staticfloat
buffer_advance (hb_buffer_t *buffer)
{ float a = 0; auto *pos = buffer->pos; unsigned count = buffer->len; if (HB_DIRECTION_IS_HORIZONTAL (buffer->props.direction)) for (unsigned i = 0; i < count; i++)
a += pos[i].x_advance; else for (unsigned i = 0; i < count; i++)
a += pos[i].y_advance; return a;
}
/* If default advance already matches target, nothing to do. Shape and return. */ if (min_target_advance <= *advance && *advance <= max_target_advance)
{
*var_tag = HB_TAG_NONE;
*var_value = 0.0f; return hb_shape_full (font, buffer,
features, num_features,
shaper_list);
}
hb_face_t *face = font->face;
/* Choose variation tag to use for justification. */
hb_tag_t tag = HB_TAG_NONE;
hb_ot_var_axis_info_t axis_info;
hb_tag_t tags[] =
{
HB_TAG ('j','s','t','f'),
HB_TAG ('w','d','t','h'),
}; for (unsigned i = 0; i < ARRAY_LENGTH (tags); i++) if (hb_ot_var_find_axis_info (face, tags[i], &axis_info))
{
tag = *var_tag = tags[i]; break;
}
/* If no suitable variation axis found, can't justify. Just shape and return. */ if (!tag)
{
*var_tag = HB_TAG_NONE;
*var_value = 0.0f; if (hb_shape_full (font, buffer,
features, num_features,
shaper_list))
{
*advance = buffer_advance (buffer); returntrue;
} else returnfalse;
}
/* Copy buffer text as we need it so we can shape multiple times. */ unsigned text_len = buffer->len; auto *text_info = (hb_glyph_info_t *) hb_malloc (text_len * sizeof (buffer->info[0])); if (unlikely (text_len && !text_info)) returnfalse;
hb_memcpy (text_info, buffer->info, text_len * sizeof (buffer->info[0])); auto text = hb_array<const hb_glyph_info_t> (text_info, text_len);
/* If default advance was not provided to us, calculate it. */ if (!*advance)
{
hb_font_set_variation (font, tag, axis_info.default_value); if (!hb_shape_full (font, buffer,
features, num_features,
shaper_list)) returnfalse;
*advance = buffer_advance (buffer);
}
/* If default advance already matches target, nothing to do. Shape and return. *Dothisagain,incaseadvancewasjustcalculated.
*/ if (min_target_advance <= *advance && *advance <= max_target_advance)
{
*var_tag = HB_TAG_NONE;
*var_value = 0.0f; returntrue;
}
/* Prepare for running the solver. */ double a, b, ya, yb; if (*advance < min_target_advance)
{ /* Need to expand. */
ya = (double) *advance;
a = (double) axis_info.default_value;
b = (double) axis_info.max_value;
/* Shape buffer for maximum expansion to use as other
* starting point for the solver. */
hb_font_set_variation (font, tag, (float) b);
reset_buffer (buffer, text); if (!hb_shape_full (font, buffer,
features, num_features,
shaper_list)) returnfalse;
yb = (double) buffer_advance (buffer); /* If the maximum expansion is less than max target,
* there's nothing to solve for. Just return it. */ if (yb <= (double) max_target_advance)
{
*var_value = (float) b;
*advance = (float) yb; returntrue;
}
} else
{ /* Need to shrink. */
yb = (double) *advance;
a = (double) axis_info.min_value;
b = (double) axis_info.default_value;
/* Shape buffer for maximum shrinkate to use as other
* starting point for the solver. */
hb_font_set_variation (font, tag, (float) a);
reset_buffer (buffer, text); if (!hb_shape_full (font, buffer,
features, num_features,
shaper_list)) returnfalse;
ya = (double) buffer_advance (buffer); /* If the maximum shrinkate is more than min target,
* there's nothing to solve for. Just return it. */ if (ya >= (double) min_target_advance)
{
*var_value = (float) a;
*advance = (float) ya; returntrue;
}
}
/* Run the solver to find a var axis value that hits
* the desired width. */
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