Files
RTLPlayground/tools/fileadder.c
T
René van Dorst 884bc18a61 Remove flash_read_bulk(), refactor website and execute_config().
flash_read_bulk() is kind of a printf function. But did not work as well.
flash_read_bulk() was used in the http generation so this needed to be changed as well.

For the website we decided that we are going to use CSR(Client Side Rendering).
So every HTML and JS files are now static.
Variables are fetched via json calls and output is render on the client side.
Also usefull for the future when we want a REST like API.

execute_config() was also using flash_read_bulk().
This have been replaced with flash_read_bulk() and parsing the flash_buf buffer.
2025-10-05 15:47:14 +02:00

393 lines
11 KiB
C

/*
* Adds data files into specified locations of an image, optionally creates
* an index in the form of a header file
*/
#include <fcntl.h>
#include <sys/stat.h>
#include <unistd.h>
#include <dirent.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <argp.h>
#include <stdbool.h>
#define OFFSET 2
// Use a 4MB buffer, the same as the flash rom size
#define BUFFER_SIZE 0x400000
char buffer[BUFFER_SIZE];
FILE *inptr, *dataptr, *ofile;
int outptr;
#define PATH_SIZE 20480
#define INDEX_SIZE 20480
#define DEF_SIZE 20480
char pathbuffer[PATH_SIZE];
char ibuf[INDEX_SIZE];
char dbuf[DEF_SIZE];
char fbuf[DEF_SIZE];
char xbuf[DEF_SIZE];
int defbuf_p;
int ibuf_p;
int fbuf_p;
int xbuf_p;
bool addsDir = false;
int callNum = 0;
const char *argp_program_version = "fileadder 0.1";
const char *argp_program_bug_address = "<git@logicog.de>";
static char doc[] = "Adds a file or a directory of files into an image";
static char args_doc[] = "addfile [options] INPUT_IMAGE";
static struct argp_option options[] = {
{ "size", 's', "SIZE", 0, "Resize image"},
{ "output", 'o', "FILE", 0, "Output image file name instead of overwriting input image"},
{ "data", 'd', "FILE", 0, "File or directory to add to image"},
{ "address", 'a', "SIZE", 0, "Address where data is placed, default is 0x1000000 if option is used, otherwise 0x1fd000"},
{ "prefix", 'p', "FILE", 0, "Prefix for header and index file generation"},
{ "bank", 'b', "BANKNAME", 0, "Generate #pragma with given bank-name"},
{ 0 }
};
struct arguments {
int size, address;
char *output_file;
char *data_file;
char *prefix;
char *bank;
bool overwrite;
bool add_zero;
};
static error_t parse_opt(int key, char *arg, struct argp_state *state)
{
struct arguments *arguments = state->input;
switch (key) {
case 'a':
arguments->address = arg? atoi(arg): 0x100000; // Default address
break;
case 's':
arguments->size = arg? atoi(arg): 0x200000; // Default size is 2MB
break;
case 'o':
arguments->output_file = arg;
arguments->overwrite = false;
break;
case 'd':
arguments->data_file = arg;
break;
case 'p':
arguments->prefix = arg;
break;
case 'n':
arguments->add_zero = false;
break;
case 'b':
arguments->bank = arg? arg : "BANK1";
break;
default:
return ARGP_ERR_UNKNOWN;
}
return 0;
}
static struct argp argp = {
options, parse_opt, args_doc, doc, 0, 0, 0
};
int addfile(const char *name, int addr)
{
int dataptr = open(name, 0);
if (!dataptr) {
fprintf(stderr, "%s: ", name);
perror("Cannot open file for reading");
return 0;
}
int data_read = read(dataptr, &buffer[addr], sizeof(buffer) - addr);
if (data_read < 0) {
perror("Error reading file");
return 0;
}
close(dataptr);
return data_read;
}
int hasSuffix(const char *str, const char *suffix)
{
if (!str || !suffix)
return 0;
size_t lenstr = strlen(str);
size_t lensuffix = strlen(suffix);
if (lensuffix > lenstr)
return 0;
return strncmp(str + lenstr - lensuffix, suffix, lensuffix) == 0;
}
char *getMime(const char *name)
{
if (hasSuffix(name, ".html"))
return "mime_HTML";
else if (hasSuffix(name, ".svg"))
return "mime_SVG";
else if (hasSuffix(name, ".ico"))
return "mime_SVG";
else if (hasSuffix(name, ".png"))
return "mime_PNG";
else if (hasSuffix(name, ".js"))
return "mime_JS";
else if (hasSuffix(name, ".css"))
return "mime_CSS";
return "mime_TXT";
}
int addidx(const char *name, int addr, int len)
{
char s[256];
int i = 0;
while (name[i]) {
s[i] = name[i] == '.'? '_' : name[i];
i++;
}
s[i] = '\0';
defbuf_p += snprintf(&dbuf[defbuf_p], DEF_SIZE - defbuf_p, "#define FDATA_START_%s 0x%x\n", s, addr);
defbuf_p += snprintf(&dbuf[defbuf_p], DEF_SIZE - defbuf_p, "#define FDATA_SIZE_%s %d\n", s, len);
ibuf_p += snprintf(&ibuf[ibuf_p], INDEX_SIZE - ibuf_p, " {\"/%s\", FDATA_START_%s, FDATA_SIZE_%s, %s},\n", name, s, s, getMime(name));
if (!strcmp(name, "index.html"))
ibuf_p += snprintf(&ibuf[ibuf_p], INDEX_SIZE - ibuf_p, " {\"/\", FDATA_START_%s, FDATA_SIZE_%s, mime_HTML},\n", s, s);
return 0;
}
/*
* Replaces calls of the type #{function} in .html files being added
* It is assumed that the possibly expanded string will fit into the buffer
* Returns the new length of the string
*/
int replaceCalls(int pos)
{
int i = 0;
char function_buf[256];
while (buffer[pos + i]) {
if ((buffer[pos + i]) == '#' && (buffer[pos + i + 1] == '{')) {
int j = 2;
while (buffer[pos + i + j]) {
if (buffer[pos + i + j] == '}')
break;
function_buf[j - 2] = buffer[pos + i + j];
j++;
if (j >= 255) {
function_buf[255] = '\0';
fprintf(stderr, "Function not terminated %s ", function_buf);
exit(5);
}
}
function_buf[j - 2] = '\0';
if (!buffer[pos + i + j])
return i + j;
// Because the buffers overlap we cannot use strcpy
memmove(&buffer[pos + i + 5], &buffer[pos + i + j], strlen(&buffer[pos + i + j]) + 1);
sprintf(&buffer[pos + i + 2], "%03d", callNum);
buffer[pos + i + 5] = '}';
i += 6;
fbuf_p += snprintf(&fbuf[fbuf_p], DEF_SIZE - fbuf_p, " %s,\n", function_buf);
xbuf_p += snprintf(&xbuf[xbuf_p], DEF_SIZE - xbuf_p, "extern uint16_t %s(void);\n", function_buf);
callNum++;
}
i++;
}
return strlen(&buffer[pos]);
}
int main(int argc, char **argv)
{
struct arguments arguments;
int arg_index;
char tmpfilename[] = "image_XXXXXX";
struct stat s;
arguments.add_zero = true;
arguments.address = 0x1fd000;
arguments.size = 0;
arguments.overwrite = true;
arguments.prefix = 0;
arguments.bank = NULL;
argp_parse(&argp, argc, argv, 0, &arg_index, &arguments);
if (!arg_index)
argp_usage (0);
memset(buffer, 0, BUFFER_SIZE);
size_t filesize = 0;
if (argv[arg_index]) {
inptr = fopen(argv[arg_index], "rb");
if (inptr == NULL) {
printf("Cannot open input file %s\n", argv[arg_index]);
return 5;
}
fseek(inptr, 0L, SEEK_END);
filesize = ftell(inptr);
rewind(inptr);
printf("Input file size: %ld\n", filesize);
if (filesize > BUFFER_SIZE) {
printf("File too large.\n");
return 5;
}
size_t bytes_read = fread(buffer, 1, sizeof(buffer), inptr);
printf("Bytes read: %ld\n", bytes_read);
if (bytes_read != filesize) {
printf("Error reading input file.\n");
return 5;
}
fclose(inptr);
}
// Add preambles to index and header file
defbuf_p = ibuf_p = xbuf_p = fbuf_p = 0;
defbuf_p += snprintf(&dbuf[defbuf_p], DEF_SIZE - defbuf_p, "// This file is automatically generated, do not edit!\n\n");
defbuf_p += snprintf(&dbuf[defbuf_p], DEF_SIZE - defbuf_p, "#ifndef FDATA_DEFS_H\n");
defbuf_p += snprintf(&dbuf[defbuf_p], DEF_SIZE - defbuf_p, "#define FDATA_DEFS_H\n\n");
defbuf_p += snprintf(&dbuf[defbuf_p], DEF_SIZE - defbuf_p, "#include <stdint.h>\n\n");
defbuf_p += snprintf(&dbuf[defbuf_p], DEF_SIZE - defbuf_p,
"typedef enum mime_type_e {\n mime_HTML = 0,\n mime_SVG,\n mime_ICO,\n mime_PNG,\n mime_JS,\n mime_CSS,\n mime_TXT\n} mime_type_t;\n\n");
defbuf_p += snprintf(&dbuf[defbuf_p], DEF_SIZE - defbuf_p, "struct f_data {\n __code char *file;\n uint32_t start;\n uint16_t len;\n mime_type_t mime;\n};\n\n");
// defbuf_p += snprintf(&dbuf[defbuf_p], DEF_SIZE - defbuf_p, "typedef uint16_t (* fcall_ptr)(void);\n\n");
ibuf_p += snprintf(&ibuf[ibuf_p], INDEX_SIZE - ibuf_p, "// This file is automatically generated, do not edit!\n\n");
if (arguments.prefix)
ibuf_p += snprintf(&ibuf[ibuf_p], INDEX_SIZE - ibuf_p, "#include \"%s.h\"\n\n", arguments.prefix);
if (arguments.bank)
ibuf_p += snprintf(&ibuf[ibuf_p], INDEX_SIZE - ibuf_p, "#pragma codeseg %s\n\n", arguments.bank);
ibuf_p += snprintf(&ibuf[ibuf_p], INDEX_SIZE - ibuf_p, " __code char * __code mime_strings[] = {\n \"text/html\",\n \"image/svg+xml\",\n"
" \"image/svg+xml\",\n \"image/png\",\n \"text/javascript\",\n \"text/css\",\n \"text/plain\"};\n\n");
ibuf_p += snprintf(&ibuf[ibuf_p], INDEX_SIZE - ibuf_p, "__code struct f_data f_data[] = {\n");
// fbuf_p += snprintf(&fbuf[fbuf_p], DEF_SIZE - fbuf_p, "\n__code fcall_ptr f_calls[] = {\n");
// Now that the beginning of the buffer is filled with out image, optionally resize the image
if (filesize)
filesize = arguments.size? arguments.size : filesize;
if (stat(arguments.data_file, &s) == 0 && s.st_mode & S_IFDIR) {
printf("Adding entries in directory %s\n", arguments.data_file);
addsDir = true;
DIR *dirptr = opendir(arguments.data_file);
if (!dirptr) {
fprintf(stderr, "%s: ", arguments.data_file);
perror("Error opening directory");
return 5;
}
struct dirent *in_file;
int addr = arguments.address;
while ( (in_file = readdir(dirptr)) ) {
snprintf(pathbuffer, PATH_SIZE, "%s/%s", arguments.data_file, in_file->d_name);
if (stat(pathbuffer, &s) < 0) {
fprintf(stderr, "%s: ", pathbuffer);
perror("Stat failed");
continue;
}
if (! (s.st_mode & S_IFREG))
continue;
size_t data_read = addfile(pathbuffer, addr);
if (data_read) {
if (arguments.add_zero) {
buffer[addr + data_read + 1] = '\0';
data_read++;
}
printf("Data inserted from %s at 0x%x, size: %ld\n", pathbuffer, addr, data_read);
}
int old_len = data_read;
data_read = replaceCalls(addr);
if (old_len > data_read)
memset(buffer + addr + data_read, 0, old_len - data_read);
addidx(in_file->d_name, addr, data_read);
addr += data_read;
}
} else {
size_t data_read = addfile(arguments.data_file, arguments.address);
if (data_read) {
if (arguments.add_zero) {
buffer[arguments.address + data_read + 1] = '\0';
data_read++;
}
printf("Data inserted at 0x%x, size: %ld\n", arguments.address, data_read);
}
}
ibuf_p += snprintf(&ibuf[ibuf_p], INDEX_SIZE - ibuf_p, " {0, 0, 0}\n};\n");
// fbuf_p += snprintf(&fbuf[fbuf_p], DEF_SIZE - fbuf_p, "};\n");
defbuf_p += snprintf(&dbuf[defbuf_p], DEF_SIZE - defbuf_p, "#endif\n");
if (filesize) {
if (!arguments.overwrite)
outptr = creat(arguments.output_file, S_IRUSR | S_IWUSR | S_IRGRP | S_IWGRP);
else
outptr = mkstemp(tmpfilename);
if (!outptr) {
printf("Cannot open %s\n", arguments.output_file);
return 5;
}
size_t written = write(outptr, buffer, filesize);
if (written != filesize) {
printf("Error writing output file.\n");
return 5;
}
close(outptr);
if (arguments.overwrite)
rename(tmpfilename, argv[arg_index]);
}
if (arguments.prefix) {
snprintf(pathbuffer, PATH_SIZE, "%s.%s", arguments.prefix, "h");
ofile = fopen(pathbuffer, "w");
if (!ofile) {
fprintf(stderr, "%s: ", pathbuffer);
perror("Open failed");
return 5;
}
fputs(dbuf, ofile);
fclose(ofile);
snprintf(pathbuffer, PATH_SIZE, "%s.%s", arguments.prefix, "c");
ofile = fopen(pathbuffer, "w");
if (!ofile) {
fprintf(stderr, "%s: ", pathbuffer);
perror("Open failed");
return 5;
}
fputs(ibuf, ofile);
fputs(xbuf, ofile);
fputs(fbuf, ofile);
fclose(ofile);
} else if (addsDir){
puts(dbuf);
puts(xbuf);
puts(ibuf);
puts(fbuf);
}
return 0;
}