1164 lines
27 KiB
C
1164 lines
27 KiB
C
#include <xcb/xcb.h>
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#include <xcb-imdkit/imdkit.h>
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typedef struct Icbinding Icbinding;
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struct Icbinding
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{
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xcb_im_input_context_t *ic;
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void *data;
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xcb_window_t clientwin;
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xcb_window_t focuswin;
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uint32_t preattrmask;
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xcb_im_preedit_attr_t preattr;
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};
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static Icbinding icbindings[8];
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static Icbinding*
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wirebinding(xcb_im_input_context_t *ic)
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{
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int i;
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for(i = 0; i < 8; i++)
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if(icbindings[i].ic == ic)
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return &icbindings[i];
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return 0;
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}
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static void wirecommit(xcb_im_t*, xcb_im_input_context_t*, uint32_t,
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const char*, uint32_t, uint32_t);
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static void wirestart(xcb_im_t*, xcb_im_input_context_t*);
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static void wiredraw(xcb_im_t*, xcb_im_input_context_t*,
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xcb_im_preedit_draw_fr_t*);
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static void wiredone(xcb_im_t*, xcb_im_input_context_t*);
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static xcb_get_geometry_cookie_t wiregeometry(xcb_connection_t*, xcb_drawable_t);
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static xcb_get_geometry_reply_t* wiregeometryreply(xcb_connection_t*,
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xcb_get_geometry_cookie_t, xcb_generic_error_t**);
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static xcb_translate_coordinates_cookie_t wiretranslate(xcb_connection_t*,
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xcb_window_t, xcb_window_t, int16_t, int16_t);
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static xcb_translate_coordinates_reply_t* wiretranslatereply(xcb_connection_t*,
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xcb_translate_coordinates_cookie_t, xcb_generic_error_t**);
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static int wireflush(xcb_connection_t*);
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#define xcb_im_commit_string wirecommit
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#define xcb_im_preedit_start_callback wirestart
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#define xcb_im_preedit_draw_callback wiredraw
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#define xcb_im_preedit_done_callback wiredone
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#define xcb_im_input_context_get_data(ic) \
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(wirebinding(ic) == nil ? nil : wirebinding(ic)->data)
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#define xcb_im_input_context_get_client_window(ic) \
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(wirebinding(ic) == nil ? XCB_NONE : wirebinding(ic)->clientwin)
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#define xcb_im_input_context_get_focus_window(ic) \
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(wirebinding(ic) == nil ? XCB_NONE : wirebinding(ic)->focuswin)
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#define xcb_im_input_context_get_preedit_attr_mask(ic) \
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(wirebinding(ic) == nil ? 0 : wirebinding(ic)->preattrmask)
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#define xcb_im_input_context_get_preedit_attr(ic) \
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(wirebinding(ic) == nil ? nil : &wirebinding(ic)->preattr)
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#define xcb_get_geometry wiregeometry
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#define xcb_get_geometry_reply wiregeometryreply
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#define xcb_translate_coordinates wiretranslate
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#define xcb_translate_coordinates_reply wiretranslatereply
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#define xcb_flush wireflush
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#include "xim/xim.c"
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#undef xcb_im_commit_string
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#undef xcb_im_preedit_start_callback
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#undef xcb_im_preedit_draw_callback
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#undef xcb_im_preedit_done_callback
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#undef xcb_im_input_context_get_data
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#undef xcb_im_input_context_get_client_window
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#undef xcb_im_input_context_get_focus_window
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#undef xcb_im_input_context_get_preedit_attr_mask
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#undef xcb_im_input_context_get_preedit_attr
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#undef xcb_get_geometry
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#undef xcb_get_geometry_reply
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#undef xcb_translate_coordinates
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#undef xcb_translate_coordinates_reply
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#undef xcb_flush
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#include "cutest/cutest.h"
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enum
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{
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Wstart,
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Wdraw,
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Wdone,
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Wcommit,
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Maxwire = 8,
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};
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typedef struct Wirecall Wirecall;
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struct Wirecall
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{
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int op;
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xcb_im_input_context_t *ic;
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u32int caret;
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u32int first;
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u32int changed;
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u32int status;
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u32int flag;
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u32int keysym;
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int nbyte;
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int nfeedback;
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uchar text[Maxutf];
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u32int feedback[Maxrunes];
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};
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typedef struct Wirewin Wirewin;
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struct Wirewin
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{
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xcb_window_t win;
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int geometryok;
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int translateok;
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int rootx;
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int rooty;
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int height;
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};
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static Wirecall wirecalls[Maxwire];
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static Wirewin wirewins[8];
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static int nwirecalls;
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static int nflush;
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static int transx, transy;
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static Wirecall*
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newwire(int op, xcb_im_input_context_t *ic)
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{
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Wirecall *call;
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if(nwirecalls >= nelem(wirecalls))
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return nil;
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call = &wirecalls[nwirecalls++];
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memset(call, 0, sizeof *call);
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call->op = op;
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call->ic = ic;
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return call;
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}
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static void
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wirecommit(xcb_im_t *im, xcb_im_input_context_t *ic, uint32_t flag,
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const char *text, uint32_t nbyte, uint32_t keysym)
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{
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Wirecall *call;
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USED(im);
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call = newwire(Wcommit, ic);
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if(call == nil)
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return;
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call->flag = flag;
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call->keysym = keysym;
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call->nbyte = min(nbyte, sizeof call->text);
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if(call->nbyte > 0)
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memmove(call->text, text, call->nbyte);
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}
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static void
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wirestart(xcb_im_t *im, xcb_im_input_context_t *ic)
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{
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USED(im);
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newwire(Wstart, ic);
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}
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static void
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wiredraw(xcb_im_t *im, xcb_im_input_context_t *ic,
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xcb_im_preedit_draw_fr_t *frame)
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{
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Wirecall *call;
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USED(im);
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call = newwire(Wdraw, ic);
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if(call == nil)
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return;
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call->caret = frame->caret;
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call->first = frame->chg_first;
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call->changed = frame->chg_length;
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call->status = frame->status;
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call->nbyte = min(frame->length_of_preedit_string,
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sizeof call->text);
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if(call->nbyte > 0)
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memmove(call->text, frame->preedit_string, call->nbyte);
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call->nfeedback = min(frame->feedback_array.size,
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nelem(call->feedback));
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if(call->nfeedback > 0)
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memmove(call->feedback, frame->feedback_array.items,
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call->nfeedback * sizeof call->feedback[0]);
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}
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static void
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wiredone(xcb_im_t *im, xcb_im_input_context_t *ic)
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{
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USED(im);
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newwire(Wdone, ic);
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}
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static Wirewin*
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wirewindow(xcb_window_t win)
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{
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int i;
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for(i = 0; i < nelem(wirewins); i++)
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if(wirewins[i].win == win)
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return &wirewins[i];
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return nil;
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}
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static xcb_get_geometry_cookie_t
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wiregeometry(xcb_connection_t *c, xcb_drawable_t drawable)
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{
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xcb_get_geometry_cookie_t cookie;
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USED(c);
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cookie.sequence = drawable;
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return cookie;
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}
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static xcb_get_geometry_reply_t*
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wiregeometryreply(xcb_connection_t *c, xcb_get_geometry_cookie_t cookie,
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xcb_generic_error_t **error)
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{
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xcb_get_geometry_reply_t *reply;
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Wirewin *w;
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USED(c);
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USED(error);
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w = wirewindow(cookie.sequence);
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if(w == nil || !w->geometryok)
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return nil;
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reply = calloc(1, sizeof *reply);
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if(reply != nil)
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reply->height = w->height;
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return reply;
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}
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static xcb_translate_coordinates_cookie_t
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wiretranslate(xcb_connection_t *c, xcb_window_t src, xcb_window_t dst,
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int16_t x, int16_t y)
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{
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xcb_translate_coordinates_cookie_t cookie;
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USED(c);
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USED(dst);
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cookie.sequence = src;
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transx = x;
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transy = y;
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return cookie;
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}
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static xcb_translate_coordinates_reply_t*
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wiretranslatereply(xcb_connection_t *c,
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xcb_translate_coordinates_cookie_t cookie, xcb_generic_error_t **error)
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{
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xcb_translate_coordinates_reply_t *reply;
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Wirewin *w;
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USED(c);
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USED(error);
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w = wirewindow(cookie.sequence);
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if(w == nil || !w->translateok)
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return nil;
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reply = calloc(1, sizeof *reply);
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if(reply != nil){
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reply->same_screen = 1;
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reply->dst_x = w->rootx + transx;
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reply->dst_y = w->rooty + transy;
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}
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return reply;
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}
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static int
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wireflush(xcb_connection_t *c)
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{
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USED(c);
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nflush++;
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return 1;
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}
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static void
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wireclear(void)
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{
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memset(wirecalls, 0, sizeof wirecalls);
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memset(icbindings, 0, sizeof icbindings);
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memset(wirewins, 0, sizeof wirewins);
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nwirecalls = 0;
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nflush = 0;
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transx = transy = 0;
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preowner = nil;
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}
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static void
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wirebind(int n, xcb_im_input_context_t *ic, Ic *state)
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{
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icbindings[n].ic = ic;
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icbindings[n].data = state;
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}
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static Wirewin*
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wirewin(int n, xcb_window_t win, int x, int y, int h)
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{
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Wirewin *w;
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w = &wirewins[n];
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memset(w, 0, sizeof *w);
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w->win = win;
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w->geometryok = 1;
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w->translateok = 1;
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w->rootx = x;
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w->rooty = y;
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w->height = h;
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return w;
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}
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void testengineinit(int);
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void testenginehandle(Keyreq*);
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void* testengineowner(void);
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void testenginepreedit(Str*);
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typedef struct Ximfix Ximfix;
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struct Ximfix
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{
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Channel *oldreply;
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Channel *trace;
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Channel *stop;
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Channel *done;
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Channel *waiting;
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Channel *ack;
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int holdrelease;
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int pumpactive;
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};
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typedef struct Freejob Freejob;
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struct Freejob
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{
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Ic *state;
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Channel *done;
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};
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static void
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enginepump(void *arg)
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{
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Ximfix *f;
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Keyreq req;
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uchar token;
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Alt alts[] = {
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{keyc, &req, CHANRCV, nil},
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{nil, &token, CHANRCV, nil},
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{nil, nil, CHANEND, nil},
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};
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f = arg;
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alts[1].c = f->stop;
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for(;;)
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switch(alt(alts)){
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case 0:
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chansend(f->trace, &req);
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if(f->holdrelease && req.op == Keyrelease){
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token = 0;
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chansend(f->waiting, &token);
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chanrecv(f->ack, &token);
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}
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testenginehandle(&req);
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break;
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case 1:
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chansend(f->done, &token);
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return;
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}
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}
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static int
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ximbegin(struct ct *t, Ximfix *f, int lang)
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{
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Drawcmd dc;
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memset(f, 0, sizeof *f);
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while(channbrecv(drawc, &dc) > 0)
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;
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testengineinit(lang);
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f->oldreply = replyc;
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replyc = chancreate(sizeof(Keyres), 0);
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f->trace = chancreate(sizeof(Keyreq), 16);
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f->stop = chancreate(sizeof(uchar), 0);
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f->done = chancreate(sizeof(uchar), 0);
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f->waiting = chancreate(sizeof(uchar), 0);
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f->ack = chancreate(sizeof(uchar), 0);
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f->pumpactive = threadcreate(enginepump, f, 8192) >= 0;
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return CT_CHECK(t, replyc != nil && f->trace != nil &&
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f->stop != nil && f->done != nil && f->waiting != nil &&
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f->ack != nil && f->pumpactive);
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}
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static void
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ximend(Ximfix *f)
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{
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Drawcmd dc;
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uchar token;
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if(f->pumpactive){
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token = 0;
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chansend(f->stop, &token);
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chanrecv(f->done, &token);
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}
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testengineinit(LangEN);
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while(channbrecv(drawc, &dc) > 0)
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;
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chanfree(replyc);
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replyc = f->oldreply;
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chanfree(f->trace);
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chanfree(f->stop);
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chanfree(f->done);
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chanfree(f->waiting);
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chanfree(f->ack);
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}
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static Keyreq
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nexttrace(struct ct *t, Ximfix *f, int op, Ic *state)
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{
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Keyreq req;
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memset(&req, 0, sizeof req);
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if(!CT_CHECK(t, channbrecv(f->trace, &req) > 0))
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return req;
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CT_EQ_INT(t, op, req.op);
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CT_EQ_PTR(t, state, req.owner);
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CT_EQ_INT(t, state->cap, req.cap);
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CT_EQ_PTR(t, replyc, req.reply);
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return req;
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}
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static void
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notrace(struct ct *t, Ximfix *f)
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{
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Keyreq req;
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CT_CHECK(t, channbrecv(f->trace, &req) <= 0);
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}
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static void
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checkstr(struct ct *t, char *want, Str *got)
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{
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char buf[Maxutf];
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stoutf(got, buf, sizeof buf);
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CT_EQ_STR(t, want, buf);
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}
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|
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static void
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checkenginepreedit(struct ct *t, char *want)
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{
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Str preedit;
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testenginepreedit(&preedit);
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checkstr(t, want, &preedit);
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}
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|
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void
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xim_adapter_key_contract(struct ct *t)
|
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{
|
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Ximfix f;
|
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Ic state;
|
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Keyreq req;
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Keyres res;
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u32int allmod;
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memset(&state, 0, sizeof state);
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if(!ximbegin(t, &f, LangJP))
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goto cleanup;
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allmod = ~0;
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keypress(&state, 'x', allmod, &res);
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req = nexttrace(t, &f, Keypress, &state);
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CT_EQ_UINT(t, Mmask, req.mod);
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CT_CHECK(t, !res.eaten);
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keypress(&state, 'k', 0, &res);
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req = nexttrace(t, &f, Keypress, &state);
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CT_EQ_UINT(t, 0, req.mod);
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CT_CHECK(t, res.eaten);
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keypress(&state, 'a', 0, &res);
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nexttrace(t, &f, Keypress, &state);
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CT_CHECK(t, res.eaten);
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checkstr(t, "か", &res.preedit);
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keypress(&state, Kspec|0x55, 0, &res);
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nexttrace(t, &f, Keypress, &state);
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CT_CHECK(t, !res.eaten);
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checkstr(t, "か", &res.commit);
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checkstr(t, "", &res.preedit);
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cleanup:
|
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ximend(&f);
|
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}
|
|
|
|
void
|
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xim_adapter_release_lifecycle(struct ct *t)
|
|
{
|
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Ximfix f;
|
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Ic a, b, *dead;
|
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Keyres res;
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|
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memset(&a, 0, sizeof a);
|
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memset(&b, 0, sizeof b);
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dead = nil;
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if(!ximbegin(t, &f, LangJP))
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goto cleanup;
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keypress(&a, 'k', 0, &res);
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nexttrace(t, &f, Keypress, &a);
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keypress(&a, 'a', 0, &res);
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nexttrace(t, &f, Keypress, &a);
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keypress(&b, 'n', 0, &res);
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nexttrace(t, &f, Keypress, &b);
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checkstr(t, "ん", &res.preedit);
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CT_EQ_PTR(t, &b, testengineowner());
|
|
|
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/* ResetIC and focus loss use the same idempotent release path. */
|
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release(&a);
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nexttrace(t, &f, Keyrelease, &a);
|
|
checkenginepreedit(t, "ん");
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CT_EQ_PTR(t, &b, testengineowner());
|
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release(&a);
|
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notrace(t, &f);
|
|
|
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release(&b);
|
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nexttrace(t, &f, Keyrelease, &b);
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CT_EQ_PTR(t, nil, testengineowner());
|
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keypress(&b, 'k', 0, &res);
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nexttrace(t, &f, Keypress, &b);
|
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release(&b);
|
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nexttrace(t, &f, Keyrelease, &b);
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release(&b);
|
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notrace(t, &f);
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|
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dead = calloc(1, sizeof *dead);
|
|
if(!CT_CHECK(t, dead != nil))
|
|
goto cleanup;
|
|
dead->next = ics;
|
|
ics = dead;
|
|
keypress(dead, 'n', 0, &res);
|
|
nexttrace(t, &f, Keypress, dead);
|
|
CT_EQ_PTR(t, dead, testengineowner());
|
|
icfree(dead);
|
|
nexttrace(t, &f, Keyrelease, dead);
|
|
dead = nil;
|
|
CT_EQ_PTR(t, nil, ics);
|
|
CT_EQ_PTR(t, nil, testengineowner());
|
|
cleanup:
|
|
if(dead != nil){
|
|
icunlink(dead);
|
|
free(dead);
|
|
}
|
|
ximend(&f);
|
|
}
|
|
|
|
static void
|
|
freeworker(void *arg)
|
|
{
|
|
Freejob *job;
|
|
uchar token;
|
|
|
|
job = arg;
|
|
icfree(job->state);
|
|
token = 0;
|
|
chansend(job->done, &token);
|
|
}
|
|
|
|
void
|
|
xim_adapter_free_waits_for_release(struct ct *t)
|
|
{
|
|
Ximfix f;
|
|
Freejob job;
|
|
Ic *state;
|
|
Channel *freed;
|
|
Keyres res;
|
|
uchar token;
|
|
int workeractive;
|
|
|
|
state = nil;
|
|
freed = nil;
|
|
workeractive = 0;
|
|
if(!ximbegin(t, &f, LangJP))
|
|
goto cleanup;
|
|
state = calloc(1, sizeof *state);
|
|
freed = chancreate(sizeof(uchar), 0);
|
|
if(!CT_CHECK(t, state != nil && freed != nil))
|
|
goto cleanup;
|
|
state->next = ics;
|
|
ics = state;
|
|
keypress(state, 'n', 0, &res);
|
|
nexttrace(t, &f, Keypress, state);
|
|
f.holdrelease = 1;
|
|
job.state = state;
|
|
job.done = freed;
|
|
workeractive = threadcreate(freeworker, &job, 8192) >= 0;
|
|
if(!CT_CHECK(t, workeractive))
|
|
goto cleanup;
|
|
chanrecv(f.waiting, &token);
|
|
nexttrace(t, &f, Keyrelease, state);
|
|
CT_CHECK(t, channbrecv(freed, &token) <= 0);
|
|
CT_EQ_PTR(t, state, ics);
|
|
CT_EQ_PTR(t, state, testengineowner());
|
|
chansend(f.ack, &token);
|
|
chanrecv(freed, &token);
|
|
workeractive = 0;
|
|
state = nil;
|
|
CT_EQ_PTR(t, nil, ics);
|
|
CT_EQ_PTR(t, nil, testengineowner());
|
|
cleanup:
|
|
if(workeractive){
|
|
chansend(f.ack, &token);
|
|
chanrecv(freed, &token);
|
|
state = nil;
|
|
}
|
|
if(state != nil){
|
|
icunlink(state);
|
|
free(state);
|
|
}
|
|
if(freed != nil)
|
|
chanfree(freed);
|
|
ximend(&f);
|
|
}
|
|
|
|
void
|
|
xim_adapter_styles(struct ct *t)
|
|
{
|
|
static u32int want[] = {
|
|
XCB_IM_PreeditPosition | XCB_IM_StatusNothing,
|
|
XCB_IM_PreeditCallbacks | XCB_IM_StatusNothing,
|
|
XCB_IM_PreeditNothing | XCB_IM_StatusNothing,
|
|
};
|
|
Ic state;
|
|
int cap, i;
|
|
|
|
CT_EQ_SIZE(t, nelem(want), nelem(styles));
|
|
for(i = 0; i < nelem(want); i++){
|
|
CT_EQ_UINT(t, want[i], styles[i]);
|
|
CT_CHECK(t, stylecap(want[i], &cap));
|
|
CT_EQ_INT(t, i == 1 ? Cclientpreedit : 0, cap);
|
|
}
|
|
CT_CHECK(t, !stylecap(XCB_IM_PreeditNone | XCB_IM_StatusNothing,
|
|
&cap));
|
|
CT_CHECK(t, !stylecap(XCB_IM_PreeditCallbacks | XCB_IM_StatusCallbacks,
|
|
&cap));
|
|
CT_EQ_INT(t, 0, cap);
|
|
memset(&state, 0, sizeof state);
|
|
setstyle(&state, XCB_IM_PreeditNone | XCB_IM_StatusNothing);
|
|
CT_EQ_UINT(t, XCB_IM_PreeditNothing | XCB_IM_StatusNothing,
|
|
state.style);
|
|
CT_EQ_INT(t, 0, state.cap);
|
|
setstyle(&state, XCB_IM_PreeditCallbacks | XCB_IM_StatusNothing);
|
|
CT_EQ_INT(t, Cclientpreedit, state.cap);
|
|
}
|
|
|
|
void
|
|
xim_adapter_placement(struct ct *t)
|
|
{
|
|
static const struct {
|
|
u32int style;
|
|
u32int mask;
|
|
int fgeo;
|
|
int ftrans;
|
|
int cgeo;
|
|
int ctrans;
|
|
int valid;
|
|
int x;
|
|
int y;
|
|
} cases[] = {
|
|
{XCB_IM_PreeditPosition | XCB_IM_StatusNothing,
|
|
XCB_XIM_XNSpotLocation_MASK, 1, 1, 1, 1, 1, 103, 204},
|
|
{XCB_IM_PreeditPosition | XCB_IM_StatusNothing,
|
|
XCB_XIM_XNSpotLocation_MASK, 1, 0, 1, 1, 1, 300, 440},
|
|
{XCB_IM_PreeditPosition | XCB_IM_StatusNothing,
|
|
0, 1, 1, 1, 1, 1, 100, 230},
|
|
{XCB_IM_PreeditNothing | XCB_IM_StatusNothing,
|
|
XCB_XIM_XNSpotLocation_MASK, 1, 1, 1, 1, 1, 100, 230},
|
|
{XCB_IM_PreeditPosition | XCB_IM_StatusNothing,
|
|
0, 0, 1, 1, 1, 1, 300, 440},
|
|
{XCB_IM_PreeditPosition | XCB_IM_StatusNothing,
|
|
0, 0, 1, 0, 1, 0, 0, 0},
|
|
};
|
|
xcb_im_input_context_t *ic;
|
|
Icbinding *b;
|
|
Wirewin *focus, *client;
|
|
Ic state;
|
|
int i;
|
|
|
|
ic = (xcb_im_input_context_t*)(uintptr)70;
|
|
for(i = 0; i < nelem(cases); i++){
|
|
wireclear();
|
|
memset(&state, 0, sizeof state);
|
|
state.xic = ic;
|
|
state.style = cases[i].style;
|
|
state.caret.valid = 1;
|
|
state.caret.x = state.caret.y = 9;
|
|
wirebind(0, ic, &state);
|
|
b = &icbindings[0];
|
|
b->focuswin = 10;
|
|
b->clientwin = 20;
|
|
b->preattrmask = cases[i].mask;
|
|
b->preattr.spot_location.x = 3;
|
|
b->preattr.spot_location.y = 4;
|
|
focus = wirewin(0, 10, 100, 200, 30);
|
|
client = wirewin(1, 20, 300, 400, 40);
|
|
focus->geometryok = cases[i].fgeo;
|
|
focus->translateok = cases[i].ftrans;
|
|
client->geometryok = cases[i].cgeo;
|
|
client->translateok = cases[i].ctrans;
|
|
refreshplace(&state);
|
|
CT_EQ_UINT(t, 10, state.focuswin);
|
|
CT_EQ_UINT(t, 20, state.clientwin);
|
|
CT_EQ_INT(t, cases[i].style ==
|
|
(XCB_IM_PreeditPosition | XCB_IM_StatusNothing) &&
|
|
cases[i].mask != 0, state.hasspot);
|
|
CT_EQ_INT(t, cases[i].valid, state.caret.valid);
|
|
CT_EQ_INT(t, cases[i].x, state.caret.x);
|
|
CT_EQ_INT(t, cases[i].y, state.caret.y);
|
|
CT_EQ_INT(t, 0, state.caret.h);
|
|
}
|
|
}
|
|
|
|
void
|
|
xim_adapter_placement_updates(struct ct *t)
|
|
{
|
|
xcb_im_packet_header_fr_t hdr;
|
|
xcb_im_input_context_t *ic;
|
|
xcb_key_press_event_t ev;
|
|
Icbinding *b;
|
|
Ximfix f;
|
|
Keyreq req;
|
|
Ic state;
|
|
xcb_keysym_t key, *oldkmap;
|
|
uint8_t oldmin, oldmax, oldper;
|
|
|
|
ic = (xcb_im_input_context_t*)(uintptr)71;
|
|
memset(&state, 0, sizeof state);
|
|
oldkmap = kmap;
|
|
oldmin = minkc;
|
|
oldmax = maxkc;
|
|
oldper = symsper;
|
|
if(!ximbegin(t, &f, LangJP))
|
|
goto cleanup;
|
|
wireclear();
|
|
state.xic = ic;
|
|
state.style = XCB_IM_PreeditPosition | XCB_IM_StatusNothing;
|
|
wirebind(0, ic, &state);
|
|
b = &icbindings[0];
|
|
b->focuswin = 11;
|
|
b->clientwin = 21;
|
|
b->preattrmask = XCB_XIM_XNSpotLocation_MASK;
|
|
b->preattr.spot_location.x = 5;
|
|
b->preattr.spot_location.y = 6;
|
|
wirewin(0, 11, 100, 200, 30);
|
|
key = 'n';
|
|
kmap = &key;
|
|
minkc = maxkc = 8;
|
|
symsper = 1;
|
|
memset(&ev, 0, sizeof ev);
|
|
ev.detail = 8;
|
|
kpress(&state, &ev);
|
|
req = nexttrace(t, &f, Keypress, &state);
|
|
CT_CHECK(t, req.caret.valid);
|
|
CT_EQ_INT(t, 105, req.caret.x);
|
|
CT_EQ_INT(t, 206, req.caret.y);
|
|
wirewins[0].rootx = 150;
|
|
wirewins[0].rooty = 250;
|
|
kpress(&state, &ev);
|
|
req = nexttrace(t, &f, Keypress, &state);
|
|
CT_EQ_INT(t, 155, req.caret.x);
|
|
CT_EQ_INT(t, 256, req.caret.y);
|
|
|
|
b->preattr.spot_location.x = 15;
|
|
b->preattr.spot_location.y = 16;
|
|
memset(&hdr, 0, sizeof hdr);
|
|
hdr.major_opcode = XCB_XIM_SET_IC_VALUES;
|
|
callback(nil, nil, ic, &hdr, nil, nil, nil);
|
|
req = nexttrace(t, &f, Keycaret, &state);
|
|
CT_CHECK(t, req.caret.valid);
|
|
CT_EQ_INT(t, 165, req.caret.x);
|
|
CT_EQ_INT(t, 266, req.caret.y);
|
|
CT_EQ_INT(t, 15, state.spot.x);
|
|
CT_EQ_INT(t, 16, state.spot.y);
|
|
b->preattrmask = 0;
|
|
wirewins[0].geometryok = 0;
|
|
hdr.major_opcode = XCB_XIM_SET_IC_FOCUS;
|
|
callback(nil, nil, ic, &hdr, nil, nil, nil);
|
|
req = nexttrace(t, &f, Keycaret, &state);
|
|
CT_CHECK(t, !req.caret.valid);
|
|
cleanup:
|
|
kmap = oldkmap;
|
|
minkc = oldmin;
|
|
maxkc = oldmax;
|
|
symsper = oldper;
|
|
preowner = nil;
|
|
ximend(&f);
|
|
}
|
|
|
|
void
|
|
xim_adapter_encoding_negotiation(struct ct *t)
|
|
{
|
|
xcb_im_packet_header_fr_t hdr;
|
|
xcb_im_client_t *a, *b;
|
|
u16int selected;
|
|
|
|
a = (xcb_im_client_t*)(uintptr)1;
|
|
b = (xcb_im_client_t*)(uintptr)2;
|
|
memset(clientenc, 0, sizeof clientenc);
|
|
CT_EQ_SIZE(t, 2, nelem(encs));
|
|
CT_EQ_STR(t, "COMPOUND_TEXT", encs[0]);
|
|
CT_EQ_STR(t, "UTF8_STRING", encs[1]);
|
|
memset(&hdr, 0, sizeof hdr);
|
|
hdr.major_opcode = XCB_XIM_ENCODING_NEGOTIATION;
|
|
selected = 1;
|
|
callback(nil, a, nil, &hdr, nil, &selected, nil);
|
|
selected = 0;
|
|
callback(nil, b, nil, &hdr, nil, &selected, nil);
|
|
CT_EQ_INT(t, Eutf8, getencoding(a));
|
|
CT_EQ_INT(t, Ecompound, getencoding(b));
|
|
hdr.major_opcode = XCB_XIM_DISCONNECT;
|
|
callback(nil, a, nil, &hdr, nil, nil, nil);
|
|
CT_EQ_INT(t, Ecompound, getencoding(a));
|
|
CT_EQ_INT(t, Ecompound, getencoding(b));
|
|
hdr.major_opcode = XCB_XIM_CLOSE;
|
|
callback(nil, b, nil, &hdr, nil, nil, nil);
|
|
CT_EQ_PTR(t, nil, clientenc[0].client);
|
|
CT_EQ_PTR(t, nil, clientenc[1].client);
|
|
}
|
|
|
|
void
|
|
xim_adapter_callback_replacement(struct ct *t)
|
|
{
|
|
Ic state;
|
|
Str pre;
|
|
xcb_im_input_context_t *ic;
|
|
int i;
|
|
|
|
ic = (xcb_im_input_context_t*)(uintptr)3;
|
|
memset(&state, 0, sizeof state);
|
|
state.xic = ic;
|
|
state.style = XCB_IM_PreeditCallbacks | XCB_IM_StatusNothing;
|
|
state.encoding = Eutf8;
|
|
wireclear();
|
|
sinit(&pre, "k", strlen("k"));
|
|
updatepreedit(&state, &pre);
|
|
sinit(&pre, "한😀", strlen("한😀"));
|
|
updatepreedit(&state, &pre);
|
|
sclear(&pre);
|
|
updatepreedit(&state, &pre);
|
|
CT_EQ_INT(t, 5, nwirecalls);
|
|
CT_EQ_INT(t, Wstart, wirecalls[0].op);
|
|
CT_EQ_INT(t, Wdraw, wirecalls[1].op);
|
|
CT_EQ_UINT(t, 0, wirecalls[1].first);
|
|
CT_EQ_UINT(t, 0, wirecalls[1].changed);
|
|
CT_EQ_UINT(t, 1, wirecalls[1].caret);
|
|
CT_EQ_INT(t, 1, wirecalls[1].nfeedback);
|
|
CT_EQ_INT(t, Wdraw, wirecalls[2].op);
|
|
CT_EQ_UINT(t, 0, wirecalls[2].first);
|
|
CT_EQ_UINT(t, 1, wirecalls[2].changed);
|
|
CT_EQ_UINT(t, 2, wirecalls[2].caret);
|
|
CT_EQ_INT(t, strlen("한😀"), wirecalls[2].nbyte);
|
|
CT_EQ_MEM(t, "한😀", wirecalls[2].text, wirecalls[2].nbyte);
|
|
CT_EQ_INT(t, 2, wirecalls[2].nfeedback);
|
|
for(i = 0; i < wirecalls[2].nfeedback; i++)
|
|
CT_EQ_UINT(t, XCB_XIM_UNDERLINE, wirecalls[2].feedback[i]);
|
|
CT_EQ_INT(t, Wdraw, wirecalls[3].op);
|
|
CT_EQ_UINT(t, 2, wirecalls[3].changed);
|
|
CT_EQ_UINT(t, 1, wirecalls[3].status);
|
|
CT_EQ_INT(t, 0, wirecalls[3].nbyte);
|
|
CT_EQ_INT(t, Wdone, wirecalls[4].op);
|
|
CT_CHECK(t, !state.prestarted);
|
|
CT_EQ_INT(t, 0, state.nprerune);
|
|
CT_EQ_PTR(t, nil, preowner);
|
|
CT_EQ_INT(t, 1, nflush);
|
|
}
|
|
|
|
void
|
|
xim_adapter_callback_unicode(struct ct *t)
|
|
{
|
|
static char *text[] = {
|
|
"한글",
|
|
"かなカナ",
|
|
"漢字",
|
|
"𠀋",
|
|
"😀",
|
|
"❤️",
|
|
"👩💻",
|
|
};
|
|
Ic state;
|
|
Str pre;
|
|
Wirecall *call;
|
|
char *want;
|
|
size_t nwant;
|
|
int i;
|
|
|
|
xcb_compound_text_init();
|
|
for(i = 0; i < nelem(text); i++){
|
|
memset(&state, 0, sizeof state);
|
|
state.xic = (xcb_im_input_context_t*)(uintptr)(10+i);
|
|
state.style = XCB_IM_PreeditCallbacks | XCB_IM_StatusNothing;
|
|
state.encoding = Eutf8;
|
|
sinit(&pre, text[i], strlen(text[i]));
|
|
wireclear();
|
|
updatepreedit(&state, &pre);
|
|
CT_EQ_INT(t, 2, nwirecalls);
|
|
call = &wirecalls[1];
|
|
CT_EQ_INT(t, Wdraw, call->op);
|
|
CT_EQ_UINT(t, pre.n, call->caret);
|
|
CT_EQ_INT(t, pre.n, call->nfeedback);
|
|
CT_EQ_INT(t, strlen(text[i]), call->nbyte);
|
|
CT_EQ_MEM(t, text[i], call->text, call->nbyte);
|
|
|
|
memset(&state, 0, sizeof state);
|
|
state.xic = (xcb_im_input_context_t*)(uintptr)(20+i);
|
|
state.style = XCB_IM_PreeditCallbacks | XCB_IM_StatusNothing;
|
|
state.encoding = Ecompound;
|
|
wireclear();
|
|
updatepreedit(&state, &pre);
|
|
want = ximcompound(text[i], strlen(text[i]), &nwant);
|
|
if(!CT_CHECK(t, want != nil))
|
|
continue;
|
|
call = &wirecalls[1];
|
|
CT_EQ_SIZE(t, nwant, call->nbyte);
|
|
CT_EQ_MEM(t, want, call->text, nwant);
|
|
CT_EQ_UINT(t, pre.n, call->caret);
|
|
CT_EQ_INT(t, pre.n, call->nfeedback);
|
|
free(want);
|
|
}
|
|
}
|
|
|
|
static void
|
|
startstate(Ic *state, xcb_im_input_context_t *ic)
|
|
{
|
|
Str pre;
|
|
|
|
memset(state, 0, sizeof *state);
|
|
state->xic = ic;
|
|
state->style = XCB_IM_PreeditCallbacks | XCB_IM_StatusNothing;
|
|
state->encoding = Eutf8;
|
|
sinit(&pre, "あ", strlen("あ"));
|
|
updatepreedit(state, &pre);
|
|
}
|
|
|
|
void
|
|
xim_adapter_callback_cleanup(struct ct *t)
|
|
{
|
|
static int opcode[] = {
|
|
XCB_XIM_RESET_IC,
|
|
XCB_XIM_UNSET_IC_FOCUS,
|
|
XCB_XIM_DESTROY_IC,
|
|
};
|
|
xcb_im_packet_header_fr_t hdr;
|
|
xcb_im_client_t *client;
|
|
xcb_im_input_context_t *ic;
|
|
Ic state, *dead;
|
|
int i;
|
|
|
|
for(i = 0; i < nelem(opcode); i++){
|
|
ic = (xcb_im_input_context_t*)(uintptr)(30+i);
|
|
wireclear();
|
|
wirebind(0, ic, &state);
|
|
startstate(&state, ic);
|
|
memset(&hdr, 0, sizeof hdr);
|
|
hdr.major_opcode = opcode[i];
|
|
callback(nil, nil, ic, &hdr, nil, nil, nil);
|
|
CT_EQ_INT(t, 4, nwirecalls);
|
|
CT_EQ_INT(t, Wdraw, wirecalls[2].op);
|
|
CT_EQ_UINT(t, 1, wirecalls[2].changed);
|
|
CT_EQ_INT(t, Wdone, wirecalls[3].op);
|
|
CT_CHECK(t, !state.prestarted);
|
|
CT_EQ_PTR(t, nil, preowner);
|
|
}
|
|
client = (xcb_im_client_t*)(uintptr)40;
|
|
ic = (xcb_im_input_context_t*)(uintptr)40;
|
|
wireclear();
|
|
startstate(&state, ic);
|
|
state.client = client;
|
|
state.next = ics;
|
|
ics = &state;
|
|
hdr.major_opcode = XCB_XIM_DISCONNECT;
|
|
callback(nil, client, nil, &hdr, nil, nil, nil);
|
|
ics = state.next;
|
|
CT_EQ_INT(t, Wdraw, wirecalls[2].op);
|
|
CT_EQ_INT(t, Wdone, wirecalls[3].op);
|
|
CT_CHECK(t, !state.prestarted);
|
|
|
|
ic = (xcb_im_input_context_t*)(uintptr)41;
|
|
wireclear();
|
|
dead = calloc(1, sizeof *dead);
|
|
if(!CT_CHECK(t, dead != nil))
|
|
return;
|
|
dead->next = ics;
|
|
ics = dead;
|
|
startstate(dead, ic);
|
|
icfree(dead);
|
|
CT_EQ_INT(t, 4, nwirecalls);
|
|
CT_EQ_INT(t, Wdraw, wirecalls[2].op);
|
|
CT_EQ_INT(t, Wdone, wirecalls[3].op);
|
|
CT_EQ_PTR(t, nil, preowner);
|
|
}
|
|
|
|
void
|
|
xim_adapter_callback_transfer(struct ct *t)
|
|
{
|
|
Ximfix f;
|
|
Ic a, b;
|
|
xcb_im_input_context_t *aic;
|
|
Keyres res;
|
|
Str pre;
|
|
|
|
aic = (xcb_im_input_context_t*)(uintptr)50;
|
|
memset(&a, 0, sizeof a);
|
|
memset(&b, 0, sizeof b);
|
|
if(!ximbegin(t, &f, LangJP))
|
|
goto cleanup;
|
|
wireclear();
|
|
a.xic = aic;
|
|
a.style = XCB_IM_PreeditCallbacks | XCB_IM_StatusNothing;
|
|
a.encoding = Eutf8;
|
|
sinit(&pre, "あ", strlen("あ"));
|
|
updatepreedit(&a, &pre);
|
|
keypress(&b, 'x', 0, &res);
|
|
nexttrace(t, &f, Keypress, &b);
|
|
CT_EQ_INT(t, 4, nwirecalls);
|
|
CT_EQ_INT(t, Wdraw, wirecalls[2].op);
|
|
CT_EQ_INT(t, Wdone, wirecalls[3].op);
|
|
CT_CHECK(t, !a.prestarted);
|
|
CT_EQ_PTR(t, nil, preowner);
|
|
release(&b);
|
|
nexttrace(t, &f, Keyrelease, &b);
|
|
cleanup:
|
|
preowner = nil;
|
|
ximend(&f);
|
|
}
|
|
|
|
void
|
|
xim_adapter_callback_owner_loss(struct ct *t)
|
|
{
|
|
Ximfix f;
|
|
Ic state;
|
|
xcb_im_input_context_t *ic;
|
|
xcb_im_packet_header_fr_t hdr;
|
|
Keyreq req;
|
|
Keyreq trace;
|
|
Keyres res;
|
|
uchar token;
|
|
int foreign, i, n;
|
|
|
|
ic = (xcb_im_input_context_t*)(uintptr)51;
|
|
memset(&state, 0, sizeof state);
|
|
foreign = 0;
|
|
if(!ximbegin(t, &f, LangJP))
|
|
goto cleanup;
|
|
if(!CT_CHECK(t, wakeinit() == 0))
|
|
goto cleanup;
|
|
wakedrain();
|
|
wireclear();
|
|
wirebind(0, ic, &state);
|
|
state.xic = ic;
|
|
state.style = XCB_IM_PreeditCallbacks | XCB_IM_StatusNothing;
|
|
state.cap = Cclientpreedit;
|
|
state.encoding = Eutf8;
|
|
keypress(&state, 'k', 0, &res);
|
|
nexttrace(t, &f, Keypress, &state);
|
|
updatepreedit(&state, &res.preedit);
|
|
CT_EQ_INT(t, Wstart, wirecalls[0].op);
|
|
CT_EQ_INT(t, Wdraw, wirecalls[1].op);
|
|
CT_EQ_PTR(t, &state, preowner);
|
|
checkownerwake();
|
|
nexttrace(t, &f, Keycap, &state);
|
|
CT_EQ_PTR(t, &state, preowner);
|
|
|
|
memset(&req, 0, sizeof req);
|
|
req.owner = &foreign;
|
|
req.op = Keypress;
|
|
req.ks = 'n';
|
|
req.reply = replyc;
|
|
chansend(keyc, &req);
|
|
chanrecv(replyc, &res);
|
|
memset(&trace, 0, sizeof trace);
|
|
CT_CHECK(t, channbrecv(f.trace, &trace) > 0);
|
|
CT_EQ_INT(t, Keypress, trace.op);
|
|
CT_EQ_PTR(t, &foreign, trace.owner);
|
|
CT_EQ_PTR(t, &foreign, testengineowner());
|
|
/* A full pipe cannot block imthread; all bytes coalesce into one probe. */
|
|
token = 0;
|
|
for(i = 0; i < 1<<20; i++){
|
|
n = write(wakefd[1], &token, 1);
|
|
if(n < 0 && errno == EINTR){
|
|
i--;
|
|
continue;
|
|
}
|
|
if(n < 0)
|
|
break;
|
|
}
|
|
CT_CHECK(t, i < 1<<20);
|
|
CT_CHECK(t, errno == EAGAIN || errno == EWOULDBLOCK);
|
|
ximownernotify();
|
|
CT_CHECK(t, wakedrain() > 0);
|
|
checkpreowner();
|
|
nexttrace(t, &f, Keycap, &state);
|
|
CT_EQ_PTR(t, &foreign, testengineowner());
|
|
CT_EQ_INT(t, 4, nwirecalls);
|
|
CT_EQ_INT(t, Wdraw, wirecalls[2].op);
|
|
CT_EQ_UINT(t, 1, wirecalls[2].changed);
|
|
CT_EQ_INT(t, Wdone, wirecalls[3].op);
|
|
CT_CHECK(t, !state.prestarted);
|
|
CT_EQ_PTR(t, nil, preowner);
|
|
|
|
/* Late XIM lifecycle messages remain idempotent after owner cleanup. */
|
|
release(&state);
|
|
nexttrace(t, &f, Keyrelease, &state);
|
|
release(&state);
|
|
notrace(t, &f);
|
|
memset(&hdr, 0, sizeof hdr);
|
|
hdr.major_opcode = XCB_XIM_RESET_IC;
|
|
callback(nil, nil, ic, &hdr, nil, nil, nil);
|
|
notrace(t, &f);
|
|
hdr.major_opcode = XCB_XIM_DESTROY_IC;
|
|
callback(nil, nil, ic, &hdr, nil, nil, nil);
|
|
notrace(t, &f);
|
|
CT_EQ_INT(t, 4, nwirecalls);
|
|
|
|
memset(&req, 0, sizeof req);
|
|
req.owner = &foreign;
|
|
req.op = Keyrelease;
|
|
req.reply = replyc;
|
|
chansend(keyc, &req);
|
|
chanrecv(replyc, &res);
|
|
memset(&trace, 0, sizeof trace);
|
|
CT_CHECK(t, channbrecv(f.trace, &trace) > 0);
|
|
CT_EQ_INT(t, Keyrelease, trace.op);
|
|
CT_EQ_PTR(t, &foreign, trace.owner);
|
|
wakedrain();
|
|
cleanup:
|
|
preowner = nil;
|
|
ximend(&f);
|
|
}
|
|
|
|
void
|
|
xim_adapter_commit_encoding(struct ct *t)
|
|
{
|
|
static char text[] = "한𠀋❤️👩💻";
|
|
Ic state;
|
|
xcb_im_input_context_t *ic;
|
|
char *want;
|
|
size_t nwant;
|
|
|
|
ic = (xcb_im_input_context_t*)(uintptr)60;
|
|
memset(&state, 0, sizeof state);
|
|
state.xic = ic;
|
|
state.encoding = Eutf8;
|
|
wireclear();
|
|
commit(&state, text, strlen(text));
|
|
CT_EQ_INT(t, 1, nwirecalls);
|
|
CT_EQ_INT(t, Wcommit, wirecalls[0].op);
|
|
CT_EQ_UINT(t, XCB_XIM_LOOKUP_CHARS, wirecalls[0].flag);
|
|
CT_EQ_UINT(t, 0, wirecalls[0].keysym);
|
|
CT_EQ_INT(t, strlen(text), wirecalls[0].nbyte);
|
|
CT_EQ_MEM(t, text, wirecalls[0].text, wirecalls[0].nbyte);
|
|
|
|
xcb_compound_text_init();
|
|
state.encoding = Ecompound;
|
|
wireclear();
|
|
commit(&state, text, strlen(text));
|
|
want = ximcompound(text, strlen(text), &nwant);
|
|
if(!CT_CHECK(t, want != nil))
|
|
return;
|
|
CT_EQ_INT(t, 1, nwirecalls);
|
|
CT_EQ_INT(t, Wcommit, wirecalls[0].op);
|
|
CT_EQ_SIZE(t, nwant, wirecalls[0].nbyte);
|
|
CT_EQ_MEM(t, want, wirecalls[0].text, nwant);
|
|
free(want);
|
|
}
|