IP Library Granted Patent US 11,082,168
Granted Patent B1
US 11,082,168 · App. 16/823,714 · Granted Aug 3, 2021

Entropy driven endurance for normalized quality of service

Inventor: Ramanathan Muthiah (Karnataka, IN)
Assignee: WESTERN DIGITAL TECHNOLOGIES, INC.
H04L1/203H04L1/0014H04L1/0026H04L1/0041H04L1/1678H04L1/1838
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Quick Facts
Patent No.
US 11,082,168
App. No.
16/823,714
Granted
Aug 3, 2021
Kind
B1
Abstract

Aspects of a storage device including a memory and a controller are provided which allow for data associated with a media stream and having high entropy to be stored in healthier memory locations, with improved data protection, and with more optimal NAND parameters than for data having low entropy. After receiving data associated with a media stream, the controller identifies an entropy level of the data. When the entropy level meets an entropy threshold, the controller stores the data in a first block of the memory associated with a lower BER, and/or with a higher write latency or a first, more discrete voltage. Alternatively, when the entropy level does not meet the entropy threshold, the controller stores the data in a second block of the memory associated with a higher BER, and/or with a lower write latency or a second, less discrete voltage.

Claims (46)

1. A storage device, comprising:

a memory; and

a controller coupled to the memory and configured to:

receive data associated with a media stream from a host device,

determine whether an entropy level of the data exceeds an entropy threshold,

store the data in a first block of the memory that is associated with a first bit-error-rate (BER) when the entropy level exceeds the entropy threshold, and

store the data in a second block of the memory that is associated with a second BER greater than the first BER when the entropy level does not exceed the entropy threshold.

2. The storage device of claim 1 , wherein the media stream includes a constant bit rate (CBR).

3. The storage device of claim 1 , wherein the controller is further configured to identify the entropy level based on a difference between a direct current (DC) coefficient of a current video frame and a previous DC coefficient of one or more prior video frames.

4. The storage device of claim 3 , wherein the entropy level is identified regardless of a current video frame type of the current video frame.

5. The storage device of claim 1 , wherein the controller is further configured to identify the entropy level based on a difference between a direct current (DC) coefficient of current video frames in a first period of time and a previous DC coefficient of prior video frames in a second period of time, wherein the first period of time and the second period of time are each between a respective set of program clock references (PCR).

6. The storage device of claim 1 , wherein the controller is further configured to store the data in the first block with at least one of a higher write latency or a first voltage when the entropy level exceeds the entropy threshold, and to store the data in the second block with at least one of a lower write latency or a second voltage when the entropy level does not exceed the entropy threshold.

7. The storage device of claim 1 , wherein the controller is further configured to reduce an XOR stripe length for the data stored in the first block when the entropy level exceeds the entropy threshold, and to increase an XOR stripe length for the data stored in the second block when the entropy level does not exceed the entropy threshold.

8. The storage device of claim 1 , wherein the media stream includes a first sub-stream comprising video and a second sub-stream comprising audio, and

wherein the controller is further configured to:

identify a first entropy level of the data in the first sub-stream that exceeds the entropy threshold,

identify a second entropy level of the data in the second sub-stream that does not exceed the entropy threshold,

store the data in the first sub-stream in the first block, and

store the data in the second sub-stream in the second block.

9. A storage device, comprising:

a memory; and

a controller coupled to the memory and configured to:

receive associated with a media stream from a host device,

determine whether an entropy level of the data exceeds an entropy threshold,

store the data in a first block of the memory with at least one of a first write latency or a first voltage that respectively correspond to a first bit-error-rate (BER) when the entropy level exceeds the entropy threshold, and

store the data in a second block of the memory with at least one of a second write latency or a second voltage that respectively correspond to a second BER greater than the first BER when the entropy level does not exceed the entropy threshold.

10. The storage device of claim 9 , wherein the media stream includes a constant bit rate (CBR).

11. The storage device of claim 9 , wherein the controller is further configured to identify the entropy level based on a difference between a direct current (DC) coefficient of a current video frame and a previous DC coefficient of one or more prior video frames.

12. The storage device of claim 11 , wherein the entropy level is identified regardless of a current video frame type of the current video frame.

13. The storage device of claim 9 , wherein the controller is further configured to identify the entropy level based on a difference between a direct current (DC) coefficient of current video frames in a first period of time and a previous DC coefficient of prior video frames in a second period of time, wherein the first period of time and the second period of time are each between a respective set of program clock references (PCR).

14. The storage device of claim 9 , wherein the controller is further configured to reduce an XOR stripe length for the data stored in the first block when the entropy level exceeds the entropy threshold, and to increase an XOR stripe length for the data stored in the second block when the entropy level does not exceed the entropy threshold.

15. The storage device of claim 9 , wherein the media stream includes a first sub-stream comprising video and a second sub-stream comprising audio, and

wherein the controller is further configured to:

identify a first entropy level of the data in the first sub-stream that exceeds the entropy threshold,

identify a second entropy level of the data in the second sub-stream that does not exceed the entropy threshold,

store the data in the first sub-stream in the first block, and

store the data in the second sub-stream in the second block.

16. A storage device, comprising:

a memory; and

a controller coupled to the memory and configured to:

determine whether an entropy level of data associated with a media stream exceeds an entropy threshold,

store the data in a first block of the memory with at least one of a first write latency or a first voltage that respectively correspond to a first bit-error-rate (BER) when the entropy level exceeds the entropy threshold, and

store the data in a second block of the memory with at least one of a second write latency or a second voltage that respectively correspond to a second BER greater than the first BER when the entropy level does not exceed the entropy threshold.

17. The storage device of claim 16 , wherein the controller is further configured to identify the entropy level based on a difference between a direct current (DC) coefficient of a current video frame and a previous DC coefficient of one or more prior video frames.

18. The storage device of claim 16 , wherein the controller is further configured to identify the entropy level based on a difference between a direct current (DC) coefficient of current video frames in a first period of time and a previous DC coefficient of prior video frames in a second period of time, wherein the first period of time and the second period of time are each between a respective set of program clock references (PCR).

19. The storage device of claim 16 , wherein the controller is further configured to reduce an XOR stripe length for the data stored in the first block when the entropy level exceeds the entropy threshold, and to increase an XOR stripe length for the data stored in the second block when the entropy level does not exceed the entropy threshold.

Assignments (10)
PARTIAL RELEASE OF SECURITY INTERESTS Recorded Apr 25, 2025
From: JPMORGAN CHASE BANK, N.A., AS AGENT
To: SANDISK TECHNOLOGIES, INC.
Reel/Frame 071382/0001 →
SECURITY AGREEMENT Recorded Apr 25, 2025
From: SANDISK TECHNOLOGIES, INC.
To: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
Reel/Frame 071050/0001 →
PATENT COLLATERAL AGREEMENT Recorded Aug 23, 2024
From: SANDISK TECHNOLOGIES, INC.
To: JPMORGAN CHASE BANK, N.A., AS THE AGENT
Reel/Frame 068762/0494 →
CHANGE OF NAME Recorded Jun 27, 2024
From: SANDISK TECHNOLOGIES, INC.
To: SANDISK TECHNOLOGIES, INC.
Reel/Frame 067982/0032 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 29, 2024
From: WESTERN DIGITAL TECHNOLOGIES, INC.
To: SANDISK TECHNOLOGIES, INC.
Reel/Frame 067567/0682 →
PATENT COLLATERAL AGREEMENT - DDTL LOAN AGREEMENT Recorded Aug 21, 2023
From: WESTERN DIGITAL TECHNOLOGIES, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 067045/0156 →
PATENT COLLATERAL AGREEMENT - A&R LOAN AGREEMENT Recorded Aug 21, 2023
From: WESTERN DIGITAL TECHNOLOGIES, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 064715/0001 →
RELEASE OF SECURITY INTEREST AT REEL 053482 FRAME 0453 Recorded Feb 8, 2022
From: JPMORGAN CHASE BANK, N.A.
To: WESTERN DIGITAL TECHNOLOGIES, INC.
Reel/Frame 058966/0279 →
SECURITY INTEREST Recorded May 14, 2020
From: WESTERN DIGITAL TECHNOLOGIES, INC.
To: JPMORGAN CHASE BANK, N.A., AS AGENT
Reel/Frame 053482/0453 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 19, 2020
From: MUTHIAH, RAMANATHAN
To: WESTERN DIGITAL TECHNOLOGIES, INC.
Reel/Frame 052166/0837 →