Merge branch 'apptrace_breaking_changes' into 'master'

Apptrace breaking changes

Closes IDF-9993 and IDF-4316

See merge request espressif/esp-idf!40380
This commit is contained in:
Erhan Kurubas
2025-07-17 17:45:31 +02:00
12 changed files with 119 additions and 75 deletions

View File

@@ -8,7 +8,7 @@ menu "Application Level Tracing"
config APPTRACE_DEST_JTAG
bool "JTAG"
select APPTRACE_DEST_TRAX if IDF_TARGET_ARCH_XTENSA
select APPTRACE_TRAX_ENABLE if IDF_TARGET_ARCH_XTENSA
select APPTRACE_MEMBUFS_APPTRACE_PROTO_ENABLE
select APPTRACE_ENABLE
@@ -135,7 +135,7 @@ menu "Application Level Tracing"
UART task priority. In case of high events rate,
this parameter could be changed up to (configMAX_PRIORITIES-1).
config APPTRACE_DEST_TRAX
config APPTRACE_TRAX_ENABLE
bool
depends on IDF_TARGET_ARCH_XTENSA && !ESP32_TRAX && !ESP32S2_TRAX && !ESP32S3_TRAX
select ESP32_MEMMAP_TRACEMEM
@@ -186,7 +186,7 @@ menu "Application Level Tracing"
config APPTRACE_BUF_SIZE
int "Size of the apptrace buffer"
depends on APPTRACE_MEMBUFS_APPTRACE_PROTO_ENABLE && !APPTRACE_DEST_TRAX
depends on APPTRACE_MEMBUFS_APPTRACE_PROTO_ENABLE && !APPTRACE_TRAX_ENABLE
default 16384
help
Size of the memory buffer for trace data in bytes.

View File

@@ -1,5 +1,5 @@
/*
* SPDX-FileCopyrightText: 2017-2024 Espressif Systems (Shanghai) CO LTD
* SPDX-FileCopyrightText: 2017-2025 Espressif Systems (Shanghai) CO LTD
*
* SPDX-License-Identifier: Apache-2.0 OR MIT
*/
@@ -80,31 +80,30 @@ ESP_SYSTEM_INIT_FN(esp_apptrace_init, SECONDARY, ESP_SYSTEM_INIT_ALL_CORES, 115)
return esp_apptrace_init();
}
void esp_apptrace_down_buffer_config(uint8_t *buf, uint32_t size)
esp_err_t esp_apptrace_down_buffer_config(esp_apptrace_dest_t dest, uint8_t *buf, uint32_t size)
{
esp_apptrace_channel_t *ch;
if (dest >= ESP_APPTRACE_DEST_MAX) {
return ESP_ERR_INVALID_ARG;
}
if (buf == NULL || size == 0) {
return ESP_ERR_INVALID_ARG;
}
if (!s_inited) {
return;
return ESP_ERR_INVALID_STATE;
}
ch = &s_trace_channels[dest];
if (ch->hw == NULL) {
ESP_APPTRACE_LOGE("Trace destination %d not supported!", dest);
return ESP_FAIL;
}
// currently down buffer is supported for JTAG interface only
// TODO: one more argument should be added to this function to specify HW interface: JTAG, UART0 etc
ch = &s_trace_channels[ESP_APPTRACE_DEST_JTAG];
if (ch->hw != NULL) {
if (ch->hw->down_buffer_config != NULL) {
ch->hw->down_buffer_config(ch->hw_data, buf, size);
}
} else {
ESP_APPTRACE_LOGD("Trace destination for JTAG not supported!");
}
ch = &s_trace_channels[ESP_APPTRACE_DEST_UART];
if (ch->hw != NULL) {
if (ch->hw->down_buffer_config != NULL) {
ch->hw->down_buffer_config(ch->hw_data, buf, size);
}
} else {
ESP_APPTRACE_LOGD("Trace destination for UART not supported!");
}
return ESP_OK;
}
uint8_t *esp_apptrace_down_buffer_get(esp_apptrace_dest_t dest, uint32_t *size, uint32_t user_tmo)

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@@ -1,5 +1,5 @@
/*
* SPDX-FileCopyrightText: 2017-2024 Espressif Systems (Shanghai) CO LTD
* SPDX-FileCopyrightText: 2017-2025 Espressif Systems (Shanghai) CO LTD
*
* SPDX-License-Identifier: Apache-2.0
*/
@@ -46,14 +46,19 @@ void gcov_dump_task(void *pvParameter)
goto gcov_exit;
}
ESP_EARLY_LOGV(TAG, "Config apptrace down buf");
esp_apptrace_down_buffer_config(down_buf, ESP_GCOV_DOWN_BUF_SIZE);
esp_err_t res = esp_apptrace_down_buffer_config(ESP_APPTRACE_DEST_JTAG, down_buf, ESP_GCOV_DOWN_BUF_SIZE);
if (res != ESP_OK) {
ESP_EARLY_LOGE(TAG, "Failed to config apptrace down buf (%d)!", res);
dump_result = res;
goto gcov_exit;
}
ESP_EARLY_LOGV(TAG, "Dump data...");
__gcov_dump();
// reset dump status to allow incremental data accumulation
__gcov_reset();
free(down_buf);
ESP_EARLY_LOGV(TAG, "Finish file transfer session");
dump_result = esp_apptrace_fstop(ESP_APPTRACE_DEST_TRAX);
dump_result = esp_apptrace_fstop(ESP_APPTRACE_DEST_JTAG);
if (dump_result != ESP_OK) {
ESP_EARLY_LOGE(TAG, "Failed to send files transfer stop cmd (%d)!", dump_result);
}
@@ -119,7 +124,7 @@ void esp_gcov_dump(void)
{
ESP_EARLY_LOGV(TAG, "%s", __FUNCTION__);
while (!esp_apptrace_host_is_connected(ESP_APPTRACE_DEST_TRAX)) {
while (!esp_apptrace_host_is_connected(ESP_APPTRACE_DEST_JTAG)) {
vTaskDelay(pdMS_TO_TICKS(10));
}
@@ -134,7 +139,7 @@ void esp_gcov_dump(void)
void *gcov_rtio_fopen(const char *path, const char *mode)
{
ESP_EARLY_LOGV(TAG, "%s '%s' '%s'", __FUNCTION__, path, mode);
void *f = esp_apptrace_fopen(ESP_APPTRACE_DEST_TRAX, path, mode);
void *f = esp_apptrace_fopen(ESP_APPTRACE_DEST_JTAG, path, mode);
ESP_EARLY_LOGV(TAG, "%s ret %p", __FUNCTION__, f);
return f;
}
@@ -142,13 +147,13 @@ void *gcov_rtio_fopen(const char *path, const char *mode)
int gcov_rtio_fclose(void *stream)
{
ESP_EARLY_LOGV(TAG, "%s", __FUNCTION__);
return esp_apptrace_fclose(ESP_APPTRACE_DEST_TRAX, stream);
return esp_apptrace_fclose(ESP_APPTRACE_DEST_JTAG, stream);
}
size_t gcov_rtio_fread(void *ptr, size_t size, size_t nmemb, void *stream)
{
ESP_EARLY_LOGV(TAG, "%s read %u", __FUNCTION__, size * nmemb);
size_t sz = esp_apptrace_fread(ESP_APPTRACE_DEST_TRAX, ptr, size, nmemb, stream);
size_t sz = esp_apptrace_fread(ESP_APPTRACE_DEST_JTAG, ptr, size, nmemb, stream);
ESP_EARLY_LOGV(TAG, "%s actually read %u", __FUNCTION__, sz);
return sz;
}
@@ -156,26 +161,26 @@ size_t gcov_rtio_fread(void *ptr, size_t size, size_t nmemb, void *stream)
size_t gcov_rtio_fwrite(const void *ptr, size_t size, size_t nmemb, void *stream)
{
ESP_EARLY_LOGV(TAG, "%s", __FUNCTION__);
return esp_apptrace_fwrite(ESP_APPTRACE_DEST_TRAX, ptr, size, nmemb, stream);
return esp_apptrace_fwrite(ESP_APPTRACE_DEST_JTAG, ptr, size, nmemb, stream);
}
int gcov_rtio_fseek(void *stream, long offset, int whence)
{
int ret = esp_apptrace_fseek(ESP_APPTRACE_DEST_TRAX, stream, offset, whence);
int ret = esp_apptrace_fseek(ESP_APPTRACE_DEST_JTAG, stream, offset, whence);
ESP_EARLY_LOGV(TAG, "%s(%p %ld %d) = %d", __FUNCTION__, stream, offset, whence, ret);
return ret;
}
long gcov_rtio_ftell(void *stream)
{
long ret = esp_apptrace_ftell(ESP_APPTRACE_DEST_TRAX, stream);
long ret = esp_apptrace_ftell(ESP_APPTRACE_DEST_JTAG, stream);
ESP_EARLY_LOGV(TAG, "%s(%p) = %ld", __FUNCTION__, stream, ret);
return ret;
}
int gcov_rtio_feof(void *stream)
{
int ret = esp_apptrace_feof(ESP_APPTRACE_DEST_TRAX, stream);
int ret = esp_apptrace_feof(ESP_APPTRACE_DEST_JTAG, stream);
ESP_EARLY_LOGV(TAG, "%s(%p) = %d", __FUNCTION__, stream, ret);
return ret;
}

View File

@@ -18,11 +18,9 @@ extern "C" {
* Application trace data destinations bits.
*/
typedef enum {
ESP_APPTRACE_DEST_JTAG = 1, ///< JTAG destination
ESP_APPTRACE_DEST_TRAX = ESP_APPTRACE_DEST_JTAG, ///< xxx_TRAX name is obsolete, use more common xxx_JTAG
ESP_APPTRACE_DEST_JTAG, ///< JTAG destination
ESP_APPTRACE_DEST_UART, ///< UART destination
ESP_APPTRACE_DEST_MAX = ESP_APPTRACE_DEST_UART + 1,
ESP_APPTRACE_DEST_NUM
ESP_APPTRACE_DEST_MAX,
} esp_apptrace_dest_t;
/**
@@ -39,10 +37,13 @@ esp_err_t esp_apptrace_init(void);
* @note Needs to be called before attempting to receive any data using esp_apptrace_down_buffer_get and esp_apptrace_read.
* This function does not protect internal data by lock.
*
* @param dest Indicates HW interface to configure.
* @param buf Address of buffer to use for down channel (host to target) data.
* @param size Size of the buffer.
*
* @return ESP_OK on success, otherwise see esp_err_t
*/
void esp_apptrace_down_buffer_config(uint8_t *buf, uint32_t size);
esp_err_t esp_apptrace_down_buffer_config(esp_apptrace_dest_t dest, uint8_t *buf, uint32_t size);
/**
* @brief Allocates buffer for trace data.
@@ -117,7 +118,7 @@ esp_err_t esp_apptrace_flush(esp_apptrace_dest_t dest, uint32_t tmo);
* This is a special version of esp_apptrace_flush which should be called from panic handler.
*
* @param dest Indicates HW interface to flush data on.
* @param min_sz Threshold for flushing data. If current filling level is above this value, data will be flushed. TRAX destinations only.
* @param min_sz Threshold for flushing data. If current filling level is above this value, data will be flushed. JTAG destinations only.
* @param tmo Timeout for operation (in us). Use ESP_APPTRACE_TMO_INFINITE to wait indefinitely.
*
* @return ESP_OK on success, otherwise see esp_err_t

View File

@@ -42,7 +42,7 @@ static uint8_t s_down_buf[SYSVIEW_DOWN_BUF_SIZE];
#endif // CONFIG_APPTRACE_SV_DEST_CPU_0
#elif CONFIG_APPTRACE_SV_DEST_JTAG || (CONFIG_APPTRACE_ENABLE && CONFIG_APPTRACE_DEST_UART_NONE)
#define ESP_APPTRACE_DEST_SYSVIEW ESP_APPTRACE_DEST_TRAX
#define ESP_APPTRACE_DEST_SYSVIEW ESP_APPTRACE_DEST_JTAG
#endif
/*********************************************************************
@@ -60,7 +60,7 @@ static uint8_t s_down_buf[SYSVIEW_DOWN_BUF_SIZE];
* Flushes buffered events.
*
* Parameters
* min_sz Threshold for flushing data. If current filling level is above this value, data will be flushed. TRAX destinations only.
* min_sz Threshold for flushing data. If current filling level is above this value, data will be flushed. JTAG destinations only.
* tmo Timeout for operation (in us). Use ESP_APPTRACE_TMO_INFINITE to wait indefinitely.
*
* Return value
@@ -91,7 +91,7 @@ void SEGGER_RTT_ESP_FlushNoLock(unsigned long min_sz, unsigned long tmo)
* Flushes buffered events.
*
* Parameters
* min_sz Threshold for flushing data. If current filling level is above this value, data will be flushed. TRAX destinations only.
* min_sz Threshold for flushing data. If current filling level is above this value, data will be flushed. JTAG destinations only.
* tmo Timeout for operation (in us). Use ESP_APPTRACE_TMO_INFINITE to wait indefinitely.
*
* Return value
@@ -288,8 +288,7 @@ int SEGGER_RTT_ConfigUpBuffer(unsigned BufferIndex, const char* sName, void* pBu
*/
int SEGGER_RTT_ConfigDownBuffer(unsigned BufferIndex, const char* sName, void* pBuffer, unsigned BufferSize, unsigned Flags)
{
esp_apptrace_down_buffer_config(s_down_buf, sizeof(s_down_buf));
return 0;
return esp_apptrace_down_buffer_config(ESP_APPTRACE_DEST_SYSVIEW, s_down_buf, sizeof(s_down_buf));
}
/*************************** Init hook ****************************

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@@ -67,9 +67,9 @@ const static char *TAG = "esp_apptrace_test";
#define ESP_APPTRACE_TEST_LOGO( format, ... ) ESP_APPTRACE_TEST_LOG_LEVEL(E, ESP_LOG_NONE, format, ##__VA_ARGS__)
#if CONFIG_APPTRACE_SV_ENABLE == 0
#define ESP_APPTRACE_TEST_WRITE(_b_, _s_) esp_apptrace_write(ESP_APPTRACE_DEST_TRAX, _b_, _s_, ESP_APPTRACE_TMO_INFINITE)
#define ESP_APPTRACE_TEST_WRITE_FROM_ISR(_b_, _s_) esp_apptrace_write(ESP_APPTRACE_DEST_TRAX, _b_, _s_, 0UL)
#define ESP_APPTRACE_TEST_WRITE_NOWAIT(_b_, _s_) esp_apptrace_write(ESP_APPTRACE_DEST_TRAX, _b_, _s_, 0)
#define ESP_APPTRACE_TEST_WRITE(_b_, _s_) esp_apptrace_write(ESP_APPTRACE_DEST_JTAG, _b_, _s_, ESP_APPTRACE_TMO_INFINITE)
#define ESP_APPTRACE_TEST_WRITE_FROM_ISR(_b_, _s_) esp_apptrace_write(ESP_APPTRACE_DEST_JTAG, _b_, _s_, 0UL)
#define ESP_APPTRACE_TEST_WRITE_NOWAIT(_b_, _s_) esp_apptrace_write(ESP_APPTRACE_DEST_JTAG, _b_, _s_, 0)
typedef struct {
uint8_t *buf;
@@ -625,7 +625,7 @@ static int esp_logtrace_printf(const char *fmt, ...)
va_start(ap, fmt);
int ret = esp_apptrace_vprintf_to(ESP_APPTRACE_DEST_TRAX, ESP_APPTRACE_TMO_INFINITE, fmt, ap);
int ret = esp_apptrace_vprintf_to(ESP_APPTRACE_DEST_JTAG, ESP_APPTRACE_TMO_INFINITE, fmt, ap);
va_end(ap);
@@ -657,7 +657,7 @@ static void esp_logtrace_task(void *p)
break;
}
}
esp_err_t ret = esp_apptrace_flush(ESP_APPTRACE_DEST_TRAX, ESP_APPTRACE_TMO_INFINITE);
esp_err_t ret = esp_apptrace_flush(ESP_APPTRACE_DEST_JTAG, ESP_APPTRACE_TMO_INFINITE);
if (ret != ESP_OK) {
ESP_APPTRACE_TEST_LOGE("Failed to flush printf buf (%d)!", ret);
}

View File

@@ -361,7 +361,7 @@ void esp_panic_handler(panic_info_t *info)
#if CONFIG_APPTRACE_SV_ENABLE
SEGGER_RTT_ESP_FlushNoLock(CONFIG_APPTRACE_POSTMORTEM_FLUSH_THRESH, APPTRACE_ONPANIC_HOST_FLUSH_TMO);
#else
esp_apptrace_flush_nolock(ESP_APPTRACE_DEST_TRAX, CONFIG_APPTRACE_POSTMORTEM_FLUSH_THRESH,
esp_apptrace_flush_nolock(ESP_APPTRACE_DEST_JTAG, CONFIG_APPTRACE_POSTMORTEM_FLUSH_THRESH,
APPTRACE_ONPANIC_HOST_FLUSH_TMO);
#endif
#endif
@@ -401,7 +401,7 @@ void esp_panic_handler(panic_info_t *info)
#if CONFIG_APPTRACE_SV_ENABLE
SEGGER_RTT_ESP_FlushNoLock(CONFIG_APPTRACE_POSTMORTEM_FLUSH_THRESH, APPTRACE_ONPANIC_HOST_FLUSH_TMO);
#else
esp_apptrace_flush_nolock(ESP_APPTRACE_DEST_TRAX, CONFIG_APPTRACE_POSTMORTEM_FLUSH_THRESH,
esp_apptrace_flush_nolock(ESP_APPTRACE_DEST_JTAG, CONFIG_APPTRACE_POSTMORTEM_FLUSH_THRESH,
APPTRACE_ONPANIC_HOST_FLUSH_TMO);
#endif
#endif // CONFIG_APPTRACE_ENABLE
@@ -472,7 +472,7 @@ void __attribute__((noreturn, no_sanitize_undefined)) panic_abort(const char *de
#if CONFIG_APPTRACE_SV_ENABLE
SEGGER_RTT_ESP_FlushNoLock(CONFIG_APPTRACE_POSTMORTEM_FLUSH_THRESH, APPTRACE_ONPANIC_HOST_FLUSH_TMO);
#else
esp_apptrace_flush_nolock(ESP_APPTRACE_DEST_TRAX, CONFIG_APPTRACE_POSTMORTEM_FLUSH_THRESH,
esp_apptrace_flush_nolock(ESP_APPTRACE_DEST_JTAG, CONFIG_APPTRACE_POSTMORTEM_FLUSH_THRESH,
APPTRACE_ONPANIC_HOST_FLUSH_TMO);
#endif
#endif

View File

@@ -78,7 +78,7 @@ In general, users should decide what type of data should be transferred in every
#include "esp_app_trace.h"
...
char buf[] = "Hello World!";
esp_err_t res = esp_apptrace_write(ESP_APPTRACE_DEST_TRAX, buf, strlen(buf), ESP_APPTRACE_TMO_INFINITE);
esp_err_t res = esp_apptrace_write(ESP_APPTRACE_DEST_JTAG, buf, strlen(buf), ESP_APPTRACE_TMO_INFINITE);
if (res != ESP_OK) {
ESP_LOGE(TAG, "Failed to write data to host!");
return res;
@@ -91,13 +91,13 @@ In general, users should decide what type of data should be transferred in every
#include "esp_app_trace.h"
...
int number = 10;
char *ptr = (char *)esp_apptrace_buffer_get(ESP_APPTRACE_DEST_TRAX, 32, 100/*tmo in us*/);
char *ptr = (char *)esp_apptrace_buffer_get(ESP_APPTRACE_DEST_JTAG, 32, 100/*tmo in us*/);
if (ptr == NULL) {
ESP_LOGE(TAG, "Failed to get buffer!");
return ESP_FAIL;
}
sprintf(ptr, "Here is the number %d", number);
esp_err_t res = esp_apptrace_buffer_put(ESP_APPTRACE_DEST_TRAX, ptr, 100/*tmo in us*/);
esp_err_t res = esp_apptrace_buffer_put(ESP_APPTRACE_DEST_JTAG, ptr, 100/*tmo in us*/);
if (res != ESP_OK) {
/* in case of error host tracing tool (e.g., OpenOCD) will report incomplete user buffer */
ESP_LOGE(TAG, "Failed to put buffer!");
@@ -115,9 +115,13 @@ In general, users should decide what type of data should be transferred in every
size_t sz = sizeof(buf);
/* config down buffer */
esp_apptrace_down_buffer_config(down_buf, sizeof(down_buf));
esp_err_t res = esp_apptrace_down_buffer_config(ESP_APPTRACE_DEST_JTAG, down_buf, sizeof(down_buf));
if (res != ESP_OK) {
ESP_LOGE(TAG, "Failed to config down buffer!");
return res;
}
/* check for incoming data and read them if any */
esp_err_t res = esp_apptrace_read(ESP_APPTRACE_DEST_TRAX, buf, &sz, 0/*do not wait*/);
res = esp_apptrace_read(ESP_APPTRACE_DEST_JTAG, buf, &sz, 0/*do not wait*/);
if (res != ESP_OK) {
ESP_LOGE(TAG, "Failed to read data from host!");
return res;
@@ -138,8 +142,12 @@ In general, users should decide what type of data should be transferred in every
size_t sz = 32;
/* config down buffer */
esp_apptrace_down_buffer_config(down_buf, sizeof(down_buf));
char *ptr = (char *)esp_apptrace_down_buffer_get(ESP_APPTRACE_DEST_TRAX, &sz, 100/*tmo in us*/);
esp_err_t res = esp_apptrace_down_buffer_config(ESP_APPTRACE_DEST_JTAG, down_buf, sizeof(down_buf));
if (res != ESP_OK) {
ESP_LOGE(TAG, "Failed to config down buffer!");
return res;
}
char *ptr = (char *)esp_apptrace_down_buffer_get(ESP_APPTRACE_DEST_JTAG, &sz, 100/*tmo in us*/);
if (ptr == NULL) {
ESP_LOGE(TAG, "Failed to get buffer!");
return ESP_FAIL;
@@ -150,7 +158,7 @@ In general, users should decide what type of data should be transferred in every
} else {
printf("No data");
}
esp_err_t res = esp_apptrace_down_buffer_put(ESP_APPTRACE_DEST_TRAX, ptr, 100/*tmo in us*/);
res = esp_apptrace_down_buffer_put(ESP_APPTRACE_DEST_JTAG, ptr, 100/*tmo in us*/);
if (res != ESP_OK) {
/* in case of error host tracing tool (e.g., OpenOCD) will report incomplete user buffer */
ESP_LOGE(TAG, "Failed to put buffer!");

View File

@@ -57,9 +57,28 @@ The deprecated ``soc_memory_types.h`` header file has been removed. Please inclu
App Trace
----------
Removed extra data buffering option. `CONFIG_APPTRACE_PENDING_DATA_SIZE_MAX` is no longer supported.
Removed deprecated `ESP_APPTRACE_DEST_TRAX` enum value. Use `ESP_APPTRACE_DEST_JTAG` instead.
The :cpp:func:`esp_apptrace_down_buffer_config` function now requires a destination parameter and returns an error code for proper error handling.
Old Version:
.. code-block:: c
esp_apptrace_down_buffer_config(down_buf, sizeof(down_buf));
Update to:
.. code-block:: c
esp_err_t res = esp_apptrace_down_buffer_config(ESP_APPTRACE_DEST_JTAG, down_buf, sizeof(down_buf));
if (res != ESP_OK) {
ESP_LOGE(TAG, "Failed to config down buffer!");
return res;
}
FreeRTOS
--------

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@@ -78,7 +78,7 @@ ESP-IDF 中提供了应用层跟踪功能,用于分析应用程序的行为。
#include "esp_app_trace.h"
...
char buf[] = "Hello World!";
esp_err_t res = esp_apptrace_write(ESP_APPTRACE_DEST_TRAX, buf, strlen(buf), ESP_APPTRACE_TMO_INFINITE);
esp_err_t res = esp_apptrace_write(ESP_APPTRACE_DEST_JTAG, buf, strlen(buf), ESP_APPTRACE_TMO_INFINITE);
if (res != ESP_OK) {
ESP_LOGE(TAG, "Failed to write data to host!");
return res;
@@ -91,13 +91,13 @@ ESP-IDF 中提供了应用层跟踪功能,用于分析应用程序的行为。
#include "esp_app_trace.h"
...
int number = 10;
char *ptr = (char *)esp_apptrace_buffer_get(ESP_APPTRACE_DEST_TRAX, 32, 100/*tmo in us*/);
char *ptr = (char *)esp_apptrace_buffer_get(ESP_APPTRACE_DEST_JTAG, 32, 100/*tmo in us*/);
if (ptr == NULL) {
ESP_LOGE(TAG, "Failed to get buffer!");
return ESP_FAIL;
}
sprintf(ptr, "Here is the number %d", number);
esp_err_t res = esp_apptrace_buffer_put(ESP_APPTRACE_DEST_TRAX, ptr, 100/*tmo in us*/);
esp_err_t res = esp_apptrace_buffer_put(ESP_APPTRACE_DEST_JTAG, ptr, 100/*tmo in us*/);
if (res != ESP_OK) {
/* in case of error host tracing tool (e.g. OpenOCD) will report incomplete user buffer */
ESP_LOGE(TAG, "Failed to put buffer!");
@@ -115,9 +115,13 @@ ESP-IDF 中提供了应用层跟踪功能,用于分析应用程序的行为。
size_t sz = sizeof(buf);
/* config down buffer */
esp_apptrace_down_buffer_config(down_buf, sizeof(down_buf));
esp_err_t res = esp_apptrace_down_buffer_config(ESP_APPTRACE_DEST_JTAG, down_buf, sizeof(down_buf));
if (res != ESP_OK) {
ESP_LOGE(TAG, "Failed to config down buffer!");
return res;
}
/* check for incoming data and read them if any */
esp_err_t res = esp_apptrace_read(ESP_APPTRACE_DEST_TRAX, buf, &sz, 0/*do not wait*/);
res = esp_apptrace_read(ESP_APPTRACE_DEST_JTAG, buf, &sz, 0/*do not wait*/);
if (res != ESP_OK) {
ESP_LOGE(TAG, "Failed to read data from host!");
return res;
@@ -138,8 +142,12 @@ ESP-IDF 中提供了应用层跟踪功能,用于分析应用程序的行为。
size_t sz = 32;
/* config down buffer */
esp_apptrace_down_buffer_config(down_buf, sizeof(down_buf));
char *ptr = (char *)esp_apptrace_down_buffer_get(ESP_APPTRACE_DEST_TRAX, &sz, 100/*tmo in us*/);
esp_err_t res = esp_apptrace_down_buffer_config(ESP_APPTRACE_DEST_JTAG, down_buf, sizeof(down_buf));
if (res != ESP_OK) {
ESP_LOGE(TAG, "Failed to config down buffer!");
return res;
}
char *ptr = (char *)esp_apptrace_down_buffer_get(ESP_APPTRACE_DEST_JTAG, &sz, 100/*tmo in us*/);
if (ptr == NULL) {
ESP_LOGE(TAG, "Failed to get buffer!");
return ESP_FAIL;
@@ -150,7 +158,7 @@ ESP-IDF 中提供了应用层跟踪功能,用于分析应用程序的行为。
} else {
printf("No data");
}
esp_err_t res = esp_apptrace_down_buffer_put(ESP_APPTRACE_DEST_TRAX, ptr, 100/*tmo in us*/);
res = esp_apptrace_down_buffer_put(ESP_APPTRACE_DEST_JTAG, ptr, 100/*tmo in us*/);
if (res != ESP_OK) {
/* in case of error host tracing tool (e.g. OpenOCD) will report incomplete user buffer */
ESP_LOGE(TAG, "Failed to put buffer!");

View File

@@ -21,7 +21,7 @@ menu "Example Configuration"
Store pcap file to SD card.
config SNIFFER_PCAP_DESTINATION_JTAG
bool "JTAG (App Trace)"
depends on APPTRACE_DEST_TRAX
depends on APPTRACE_DEST_JTAG
help
Store pcap file to host via JTAG interface.
config SNIFFER_PCAP_DESTINATION_MEMORY

View File

@@ -1,3 +1,8 @@
/*
* SPDX-FileCopyrightText: 2024 Espressif Systems (Shanghai) CO LTD
*
* SPDX-License-Identifier: Unlicense OR CC0-1.0
*/
/* cmd_pcap example.
This example code is in the Public Domain (or CC0 licensed, at your option.)
@@ -68,18 +73,18 @@ static pcap_cmd_runtime_t pcap_cmd_rt = {0};
#if CONFIG_SNIFFER_PCAP_DESTINATION_JTAG
static int trace_writefun(void *cookie, const char *buf, int len)
{
return esp_apptrace_write(ESP_APPTRACE_DEST_TRAX, buf, len, SNIFFER_PROCESS_APPTRACE_TIMEOUT_US) ==
return esp_apptrace_write(ESP_APPTRACE_DEST_JTAG, buf, len, SNIFFER_PROCESS_APPTRACE_TIMEOUT_US) ==
ESP_OK ? len : -1;
}
static int trace_closefun(void *cookie)
{
return esp_apptrace_flush(ESP_APPTRACE_DEST_TRAX, ESP_APPTRACE_TMO_INFINITE) == ESP_OK ? 0 : -1;
return esp_apptrace_flush(ESP_APPTRACE_DEST_JTAG, ESP_APPTRACE_TMO_INFINITE) == ESP_OK ? 0 : -1;
}
void pcap_flush_apptrace_timer_cb(TimerHandle_t pxTimer)
{
esp_apptrace_flush(ESP_APPTRACE_DEST_TRAX, pdMS_TO_TICKS(10));
esp_apptrace_flush(ESP_APPTRACE_DEST_JTAG, pdMS_TO_TICKS(10));
}
#endif // CONFIG_SNIFFER_PCAP_DESTINATION_JTAG
@@ -151,7 +156,7 @@ esp_err_t sniff_packet_start(pcap_link_type_t link_type)
#if CONFIG_SNIFFER_PCAP_DESTINATION_JTAG
uint32_t retry = 0;
/* wait until apptrace communication established or timeout */
while (!esp_apptrace_host_is_connected(ESP_APPTRACE_DEST_TRAX) && (retry < SNIFFER_APPTRACE_RETRY)) {
while (!esp_apptrace_host_is_connected(ESP_APPTRACE_DEST_JTAG) && (retry < SNIFFER_APPTRACE_RETRY)) {
retry++;
ESP_LOGW(CMD_PCAP_TAG, "waiting for apptrace established");
vTaskDelay(pdMS_TO_TICKS(1000));