541 lines
14 KiB
C
541 lines
14 KiB
C
#include "private.h"
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#include <Elementary.h>
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#include "termpty.h"
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#include "termptyesc.h"
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#include "termptyops.h"
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#include <sys/types.h>
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#include <signal.h>
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#include <sys/wait.h>
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#include <sys/stat.h>
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#include <stdlib.h>
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#include <fcntl.h>
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#include <sys/ioctl.h>
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#include <string.h>
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#include <errno.h>
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/* specific log domain to help debug only terminal code parser */
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int _termpty_log_dom = -1;
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#undef CRITICAL
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#undef ERR
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#undef WRN
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#undef INF
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#undef DBG
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#define CRITICAL(...) EINA_LOG_DOM_CRIT(_termpty_log_dom, __VA_ARGS__)
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#define ERR(...) EINA_LOG_DOM_ERR(_termpty_log_dom, __VA_ARGS__)
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#define WRN(...) EINA_LOG_DOM_WARN(_termpty_log_dom, __VA_ARGS__)
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#define INF(...) EINA_LOG_DOM_INFO(_termpty_log_dom, __VA_ARGS__)
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#define DBG(...) EINA_LOG_DOM_DBG(_termpty_log_dom, __VA_ARGS__)
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void
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termpty_init(void)
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{
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if (_termpty_log_dom >= 0) return;
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_termpty_log_dom = eina_log_domain_register("termpty", NULL);
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if (_termpty_log_dom < 0)
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EINA_LOG_CRIT("could not create log domain 'termpty'.");
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}
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void
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termpty_shutdown(void)
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{
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if (_termpty_log_dom < 0) return;
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eina_log_domain_unregister(_termpty_log_dom);
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_termpty_log_dom = -1;
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}
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static void
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_handle_buf(Termpty *ty, const Eina_Unicode *codepoints, int len)
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{
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Eina_Unicode *c, *ce, *b;
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int n, bytes;
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c = (int *)codepoints;
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ce = &(c[len]);
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if (ty->buf)
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{
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bytes = (ty->buflen + len + 1) * sizeof(int);
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b = realloc(ty->buf, bytes);
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if (!b)
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{
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ERR("memerr");
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}
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INF("realloc add %i + %i", (int)(ty->buflen * sizeof(int)), (int)(len * sizeof(int)));
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bytes = len * sizeof(Eina_Unicode);
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memcpy(&(b[ty->buflen]), codepoints, bytes);
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ty->buf = b;
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ty->buflen += len;
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ty->buf[ty->buflen] = 0;
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c = ty->buf;
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ce = c + ty->buflen;
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while (c < ce)
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{
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n = _termpty_handle_seq(ty, c, ce);
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if (n == 0)
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{
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Eina_Unicode *tmp = ty->buf;
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ty->buf = NULL;
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ty->buflen = 0;
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bytes = ((char *)ce - (char *)c) + sizeof(Eina_Unicode);
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INF("malloc til %i", (int)(bytes - sizeof(Eina_Unicode)));
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ty->buf = malloc(bytes);
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if (!ty->buf)
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{
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ERR("memerr");
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}
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bytes = (char *)ce - (char *)c;
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memcpy(ty->buf, c, bytes);
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ty->buflen = bytes / sizeof(Eina_Unicode);
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ty->buf[ty->buflen] = 0;
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free(tmp);
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break;
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}
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c += n;
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}
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if (c == ce)
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{
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if (ty->buf)
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{
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free(ty->buf);
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ty->buf = NULL;
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}
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ty->buflen = 0;
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}
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}
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else
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{
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while (c < ce)
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{
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n = _termpty_handle_seq(ty, c, ce);
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if (n == 0)
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{
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bytes = ((char *)ce - (char *)c) + sizeof(Eina_Unicode);
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ty->buf = malloc(bytes);
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INF("malloc %i", (int)(bytes - sizeof(Eina_Unicode)));
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if (!ty->buf)
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{
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ERR("memerr");
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}
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bytes = (char *)ce - (char *)c;
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memcpy(ty->buf, c, bytes);
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ty->buflen = bytes / sizeof(Eina_Unicode);
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ty->buf[ty->buflen] = 0;
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break;
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}
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c += n;
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}
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}
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}
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static void
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_pty_size(Termpty *ty)
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{
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struct winsize sz;
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sz.ws_col = ty->w;
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sz.ws_row = ty->h;
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sz.ws_xpixel = 0;
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sz.ws_ypixel = 0;
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if (ioctl(ty->fd, TIOCSWINSZ, &sz) < 0)
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ERR("Size set ioctl failed: %s", strerror(errno));
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}
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static Eina_Bool
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_cb_exe_exit(void *data, int type __UNUSED__, void *event)
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{
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Ecore_Exe_Event_Del *ev = event;
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Termpty *ty = data;
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if (ev->pid != ty->pid) return ECORE_CALLBACK_PASS_ON;
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ty->exit_code = ev->exit_code;
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if (ty->cb.exited.func) ty->cb.exited.func(ty->cb.exited.data);
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ty->pid = -1;
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if (ty->hand_exe_exit) ecore_event_handler_del(ty->hand_exe_exit);
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ty->hand_exe_exit = NULL;
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if (ty->hand_fd) ecore_main_fd_handler_del(ty->hand_fd);
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ty->hand_fd = NULL;
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if (ty->fd >= 0) close(ty->fd);
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ty->fd = -1;
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if (ty->slavefd >= 0) close(ty->slavefd);
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ty->slavefd = -1;
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return ECORE_CALLBACK_PASS_ON;
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}
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static Eina_Bool
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_cb_fd_read(void *data, Ecore_Fd_Handler *fd_handler __UNUSED__)
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{
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Termpty *ty = data;
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char buf[4097];
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Eina_Unicode codepoint[4097];
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int len, i, j, reads;
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// read up to 64 * 4096 bytes
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for (reads = 0; reads < 64; reads++)
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{
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len = read(ty->fd, buf, sizeof(buf) - 1);
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if (len <= 0) break;
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/*
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printf(" I: ");
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int jj;
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for (jj = 0; jj < len && jj < 100; jj++)
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{
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if ((buf[jj] < ' ') || (buf[jj] >= 0x7f))
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printf("\033[33m%02x\033[0m", (unsigned char)buf[jj]);
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else
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printf("%c", buf[jj]);
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}
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printf("\n");
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*/
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buf[len] = 0;
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// convert UTF8 to codepoint integers
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j = 0;
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for (i = 0; i < len;)
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{
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int g = 0;
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if (buf[i])
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{
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i = evas_string_char_next_get(buf, i, &g);
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if (i < 0) break;
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// DBG("(%i) %02x '%c'", j, g, g);
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}
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else
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{
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g = 0;
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i++;
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}
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codepoint[j] = g;
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j++;
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}
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codepoint[j] = 0;
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// DBG("---------------- handle buf %i", j);
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_handle_buf(ty, codepoint, j);
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}
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if (ty->cb.change.func) ty->cb.change.func(ty->cb.change.data);
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return EINA_TRUE;
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}
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static void
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_limit_coord(Termpty *ty, Termstate *state)
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{
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state->wrapnext = 0;
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if (state->cx >= ty->w) state->cx = ty->w - 1;
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if (state->cy >= ty->h) state->cy = ty->h - 1;
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if (state->had_cr_x >= ty->w) state->had_cr_x = ty->w - 1;
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if (state->had_cr_y >= ty->h) state->had_cr_y = ty->h - 1;
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}
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Termpty *
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termpty_new(const char *cmd, Eina_Bool login_shell, const char *cd, int w, int h, int backscroll)
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{
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Termpty *ty;
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const char *pty;
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ty = calloc(1, sizeof(Termpty));
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if (!ty) return NULL;
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ty->w = w;
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ty->h = h;
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ty->backmax = backscroll;
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_termpty_reset_state(ty);
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ty->save = ty->state;
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ty->swap = ty->state;
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ty->screen = calloc(1, sizeof(Termcell) * ty->w * ty->h);
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if (!ty->screen) goto err;
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ty->screen2 = calloc(1, sizeof(Termcell) * ty->w * ty->h);
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if (!ty->screen2) goto err;
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ty->fd = posix_openpt(O_RDWR | O_NOCTTY);
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if (ty->fd < 0) goto err;
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if (grantpt(ty->fd) != 0) goto err;
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if (unlockpt(ty->fd) != 0) goto err;
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pty = ptsname(ty->fd);
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ty->slavefd = open(pty, O_RDWR | O_NOCTTY);
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if (ty->slavefd < 0) goto err;
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fcntl(ty->fd, F_SETFL, O_NDELAY);
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ty->hand_exe_exit = ecore_event_handler_add(ECORE_EXE_EVENT_DEL,
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_cb_exe_exit, ty);
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ty->pid = fork();
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if (!ty->pid)
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{
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const char *shell = NULL;
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const char *args[4] = {NULL, NULL, NULL, NULL};
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Eina_Bool needs_shell;
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int i;
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if (cd)
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{
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if (chdir(cd) != 0)
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{
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perror("chdir");
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ERR("Cannot change to directory '%s'", cd);
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exit(127);
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}
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}
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needs_shell = ((!cmd) ||
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(strpbrk(cmd, " |&;<>()$`\\\"'*?#") != NULL));
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DBG("cmd='%s' needs_shell=%u", cmd ? cmd : "", needs_shell);
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if (needs_shell)
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{
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shell = getenv("SHELL");
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if (!shell)
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{
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uid_t uid = getuid();
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struct passwd *pw = getpwuid(uid);
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if (pw) shell = pw->pw_shell;
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}
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if (!shell)
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{
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WRN("Could not find shell, fallback to /bin/sh");
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shell = "/bin/sh";
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}
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}
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if (!needs_shell)
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args[0] = cmd;
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else
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{
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args[0] = shell;
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if (cmd)
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{
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args[1] = "-c";
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args[2] = cmd;
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}
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}
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#define NC(x) (args[x] != NULL ? args[x] : "")
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DBG("exec %s %s %s %s", NC(0), NC(1), NC(2), NC(3));
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#undef NC
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for (i = 0; i < 100; i++)
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{
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if (i != ty->slavefd) close(i);
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}
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ty->fd = ty->slavefd;
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setsid();
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dup2(ty->fd, 0);
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dup2(ty->fd, 1);
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dup2(ty->fd, 2);
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if (ioctl(ty->fd, TIOCSCTTY, NULL) < 0) exit(1);
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/* TODO: should we reset signals here? */
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// pretend to be xterm
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putenv("TERM=xterm");
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// putenv("TERM=xterm-256color");
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putenv("XTERM_256_COLORS=1");
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if (!login_shell)
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execvp(args[0], (char *const *)args);
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else
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{
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char *cmdfile, *cmd0;
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cmdfile = (char *)args[0];
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cmd0 = alloca(strlen(cmdfile) + 2);
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cmd0[0] = '-';
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strcpy(cmd0 + 1, cmdfile);
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args[0] = cmd0;
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execvp(cmdfile, (char *const *)args);
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}
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exit(127); /* same as system() for failed commands */
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}
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ty->hand_fd = ecore_main_fd_handler_add(ty->fd, ECORE_FD_READ,
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_cb_fd_read, ty,
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NULL, NULL);
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close(ty->slavefd);
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_pty_size(ty);
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return ty;
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err:
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if (ty->screen) free(ty->screen);
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if (ty->screen2) free(ty->screen2);
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if (ty->fd >= 0) close(ty->fd);
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if (ty->slavefd >= 0) close(ty->slavefd);
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free(ty);
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return NULL;
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}
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void
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termpty_free(Termpty *ty)
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{
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if (ty->fd >= 0) close(ty->fd);
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if (ty->slavefd >= 0) close(ty->slavefd);
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if (ty->pid >= 0)
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{
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int i;
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// in case someone stopped the child - cont it
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kill(ty->pid, SIGCONT);
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// signpipe for shells
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kill(ty->pid, SIGPIPE);
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// try 400 time (sleeping for 1ms) to check for death of child
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for (i = 0; i < 400; i++)
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{
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int status = 0;
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// poll exit of child pid
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if (waitpid(ty->pid, &status, WNOHANG) == ty->pid)
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{
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// if child exited - break loop and mark pid as done
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ty->pid = -1;
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break;
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}
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// after 100ms set sigint
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if (i == 100) kill(ty->pid, SIGINT);
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// after 200ms send term signal
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else if (i == 200) kill(ty->pid, SIGTERM);
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// after 300ms send quit signal
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else if (i == 300) kill(ty->pid, SIGQUIT);
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usleep(1000); // sleep 1ms
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}
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// so 400ms and child not gone - KILL!
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if (ty->pid >= 0)
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{
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kill(ty->pid, SIGKILL);
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ty->pid = -1;
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}
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}
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if (ty->hand_exe_exit) ecore_event_handler_del(ty->hand_exe_exit);
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if (ty->hand_fd) ecore_main_fd_handler_del(ty->hand_fd);
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if (ty->prop.title) eina_stringshare_del(ty->prop.title);
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if (ty->prop.icon) eina_stringshare_del(ty->prop.icon);
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if (ty->back)
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{
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int i;
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for (i = 0; i < ty->backmax; i++)
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{
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if (ty->back[i]) free(ty->back[i]);
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}
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free(ty->back);
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}
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if (ty->screen) free(ty->screen);
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if (ty->screen2) free(ty->screen2);
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if (ty->buf) free(ty->buf);
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memset(ty, 0, sizeof(Termpty));
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free(ty);
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}
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Termcell *
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termpty_cellrow_get(Termpty *ty, int y, int *wret)
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{
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Termsave *ts;
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if (y >= 0)
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{
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if (y >= ty->h) return NULL;
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*wret = ty->w;
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return &(ty->screen[y * ty->w]);
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}
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if (y < -ty->backmax) return NULL;
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ts = ty->back[(ty->backmax + ty->backpos + y) % ty->backmax];
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if (!ts) return NULL;
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*wret = ts->w;
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return ts->cell;
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}
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void
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termpty_write(Termpty *ty, const char *input, int len)
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{
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if (ty->fd < 0) return;
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if (write(ty->fd, input, len) < 0) ERR("write %s", strerror(errno));
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}
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void
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termpty_resize(Termpty *ty, int w, int h)
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{
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Termcell *olds, *olds2;
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int y, ww, hh, oldw, oldh;
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if ((ty->w == w) && (ty->h == h)) return;
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olds = ty->screen;
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olds2 = ty->screen2;
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oldw = ty->w;
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oldh = ty->h;
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ty->w = w;
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ty->h = h;
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ty->state.had_cr = 0;
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_limit_coord(ty, &(ty->state));
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_limit_coord(ty, &(ty->swap));
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_limit_coord(ty, &(ty->save));
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ty->screen = calloc(1, sizeof(Termcell) * ty->w * ty->h);
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if (!ty->screen)
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{
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ty->screen2 = NULL;
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ERR("memerr");
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}
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ty->screen2 = calloc(1, sizeof(Termcell) * ty->w * ty->h);
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if (!ty->screen2)
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{
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ERR("memerr");
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}
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ww = ty->w;
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hh = ty->h;
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if (ww > oldw) ww = oldw;
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if (hh > oldh) hh = oldh;
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for (y = 0; y < hh; y++)
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{
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Termcell *c1, *c2;
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c1 = &(olds[y * oldw]);
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c2 = &(ty->screen[y * ty->w]);
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_termpty_text_copy(ty, c1, c2, ww);
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c1 = &(olds2[y * oldw]);
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c2 = &(ty->screen2[y * ty->w]);
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_termpty_text_copy(ty, c1, c2, ww);
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}
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free(olds);
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free(olds2);
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_pty_size(ty);
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}
|
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|
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void
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termpty_backscroll_set(Termpty *ty, int size)
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{
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int i;
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if (ty->backmax == size) return;
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if (ty->back)
|
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{
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for (i = 0; i < ty->backmax; i++)
|
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{
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if (ty->back[i]) free(ty->back[i]);
|
|
}
|
|
free(ty->back);
|
|
}
|
|
if (size > 0)
|
|
ty->back = calloc(1, sizeof(Termsave *) * size);
|
|
else
|
|
ty->back = NULL;
|
|
ty->backscroll_num = 0;
|
|
ty->backpos = 0;
|
|
ty->backmax = size;
|
|
}
|
|
|
|
pid_t
|
|
termpty_pid_get(const Termpty *ty)
|
|
{
|
|
return ty->pid;
|
|
}
|