bevel_modal_keymap(wmKeyConfig *keyconf)
|
|
{
|
|
static const EnumPropertyItem modal_items[] = {
|
|
{BEV_MODAL_CANCEL, "CANCEL", 0, "Cancel", "Cancel bevel"},
|
|
{BEV_MODAL_CONFIRM, "CONFIRM", 0, "Confirm", "Confirm bevel"},
|
|
{BEV_MODAL_VALUE_OFFSET, "VALUE_OFFSET", 0, "Value is offset",
|
|
"Value changes offset"},
|
|
{BEV_MODAL_VALUE_PROFILE, "VALUE_PROFILE", 0, "Value is profile",
|
|
"Value changes profile"},
|
|
{BEV_MODAL_VALUE_SEGMENTS, "VALUE_SEGMENTS", 0, "Value is segments",
|
|
"Value changes segments"},
|
|
{BEV_MODAL_SEGMENTS_UP, "SEGMENTS_UP", 0, "Increase segments",
|
|
"Increase segments"},
|
|
{BEV_MODAL_SEGMENTS_DOWN, "SEGMENTS_DOWN", 0, "Decrease segments",
|
|
"Decrease segments"},
|
|
{BEV_MODAL_OFFSET_MODE_CHANGE, "OFFSET_MODE_CHANGE", 0, "Change offset mode",
|
|
"Cycle through offset modes"},
|
|
{BEV_MODAL_CLAMP_OVERLAP_TOGGLE, "CLAMP_OVERLAP_TOGGLE", 0, "Toggle clamp overlap",
|
|
"Toggle clamp overlap flag"},
|
|
{BEV_MODAL_VERTEX_ONLY_TOGGLE, "VERTEX_ONLY_TOGGLE", 0, "Toggle vertex only",
|
|
"Toggle vertex only flag"},
|
|
{BEV_MODAL_HARDEN_NORMALS_TOGGLE, "HARDEN_NORMALS_TOGGLE", 0, "Toggle harden normals",
|
|
"Toggle harden normals flag"},
|
|
{BEV_MODAL_MARK_SEAM_TOGGLE, "MARK_SEAM_TOGGLE", 0, "Toggle mark seam",
|
|
"Toggle mark seam flag"},
|
|
{BEV_MODAL_MARK_SHARP_TOGGLE, "MARK_SHARP_TOGGLE", 0, "Toggle mark sharp",
|
|
"Toggle mark sharp flag"},
|
|
{BEV_MODAL_OUTER_MITER_CHANGE, "OUTER_MITER_CHANGE", 0, "Change outer miter",
|
|
"Cycle through outer miter kinds"},
|
|
{BEV_MODAL_INNER_MITER_CHANGE, "INNER_MITER_CHANGE", 0, "Change inner miter",
|
|
"Cycle through inner miter kinds"},
|
|
{0, NULL, 0, NULL, NULL},
|
|
};
|
|
|
|
wmKeyMap *keymap = WM_modalkeymap_get(keyconf, "Bevel Modal Map");
|
|
|
|
/* this function is called for each spacetype, only needs to add map once */
|
|
if (keymap && keymap->modal_items)
|
|
return NULL;
|
|
|
|
keymap = WM_modalkeymap_add(keyconf, "Bevel Modal Map", modal_items);
|
|
|
|
WM_modalkeymap_assign(keymap, "MESH_OT_bevel");
|
|
|
|
return keymap;
|
|
}
|
|
|
|
static int edbm_bevel_modal(bContext *C, wmOperator *op, const wmEvent *event)
|
|
{
|
|
BevelData *opdata = op->customdata;
|
|
const bool has_numinput = hasNumInput(&opdata->num_input[opdata->value_mode]);
|
|
bool handled = false;
|
|
short etype = event->type;
|
|
short eval = event->val;
|
|
|
|
/* When activated from toolbar, need to convert leftmouse release to confirm */
|
|
if (etype == LEFTMOUSE && eval == KM_RELEASE &&
|
|
RNA_boolean_get(op->ptr, "release_confirm"))
|
|
{
|
|
etype = EVT_MODAL_MAP;
|
|
eval = BEV_MODAL_CONFIRM;
|
|
}
|
|
/* Modal numinput active, try to handle numeric inputs first... */
|
|
if (etype != EVT_MODAL_MAP && eval == KM_PRESS && has_numinput &&
|
|
handleNumInput(C, &opdata->num_input[opdata->value_mode], event))
|
|
{
|
|
edbm_bevel_numinput_set_value(op);
|
|
edbm_bevel_calc(op);
|
|
edbm_bevel_update_header(C, op);
|
|
return OPERATOR_RUNNING_MODAL;
|
|
}
|
|
else if (etype == MOUSEMOVE) {
|
|
if (!has_numinput) {
|
|
edbm_bevel_mouse_set_value(op, event);
|
|
edbm_bevel_calc(op);
|
|
edbm_bevel_update_header(C, op);
|
|
handled = true;
|
|
}
|
|
}
|
|
else if (etype == MOUSEPAN) {
|
|
float delta = 0.02f * (event->y - event->prevy);
|
|
if (opdata->segments >= 1 && opdata->segments + delta < 1)
|
|
opdata->segments = 1;
|
|
else
|
|
opdata->segments += delta;
|
|
RNA_int_set(op->ptr, "segments", (int)opdata->segments);
|
|
edbm_bevel_calc(op);
|
|
edbm_bevel_update_header(C, op);
|
|
handled = true;
|
|
}
|
|
else if (etype == EVT_MODAL_MAP) {
|
|
switch (eval) {
|
|
case BEV_MODAL_CANCEL:
|
|
edbm_bevel_cancel(C, op);
|
|
ED_workspace_status_text(C, NULL);
|
|
return OPERATOR_CANCELLED;
|
|
|
|
case BEV_MODAL_CONFIRM:
|
|
edbm_bevel_calc(op);
|
|
edbm_bevel_exit(C, op);
|
|
ED_workspace_status_text(C, NULL);
|
|
return OPERATOR_FINISHED;
|
|
|
|
case BEV_MODAL_SEGMENTS_UP:
|
|
opdata->segments = opdata->segments + 1;
|
|
RNA_int_set(op->ptr, "segments", (int)opdata->segments);
|
|
edbm_bevel_calc(op);
|
|
edbm_bevel_update_header(C, op);
|
|
handled = true;
|
|
break;
|
|
|
|
case BEV_MODAL_SEGMENTS_DOWN:
|
|
opdata->segments = max_ff(opdata->segments - 1, 1);
|
|
RNA_int_set(op->ptr, "segments", (int)opdata->segments);
|
|
edbm_bevel_calc(op);
|
|
edbm_bevel_update_header(C, op);
|
|
handled = true;
|
|
break;
|
|
|
|
case BEV_MODAL_OFFSET_MODE_CHANGE:
|
|
{
|
|
int type = RNA_enum_get(op->ptr, "offset_type");
|
|
type++;
|
|
if (type > BEVEL_AMT_PERCENT) {
|
|
type = BEVEL_AMT_OFFSET;
|
|
}
|
|
if (opdata->value_mode == OFFSET_VALUE && type == BEVEL_AMT_PERCENT)
|
|
opdata->value_mode = OFFSET_VALUE_PERCENT;
|
|
else if (opdata->value_mode == OFFSET_VALUE_PERCENT && type != BEVEL_AMT_PERCENT)
|
|
opdata->value_mode = OFFSET_VALUE;
|
|
RNA_enum_set(op->ptr, "offset_type", type);
|
|
if (opdata->initial_length[opdata->value_mode] == -1.0f)
|
|
edbm_bevel_calc_initial_length(op, event, true);
|
|
}
|
|
/* Update offset accordingly to new offset_type. */
|
|
if (!has_numinput &&
|
|
(opdata->value_mode == OFFSET_VALUE || opdata->value_mode == OFFSET_VALUE_PERCENT))
|
|
{
|
|
edbm_bevel_mouse_set_value(op, event);
|
|
}
|
|
edbm_bevel_calc(op);
|
|
edbm_bevel_update_header(C, op);
|
|
handled = true;
|
|
break;
|
|
|
|
case BEV_MODAL_CLAMP_OVERLAP_TOGGLE:
|
|
{
|
|
bool clamp_overlap = RNA_boolean_get(op->ptr, "clamp_overlap");
|
|
RNA_boolean_set(op->ptr, "clamp_overlap", !clamp_overlap);
|
|
edbm_bevel_calc(op);
|
|
edbm_bevel_update_header(C, op);
|
|
handled = true;
|
|
break;
|
|
}
|
|
|
|
case BEV_MODAL_VALUE_OFFSET:
|
|
opdata->value_mode = OFFSET_VALUE;
|
|
edbm_bevel_calc_initial_length(op, event, true);
|
|
break;
|
|
|
|
case BEV_MODAL_VALUE_PROFILE:
|
|
opdata->value_mode = PROFILE_VALUE;
|
|
edbm_bevel_calc_initial_length(op, event, true);
|
|
break;
|
|
|
|
case BEV_MODAL_VALUE_SEGMENTS:
|
|
opdata->value_mode = SEGMENTS_VALUE;
|
|
edbm_bevel_calc_initial_length(op, event, true);
|
|
break;
|
|
|
|
case BEV_MODAL_VERTEX_ONLY_TOGGLE:
|
|
{
|
|
bool vertex_only = RNA_boolean_get(op->ptr, "vertex_only");
|
|
RNA_boolean_set(op->ptr, "vertex_only", !vertex_only);
|
|
edbm_bevel_calc(op);
|
|
edbm_bevel_update_header(C, op);
|
|
handled = true;
|
|
break;
|
|
}
|
|
|
|
case BEV_MODAL_MARK_SEAM_TOGGLE:
|
|
{
|
|
bool mark_seam = RNA_boolean_get(op->ptr, "mark_seam");
|
|
RNA_boolean_set(op->ptr, "mark_seam", !mark_seam);
|
|
edbm_bevel_calc(op);
|
|
edbm_bevel_update_header(C, op);
|
|
handled = true;
|
|
break;
|
|
}
|
|
|
|
case BEV_MODAL_MARK_SHARP_TOGGLE:
|
|
{
|
|
bool mark_sharp = RNA_boolean_get(op->ptr, "mark_sharp");
|
|
RNA_boolean_set(op->ptr, "mark_sharp", !mark_sharp);
|
|
edbm_bevel_calc(op);
|
|
edbm_bevel_update_header(C, op);
|
|
handled = true;
|
|
break;
|
|
}
|
|
|
|
case BEV_MODAL_INNER_MITER_CHANGE:
|
|
{
|
|
int miter_inner = RNA_enum_get(op->ptr, "miter_inner");
|
|
miter_inner++;
|
|
if (miter_inner == BEVEL_MITER_PATCH)
|
|
miter_inner++; /* no patch option for inner miter */
|
|
if (miter_inner > BEVEL_MITER_ARC)
|
|
miter_inner = BEVEL_MITER_SHARP;
|
|
RNA_enum_set(op->ptr, "miter_inner", miter_inner);
|
|
edbm_bevel_calc(op);
|
|
edbm_bevel_update_header(C, op);
|
|
handled = true;
|
|
break;
|
|
}
|
|
|
|
case BEV_MODAL_OUTER_MITER_CHANGE:
|
|
{
|
|
int miter_outer = RNA_enum_get(op->ptr, "miter_outer");
|
|
miter_outer++;
|
|
if (miter_outer > BEVEL_MITER_ARC)
|
|
miter_outer = BEVEL_MITER_SHARP;
|
|
RNA_enum_set(op->ptr, "miter_outer", miter_outer);
|
|
edbm_bevel_calc(op);
|
|
edbm_bevel_update_header(C, op);
|
|
handled = true;
|
|
break;
|
|
}
|
|
|
|
case BEV_MODAL_HARDEN_NORMALS_TOGGLE:
|
|
{
|
|
bool harden_normals = RNA_boolean_get(op->ptr, "harden_normals");
|
|
RNA_boolean_set(op->ptr, "harden_normals", !harden_normals);
|
|
edbm_bevel_calc(op);
|
|
edbm_bevel_update_header(C, op);
|
|
handled = true;
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
|
|
/* Modal numinput inactive, try to handle numeric inputs last... */
|
|
if (!handled && eval == KM_PRESS && handleNumInput(C, &opdata->num_input[opdata->value_mode], event)) {
|
|
edbm_bevel_numinput_set_value(op);
|
|
edbm_bevel_calc(op);
|
|
edbm_bevel_update_header(C, op);
|
|
return OPERATOR_RUNNING_MODAL;
|
|
}
|
|
|
|
return OPERATOR_RUNNING_MODAL;
|
|
}
|
|
|
|
void MESH_OT_bevel(wmOperatorType *ot)
|
|
{
|
|
PropertyRNA *prop;
|
|
|
|
static const EnumPropertyItem offset_type_items[] = {
|
|
{BEVEL_AMT_OFFSET, "OFFSET", 0, "Offset", "Amount is offset of new edges from original"},
|
|
{BEVEL_AMT_WIDTH, "WIDTH", 0, "Width", "Amount is width of new face"},
|
|
{BEVEL_AMT_DEPTH, "DEPTH", 0, "Depth", "Amount is perpendicular distance from original edge to bevel face"},
|
|
{BEVEL_AMT_PERCENT, "PERCENT", 0, "Percent", "Amount is percent of adjacent edge length"},
|
|
{0, NULL, 0, NULL, NULL},
|
|
};
|
|
|
|
static const EnumPropertyItem face_strength_mode_items[] = {
|
|
{BEVEL_FACE_STRENGTH_NONE, "NONE", 0, "None", "Do not set face strength"},
|
|
{BEVEL_FACE_STRENGTH_NEW, "NEW", 0, "New", "Set face strength on new faces only"},
|
|
{BEVEL_FACE_STRENGTH_AFFECTED, "AFFECTED", 0, "Affected", "Set face strength on new and modified faces only"},
|
|
{BEVEL_FACE_STRENGTH_ALL, "ALL", 0, "All", "Set face strength on all faces"},
|
|
{0, NULL, 0, NULL, NULL},
|
|
};
|
|
|
|
static const EnumPropertyItem miter_outer_items[] = {
|
|
{BEVEL_MITER_SHARP, "SHARP", 0, "Sharp", "Outside of miter is sharp"},
|
|
{BEVEL_MITER_PATCH, "PATCH", 0, "Patch", "Outside of miter is squared-off patch"},
|
|
{BEVEL_MITER_ARC, "ARC", 0, "Arc", "Outside of miter is arc"},
|
|
{0, NULL, 0, NULL, NULL},
|
|
};
|
|
|
|
static const EnumPropertyItem miter_inner_items[] = {
|
|
{BEVEL_MITER_SHARP, "SHARP", 0, "Sharp", "Inside of miter is sharp"},
|
|
{BEVEL_MITER_ARC, "ARC", 0, "Arc", "Inside of miter is arc"},
|
|
{0, NULL, 0, NULL, NULL},
|
|
};
|
|
|
|
/* identifiers */
|
|
ot->name = "Bevel";
|
|
ot->description = "Edge Bevel";
|
|
ot->idname = "MESH_OT_bevel";
|
|
|
|
/* api callbacks */
|
|
ot->exec = edbm_bevel_exec;
|
|
ot->invoke = edbm_bevel_invoke;
|
|
ot->modal = edbm_bevel_modal;
|
|
ot->cancel = edbm_bevel_cancel;
|
|
ot->poll = ED_operator_editmesh;
|
|
ot->poll_property = edbm_bevel_poll_property;
|
|
|
|
/* flags */
|
|
ot->flag = OPTYPE_REGISTER | OPTYPE_UNDO | OPTYPE_GRAB_CURSOR | OPTYPE_BLOCKING;
|
|
|
|
RNA_def_enum(ot->srna, "offset_type", offset_type_items, 0, "Width Type", "What distance Width measures");
|
|
prop = RNA_def_property(ot->srna, "offset", PROP_FLOAT, PROP_DISTANCE);
|
|
RNA_def_property_range(prop, 0.0, 1e6);
|
|
RNA_def_property_ui_range(prop, 0.0f, 100.0, 1, 3);
|
|
RNA_def_property_ui_text(prop, "Width", "Bevel amount");
|
|
prop = RNA_def_property(ot->srna, "offset_pct", PROP_FLOAT, PROP_PERCENTAGE);
|
|
RNA_def_property_range(prop, 0.0, 100);
|
|
RNA_def_property_ui_text(prop, "Width Percent", "Bevel amount for percentage method");
|
|
RNA_def_int(ot->srna, "segments", 1, 1, SEGMENTS_HARD_MAX, "Segments", "Segments for curved edge", 1, 100);
|
|
RNA_def_float(
|
|
ot->srna, "profile", 0.5f, PROFILE_HARD_MIN, 1.0f, "Profile",
|
|
"Controls profile shape (0.5 = round)", PROFILE_HARD_MIN, 1.0f);
|
|
RNA_def_boolean(ot->srna, "vertex_only", false, "Vertex Only", "Bevel only vertices");
|
|
RNA_def_boolean(
|
|
ot->srna, "clamp_overlap", false, "Clamp Overlap",
|
|
"Do not allow beveled edges/vertices to overlap each other");
|
|
RNA_def_boolean(ot->srna, "loop_slide", true, "Loop Slide", "Prefer slide along edge to even widths");
|
|
RNA_def_boolean(ot->srna, "mark_seam", false, "Mark Seams", "Mark Seams along beveled edges");
|
|
RNA_def_boolean(ot->srna, "mark_sharp", false, "Mark Sharp", "Mark beveled edges as sharp");
|
|
RNA_def_int(
|
|
ot->srna, "material", -1, -1, INT_MAX, "Material",
|
|
"Material for bevel faces (-1 means use adjacent faces)", -1, 100);
|
|
RNA_def_boolean(
|
|
ot->srna, "harden_normals", false, "Harden Normals",
|
|
"Match normals of new faces to adjacent faces");
|
|
RNA_def_enum(
|
|
ot->srna, "face_strength_mode", face_strength_mode_items, BEVEL_FACE_STRENGTH_NONE,
|
|
"Face Strength Mode", "Whether to set face strength, and which faces to set face strength on");
|
|
RNA_def_enum(
|
|
ot->srna, "miter_outer", miter_outer_items, BEVEL_MITER_SHARP,
|
|
"Outer Miter", "Pattern to use for outside of miters");
|
|
RNA_def_enum(
|
|
ot->srna, "miter_inner", miter_inner_items, BEVEL_MITER_SHARP,
|
|
"Inner Miter", "Pattern to use for inside of miters");
|
|
RNA_def_float(
|
|
ot->srna, "spread", 0.1f, 0.0f, 1e6f, "Spread",
|
|
"Amount to spread arcs for arc inner miters", 0.0f, 100.0f);
|
|
prop = RNA_def_boolean(ot->srna, "release_confirm", 0, "Confirm on Release", "");
|
|
RNA_def_property_flag(prop, PROP_HIDDEN | PROP_SKIP_SAVE);
|
|
|
|
}
|