7 Commits

Author SHA1 Message Date
BritishTeapot
40ca81d744 Updated header function description for interactive_access 2025-03-31 14:36:26 +02:00
BritishTeapot
d4e86c8620 Reorgised the code 2025-03-31 14:33:43 +02:00
BritishTeapot
845c264989 Removed unnecessary include 2025-03-31 13:32:10 +02:00
BritishTeapot
57091bf0ce Made create to grant permissions automatically.
Creating files grants permanent permissions to them now. This makes
sense because if a program creates a new file, then it clearly can't
steal any data. This is particularly useful for programs which open an
obscene amount of auxilary files (e.g. neovim with a huge amount of
plugins).
2025-03-30 19:48:11 +02:00
BritishTeapot
62f3e5bde9 Added the test permanent permissions table to gitignore 2025-03-30 19:09:02 +02:00
BritishTeapot
608943d685 Added new permanent permissions tests. 2025-03-30 19:07:32 +02:00
BritishTeapot
7e111b16b7 Added permanent permissions
Finally implemented the permanent permission tables using sqlite3. For
now, performance wasn't a consideration. There are a lot of
optimizations that could be made, like having prepared queries. The code
remains fairly untested.
2025-03-30 19:06:57 +02:00
11 changed files with 312 additions and 56 deletions

1
.gitignore vendored
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@@ -2,4 +2,5 @@ build/*
.clang-tidy
.cache
test/protected/*
test/.pt.db
compile_commands.json

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@@ -12,7 +12,7 @@ CXX := g++
# dependencies
PACKAGE_NAMES := fuse3
PACKAGE_NAMES := fuse3 sqlite3
ifeq ($(TEST), 1)
# PACKAGE_NAMES += check # TODO: use check?
@@ -56,7 +56,7 @@ default: $(TARGETS)
.PHONY: clean
$(BUILD_DIR)/icfs: $(BUILD_DIR)/main.o $(BUILD_DIR)/fuse_operations.o $(BUILD_DIR)/sourcefs.o $(BUILD_DIR)/ui-socket.o $(BUILD_DIR)/temp_permissions_table.o
$(BUILD_DIR)/icfs: $(BUILD_DIR)/main.o $(BUILD_DIR)/fuse_operations.o $(BUILD_DIR)/sourcefs.o $(BUILD_DIR)/ui-socket.o $(BUILD_DIR)/temp_permissions_table.o $(BUILD_DIR)/perm_permissions_table.o
$(CC) $(CFLAGS) $^ $(LDFLAGS) -o $(BUILD_DIR)/icfs
icfs_test: $(BUILD_DIR)/icfs
@@ -80,5 +80,9 @@ $(BUILD_DIR)/ui-socket.o: $(SOURCES_DIR)/ui-socket.c $(SOURCES_DIR)/ui-socket.h
$(BUILD_DIR)/temp_permissions_table.o: $(SOURCES_DIR)/temp_permissions_table.c $(SOURCES_DIR)/temp_permissions_table.h
$(CC) $(CFLAGS) -c $< $(LDFLAGS) -o $@
$(BUILD_DIR)/perm_permissions_table.o: $(SOURCES_DIR)/perm_permissions_table.c $(SOURCES_DIR)/perm_permissions_table.h
$(CC) $(CFLAGS) -c $< $(LDFLAGS) -o $@
clean:
rm $(BUILD_DIR)/*.o $(BUILD_DIR)/icfs*

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@@ -116,12 +116,11 @@ static int xmp_access(const char *path, int mask) {
struct fuse_context *fc = fuse_get_context();
pi.PID = fc->pid;
pi.UID = fc->uid;
pi.name = get_process_name_by_pid(pi.PID);
// fprintf(stderr, "%s, %d\n", path, ask_access(path, pi));
if (!interactive_access(real_filename(path), pi)) {
if (!interactive_access(real_filename(path), pi, 0)) {
free(pi.name);
return -EACCES;
}
@@ -281,12 +280,11 @@ static int xmp_unlink(const char *path) {
// ask the user for the permission for deleting the file
pi.PID = fc->pid;
pi.UID = fc->uid;
pi.name = get_process_name_by_pid(pi.PID);
// fprintf(stderr, "%s, %d\n", path, ask_access(path, pi));
if (!interactive_access(real_filename(path), pi)) {
if (!interactive_access(real_filename(path), pi, 0)) {
free(pi.name);
return -EACCES;
}
@@ -330,12 +328,11 @@ static int xmp_rename(const char *from, const char *to, unsigned int flags) {
struct fuse_context *fc = fuse_get_context();
pi.PID = fc->pid;
pi.UID = fc->uid;
pi.name = get_process_name_by_pid(pi.PID);
// fprintf(stderr, "%s, %d\n", path, ask_access(path, pi));
if (!interactive_access(real_filename(from), pi)) {
if (!interactive_access(real_filename(from), pi, 0)) {
free(pi.name);
return -EACCES;
}
@@ -343,7 +340,7 @@ static int xmp_rename(const char *from, const char *to, unsigned int flags) {
// the "to" file may exist and the process needs to get persmission to modify
// it
if (source_access(to, F_OK) == 0 &&
!interactive_access(real_filename(to), pi)) {
!interactive_access(real_filename(to), pi, 0)) {
free(pi.name);
return -EACCES;
}
@@ -363,11 +360,10 @@ static int xmp_link(const char *from, const char *to) {
struct fuse_context *fc = fuse_get_context();
pi.PID = fc->pid;
pi.UID = fc->uid;
pi.name = get_process_name_by_pid(pi.PID);
// fprintf(stderr, "%s, %d\n", path, ask_access(path, pi));
if (!interactive_access(real_filename(from), pi)) {
if (!interactive_access(real_filename(from), pi, 0)) {
free(pi.name);
return -EACCES;
}
@@ -389,11 +385,10 @@ static int xmp_chmod(const char *path, mode_t mode, struct fuse_file_info *fi) {
struct fuse_context *fc = fuse_get_context();
pi.PID = fc->pid;
pi.UID = fc->uid;
pi.name = get_process_name_by_pid(pi.PID);
// fprintf(stderr, "%s, %d\n", path, ask_access(path, pi));
if (!interactive_access(real_filename(path), pi)) {
if (!interactive_access(real_filename(path), pi, 0)) {
free(pi.name);
return -EACCES;
}
@@ -421,11 +416,10 @@ static int xmp_chown(const char *path, uid_t uid, gid_t gid,
struct fuse_context *fc = fuse_get_context();
pi.PID = fc->pid;
pi.UID = fc->uid;
pi.name = get_process_name_by_pid(pi.PID);
// fprintf(stderr, "%s, %d\n", path, ask_access(path, pi));
if (!interactive_access(real_filename(path), pi)) {
if (!interactive_access(real_filename(path), pi, 0)) {
free(pi.name);
return -EACCES;
}
@@ -476,17 +470,16 @@ static int xmp_utimens(const char *path, const struct timespec ts[2],
static int xmp_create(const char *path, mode_t mode,
struct fuse_file_info *fi) {
int fd;
int fd = -1;
struct process_info pi;
struct fuse_context *fc = fuse_get_context();
pi.PID = fc->pid;
pi.UID = fc->uid;
pi.name = get_process_name_by_pid(pi.PID);
// fprintf(stderr, "%s, %d\n", path, ask_access(path, pi));
if (!interactive_access(real_filename(path), pi)) {
if (!interactive_access(real_filename(path), pi, GRANT_PERM)) {
free(pi.name);
return -EACCES;
}
@@ -507,11 +500,10 @@ static int xmp_open(const char *path, struct fuse_file_info *fi) {
struct fuse_context *fc = fuse_get_context();
pi.PID = fc->pid;
pi.UID = fc->uid;
pi.name = get_process_name_by_pid(pi.PID);
// fprintf(stderr, "%s, %d\n", path, ask_access(path, pi));
if (!interactive_access(real_filename(path), pi)) {
if (!interactive_access(real_filename(path), pi, 0)) {
free(pi.name);
return -EACCES;
}

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@@ -38,7 +38,7 @@ int main(int argc, char *argv[]) {
ret = init_ui_socket();
if (ret != 0) {
perror("init_ui_socket");
fprintf(stderr, "Could not initalize ui-socket.\n");
exit(EXIT_FAILURE);
}

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@@ -0,0 +1,192 @@
#include "perm_permissions_table.h"
#include "process_info.h"
#include <sqlite3.h>
#include <stddef.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
sqlite3 *perm_database = NULL;
const char *const table_name = "permissions";
// one row corresponds to a permission to access one file for one executable
const int column_count = 2;
const char *const schema[] = {"executable", "filename"};
const char *const types[] = {"TEXT", "TEXT"};
static int check_table_col_schema(void *notused, int argc, char **argv,
char **colname) {
(void)notused;
(void)colname;
if (argc < 3) {
fprintf(stderr, "Unexpected amount of arguments given to the callback.\n");
return 1;
}
int i = atoi(argv[0]);
if (i >= column_count) {
fprintf(stderr, "Table contains more columns than expected.\n");
return 1;
}
if (strcmp(schema[i], argv[1]) == 0 && strcmp(types[i], argv[2]) == 0) {
return 0;
}
fprintf(stderr, "Column %d does not conform to the schema.\n", i);
return 1;
}
static int set_flag(void *flag, int argc, char **argv, char **colname) {
(void)argc;
(void)argv;
(void)colname;
*(int *)flag = 1;
return 0;
}
int create_database_schema() {
fprintf(stderr, "Creating table 'permissions'.\n");
const char *create_query = "CREATE TABLE permissions(executable TEXT NOT "
"NULL, filename TEXT NOT NULL);";
char *err = NULL;
int ret = sqlite3_exec(perm_database, create_query, NULL, NULL, &err);
if (ret != SQLITE_OK) {
fprintf(stderr, "sqlite3 error: %s\n", err);
sqlite3_free(err);
return 1;
}
fprintf(stderr, "Database created successfully\n");
return 0;
}
/**
* Ensures that the database schema is correct.
*
* @return: 0 if the schema is correct, 1 if the schema could not be corrected.
*/
int ensure_database_schema() {
// Check for the table.
int result = sqlite3_table_column_metadata(
perm_database, NULL, table_name, NULL, NULL, NULL, NULL, NULL, NULL);
if (result == SQLITE_ERROR) {
fprintf(stderr, "Table '%s' does not exist.\n", table_name);
if (create_database_schema()) {
fprintf(stderr, "Table could not be created.\n");
return 1;
}
return 0;
} else if (result != SQLITE_OK) {
fprintf(stderr, "Database metadata could not be retrieved.\n");
return 1;
}
const char *pragma = "PRAGMA table_info(permissions);";
char *err = NULL;
int ret =
sqlite3_exec(perm_database, pragma, check_table_col_schema, NULL, &err);
if (ret != SQLITE_OK) {
fprintf(stderr, "sqlite3 error: %s\n", err);
sqlite3_free(err);
return 1;
}
fprintf(stderr, "Schema is correct.\n");
return 0;
}
/**
* Initializes the permanent permissions table.
*
* @param db_filename: The filename of the permissions sqlite3 database
* @return: 0 on success, -1 on failure
*/
int init_perm_permissions_table(const char *db_filename) {
if (sqlite3_open(db_filename, &perm_database)) {
perror("Can't open permanent permissions database:");
return -1;
}
if (ensure_database_schema()) {
fprintf(stderr, "Database schema is not correct.\n");
return -1;
}
return 0;
}
/**
* Destroys the permanent permissions table.
*/
void destroy_perm_permissions_table() { sqlite3_close(perm_database); }
/**
* Checks if the process has a permanent access to the file.
*
* @param filename: The file that the process is trying to access
* @pram pi: The process information
* @return: 0 if access is denied, 1 if access is allowed
*/
int check_perm_access(const char *filename, struct process_info pi) {
size_t query_len =
56 + strlen(table_name) + strlen(filename) + strlen(pi.name);
const char *query = malloc(query_len);
size_t should_be_written = snprintf(
query, query_len,
"SELECT * FROM %s WHERE executable = \'%s\' AND filename = \'%s\';",
table_name, pi.name, filename);
// -1 for the \0
if (should_be_written != query_len - 1) {
fprintf(stderr,
"Unexpected query size while permanent access rule check: "
"Expected %lu, but snprintf returned %lu. The query: %s\n",
query_len, should_be_written, query);
return 0;
}
char *sqlite_error = NULL;
int flag = 0;
int ret = sqlite3_exec(perm_database, query, set_flag, &flag, &sqlite_error);
if (ret != SQLITE_OK) {
fprintf(stderr, "SQLite returned an error: %s\n", sqlite_error);
sqlite3_free(sqlite_error);
free(query);
return 0;
}
free(query);
return flag;
}
/**
* Gives permanent access to the process to the file.
*
* @param filename: The file that the process is trying to access
* @param pi: The process information
* @return: 0 on success, 1 on failure
*/
int give_perm_access(const char *filename, struct process_info pi) {
size_t query_len =
30 + strlen(table_name) + strlen(filename) + strlen(pi.name);
const char *query = malloc(query_len);
size_t should_be_written =
snprintf(query, query_len, "INSERT INTO %s VALUES (\'%s\', \'%s\');",
table_name, pi.name, filename);
// -1 for the \0
if (should_be_written != query_len - 1) {
fprintf(stderr,
"Unexpected query size while permanent access rule insertion: "
"Expected %lu, but snprintf returned %lu\n",
query_len, should_be_written);
return 1;
}
char *sqlite_error = NULL;
int ret = sqlite3_exec(perm_database, query, NULL, NULL, &sqlite_error);
if (ret != SQLITE_OK) {
fprintf(stderr, "SQLite returned an error: %s\n", sqlite_error);
sqlite3_free(sqlite_error);
free(query);
return 1;
}
free(query);
return 0;
}

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@@ -0,0 +1,38 @@
#ifndef PERM_PERMISSION_TABLE_H
#define PERM_PERMISSION_TABLE_H
#include "process_info.h"
/**
* Initializes the permanent permissions table.
*
* @param db_filename: The filename of the permissions sqlite3 database
* @return: 0 on success, -1 on failure (e.g. ENOMEM)
*/
int init_perm_permissions_table(const char *db_filename);
/**
* Destroys the permanent permissions table.
*/
void destroy_perm_permissions_table();
/**
* Checks if the process has a permanent access to the file.
*
* @param filename: The file that the process is trying to access
* @pram pi: The process information
* @return: 0 if access is denied, 1 if access is allowed
*/
int check_perm_access(const char *filename, struct process_info pi);
/**
* Gives permanent access to the process to the file.
*
* @param filename: The file that the process is trying to access
* @param pi: The process information
* @return: 0 on success, -1 on failure
*/
int give_perm_access(const char *filename, struct process_info pi);
#endif // #ifdef PERM_PERMISSION_TABLE_H

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@@ -6,7 +6,6 @@
struct process_info {
pid_t PID;
const char *name;
uid_t UID;
};
#endif // PROCESS_INFO_H

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@@ -10,7 +10,7 @@
#include <sys/types.h>
#include <time.h>
#define _GNU_SOURCE
#include "cc.h"
#include "perm_permissions_table.h"
#include "temp_permissions_table.h"
#include "ui-socket.h"
#include <errno.h>
@@ -26,7 +26,16 @@ int init_ui_socket() {
char line[256];
FILE *fp;
init_temp_permissions_table();
if (init_temp_permissions_table()) {
fprintf(stderr, "Could not initialize temporary permissions table.\n");
return 1;
}
if (init_perm_permissions_table(
"/home/fedir/Developement/uni/ICFS/test/.pt.db")) {
fprintf(stderr, "Could not initialize permanent permissions table.\n");
return 1;
}
// Test if Zenity is installed (get version)
fp = popen("zenity --version", "r");
@@ -41,19 +50,21 @@ int init_ui_socket() {
return 0;
}
void destroy_ui_socket() { destroy_temp_permissions_table(); }
void destroy_ui_socket() {
destroy_temp_permissions_table();
destroy_perm_permissions_table();
}
/**
* Asks the user if the process should be allowed to access the file using the
* GUI
*
* @param filename: The file that the process is trying to access
* @pram pi: The process information
* @return: 0 if access is denied, 1 if access is allowed, 2 if access is allwed
* for the runtime of the process
* @param pi: The process information
* @return: 0 if access is denied, 1 if access is allowed, 2 if access is
* allowed for the runtime of the process
*/
int ask_access(const char *filename, struct process_info pi) {
FILE *fp;
size_t command_len =
139 + sizeof(pid_t) * 8 + strlen(pi.name) + strlen(filename);
@@ -86,6 +97,7 @@ int ask_access(const char *filename, struct process_info pi) {
}
int zenity_exit_code = WEXITSTATUS(pclose(fp));
fprintf(stderr, "zenity returned %d\n", zenity_exit_code);
// zenity returns 1 on "No" >:(
if (zenity_exit_code == 0) {
return 1;
@@ -94,22 +106,6 @@ int ask_access(const char *filename, struct process_info pi) {
return 0;
}
/**
* Checks if the process has a permanent access to the file.
*
* @param filename: The file that the process is trying to access
* @pram pi: The process information
* @return: 0 if access is denied, 1 if access is allowed
*/
int check_perm_access(const char *filename, struct process_info pi) {
perror("Not implemented");
return 0;
}
int give_perm_access(const char *filename, struct process_info pi) {
perror("Not implemented");
return -1;
}
/**
* Check access according to:
* 1. temp permission table
@@ -118,15 +114,28 @@ int give_perm_access(const char *filename, struct process_info pi) {
*
* @param filename: The file that the process is trying to access
* @pram pi: The process information
* @param opts: options (GRANT_TEMP, GRANT_PERM)
* @return: 0 if access is denied, 1 if access is allowed
*/
int interactive_access(const char *filename, struct process_info pi) {
int interactive_access(const char *filename, struct process_info pi, int opts) {
if (check_temp_access(filename, pi) || check_perm_access(filename, pi)) {
// access was already granted before
return 1;
}
// if noth GRANT_TEMP and GRANT_PERM are selected, then only permanent
// permissions are granted
if (opts & GRANT_PERM) {
give_perm_access(filename, pi);
return 1;
}
if (opts & GRANT_TEMP) {
give_temp_access(filename, pi);
return 1;
}
int user_response = ask_access(filename, pi);
if (user_response == 1) {
// user said "yes"

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@@ -36,8 +36,13 @@ void destroy_ui_socket(void);
*
* @param filename: The file that the process is trying to access
* @pram pi: The process information
* @param opts: options (GRANT_TEMP, GRANT_PERM)
* @return: 0 if access is denied, 1 if access is allowed
*/
int interactive_access(const char *filename, struct process_info pi);
int interactive_access(const char *filename, struct process_info pi, int opts);
#define GRANT_TEMP 1
#define GRANT_PERM 2
// #define TABLE_ONLY 4 // NOTE: Add this in the future?
#endif // !UI_SOCKET_H

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@@ -20,4 +20,4 @@ else
fi
fi
exit -1 # TODO: call actual zenity here
exit 255 # TODO: call actual zenity here

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@@ -2,6 +2,7 @@
# clean what was left from previous tests
rm -f ./.pt.db
rm -rf ./protected
mkdir protected
touch ./protected/do-not-remove ./protected/should-be-removed ./protected/truth ./protected/perm000 ./protected/perm777 ./protected/should-be-renamed ./protected/do-not-rename
@@ -17,29 +18,32 @@ PATH="$(realpath ./mock/):$PATH"
echo "Run $(date -u +%Y-%m-%dT%H:%M:%S) "
valgrind -s ../build/icfs -o default_permissions ./protected &
sleep 1
sleep 5
# WARN: please don't use `>` or `>>` operators. They force **this script** to open the file, **not the program you are trying to run**. This is probably not what you mean when you want to test a specific program's access.
# WARN: avoid using touch, since it generates errors because setting times is not implemented in icfs **yet**.
# create files
zenity --set-fake-response no
touch ./protected/should-not-exist 2>/dev/null &&
echo "[ICFS-TEST]: touch can create protected/should-not-exist despite access being denied!" ||
echo "[ICFS-TEST]: OK" # EACCESS
truncate -s 0 ./protected/should-exist-anyway 2>/dev/null &&
echo "[ICFS-TEST]: OK" ||
echo "[ICFS-TEST]: truncate cannot create protected/should-exist despite access being permitted!" # OK
zenity --set-fake-response yes_tmp
touch ./protected/should-exist 2>/dev/null &&
truncate -s 0 ./protected/should-exist 2>/dev/null &&
echo "[ICFS-TEST]: OK" ||
echo "[ICFS-TEST]: touch cannot create protected/should-exist despite access being permitted!" # OK
echo "[ICFS-TEST]: truncate cannot create protected/should-exist despite access being permitted!" # OK
# write to files
zenity --set-fake-response no
echo "Linux is a cancer that attaches itself in an intellectual property sense to everything it touches." >./protected/truth 2>/dev/null &&
sed -e 'a\'"Linux is a cancer that attaches itself in an intellectual property sense to everything it touches." "./protected/truth" 2>/dev/null &&
echo "[ICFS-TEST]: echo can write to protected/lie despite access being denied!" ||
echo "[ICFS-TEST]: OK" # EACCESS
zenity --set-fake-response yes_tmp
echo "Sharing knowledge is the most fundamental act of friendship. Because it is a way you can give something without loosing something." >./protected/truth 2>/dev/null &&
sed -e 'a\'"Sharing knowledge is the most fundamental act of friendship. Because it is a way you can give something without loosing something." "./protected/truth" 2>/dev/null &&
echo "[ICFS-TEST]: OK" ||
echo "[ICFS-TEST]: echo cannot write to protected/truth despite access being permitted!" # OK
@@ -89,6 +93,18 @@ chmod 000 ./protected/perm000 2>/dev/null &&
echo "[ICFS-TEST]: OK" ||
echo "[ICFS-TEST]: chmod cannot change permissions of protected/perm000 despite access being permitted!" # OK
# test permanent permissions
zenity --set-fake-response yes
cat ./protected/motto >/dev/null 2>/dev/null &&
echo "[ICFS-TEST]: OK" ||
echo "[ICFS-TEST]: echo cannot read protected/motto despite access being permitted!" # OK
zenity --set-fake-response no # this should be ignored
cat ./protected/motto >/dev/null 2>/dev/null &&
echo "[ICFS-TEST]: OK" ||
echo "[ICFS-TEST]: echo cannot read protected/motto despite access being permitted!" # OK
# unmount
sleep 0.5