Much better communication model

This commit is contained in:
2019-12-15 18:32:34 -05:00
parent 450f4de756
commit 3972ac655e
9 changed files with 233 additions and 74 deletions

View File

@@ -4,12 +4,19 @@
#include "libusb_helpers.h"
#include "libusb.h"
#include "stdlib.h"
#include <stdlib.h>
#include <string.h>
void free_dev_cmd_resp(struct dev_cmd_resp *resp)
{
if(resp->data != NULL) free(resp->data);
free(resp);
}
int dfu_send_data(struct pwned_device *dev, unsigned char *data, long data_len)
{
checkm8_debug_indent("dfu_send_data(dev = %p, data = %p, data_len = %li)\n", dev, data, data_len);
long index = 0, amount;
long long index = 0, amount;
int ret;
while(index < data_len)
@@ -31,24 +38,36 @@ int dfu_send_data(struct pwned_device *dev, unsigned char *data, long data_len)
static unsigned char nullbuf[16] = {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0};
int command(struct pwned_device *dev,
unsigned char *args, int arg_len,
unsigned char *resp, int response_len)
struct dev_cmd_resp *command(struct pwned_device *dev,
unsigned char *args, int arg_len, int response_len)
{
checkm8_debug_indent("command(dev = %p, args = %p, arg_len = %i resp = %p, response_len = %i)\n",
dev, args, arg_len, resp, response_len);
if(!is_device_bundle_open(dev)) return CHECKM8_FAIL_NODEV;
checkm8_debug_indent("command(dev = %p, args = %p, arg_len = %i, response_len = %i)\n",
dev, args, arg_len, response_len);
struct dev_cmd_resp *cmd_resp = calloc(1, sizeof(struct dev_cmd_resp));
unsigned char resp_buf[response_len];
if(!is_device_bundle_open(dev))
{
cmd_resp->ret = CHECKM8_FAIL_NODEV;
return cmd_resp;
}
int ret;
ret = dfu_send_data(dev, nullbuf, 16);
if(IS_CHECKM8_FAIL(ret)) return ret;
if(IS_CHECKM8_FAIL(ret))
{
cmd_resp->ret = ret;
return cmd_resp;
}
ret = libusb_control_transfer(dev->bundle->handle, 0x21, 1, 0, 0, nullbuf, 0, 100);
if(ret >= 0) checkm8_debug_indent("\ttransferred %i bytes\n", ret);
else
{
checkm8_debug_indent("\trequest failed with error code %i (%s)\n", ret, libusb_error_name(ret));
return CHECKM8_FAIL_XFER;
cmd_resp->ret = ret;
return cmd_resp;
}
ret = libusb_control_transfer(dev->bundle->handle, 0xA1, 3, 0, 0, nullbuf, 6, 100);
@@ -56,7 +75,8 @@ int command(struct pwned_device *dev,
else
{
checkm8_debug_indent("\trequest failed with error code %i (%s)\n", ret, libusb_error_name(ret));
return CHECKM8_FAIL_XFER;
cmd_resp->ret = ret;
return cmd_resp;
}
ret = libusb_control_transfer(dev->bundle->handle, 0xA1, 3, 0, 0, nullbuf, 6, 100);
@@ -64,40 +84,57 @@ int command(struct pwned_device *dev,
else
{
checkm8_debug_indent("\trequest failed with error code %i (%s)\n", ret, libusb_error_name(ret));
return CHECKM8_FAIL_XFER;
cmd_resp->ret = ret;
return cmd_resp;
}
ret = dfu_send_data(dev, args, arg_len);
if(IS_CHECKM8_FAIL(ret)) return ret;
if(IS_CHECKM8_FAIL(ret))
{
cmd_resp->ret = ret;
return cmd_resp;
}
if(response_len == 0)
{
ret = libusb_control_transfer(dev->bundle->handle,
0xA1, 2, 0xFFFF, 0,
resp, response_len + 1,
resp_buf, response_len + 1,
100);
if(ret >= 0) checkm8_debug_indent("\tfinal request transferred %i bytes\n", ret);
else
{
checkm8_debug_indent("\tfinal request failed with error code %i (%s)\n", ret, libusb_error_name(ret));
return CHECKM8_FAIL_XFER;
cmd_resp->ret = ret;
return cmd_resp;
}
}
else
{
ret = libusb_control_transfer(dev->bundle->handle,
0xA1, 2, 0xFFFF, 0,
resp, response_len,
resp_buf, response_len,
100);
if(ret >= 0) checkm8_debug_indent("\tfinal request transferred %i bytes\n", ret);
else
{
checkm8_debug_indent("\tfinal request failed with error code %i (%s)\n", ret, libusb_error_name(ret));
return CHECKM8_FAIL_XFER;
cmd_resp->ret = ret;
return cmd_resp;
}
}
return CHECKM8_SUCCESS;
cmd_resp->ret = CHECKM8_SUCCESS;
memcpy(&cmd_resp->magic, resp_buf, 8);
if(response_len - 8 > 0)
{
checkm8_debug_indent("\tcopying %i bytes of output to response data section\n", response_len - 8);
cmd_resp->data = calloc(1, response_len - 8);
memcpy(cmd_resp->data, &resp_buf[8], response_len - 8);
}
cmd_resp->len = response_len - 8;
return cmd_resp;
}
#define EXEC_MAGIC 0x6578656365786563ul // 'execexec'[::-1]
@@ -105,7 +142,7 @@ int command(struct pwned_device *dev,
#define MEMS_MAGIC 0x6d656d736d656d73ul // 'memsmems'[::-1]
#define DONE_MAGIC 0x646f6e65646f6e65ul // 'donedone'[::-1]
int dev_memset(struct pwned_device *dev, long addr, unsigned char c, int len)
struct dev_cmd_resp *dev_memset(struct pwned_device *dev, long long addr, unsigned char c, int len)
{
checkm8_debug_indent("dev_memset(dev = %p, addr = %lx, c = %x, len = %li)\n", dev, addr, c, len);
unsigned long long cmd_args[5];
@@ -115,13 +152,10 @@ int dev_memset(struct pwned_device *dev, long addr, unsigned char c, int len)
cmd_args[3] = (unsigned long long) c;
cmd_args[4] = len;
unsigned long long cmd_resp;
return command(dev,
(unsigned char *) &cmd_args, 5 * sizeof(unsigned long long),
(unsigned char *) &cmd_resp, 1 * sizeof(unsigned long long));
return command(dev, (unsigned char *) &cmd_args, 5 * sizeof(unsigned long long), 1 * sizeof(unsigned long long));
}
int dev_memcpy(struct pwned_device *dev, long dest, long src, int len)
struct dev_cmd_resp *dev_memcpy(struct pwned_device *dev, long long dest, long long src, int len)
{
checkm8_debug_indent("dev_memset(dev = %p, dest = %lx, src = %lx, len = %li)\n", dev, dest, src, len);
unsigned long long cmd_args[5];
@@ -131,28 +165,17 @@ int dev_memcpy(struct pwned_device *dev, long dest, long src, int len)
cmd_args[3] = src;
cmd_args[4] = len;
unsigned long long cmd_resp;
return command(dev,
(unsigned char *) &cmd_args, 5 * sizeof(unsigned long long),
(unsigned char *) &cmd_resp, 1 * sizeof(unsigned long long));
return command(dev, (unsigned char *) &cmd_args, 5 * sizeof(unsigned long long), 1 * sizeof(unsigned long long));
}
int dev_exec(struct pwned_device *dev, int response_len, int nargs, unsigned long long *args)
struct dev_cmd_resp *dev_exec(struct pwned_device *dev, int response_len, int nargs, unsigned long long *args)
{
checkm8_debug_indent("dev_exec(dev = %p, response_len = %lu, nargs = %i, args = %p\n", dev, response_len, nargs,
args);
if(nargs > 7)
{
checkm8_debug_indent("\ttoo many args\n");
return CHECKM8_FAIL_INVARGS;
}
checkm8_debug_indent("dev_exec(dev = %p, response_len = %lu, nargs = %i, args = %p\n", dev, response_len, nargs, args);
int ret, i;
int i;
unsigned long long *argbase;
checkm8_debug_indent("\tcopying args\n");
unsigned long long cmd_args[1 + nargs];
unsigned long long cmd_resp[1 + response_len];
checkm8_debug_indent("\tcopying args\n");
cmd_args[0] = EXEC_MAGIC;
cmd_args[1] = 0;
@@ -163,14 +186,69 @@ int dev_exec(struct pwned_device *dev, int response_len, int nargs, unsigned lon
checkm8_debug_indent("\t\t0x%lx (0d%li) (%s)\n", args[i], args[i], (char *) &args[i]);
}
ret = command(dev,
(unsigned char *) cmd_args, (1 + nargs) * sizeof(unsigned long long),
(unsigned char *) cmd_resp, 16 + 8 * response_len);
return command(dev, (unsigned char *) cmd_args, (1 + nargs) * sizeof(unsigned long long), 16 + response_len);
}
if(ret == CHECKM8_SUCCESS && ((unsigned long *) cmd_resp)[0] != DONE_MAGIC) return CHECKM8_FAIL_NOTDONE;
else
struct dev_cmd_resp *dev_read_memory(struct pwned_device *dev, long long addr, int len)
{
checkm8_debug_indent("dev_read_memory(dev = %p, addr = %lx, len = %i)\n", dev, addr, len);
long long index = 0, amount;
unsigned long long cmd_args[5];
struct dev_cmd_resp *resp, *ret = calloc(1, sizeof(struct dev_cmd_resp));
ret->data = calloc(1, len);
while(index < len)
{
checkm8_debug_indent("\tgot retval %lX\n", cmd_resp[1]);
return ret;
if(len - index >= CMD_USB_READ_LIMIT - 16) amount = CMD_USB_READ_LIMIT - 16;
else amount = len - index;
checkm8_debug_indent("\treading chunk of size %li at index %li\n", amount, index);
cmd_args[0] = MEMC_MAGIC;
cmd_args[1] = 0;
cmd_args[2] = DFU_IMAGE_BASE + 16;
cmd_args[3] = addr + index;
cmd_args[4] = amount;
resp = command(dev, (unsigned char *) &cmd_args, 5 * sizeof(unsigned long long), 16 + amount);
ret->ret = resp->ret;
if(IS_CHECKM8_FAIL(resp->ret))
{
checkm8_debug_indent("\tlast transfer failed, aborting\n");
free_dev_cmd_resp(resp);
free(ret->data);
ret->data = NULL;
return ret;
}
else
{
checkm8_debug_indent("\tsuccessfully copied chunk\n");
memcpy(&ret->data[index], &resp->data[8], amount);
free_dev_cmd_resp(resp);
}
index += amount;
}
ret->magic = DONE_MAGIC;
ret->len = len;
return ret;
}
struct dev_cmd_resp *dev_write_memory(struct pwned_device *dev, long long addr, unsigned char *data, int len)
{
checkm8_debug_indent("dev_write_memory(dev = %p, addr = %lx, data = %p, len = %i)\n", dev, addr, data, len);
unsigned char cmd_args[40 + len];
((unsigned long *) cmd_args)[0] = MEMC_MAGIC;
((unsigned long *) cmd_args)[1] = 0;
((unsigned long *) cmd_args)[2] = addr;
((unsigned long *) cmd_args)[3] = DFU_IMAGE_BASE + 40;
((unsigned long *) cmd_args)[4] = len;
memcpy(&cmd_args[40], data, len);
return command(dev, (unsigned char *) &cmd_args, 40 + len, 1 * sizeof(unsigned long long));
return dev_memcpy(dev, addr, DFU_IMAGE_BASE + 40, len);
}