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fc6e799c26
Simplify r_print_string Fix r_io write boundaries
194 lines
5.2 KiB
C
194 lines
5.2 KiB
C
/* radare2 - LGPL - Copyright 2009-2013 - pancake */
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#include "r_core.h"
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R_API int r_core_dump(RCore *core, const char *file, ut64 addr, ut64 size) {
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ut64 i;
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ut8 *buf;
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int bs = core->blocksize;
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FILE *fd;
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r_sys_truncate (file, 0);
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fd = r_sandbox_fopen (file, "wb");
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if (!fd) {
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eprintf ("Cannot open '%s' for writing\n", file);
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return R_FALSE;
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}
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buf = malloc (bs);
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r_cons_break (NULL, NULL);
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for (i=0; i<size; i+=bs) {
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if (r_cons_singleton ()->breaked)
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break;
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if ((i+bs)>size)
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bs = size-i;
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r_io_read_at (core->io, addr+i, buf, bs);
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if (fwrite (buf, bs, 1, fd) <1) {
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eprintf ("write error\n");
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break;
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}
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}
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eprintf ("dumped 0x%"PFMT64x" bytes\n", i);
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r_cons_break_end ();
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fclose (fd);
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free (buf);
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return R_TRUE;
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}
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R_API int r_core_write_op(RCore *core, const char *arg, char op) {
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int i, j, len, ret = R_FALSE;
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char *str;
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ut8 *buf;
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// XXX we can work with config.block instead of dupping it
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buf = (ut8 *)malloc (core->blocksize);
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str = (char *)malloc (strlen (arg));
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if (buf == NULL || str == NULL)
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goto beach;
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memcpy (buf, core->block, core->blocksize);
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len = r_hex_str2bin (arg, (ut8 *)str);
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if (len==-1) {
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eprintf ("Invalid hexpair string\n");
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goto beach;
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}
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if (op=='2' || op=='4') {
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op -= '0';
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for (i=0; i<core->blocksize; i+=op) {
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/* endian swap */
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ut8 tmp = buf[i];
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buf[i] = buf[i+3];
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buf[i+3] = tmp;
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if (op==4) {
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tmp = buf[i+1];
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buf[i+1] = buf[i+2];
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buf[i+2] = tmp;
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}
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}
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} else {
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for (i=j=0; i<core->blocksize; i++) {
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switch (op) {
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case 'x': buf[i] ^= str[j]; break;
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case 'a': buf[i] += str[j]; break;
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case 's': buf[i] -= str[j]; break;
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case 'm': buf[i] *= str[j]; break;
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case 'w': buf[i] = str[j]; break;
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case 'd': buf[i] = (str[j])? buf[i] / str[j]: 0; break;
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case 'r': buf[i] >>= str[j]; break;
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case 'l': buf[i] <<= str[j]; break;
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case 'o': buf[i] |= str[j]; break;
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case 'A': buf[i] &= str[j]; break;
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}
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j++; if (j>=len) j=0; /* cyclic key */
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}
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}
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ret = r_core_write_at (core, core->offset, buf, core->blocksize);
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beach:
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free (buf);
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free (str);
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return ret;
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}
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R_API boolt r_core_seek(RCore *core, ut64 addr, boolt rb) {
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RIOSection *newsection;
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ut64 old = core->offset;
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ut64 ret;
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/* XXX unnecesary call */
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//r_io_set_fd (core->io, core->file->fd);
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core->io->section = core->section; // HACK
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ret = r_io_seek (core->io, addr, R_IO_SEEK_SET);
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newsection = core->io->section;
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if (ret == UT64_MAX) {
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//eprintf ("RET =%d %llx\n", ret, addr);
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/*
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XXX handle read errors correctly
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if (core->ffio) {
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core->offset = addr;
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} else return R_FALSE;
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*/
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//core->offset = addr;
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if (!core->io->va)
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return R_FALSE;
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memset (core->block, 0xff, core->blocksize);
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} else core->offset = addr;
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if (rb) {
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ret = r_core_block_read (core, 0);
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if (core->ffio) {
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if (ret<1 || ret > core->blocksize)
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memset (core->block, 0xff, core->blocksize);
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else memset (core->block+ret, 0xff, core->blocksize-ret);
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ret = core->blocksize;
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core->offset = addr;
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} else {
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if (ret<1) {
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core->offset = old;
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//eprintf ("Cannot read block at 0x%08"PFMT64x"\n", addr);
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}
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}
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}
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if (core->section != newsection) {//&& core->io->section->arch) {
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int bits = 0;// = core->io->section->bits;
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const char *arch = r_io_section_get_archbits (core->io, core->offset, &bits);
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if (arch && bits) {
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r_config_set (core->config, "asm.arch", arch);
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r_config_set_i (core->config, "asm.bits", bits);
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}
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core->section = core->io->section;
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}
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return (ret==-1)? R_FALSE: R_TRUE;
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}
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R_API int r_core_write_at(RCore *core, ut64 addr, const ut8 *buf, int size) {
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int ret;
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if (!core->io || !core->file || size<1)
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return R_FALSE;
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ret = r_io_set_fd (core->io, core->file->fd);
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if (ret != -1) {
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ret = r_io_write_at (core->io, addr, buf, size);
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if (addr >= core->offset && addr <= core->offset+core->blocksize)
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r_core_block_read (core, 0);
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}
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core->file->size = r_io_size (core->io);
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return (ret==-1)? R_FALSE: R_TRUE;
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}
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R_API int r_core_block_read(RCore *core, int next) {
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ut64 off;
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if (core->file == NULL) {
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memset (core->block, 0xff, core->blocksize);
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return -1;
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}
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r_io_set_fd (core->io, core->file->fd);
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off = r_io_seek (core->io, core->offset+((next)?core->blocksize:0), R_IO_SEEK_SET);
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if (off == UT64_MAX) {
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memset (core->block, 0xff, core->blocksize);
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return -1;
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}
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return (int)r_io_read (core->io, core->block, core->blocksize);
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}
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R_API int r_core_read_at(RCore *core, ut64 addr, ut8 *buf, int size) {
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int ret;
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if (!core->io || !core->file || size<1)
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return R_FALSE;
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#if 0
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r_io_set_fd (core->io, core->file->fd); // XXX ignore ret? -- ultra slow method.. inverse resolution of io plugin brbrb
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ret = r_io_read_at (core->io, addr, buf, size);
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if (addr>=core->offset && addr<=core->offset+core->blocksize)
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r_core_block_read (core, 0);
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#else
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r_io_set_fd (core->io, core->file->fd); // XXX ignore ret? -- ultra slow method.. inverse resolution of io plugin brbrb
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//ret = r_io_read_at (core->io, addr, buf, size);
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r_io_seek (core->io, addr, R_IO_SEEK_SET);
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ret = r_io_read (core->io, buf, size);
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if (ret != size) {
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if (ret>=size || ret<0) ret = 0;
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memset (buf+ret, 0xff, size-ret);
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}
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if (addr>=core->offset && addr<=core->offset+core->blocksize)
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r_core_block_read (core, 0);
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#endif
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return (ret==size); //UT64_MAX);
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}
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