Prabhakar Kushwaha | 46c5198 | 2016-06-03 18:41:30 +0530 | [diff] [blame] | 1 | SoC overview |
| 2 | |
| 3 | 1. LS1043A |
| 4 | 2. LS2080A |
Prabhakar Kushwaha | d169ebe | 2016-06-03 18:41:31 +0530 | [diff] [blame] | 5 | 3. LS1012A |
Mingkai Hu | cd54c0f | 2016-07-05 16:01:55 +0800 | [diff] [blame] | 6 | 4. LS1046A |
Priyanka Jain | 4a6f173 | 2016-11-17 12:29:55 +0530 | [diff] [blame] | 7 | 5. LS2088A |
Priyanka Jain | 2b36178 | 2017-04-27 15:08:06 +0530 | [diff] [blame^] | 8 | 6. LS2081A |
Prabhakar Kushwaha | 46c5198 | 2016-06-03 18:41:30 +0530 | [diff] [blame] | 9 | |
| 10 | LS1043A |
| 11 | --------- |
| 12 | The LS1043A integrated multicore processor combines four ARM Cortex-A53 |
| 13 | processor cores with datapath acceleration optimized for L2/3 packet |
| 14 | processing, single pass security offload and robust traffic management |
| 15 | and quality of service. |
| 16 | |
| 17 | The LS1043A SoC includes the following function and features: |
| 18 | - Four 64-bit ARM Cortex-A53 CPUs |
| 19 | - 1 MB unified L2 Cache |
| 20 | - One 32-bit DDR3L/DDR4 SDRAM memory controllers with ECC and interleaving |
| 21 | support |
| 22 | - Data Path Acceleration Architecture (DPAA) incorporating acceleration the |
| 23 | the following functions: |
| 24 | - Packet parsing, classification, and distribution (FMan) |
| 25 | - Queue management for scheduling, packet sequencing, and congestion |
| 26 | management (QMan) |
| 27 | - Hardware buffer management for buffer allocation and de-allocation (BMan) |
| 28 | - Cryptography acceleration (SEC) |
| 29 | - Ethernet interfaces by FMan |
| 30 | - Up to 1 x XFI supporting 10G interface |
| 31 | - Up to 1 x QSGMII |
| 32 | - Up to 4 x SGMII supporting 1000Mbps |
| 33 | - Up to 2 x SGMII supporting 2500Mbps |
| 34 | - Up to 2 x RGMII supporting 1000Mbps |
| 35 | - High-speed peripheral interfaces |
| 36 | - Three PCIe 2.0 controllers, one supporting x4 operation |
| 37 | - One serial ATA (SATA 3.0) controllers |
| 38 | - Additional peripheral interfaces |
| 39 | - Three high-speed USB 3.0 controllers with integrated PHY |
| 40 | - Enhanced secure digital host controller (eSDXC/eMMC) |
| 41 | - Quad Serial Peripheral Interface (QSPI) Controller |
| 42 | - Serial peripheral interface (SPI) controller |
| 43 | - Four I2C controllers |
| 44 | - Two DUARTs |
| 45 | - Integrated flash controller supporting NAND and NOR flash |
| 46 | - QorIQ platform's trust architecture 2.1 |
| 47 | |
| 48 | LS2080A |
| 49 | -------- |
| 50 | The LS2080A integrated multicore processor combines eight ARM Cortex-A57 |
| 51 | processor cores with high-performance data path acceleration logic and network |
| 52 | and peripheral bus interfaces required for networking, telecom/datacom, |
| 53 | wireless infrastructure, and mil/aerospace applications. |
| 54 | |
| 55 | The LS2080A SoC includes the following function and features: |
| 56 | |
| 57 | - Eight 64-bit ARM Cortex-A57 CPUs |
| 58 | - 1 MB platform cache with ECC |
| 59 | - Two 64-bit DDR4 SDRAM memory controllers with ECC and interleaving support |
| 60 | - One secondary 32-bit DDR4 SDRAM memory controller, intended for use by |
| 61 | the AIOP |
| 62 | - Data path acceleration architecture (DPAA2) incorporating acceleration for |
| 63 | the following functions: |
| 64 | - Packet parsing, classification, and distribution (WRIOP) |
| 65 | - Queue and Hardware buffer management for scheduling, packet sequencing, and |
| 66 | congestion management, buffer allocation and de-allocation (QBMan) |
| 67 | - Cryptography acceleration (SEC) at up to 10 Gbps |
| 68 | - RegEx pattern matching acceleration (PME) at up to 10 Gbps |
| 69 | - Decompression/compression acceleration (DCE) at up to 20 Gbps |
| 70 | - Accelerated I/O processing (AIOP) at up to 20 Gbps |
| 71 | - QDMA engine |
| 72 | - 16 SerDes lanes at up to 10.3125 GHz |
| 73 | - Ethernet interfaces |
| 74 | - Up to eight 10 Gbps Ethernet MACs |
| 75 | - Up to eight 1 / 2.5 Gbps Ethernet MACs |
| 76 | - High-speed peripheral interfaces |
| 77 | - Four PCIe 3.0 controllers, one supporting SR-IOV |
| 78 | - Additional peripheral interfaces |
| 79 | - Two serial ATA (SATA 3.0) controllers |
| 80 | - Two high-speed USB 3.0 controllers with integrated PHY |
| 81 | - Enhanced secure digital host controller (eSDXC/eMMC) |
| 82 | - Serial peripheral interface (SPI) controller |
| 83 | - Quad Serial Peripheral Interface (QSPI) Controller |
| 84 | - Four I2C controllers |
| 85 | - Two DUARTs |
| 86 | - Integrated flash controller (IFC 2.0) supporting NAND and NOR flash |
| 87 | - Support for hardware virtualization and partitioning enforcement |
| 88 | - QorIQ platform's trust architecture 3.0 |
| 89 | - Service processor (SP) provides pre-boot initialization and secure-boot |
| 90 | capabilities |
Prabhakar Kushwaha | d169ebe | 2016-06-03 18:41:31 +0530 | [diff] [blame] | 91 | |
| 92 | LS1012A |
| 93 | -------- |
| 94 | The LS1012A features an advanced 64-bit ARM v8 Cortex- |
| 95 | A53 processor, with 32 KB of parity protected L1-I cache, |
| 96 | 32 KB of ECC protected L1-D cache, as well as 256 KB of |
| 97 | ECC protected L2 cache. |
| 98 | |
| 99 | The LS1012A SoC includes the following function and features: |
| 100 | - One 64-bit ARM v8 Cortex-A53 core with the following capabilities: |
| 101 | - ARM v8 cryptography extensions |
| 102 | - One 16-bit DDR3L SDRAM memory controller, Up to 1.0 GT/s, Supports |
| 103 | 16-/8-bit operation (no ECC support) |
| 104 | - ARM core-link CCI-400 cache coherent interconnect |
| 105 | - Packet Forwarding Engine (PFE) |
| 106 | - Cryptography acceleration (SEC) |
| 107 | - Ethernet interfaces supported by PFE: |
| 108 | - One Configurable x3 SerDes: |
| 109 | Two Serdes PLLs supported for usage by any SerDes data lane |
| 110 | Support for up to 6 GBaud operation |
| 111 | - High-speed peripheral interfaces: |
| 112 | - One PCI Express Gen2 controller, supporting x1 operation |
| 113 | - One serial ATA (SATA Gen 3.0) controller |
| 114 | - One USB 3.0/2.0 controller with integrated PHY |
| 115 | - One USB 2.0 controller with ULPI interface. . |
| 116 | - Additional peripheral interfaces: |
| 117 | - One quad serial peripheral interface (QuadSPI) controller |
| 118 | - One serial peripheral interface (SPI) controller |
| 119 | - Two enhanced secure digital host controllers |
| 120 | - Two I2C controllers |
| 121 | - One 16550 compliant DUART (two UART interfaces) |
| 122 | - Two general purpose IOs (GPIO) |
| 123 | - Two FlexTimers |
| 124 | - Five synchronous audio interfaces (SAI) |
| 125 | - Pre-boot loader (PBL) provides pre-boot initialization and RCW loading |
| 126 | - Single-source clocking solution enabling generation of core, platform, |
| 127 | DDR, SerDes, and USB clocks from a single external crystal and internal |
| 128 | crystaloscillator |
| 129 | - Thermal monitor unit (TMU) with +/- 3C accuracy |
| 130 | - Two WatchDog timers |
| 131 | - ARM generic timer |
| 132 | - QorIQ platform's trust architecture 2.1 |
Mingkai Hu | cd54c0f | 2016-07-05 16:01:55 +0800 | [diff] [blame] | 133 | |
| 134 | LS1046A |
| 135 | -------- |
| 136 | The LS1046A integrated multicore processor combines four ARM Cortex-A72 |
| 137 | processor cores with datapath acceleration optimized for L2/3 packet |
| 138 | processing, single pass security offload and robust traffic management |
| 139 | and quality of service. |
| 140 | |
| 141 | The LS1046A SoC includes the following function and features: |
| 142 | - Four 64-bit ARM Cortex-A72 CPUs |
| 143 | - 2 MB unified L2 Cache |
| 144 | - One 64-bit DDR4 SDRAM memory controllers with ECC and interleaving |
| 145 | support |
| 146 | - Data Path Acceleration Architecture (DPAA) incorporating acceleration the |
| 147 | the following functions: |
| 148 | - Packet parsing, classification, and distribution (FMan) |
| 149 | - Queue management for scheduling, packet sequencing, and congestion |
| 150 | management (QMan) |
| 151 | - Hardware buffer management for buffer allocation and de-allocation (BMan) |
| 152 | - Cryptography acceleration (SEC) |
| 153 | - Two Configurable x4 SerDes |
| 154 | - Two PLLs per four-lane SerDes |
| 155 | - Support for 10G operation |
| 156 | - Ethernet interfaces by FMan |
| 157 | - Up to 2 x XFI supporting 10G interface (MAC 9, 10) |
| 158 | - Up to 1 x QSGMII (MAC 5, 6, 10, 1) |
| 159 | - Up to 4 x SGMII supporting 1000Mbps (MAC 5, 6, 9, 10) |
| 160 | - Up to 3 x SGMII supporting 2500Mbps (MAC 5, 9, 10) |
| 161 | - Up to 2 x RGMII supporting 1000Mbps (MAC 3, 4) |
| 162 | - High-speed peripheral interfaces |
| 163 | - Three PCIe 3.0 controllers, one supporting x4 operation |
| 164 | - One serial ATA (SATA 3.0) controllers |
| 165 | - Additional peripheral interfaces |
| 166 | - Three high-speed USB 3.0 controllers with integrated PHY |
| 167 | - Enhanced secure digital host controller (eSDXC/eMMC) |
| 168 | - Quad Serial Peripheral Interface (QSPI) Controller |
| 169 | - Serial peripheral interface (SPI) controller |
| 170 | - Four I2C controllers |
| 171 | - Two DUARTs |
| 172 | - Integrated flash controller (IFC) supporting NAND and NOR flash |
| 173 | - QorIQ platform's trust architecture 2.1 |
Priyanka Jain | 4a6f173 | 2016-11-17 12:29:55 +0530 | [diff] [blame] | 174 | |
| 175 | LS2088A |
| 176 | -------- |
| 177 | The LS2088A integrated multicore processor combines eight ARM Cortex-A72 |
| 178 | processor cores with high-performance data path acceleration logic and network |
| 179 | and peripheral bus interfaces required for networking, telecom/datacom, |
| 180 | wireless infrastructure, and mil/aerospace applications. |
| 181 | |
| 182 | The LS2088A SoC includes the following function and features: |
| 183 | |
| 184 | - Eight 64-bit ARM Cortex-A72 CPUs |
| 185 | - 1 MB platform cache with ECC |
| 186 | - Two 64-bit DDR4 SDRAM memory controllers with ECC and interleaving support |
| 187 | - One secondary 32-bit DDR4 SDRAM memory controller, intended for use by |
| 188 | the AIOP |
| 189 | - Data path acceleration architecture (DPAA2) incorporating acceleration for |
| 190 | the following functions: |
| 191 | - Packet parsing, classification, and distribution (WRIOP) |
| 192 | - Queue and Hardware buffer management for scheduling, packet sequencing, and |
| 193 | congestion management, buffer allocation and de-allocation (QBMan) |
| 194 | - Cryptography acceleration (SEC) at up to 10 Gbps |
| 195 | - RegEx pattern matching acceleration (PME) at up to 10 Gbps |
| 196 | - Decompression/compression acceleration (DCE) at up to 20 Gbps |
| 197 | - Accelerated I/O processing (AIOP) at up to 20 Gbps |
| 198 | - QDMA engine |
| 199 | - 16 SerDes lanes at up to 10.3125 GHz |
| 200 | - Ethernet interfaces |
| 201 | - Up to eight 10 Gbps Ethernet MACs |
| 202 | - Up to eight 1 / 2.5 Gbps Ethernet MACs |
| 203 | - High-speed peripheral interfaces |
| 204 | - Four PCIe 3.0 controllers, one supporting SR-IOV |
| 205 | - Additional peripheral interfaces |
| 206 | - Two serial ATA (SATA 3.0) controllers |
| 207 | - Two high-speed USB 3.0 controllers with integrated PHY |
| 208 | - Enhanced secure digital host controller (eSDXC/eMMC) |
| 209 | - Serial peripheral interface (SPI) controller |
| 210 | - Quad Serial Peripheral Interface (QSPI) Controller |
| 211 | - Four I2C controllers |
| 212 | - Two DUARTs |
| 213 | - Integrated flash controller (IFC 2.0) supporting NAND and NOR flash |
| 214 | - Support for hardware virtualization and partitioning enforcement |
| 215 | - QorIQ platform's trust architecture 3.0 |
| 216 | - Service processor (SP) provides pre-boot initialization and secure-boot |
| 217 | capabilities |
| 218 | |
| 219 | LS2088A SoC has 3 more similar SoC personalities |
| 220 | 1)LS2048A, few difference w.r.t. LS2088A: |
| 221 | a) Four 64-bit ARM v8 Cortex-A72 CPUs |
| 222 | |
| 223 | 2)LS2084A, few difference w.r.t. LS2088A: |
| 224 | a) No AIOP |
| 225 | b) No 32-bit DDR3 SDRAM memory |
| 226 | c) 5 * 1/10G + 5 *1G WRIOP |
| 227 | d) No L2 switch |
| 228 | |
| 229 | 3)LS2044A, few difference w.r.t. LS2084A: |
| 230 | a) Four 64-bit ARM v8 Cortex-A72 CPUs |
Priyanka Jain | 2b36178 | 2017-04-27 15:08:06 +0530 | [diff] [blame^] | 231 | |
| 232 | LS2081A |
| 233 | -------- |
| 234 | LS2081A is 40-pin derivative of LS2084A. |
| 235 | So feature-wise it is same as LS2084A. |
| 236 | Refer to LS2084A(LS2088A) section above for details. |
| 237 | |
| 238 | It has one more similar SoC personality |
| 239 | 1)LS2041A, few difference w.r.t. LS2081A: |
| 240 | a) Four 64-bit ARM v8 Cortex-A72 CPUs |