Fixed, all tests pass

This commit is contained in:
Alexey Romanov
2011-04-19 17:38:58 +04:00
parent dddb991d5e
commit 442fc256d5
3 changed files with 91 additions and 67 deletions

View File

@@ -41,7 +41,9 @@ static inline void free_ptr_list(ptr_list *list, void(* free_head)(void *));
static inline int max(int a, int b);
#endif
static inline int sql_is_insert(const char *sql);
#ifdef DEBUG
static void print_dataset(ErlDrvTermData* dataset, int term_count);
#endif
// required because driver_free(_binary) are macros in Windows
void driver_free_fun(void *ptr) {
@@ -174,33 +176,40 @@ static int control(
static inline int return_error(
sqlite3_drv_t *drv, int error_code, const char *error,
ErlDrvTermData **spec, int *term_count, int* error_code_p) {
if (error_code_p) {
*error_code_p = error_code;
ErlDrvTermData **p_dataset, int *p_term_count, int *p_term_allocated,
int* p_error_code) {
if (p_error_code) {
*p_error_code = error_code;
}
*spec = (ErlDrvTermData *) driver_alloc(11 * sizeof(ErlDrvTermData));
(*spec)[0] = ERL_DRV_PORT;
(*spec)[1] = driver_mk_port(drv->port);
(*spec)[2] = ERL_DRV_ATOM;
(*spec)[3] = drv->atom_error;
(*spec)[4] = ERL_DRV_INT;
(*spec)[5] = error_code;
(*spec)[6] = ERL_DRV_STRING;
(*spec)[7] = (ErlDrvTermData) error;
(*spec)[8] = strlen(error);
(*spec)[9] = ERL_DRV_TUPLE;
(*spec)[10] = 4;
*term_count = 11;
*p_term_count += 9;
if (*p_term_count > *p_term_allocated) {
*p_term_allocated = max(*p_term_count, (*p_term_allocated)*2);
*p_dataset = driver_realloc(*p_dataset, sizeof(ErlDrvTermData) * *p_term_allocated);
}
(*p_dataset)[*p_term_count - 9] = ERL_DRV_ATOM;
(*p_dataset)[*p_term_count - 8] = drv->atom_error;
(*p_dataset)[*p_term_count - 7] = ERL_DRV_INT;
(*p_dataset)[*p_term_count - 6] = error_code;
(*p_dataset)[*p_term_count - 5] = ERL_DRV_STRING;
(*p_dataset)[*p_term_count - 4] = (ErlDrvTermData) error;
(*p_dataset)[*p_term_count - 3] = strlen(error);
(*p_dataset)[*p_term_count - 2] = ERL_DRV_TUPLE;
(*p_dataset)[*p_term_count - 1] = 3;
return 0;
}
static inline int output_error(
sqlite3_drv_t *drv, int error_code, const char *error) {
ErlDrvTermData *dataset;
int term_count;
return_error(drv, error_code, error, &dataset, &term_count, NULL);
int term_count = 2, term_allocated = 13;
ErlDrvTermData *dataset = driver_alloc(sizeof(ErlDrvTermData) * term_allocated);
dataset[0] = ERL_DRV_PORT;
dataset[1] = driver_mk_port(drv->port);
return_error(drv, error_code, error, &dataset, &term_count, &term_allocated, NULL);
term_count += 2;
dataset[11] = ERL_DRV_TUPLE;
dataset[12] = 2;
driver_output_term(drv->port, dataset, term_count);
return 1;
return 0;
}
static inline int output_db_error(sqlite3_drv_t *drv) {
@@ -571,6 +580,7 @@ static void sql_exec_one_statement(
sqlite3_drv_t *drv = async_command->driver_data;
ptr_list **ptrs_p = &(async_command->ptrs);
ptr_list **binaries_p = &(async_command->binaries);
// printf("\nsql_exec_one_statement. SQL:\n%s\n Term count: %d, terms alloc: %d\n", sqlite3_sql(statement), *term_count_p, *term_allocated_p);
int i;
@@ -704,14 +714,16 @@ static void sql_exec_one_statement(
if (next_row == SQLITE_BUSY) {
return_error(drv, SQLITE_BUSY, "SQLite3 database is busy",
&async_command->dataset, &async_command->term_count,
&async_command->error_code);
dataset_p, term_count_p,
term_allocated_p, &async_command->error_code);
async_command->finalize_statement_on_free = 1;
return;
}
if (next_row != SQLITE_DONE) {
return_error(drv, next_row, sqlite3_errmsg(drv->db),
&async_command->dataset, &async_command->term_count,
&async_command->error_code);
dataset_p, term_count_p,
term_allocated_p, &async_command->error_code);
async_command->finalize_statement_on_free = 1;
return;
}
@@ -755,7 +767,6 @@ static void sql_exec_one_statement(
(*dataset_p)[*term_count_p - 2] = ERL_DRV_ATOM;
(*dataset_p)[*term_count_p - 1] = drv->atom_ok;
}
printf("\nEnd of sql_exec_one_statement. Term count: %d, terms alloc: %d\n", *term_count_p, *term_allocated_p);
#ifdef DEBUG
fprintf(drv->log, "Total term count: %p %d, rows count: %dx%d\n", statement, *term_count_p, column_count, row_count);
@@ -791,6 +802,7 @@ static void sql_exec_async(void *_async_command) {
statement = async_command->statement;
sql_exec_one_statement(statement, async_command, &term_count,
&term_allocated, &dataset);
break;
case t_script:
rest = async_command->script;
end = async_command->end;
@@ -801,16 +813,17 @@ static void sql_exec_async(void *_async_command) {
}
result = sqlite3_prepare_v2(drv->db, rest, end - rest, &statement, &rest);
if (result != SQLITE_OK) {
// output_db_error(drv);
return_error(drv, result, sqlite3_errmsg(drv->db), &dataset,
&term_count, &term_allocated, &async_command->error_code);
num_statements++;
break;
} else if (statement == NULL) {
// output_error(drv, SQLITE_MISUSE, "empty statement");
break;
} else {
num_statements++;
sql_exec_one_statement(statement, async_command, &term_count,
&term_allocated, &dataset);
}
num_statements++;
sql_exec_one_statement(statement, async_command, &term_count,
&term_allocated, &dataset);
}
term_count += 3;
@@ -831,7 +844,7 @@ static void sql_exec_async(void *_async_command) {
dataset[term_count - 2] = ERL_DRV_TUPLE;
dataset[term_count - 1] = 2;
print_dataset(dataset, term_count);
// print_dataset(dataset, term_count);
async_command->term_count = term_count;
async_command->term_allocated = term_allocated;
@@ -978,14 +991,14 @@ static void sql_step_async(void *_async_command) {
break;
case SQLITE_BUSY:
return_error(drv, SQLITE_BUSY, "SQLite3 database is busy",
&dataset, &term_count,
&dataset, &term_count, &term_allocated,
&async_command->error_code);
sqlite3_reset(statement);
goto POPULATE_COMMAND;
break;
default:
return_error(drv, result, sqlite3_errmsg(drv->db),
&dataset, &term_count,
&dataset, &term_count, &term_allocated,
&async_command->error_code);
sqlite3_reset(statement);
goto POPULATE_COMMAND;
@@ -1021,6 +1034,11 @@ static void ready_async(ErlDrvData drv_data, ErlDrvThreadData thread_data) {
async_command->term_count);
(void) res; // suppress unused warning
#ifdef DEBUG
if (res != 1) {
fprintf(drv->log, "driver_output_term returned %d\n", res);
fprint_dataset(drv->log, async_command->dataset, async_command->term_count);
}
fprintf(drv->log, "Total term count: %p %d, rows count: %d (%d)\n", async_command->statement, async_command->term_count, async_command->row_count, res);
fflush(drv->log);
#endif
@@ -1305,107 +1323,106 @@ static inline int sql_is_insert(const char *sql) {
return 1;
}
static void print_dataset(ErlDrvTermData *dataset, int term_count) {
#ifdef DEBUG
static void print_dataset(FILE* log, ErlDrvTermData *dataset, int term_count) {
int i = 0, stack_size = 0;
ErlDrvUInt length;
printf("\nPrinting dataset\n");
fprintf(log, "\nPrinting dataset\n");
while (i < term_count) {
switch (dataset[i]) {
case ERL_DRV_NIL:
printf("%d: []\n", i);
fprintf(log, "%d: []", i);
i++;
stack_size++;
break;
case ERL_DRV_ATOM:
printf("%d-%d: an atom\n", i, i+1);
fprintf(log, "%d-%d: an atom", i, i+1);
i += 2;
stack_size++;
break;
case ERL_DRV_INT:
printf("%d-%d: int %ld\n", i, i+1, (ErlDrvSInt) dataset[i+1]);
fprintf(log, "%d-%d: int %ld", i, i+1, (ErlDrvSInt) dataset[i+1]);
i += 2;
stack_size++;
break;
case ERL_DRV_PORT:
printf("%d-%d: a port\n", i, i+1);
fprintf(log, "%d-%d: a port", i, i+1);
i += 2;
stack_size++;
break;
case ERL_DRV_BINARY:
printf("%d-%d: a binary (length %lu, offset %lu)\n",
fprintf(log, "%d-%d: a binary (length %lu, offset %lu)",
i, i+3, (ErlDrvUInt) dataset[i+2], (ErlDrvUInt) dataset[i+3]);
i += 4;
stack_size++;
break;
case ERL_DRV_BUF2BINARY:
printf("%d-%d: a string used as binary (length %lu)\n", i, i+2, (ErlDrvUInt) dataset[i+2]);
fprintf(log, "%d-%d: a string used as binary (length %lu)", i, i+2, (ErlDrvUInt) dataset[i+2]);
i += 3;
stack_size++;
break;
case ERL_DRV_STRING:
printf("%d-%d: a string (length %lu)\n", i, i+2, (ErlDrvUInt) dataset[i+2]);
fprintf(log, "%d-%d: a string (length %lu)", i, i+2, (ErlDrvUInt) dataset[i+2]);
i += 3;
stack_size++;
break;
case ERL_DRV_TUPLE:
length = (ErlDrvUInt) dataset[i+1];
printf("%d-%d: a tuple (size %lu)\n", i, i+1, length);
fprintf(log, "%d-%d: a tuple (size %lu)", i, i+1, length);
i += 2;
stack_size -= length - 1;
break;
case ERL_DRV_LIST:
length = (ErlDrvUInt) dataset[i+1];
printf("%d-%d: a list (length %lu)\n", i, i+1, length);
fprintf(log, "%d-%d: a list (length %lu)", i, i+1, length);
i += 2;
stack_size -= length - 1;
break;
case ERL_DRV_PID:
printf("%d-%d: a pid\n", i, i+1);
fprintf(log, "%d-%d: a pid", i, i+1);
i += 2;
stack_size++;
break;
case ERL_DRV_STRING_CONS:
length = (ErlDrvUInt) dataset[i+2];
printf("%d-%d: a string inside surrounding list (length %lu)\n", i, i+2, length);
fprintf(log, "%d-%d: a string inside surrounding list (length %lu)", i, i+2, length);
i += 3;
stack_size += length;
break;
case ERL_DRV_FLOAT:
printf("%d-%d: float %f\n", i, i+1, (double) dataset[i+1]);
fprintf(log, "%d-%d: float %f", i, i+1, (double) dataset[i+1]);
i += 2;
stack_size++;
break;
case ERL_DRV_EXT2TERM:
printf("%d-%d: a term in external format of length %lu\n", i, i+1, (ErlDrvUInt) dataset[i+1]);
fprintf(log, "%d-%d: a term in external format of length %lu", i, i+1, (ErlDrvUInt) dataset[i+1]);
i += 2;
stack_size++;
break;
case ERL_DRV_INT64:
#if defined(_MSC_VER)
printf("%d-%d: int %I64d\n", i, i+1, (ErlDrvSInt64) dataset[i+1]);
fprintf(log, "%d-%d: int %I64d", i, i+1, (ErlDrvSInt64) dataset[i+1]);
#else
printf("%d-%d: int %lld\n", i, i+1, (ErlDrvSInt64) dataset[i+1]);
fprintf(log, "%d-%d: int %lld", i, i+1, (ErlDrvSInt64) dataset[i+1]);
#endif
i += 2;
stack_size++;
break;
case ERL_DRV_UINT64:
#if defined(_MSC_VER)
printf("%d-%d: int %I64lu\n", i, i+1, (ErlDrvUInt64) dataset[i+1]);
fprintf(log, "%d-%d: int %I64lu", i, i+1, (ErlDrvUInt64) dataset[i+1]);
#else
printf("%d-%d: int %llu\n", i, i+1, (ErlDrvUInt64) dataset[i+1]);
fprintf(log, "%d-%d: int %llu", i, i+1, (ErlDrvUInt64) dataset[i+1]);
#endif
i += 2;
stack_size++;
break;
default:
printf("%d: unexpected type\n", i);
fprintf(log, "%d: unexpected type", i);
i++;
break;
}
printf("After %d entries in dataset, %d terms are on stack\n", i, stack_size);
fprintf(log, ".\tStack size: %d\n", stack_size);
}
printf("After %d entries in dataset, %d terms are on stack\n", i, stack_size);
}
#endif