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https://github.com/espressif/esp-idf.git
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Merge branch 'bugfix/select_with_sdmmc_mount_v3.1' into 'release/v3.1'
VFS: Fix bug which occurs when driver is installed during a select() call (v3.1) See merge request espressif/esp-idf!6432
This commit is contained in:
commit
a302c3fc68
@ -82,8 +82,16 @@ then you need to register the VFS with :cpp:func:`start_select` and
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:cpp:func:`start_select` is called for setting up the environment for
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:cpp:func:`start_select` is called for setting up the environment for
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detection of read/write/error conditions on file descriptors belonging to the
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detection of read/write/error conditions on file descriptors belonging to the
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given VFS. :cpp:func:`end_select` is called to stop/deinitialize/free the
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given VFS driver.
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environment which was setup by :cpp:func:`start_select`. Please refer to the
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:cpp:func:`end_select` is called to stop/deinitialize/free the
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environment which was setup by :cpp:func:`start_select`.
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.. note::
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:cpp:func:`end_select` might be called without a previous :cpp:func:`start_select` call in some rare
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circumstances. :cpp:func:`end_select` should fail gracefully if this is the case.
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Please refer to the
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reference implementation for the UART peripheral in
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reference implementation for the UART peripheral in
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:component_file:`vfs/vfs_uart.c` and most particularly to functions
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:component_file:`vfs/vfs_uart.c` and most particularly to functions
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:cpp:func:`esp_vfs_dev_uart_register`, :cpp:func:`uart_start_select` and
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:cpp:func:`esp_vfs_dev_uart_register`, :cpp:func:`uart_start_select` and
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@ -97,6 +105,10 @@ If :cpp:func:`select` is used for socket file descriptors only then one can
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enable the :envvar:`CONFIG_USE_ONLY_LWIP_SELECT` option which can reduce the code
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enable the :envvar:`CONFIG_USE_ONLY_LWIP_SELECT` option which can reduce the code
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size and improve performance.
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size and improve performance.
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.. note::
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Don't change the socket driver during an active :cpp:func:`select` call or you might experience some undefined
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behavior.
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Paths
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Paths
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-----
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-----
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@ -17,11 +17,11 @@
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#include <sys/fcntl.h>
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#include <sys/fcntl.h>
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#include <sys/param.h>
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#include <sys/param.h>
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#include "unity.h"
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#include "unity.h"
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#include "soc/uart_struct.h"
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#include "freertos/FreeRTOS.h"
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#include "freertos/FreeRTOS.h"
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#include "driver/uart.h"
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#include "driver/uart.h"
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#include "esp_vfs.h"
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#include "esp_vfs.h"
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#include "esp_vfs_dev.h"
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#include "esp_vfs_dev.h"
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#include "esp_vfs_fat.h"
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#include "lwip/sockets.h"
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#include "lwip/sockets.h"
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#include "lwip/netdb.h"
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#include "lwip/netdb.h"
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#include "test_utils.h"
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#include "test_utils.h"
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@ -32,9 +32,19 @@ typedef struct {
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xSemaphoreHandle sem;
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xSemaphoreHandle sem;
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} test_task_param_t;
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} test_task_param_t;
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typedef struct {
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fd_set *rdfds;
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fd_set *wrfds;
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fd_set *errfds;
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int maxfds;
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struct timeval *tv;
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int select_ret;
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xSemaphoreHandle sem;
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} test_select_task_param_t;
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static const char message[] = "Hello world!";
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static const char message[] = "Hello world!";
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static int open_dummy_socket()
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static int open_dummy_socket(void)
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{
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{
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const struct addrinfo hints = {
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const struct addrinfo hints = {
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.ai_family = AF_INET,
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.ai_family = AF_INET,
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@ -52,7 +62,7 @@ static int open_dummy_socket()
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return dummy_socket_fd;
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return dummy_socket_fd;
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}
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}
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static int socket_init()
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static int socket_init(void)
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{
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{
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const struct addrinfo hints = {
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const struct addrinfo hints = {
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.ai_family = AF_INET,
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.ai_family = AF_INET,
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@ -84,7 +94,7 @@ static int socket_init()
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return socket_fd;
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return socket_fd;
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}
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}
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static void uart1_init()
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static void uart1_init(void)
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{
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{
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uart_config_t uart_config = {
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uart_config_t uart_config = {
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.baud_rate = 115200,
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.baud_rate = 115200,
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@ -341,3 +351,83 @@ TEST_CASE("concurent selects work", "[vfs]")
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deinit(uart_fd, socket_fd);
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deinit(uart_fd, socket_fd);
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close(dummy_socket_fd);
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close(dummy_socket_fd);
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}
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}
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static void select_task2(void *task_param)
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{
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const test_select_task_param_t *param = task_param;
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int s = select(param->maxfds, param->rdfds, param->wrfds, param->errfds, param->tv);
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TEST_ASSERT_EQUAL(param->select_ret, s);
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if (param->sem) {
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xSemaphoreGive(param->sem);
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}
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vTaskDelete(NULL);
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}
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static void inline start_select_task2(test_select_task_param_t *param)
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{
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xTaskCreate(select_task2, "select_task2", 4*1024, (void *) param, 5, NULL);
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}
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TEST_CASE("select() works with concurrent mount", "[vfs][fatfs]")
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{
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wl_handle_t test_wl_handle;
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int uart_fd, socket_fd;
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init(&uart_fd, &socket_fd);
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const int dummy_socket_fd = open_dummy_socket();
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esp_vfs_fat_sdmmc_mount_config_t mount_config = {
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.format_if_mount_failed = true,
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.max_files = 2
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};
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// select() will be waiting for a socket & UART and FATFS mount will occur in parallel
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struct timeval tv = {
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.tv_sec = 1,
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.tv_usec = 0,
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};
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fd_set rdfds;
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FD_ZERO(&rdfds);
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FD_SET(uart_fd, &rdfds);
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FD_SET(dummy_socket_fd, &rdfds);
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test_select_task_param_t param = {
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.rdfds = &rdfds,
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.wrfds = NULL,
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.errfds = NULL,
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.maxfds = MAX(uart_fd, dummy_socket_fd) + 1,
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.tv = &tv,
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.select_ret = 0, // expected timeout
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.sem = xSemaphoreCreateBinary(),
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};
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TEST_ASSERT_NOT_NULL(param.sem);
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start_select_task2(¶m);
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vTaskDelay(10 / portTICK_PERIOD_MS); //make sure the task has started and waits in select()
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TEST_ESP_OK(esp_vfs_fat_spiflash_mount("/spiflash", NULL, &mount_config, &test_wl_handle));
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TEST_ASSERT_EQUAL(pdTRUE, xSemaphoreTake(param.sem, 1500 / portTICK_PERIOD_MS));
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// select() will be waiting for a socket & UART and FATFS unmount will occur in parallel
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FD_ZERO(&rdfds);
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FD_SET(uart_fd, &rdfds);
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FD_SET(dummy_socket_fd, &rdfds);
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start_select_task2(¶m);
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vTaskDelay(10 / portTICK_PERIOD_MS); //make sure the task has started and waits in select()
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TEST_ESP_OK(esp_vfs_fat_spiflash_unmount("/spiflash", test_wl_handle));
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TEST_ASSERT_EQUAL(pdTRUE, xSemaphoreTake(param.sem, 1500 / portTICK_PERIOD_MS));
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vSemaphoreDelete(param.sem);
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deinit(uart_fd, socket_fd);
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close(dummy_socket_fd);
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}
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@ -811,8 +811,12 @@ int esp_vfs_select(int nfds, fd_set *readfds, fd_set *writefds, fd_set *errorfds
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return -1;
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return -1;
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}
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}
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// Capture s_vfs_count to a local variable in case a new driver is registered or removed during this actual select()
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// call. s_vfs_count cannot be protected with a mutex during a select() call (which can be one without a timeout)
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// because that could block the registration of new driver.
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const size_t vfs_count = s_vfs_count;
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fds_triple_t *vfs_fds_triple;
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fds_triple_t *vfs_fds_triple;
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if ((vfs_fds_triple = calloc(s_vfs_count, sizeof(fds_triple_t))) == NULL) {
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if ((vfs_fds_triple = calloc(vfs_count, sizeof(fds_triple_t))) == NULL) {
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__errno_r(r) = ENOMEM;
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__errno_r(r) = ENOMEM;
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ESP_LOGD(TAG, "calloc is unsuccessful");
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ESP_LOGD(TAG, "calloc is unsuccessful");
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return -1;
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return -1;
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@ -895,7 +899,7 @@ int esp_vfs_select(int nfds, fd_set *readfds, fd_set *writefds, fd_set *errorfds
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}
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}
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}
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}
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for (int i = 0; i < s_vfs_count; ++i) {
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for (int i = 0; i < vfs_count; ++i) {
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const vfs_entry_t *vfs = get_vfs_for_index(i);
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const vfs_entry_t *vfs = get_vfs_for_index(i);
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fds_triple_t *item = &vfs_fds_triple[i];
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fds_triple_t *item = &vfs_fds_triple[i];
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@ -910,7 +914,7 @@ int esp_vfs_select(int nfds, fd_set *readfds, fd_set *writefds, fd_set *errorfds
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if (err != ESP_OK) {
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if (err != ESP_OK) {
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call_end_selects(i, vfs_fds_triple);
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call_end_selects(i, vfs_fds_triple);
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(void) set_global_fd_sets(vfs_fds_triple, s_vfs_count, readfds, writefds, errorfds);
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(void) set_global_fd_sets(vfs_fds_triple, vfs_count, readfds, writefds, errorfds);
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if (select_sem) {
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if (select_sem) {
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vSemaphoreDelete(select_sem);
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vSemaphoreDelete(select_sem);
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select_sem = NULL;
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select_sem = NULL;
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@ -954,9 +958,9 @@ int esp_vfs_select(int nfds, fd_set *readfds, fd_set *writefds, fd_set *errorfds
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xSemaphoreTake(select_sem, ticks_to_wait);
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xSemaphoreTake(select_sem, ticks_to_wait);
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}
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}
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call_end_selects(s_vfs_count, vfs_fds_triple); // for VFSs for start_select was called before
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call_end_selects(vfs_count, vfs_fds_triple); // for VFSs for start_select was called before
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if (ret >= 0) {
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if (ret >= 0) {
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ret += set_global_fd_sets(vfs_fds_triple, s_vfs_count, readfds, writefds, errorfds);
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ret += set_global_fd_sets(vfs_fds_triple, vfs_count, readfds, writefds, errorfds);
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}
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}
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if (select_sem) {
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if (select_sem) {
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vSemaphoreDelete(select_sem);
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vSemaphoreDelete(select_sem);
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@ -980,6 +984,8 @@ void esp_vfs_select_triggered(SemaphoreHandle_t *signal_sem)
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// which has a permanent FD. But in order to avoid to lock
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// which has a permanent FD. But in order to avoid to lock
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// s_fd_table_lock we go through the VFS table.
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// s_fd_table_lock we go through the VFS table.
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for (int i = 0; i < s_vfs_count; ++i) {
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for (int i = 0; i < s_vfs_count; ++i) {
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// Note: s_vfs_count could have changed since the start of vfs_select() call. However, that change doesn't
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// matter here stop_socket_select() will be called for only valid VFS drivers.
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const vfs_entry_t *vfs = s_vfs[i];
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const vfs_entry_t *vfs = s_vfs[i];
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if (vfs != NULL && vfs->vfs.stop_socket_select != NULL) {
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if (vfs != NULL && vfs->vfs.stop_socket_select != NULL) {
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vfs->vfs.stop_socket_select();
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vfs->vfs.stop_socket_select();
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@ -998,6 +1004,8 @@ void esp_vfs_select_triggered_isr(SemaphoreHandle_t *signal_sem, BaseType_t *wok
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// which has a permanent FD. But in order to avoid to lock
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// which has a permanent FD. But in order to avoid to lock
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// s_fd_table_lock we go through the VFS table.
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// s_fd_table_lock we go through the VFS table.
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for (int i = 0; i < s_vfs_count; ++i) {
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for (int i = 0; i < s_vfs_count; ++i) {
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// Note: s_vfs_count could have changed since the start of vfs_select() call. However, that change doesn't
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// matter here stop_socket_select() will be called for only valid VFS drivers.
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const vfs_entry_t *vfs = s_vfs[i];
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const vfs_entry_t *vfs = s_vfs[i];
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if (vfs != NULL && vfs->vfs.stop_socket_select_isr != NULL) {
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if (vfs != NULL && vfs->vfs.stop_socket_select_isr != NULL) {
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vfs->vfs.stop_socket_select_isr(woken);
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vfs->vfs.stop_socket_select_isr(woken);
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