361 lines
9.5 KiB
C
361 lines
9.5 KiB
C
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#include "vterm_internal.h"
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#include <stdio.h>
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#include <stdlib.h>
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#include <stdarg.h>
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#include <string.h>
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#include "../../runtime/panic_assert.h"
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#include "../../runtime/printf.h"
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/*****************
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* API functions *
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*****************/
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/*
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static void *default_malloc(size_t size, void *allocdata) {
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void *ptr = malloc(size);
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if (ptr)
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memset(ptr, 0, size);
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return ptr;
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}
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static void default_free(void *ptr, void *allocdata) {
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free(ptr);
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}
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*/
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static VTermAllocatorFunctions default_allocator = {
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//.malloc = &default_malloc,
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//.free = &default_free,
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};
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VTerm *vterm_new(int rows, int cols) {
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return vterm_new_with_allocator(rows, cols, &default_allocator, NULL);
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}
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VTerm *vterm_new_with_allocator(int rows, int cols, VTermAllocatorFunctions *funcs, void *allocdata) {
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/* Need to bootstrap using the allocator function directly */
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VTerm *vt = (*funcs->malloc)(sizeof(VTerm), allocdata);
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vt->allocator = funcs;
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vt->allocdata = allocdata;
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vt->rows = rows;
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vt->cols = cols;
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vt->parser.state = NORMAL;
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vt->parser.callbacks = NULL;
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vt->parser.cbdata = NULL;
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vt->parser.strbuffer_len = 64;
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vt->parser.strbuffer_cur = 0;
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vt->parser.strbuffer = vterm_allocator_malloc(vt, vt->parser.strbuffer_len);
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vt->outfunc = NULL;
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vt->outdata = NULL;
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vt->outbuffer_len = 64;
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vt->outbuffer_cur = 0;
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vt->outbuffer = vterm_allocator_malloc(vt, vt->outbuffer_len);
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vt->tmpbuffer_len = 64;
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vt->tmpbuffer = vterm_allocator_malloc(vt, vt->tmpbuffer_len);
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return vt;
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}
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void vterm_free(VTerm *vt) {
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if (vt->screen)
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vterm_screen_free(vt->screen);
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if (vt->state)
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vterm_state_free(vt->state);
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vterm_allocator_free(vt, vt->parser.strbuffer);
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vterm_allocator_free(vt, vt->outbuffer);
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vterm_allocator_free(vt, vt->tmpbuffer);
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vterm_allocator_free(vt, vt);
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}
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INTERNAL void *vterm_allocator_malloc(VTerm *vt, size_t size) {
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return (*vt->allocator->malloc)(size, vt->allocdata);
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}
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INTERNAL void vterm_allocator_free(VTerm *vt, void *ptr) {
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(*vt->allocator->free)(ptr, vt->allocdata);
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}
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void vterm_get_size(const VTerm *vt, int *rowsp, int *colsp) {
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if (rowsp)
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*rowsp = vt->rows;
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if (colsp)
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*colsp = vt->cols;
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}
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void vterm_set_size(VTerm *vt, int rows, int cols) {
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vt->rows = rows;
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vt->cols = cols;
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if (vt->parser.callbacks && vt->parser.callbacks->resize)
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(*vt->parser.callbacks->resize)(rows, cols, vt->parser.cbdata);
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}
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int vterm_get_utf8(const VTerm *vt) {
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return vt->mode.utf8;
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}
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void vterm_set_utf8(VTerm *vt, int is_utf8) {
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vt->mode.utf8 = is_utf8;
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}
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void vterm_output_set_callback(VTerm *vt, VTermOutputCallback *func, void *user) {
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vt->outfunc = func;
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vt->outdata = user;
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}
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INTERNAL void vterm_push_output_bytes(VTerm *vt, const char *bytes, size_t len) {
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if (vt->outfunc) {
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(vt->outfunc)(bytes, len, vt->outdata);
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return;
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}
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if (len > vt->outbuffer_len - vt->outbuffer_cur)
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return;
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memcpy(vt->outbuffer + vt->outbuffer_cur, bytes, len);
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vt->outbuffer_cur += len;
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}
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INTERNAL void vterm_push_output_vsprintf(VTerm *vt, const char *format, va_list args) {
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size_t len = vsnprintf(vt->tmpbuffer, vt->tmpbuffer_len, format, args);
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vterm_push_output_bytes(vt, vt->tmpbuffer, len);
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}
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INTERNAL void vterm_push_output_sprintf(VTerm *vt, const char *format, ...) {
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va_list args;
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va_start(args, format);
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vterm_push_output_vsprintf(vt, format, args);
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va_end(args);
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}
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INTERNAL void vterm_push_output_sprintf_ctrl(VTerm *vt, unsigned char ctrl, const char *fmt, ...) {
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size_t cur;
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if (ctrl >= 0x80 && !vt->mode.ctrl8bit)
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cur = snprintf(vt->tmpbuffer, vt->tmpbuffer_len, ESC_S "%c", ctrl - 0x40);
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else
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cur = snprintf(vt->tmpbuffer, vt->tmpbuffer_len, "%c", ctrl);
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if (cur >= vt->tmpbuffer_len)
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return;
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va_list args;
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va_start(args, fmt);
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cur += vsnprintf(vt->tmpbuffer + cur, vt->tmpbuffer_len - cur, fmt, args);
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va_end(args);
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if (cur >= vt->tmpbuffer_len)
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return;
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vterm_push_output_bytes(vt, vt->tmpbuffer, cur);
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}
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INTERNAL void vterm_push_output_sprintf_dcs(VTerm *vt, const char *fmt, ...) {
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size_t cur = 0;
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cur += snprintf(vt->tmpbuffer + cur, vt->tmpbuffer_len - cur,
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vt->mode.ctrl8bit ? "\x90" : ESC_S "P"); // DCS
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if (cur >= vt->tmpbuffer_len)
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return;
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va_list args;
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va_start(args, fmt);
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cur += vsnprintf(vt->tmpbuffer + cur, vt->tmpbuffer_len - cur, fmt, args);
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va_end(args);
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if (cur >= vt->tmpbuffer_len)
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return;
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cur += snprintf(vt->tmpbuffer + cur, vt->tmpbuffer_len - cur,
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vt->mode.ctrl8bit ? "\x9C" : ESC_S "\\"); // ST
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if (cur >= vt->tmpbuffer_len)
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return;
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vterm_push_output_bytes(vt, vt->tmpbuffer, cur);
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}
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size_t vterm_output_get_buffer_size(const VTerm *vt) {
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return vt->outbuffer_len;
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}
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size_t vterm_output_get_buffer_current(const VTerm *vt) {
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return vt->outbuffer_cur;
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}
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size_t vterm_output_get_buffer_remaining(const VTerm *vt) {
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return vt->outbuffer_len - vt->outbuffer_cur;
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}
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size_t vterm_output_read(VTerm *vt, char *buffer, size_t len) {
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if (len > vt->outbuffer_cur)
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len = vt->outbuffer_cur;
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memcpy(buffer, vt->outbuffer, len);
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if (len < vt->outbuffer_cur)
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memmove(vt->outbuffer, vt->outbuffer + len, vt->outbuffer_cur - len);
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vt->outbuffer_cur -= len;
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return len;
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}
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VTermValueType vterm_get_attr_type(VTermAttr attr) {
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switch (attr) {
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case VTERM_ATTR_BOLD: return VTERM_VALUETYPE_BOOL;
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case VTERM_ATTR_UNDERLINE: return VTERM_VALUETYPE_INT;
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case VTERM_ATTR_ITALIC: return VTERM_VALUETYPE_BOOL;
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case VTERM_ATTR_BLINK: return VTERM_VALUETYPE_BOOL;
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case VTERM_ATTR_REVERSE: return VTERM_VALUETYPE_BOOL;
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case VTERM_ATTR_STRIKE: return VTERM_VALUETYPE_BOOL;
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case VTERM_ATTR_FONT: return VTERM_VALUETYPE_INT;
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case VTERM_ATTR_FOREGROUND: return VTERM_VALUETYPE_COLOR;
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case VTERM_ATTR_BACKGROUND: return VTERM_VALUETYPE_COLOR;
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case VTERM_N_ATTRS: return 0;
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}
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return 0; /* UNREACHABLE */
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}
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VTermValueType vterm_get_prop_type(VTermProp prop) {
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switch (prop) {
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case VTERM_PROP_CURSORVISIBLE: return VTERM_VALUETYPE_BOOL;
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case VTERM_PROP_CURSORBLINK: return VTERM_VALUETYPE_BOOL;
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case VTERM_PROP_ALTSCREEN: return VTERM_VALUETYPE_BOOL;
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case VTERM_PROP_TITLE: return VTERM_VALUETYPE_STRING;
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case VTERM_PROP_ICONNAME: return VTERM_VALUETYPE_STRING;
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case VTERM_PROP_REVERSE: return VTERM_VALUETYPE_BOOL;
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case VTERM_PROP_CURSORSHAPE: return VTERM_VALUETYPE_INT;
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case VTERM_PROP_MOUSE: return VTERM_VALUETYPE_INT;
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case VTERM_N_PROPS: return 0;
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}
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return 0; /* UNREACHABLE */
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}
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void vterm_scroll_rect(VTermRect rect, int downward, int rightward, int (*moverect)(VTermRect src, VTermRect dest, void *user), int (*eraserect)(VTermRect rect, int selective, void *user), void *user) {
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VTermRect src;
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VTermRect dest;
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if (abs(downward) >= rect.end_row - rect.start_row ||
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abs(rightward) >= rect.end_col - rect.start_col) {
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/* Scroll more than area; just erase the lot */
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(*eraserect)(rect, 0, user);
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return;
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}
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if (rightward >= 0) {
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/* rect: [XXX................]
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* src: [----------------]
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* dest: [----------------]
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*/
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dest.start_col = rect.start_col;
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dest.end_col = rect.end_col - rightward;
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src.start_col = rect.start_col + rightward;
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src.end_col = rect.end_col;
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} else {
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/* rect: [................XXX]
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* src: [----------------]
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* dest: [----------------]
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*/
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int leftward = -rightward;
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dest.start_col = rect.start_col + leftward;
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dest.end_col = rect.end_col;
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src.start_col = rect.start_col;
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src.end_col = rect.end_col - leftward;
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}
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if (downward >= 0) {
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dest.start_row = rect.start_row;
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dest.end_row = rect.end_row - downward;
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src.start_row = rect.start_row + downward;
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src.end_row = rect.end_row;
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} else {
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int upward = -downward;
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dest.start_row = rect.start_row + upward;
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dest.end_row = rect.end_row;
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src.start_row = rect.start_row;
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src.end_row = rect.end_row - upward;
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}
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if (moverect)
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(*moverect)(dest, src, user);
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if (downward > 0)
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rect.start_row = rect.end_row - downward;
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else if (downward < 0)
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rect.end_row = rect.start_row - downward;
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if (rightward > 0)
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rect.start_col = rect.end_col - rightward;
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else if (rightward < 0)
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rect.end_col = rect.start_col - rightward;
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(*eraserect)(rect, 0, user);
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}
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void vterm_copy_cells(VTermRect dest, VTermRect src, void (*copycell)(VTermPos dest, VTermPos src, void *user), void *user) {
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int downward = src.start_row - dest.start_row;
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int rightward = src.start_col - dest.start_col;
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int init_row, test_row, init_col, test_col;
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int inc_row, inc_col;
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if (downward < 0) {
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init_row = dest.end_row - 1;
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test_row = dest.start_row - 1;
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inc_row = -1;
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} else /* downward >= 0 */ {
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init_row = dest.start_row;
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test_row = dest.end_row;
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inc_row = +1;
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}
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if (rightward < 0) {
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init_col = dest.end_col - 1;
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test_col = dest.start_col - 1;
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inc_col = -1;
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} else /* rightward >= 0 */ {
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init_col = dest.start_col;
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test_col = dest.end_col;
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inc_col = +1;
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}
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VTermPos pos;
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for (pos.row = init_row; pos.row != test_row; pos.row += inc_row)
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for (pos.col = init_col; pos.col != test_col; pos.col += inc_col) {
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VTermPos srcpos = {pos.row + downward, pos.col + rightward};
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(*copycell)(pos, srcpos, user);
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}
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}
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void vterm_check_version(int major, int minor) {
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if (major != VTERM_VERSION_MAJOR) {
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//fprintf(stderr, "libvterm major version mismatch; %d (wants) != %d (library)\n", major, VTERM_VERSION_MAJOR);
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Panicf("libvterm major version mismatch; %d (wants) != %d (library)\n", major, VTERM_VERSION_MAJOR);
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}
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if (minor > VTERM_VERSION_MINOR) {
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//fprintf(stderr, "libvterm minor version mismatch; %d (wants) > %d (library)\n", minor, VTERM_VERSION_MINOR);
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Panicf("libvterm minor version mismatch; %d (wants) > %d (library)\n", minor, VTERM_VERSION_MINOR);
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}
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// Happy
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}
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