542 lines
16 KiB
C++
542 lines
16 KiB
C++
/*
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* Mr. 4th Dimention - Allen Webster
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* Four Tech
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*
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* public domain -- no warranty is offered or implied; use this code at your own risk
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*
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* 16.10.2015
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*
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* Buffer data object
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* type - Golden Array
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*
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*/
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// TOP
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#if BUFFER_EXPERIMENT_SCALPEL
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#define Buffer_Type Buffer
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#else
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#define Buffer_Type Gap_Buffer
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#endif
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#define CAT_(a,b) a##b
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#define CAT(a,b) CAT_(a,b)
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#define Buffer_Stringify_Type CAT(Buffer_Type, _Stringify_Loop)
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#define Buffer_Backify_Type CAT(Buffer_Type, _Backify_Loop)
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internal_4tech int
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buffer_count_newlines(Buffer_Type *buffer, int start, int end){
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Buffer_Stringify_Type loop;
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int i;
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int count;
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assert_4tech(0 <= start);
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assert_4tech(start <= end);
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assert_4tech(end < buffer_size(buffer));
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count = 0;
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for (loop = buffer_stringify_loop(buffer, start, end, end - start);
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buffer_stringify_good(&loop);
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buffer_stringify_next(&loop)){
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for (i = 0; i < loop.size; ++i){
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count += (loop.data[i] == '\n');
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}
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}
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return(count);
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}
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internal_4tech int
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buffer_seek_whitespace_right(Buffer_Type *buffer, int pos){
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Buffer_Stringify_Type loop;
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char *data;
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int end;
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int size;
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size = buffer_size(buffer);
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loop = buffer_stringify_loop(buffer, pos, size, size);
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for (;buffer_stringify_good(&loop);
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buffer_stringify_next(&loop)){
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end = loop.size + loop.absolute_pos;
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data = loop.data - loop.absolute_pos;
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for (; pos < end && is_whitespace(data[pos]); ++pos);
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if (!is_whitespace(data[pos])) break;
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}
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for (;buffer_stringify_good(&loop);
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buffer_stringify_next(&loop)){
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end = loop.size + loop.absolute_pos;
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data = loop.data - loop.absolute_pos;
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for (; pos < end && !is_whitespace(data[pos]); ++pos);
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if (is_whitespace(data[pos])) break;
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}
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return(pos);
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}
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internal_4tech int
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buffer_seek_whitespace_left(Buffer_Type *buffer, int pos){
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Buffer_Backify_Type loop;
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char *data;
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int end;
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int size;
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size = buffer_size(buffer);
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loop = buffer_backify_loop(buffer, pos, 0, size);
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for (;buffer_backify_good(&loop);
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buffer_backify_next(&loop)){
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end = loop.absolute_pos;
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data = loop.data - end;
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for (; pos > end && is_whitespace(data[pos]); --pos);
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if (!is_whitespace(data[pos])) break;
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}
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for (;buffer_backify_good(&loop);
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buffer_backify_next(&loop)){
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end = loop.absolute_pos;
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data = loop.data - end;
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for (; pos > end && !is_whitespace(data[pos]); --pos);
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if (is_whitespace(data[pos])) break;
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}
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return(pos);
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}
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typedef struct{
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int i;
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int count;
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int start;
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} Buffer_Measure_Starts;
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internal_4tech int
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buffer_measure_starts(Buffer_Measure_Starts *state, Buffer_Type *buffer){
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Buffer_Stringify_Type loop;
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int *starts;
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int max;
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char *data;
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int size, end;
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int start, count, i;
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int result;
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size = buffer_size(buffer);
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starts = buffer->line_starts;
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max = buffer->line_max;
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result = 0;
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i = state->i;
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count = state->count;
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start = state->start;
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for (loop = buffer_stringify_loop(buffer, i, size, size);
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buffer_stringify_good(&loop);
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buffer_stringify_next(&loop)){
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end = loop.size + loop.absolute_pos;
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data = loop.data - loop.absolute_pos;
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for (; i < end; ++i){
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if (data[i] == '\n'){
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if (count == max){
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result = 1;
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goto buffer_measure_starts_end;
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}
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starts[count++] = start;
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start = i + 1;
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}
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}
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}
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if (i == size){
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starts[count++] = start;
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}
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buffer_measure_starts_end:
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state->i = i;
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state->count = count;
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state->start = start;
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return(result);
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}
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internal_4tech void
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buffer_remeasure_starts(Buffer_Type *buffer, int line_start, int line_end, int line_shift, int text_shift){
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Buffer_Stringify_Type loop;
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int *starts;
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int line_count;
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char *data;
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int size, end;
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int line_i, char_i, start;
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starts = buffer->line_starts;
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line_count = buffer->line_count;
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assert_4tech(0 <= line_start);
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assert_4tech(line_start <= line_end);
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assert_4tech(line_end < line_count);
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assert_4tech(line_count + line_shift <= buffer->line_max);
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++line_end;
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if (text_shift != 0){
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line_i = line_end;
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starts += line_i;
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for (; line_i < line_count; ++line_i, ++starts){
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*starts += text_shift;
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}
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starts = buffer->line_starts;
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}
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if (line_shift != 0){
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memmove_4tech(starts + line_end + line_shift, starts + line_end,
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sizeof(int)*(line_count - line_end));
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line_count += line_shift;
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}
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line_end += line_shift;
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size = buffer_size(buffer);
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char_i = starts[line_start];
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line_i = line_start;
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start = char_i;
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for (loop = buffer_stringify_loop(buffer, char_i, size, size);
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buffer_stringify_good(&loop);
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buffer_stringify_next(&loop)){
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end = loop.size + loop.absolute_pos;
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data = loop.data - loop.absolute_pos;
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for (; char_i < end; ++char_i){
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if (data[char_i] == '\n'){
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starts[line_i++] = start;
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start = char_i + 1;
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if (line_i >= line_end && start == starts[line_i]) goto buffer_remeasure_starts_end;
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}
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}
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}
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if (char_i == size){
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starts[line_i++] = start;
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}
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buffer_remeasure_starts_end:
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assert_4tech(line_count >= 1);
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buffer->line_count = line_count;
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}
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internal_4tech void
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buffer_remeasure_widths(Buffer_Type *buffer, void *advance_data, int stride,
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int line_start, int line_end, int line_shift){
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Buffer_Stringify_Type loop;
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int *starts;
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float *widths;
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int line_count;
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char *data;
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int size, end;
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int i, j;
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float width;
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char ch;
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starts = buffer->line_starts;
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widths = buffer->line_widths;
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line_count = buffer->line_count;
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assert_4tech(0 <= line_start);
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assert_4tech(line_start <= line_end);
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assert_4tech(line_end < line_count);
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assert_4tech(line_count <= buffer->widths_max);
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++line_end;
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if (line_shift != 0){
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memmove_4tech(widths + line_end + line_shift, widths + line_end,
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sizeof(float)*(line_count - line_end));
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}
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line_end += line_shift;
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i = line_start;
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j = starts[i];
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if (line_end == line_count) size = buffer_size(buffer);
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else size = starts[line_end];
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width = 0;
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for (loop = buffer_stringify_loop(buffer, j, size, size);
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buffer_stringify_good(&loop);
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buffer_stringify_next(&loop)){
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end = loop.size + loop.absolute_pos;
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data = loop.data - loop.absolute_pos;
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for (; j < end; ++j){
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ch = data[j];
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if (ch == '\n'){
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widths[i] = width;
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++i;
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assert_4tech(j + 1 == starts[i]);
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width = 0;
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}
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else{
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width += measure_character(advance_data, stride, ch);
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}
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}
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}
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}
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inline_4tech void
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buffer_measure_widths(Buffer_Type *buffer, void *advance_data, int stride){
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assert_4tech(buffer->line_count >= 1);
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buffer_remeasure_widths(buffer, advance_data, stride, 0, buffer->line_count-1, 0);
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}
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internal_4tech void
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buffer_measure_wrap_y(Buffer_Type *buffer, float *wraps,
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float font_height, float max_width){
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float *widths;
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float y_pos;
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int i, line_count;
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line_count = buffer->line_count;
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widths = buffer->line_widths;
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y_pos = 0;
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for (i = 0; i < line_count; ++i){
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wraps[i] = y_pos;
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if (widths[i] == 0) y_pos += font_height;
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else y_pos += font_height*ceil_4tech(widths[i]/max_width);
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}
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}
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internal_4tech int
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buffer_get_line_index(Buffer_Type *buffer, int pos, int l_bound, int u_bound){
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int *lines;
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int start, end;
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int i;
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assert_4tech(0 <= l_bound);
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assert_4tech(l_bound <= u_bound);
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assert_4tech(u_bound <= buffer->line_count);
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lines = buffer->line_starts;
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start = l_bound;
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end = u_bound;
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for (;;){
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i = (start + end) >> 1;
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if (lines[i] < pos) start = i;
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else if (lines[i] > pos) end = i;
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else{
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start = i;
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break;
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}
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assert_4tech(start < end);
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if (start == end - 1) break;
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}
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return(start);
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}
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internal_4tech int
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buffer_get_line_index_from_wrapped_y(float *wraps, float y, float font_height, int l_bound, int u_bound){
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int start, end, i, result;
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start = l_bound;
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end = u_bound;
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for (;;){
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i = (start + end) / 2;
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if (wraps[i]+font_height <= y) start = i;
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else if (wraps[i] > y) end = i;
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else{
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result = i;
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break;
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}
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if (start >= end - 1){
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result = start;
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break;
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}
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}
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return(result);
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}
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inline_4tech Full_Cursor
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make_cursor_hint(int line_index, int *starts, float *wrap_ys, float font_height){
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Full_Cursor hint;
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hint.pos = starts[line_index];
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hint.line = line_index + 1;
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hint.character = 1;
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hint.unwrapped_y = (f32)(line_index * font_height);
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hint.unwrapped_x = 0;
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hint.wrapped_y = wrap_ys[line_index];
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hint.wrapped_x = 0;
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return(hint);
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}
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internal_4tech Full_Cursor
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buffer_cursor_from_pos(Buffer_Type *buffer, int pos, float *wraps,
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float max_width, float font_height, void *advance_data, int stride){
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Full_Cursor result;
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int line_index;
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line_index = buffer_get_line_index(buffer, pos, 0, buffer->line_count);
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result = make_cursor_hint(line_index, buffer->line_starts, wraps, font_height);
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result = buffer_cursor_seek(buffer, seek_pos(pos), max_width, font_height,
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advance_data, stride, result);
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return(result);
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}
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internal_4tech Full_Cursor
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buffer_cursor_from_unwrapped_xy(Buffer_Type *buffer, float x, float y, int round_down, float *wraps,
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float max_width, float font_height, void *advance_data, int stride){
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Full_Cursor result;
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int line_index;
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line_index = (int)(y / font_height);
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if (line_index >= buffer->line_count) line_index = buffer->line_count - 1;
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if (line_index < 0) line_index = 0;
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result = make_cursor_hint(line_index, buffer->line_starts, wraps, font_height);
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result = buffer_cursor_seek(buffer, seek_unwrapped_xy(x, y, round_down), max_width, font_height,
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advance_data, stride, result);
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return(result);
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}
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internal_4tech Full_Cursor
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buffer_cursor_from_wrapped_xy(Buffer_Type *buffer, float x, float y, int round_down, float *wraps,
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float max_width, float font_height, void *advance_data, int stride){
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Full_Cursor result;
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int line_index;
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line_index = buffer_get_line_index_from_wrapped_y(wraps, y, font_height, 0, buffer->line_count);
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result = make_cursor_hint(line_index, buffer->line_starts, wraps, font_height);
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result = buffer_cursor_seek(buffer, seek_wrapped_xy(x, y, round_down), max_width, font_height,
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advance_data, stride, result);
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return(result);
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}
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internal_4tech void
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buffer_get_render_data(Buffer_Type *buffer, float *wraps, Buffer_Render_Item *items, int max, int *count,
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float port_x, float port_y, float scroll_x, float scroll_y, Full_Cursor start_cursor, int wrapped,
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float width, float height, void *advance_data, int stride, float font_height){
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Buffer_Stringify_Type loop;
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Buffer_Render_Item *item;
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char *data;
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int size, end;
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float shift_x, shift_y;
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float x, y;
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int i, item_i;
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float ch_width, ch_width_sub;
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char ch;
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size = buffer_size(buffer);
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shift_x = port_x - scroll_x;
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shift_y = port_y - scroll_y;
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if (wrapped) shift_y += start_cursor.wrapped_y;
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else shift_y += start_cursor.unwrapped_y;
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x = shift_x;
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y = shift_y;
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item_i = 0;
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item = items + item_i;
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for (loop = buffer_stringify_loop(buffer, start_cursor.pos, size, size);
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buffer_stringify_good(&loop);
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buffer_stringify_next(&loop)){
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end = loop.size + loop.absolute_pos;
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data = loop.data - loop.absolute_pos;
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for (i = loop.absolute_pos; i < end; ++i){
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ch = data[i];
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ch_width = measure_character(advance_data, stride, ch);
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if (ch_width + x > width + shift_x && wrapped){
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x = shift_x;
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y += font_height;
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}
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if (y > height + shift_y) goto buffer_get_render_data_end;
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switch (ch){
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case '\n':
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write_render_item_inline(item, i, ' ', x, y, advance_data, stride, font_height);
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++item_i;
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++item;
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x = shift_x;
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y += font_height;
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break;
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case 0:
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ch_width = write_render_item_inline(item, i, '\\', x, y, advance_data, stride, font_height);
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++item_i;
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++item;
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x += ch_width;
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ch_width = write_render_item_inline(item, i, '0', x, y, advance_data, stride, font_height);
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++item_i;
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++item;
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x += ch_width;
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break;
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case '\r':
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ch_width = write_render_item_inline(item, i, '\\', x, y, advance_data, stride, font_height);
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++item_i;
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++item;
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x += ch_width;
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ch_width = write_render_item_inline(item, i, 'r', x, y, advance_data, stride, font_height);
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++item_i;
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++item;
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x += ch_width;
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break;
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case '\t':
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ch_width_sub = write_render_item_inline(item, i, '\\', x, y, advance_data, stride, font_height);
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++item_i;
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++item;
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write_render_item_inline(item, i, 't', x + ch_width_sub, y, advance_data, stride, font_height);
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++item_i;
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++item;
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x += ch_width;
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break;
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default:
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write_render_item(item, i, ch, x, y, ch_width, font_height);
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++item_i;
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++item;
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x += ch_width;
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break;
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}
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if (y > height + shift_y) goto buffer_get_render_data_end;
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}
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}
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buffer_get_render_data_end:
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// TODO(allen): handle this with a control state
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assert_4tech(item_i <= max);
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*count = item_i;
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}
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internal_4tech void
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buffer_get_render_data(Buffer_Type *buffer, float *wraps, Buffer_Render_Item *items, int max, int *count,
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float port_x, float port_y, float scroll_x, float scroll_y, int wrapped,
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float width, float height, void *advance_data, int stride, float font_height){
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Full_Cursor start_cursor;
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if (wrapped){
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start_cursor = buffer_cursor_from_wrapped_xy(buffer, 0, scroll_y, 0, wraps,
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width, font_height, advance_data, stride);
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}
|
|
else{
|
|
start_cursor = buffer_cursor_from_unwrapped_xy(buffer, 0, scroll_y, 0, wraps,
|
|
width, font_height, advance_data, stride);
|
|
}
|
|
buffer_get_render_data(buffer, wraps, items, max, count,
|
|
port_x, port_y, scroll_x, scroll_y, start_cursor, wrapped,
|
|
width, height, advance_data, stride, font_height);
|
|
}
|
|
|
|
// BOTTOM
|
|
|