ram alloc tuning
* relax checks in d_malloc_only, allow RTCRAM (avoids "unexpected end of JSON input) errors * debug messages improved * set errorflag when d_malloc() or d_calloc() failed
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@@ -806,7 +806,7 @@ static inline bool isOkForDRAMHeap(size_t amount) {
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size_t avail = d_measureContiguousFreeHeap();
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if ((amount < avail) && (avail - amount > MIN_HEAP_SIZE)) return true;
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else {
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USER_PRINTF("* isOkForDRAMHeap() DRAM allocation rejected (%u bytes requested, %u-%u available).\n", amount, avail, MIN_HEAP_SIZE);
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DEBUG_PRINTF("* isOkForDRAMHeap() DRAM allocation rejected (%u bytes requested, %u-%u available).\n", amount, avail, MIN_HEAP_SIZE);
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return(false);
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}
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#else
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@@ -855,22 +855,30 @@ void *d_malloc(size_t size) {
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#if defined(BOARD_HAS_PSRAM) || (ESP_IDF_VERSION_MAJOR > 3) // WLEDMM always try PSRAM (auto-detected)
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if (!buffer && psramFound()) {
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DEBUG_PRINTF("* d_malloc() using PSRAM(%u bytes).\n", size);
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DEBUG_PRINTF("* d_malloc() using PSRAM(%u bytes) fsllback.\n", size);
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return heap_caps_malloc_prefer(size, 2, MALLOC_CAP_SPIRAM | MALLOC_CAP_8BIT, MALLOC_CAP_DEFAULT); // DRAM failed,try PSRAM if available
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}
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#endif
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if (!buffer) { USER_PRINTF("* d_malloc() failed (%u bytes) !\n", size); }
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if (!buffer) { errorFlag = ERR_LOW_MEM; USER_PRINTF("* d_malloc() failed (%u bytes) !\n", size); }
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else if (errorFlag == ERR_LOW_MEM) errorFlag = ERR_NONE; // reset mem error flag
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return buffer;
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}
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void *d_malloc_only(size_t size) {
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// variant of d_malloc that only allocates from "internal" DRAM (no PSRAM fallback)
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void *buffer = nullptr;
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if (isOkForDRAMHeap(size)) // no RTC RAM allocation allowed, always request DRAM
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buffer = heap_caps_malloc(size, MALLOC_CAP_INTERNAL | MALLOC_CAP_8BIT);
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// variant of d_malloc that only allocates from "internal" DRAM (no PSRAM fallback) - MIN_HEAP_SIZE checking relaxed to post-malloc only
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void *buffer = nullptr;
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#if !defined(CONFIG_IDF_TARGET_ESP32) // try RTCRAM on newer chips
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if (size <= RTC_RAM_THRESHOLD || getContiguousFreeHeap() < 2*MIN_HEAP_SIZE + size) {
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buffer = heap_caps_malloc(size, MALLOC_CAP_RTCRAM | MALLOC_CAP_8BIT);
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DEBUG_PRINTF("* d_malloc() trying RTCRAM (%u bytes) - %s.\n", size, buffer?"success":"fail");
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}
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#endif
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if (!buffer) buffer = heap_caps_malloc(size, MALLOC_CAP_INTERNAL | MALLOC_CAP_8BIT);
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buffer = validateFreeHeap(buffer); // make sure there is enough free heap left
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if (!buffer) { USER_PRINTF("* d_malloc_only() failed (%u bytes) !\n", size); }
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if (!buffer) { errorFlag = ERR_LOW_MEM; USER_PRINTF("* d_malloc_only() failed (%u bytes) !\n", size); }
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else if (errorFlag == ERR_LOW_MEM) errorFlag = ERR_NONE; // reset mem error flag
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return buffer;
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}
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@@ -891,11 +899,12 @@ void *d_calloc(size_t count, size_t size) {
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#if defined(BOARD_HAS_PSRAM) || (ESP_IDF_VERSION_MAJOR > 3) // WLEDMM always try PSRAM (auto-detected)
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if (!buffer && psramFound()) {
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DEBUG_PRINTF("* d_calloc() using PSRAM (%u bytes).\n", size*count);
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DEBUG_PRINTF("* d_calloc() using PSRAM (%u bytes) fallback.\n", size*count);
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return heap_caps_calloc_prefer(count, size, 2, MALLOC_CAP_SPIRAM | MALLOC_CAP_8BIT, MALLOC_CAP_DEFAULT); // DRAM failed,try PSRAM if available
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}
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#endif
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if (!buffer) { USER_PRINTF("* d_calloc() failed (%u bytes) !\n", size*count); }
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if (!buffer) { errorFlag = ERR_LOW_MEM; USER_PRINTF("* d_calloc() failed (%u bytes) !\n", size*count); }
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else if (errorFlag == ERR_LOW_MEM) errorFlag = ERR_NONE; // reset mem error flag
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return buffer;
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}
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