efuse: Add new esp_efuse_write_field_bit() convenience function

release/v4.0
Angus Gratton 2020-04-25 14:58:30 +10:00
rodzic 814ff17256
commit 9ca02bd8ac
4 zmienionych plików z 58 dodań i 5 usunięć

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@ -71,11 +71,7 @@ void esp_flash_encryption_init_checks()
void esp_flash_write_protect_crypt_cnt()
{
uint8_t flash_crypt_cnt_wr_dis = 0;
esp_efuse_read_field_blob(ESP_EFUSE_WR_DIS_FLASH_CRYPT_CNT, &flash_crypt_cnt_wr_dis, 1);
if (!flash_crypt_cnt_wr_dis) {
esp_efuse_write_field_cnt(ESP_EFUSE_WR_DIS_FLASH_CRYPT_CNT, 1);
}
esp_efuse_write_field_bit(ESP_EFUSE_WR_DIS_FLASH_CRYPT_CNT);
}
esp_flash_enc_mode_t esp_get_flash_encryption_mode()

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@ -123,6 +123,23 @@ esp_err_t esp_efuse_write_field_blob(const esp_efuse_desc_t* field[], const void
*/
esp_err_t esp_efuse_write_field_cnt(const esp_efuse_desc_t* field[], size_t cnt);
/**
* @brief Write a single bit eFuse field to 1
*
* For use with eFuse fields that are a single bit. This function will write the bit to value 1 if
* it is not already set, or does nothing if the bit is already set.
*
* This is equivalent to calling esp_efuse_write_field_cnt() with the cnt parameter equal to 1,
* except that it will return ESP_OK if the field is already set to 1.
*
* @param[in] field Pointer to the structure describing the efuse field.
*
* @return
* - ESP_OK: The operation was successfully completed, or the bit was already set to value 1.
* - ESP_ERR_INVALID_ARG: Error in the passed arugments, including if the efuse field is not 1 bit wide.
*/
esp_err_t esp_efuse_write_field_bit(const esp_efuse_desc_t* field[]);
/**
* @brief Sets a write protection for the whole block.
*

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@ -140,6 +140,25 @@ esp_err_t esp_efuse_set_read_protect(esp_efuse_block_t blk)
return ESP_ERR_NOT_SUPPORTED;
}
esp_err_t esp_efuse_write_field_bit(const esp_efuse_desc_t* field[])
{
esp_err_t err;
uint8_t existing = 0;
const uint8_t one = 1;
if (field == NULL || field[0]->bit_count != 1) {
return ESP_ERR_INVALID_ARG;
}
/* Check existing value. esp_efuse_write_field_blob() also checks this, but will log an error */
err = esp_efuse_read_field_blob(field, &existing, 1);
if (err != ESP_OK || existing) {
return err; // Error reading, or the bit is already written and we can no-op this
}
return esp_efuse_write_field_blob(field, &one, 1);
}
// get the length of the field in bits
int esp_efuse_get_field_size(const esp_efuse_desc_t* field[])
{

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@ -224,6 +224,27 @@ TEST_CASE("efuse test write_field_cnt", "[efuse]")
test_write_cnt();
}
TEST_CASE("efuse test write_field_bit", "[efuse]")
{
esp_efuse_utility_erase_virt_blocks();
esp_efuse_utility_debug_dump_blocks();
uint8_t test_bit;
TEST_ESP_OK(esp_efuse_read_field_blob(ESP_EFUSE_TEST5_LEN_1, &test_bit, 1));
TEST_ASSERT_EQUAL_HEX8(0, test_bit);
TEST_ESP_OK(esp_efuse_write_field_bit(ESP_EFUSE_TEST5_LEN_1));
TEST_ESP_OK(esp_efuse_read_field_blob(ESP_EFUSE_TEST5_LEN_1, &test_bit, 1));
TEST_ASSERT_EQUAL_HEX8(1, test_bit);
// Can write the bit again and it's a no-op
TEST_ESP_OK(esp_efuse_write_field_bit(ESP_EFUSE_TEST5_LEN_1));
TEST_ESP_OK(esp_efuse_read_field_blob(ESP_EFUSE_TEST5_LEN_1, &test_bit, 1));
TEST_ASSERT_EQUAL_HEX8(1, test_bit);
esp_efuse_utility_debug_dump_blocks();
}
void cut_tail_arr(uint8_t *arr, int num_used_bits, size_t count_bits)
{
if ((num_used_bits + count_bits) % 8) {