Mcuxpresso Software Development Kit
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cpe:2.3:a:nxp:mcuxpresso_software_development_kit:*:*:*:*:*:*:*:*
part: a version: * update: *
| Vendor | Nxp (2c4d2203-ccbd-50e6-842f-582e7fe949e0) |
|---|---|
| Product | Mcuxpresso Software Development Kit (8a966a11-6c97-54b9-92dc-16b9dba6a643) |
| Edition | * |
| Language | * |
| Software edition | * |
| Target software | * |
| Target hardware | * |
| Other | * |
| Notes | Imported from gcve-enriched-dumps CVE data |
PURL mappings
| PURL | Source | Last updated |
|---|---|---|
| No PURL mappings for this CPE yet. | ||
Vulnerability references
| Identifier | cpeApplicability | Submitted | db.gcve.eu details | Rationale |
|---|---|---|---|---|
CVE:CVE-2021-27421 |
vulnerable | 2026-06-08 05:31:21.417593 |
NXP MCUXpresso SDK Integer Overflow or Wraparound
HIGH (7.3)
NXP MCUXpresso SDK versions prior to 2.8.2 are vulnerable to integer overflow in SDK_Malloc function, which could allow to access memory locations outside the bounds of a specified array, leading to unexpected behavior such segmentation fault when assigning a particular block of memory from the heap via malloc.
Published: 2022-05-03T20:24:23.000Z
Updated: 2025-04-16T16:24:46.545Z |
Imported from gcve-enriched-dumps CVE data |
CVE:CVE-2019-17519 |
vulnerable | 2026-06-08 05:13:10.596710 |
Details available
The Bluetooth Low Energy implementation on NXP SDK through 2.2.1 for KW41Z devices does not properly restrict the Link Layer payload length, allowing attackers in radio range to cause a buffer overflow via a crafted packet.
Published: 2020-02-12T18:04:08.000Z
Updated: 2024-08-05T01:40:15.913Z Reference links |
Imported from gcve-enriched-dumps CVE data |
CVE:CVE-2019-17060 |
vulnerable | 2026-06-08 05:13:09.834900 |
Details available
The Bluetooth Low Energy (BLE) stack implementation on the NXP KW41Z (based on the MCUXpresso SDK with Bluetooth Low Energy Driver 2.2.1 and earlier) does not properly restrict the BLE Link Layer header and executes certain memory contents upon receiving a packet with a Link Layer ID (LLID) equal to zero. This allows attackers within radio range to cause deadlocks, cause anomalous behavior in the BLE state machine, or trigger a buffer overflow via a crafted BLE Link Layer frame.
Published: 2020-02-10T20:11:18.000Z
Updated: 2024-08-05T01:33:16.311Z |
Imported from gcve-enriched-dumps CVE data |
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